CN206131241U - Fan - Google Patents
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- CN206131241U CN206131241U CN201620682665.XU CN201620682665U CN206131241U CN 206131241 U CN206131241 U CN 206131241U CN 201620682665 U CN201620682665 U CN 201620682665U CN 206131241 U CN206131241 U CN 206131241U
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- Prior art keywords
- rotating vane
- delivery pipe
- water
- drive shaft
- fan
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- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 claims abstract description 141
- 230000005611 electricity Effects 0.000 claims description 3
- 238000000889 atomisation Methods 0.000 abstract description 12
- 238000001816 cooling Methods 0.000 abstract description 10
- 230000000694 effects Effects 0.000 abstract description 10
- 238000002309 gasification Methods 0.000 abstract description 2
- 238000009692 water atomization Methods 0.000 abstract 1
- 239000000443 aerosol Substances 0.000 description 29
- 238000007667 floating Methods 0.000 description 11
- 241000883990 Flabellum Species 0.000 description 10
- 238000005265 energy consumption Methods 0.000 description 9
- 239000007921 spray Substances 0.000 description 6
- 230000009471 action Effects 0.000 description 5
- 238000001514 detection method Methods 0.000 description 5
- 238000011084 recovery Methods 0.000 description 5
- 230000008859 change Effects 0.000 description 4
- 230000006870 function Effects 0.000 description 4
- 230000005484 gravity Effects 0.000 description 4
- 238000010438 heat treatment Methods 0.000 description 4
- 238000007664 blowing Methods 0.000 description 3
- 239000012141 concentrate Substances 0.000 description 3
- 238000005516 engineering process Methods 0.000 description 3
- 239000004033 plastic Substances 0.000 description 3
- 229920003023 plastic Polymers 0.000 description 3
- 239000000463 material Substances 0.000 description 2
- 238000007789 sealing Methods 0.000 description 2
- 238000002604 ultrasonography Methods 0.000 description 2
- 230000000007 visual effect Effects 0.000 description 2
- 206010053615 Thermal burn Diseases 0.000 description 1
- 230000004308 accommodation Effects 0.000 description 1
- 238000009825 accumulation Methods 0.000 description 1
- 238000004378 air conditioning Methods 0.000 description 1
- 230000003321 amplification Effects 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
- 230000036760 body temperature Effects 0.000 description 1
- 238000006243 chemical reaction Methods 0.000 description 1
- 230000003247 decreasing effect Effects 0.000 description 1
- 230000007547 defect Effects 0.000 description 1
- 238000010586 diagram Methods 0.000 description 1
- 201000010099 disease Diseases 0.000 description 1
- 208000037265 diseases, disorders, signs and symptoms Diseases 0.000 description 1
- 239000006185 dispersion Substances 0.000 description 1
- 230000006872 improvement Effects 0.000 description 1
- 238000002347 injection Methods 0.000 description 1
- 239000007924 injection Substances 0.000 description 1
- 238000001746 injection moulding Methods 0.000 description 1
- 239000007788 liquid Substances 0.000 description 1
- 239000002184 metal Substances 0.000 description 1
- 238000000034 method Methods 0.000 description 1
- 239000003595 mist Substances 0.000 description 1
- 239000006199 nebulizer Substances 0.000 description 1
- 238000003199 nucleic acid amplification method Methods 0.000 description 1
- 230000008569 process Effects 0.000 description 1
- 238000005057 refrigeration Methods 0.000 description 1
- 230000035807 sensation Effects 0.000 description 1
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- Structures Of Non-Positive Displacement Pumps (AREA)
Abstract
The utility model relates to a fan, include: base, support frame, water storage tank, ultrasonic atomization ware, conveyer pipe, driving motor, drive shaft and a plurality of rotating vane, driving motor is connected with the drive shaft drive, and a plurality of rotating vane set up in the drive shaft, and the water storage tank is connected with the ultrasonic atomization ware, the rotatory face of air supply that forms of a plurality of rotating vane, a plurality of through -holes have been seted up to the one side of each rotating vane orientation air supply face, have seted up a plurality of passageways in the rotating vane, and each through -hole passes through the one end intercommunication of passageway and conveyer pipe, the other end and the ultrasonic atomization ware intercommunication of conveyer pipe, the conveyer pipe sets up in one side of the rotating vane face of supplying air dorsad, and the conveyer pipe has multiple tortuous structure. Through the ultrasonic atomization ware with the water atomization, the drop of water after the atomizing passes through the conveyer pipe to be transmitted to the rotating vane on, along with rotating vane's rotation is blown off, the gasification of the drop of water and take away user's partial heat on one's body to make the user obtain the cooling, have the good characteristics of cooling effect.
Description
Technical field
This utility model is related to technical field of electric appliances, more particularly to fan.
Background technology
Fan is to drive rotating vane high-speed rotation by electric current, and cool electrical equipment is taken for people's life wind so as to generate air-flow.
Traditional fan only has blowing, timing and the function such as shake the head, and function is more single, it is impossible to meet the growing need of people
Ask, as weather is increasingly extremely hot, traditional fan can only dry, and can not lower the temperature, and lead to not realize complete expelling summer-heat, and adopt
Air-conditioning expelling summer-heat will then cause energy consumption to rise.
Chinese utility model ZL 201520660798.2 discloses a kind of electric fan with water cooling, including shell, also including motor
Frame, motor, rotating vane, storage tank, recovery tank, water pipe, electric control valve, control knob, described motor rack is located at shell
Inside, described motor rack is connected with outer casing screw, and described motor is located at motor rack inside center, described motor and electricity
Frame screw thread is connected, and described rotating vane is located at motor right-hand member, and described rotating vane is connected with motor screw thread, described storage
Water tank is located at enclosure left end upside, and described storage tank is connected with outer casing screw, and described recovery tank is located at enclosure
Bottom left side, described recovery tank is connected with outer casing screw, and described water pipe quantity is some, and described water pipe is uniformly distributed
In the middle of storage tank and recovery tank, described water pipe is connected with storage tank and recovery tank close-fitting, and described electric control valve is located at
In the middle of water pipe, described electric control valve is connected with water pipe thread, and described control knob is located at cover top portion right-hand member, described
Control knob is connected with outer casing screw.Although above-mentioned electric fan with water cooling by circulation lowering the temperature, and by rotating vane by cold sky
Air-blowing goes out, although such water-cooling pattern can lower the temperature, refrigeration is not good, and offer water circulation needs to consume more energy
Consumption, when in use energy consumption is larger to cause fan.
Utility model content
Based on this, it is necessary to for traditional fan for cooling effect on driving birds is not good, and the defect of electric fan with water cooling high energy consumption, there is provided one
Plant fan, it is possible to increase fan performance, be effectively user's cooling, and energy consumption is low.
A kind of fan, including:Base, bracing frame, water tank, soniclizer, delivery pipe, motor, drive shaft
With some rotating vanes;
Support frame as described above is fixedly installed on the base, and the drive shaft turns are arranged on support frame as described above, and institute
Motor and the drive shaft drive connection are stated, some rotating vanes are arranged in the drive shaft, the water tank
It is arranged on support frame as described above, and the water tank is connected with the soniclizer;
Some rotating vanes rotate to form air-supply face, and each rotating vane is opened towards the one side in the air-supply face
Some through holes are provided with, if offering dry passage in the rotating vane, each through hole is by the passage and delivery pipe
One end connects, and the other end of the delivery pipe is connected with the soniclizer;
The delivery pipe is arranged at the side in the rotating vane dorsad air-supply face, and the delivery pipe have it is multiple
Curved structure;
The delivery pipe is arranged in S shapes, and the internal diameter of the delivery pipe is 10mm~15mm, and the internal diameter of the delivery pipe is by leaning on
One end of the nearly soniclizer near one end of the passage by increase.
In one embodiment, some rotating vanes are uniformly around in the drive shaft.
In one embodiment, the identical setting of each through-hole diameter.
In one embodiment, the different setting of each through-hole diameter.
In one embodiment, the diameter of some through holes is from one end of the close drive shaft to away from the driving
One end of axle is gradually reduced.
In one embodiment, the internal diameter of the delivery pipe is 12mm~13mm.
Said fans, are made water fogging by soniclizer, and the globule after atomization is transmitted to pivoting leaf by delivery pipe
On piece, as the rotation of rotating vane is blown, because globule volume is very little, easily gasify after blowout, with the globule
Gasify and take away the partial heat with user, so that user is lowered the temperature, with the spy that cooling-down effect is good and energy consumption is low
Point.
Description of the drawings
Fig. 1 is the cross-sectional view of the fan of one embodiment;
Fig. 2 is the structural representation of the rotating vane of one embodiment;
Fig. 3 is the cross-sectional view of the rotating vane of one embodiment;
Fig. 4 is the structural representation of the delivery pipe of one embodiment;
Fig. 5 is the cross-sectional view of the water tank of one embodiment;
Fig. 6 is the water tank of one embodiment and the cross-sectional view of aerosol container;
Fig. 7 is the cross-sectional view of the water tank with aerosol container of another embodiment;
Fig. 8 is the water tank of one embodiment and the cross-sectional view of delivery pipe;
Fig. 9 is the cross-sectional view of the fan of another embodiment;
Figure 10 is a direction structure schematic diagram of the fan of another embodiment;
Figure 11 is the rotating vane of one embodiment and the cross-sectional view of gas box;
Figure 12 is the cross-sectional view of the fan of another embodiment.
Specific embodiment
For the ease of understanding this utility model, this utility model is more fully retouched below with reference to relevant drawings
State.Better embodiment of the present utility model is given in accompanying drawing.But, this utility model can come in many different forms
Realize, however it is not limited to embodiments described herein.On the contrary, the purpose for providing these embodiments is to make to this practicality newly
It is more thorough comprehensive that the disclosure of type understands.
Unless otherwise defined, all of technology used herein and scientific terminology are led with technology of the present utility model is belonged to
The implication that the technical staff in domain is generally understood that is identical.It is simply in term used in the description of the present utility model herein
The purpose of description specific embodiment, it is not intended that in limiting this utility model.Term as used herein " and/or " bag
Include the arbitrary and all of combination of one or more related Listed Items.
For example, a kind of fan, including:Base, bracing frame, water tank, soniclizer, delivery pipe, motor, drive
Moving axis and some rotating vanes;Support frame as described above is fixedly installed on the base, and the drive shaft turns are arranged at described
On support, and the motor and the drive shaft drive connection, some rotating vanes are arranged in the drive shaft,
The water tank is arranged on support frame as described above, and the water tank is connected with the soniclizer;Some rotations
Blade rotates to form air-supply face, and each rotating vane offers some through holes, the rotation towards the one side in the air-supply face
If offering dry passage in rotating vane piece, each through hole is connected by the passage with one end of delivery pipe, the delivery pipe
The other end connect with the soniclizer.
As shown in figure 1, for the fan 10 of one embodiment, including:Base 100, bracing frame 200, water tank 300, ultrasound
Ripple nebulizer 400, delivery pipe 500, motor (not shown), drive shaft 600 and some rotating vanes 700;Support frame as described above
200 are fixedly installed on the base 100, and the drive shaft 600 is rotated and is arranged on support frame as described above 200, and the driving
Motor and the drive connection of the drive shaft 600, some rotating vanes 700 are arranged in the drive shaft 600, the water storage
Tank 300 is arranged on support frame as described above 200, and the water tank 300 is connected with the soniclizer 400;Incorporated by reference to figure
1st, Fig. 2 and Fig. 3, some rotations of the rotating vane 700 form air-supply face 701, and each rotating vane 700 send towards described
The one side in wind face 701 offers some through holes 720, each described logical if offering dry passage 710 in the rotating vane 700
Hole 720 is connected by the passage 710 with one end of delivery pipe 500, the other end of the delivery pipe 500 and the ultrasonic fog
Change device 400 to connect.
Made water fogging by soniclizer 400, the globule after atomization is transmitted to rotating vane by delivery pipe 500
On 700, the globule in rotating vane 700 is delivered to through hole 720 by passage 710, and the rotation with rotating vane 700 is blown
Go out, because globule volume is very little, easily gasify after blowout, the part heat with user is taken away with the gasification of the globule
Amount so that user is lowered the temperature, with cooling-down effect it is good the characteristics of, on the other hand, due to being atomized after globule diameter
Only 1 μm to 5 μm, after being thrown away by rotating vane 700, the globule is smashed as the less globule, and by windage, is easily gasified,
During to body temperature lowering, human body skin humidity can't be caused to increase, it is to avoid the disease such as rheumatism that life-time service is caused.And due to super
Sonic nebulizers 400 carry out energy amplification by the oscillator signal of main circuit board by audion, pass to ultrasonic chip, ultrasound
Quarter wave plate 14 is converted into ultrasonic energy electric energy, and then only needs less electric energy to be capable of achieving atomization, and required power consumption is less so that
The more traditional fan of the power consumption of fan 10 it is low in energy consumption.
In one embodiment, as shown in Figure 1 and Figure 4, the delivery pipe 500 is arranged at the rotating vane 700 dorsad
The side in the air-supply face 701, and the delivery pipe 500 has multiple curved structure, i.e., described delivery pipe 500 is in multiple complications
Arrange, for example, the delivery pipe 500 is arranged between the motor and the rotating vane 700.In order to improve delivery pipe
500 with the heat exchanger effectiveness of the air of outer surface, for example, delivery pipe 500 is metal delivery tubes, and for example, the thickness of delivery pipe 500 is
1mm~5mm, so, when steam flows through delivery pipe 500, causes the temperature change of the outer surface of delivery pipe 500, for example, when pouring into
When the water of water tank 300 is temperature relatively low cold water, the air themperature of the outer surface of delivery pipe 500 is reduced, the outer surface of delivery pipe 500
Air be blown to the side of air-supply face 701 with the rotation of rotating vane 700, in such manner, it is possible to reduce blow out air temperature
Degree, and due to the delivery pipe 500 in it is multiple it is tortuous arrange, increase the transport path of steam, and increase delivery pipe 500 with
The contact area of air such that it is able to so that more air themperatures are reduced, further increase cooling efficiency.
In a further embodiment, the water in water tank 300 is hot water, and the temperature of the outer surface of such delivery pipe 500 will be upper
Rise, so that the wind of the blowout of rotating vane 700 is hot blast, in the weather of cold weather heating can be realized, be also beneficial to sky
Gas is humidified;In one embodiment, for the ease of heating, for example, having heaters, the heating are set in the water tank 300
Device is used to heat the water in the water tank 300 so that the steam temperature of delivery pipe 500 rises, and then fan 10 is blown out
Wind be hot blast, and air humidity can be improved, in the present embodiment, fan 10 realizes both cooling and heating, and also has humidification
Function.For example, also including control module and temperature detecting module, control module is electrically connected respectively with heater and temperature detecting module
Connect, temperature detecting module is used to detect the temperature of the water in water tank 300 that control module to be used for the temperature according to the water for detecting
Control heater work, for example, control module is used for when the temperature of water is more than default water temperature, and control heater quits work,
In such manner, it is possible to avoid the temperature of the steam for blowing out too high and cause human body to scald.
In one embodiment, the internal diameter of the delivery pipe 500 be 10mm~15mm, for example, the delivery pipe 500 it is interior
Footpath is 12mm~13mm, and for example, the internal diameter of the delivery pipe 500 is 12.5mm.Specifically, the internal diameter of delivery pipe 500 is unsuitable excessive,
Excessive internal diameter will cause steam flow too fast and have little time and the heat-shift of delivery pipe 500, and the internal diameter of delivery pipe 500 is too small,
Vapor transfer inefficiency is then easily caused, therefore, in the present embodiment, the internal diameter of delivery pipe 500 is preferably 12.5mm, so i.e.
The heat exchanger effectiveness of steam and delivery pipe 500 can be improved, on the other hand also causes the transfer efficiency of steam higher.
In order to increase the outer surface of delivery pipe 500 and the area of air contact, so that the heat exchange amount with air
Increase, for example, the delivery pipe 500 is arranged in S shapes, and for example, as shown in figure 4, the delivery pipe 500 is arranged in N shapes, for example,
The delivery pipe 500 is set to the shape of multiple N shapes head and the tail connections.It is cranky due to delivery pipe 500, easily cause defeated
The globule for sending conveying in pipe 500 sticks to the wall of delivery pipe 500, in order to improve the transfer efficiency of the globule, for example, the delivery pipe
500 internal diameter near one end of the soniclizer 400 near one end of the passage 710 by increase, so, when
The globule along delivery pipe 500 be delivered to passage 710 when, due to the gradually increase of the internal diameter of delivery pipe 500 so that the globule can be a large amount of
Be delivered in passage 710, it is to avoid cause the spray volume of the globule in through hole 720 because the globule sticks to the wall of delivery pipe 500
Reduce.
In order that the blowout wind-force of fan 10 is more uniformly distributed in all directions, and in one embodiment, referring again to Fig. 2,
Uniformly around in the drive shaft 600, for example, the quantity of the rotating vane 700 is three to some rotating vanes 700
Piece, for example, three rotating vanes 700 uniformly it is rich set with the drive shaft 600, for example, three rotating vanes 700
Arrange in triangle disposition, so, the wind-force of three blowouts of rotating vane 700 is more uniformly distributed in all directions, so that blowout
Temperature be more uniformly distributed.
In one embodiment, the through hole 720 has circular cross-section, and for example, the through hole 720 is cylindrical hole
720, in order that the steam of fan 10 blows out with being more uniformly distributed, for example, the identical setting of each diameter of the through hole 720.It is worth mentioning
, produce larger centrifugal action due to rotating vane 700 when rotated, therefore, although the diameter of through hole 720 is identical can
So that the globule is equably by output in each through hole 720, but under the action of the centrifugal, the globule concentrates the border movement of rotating vane 700,
I.e. the globule concentrate to rotating vane 700 away from drive shaft 600 an end motion, in order that when rotating vane 700 rotates, water
Pearl can equably throw away, for example, the different setting of each diameter of the through hole 720, for example, the diameter of some through holes 720 by
One end near the drive shaft 600 is gradually reduced to the one end away from the drive shaft 600, for example, some through holes 720
Diameter near the drive shaft 600 one end to the one end away from the drive shaft 600 in arithmetic progression reduce, so,
Although the globule is under the action of the centrifugal towards the border movement of rotating vane 700, due to the diameter of the through hole 720 at edge it is less,
And it is bigger away from the diameter of the through hole 720 at the edge of rotating vane 700, the bigger through hole 720 of diameter causes the globule to be easier to be got rid of
Go out, therefore so that throwing away for the globule is more uniformly distributed.
In order to improve the efficiency that the globule throws away, for example, a diameter of 1mm~4mm of the through hole 720, it is preferable that the through hole
720 a diameter of 1.5mm~3mm, it is preferable that a diameter of 1.5mm of the through hole 720, it should be understood that the diameter of through hole 720 is not
Preferably excessive, the excessive diameter of through hole 720 easily causes globule excess accumulation, forms stronger dampness, and user is impacted, and makes
The easy rheumatism of user is obtained, and the diameter of through hole 720 is too small, then the globule is sprayed less efficient, therefore, in the present embodiment, through hole
720 diameters are preferably 1.5mm, so so that the globule is not easy to pile up at through hole 720 excessive and produce the larger dew of volume
Pearl, on the other hand, then causes the globule to spray efficiency and improves.
In one embodiment, some through holes 720 are placed equidistant on the rotating vane 700.In other reality
In applying example, the different setting of spacing of some through holes 720, for example, the spacing of some through holes 720 is by near the driving
One end of axle 600 to one end away from the drive shaft 600 gradually increases, for example, between the through hole 720 on rotating vane 700
Away from being increased between the edge of blade from one end of close drive shaft 600, specifically, when 700 high-speed rotation of rotating vane, water
Pearl in passage 710 centrifugalization towards rotating vane 700 border movement, so, the globule be easier in rotating vane 700
The through hole 720 at edge is piled up, in order that rotating vane 700 spray the globule be more uniformly distributed, in the present embodiment, due to closer to
The spacing of edge through hole 720 of rotating vane 700 is bigger, so that the globule dispersion that the edge of rotating vane 700 sprays, and then make
Obtain the globule sent in whole air-supply face 701 to be more uniformly distributed.
In order that the globule in delivery pipe 500 efficiently can be delivered to through hole 720 by passage 710, and with air-supply
Output, for example, the width of passage 710 is set to 1.5mm~3mm, it is preferable that the width of passage 710 is set to 1.8mm, for example,
Passage 710 is arranged along the direction on the surface parallel to rotating vane 700, and for example, passage 710 is arranged at rotating vane in tree-like
In 700, for example, passage 710 is provided with multiple branches, and each branch connects with a through hole 720.And in order in rotating vane 700
Passage 710 is inside opened up, for example, the thickness of rotating vane 700 is set to 3mm~5mm, it is preferable that the thickness of rotating vane 700 is
3.5mm, specifically, the thickness of rotating vane 700 is too thick, increases windage so that the energy consumption of motor increases, therefore, this reality
In applying example, the thickness of rotating vane 700 is preferably 3.5mm.For example, the depth of through hole 720 is 0.8mm, for example, each through hole
Highly inconsistent at 720 opening, for example, the height at the opening of each through hole 720 near the side of drive shaft 600 is less than
Away from the height of the side of drive shaft 600, so, due to the height away from the side of drive shaft 600 it is higher so that the globule receives through hole
720 away from the side of drive shaft 600 guiding, be intended to the lateral movement of drive shaft 600 1, so cause exist in rotating vane 700
During rotation, the globule or steam can overcome centrifugal action, conveying direction court to send the middle part of front cover to concentrate so that steam output more collects
In.
In order to further such that the greater concentration of output of steam, for example, the rotating vane 700 has curved-surface structure, example
Such as, the rotating vane 700 is from the one end away from the drive shaft 600 to one end direction air-supply near the drive shaft 600
Face 701 bends, and for example, the rotating vane 700 is obliquely installed in the drive shaft 600, for example, the rotating vane 700
Bend towards air-supply face 701 from the one end away from the drive shaft 600 to the one end near the drive shaft 600, and then effectively
So that the ejection of steam is more concentrated, it is to avoid steam is thrown away to edge due to centrifugal action.
For example, the material of rotating vane 700 is plastics, for example, the injection mo(u)lding of rotating vane 700.Due to rotating vane 700
It is made up of plastic material, therefore, with lighter quality, the energy consumption of motor can be effectively reduced.
In order to the water for controlling water tank 300 is gradually atomized, it is to avoid water is flowed into without limit in soniclizer 400,
In one embodiment, as shown in figure 5, the water tank 300 offers outlet 301, for example, the outlet 301 is arranged at
In the bottom of vertical direction, the outlet 301 is connected with trickling filter 310, the trickling filter 310 and institute to the water tank 300
State soniclizer 400 to connect, for example, the trickling filter 310 includes trickling filter body 311, elastic component and cock body 313, example
Such as, the elastic component is spring 312, and the trickling filter body 311 is connected with the outlet 301, the trickling filter body 311
Water clock mouth 314 is offered, the spring 312 is connected with the cock body 313, and the spring 312 is respectively provided with the cock body 313
In the both sides of water clock mouth 314, the activity of the cock body 313 is connected to the water clock mouth 314.So, cock body 313 is in spring 312
Elastic reaction under, be connected to water clock mouth 314, it is to avoid water in water tank 300 flows out.
In order to further strengthen the sealing function of cock body 313, it is to avoid water is oozed out by water clock mouth 314, for example, as shown in figure 5,
The cock body 313 is provided with pad 318 towards the one side of the water clock mouth 314, and for example, the pad 318 is rubber sheet gasket
318, cock body 313 is connected to water clock mouth 314 by pad 318 so that the sealing of cock body 313 is strengthened, and then is prevented effectively from water
Oozed out by water clock mouth 314.
In order to open the cock body 313 so that water is gone out to flow out by water clock mouth 314, in one embodiment, referring again to
Fig. 5, the spring 312 is connected by connector 315 away from one end of the trickling filter body 311 with the cock body 313, example
Such as, the connector 315 includes connecting rod 316, and for example, spring 312 is connected by connecting rod 316 with cock body 313, for example, example
Such as, the activity of the connecting rod 316 is inserted in the water clock mouth 314.For example, the water clock mouth 314 is circle, for example, the company
Extension bar 316 has circular configuration, and for example, the cross section of connecting rod 316 is circle, and for example, the diameter of connecting rod 316 is less than water clock
The diameter of mouth 314, so so that connecting rod 316 can be neatly movable in water clock mouth 314, and for example, cock body 313 has circle
Tee section, for example, the diameter with diameter greater than water clock mouth 314 of cock body 313, so, cock body 313 can completely by water clock mouth 314
Capping, so as to avoid water clock mouth 314 from seeping water.
For example, as shown in figure 5, connector 315 includes connecting rod 316 and contiguous block 317, the contiguous block 317 with it is described
Spring 312 connects away from one end of the water clock mouth 314, and the one end of the connecting rod 316 is connected with the contiguous block 317, another
Hold and be connected with the cock body 313, the connecting rod 316 is actively located in the water clock mouth 314, for example, contiguous block 317 and cock body
313 both sides for being respectively arranged at water clock mouth 314, so, contiguous block 317 as the point of application, when contiguous block 317 is subject to towards water clock
During the power of mouth 314, the push the spring 312 of contiguous block 317 is compressed, and contiguous block 317 drives connecting rod 316 to move, connecting rod 316
Cock body 313 is promoted away from the water clock mouth 314 so that water clock mouth 314 is opened, so that water can lead under gravity
Cross water clock mouth 314 to flow out automatically.
In order to provide accommodation space by the water flowed out in water tank 300, to be atomized, in one embodiment,
As shown in Figure 6 to 7, fan of the present utility model 10 also includes aerosol container 410, and the water tank 300 holds with the atomization
Device 410 is connected, and the delivery pipe 500 is connected with the aerosol container 410, and the soniclizer 400 is arranged at described
In aerosol container 410.For example, aerosol container 410 is arranged at the lower section of water tank 300, so, so, is flowed out by water clock mouth 314
Water energy enough flow in aerosol container 410, water is acted on and is atomized in aerosol container 410 by soniclizer 400.
In order that the trickling filter 310 of water tank 300 is opened, and then allows the water to flow out, and for example, the aerosol container
410 are set to semienclosed container, and for example, the aerosol container 410 has vessel port, for example, the vessel port and the water storage
Tank 300 connects, and for example, the vessel port is connected with outlet 301, and for example, the aerosol container 410 also includes jacking block 440, example
Such as, the projection of the jacking block 440 is arranged at the one end of the aerosol container 410 away from the vessel port, the jacking block 440 with it is described
The activity of contiguous block 317 is abutted, and jacking block 440 is used for contiguous block 317 described in jack-up, so that cock body 313 is left water clock mouth by jack-up
314, and then water clock mouth 314 is opened, water energy is enough to flow into aerosol container 410 from the water clock mouth 314.
In order that water energy is enough to flow into aerosol container 410 from influencing meridian trickling filter 310, and realize the water in aerosol container 410
Position automatically controls, and for example, as shown in Figure 6 and Figure 7, lever assembly 420 and floating block 430, institute is also included in the aerosol container 410
Lever assembly 420 is stated including fulcrum block 421 and its body 422, the fulcrum block 421 is fixedly installed in aerosol container 410,
For example, fulcrum block 421 is fixedly connected with the inwall of aerosol container 410, the middle part of its body 422 and the fulcrum block 421
It is flexibly connected, so that its body 422 makees lever motion, one end of its body 422 on the fulcrum block 421
It is fixedly connected with floating block 430, the other end is fixedly connected with the jacking block 440, the jacking block 440 is movable with the connector 315
Abut, for example, the jacking block 440 is abutted with the activity of the contiguous block 317.For example, the density of the floating block 430 is close less than water
Degree, for example, the floating block 430 is block rubber, and for example, the floating block 430 is unit of plastic, and for example, the weight of the floating block 430 is big
In the weight of the jacking block 440, for example, the gravity that the floating block 430 is subject to is more than the gravity that the jacking block 440 is subject to, described
Gravity and the elastic force sum of the spring 312 that connector 315 is subject to, for example, the water tank 300 and the aerosol container
410 away from one end of the water tank 300 distance more than the connecting rod 316 length, for example, the water tank 300 with
The aerosol container 410 is more than the connector 315 and its body away from the distance of one end of the water tank 300
422 length sum.
Specifically, as shown in fig. 7, when in water tank 300 water flow into aerosol container 410 after, the water in aerosol container 410
When position rises to preset height, floating block 430 is moved upwards by the buoyancy of water effect in aerosol container 410 by jack-up, is passed through
Lever principle, jacking block 440 is moved downward, so that jacking block 440 is away from the contiguous block 317, and then causes cock body 313 in bullet
Spring 312 is connected to water clock mouth 314 under acting on so that water clock mouth 314 is sealed, and water cannot be continued to run in aerosol container 410,
In such manner, it is possible to so that the water level in aerosol container 410 will not continue to rise, when the water in aerosol container 410 is atomized so that mist
Change the water level decreasing in container 410, as shown in fig. 6, because floating block 430 no longer receives buoyancy, or reduced by sending out buoyancy,
And then floating block 430 is moved downward, by the jack-up of jacking block 440 so that jacking block 440 is moved upwards, and then jacking block 440 is caused to overcome spring
312 elastic force is by the jack-up of contiguous block 317, so that cock body 313 leaves water clock mouth 314 so that water clock mouth 314 is opened, and
Water is flowed in aerosol container 410 again by water clock mouth 314, when the water level of aerosol container 410 rises to preset height so that floating block
430 when moving again up, and water clock mouth 314 is closed again by cock body 313, so realize water level in aerosol container 410 from
Dynamic control.
In order to improve the transfer efficiency of delivery pipe 500, for example, as shown in figure 8, the delivery pipe 500 is near the water storage
One end of tank 300 is provided with wind wheel 510, and by wind wheel 510 velocity of liquid assets in delivery pipe 500 of air-flow can be improved, and enters
And improve the transfer efficiency of delivery pipe 500.
In order to control the wind direction of fan 10, for example, as shown in Figure 9 and Figure 10, this utility model also includes some flabellums
800, some flabellums 800 are rotated and are arranged at the rotating vane 700 towards the side in air-supply face 701, for example, some described
Flabellum 800 is vertically arranged on the base 100, for example, is placed equidistant between some flabellums 800.By changing flabellum
800 direction, and then cause the wind of the blowout of rotating vane 700 or the steam of blowout to change direction so that the use of fan 10
It is more flexible.In order to strengthen the guidance quality of flabellum 800, for example, some flabellums 800 have curved-surface structure, for example, the fan
The surface of leaf 800 is curved surface, so so that the guidance quality of flabellum 800 is higher, is conducive to changing the blowout side of wind direction or steam
To.
In order to better control over the steering of flabellum 800, for example, this utility model also includes infrared detection module, fingerprint identification module, described red
Outer detection module is used to detect human body, and for example, the infrared detection module, fingerprint identification module is connected with control module, and the control module is also used
Rotate in flabellum 800 described in the position control for detecting human body according to infrared detection module, fingerprint identification module, so as to realize the auto-steering of fan 10,
Improve user to perceive.
In order to realize the connection of delivery pipe 500 and passage 710, in one embodiment, as shown in figure 11, the drive shaft
600 are provided with gas box 900 near one end of the rotating vane 700, and the gas box 900 is connected with the passage 710, the gas
Box 900 includes the first box body 910 and the second box body 920, and second box body 920 is connected with the drive shaft 600, described first
Box body 910 is flexibly connected with second box body 920, and first box body 910 is fixedly installed, and first box body 910 is opened up
There is box mouth 930, first box body 910 is connected by the box mouth 930 with the delivery pipe 500.Specifically, first box
Body 910 and second box body 920 are tightly connected, and are internally formed cavity 901, and delivery pipe 500 is by cavity 901 and passage 710
Connection, for example, the rotating vane 700 is integrally formed with the second box body 920, and for example, the rotation of the second box body 920 is arranged at described
On first box body 910, for example, the rotating vane 700 and the integrated injection molding of the second box body 920, the He of the first box body 910
After second box body 920 connects, the passage 710 of rotating vane 700 is communicated to cavity 901, and cavity 901 is by box mouth 930 and conveying
Pipe 500 is connected, so that the passage 710 on rotating vane 700 still keeps when rotating at a high speed with rotating vane 700
With the connection of delivery pipe 500.
In order that box 900 of bringing about the desired sensation rotate it is more steady, for example, the gas box 900 have circular configuration, for example, the gas
Of box 900 is circle perpendicular to the section in the direction of drive shaft 600, and for example, the gas box 900 has cirque structure, example
Such as, of gas box 900 is annular perpendicular to the section in the direction of drive shaft 600, and for example, the gas box 900 is coated on
The outside of the drive shaft 600, for example, the drive shaft 600 is arranged in the middle part of the annular gas box 900, so, when the second box
Body 920 with drive shaft 600 rotate when, the circle of the circle of the second box body 920 and the first box body 910 is matched so that the second box
Body 920 rotates more steady.For example, the box mouth 930 is circle, for example, the box mouth 930 for square, for example, the box mouth
930 is polygon.
In order to guide Jing delivery pipes 500 to be delivered to the air-flow of box mouth 930, for example, first box body 910 is away from described
One end of two box bodys 920 is provided with inclination piece, and for example, the inclination piece is from the one end away from second box body 920 to close
One end of second box body 920 inclines, the inclination piece enable to air-flow can consolidated movement to the second box body 920, enter
And enter in passage 710.
For the ease of adding water toward water tank 300, for example, as shown in figure 12, the water tank 300 is provided with water inlet
330, the water inlet 330 is arranged at the water tank 300 on the top of vertical direction, for example, the water inlet 330 it is raised with
Outside support frame as described above 200, in such manner, it is possible to it is easy to user to add water toward water tank 300 by water inlet 330, for the ease of user
Water level in observation water tank 300, for example, the water tank 300 has visual structure, and for example, the visual structure is setting
Forms on the water tank 300, for example, the forms are strip, for example, scale are provided with the forms, so,
User can be clearly viewed the water level in water tank 300 by transparent forms, and then judge whether to need toward water inlet 330
Add water.
In order that the ejection of steam is more balanced, in one embodiment, this utility model also includes Rotating speed measring mould
Block, the Rotating speed measring module is used to detect the rotating speed of the motor, for example, the Rotating speed measring module and the control
Module is electrically connected, and soniclizer 400 is electrically connected with control module, and the control module is additionally operable to according to the Rotating speed measring
The rotating speed of the motor of module detection controls the work of soniclizer 400, for example, when the rotating speed of motor is more than the
During one preset rotation speed, the power rise of soniclizer 400 is controlled, to improve atomization speed, when the rotating speed of motor is less than
During the second preset rotation speed, control the power drop of soniclizer 400, to reduce atomization speed, so, when the rotating speed of fan 10 compared with
Height, when wind speed is larger, improves atomization speed so that the steam of blowout is more so that cooling-down effect more preferably, and in the rotating speed of fan 10
It is relatively low, when wind speed is less so that the steam of blowout is less, due to spray when wind speed is relatively low excessive steam will cause the globule from and
When gasify, therefore, atomization speed is reduced in this feeding can avoid steam from causing user uncomfortable too much, by said process so that
Steam sprays more balanced.
Each technical characteristic of embodiment described above can be combined arbitrarily, to make description succinct, not to above-mentioned reality
Apply all possible combination of each technical characteristic in example to be all described, as long as however, the combination of these technical characteristics is not deposited
In contradiction, the scope of this specification record is all considered to be.
Embodiment described above only expresses several embodiments of the present utility model, and its description is more concrete and detailed,
But therefore can not be interpreted as the restriction to utility model patent scope.It should be pointed out that for the common skill of this area
For art personnel, without departing from the concept of the premise utility, some deformations and improvement can also be made, these are belonged to
Protection domain of the present utility model.Therefore, the protection domain of this utility model patent should be defined by claims.
Claims (6)
1. a kind of fan, it is characterised in that include:Base, bracing frame, water tank, soniclizer, delivery pipe, driving electricity
Machine, drive shaft and some rotating vanes;
Support frame as described above is fixedly installed on the base, and the drive shaft turns are arranged on support frame as described above, and the drive
Galvanic electricity machine and the drive shaft drive connection, some rotating vanes are arranged in the drive shaft, and the water tank is arranged
On support frame as described above, and the water tank is connected with the soniclizer;
Some rotating vanes rotate to form air-supply face, and each rotating vane is offered towards the one side in the air-supply face
Some through holes, if offering dry passage in the rotating vane, each through hole is by the passage and one end of delivery pipe
Connection, the other end of the delivery pipe is connected with the soniclizer;
The delivery pipe is arranged at the side in the rotating vane dorsad air-supply face, and the delivery pipe has multiple complications
Structure;
The delivery pipe is arranged in S shapes, and the internal diameter of the delivery pipe is 10mm~15mm, and the internal diameter of the delivery pipe is by near institute
State one end of soniclizer near one end of the passage by increase.
2. fan according to claim 1, it is characterised in that some rotating vanes are uniformly around located at the drive shaft
On.
3. fan according to claim 1, it is characterised in that the identical setting of each through-hole diameter.
4. fan according to claim 1, it is characterised in that the different setting of each through-hole diameter.
5. fan according to claim 1, it is characterised in that the diameter of some through holes is by near the drive shaft
One end to one end away from the drive shaft is gradually reduced.
6. fan according to claim 1, it is characterised in that the internal diameter of the delivery pipe is 12mm~13mm.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201620682665.XU CN206131241U (en) | 2016-06-28 | 2016-06-28 | Fan |
Applications Claiming Priority (1)
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CN201620682665.XU CN206131241U (en) | 2016-06-28 | 2016-06-28 | Fan |
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CN206131241U true CN206131241U (en) | 2017-04-26 |
Family
ID=58560304
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CN201620682665.XU Expired - Fee Related CN206131241U (en) | 2016-06-28 | 2016-06-28 | Fan |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN118882148A (en) * | 2024-10-08 | 2024-11-01 | 延安大学西安创新学院 | A medical atomization sterilization ventilation fan and a sterilization ventilation system |
-
2016
- 2016-06-28 CN CN201620682665.XU patent/CN206131241U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN118882148A (en) * | 2024-10-08 | 2024-11-01 | 延安大学西安创新学院 | A medical atomization sterilization ventilation fan and a sterilization ventilation system |
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