Extension tube for dust collector
Technical Field
The invention relates to an electric appliance, in particular to an extension pipe for a dust collector.
Background
The existing dust collector is convenient for users to use, most of the existing dust collectors are provided with extension pipes, and the extension pipes can be connected between a dust collector main body and a dust collector suction head when the dust collector cleans the ground or high places, so that the working radius of the dust collector is increased. Because most of the existing suction heads of the dust collectors are also provided with motors for driving the rolling brushes, the main bodies of the dust collectors need to supply power to the motors. After the extension pipe is connected, the motor needs to be connected to a power source through the extension pipe.
The axial through hole that the power supply line was walked is generally gone out to inside shaping of extension pipe, and from the cross section, the axial through hole can occupy the inside hole space that is used for the air current to flow of extension pipe, leads to extension intraductal hole shape to become irregular, receives the influence easily when rubbish passes through the extension pipe, forms the sanitary dead angle moreover on the baffle that separates axial through hole and hole easily, further influences dust absorption effect. In addition, the existing extension rod is mostly formed by integrally injection molding plastic parts, and a wiring channel is formed by injection molding, so that the forming difficulty is high, the obtained extension rod is high in weight, poor in appearance beauty and poor in integral use experience.
SUMMERY OF THE UTILITY MODEL
The invention aims to provide an extension tube for a dust collector, which is convenient to assemble and reduces the influence of arranging an electric wire on an inner tube.
In order to achieve the purpose, the invention adopts the following technical scheme: extension pipe for dust catcher, its characterized in that: the cable connector comprises an inner tube, an outer tube sleeved on the outer side of the inner tube, and a first connector and a second connector which are respectively arranged at two ends of the inner tube, wherein at least one of the first connector and the second connector and the inner tube or the outer tube are split structural members, the first connector is provided with a first through hole communicated with the inner tube, the second connector is provided with a second through hole communicated with the inner tube, the first connector and the second connector respectively fix two ends of the inner tube and the outer tube so that the relative position relation between the outer tube and the inner tube is fixed, and a wiring channel is formed between the inner tube and the outer tube; the first connector is provided with a first wiring terminal, the second connector is provided with a second wiring terminal, one end of the cable is connected with the first wiring terminal, and the other end of the cable extends along a wiring channel between the inner tube and the outer tube and is connected with the second wiring terminal; the first connector comprises a first inserting section, the first inserting section is used for inserting the outer pipe to be connected with the inner pipe, the second connector comprises a second inserting section, and the second inserting section is used for being connected with a suction head or a main body of the dust collector.
Furthermore, the inner pipe and the outer pipe are arranged eccentrically, the outer diameter of the inner pipe is D, the inner diameter of the outer pipe is D, and D is more than 0.4D and less than D.
Furthermore, the outer wall of the inner tube is provided with a positioning buckle around which a positioning electric wire is wound.
Further, the location is detained including the spacing portion with the connecting portion of inner tube connection and spacing electric wire, forms the draw-in groove that the power supply line passed between the outer wall of spacing portion and inner tube.
Furthermore, spacing portion is equipped with two and distributes in the axial of inner tube and forms two draw-in grooves in the both sides of connecting portion, and the electric wire is walked around connecting portion and is passed another draw-in groove again and realize the location after passing a draw-in groove from location knot one side.
Furthermore, the outer wall of the inner pipe is provided with a support rib used for propping against the inner wall of the outer pipe, and the positioning buckle is not higher than the support rib.
Furthermore, the first connector comprises a first connecting section, the first connecting section abuts against the outer pipe to be connected, the outer circumferential surface of the first connecting section is concentric with the outer pipe, and the first through hole penetrates through the first connecting section and the first inserting section and is concentric with the inner pipe.
Furthermore, the second connector comprises a second connecting section, the second connecting section abuts against the outer pipe to be connected, the outer circumferential surface of the second connecting section is concentric with the outer pipe, and the second communicating hole penetrates through the second connecting section and the second inserting section and is concentric with the inner pipe.
Furthermore, the outer pipe is a metal pipe, and the inner pipe is a plastic pipe.
Furthermore, one end of the first connecting head connected with the inner pipe is provided with a first extension ring, the inner ring of the first extension ring forms a first accommodating groove for accommodating the end part of the outer pipe, a limiting rib is arranged in the first accommodating groove, the end part of the outer pipe is provided with a limiting groove, and the limiting rib and the limiting groove are matched to realize circumferential positioning of the inner pipe and the outer pipe.
After the technical scheme is adopted, the invention has the following advantages: the first connector and the second connector are connected with the inner pipe and are used for fixing the outer pipe at the same time, so that the relative position relation between the outer pipe and the inner pipe is fixed, the assembly work of the inner pipe, the outer pipe, the first connector and the second connector is finished, a wiring channel is naturally formed, and the wire routing channel can be simply and conveniently assembled at one time; the wiring channel is formed between the inner tube and the outer tube, the flow area of the inner tube is not influenced, the tube hole of the inner tube can still keep a good cylindrical structure, garbage can conveniently and quickly pass through the wiring channel, sanitary dead corners cannot be generated, the electric wire is hidden in the wiring channel, and the electric connection is realized through the first wiring terminal and the second wiring terminal, so that the wiring channel is attractive, and in the using process of the extension tube, the electric wire cannot be drawn and extruded through the stress of the first wiring terminal and the second wiring terminal, so that the wiring channel has a good protection effect on the electric wire, and the service life of the extension tube is prolonged; the invention constructs the routing channel between the outer pipe and the inner pipe, which can reduce the difficulty of plastic injection of the plastic pipe and the total weight of the rod body, and the appearance of the invention adopts the metal pipe, which can keep the aesthetic property of the surface of the extension rod.
Drawings
The invention will be further described with reference to the accompanying drawings in which:
FIG. 1 is a schematic view of an extension tube for a vacuum cleaner according to the present invention (the first connector is shown separately from the inner tube);
FIG. 2 is a cross-sectional view of an extension pipe for a vacuum cleaner according to the present invention;
FIG. 3 is a schematic view showing the construction of an extension pipe for a vacuum cleaner according to the present invention (without an outer pipe and a first joint)
FIG. 4 is an enlarged view taken at I in FIG. 2;
fig. 5 is an enlarged view at II in fig. 2.
Detailed Description
The invention provides an extension tube for a dust collector, which is seen by combining figures 1 and 2 and comprises an inner tube 1, an outer tube 2 and an electric wire 3, wherein the outer tube 2 is sleeved outside the inner tube 1, two ends of the inner tube 1 are respectively provided with a first connector 4 and a second connector 5, at least one of the first connector 4 and the second connector 5 and the inner tube 1 or the outer tube 2 are split structural members, the first connector 4 comprises a first communicating hole 401 butted with the inner tube 1, the hole 401 is communicated with an inner cavity channel of the inner tube 1, the second connector 5 comprises a second communicating hole 501 butted with the inner tube 1, the hole 501 is also communicated with the inner cavity channel of the inner tube 1, the first connector 4 and the second connector 5 are provided with an outer tube 2 limiting structure used for fixing the outer tube 2 to form a routing channel 100 for routing a power supply line 3 between the outer tube 2 and the inner tube 1, the first connector 4 and the second connector 5 are connected with the inner tube 1 and simultaneously fix the outer tube 2, the relative position relation between the outer pipe 2 and the inner pipe 1 is fixed, so that the assembly work of the inner pipe 1, the outer pipe 2, the first connector 4 and the second connector 5 is completed, the wiring channel 100 is naturally formed, and the assembly is simple and convenient in one step; first connector 4 is equipped with first binding post 6, and second connector 5 is equipped with second binding post 7, and first binding post 6 is connected to the one end of electric wire 3, and second binding post 7 is connected to the other end. Walk line passageway 100 and form between inner tube 1 and outer tube 2, do not influence the flow area of inner tube 1, the tube hole of inner tube still can keep good cylindrical structure, the rubbish of being convenient for passes through fast, can not produce the health dead angle, and electric wire 3 hides in walking line passageway 100, through first binding post 6, second binding post 7 realizes the electricity and connects, and is not only pleasing to the eye, and in extension pipe use, through first binding post 6, second binding post 7 atress, electric wire 3 can not receive the tractive, extrude, there is better guard action to electric wire 3, prolong its life.
For convenient assembly, reduce the influence of outer tube 2 size to inner tube 1 size simultaneously, can form line passageway 100 with inner tube 1 relative outer tube 2 eccentric settings, the external diameter of inner tube 1 is D, and the internal diameter of outer tube 2 is D, and 0.4D < D < D, the size range that inner tube 1 can adopt is wider.
See fig. 3 and fig. 4, for making things convenient for the outer tube assembly, can influence the assembly of outer tube 2 because of the too big home range of electric wire 3, and the cable abnormal sound influences user experience, this embodiment is equipped with around putting the location of location electric wire 3 and detains 11 at the outer wall of inner tube 1. Because the electric wire 3 generally only receives gravity and inertial force to act on in the routing channel 100, so only need to carry out simple location to the electric wire 3 can, in this embodiment, the location knot 11 includes the connecting portion 111 of being connected with the inner tube 1 and the spacing portion 112 of spacing electric wire 3, forms the draw-in groove 113 that the power supply line 3 passed between the outer wall of spacing portion 112 and inner tube 1. After the electric wire 3 passed through draw-in groove 113, spacing portion 112 can be spacing to electric wire 3 in the footpath of extension pipe, combines connecting portion 111 again to fix a position electric wire 3, and a draw-in groove 113 can fix a position electric wire 3, and in outer pipe assembling process, the electric wire can not remove at will, can not influence the outer tube assembly. Certainly, in order to improve the positioning effect of the electric wire 3, two limiting portions 112 may be provided and distributed on two sides of the connecting portion 111 in the axial direction of the inner tube 1 to form two slots 113, a T-shaped structure is formed as seen in fig. 4, and the electric wire 3 passes through one slot 113 from one side of the positioning buckle 11, then bypasses the connecting portion 111, and then passes through the other slot 113 to realize positioning.
Because the extension tube has a certain length, in order to improve the anti-deformation capability of the outer tube 2, the outer wall of the inner tube 1 can be provided with a support rib 12 for abutting against the inner wall of the outer tube 2, and in order to avoid the stress of the positioning buckle 11 as much as possible, the positioning buckle 11 can be designed to be not higher than the support rib 12. In addition, in order to improve the positioning effect of the electric wire 3, the positioning buckle 11 and the support ribs 12 can be arranged together, and the support ribs 12 are distributed on two sides of the positioning buckle 11 in the axial direction of the extension pipe, so that the electric wire 3 can be limited in the axial direction, and the probability that the electric wire 3 is separated from the clamping groove 113 can be reduced.
The first connector 4 is designed to allow airflow to flow smoothly to ensure a dust suction effect, and to be matched with the outer tube 2 to prevent the user from seeing the eccentric arrangement of the inner tube 1, the first connector 4 includes a first connection section 41 and a first insertion section 42, the first connection section 41 abuts against the outer tube 2 to be connected, the outer circumferential surface of the first connection section 41 is concentric with the outer tube 2, the first insertion section 42 is used for inserting the outer tube to connect the inner tube, and the first through hole 401 penetrates through the first connection section 41 and the first insertion section 42 and is concentric with the inner tube 1. The second connector 5 comprises a second connecting section 51 and a second plug-in section 52, the second connecting section 51 is connected with the outer tube 2 in a manner of propping against the outer tube, the outer circumferential surface of the second connecting section 51 is concentric with the outer tube 2, the second plug-in section 52 is used for connecting a suction head or a main body of the dust collector, and the second communication hole 501 penetrates through the second connecting section 51 and the second plug-in section 52 and is concentric with the inner tube 1. It will be appreciated that the second plug section 52 is for connecting to a cleaner body, and the first connection section 41 is correspondingly for connecting to a cleaner head, and vice versa it is also possible that the second plug section 52 is for connecting to a cleaner head, and the first connection section 41 is correspondingly for connecting to a cleaner body.
The materials of the outer tube 2 and the inner tube 1 are not limited in general, as long as the strength is satisfactory, the density is low, and the inner tube 1 is light, in this embodiment, the outer tube 2 is a metal tube, preferably an aluminum alloy tube, and the inner tube 1 is a plastic tube.
In order to improve the reliability of the assembly of the outer tube 2, a limiting structure of the outer tube 2 may be disposed at the first connector 4 and/or the second connector 5, and fig. 5 shows a preferred embodiment of the limiting structure, as shown in fig. 5, a first extending ring 43 is disposed at one end of the first connector 4 connected to the inner tube 1, an inner ring of the first extending ring 43 forms a first accommodating groove 402 for accommodating an end portion of the outer tube 2, a limiting rib is disposed in the first accommodating groove, a limiting groove is disposed at an end portion of the outer tube 2, the limiting rib and the limiting groove cooperate to realize circumferential positioning of the inner tube 1 and the outer tube 2, for more reliable positioning of the outer tube 2, a second extending ring may be disposed at one end of the second connector 5 connected to the inner tube 1, an inner ring of the second extending ring forms a second accommodating groove for accommodating an end portion of the outer tube 2, and the second accommodating groove has the same structure as the first accommodating groove 402.
The first connector 4 and the second connector 5 can be selected to be directly integrated with the inner tube 1, or both can be selected to be assembled and fixed with the inner tube 1. In the present embodiment, the first connector 4 is fixedly assembled with the inner tube 1, and the second connector 5 is directly and integrally formed with the inner tube 1.
Other embodiments of the present invention than the preferred embodiments described above will be apparent to those skilled in the art from the present invention, and various changes and modifications can be made therein without departing from the spirit of the present invention as defined in the appended claims.