US20040139768A1 - Washing machine - Google Patents
Washing machine Download PDFInfo
- Publication number
- US20040139768A1 US20040139768A1 US10/754,612 US75461204A US2004139768A1 US 20040139768 A1 US20040139768 A1 US 20040139768A1 US 75461204 A US75461204 A US 75461204A US 2004139768 A1 US2004139768 A1 US 2004139768A1
- Authority
- US
- United States
- Prior art keywords
- washing machine
- induction motor
- ring gear
- spline shaft
- inner tub
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Abandoned
Links
Images
Classifications
-
- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F37/00—Details specific to washing machines covered by groups D06F21/00 - D06F25/00
- D06F37/30—Driving arrangements
- D06F37/304—Arrangements or adaptations of electric motors
-
- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06F—LAUNDERING, DRYING, IRONING, PRESSING OR FOLDING TEXTILE ARTICLES
- D06F37/00—Details specific to washing machines covered by groups D06F21/00 - D06F25/00
- D06F37/30—Driving arrangements
- D06F37/40—Driving arrangements for driving the receptacle and an agitator or impeller, e.g. alternatively
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K17/00—Asynchronous induction motors; Asynchronous induction generators
- H02K17/02—Asynchronous induction motors
- H02K17/32—Structural association of asynchronous induction motors with auxiliary mechanical devices, e.g. with clutches or brakes
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B40/00—Technologies aiming at improving the efficiency of home appliances, e.g. induction cooking or efficient technologies for refrigerators, freezers or dish washers
Definitions
- the present invention relates to a washing machine, and in particular to a washing machine capable of lowering production cost and noise, by using an induction motor as a driving motor for rotating a tub.
- FIG. 1 is a sectional view illustrating a conventional washing machine.
- a conventional washing machine includes a casing 111 in which a door 115 is installed at an opening portion 113 on the front; an outer tub 121 disposed inside the casing 111 , for containing water; an inner tub 131 installed inside the outer tub 121 of which a rotary shaft 133 is arranged horizontally, for containing laundry therein; a driving motor 141 connected with the rotary shaft 133 of the inner tub 131 , for rotating the inner tub 131 ; a spring 127 and a damper 129 respectively arranged on the upper and lower portions of the outer tub 121 in order to support and buff the outer tub 121 .
- the rotary shaft 133 of the inner tub 131 is rotatably supported by at least one bearing 125 installed in the center of a support plate 123 arranged on the rear of the outer tub 121 .
- the driving motor 141 includes a stator 143 fixed to the support plate 123 of the outer tub 121 ; a rotor 145 comprising a permanent magnet disposed around the stator 143 with a certain air gap and rotated by mutual electromagnetic with the stator 143 ; and a rotor link 146 for connecting the rotor 145 with the rotary shaft 133 so as to transmit a rotational force of the rotor 145 to the rotary shaft 133 of the inner tub 131 .
- a brushless DC motor capable of adjusting a speed for itself or a universal motor connected with the rotary shaft of the inner tub by a belt-pulley transmission mechanism are used as the driving motor for rotating the inner tub.
- the brushless DC motor because a unit cost is high, a production cost of a washing machine may rise, and in case of the universal motor, vibration and noise may be great in the structural aspect.
- an object of the present invention is to provide a washing machine capable of lowering production cost and noise, by using an induction motor as a driving motor for rotating a tub and constructing an optimum rotational force transmitting mechanism.
- a washing machine in accordance with the present invention includes a washing machine casing; an outer tub disposed in the casing, for containing water therein; an inner tub rotatably disposed in the outer tub, for containing laundry therein; an induction motor for generating a rotational force; and a rotation transmission means for transmitting a rotational force of the induction motor to the inner tub with a rotational speed decelerated from a rotational speed of the induction motor in laundering operation, and with a rotational speed identical to the rotational speed of the induction motor in dehydrating operation.
- FIG. 1 is a sectional view illustrating the conventional washing machine
- FIG. 2 is a sectional view illustrating a washing machine in accordance with a first embodiment of the present invention
- FIG. 3 is an enlarged-sectional view illustrating a driving motor and a rotational force transmitting mechanism of the washing machine in accordance with the first embodiment of the present invention
- FIG. 4 is a sectional view illustrating a washing machine in accordance with a second embodiment of the present invention.
- FIG. 5 is an enlarged-sectional view illustrating a driving motor and a rotational force transmitting mechanism of the washing machine in accordance with the second embodiment of the present invention
- FIG. 6 is a sectional view illustrating a washing machine in accordance with a third embodiment of the present invention.
- FIG. 7 is an enlarged-sectional view illustrating a driving motor and a rotational force transmitting mechanism of the washing machine in accordance with the third embodiment of the present invention.
- FIG. 8 is a sectional view illustrating a washing machine in accordance with a fourth embodiment of the present invention.
- FIG. 9 is an enlarged-sectional view illustrating a driving motor and a rotational force transmitting mechanism of the washing machine in accordance with the fourth embodiment of the present invention.
- FIG. 10 is a sectional view taken along a line X-X in FIG. 9.
- the washing machine in accordance with the first embodiment of the present invention includes a casing 11 in which an internal receiving space is formed and a door 15 is installed at an opening portion 13 on the front; an outer tub 21 for containing wash water suspended and supported by a spring 27 and a damper 29 in the casing 11 ; an inner tub 31 for containing the laundry therein rotatably disposed in the outer tub 21 ; an induction motor 51 which is disposed in the casing 11 and consists of a stator 52 and a rotor 54 disposed to maintain a certain air gap from an outer circumference of the stator 52 , and generate a rotational force for rotating the inner tub 31 by mutual electromagnetic operation with the stator 52 ; a rotation transmission means 50 for transmitting a rotational force of the induction motor 51 to the inner tub 31 with a rotational speed decelerated from a rotational speed of the induction motor 51 in the laundering operation of the washing machine, and for transmitting a rotational force of the induction motor
- the rotation transmission means 50 includes a connecting shaft 57 connected with the rotor 54 by a connecting link 53 to be rotated co-axially with the rotational center of the rotor 54 ; a sun gear 49 installed on an end of the connecting shaft 57 ; a ring gear 42 which is arranged to have a certain interval with an outer circumference of the sun gear 49 and has inscribed tooth 43 on an inner circumference thereof; a plurality of planetary gears 47 arranged between the sun gear 49 and the ring gear 42 to be meshed with the sun gear 49 and the ring gear 42 respectively; a planetary carrier 45 connected with the plural planetary gears 47 to be rotated with the planetary gears 47 when the planetary gears 47 revolve centering around the sun gear 49 ; a hollow-shaped first rotary shaft 33 connected to the ring gear 42 , supported to the outer tub 21 by a bearing 26 and fixed to the inner tub 31 in order to transmit the rotational force of the ring gear 42 to the inner tub 31 ;
- the clutching device includes a first spline shaft 56 formed at a side of the connecting shaft 57 ; a second spline shaft 44 extended from a side of the ring gear 42 toward the first spline shaft 56 of the connecting shaft 57 ; a clutch 61 having a gear tooth 62 meshed with the first spline shaft 56 of the connecting shaft 57 and the second spline shaft 44 of the ring gear 42 and transmitting/cutting off the rotational force of the connecting shaft 57 to the ring gear 42 selectively while moving between the first spline shaft 56 and the second spline shaft 44 ; and a clutch driving unit 71 having a solenoid 72 disposed at a side of the clutch 61 to move the clutch 61 in a certain direction when an external power is applied thereto and a return spring 74 for returning the clutch into an initial position when the external power supply to the solenoid 72 is cut off, for rotating operating the clutch 61 according to the laundering operation and the dehydrating operation of the washing
- the operation of the washing machine in accordance with the first embodiment of the present invention will be described.
- the inner tub 31 is rotated at a rotational speed lower than that of the induction motor 51 in the laundering operation, and the inner tub 31 is rotated at a rotational speed same to that of the induction motor 51 in the dehydrating operation.
- the rotational force transmitting mechanism will be described in detail.
- the clutch driving unit 71 is operated by the control unit, while the clutch 61 is moved, the connection of the first spline shaft 56 of the connecting shaft 57 and the second spline shaft 44 of the ring gear 42 is declutched. And, when the induction motor 51 is operated, the rotor 54 of the induction motor 51 is rotated, and the rotational force of the rotor 54 is transmitted to the connecting shaft 57 through the connecting link 53 . Herein, the rotational force is not transmitted to the ring gear 42 .
- the first rotary shaft 33 connected to the ring gear 42 is rotated at a rotational speed lower than that of the induction motor 51 , by the rotation of the first rotary shaft 33 , the inner tub 31 is rotated, and accordingly the laundering operation of the laundry contained in the inner tub 31 is performed.
- the second rotary shaft 35 connected with the planetary gears 47 through the planetary carrier 45 is rotated inside the first rotary shaft 33 without restriction.
- the clutch driving unit 71 is operated, while the clutch 61 is moved, the first spline shaft 56 of the connecting shaft 57 is clutched with the second spline shaft 44 of the ring gear 42 .
- the induction motor 51 is operated, the rotor 54 of the induction motor 51 is rotated, and the rotational force of the rotor 54 is simultaneously transmitted to the connecting shaft 57 and the ring gear 42 through the connecting link 53 . Accordingly, the connecting shaft 57 and the ring gear 42 are rotated as one body.
- the sun gear 49 , the planetary gears 47 , the planetary carrier 45 and the second rotary shaft 35 are rotated as one body with the connecting shaft 57 and the ring gear 42 .
- the first rotary shaft 33 connected to the ring gear 42 is rotated in a direction and at a rotational speed same with those of the induction motor 51 , by the rotation of the first rotary shaft 33 , the inner tub 31 is rotated at a high speed, and accordingly the dehydrating operation of the laundry contained in the inner tub 31 is performed.
- the induction motor as a driving motor for rotating the inner tub and including the rotation transmission means for adjusting a rotational speed of the induction motor according to the laundering operation and the dehydrating operation of the washing machine and transmitting it to the inner tub, the induction motor which is comparatively low-priced and has little noise can be efficiently applied to the washing machine.
- the washing machine in accordance with the second embodiment of the present invention includes a casing 11 in which an internal receiving space is formed and a door 15 is installed at an opening portion 13 on the front; an outer tub 21 suspended and supported by a spring 27 and a damper 29 in the casing 11 to contain wash water therein; an inner tub 31 rotatably disposed in the outer tub 21 to contain the laundry therein; a pulsator 81 rotatably fixed inside the inner tub 31 to perform agitating operation of wash water and the laundry contained in the inner tub 31 while being rotated in the laundering operation of the washing machine; an induction motor 51 which is disposed in the casing 11 and consists of a stator 52 and a rotor 54 disposed so as to maintain a certain air gap from the outer circumference of the stator 52 , and generate a rotational force for rotating the inner tube 31 by mutual electromagnetic operation with the stator 52 ; a rotation transmission means 250 for transmitting a rotational force of the induction motor 51 to
- the rotation transmission means 50 includes a connecting shaft 57 connected with the rotor 54 by a connecting link 53 so as to be rotated co-axially with the rotational center of the rotor 54 ; a sun gear 49 installed on an end of the connecting shaft 57 ; a ring gear 42 which is arranged to have a certain interval from an outer circumference of the sun gear 49 and has inscribed tooth 43 on an inner circumference thereof; a plurality of planetary gears 47 arranged between the sun gear 49 and the ring gear 42 to be meshed with the sun gear 49 and the ring gear 42 respectively; a planetary carrier 45 connected with the plural planetary gears 47 to be rotated with the planetary gears 47 when the planetary gears 47 revolve centering around the sun gear 49 ; a hollow-shaped first rotary shaft 233 connected to the ring gear 42 , supported to the outer tub 21 by a bearing 26 and fixed to the inner tub 31 in order to transmit the rotational force of the ring gear 42 to the inner tub
- the clutching device includes a first spline shaft 56 formed at a side of the connecting shaft 57 ; a second spline shaft 44 extended from a side of the ring gear 42 toward the first spline shaft 56 of the connecting shaft 57 ; a clutch 61 having a gear tooth 62 meshed with the first spline shaft 56 of the connecting shaft 57 and the second spline shaft 44 of the ring gear 42 and transmitting/cutting off the rotational force of the connecting shaft 57 to the ring gear 42 selectively while moving between the first spline shaft 56 and the second spline shaft 44 ; and a clutch driving unit 71 having a solenoid 72 disposed at a side of the clutch 61 to move the clutch 61 in a certain direction when external power is applied and a return spring 74 for returning the clutch into an initial position when the external power supply to the solenoid 72 is cut off, for rotating operating the clutch 61 according to the laundering operation and the dehydrating operation of the washing machine while being
- the operation of the washing machine in accordance with the second embodiment of the present invention will be described.
- the inner tub 31 is rotated at a rotational speed lower than that of the induction motor 51
- the pulsator 81 performs agitating operation of the laundry and wash water while being rotated in a direction opposite to the rotational direction of the inner tub 31 at a rotational speed lower than that of the induction motor 51 .
- the inner tub 31 and the pulsator 81 are rotated as one body at the same speed with the rotational speed of the induction motor 51 .
- the rotational force transmitting mechanism will be described in detail.
- the clutch driving unit 71 is operated by the control unit, while the clutch 61 is moved, the connection of the first spline shaft 56 of the connecting shaft 57 and the second spline shaft 44 of the ring gear 42 is declutched. And, when the induction motor 51 is operated, the rotor 54 of the induction motor 51 is rotated, and the rotational force of the rotor 54 is transmitted to the connecting shaft 57 through the connecting link 53 . Herein, the rotational force is not transmitted to the ring gear 42 .
- the first rotary shaft 233 connected to the ring gear 42 is rotated at a rotational speed lower than that of the induction motor 51 by the rotation of the first rotary shaft 233 , the inner tub 31 is rotated, and accordingly the laundering operation of the laundry contained in the inner tub 31 is performed
- the second rotary shaft 235 connected to the planetary carrier 45 is rotated in the revolving direction of the planetary gears 47 , namely the same direction with the rotational direction of the sun gear 49 and is rotated in the opposite direction to the rotational direction of the ring gear 42 .
- the pulsator 81 connected to the second rotary shaft 235 is rotated and performs agitating operation of the laundry contained in the inner tub 31 and wash water.
- the inner tub 31 and the pulsator 81 perform the laundering operation while being rotated in the opposite direction to each other.
- the clutch driving unit 71 is operated, while the clutch 61 is moved, the first spline shaft 56 of the connecting shaft 57 is clutched with the second spline shaft 44 of the ring gear 42 .
- the induction motor 51 is operated, the rotor 54 of the induction motor 51 is rotated, and the rotational force of the rotor 54 is simultaneously transmitted to the connecting shaft 57 and the ring gear 42 through the connecting link 53 . Accordingly, the connecting shaft 57 , the ring gear 42 and the planetary carrier 45 are rotated as one body.
- first rotary shaft 233 and the second rotary shaft 235 respectively connected with the ring gear 42 and the planetary carrier 45 are rotated in the same direction at the same rotational speed with the induction motor 51 .
- the inner tub 31 and the pulsator 81 are rotated as one body, and accordingly dehydration of the laundry contained in the inner tub 31 can be performed.
- the induction motor as a driving motor for rotating the inner tub and including the rotation transmission means for adjusting a rotational speed of the induction motor according to the laundering operation and the dehydrating operation of the washing machine and transmitting it to the inner tub, the induction motor which is comparatively low-priced and has little noise can be efficiently applied to the washing machine.
- the rotation transmission means in the laundering operation of the washing machine, the inner tub and the pulsator are rotated in the opposite direction to each other, efficiency of the agitating operation of the laundry and wash water is increased, and accordingly performance of the washing machine can be improved.
- the washing machine in accordance with the third embodiment of the present invention includes a casing 11 in which an internal receiving space is formed and a door 15 is installed at an opening portion 13 on the front; an outer tub 21 suspended and supported by a spring 27 and a damper 29 in the casing 11 to contain wash water therein; an inner tub 31 rotatably disposed in the outer tub 21 to contain the laundry therein; an induction motor 51 which is disposed in the casing 11 and consists of a stator 52 and a rotor 54 disposed to maintain a certain air gap from an outer circumference of the stator 52 and generate a rotational force for rotating the inner tub 31 by mutual electromagnetic operation with the stator 52 ; a rotation transmission means 350 for transmitting a rotational force of the induction motor 51 to the inner tub 31 at a decelerated speed in comparison with a rotational speed of the inductor motor 51 in the laundering operation of the washing machine, and for transmitting a rotational force of the induction motor 51 to the
- the rotation transmission means 350 includes a connecting shaft 57 connected with the rotor 54 by a connecting link 53 to be rotated co-axially with the rotational center of the rotor 54 ; a sun gear 49 installed at an end of the connecting shaft 57 ; a ring gear 42 which is arranged to have a certain interval from the outer circumference of the sun gear 49 and has inscribed tooth 43 on the inner circumference; plural planetary gears 47 arranged between the sun gear 49 and the ring gear 42 to be meshed with the sun gear 49 and the ring gear 42 respectively; a planetary carrier 45 connected with the plural planetary gears 47 to be rotated with the planetary gears 47 when the planetary gears 47 revolve centering around the sun gear 49 ; a hollow-shaped first rotary shaft 333 connected to the ring gear 42 and supported to the outer tub 21 by a bearing 126 ; a second rotary shaft 335 supported to the outer tub 21 by a bearing 128 , disposed to be rotated relatively to
- the clutching device includes a first spline shaft 56 formed at a side of the connecting shaft 57 ; a second spline shaft 44 extended from a side of the ring gear 42 to the first spline shaft 56 of the connecting shaft 57 ; a clutch 61 having a gear tooth 62 meshed with the first spline shaft 56 of the connecting shaft 57 and the second spline shaft 44 of the ring gear 42 and transmitting/cutting off the rotational force of the connecting shaft 57 to the ring gear 42 selectively while moving between the first spline shaft 56 and the second spline shaft 44 ; and a clutch driving unit 71 having a solenoid 72 disposed at a side of the clutch 61 to move the clutch 61 in a certain direction when external power is applied and a return spring 74 for returning the clutch into an initial position when the external power supply to the solenoid 72 is cut off, for rotating operating the clutch 61 according to the laundering operation and the dehydrating operation of the washing machine while being
- the clutch driving unit 71 is operated by the control unit, while the clutch 61 is moved, the connection of the first spline shaft 56 of the connecting shaft 57 and the second spline shaft 44 of the ring gear 42 is declutched. And, when the induction motor 51 is operated, the rotor 54 of the induction motor 51 is rotated, and the rotational force of the rotor 54 is transmitted to the connecting shaft 57 through the connecting link 53 . Herein, the rotational force is not transmitted to the ring gear 42 .
- the planetary carrier 45 is rotated in the same direction with the rotational direction of the sun gear 49 by the revolution of the planetary gears 47 .
- the ring gear 42 and the planetary carrier 45 are rotated at a speed lower than a rotational speed of the sun gear 49 .
- the first rotary shaft 333 connected to the ring gear 42 is rotated at a rotational speed lower than that of the induction motor 51 without restriction, and the second rotary shaft 335 connected to the planetary carrier 45 is rotated by the rotation of the planetary carrier 45 .
- the rotation of the second rotary shaft 335 the inner tub 31 is rotated, and accordingly the laundering operation of the laundry contained in the inner tub 31 is performed.
- the clutch driving unit 71 is operated, while the clutch 61 is moved, the first spline shaft 56 of the connecting shaft 57 is clutched with the second spline shaft 44 of the ring gear 42 .
- the induction motor 51 is operated, the rotor 54 of the induction motor 51 is rotated, and the rotational force of the rotor 54 is simultaneously transmitted to the connecting shaft 57 and the ring gear 42 through the connecting link 53 . Accordingly, the connecting shaft 57 and the ring gear 42 are rotated as one body.
- the sun gear 49 , the planetary gears 47 , the planetary carrier 45 and the second rotary shaft 335 are rotated as one body with the connecting shaft 57 and the ring gear 42 . Accordingly, the first rotary shaft 333 and the second rotary shaft 335 respectively connected to the ring gear 42 and the planetary carrier 45 are rotated in a direction and at a rotational speed same with those of the induction motor 51 , by the rotation of the second rotary shaft 335 , the inner tub 31 is rotated at a high speed, and accordingly the dehydrating operation of the laundry contained in the inner tub 31 is performed.
- FIGS. 8 through 10 a washing machine in accordance with a fourth embodiment of the present invention will be described with reference to FIGS. 8 through 10.
- parts same with those of the above-mentioned embodiments will have the same reference numerals.
- the washing machine in accordance with the fourth embodiment of the present invention includes a casing 11 in which an internal receiving space is formed and a door 15 is installed at an opening portion 13 on the front; an outer tub 21 suspended and supported by a spring 27 and a damper 29 in the casing 11 to contain wash water therein; an inner tub 31 rotatably disposed in the outer tub 21 to contain the laundry therein; an induction motor 51 which is disposed in the casing 11 and consists of a stator 52 and a rotor 54 disposed so as to maintain a certain air gap from the outer circumference of the stator 52 and generate a rotational force for rotating the inner tub 31 by mutual electromagnetic operation with the stator 52 ; a rotation transmission means 450 for transmitting a rotational force of the induction motor 51 to the inner tub 31 at a decelerated speed in comparison with a rotational speed of the inductor motor 51 in the laundering operation of the washing machine and transmitting a rotational force of the induction motor 51 to
- the rotation transmission means 450 includes a connecting shaft 57 connected with the rotor 54 by a connecting link 53 to be rotated co-axially with the rotational center of the rotor 54 ; a sun gear 49 installed on an end of the connecting shaft 57 ; a ring gear 42 which is arranged to have a certain interval from the outer circumference of the sun gear 49 and has inscribed tooth 43 on the inner circumference; plural planetary gears 47 arranged between the sun gear 49 and the ring gear 42 to be meshed with the sun gear 49 and the ring gear 42 respectively; a planetary carrier 45 connected to the plural planetary gears 47 to be rotated with the planetary gears 47 when the planetary gears 47 revolve centering around the sun gear 49 ; a hollow-shaped first rotary shaft 433 connected to the ring gear 42 and supported to the outer tub 21 by a bearing 126 ; a second rotary shaft 235 supported to the outer tub 21 by a bearing 128 , disposed so as to be relatively
- the clutching device includes a first spline shaft 56 formed at a side of the connecting shaft 57 ; a second spline shaft 44 extended from a side of the ring gear 42 toward the first spline shaft 56 of the connecting shaft 57 ; a clutch 61 having a gear tooth 62 meshed with the first spline shaft 56 of the connecting shaft 57 and the second spline shaft 44 of the ring gear 42 and selectively transmitting or cutting off the rotational force of the connecting shaft 57 to the ring gear 42 while moving between the first spline shaft 56 and the second spline shaft 44 ; and a clutch driving unit 71 having a solenoid 72 disposed at a side of the clutch 61 to move the clutch 61 in a certain direction when external power is applied and a return spring 74 for returning the clutch into an initial position when the external power supply to the solenoid 72 is cut off, for operating the clutch 61 according to the laundering operation and the dehydrating operation of the washing machine while being controlled by
- the speed adjusting device 91 includes a band 92 wound around the outer circumference of the ring gear 42 ; and a band driving unit 96 disposed at a side of the band 92 to provide tension to the band 92 in order to make the band 92 approach to or be separated from the outer circumference of the ring gear 42 .
- the band driving unit 96 consists of a solenoid 97 fixed to both ends of the band 92 so as to act power for making both ends of the band 92 approach each other in external power supply; and a return spring 98 for returning the band 92 into an initial state when external power supply to the solenoid 97 is cut off.
- the band driving unit 96 adjusts a rotational speed of the second rotary shaft 435 connected to the planetary carrier 45 by braking or releasing the ring gear 42 while adjusting a frictional force between the band 92 and the outer circumference of the ring gear 42 .
- the clutch driving unit 71 is operated by the control unit, while the clutch 61 is moved, the connection of the first spline shaft 56 of the connecting shaft 57 and the second spline shaft 44 of the ring gear 42 is declutched. And, when the induction motor 51 is operated, the rotor 54 of the induction motor 51 is rotated, and the rotational force of the rotor 54 is transmitted to the connecting shaft 57 through the connecting link 53 . Herein, the rotational force is not transmitted to the ring gear 42 .
- the planetary carrier 45 is rotated in the same direction of the rotational direction of the sun gear 49 by the revolution of the planetary gears 47 .
- the ring gear 42 and the planetary carrier 45 are rotated at a speed lower than a rotational speed of the sun gear 49 .
- the first rotary shaft 433 connected to the ring gear 42 is rotated at a rotational speed lower than that of the induction motor 51 without restriction, and the second rotary shaft 435 connected to the planetary carrier 45 is rotated by the rotation of the planetary carrier 45 .
- the rotation of the second rotary shaft 435 the inner tub 31 is rotated, and accordingly the laundering operation of the laundry contained in the inner tub 31 is performed
- the control unit operates the band driving unit 96 of the speed adjusting device 91 , by the operation of the band driving unit 96 , a frictional force between the band 92 and the ring gear 42 is adjusted, and accordingly braking or releasing of rotation of the ring gear 42 is performed. According to that, a rotational speed of the second rotary shaft 43 connected to the planetary carrier 45 is adjusted.
- a frictional force between the band 92 and the outer circumference of the ring gear 42 is increased, a rotational force of the second rotary shaft 435 is increased, when the ring gear 42 is stopped, a rotational force of the second rotary shaft 435 is maximum.
- the clutch driving unit 71 is operated, while the clutch 61 is moved, the first spline shaft 56 of the connecting shaft 57 is clutched with the second spline shaft 44 of the ring gear 42 .
- the induction motor 51 is operated, the rotor 54 of the induction motor 51 is rotated, and the rotational force of the rotor 54 is simultaneously transmitted to the connecting shaft 57 and the ring gear 42 through the connecting link 53 . Accordingly, the connecting shaft 57 and the ring gear 42 are rotated as one body.
- the sun gear 49 , the planetary gears 47 , the planetary carrier 45 and the second rotary shaft 35 are rotated as one body with the connecting shaft 57 and the ring gear 42 . Accordingly, the first rotary shaft 433 and the second rotary shaft 435 respectively connected to the ring gear 42 and the planetary carrier 45 are rotated in a direction and at a rotational speed same with those of the induction motor 51 , by the rotation of the second rotary shaft 435 , the inner tub 31 is rotated at a high speed, and accordingly the dehydrating operation of the laundry contained in the inner tub 31 is performed.
- the control unit makes the band 92 and the outer circumference of the ring gear 42 be separated by operating the band driving unit 96 of the speed adjusting device 91 .
- the induction motor as a driving motor for rotating the inner tub and including the rotation transmission means for adjusting a rotational speed of the induction motor according to the laundering operation and the dehydrating operation of the washing machine and transmitting it to the inner tub, the induction motor which is comparatively low-priced and has little noise can be efficiently applied to the washing machine.
Landscapes
- Engineering & Computer Science (AREA)
- Textile Engineering (AREA)
- Power Engineering (AREA)
- Main Body Construction Of Washing Machines And Laundry Dryers (AREA)
- Connection Of Motors, Electrical Generators, Mechanical Devices, And The Like (AREA)
Abstract
A washing machine comprises a washing machine casing; an outer tub disposed in the casing, for containing water therein; an inner tub rotatably disposed in the outer tub, for containing laundry therein; an induction motor for generating a rotational force; and a rotation transmission means for transmitting a rotational force of the induction motor to the inner tub with a rotational speed decelerated from a rotational speed of the induction motor in laundering operation, and with a rotational speed identical to the rotational speed of the induction motor in dehydrating operation.
Description
- 1. Field of the Invention
- The present invention relates to a washing machine, and in particular to a washing machine capable of lowering production cost and noise, by using an induction motor as a driving motor for rotating a tub.
- 2. Description of the Related Art
- FIG. 1 is a sectional view illustrating a conventional washing machine. As depicted in FIG. 1, a conventional washing machine includes a
casing 111 in which adoor 115 is installed at anopening portion 113 on the front; anouter tub 121 disposed inside thecasing 111, for containing water; aninner tub 131 installed inside theouter tub 121 of which arotary shaft 133 is arranged horizontally, for containing laundry therein; adriving motor 141 connected with therotary shaft 133 of theinner tub 131, for rotating theinner tub 131; aspring 127 and adamper 129 respectively arranged on the upper and lower portions of theouter tub 121 in order to support and buff theouter tub 121. - The
rotary shaft 133 of theinner tub 131 is rotatably supported by at least one bearing 125 installed in the center of asupport plate 123 arranged on the rear of theouter tub 121. - The
driving motor 141 includes astator 143 fixed to thesupport plate 123 of theouter tub 121; arotor 145 comprising a permanent magnet disposed around thestator 143 with a certain air gap and rotated by mutual electromagnetic with thestator 143; and arotor link 146 for connecting therotor 145 with therotary shaft 133 so as to transmit a rotational force of therotor 145 to therotary shaft 133 of theinner tub 131. - In that construction, when the
driving motor 141 is operated, the rotational force of the drivingmotor 141 is transmitted to theinner tub 131 through therotary shaft 133, and accordingly the washing machine performs laundering and dehydrating operations of the laundry in theinner tub 131 by the rotation of theinner tub 131. - In the conventional washing machine, a brushless DC motor capable of adjusting a speed for itself or a universal motor connected with the rotary shaft of the inner tub by a belt-pulley transmission mechanism are used as the driving motor for rotating the inner tub. However, in case of the brushless DC motor, because a unit cost is high, a production cost of a washing machine may rise, and in case of the universal motor, vibration and noise may be great in the structural aspect.
- Therefore, an object of the present invention is to provide a washing machine capable of lowering production cost and noise, by using an induction motor as a driving motor for rotating a tub and constructing an optimum rotational force transmitting mechanism.
- To achieve these and in accordance with the purpose of the present invention, it can be characterized and is comprised of a washing machine in accordance with the present invention includes a washing machine casing; an outer tub disposed in the casing, for containing water therein; an inner tub rotatably disposed in the outer tub, for containing laundry therein; an induction motor for generating a rotational force; and a rotation transmission means for transmitting a rotational force of the induction motor to the inner tub with a rotational speed decelerated from a rotational speed of the induction motor in laundering operation, and with a rotational speed identical to the rotational speed of the induction motor in dehydrating operation.
- The accompanying drawings, which are included to provide a further understanding of the invention and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and together with the description serve to explain the principles of the invention.
- In the drawings:
- FIG. 1 is a sectional view illustrating the conventional washing machine;
- FIG. 2 is a sectional view illustrating a washing machine in accordance with a first embodiment of the present invention;
- FIG. 3 is an enlarged-sectional view illustrating a driving motor and a rotational force transmitting mechanism of the washing machine in accordance with the first embodiment of the present invention;
- FIG. 4 is a sectional view illustrating a washing machine in accordance with a second embodiment of the present invention;
- FIG. 5 is an enlarged-sectional view illustrating a driving motor and a rotational force transmitting mechanism of the washing machine in accordance with the second embodiment of the present invention;
- FIG. 6 is a sectional view illustrating a washing machine in accordance with a third embodiment of the present invention;
- FIG. 7 is an enlarged-sectional view illustrating a driving motor and a rotational force transmitting mechanism of the washing machine in accordance with the third embodiment of the present invention;
- FIG. 8 is a sectional view illustrating a washing machine in accordance with a fourth embodiment of the present invention;
- FIG. 9 is an enlarged-sectional view illustrating a driving motor and a rotational force transmitting mechanism of the washing machine in accordance with the fourth embodiment of the present invention; and
- FIG. 10 is a sectional view taken along a line X-X in FIG. 9.
- The preferred embodiment of the present invention will be described with reference to accompanying drawings.
- Hereinafter, a washing machine in accordance with a first embodiment of the present invention will be described with reference to FIGS. 2 and 3.
- As depicted in FIG. 2, the washing machine in accordance with the first embodiment of the present invention includes a
casing 11 in which an internal receiving space is formed and adoor 15 is installed at anopening portion 13 on the front; anouter tub 21 for containing wash water suspended and supported by aspring 27 and adamper 29 in thecasing 11; aninner tub 31 for containing the laundry therein rotatably disposed in theouter tub 21; aninduction motor 51 which is disposed in thecasing 11 and consists of astator 52 and arotor 54 disposed to maintain a certain air gap from an outer circumference of thestator 52, and generate a rotational force for rotating theinner tub 31 by mutual electromagnetic operation with thestator 52; a rotation transmission means 50 for transmitting a rotational force of theinduction motor 51 to theinner tub 31 with a rotational speed decelerated from a rotational speed of theinduction motor 51 in the laundering operation of the washing machine, and for transmitting a rotational force of theinduction motor 51 to theinner tub 31 with a rotational speed identical to the rotational speed of theinduction motor 51 in the dehydrating operation of the washing machine; and a control unit (not shown) for controlling the rotation transmission means 50 automatically according to the laundering operation and the dehydrating operation of the washing machine. - As depicted in FIG. 3, the rotation transmission means50 includes a connecting
shaft 57 connected with therotor 54 by a connectinglink 53 to be rotated co-axially with the rotational center of therotor 54; asun gear 49 installed on an end of the connectingshaft 57; aring gear 42 which is arranged to have a certain interval with an outer circumference of thesun gear 49 and has inscribedtooth 43 on an inner circumference thereof; a plurality ofplanetary gears 47 arranged between thesun gear 49 and thering gear 42 to be meshed with thesun gear 49 and thering gear 42 respectively; aplanetary carrier 45 connected with the pluralplanetary gears 47 to be rotated with theplanetary gears 47 when theplanetary gears 47 revolve centering around thesun gear 49; a hollow-shaped firstrotary shaft 33 connected to thering gear 42, supported to theouter tub 21 by abearing 26 and fixed to theinner tub 31 in order to transmit the rotational force of thering gear 42 to theinner tub 31; a secondrotary shaft 35 disposed inside the firstrotary shaft 33 to be rotated relatively to the firstrotary shaft 33 and connected to theplanetary carrier 45 to rotate in the revolving direction of theplanetary gears 47, namely, in the rotating direction of theplanetary carrier 45; and a clutching device for transmitting the rotational force of theinduction motor 51 only to the connectingshaft 57 or to the connectingshaft 57 and thering gear 42 simultaneously. - The clutching device includes a
first spline shaft 56 formed at a side of the connectingshaft 57; asecond spline shaft 44 extended from a side of thering gear 42 toward thefirst spline shaft 56 of theconnecting shaft 57; aclutch 61 having agear tooth 62 meshed with thefirst spline shaft 56 of the connectingshaft 57 and thesecond spline shaft 44 of thering gear 42 and transmitting/cutting off the rotational force of the connectingshaft 57 to thering gear 42 selectively while moving between thefirst spline shaft 56 and thesecond spline shaft 44; and aclutch driving unit 71 having asolenoid 72 disposed at a side of theclutch 61 to move theclutch 61 in a certain direction when an external power is applied thereto and areturn spring 74 for returning the clutch into an initial position when the external power supply to thesolenoid 72 is cut off, for rotating operating theclutch 61 according to the laundering operation and the dehydrating operation of the washing machine while being controlled by the control unit. - The operation of the washing machine in accordance with the first embodiment of the present invention will be described. The
inner tub 31 is rotated at a rotational speed lower than that of theinduction motor 51 in the laundering operation, and theinner tub 31 is rotated at a rotational speed same to that of theinduction motor 51 in the dehydrating operation. The rotational force transmitting mechanism will be described in detail. - First, in the laundering operation of the washing machine, the
clutch driving unit 71 is operated by the control unit, while theclutch 61 is moved, the connection of thefirst spline shaft 56 of the connectingshaft 57 and thesecond spline shaft 44 of thering gear 42 is declutched. And, when theinduction motor 51 is operated, therotor 54 of theinduction motor 51 is rotated, and the rotational force of therotor 54 is transmitted to the connectingshaft 57 through the connectinglink 53. Herein, the rotational force is not transmitted to thering gear 42. - And, when the
sun gear 49 installed at the end of the connectingshaft 57 is rotated, by the rotation of thesun gear 49, theplanetary gears 47 meshed with thesun gear 49 are rotated in a direction opposite to the rotational direction of thesun gear 49, simultaneously, theplanetary gears 47 are revolved in the same direction with the rotational direction of thesun gear 49 centering around thesun gear 49. And, by the rotation of theplanetary gears 47, thering gear 42 is rotated in a direction opposite to the rotational direction of thesun gear 49, namely, the same direction with the rotational direction of theplanetary gears 47. Herein, thering gear 42 is rotated at a speed lower than a rotational speed of thesun gear 49. - Accordingly, the first
rotary shaft 33 connected to thering gear 42 is rotated at a rotational speed lower than that of theinduction motor 51, by the rotation of the firstrotary shaft 33, theinner tub 31 is rotated, and accordingly the laundering operation of the laundry contained in theinner tub 31 is performed. - Herein, the second
rotary shaft 35 connected with theplanetary gears 47 through theplanetary carrier 45 is rotated inside the firstrotary shaft 33 without restriction. - In the meantime, in the dehydrating operation of the washing machine, by the control unit, the
clutch driving unit 71 is operated, while theclutch 61 is moved, thefirst spline shaft 56 of the connectingshaft 57 is clutched with thesecond spline shaft 44 of thering gear 42. And, when theinduction motor 51 is operated, therotor 54 of theinduction motor 51 is rotated, and the rotational force of therotor 54 is simultaneously transmitted to the connectingshaft 57 and thering gear 42 through the connectinglink 53. Accordingly, the connectingshaft 57 and thering gear 42 are rotated as one body. In addition, thesun gear 49, theplanetary gears 47, theplanetary carrier 45 and the secondrotary shaft 35 are rotated as one body with the connectingshaft 57 and thering gear 42. The firstrotary shaft 33 connected to thering gear 42 is rotated in a direction and at a rotational speed same with those of theinduction motor 51, by the rotation of the firstrotary shaft 33, theinner tub 31 is rotated at a high speed, and accordingly the dehydrating operation of the laundry contained in theinner tub 31 is performed. - In the washing machine in accordance with the first embodiment of the present invention, by using the induction motor as a driving motor for rotating the inner tub and including the rotation transmission means for adjusting a rotational speed of the induction motor according to the laundering operation and the dehydrating operation of the washing machine and transmitting it to the inner tub, the induction motor which is comparatively low-priced and has little noise can be efficiently applied to the washing machine.
- Hereinafter, a washing machine in accordance with a second embodiment of the present invention will be described with reference to FIGS. 4 and 5. Hereinafter, parts same with those of the first embodiment will have the same reference numerals.
- As depicted in FIG. 4, the washing machine in accordance with the second embodiment of the present invention includes a
casing 11 in which an internal receiving space is formed and adoor 15 is installed at anopening portion 13 on the front; anouter tub 21 suspended and supported by aspring 27 and adamper 29 in thecasing 11 to contain wash water therein; aninner tub 31 rotatably disposed in theouter tub 21 to contain the laundry therein; apulsator 81 rotatably fixed inside theinner tub 31 to perform agitating operation of wash water and the laundry contained in theinner tub 31 while being rotated in the laundering operation of the washing machine; aninduction motor 51 which is disposed in thecasing 11 and consists of astator 52 and arotor 54 disposed so as to maintain a certain air gap from the outer circumference of thestator 52, and generate a rotational force for rotating theinner tube 31 by mutual electromagnetic operation with thestator 52; a rotation transmission means 250 for transmitting a rotational force of theinduction motor 51 to theinner tub 31 and thepulsator 81 so that theinner tub 31 and thepulsator 81 are rotated in the opposition direction to each other with a rotational speed decelerated from a rotational speed of theinduction motor 51 in the laundering operation of the washing machine, and for transmitting a rotational force of theinduction motor 51 to theinner tub 31 and thepulsator 81 so that theinner tube 31 and thepulsator 81 are rotated in the identical direction to each other with a rotational speed identical to the rotational speed of the induction motor in the dehydrating operation of the washing machine; and a control unit (not shown) for controlling the rotation transmission means 250 automatically according to the laundering operation and the dehydrating operation of the washing machine. - As depicted in FIG. 5, the rotation transmission means50 includes a connecting
shaft 57 connected with therotor 54 by a connectinglink 53 so as to be rotated co-axially with the rotational center of therotor 54; asun gear 49 installed on an end of the connectingshaft 57; aring gear 42 which is arranged to have a certain interval from an outer circumference of thesun gear 49 and has inscribedtooth 43 on an inner circumference thereof; a plurality ofplanetary gears 47 arranged between thesun gear 49 and thering gear 42 to be meshed with thesun gear 49 and thering gear 42 respectively; aplanetary carrier 45 connected with the pluralplanetary gears 47 to be rotated with theplanetary gears 47 when theplanetary gears 47 revolve centering around thesun gear 49; a hollow-shaped firstrotary shaft 233 connected to thering gear 42, supported to theouter tub 21 by abearing 26 and fixed to theinner tub 31 in order to transmit the rotational force of thering gear 42 to theinner tub 31; a secondrotary shaft 235 supported to the firstrotary shaft 233 by abearing 28 in the firstrotary shaft 233 so as to be rotated relatively to the firstrotary shaft 233 and connected with thepulsator 81 and theplanetary carrier 45 so as to transmit the rotational force of theplanetary carrier 45 to thepulsator 81; and a clutching device for transmitting the rotational force of theinduction motor 51 only to the connectingshaft 57 or to the connectingshaft 57 and thering gear 42 simultaneously. - The clutching device includes a
first spline shaft 56 formed at a side of the connectingshaft 57; asecond spline shaft 44 extended from a side of thering gear 42 toward thefirst spline shaft 56 of theconnecting shaft 57; aclutch 61 having agear tooth 62 meshed with thefirst spline shaft 56 of the connectingshaft 57 and thesecond spline shaft 44 of thering gear 42 and transmitting/cutting off the rotational force of the connectingshaft 57 to thering gear 42 selectively while moving between thefirst spline shaft 56 and thesecond spline shaft 44; and aclutch driving unit 71 having asolenoid 72 disposed at a side of theclutch 61 to move theclutch 61 in a certain direction when external power is applied and areturn spring 74 for returning the clutch into an initial position when the external power supply to thesolenoid 72 is cut off, for rotating operating theclutch 61 according to the laundering operation and the dehydrating operation of the washing machine while being controlled by the control unit. - The operation of the washing machine in accordance with the second embodiment of the present invention will be described. In the laundering operation of the washing machine, the
inner tub 31 is rotated at a rotational speed lower than that of theinduction motor 51, herein, thepulsator 81 performs agitating operation of the laundry and wash water while being rotated in a direction opposite to the rotational direction of theinner tub 31 at a rotational speed lower than that of theinduction motor 51. Herein, in the dehydrating operation of the washing machine, theinner tub 31 and thepulsator 81 are rotated as one body at the same speed with the rotational speed of theinduction motor 51. The rotational force transmitting mechanism will be described in detail. - First, in the laundering operation of the washing machine, the
clutch driving unit 71 is operated by the control unit, while theclutch 61 is moved, the connection of thefirst spline shaft 56 of the connectingshaft 57 and thesecond spline shaft 44 of thering gear 42 is declutched. And, when theinduction motor 51 is operated, therotor 54 of theinduction motor 51 is rotated, and the rotational force of therotor 54 is transmitted to the connectingshaft 57 through the connectinglink 53. Herein, the rotational force is not transmitted to thering gear 42. - And, when the
sun gear 49 installed at the end of the connectingshaft 57 is rotated, by the rotation of thesun gear 49, theplanetary gears 47 meshed with thesun gear 49 are rotated in a direction opposite to the rotational direction of thesun gear 49, simultaneously, theplanetary gears 47 are revolved in the same direction with the rotational direction of thesun gear 49 centering around thesun gear 49. And, by the rotation of theplanetary gears 47, thering gear 42 is rotated in a direction opposite to the rotational direction of thesun gear 49, namely, the same direction with the rotational direction of the planetary gears 47. Herein, thering gear 42 is rotated at a speed lower than a rotational speed of thesun gear 49. - Accordingly, the first
rotary shaft 233 connected to thering gear 42 is rotated at a rotational speed lower than that of theinduction motor 51 by the rotation of the firstrotary shaft 233, theinner tub 31 is rotated, and accordingly the laundering operation of the laundry contained in theinner tub 31 is performed - Herein, the second
rotary shaft 235 connected to theplanetary carrier 45 is rotated in the revolving direction of theplanetary gears 47, namely the same direction with the rotational direction of thesun gear 49 and is rotated in the opposite direction to the rotational direction of thering gear 42. And, by the rotation of theplanetary carrier 45, thepulsator 81 connected to the secondrotary shaft 235 is rotated and performs agitating operation of the laundry contained in theinner tub 31 and wash water. Herein, theinner tub 31 and thepulsator 81 perform the laundering operation while being rotated in the opposite direction to each other. - In the meantime, in the dehydrating operation of the washing machine, by the control unit, the
clutch driving unit 71 is operated, while the clutch 61 is moved, thefirst spline shaft 56 of the connectingshaft 57 is clutched with thesecond spline shaft 44 of thering gear 42. And, when theinduction motor 51 is operated, therotor 54 of theinduction motor 51 is rotated, and the rotational force of therotor 54 is simultaneously transmitted to the connectingshaft 57 and thering gear 42 through the connectinglink 53. Accordingly, the connectingshaft 57, thering gear 42 and theplanetary carrier 45 are rotated as one body. Accordingly, the firstrotary shaft 233 and the secondrotary shaft 235 respectively connected with thering gear 42 and theplanetary carrier 45 are rotated in the same direction at the same rotational speed with theinduction motor 51. By the rotation of the first and secondrotary shafts inner tub 31 and thepulsator 81 are rotated as one body, and accordingly dehydration of the laundry contained in theinner tub 31 can be performed. - In the washing machine in accordance with the second embodiment of the present invention, by using the induction motor as a driving motor for rotating the inner tub and including the rotation transmission means for adjusting a rotational speed of the induction motor according to the laundering operation and the dehydrating operation of the washing machine and transmitting it to the inner tub, the induction motor which is comparatively low-priced and has little noise can be efficiently applied to the washing machine.
- In addition, by the rotation transmission means, in the laundering operation of the washing machine, the inner tub and the pulsator are rotated in the opposite direction to each other, efficiency of the agitating operation of the laundry and wash water is increased, and accordingly performance of the washing machine can be improved.
- Hereinafter, a washing machine in accordance with a third embodiment of the present invention will be described with reference to FIGS. 6 and 7. Hereinafter, parts same with those of the above-mentioned embodiments will have the same reference numerals.
- As depicted in FIG. 6, the washing machine in accordance with the third embodiment of the present invention includes a casing11 in which an internal receiving space is formed and a door 15 is installed at an opening portion 13 on the front; an outer tub 21 suspended and supported by a spring 27 and a damper 29 in the casing 11 to contain wash water therein; an inner tub 31 rotatably disposed in the outer tub 21 to contain the laundry therein; an induction motor 51 which is disposed in the casing 11 and consists of a stator 52 and a rotor 54 disposed to maintain a certain air gap from an outer circumference of the stator 52 and generate a rotational force for rotating the inner tub 31 by mutual electromagnetic operation with the stator 52; a rotation transmission means 350 for transmitting a rotational force of the induction motor 51 to the inner tub 31 at a decelerated speed in comparison with a rotational speed of the inductor motor 51 in the laundering operation of the washing machine, and for transmitting a rotational force of the induction motor 51 to the inner tub 31 at a speed same with a rotational speed of the inductor motor 51 in the dehydrating operation of the washing machine; and a control unit (not shown) for controlling the rotation transmission means 350 automatically according to the laundering operation and the dehydrating operation of the washing machine.
- As depicted in FIG. 7, the rotation transmission means350 includes a connecting shaft 57 connected with the rotor 54 by a connecting link 53 to be rotated co-axially with the rotational center of the rotor 54; a sun gear 49 installed at an end of the connecting shaft 57; a ring gear 42 which is arranged to have a certain interval from the outer circumference of the sun gear 49 and has inscribed tooth 43 on the inner circumference; plural planetary gears 47 arranged between the sun gear 49 and the ring gear 42 to be meshed with the sun gear 49 and the ring gear 42 respectively; a planetary carrier 45 connected with the plural planetary gears 47 to be rotated with the planetary gears 47 when the planetary gears 47 revolve centering around the sun gear 49; a hollow-shaped first rotary shaft 333 connected to the ring gear 42 and supported to the outer tub 21 by a bearing 126; a second rotary shaft 335 supported to the outer tub 21 by a bearing 128, disposed to be rotated relatively to the first rotary shaft 33, and connected with the inner tub 31 and planetary carrier 45 to transmit the rotational force of the planetary carrier 45 to the inner tub 31; and a clutching device for transmitting the rotational force of the induction motor 51 only to the connecting shaft 57 or to the connecting shaft 57 and the ring gear 42 simultaneously.
- The clutching device includes a
first spline shaft 56 formed at a side of the connectingshaft 57; asecond spline shaft 44 extended from a side of thering gear 42 to thefirst spline shaft 56 of the connectingshaft 57; a clutch 61 having agear tooth 62 meshed with thefirst spline shaft 56 of the connectingshaft 57 and thesecond spline shaft 44 of thering gear 42 and transmitting/cutting off the rotational force of the connectingshaft 57 to thering gear 42 selectively while moving between thefirst spline shaft 56 and thesecond spline shaft 44; and aclutch driving unit 71 having asolenoid 72 disposed at a side of the clutch 61 to move the clutch 61 in a certain direction when external power is applied and areturn spring 74 for returning the clutch into an initial position when the external power supply to thesolenoid 72 is cut off, for rotating operating the clutch 61 according to the laundering operation and the dehydrating operation of the washing machine while being controlled by the control unit. - The operation of the washing machine in accordance with the third embodiment of the present invention will be described. Unlike the first embodiment, in the washing machine in accordance with the third embodiment of the present invention, the first
rotary shaft 333 connected to thering gear 42 is rotated as a free end, and the secondrotary shaft 335 connected to theplanetary carrier 45 is connected to theinner tub 31. Accordingly, theinner tub 31 is rotated in the same direction with the rotational direction of theinduction motor 51 at a decelerated speed. The rotational transmitting mechanism will be described in detail. - First, in the laundering operation of the washing machine, the
clutch driving unit 71 is operated by the control unit, while the clutch 61 is moved, the connection of thefirst spline shaft 56 of the connectingshaft 57 and thesecond spline shaft 44 of thering gear 42 is declutched. And, when theinduction motor 51 is operated, therotor 54 of theinduction motor 51 is rotated, and the rotational force of therotor 54 is transmitted to the connectingshaft 57 through the connectinglink 53. Herein, the rotational force is not transmitted to thering gear 42. - And, when the
sun gear 49 installed at the end of the connectingshaft 57 is rotated, by the rotation of thesun gear 49, theplanetary gears 47 meshed with thesun gear 49 are rotated in a direction opposite to the rotational direction of thesun gear 49, simultaneously, theplanetary gears 47 are revolved in the same direction with the rotational direction of thesun gear 49 centering around thesun gear 49. And, by the rotation of theplanetary gears 47, thering gear 42 is rotated in a direction opposite to the rotational direction of thesun gear 49, namely, the same direction with the rotational direction of the planetary gears 47. In addition, theplanetary carrier 45 is rotated in the same direction with the rotational direction of thesun gear 49 by the revolution of the planetary gears 47. Herein, thering gear 42 and theplanetary carrier 45 are rotated at a speed lower than a rotational speed of thesun gear 49. - Accordingly, the first
rotary shaft 333 connected to thering gear 42 is rotated at a rotational speed lower than that of theinduction motor 51 without restriction, and the secondrotary shaft 335 connected to theplanetary carrier 45 is rotated by the rotation of theplanetary carrier 45. And, by the rotation of the secondrotary shaft 335, theinner tub 31 is rotated, and accordingly the laundering operation of the laundry contained in theinner tub 31 is performed. - In the meantime, in the dehydrating operation of the washing machine, by the control unit, the
clutch driving unit 71 is operated, while the clutch 61 is moved, thefirst spline shaft 56 of the connectingshaft 57 is clutched with thesecond spline shaft 44 of thering gear 42. And, when theinduction motor 51 is operated, therotor 54 of theinduction motor 51 is rotated, and the rotational force of therotor 54 is simultaneously transmitted to the connectingshaft 57 and thering gear 42 through the connectinglink 53. Accordingly, the connectingshaft 57 and thering gear 42 are rotated as one body. In addition, thesun gear 49, theplanetary gears 47, theplanetary carrier 45 and the secondrotary shaft 335 are rotated as one body with the connectingshaft 57 and thering gear 42. Accordingly, the firstrotary shaft 333 and the secondrotary shaft 335 respectively connected to thering gear 42 and theplanetary carrier 45 are rotated in a direction and at a rotational speed same with those of theinduction motor 51, by the rotation of the secondrotary shaft 335, theinner tub 31 is rotated at a high speed, and accordingly the dehydrating operation of the laundry contained in theinner tub 31 is performed. - Advantages of the washing machine in accordance with the third embodiment of the present invention are the same with those of the above-mentioned embodiments.
- Hereinafter, a washing machine in accordance with a fourth embodiment of the present invention will be described with reference to FIGS. 8 through 10. Hereinafter, parts same with those of the above-mentioned embodiments will have the same reference numerals.
- As depicted in FIG. 8, the washing machine in accordance with the fourth embodiment of the present invention includes a casing11 in which an internal receiving space is formed and a door 15 is installed at an opening portion 13 on the front; an outer tub 21 suspended and supported by a spring 27 and a damper 29 in the casing 11 to contain wash water therein; an inner tub 31 rotatably disposed in the outer tub 21 to contain the laundry therein; an induction motor 51 which is disposed in the casing 11 and consists of a stator 52 and a rotor 54 disposed so as to maintain a certain air gap from the outer circumference of the stator 52 and generate a rotational force for rotating the inner tub 31 by mutual electromagnetic operation with the stator 52; a rotation transmission means 450 for transmitting a rotational force of the induction motor 51 to the inner tub 31 at a decelerated speed in comparison with a rotational speed of the inductor motor 51 in the laundering operation of the washing machine and transmitting a rotational force of the induction motor 51 to the inner tub 31 at a speed same with a rotational speed of the inductor motor 51 in the dehydrating operation of the washing machine; a speed adjusting device 91 for adjusting a rotational speed deceleration quantity of the rotation transmission means 450 in the laundering operation of the washing machine; and a control unit (not shown) for controlling the rotation transmission means 250 and the speed adjusting device 91 automatically according to the laundering operation and the dehydrating operation of the washing machine.
- As depicted in FIG. 9, the rotation transmission means450 includes a connecting shaft 57 connected with the rotor 54 by a connecting link 53 to be rotated co-axially with the rotational center of the rotor 54; a sun gear 49 installed on an end of the connecting shaft 57; a ring gear 42 which is arranged to have a certain interval from the outer circumference of the sun gear 49 and has inscribed tooth 43 on the inner circumference; plural planetary gears 47 arranged between the sun gear 49 and the ring gear 42 to be meshed with the sun gear 49 and the ring gear 42 respectively; a planetary carrier 45 connected to the plural planetary gears 47 to be rotated with the planetary gears 47 when the planetary gears 47 revolve centering around the sun gear 49; a hollow-shaped first rotary shaft 433 connected to the ring gear 42 and supported to the outer tub 21 by a bearing 126; a second rotary shaft 235 supported to the outer tub 21 by a bearing 128, disposed so as to be relatively rotated to the first rotary shaft 433 and connected to the inner tub 31 and the planetary carrier 45 to transmit the rotational force of the planetary carrier 45 to the inner tub 31; and a clutching device for transmitting the rotational force of the induction motor 51 only to the connecting shaft 57 or to the connecting shaft 57 and the ring gear 42 simultaneously.
- The clutching device includes a
first spline shaft 56 formed at a side of the connectingshaft 57; asecond spline shaft 44 extended from a side of thering gear 42 toward thefirst spline shaft 56 of the connectingshaft 57; a clutch 61 having agear tooth 62 meshed with thefirst spline shaft 56 of the connectingshaft 57 and thesecond spline shaft 44 of thering gear 42 and selectively transmitting or cutting off the rotational force of the connectingshaft 57 to thering gear 42 while moving between thefirst spline shaft 56 and thesecond spline shaft 44; and aclutch driving unit 71 having asolenoid 72 disposed at a side of the clutch 61 to move the clutch 61 in a certain direction when external power is applied and areturn spring 74 for returning the clutch into an initial position when the external power supply to thesolenoid 72 is cut off, for operating the clutch 61 according to the laundering operation and the dehydrating operation of the washing machine while being controlled by the control unit. - As depicted in FIG. 10, the
speed adjusting device 91 includes aband 92 wound around the outer circumference of thering gear 42; and aband driving unit 96 disposed at a side of theband 92 to provide tension to theband 92 in order to make theband 92 approach to or be separated from the outer circumference of thering gear 42. - The
band driving unit 96 consists of asolenoid 97 fixed to both ends of theband 92 so as to act power for making both ends of theband 92 approach each other in external power supply; and areturn spring 98 for returning theband 92 into an initial state when external power supply to thesolenoid 97 is cut off. Theband driving unit 96 adjusts a rotational speed of the secondrotary shaft 435 connected to theplanetary carrier 45 by braking or releasing thering gear 42 while adjusting a frictional force between theband 92 and the outer circumference of thering gear 42. - In the meantime, in order to increase a frictional force when the
band 92 is contacted to the outer circumference of thering gear 42, it is preferable to install africtional member 94 on the inner circumference of theband 92. - The operation of the washing machine in accordance with the fourth embodiment of the present invention will be described.
- First, in the laundering operation of the washing machine, the
clutch driving unit 71 is operated by the control unit, while the clutch 61 is moved, the connection of thefirst spline shaft 56 of the connectingshaft 57 and thesecond spline shaft 44 of thering gear 42 is declutched. And, when theinduction motor 51 is operated, therotor 54 of theinduction motor 51 is rotated, and the rotational force of therotor 54 is transmitted to the connectingshaft 57 through the connectinglink 53. Herein, the rotational force is not transmitted to thering gear 42. - And, when the
sun gear 49 installed at the end of the connectingshaft 57 is rotated, by the rotation of thesun gear 49, theplanetary gears 47 meshed with thesun gear 49 are rotated in a direction opposite to the rotational direction of thesun gear 49, simultaneously, theplanetary gears 47 are revolved in the same direction with the rotational direction of thesun gear 49 centering around thesun gear 49. And, by the rotation of theplanetary gears 47, thering gear 42 is rotated in a direction opposite to the rotational direction of thesun gear 49, namely, the same direction with the rotational direction of the planetary gears 47. In addition, theplanetary carrier 45 is rotated in the same direction of the rotational direction of thesun gear 49 by the revolution of the planetary gears 47. Herein, thering gear 42 and theplanetary carrier 45 are rotated at a speed lower than a rotational speed of thesun gear 49. - Accordingly, the first
rotary shaft 433 connected to thering gear 42 is rotated at a rotational speed lower than that of theinduction motor 51 without restriction, and the secondrotary shaft 435 connected to theplanetary carrier 45 is rotated by the rotation of theplanetary carrier 45. And, by the rotation of the secondrotary shaft 435, theinner tub 31 is rotated, and accordingly the laundering operation of the laundry contained in theinner tub 31 is performed - Herein, the control unit operates the
band driving unit 96 of thespeed adjusting device 91, by the operation of theband driving unit 96, a frictional force between theband 92 and thering gear 42 is adjusted, and accordingly braking or releasing of rotation of thering gear 42 is performed. According to that, a rotational speed of the secondrotary shaft 43 connected to theplanetary carrier 45 is adjusted. In more detail, when a frictional force between theband 92 and the outer circumference of thering gear 42 is increased, a rotational force of the secondrotary shaft 435 is increased, when thering gear 42 is stopped, a rotational force of the secondrotary shaft 435 is maximum. - In the meantime, in the dehydrating operation of the washing machine, by the control unit, the
clutch driving unit 71 is operated, while the clutch 61 is moved, thefirst spline shaft 56 of the connectingshaft 57 is clutched with thesecond spline shaft 44 of thering gear 42. And, when theinduction motor 51 is operated, therotor 54 of theinduction motor 51 is rotated, and the rotational force of therotor 54 is simultaneously transmitted to the connectingshaft 57 and thering gear 42 through the connectinglink 53. Accordingly, the connectingshaft 57 and thering gear 42 are rotated as one body. In addition, thesun gear 49, theplanetary gears 47, theplanetary carrier 45 and the secondrotary shaft 35 are rotated as one body with the connectingshaft 57 and thering gear 42. Accordingly, the firstrotary shaft 433 and the secondrotary shaft 435 respectively connected to thering gear 42 and theplanetary carrier 45 are rotated in a direction and at a rotational speed same with those of theinduction motor 51, by the rotation of the secondrotary shaft 435, theinner tub 31 is rotated at a high speed, and accordingly the dehydrating operation of the laundry contained in theinner tub 31 is performed. Herein, the control unit makes theband 92 and the outer circumference of thering gear 42 be separated by operating theband driving unit 96 of thespeed adjusting device 91. - In the washing machine in accordance with the fourth embodiment of the present invention, by using the induction motor as a driving motor for rotating the inner tub and including the rotation transmission means for adjusting a rotational speed of the induction motor according to the laundering operation and the dehydrating operation of the washing machine and transmitting it to the inner tub, the induction motor which is comparatively low-priced and has little noise can be efficiently applied to the washing machine.
- In addition, in the washing machine in accordance with the fourth embodiment of the present invention, by including the speed adjusting device for adjusting a rotational speed deceleration quantity of the rotation transmission means, it is possible to adjust a rotational speed of the inner tub.
Claims (20)
1. A washing machine, comprising:
a washing machine casing;
an outer tub disposed in the casing, for containing water therein;
an inner tub rotatably disposed in the outer tub, for containing laundry therein;
an induction motor for generating a rotational force; and
a rotation transmission means for transmitting a rotational force of the induction motor to the inner tub with a rotational speed decelerated from a rotational speed of the induction motor in laundering operation, and with a rotational speed identical to the rotational speed of the induction motor in dehydrating operation.
2. The washing machine of claim 1 , wherein the rotation transmission means includes:
a sun gear rotated by the rotational force of the induction motor;
a ring gear arranged to have a certain interval from an outer circumference of the sun gear;
a planetary gear meshed with the outer circumference of the sun gear and an inner circumference of the ring gear;
a rotary shaft connected to the ring gear and fixed to the inner tub to transmit the rotational force of the ring gear to the inner tub; and
a clutching device for selectively transmitting the rotational force of the induction motor only to the sun gear or to the sun gear and the ring gear simultaneously.
3. The washing machine of claim 2 , wherein the clutching device includes:
a first spline shaft formed on a circumference of a connecting shaft for connecting the sun gear with the induction motor;
a second spline shaft extended from a side of the ring gear toward the first spline shaft;
a clutch movably disposed between the first spline shaft and the second spline shaft and selectively meshed only with the first spline shaft or with the first spline shaft and the second spline shaft simultaneously; and
a clutch driving unit for moving the clutch.
4. The washing machine of claim 3 , wherein the clutch driving unit includes:
a solenoid for moving the clutch in a certain direction when an external power supply is applied thereto; and
a return spring for returning the clutch into an initial position thereof when the external power supply to the solenoid is cut off.
5. The washing machine of claim 1 , wherein the induction motor includes:
a stator; and
a rotor disposed to have a certain air gap from an outer circumference of the stator, for generating a rotational force by mutual electromagnetic operation with the stator.
6. The washing machine of claim 5 , wherein the inner tub is rotated co-axially with a rotational center of the rotor.
7. The washing machine of claim 1 , wherein the rotation transmission means includes:
a sun gear rotated by the rotational force of the induction motor;
a ring gear arranged to have a certain interval from an outer circumference of the sun gear;
a planetary gear meshed with the outer circumference of the sun gear and an inner circumference of the ring gear;
a planetary carrier connected to the planetary gear to be rotated by revolution of the planetary gear;
a rotary shaft connected to the planetary carrier and fixed to the inner tub to transmit the rotational force of the planetary carrier to the inner tub; and
a clutching device for selectively transmitting the rotational force of the induction motor only to the sun gear or to the sun gear and the ring gear simultaneously.
8. The washing machine of claim 7 , wherein the clutching device includes:
a first spline shaft formed on a circumference of a connecting shaft for connecting the sun gear with the induction motor;
a second spline shaft extended from a side of the ring gear toward the first spline shaft;
a clutch movably disposed between the first spline shaft and the second spline shaft and selectively meshed only with the first spline shaft or with the first spline shaft and the second spline shaft simultaneously; and
a clutch driving unit for moving the clutch.
9. The washing machine of claim 8 , wherein the clutch driving unit includes:
a solenoid for moving the clutch in a certain direction when external power supply is applied thereto; and
a return spring for returning the clutch into an initial position thereof when the external power supply to the solenoid is cut off.
10. The washing machine of claim 7 , further comprising:
a speed adjusting device for controlling a rotational speed of the ring gear to adjust a rotational speed of the rotary shaft in laundering operation of the washing machine.
11. The washing machine of claim 10 , wherein the speed adjusting device includes:
a band wound around an outer circumference of the ring gear; and
a band driving unit disposed at a side of the band to provide tension to the band, for selectively adjusting a frictional force between an inner circumference of the band and the outer circumference of the ring gear.
12. The washing machine of claim 11 , wherein the band driving unit includes:
a solenoid fixed to both ends of the band to apply a force for making both ends of the band approach to each other when an external power supply is applied thereto; and
a return spring for returning the band into an initial state thereof when the external power supply to the solenoid is cut off.
13. A washing machine, comprising:
a washing machine casing;
an outer tub disposed in the casing, for containing water therein;
an inner tub rotatably disposed in the outer tub, for containing laundry therein;
an induction motor for generating a rotational force;
a pulsator disposed in the inner tub to perform agitating operation of the water and the laundry contained in the inner tub while being rotated; and
a rotation transmission means arranged between the inner tub and the induction motor, for transmitting a rotational force of the induction motor to the inner tub and the pulsator so that the inner tub and the pulsator are rotated in the opposite direction to each other with a rotational speed decelerated from a rotational speed of the induction motor in laundering operation, and for transmitting a rotational force of the induction motor to the inner tub and the pulsator so that the inner tub and the pulsator are rotated in the identical direction to each other with a rotational speed identical to the rotational speed of the induction motor in dehydrating operation.
14. The washing machine of claim 13 , wherein the rotation transmission means includes:
a sun gear rotated by the rotational force of the induction motor;
a ring gear arranged to have a certain interval with an outer circumference of the sun gear;
a planetary gear meshed with the outer circumference of the sun gear and an inner circumference of the ring gear;
a planetary carrier connected to the planetary gear to be rotated by revolution of the planetary gear;
a hollow-shaped first rotary shaft connected to the ring gear and fixed to the inner tub to transmit the rotational force of the ring gear to the inner tub;
a second rotary shaft rotatably disposed inside the first rotary shaft, connected to the planetary carrier and fixed to the pulsator in order to transmit a rotational force of the planetary carrier to the pulsator; and
a clutching device for selectively transmitting the rotational force of the induction motor only to the sun gear or to the sun gear and the ring gear simultaneously.
15. The washing machine of claim 14 , wherein the clutching device includes:
a first spline shaft formed on a circumference of a connecting shaft for connecting the sun gear with the induction motor;
a second spline shaft extended from a side of the ring gear toward the first spline shaft;
a clutch movably disposed between the first spline shaft and the second spline shaft and selectively meshed only with the first spline shaft or with the first spline shaft and the second spline shaft simultaneously; and
a clutch driving unit for moving the clutch.
16. The washing machine of claim 15 , wherein the clutch driving unit includes:
a solenoid for moving the clutch in a certain direction when external power supply is applied thereto; and
a return spring for returning the clutch into an initial position when the external power supply to the solenoid is cut off.
17. The washing machine of claim 14 , further comprising a speed adjusting device for controlling a rotational speed of the ring gear to adjust rotational speeds of the first and second rotary shafts in laundering operation of the washing machine.
18. The washing machine of claim 17 , wherein the speed adjusting device includes:
a band wound around an outer circumference of the ring gear; and
a band driving unit disposed at a side of the band to provide tension to the band, for selectively adjusting a frictional force between an inner circumference of the band and the outer circumference of the ring gear.
19. The washing machine of claim 13 , wherein the induction motor includes:
a stator; and
a rotor disposed to have a certain air gap from an outer circumference of the stator, for generating a rotational force by mutual electromagnetic operation with the stator.
20. The washing machine of claim 19 , wherein the inner tub and the pulsator are rotated co-axially with a rotational center of the rotor.
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
KR10-2003-0003029A KR100504867B1 (en) | 2003-01-16 | 2003-01-16 | Drum type washing machine with induction motor |
KR10-2003-0003029 | 2003-01-16 |
Publications (1)
Publication Number | Publication Date |
---|---|
US20040139768A1 true US20040139768A1 (en) | 2004-07-22 |
Family
ID=32588968
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US10/754,612 Abandoned US20040139768A1 (en) | 2003-01-16 | 2004-01-12 | Washing machine |
Country Status (4)
Country | Link |
---|---|
US (1) | US20040139768A1 (en) |
EP (1) | EP1439255A1 (en) |
KR (1) | KR100504867B1 (en) |
CN (1) | CN1517473B (en) |
Cited By (14)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US20130025330A1 (en) * | 2011-07-27 | 2013-01-31 | Samsung Electronics Co., Ltd | Motor usable with washing machine and washing machine having the same |
JP2015208501A (en) * | 2014-04-25 | 2015-11-24 | ハイアールアジア株式会社 | Drum washing machine |
JP2015208500A (en) * | 2014-04-25 | 2015-11-24 | ハイアールアジア株式会社 | Drum type washing machine |
JP2015208571A (en) * | 2014-04-28 | 2015-11-24 | ハイアールアジア株式会社 | Drum type washing machine |
US20160049847A1 (en) * | 2013-06-25 | 2016-02-18 | Lg Electronics Inc. | Power generating device and apparatus having the same |
US20160376741A1 (en) * | 2013-07-19 | 2016-12-29 | Amotech Co., Ltd. | Washing machine motor and washing machine comprising same |
US20170152626A1 (en) * | 2014-06-12 | 2017-06-01 | Haier Asia Co., Ltd. | Drum type washing machine |
US20170268150A1 (en) * | 2014-08-26 | 2017-09-21 | Qingdao Haier Washing Machine Co., Ltd. | Automatic washing machine and control method |
US10113260B2 (en) | 2015-07-27 | 2018-10-30 | Whirlpool Corporation | Laundry treating appliance |
US10280549B2 (en) * | 2014-12-23 | 2019-05-07 | Changzhou Xinya Electromotor Co., Ltd. | Washing machine driver |
WO2020149672A1 (en) | 2019-01-17 | 2020-07-23 | Samsung Electronics Co., Ltd. | Washing machine |
EP3889340A4 (en) * | 2018-11-30 | 2022-07-20 | LG Electronics Inc. | Dryer |
EP4357511A1 (en) * | 2022-10-21 | 2024-04-24 | LG Electronics Inc. | Drum washing machine |
US20240352990A1 (en) * | 2023-04-20 | 2024-10-24 | Lg Electronics Inc. | Washing machine driving system and a washing machine with the same |
Families Citing this family (20)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
KR100697018B1 (en) * | 2005-03-30 | 2007-03-20 | 엘지전자 주식회사 | Motor and dishwasher using it |
DE102005052991A1 (en) * | 2005-11-07 | 2007-05-24 | BSH Bosch und Siemens Hausgeräte GmbH | Method and circuit arrangement for controlling the operation of an electric motor of an electrical device, in particular an electrical domestic appliance, as well as usable interface circuit arrangement |
KR100720551B1 (en) * | 2005-11-18 | 2007-05-22 | 엘지전자 주식회사 | Direct induction motor for washing machine and washing machine having same |
KR102229973B1 (en) * | 2014-04-07 | 2021-03-19 | 엘지전자 주식회사 | Power Supply Device and Apparatus having the same |
KR102171447B1 (en) * | 2013-06-25 | 2020-10-29 | 엘지전자 주식회사 | Power Supply Device and Apparatus having the same |
KR102201744B1 (en) * | 2014-04-07 | 2021-01-12 | 엘지전자 주식회사 | Power Supply Device and Laundry Treating Apparatus having the same |
JP6363423B2 (en) | 2014-08-05 | 2018-07-25 | アクア株式会社 | Drum washing machine |
JP2016036400A (en) * | 2014-08-05 | 2016-03-22 | ハイアールアジア株式会社 | Drum-type washing machine |
JP6435138B2 (en) * | 2014-08-29 | 2018-12-05 | アクア株式会社 | Drum washing machine |
JP2016049365A (en) * | 2014-09-01 | 2016-04-11 | ハイアールアジア株式会社 | Drum type washing machine |
CN105734904B (en) * | 2014-12-12 | 2023-09-12 | 青岛海尔洗衣机有限公司 | Speed reducing clutch for washing machine and washing machine |
US10260192B2 (en) * | 2015-10-02 | 2019-04-16 | Lg Electronics Inc. | Top-loading-type washing machine |
KR101885203B1 (en) | 2017-05-12 | 2018-08-03 | 뉴모텍(주) | Direct Driven Driving Apparatus for Washing Machine with Deceleration Drive |
KR101957765B1 (en) * | 2017-05-12 | 2019-03-13 | 뉴모텍(주) | Stator Assembly for Direct Driven Driving Apparatus of Washing Machine |
JP6949204B2 (en) * | 2018-02-07 | 2021-10-13 | ▲無▼▲錫▼小天鵝電器有限公司Wuxi Little Swan Electric Co.,Ltd. | Drum type washing machine |
KR102065597B1 (en) | 2018-07-26 | 2020-01-13 | 엘지전자 주식회사 | Washing machine |
KR20200089604A (en) * | 2019-01-17 | 2020-07-27 | 삼성전자주식회사 | Washing machine |
KR102676460B1 (en) | 2019-05-13 | 2024-06-18 | 엘지전자 주식회사 | Driving device for washing machine |
CN110835827B (en) * | 2019-10-14 | 2024-06-18 | 青岛海尔洗衣机有限公司 | Top Loading Dual Power Washing Machine |
KR20240155438A (en) | 2023-04-20 | 2024-10-29 | 엘지전자 주식회사 | Washing machine driving system and a washing machine with the same |
Citations (12)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US2255200A (en) * | 1940-08-02 | 1941-09-09 | Frederick G Wahl | Transmission |
US2968174A (en) * | 1956-11-06 | 1961-01-17 | Hoover Co | Washing machines |
US3049021A (en) * | 1959-04-06 | 1962-08-14 | Gen Motors Corp | Power drive apparatus |
US4891959A (en) * | 1988-07-01 | 1990-01-09 | Whirlpool Corporation | Bi-directional pivot band brake for automatic washer |
US5000016A (en) * | 1989-01-03 | 1991-03-19 | Whirlpool Corporation | Counter-rotation wash system |
US5209085A (en) * | 1990-02-23 | 1993-05-11 | Hoover (Australia) Pty. Limited | Clutch/brake drive unit |
US5669095A (en) * | 1995-06-28 | 1997-09-23 | General Electric Company | Adaptive water level controller for washing machine |
US6006553A (en) * | 1997-02-18 | 1999-12-28 | Samsung Electronics Co., Ltd. | Heat dissipating blades for a motor of a washing machine |
US6148646A (en) * | 1997-06-06 | 2000-11-21 | Matsushita Electric Industrial Co., Ltd. | Washing machine |
US6176108B1 (en) * | 1998-01-31 | 2001-01-23 | Samsung Electronics Co., Ltd. | Motor-clutch assembly of a washing machine |
US20020166349A1 (en) * | 2001-05-08 | 2002-11-14 | Hee-Tae Lim | Direct drive washing machine |
US6665899B2 (en) * | 2000-09-19 | 2003-12-23 | Samsung Electronics Co., Ltd. | Washing machine and its washing method |
Family Cites Families (8)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
KR100215032B1 (en) * | 1996-04-23 | 1999-08-16 | 윤종용 | washer |
CN1250800C (en) * | 1998-04-10 | 2006-04-12 | 松下电器产业株式会社 | Washing machine |
JP3510138B2 (en) * | 1999-03-05 | 2004-03-22 | 株式会社日立製作所 | Fully automatic washing machine |
JP3685943B2 (en) * | 1999-03-05 | 2005-08-24 | 株式会社日立製作所 | Fully automatic washing machine |
JP2001046777A (en) * | 1999-08-10 | 2001-02-20 | Hitachi Ltd | Electric washing machine |
US6460382B1 (en) * | 1999-10-18 | 2002-10-08 | Lg Electronics Inc. | Structure of driving unit in drum type washing machine |
JP2001017782A (en) * | 2000-01-01 | 2001-01-23 | Matsushita Electric Ind Co Ltd | Washing machine |
GB2362690A (en) * | 2000-05-19 | 2001-11-28 | Notetry Ltd | Counter rotating washing machine drive |
-
2003
- 2003-01-16 KR KR10-2003-0003029A patent/KR100504867B1/en not_active Expired - Fee Related
-
2004
- 2004-01-07 EP EP04000121A patent/EP1439255A1/en not_active Ceased
- 2004-01-12 US US10/754,612 patent/US20040139768A1/en not_active Abandoned
- 2004-01-16 CN CN2004100019358A patent/CN1517473B/en not_active Expired - Fee Related
Patent Citations (12)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US2255200A (en) * | 1940-08-02 | 1941-09-09 | Frederick G Wahl | Transmission |
US2968174A (en) * | 1956-11-06 | 1961-01-17 | Hoover Co | Washing machines |
US3049021A (en) * | 1959-04-06 | 1962-08-14 | Gen Motors Corp | Power drive apparatus |
US4891959A (en) * | 1988-07-01 | 1990-01-09 | Whirlpool Corporation | Bi-directional pivot band brake for automatic washer |
US5000016A (en) * | 1989-01-03 | 1991-03-19 | Whirlpool Corporation | Counter-rotation wash system |
US5209085A (en) * | 1990-02-23 | 1993-05-11 | Hoover (Australia) Pty. Limited | Clutch/brake drive unit |
US5669095A (en) * | 1995-06-28 | 1997-09-23 | General Electric Company | Adaptive water level controller for washing machine |
US6006553A (en) * | 1997-02-18 | 1999-12-28 | Samsung Electronics Co., Ltd. | Heat dissipating blades for a motor of a washing machine |
US6148646A (en) * | 1997-06-06 | 2000-11-21 | Matsushita Electric Industrial Co., Ltd. | Washing machine |
US6176108B1 (en) * | 1998-01-31 | 2001-01-23 | Samsung Electronics Co., Ltd. | Motor-clutch assembly of a washing machine |
US6665899B2 (en) * | 2000-09-19 | 2003-12-23 | Samsung Electronics Co., Ltd. | Washing machine and its washing method |
US20020166349A1 (en) * | 2001-05-08 | 2002-11-14 | Hee-Tae Lim | Direct drive washing machine |
Cited By (21)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US9260813B2 (en) * | 2011-07-27 | 2016-02-16 | Samsung Electronics Co., Ltd. | Motor usable with washing machine and washing machine having the same |
US20130025330A1 (en) * | 2011-07-27 | 2013-01-31 | Samsung Electronics Co., Ltd | Motor usable with washing machine and washing machine having the same |
US10407815B2 (en) * | 2013-06-25 | 2019-09-10 | Lg Electronics Inc. | Power generating device and apparatus having the same |
US20160049847A1 (en) * | 2013-06-25 | 2016-02-18 | Lg Electronics Inc. | Power generating device and apparatus having the same |
US20160376741A1 (en) * | 2013-07-19 | 2016-12-29 | Amotech Co., Ltd. | Washing machine motor and washing machine comprising same |
US10323350B2 (en) * | 2013-07-19 | 2019-06-18 | Amotech Co., Ltd. | Washing machine motor and washing machine comprising same |
JP2015208501A (en) * | 2014-04-25 | 2015-11-24 | ハイアールアジア株式会社 | Drum washing machine |
JP2015208500A (en) * | 2014-04-25 | 2015-11-24 | ハイアールアジア株式会社 | Drum type washing machine |
JP2015208571A (en) * | 2014-04-28 | 2015-11-24 | ハイアールアジア株式会社 | Drum type washing machine |
US20170152626A1 (en) * | 2014-06-12 | 2017-06-01 | Haier Asia Co., Ltd. | Drum type washing machine |
US20170268150A1 (en) * | 2014-08-26 | 2017-09-21 | Qingdao Haier Washing Machine Co., Ltd. | Automatic washing machine and control method |
US10612179B2 (en) * | 2014-08-26 | 2020-04-07 | Qingdao Haier Washing Machine Co., Ltd. | Automatic washing machine and control method |
US10280549B2 (en) * | 2014-12-23 | 2019-05-07 | Changzhou Xinya Electromotor Co., Ltd. | Washing machine driver |
US10113260B2 (en) | 2015-07-27 | 2018-10-30 | Whirlpool Corporation | Laundry treating appliance |
EP3889340A4 (en) * | 2018-11-30 | 2022-07-20 | LG Electronics Inc. | Dryer |
WO2020149672A1 (en) | 2019-01-17 | 2020-07-23 | Samsung Electronics Co., Ltd. | Washing machine |
EP3877581A4 (en) * | 2019-01-17 | 2022-01-12 | Samsung Electronics Co., Ltd. | Washing machine |
US11365504B2 (en) | 2019-01-17 | 2022-06-21 | Samsung Electronics Co., Ltd. | Washing machine |
EP4357511A1 (en) * | 2022-10-21 | 2024-04-24 | LG Electronics Inc. | Drum washing machine |
US20240352990A1 (en) * | 2023-04-20 | 2024-10-24 | Lg Electronics Inc. | Washing machine driving system and a washing machine with the same |
US12181028B2 (en) * | 2023-04-20 | 2024-12-31 | Lg Electronics Inc. | Washing machine driving system and a washing machine with the same |
Also Published As
Publication number | Publication date |
---|---|
EP1439255A1 (en) | 2004-07-21 |
KR20040065839A (en) | 2004-07-23 |
CN1517473B (en) | 2012-04-18 |
KR100504867B1 (en) | 2005-07-29 |
CN1517473A (en) | 2004-08-04 |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
US20040139768A1 (en) | Washing machine | |
JP4131540B2 (en) | Horizontal drum washing machine | |
JPH10314489A (en) | Driving device for washing machine | |
KR100463545B1 (en) | Drum Washer | |
CN105401377A (en) | Full-automatic washing machine and control method | |
US11286608B2 (en) | Direct driving apparatus for washing machine | |
EP3733951A1 (en) | Double-rotor washing type drum washing machine | |
CN104746280A (en) | Power transmission apparatus and power control apparatus of washing machine | |
MXPA01012528A (en) | Device for coupling at least one auxiliary assembly to a main assembly. | |
KR20010097203A (en) | Motor for pulsator type washing machine | |
KR102481768B1 (en) | Drive system of washing machine and drum washing machine having the same | |
US11746459B2 (en) | Washing machine | |
US4270411A (en) | Washing machine drive assembly | |
JPH07255987A (en) | Power transmission device for washing machine | |
KR20200131120A (en) | Driving device for washing machine | |
KR102351705B1 (en) | Direct Driven Driving Apparatus for Washing Machine | |
KR102045005B1 (en) | Washing machine | |
KR101895377B1 (en) | Rotor Assembly for Direct Driven Driving Apparatus of Washing Machine | |
CN112746458A (en) | Washing machine and control method thereof | |
JP2013128636A (en) | Washing machine | |
EP4357510B1 (en) | Drive system of a washing machine | |
KR20190121279A (en) | Washing machine | |
KR19980073850A (en) | Drive of fully automatic washing machine | |
JP2002224488A (en) | Drive mechanism for dehydration washing machine and dehydration washing machine using the same | |
JPS63125844A (en) | Reduction gear for washing machine and the like |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
AS | Assignment |
Owner name: LG ELECTRONICS INC., KOREA, REPUBLIC OF Free format text: ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNORS:KIM, YOUNG-HO;KIM, DONG-WON;KIM, JOON-WOO;REEL/FRAME:014927/0074;SIGNING DATES FROM 20031215 TO 20031223 |
|
STCB | Information on status: application discontinuation |
Free format text: ABANDONED -- FAILURE TO RESPOND TO AN OFFICE ACTION |