CN210340169U - Clothes airing assembly - Google Patents
Clothes airing assembly Download PDFInfo
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- CN210340169U CN210340169U CN201920771319.2U CN201920771319U CN210340169U CN 210340169 U CN210340169 U CN 210340169U CN 201920771319 U CN201920771319 U CN 201920771319U CN 210340169 U CN210340169 U CN 210340169U
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Abstract
The utility model discloses a clothes and luggage subassembly that dries in air includes loading board, driving piece, take-up reel and card line spare, and the one side of loading board is located to the driving piece, and the take-up reel is located the another side of loading board, and the output of driving piece is connected with the take-up reel after passing the loading board, and driving piece drive take-up reel rotates, and the another side of loading board is located to card line spare to it is relative with the take-up reel. The utility model provides a driving piece, take-up reel and card line spare carry out reasonable overall arrangement setting on the loading board for the whole of the clothing subassembly that dries in the air formation integration, but the integral movement, and compact structure, it is small, convenient to use person's use.
Description
Technical Field
The utility model relates to an automatic clothing technical field that dries in air specifically relates to a clothing subassembly dries in air.
Background
The clothes-drying assembly is the core of the automatic clothes-drying machine, and generally comprises a driving part, a winding roll, a wire clamping wheel and other parts, and in the prior art, all the parts of the clothes-drying assembly are separately arranged, and need to be separately installed in actual use, which causes inconvenience to users.
SUMMERY OF THE UTILITY MODEL
Not enough to prior art, the utility model provides a clothes-horse subassembly dries in air.
The utility model discloses a clothes-horse subassembly includes: a carrier plate;
the driving piece is arranged on one surface of the bearing plate;
the winding roll is positioned on the other surface of the bearing plate; the output end of the driving piece penetrates through the bearing plate and then is connected with the winding roll, and the driving piece drives the winding roll to rotate; and
and the wire clamping piece is arranged on the other surface of the bearing plate and is opposite to the winding roll.
According to an embodiment of the present invention, it further comprises a housing; the shell comprises an upper shell and a lower shell; the upper shell is arranged on one surface of the bearing plate and covers the driving piece; the lower shell is arranged on the other side of the bearing plate and covers the winding roll and the wire clamping piece.
A clothes drying assembly according to claim, wherein the carrier plate has a carrier recess in a face thereof facing the lower casing; the winding roll and the wire clamping piece are contained in the bearing groove, and the lower shell is clamped in a notch of the bearing groove.
According to an embodiment of the present invention, the driving member includes a driving motor, a reduction gear box, and a driving shaft; the driving motor is laid on the bearing plate, the output end of the driving motor is connected with one end of the reduction gearbox, the other end of the reduction gearbox is connected with one end of the driving shaft, and the other end of the driving shaft penetrates through the bearing plate and then is connected with the winding roll; the driving shaft is perpendicular to the driving motor.
According to an embodiment of the present invention, the output end of the driving motor has a worm; the reduction gearbox is provided with a turbine part matched with the worm; the worm is engaged with the worm gear.
According to an embodiment of the present invention, the winding roll comprises a plastic winding roll and a sheet metal part; the sheet metal part is laid on one surface of the plastic winding roll; the output end of the driving piece penetrates through the sheet metal part and then is connected with the plastic winding roll.
According to an embodiment of the present invention, the number of the sheet metal parts is two; the two sheet metal parts are respectively laid on two sides of the plastic winding roll.
According to an embodiment of the present invention, the wire clamping member includes a fixing plate, a wire clamping turntable member and a wire clamping wheel member; the wire clamping rotary disc piece comprises a wire clamping rotary disc shaft and a wire clamping rotary disc; the fixed plate is connected with the bearing plate; the wire clamping rotary table shaft is arranged on the fixed plate, and the wire clamping rotary table is sleeved on the wire clamping rotary table shaft; the wire clamping rotary table is provided with an annular groove along the periphery of the wire clamping rotary table; the wire clamping rotating wheel piece comprises a wire clamping rotating wheel shaft and a wire clamping rotating wheel; the wire clamping rotary wheel shaft is arranged on the fixed plate and is parallel to the wire clamping rotary disc shaft; the wire clamping rotating wheel is sleeved on the wire clamping rotating wheel shaft, and the rim of the wire clamping rotating wheel is located in the annular groove and is opposite to the bottom of the annular groove.
According to an embodiment of the present invention, the device further comprises a touch detection member; the touch detection piece is arranged on the bearing plate;
the wire clamping piece also comprises an elastic piece; the both ends of elastic component are connected with card line carousel axle and card line runner hub connection respectively for card line carousel axle can carry out the displacement for the loading board, and the card line carousel axle after the displacement carries out the butt with touching the detection piece.
This application carries out reasonable overall arrangement setting through driving piece, take-up reel and card line spare on the loading board for the clothing subassembly that dries in the air forms the whole of integration, but the integral movement, and compact structure, small, convenient to use person's use.
Drawings
The accompanying drawings, which are included to provide a further understanding of the application and are incorporated in and constitute a part of this application, illustrate embodiment(s) of the application and together with the description serve to explain the application and not to limit the application. In the drawings:
FIG. 1 is a schematic structural diagram of a carrier plate and a housing in this embodiment;
figure 2 is an exploded view of the clothes drying assembly of this embodiment;
FIG. 3 is an exploded view of the clothes drying assembly of this embodiment from another perspective;
FIG. 4 is a schematic structural diagram of the driving member in the present embodiment;
FIG. 5 is a schematic structural diagram of the driving member of the present embodiment;
FIG. 6 is a schematic structural view of a reel in the present embodiment;
FIG. 7 is a sectional view of the take-up reel in this embodiment;
FIG. 8 is a schematic structural view of the take-up reel of this embodiment from another perspective;
FIG. 9 is a schematic structural view of the plastic winding reel of the present embodiment;
FIG. 10 is a schematic structural diagram of the wire clamping member in the present embodiment;
FIG. 11 is a structural diagram of the wire clamping member in another view according to the present embodiment;
fig. 12 is a schematic structural view of a wire clamping member in another view angle in the present embodiment.
Description of reference numerals:
1. a carrier plate; 11. a bearing groove; 111. a clamping block; 112. a notch; 113. a first reinforcing rib; 114. the motor is clamped; 115. a first bar-shaped through opening; 12. fixing the installation position; 2. a drive member; 21. a drive motor; 211. a worm; 22. a reduction gearbox; 221. a turbine member; 2211. a gear shaft; 2212. a turbine; 2213. a transmission gear; 222. a reduction gear; 223. a box body; 2231. an upper box body; 2232. a lower box body; 2233. a bearing carrying position; 23. a drive shaft; 231. flattening; 3. a take-up reel; 31. a plastic winding roll; 311. a middle shaft; 3111. a first mating location; 312. coiling; 313. a containing groove; 314. a positioning column; 315. a through hole; 32. a sheet metal part; 321. a second mating location; 322. positioning holes; 33. a metal plate fixing piece; 4. a wire clamping member; 41. a fixing plate; 411. a fixing member; 412. a second strip-shaped through opening; 413. a fixing hole; 42. a wire clamping turntable; 421. a wire clamping turntable shaft; 422. a wire clamping rotary table; 4221. an annular groove; 43. a wire clamping and wheel rotating piece; 431. a wire clamping rotating wheel shaft; 432. a wire clamping rotating wheel; 44. an elastic member; 5. a housing; 51. an upper shell; 511. covering the groove; 512. fixing the position; 513. heat dissipation holes; 52. a lower case; 521. a card slot; 522. a limit bit; 523. a second reinforcing rib; 6. touching the detection piece; 7. and a clothes drying control module.
Detailed Description
In the following description, numerous implementation details are set forth in order to provide a more thorough understanding of the present invention. It should be understood, however, that these implementation details should not be used to limit the invention. That is, in some embodiments of the invention, details of these implementations are not necessary. In addition, some conventional structures and components are shown in simplified schematic form in the drawings.
It should be noted that all the directional indications in the embodiments of the present invention, such as up, down, left, right, front, and back, are only used to explain the relative position relationship between the components, the motion situation, etc. in a specific posture as shown in the drawings, and if the specific posture is changed, the directional indication is changed accordingly.
Furthermore, the descriptions of the embodiments of the present invention as "first", "second", etc. are provided for descriptive purposes only, not specifically referring to the order or sequence, but also not for limiting the present invention, and are provided for distinguishing between components or operations described in the same technical terms, and are not intended to indicate or imply relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first", "second", may explicitly or implicitly include at least one of the feature. In addition, the technical solutions in the embodiments may be combined with each other, but it must be based on the realization of those skilled in the art, and when the technical solutions are contradictory or cannot be realized, the combination of the technical solutions should not be considered to exist, and is not within the protection scope of the present invention.
For further understanding of the contents, features and functions of the present invention, the following embodiments will be exemplified in conjunction with the accompanying drawings as follows:
referring to fig. 1 to 3, fig. 1 is a schematic structural view of a bearing plate and a housing in the present embodiment, fig. 2 is an exploded view of a clothes drying assembly in the present embodiment, and fig. 3 is an exploded view of another view of the clothes drying assembly in the present embodiment. The clothes drying assembly in this embodiment comprises a bearing plate 1, a driving part 2, a winding roll 3 and a wire clamping part 4. The driving part 2 is arranged on one surface of the bearing plate 1, the winding roll 3 is arranged on the other surface of the bearing plate 1, the output end of the driving part 2 penetrates through the bearing plate 1 and then is connected with the winding roll 3, and the driving part 2 drives the winding roll 3 to rotate. The wire clamping piece 4 is arranged on the other surface of the bearing plate 1 and is opposite to the winding roll 3.
Through the reasonable layout setting of driving piece 2, take-up reel 3 and card line spare 4 on loading board 1 for the clothing subassembly that dries in the air forms the whole of integration, but the bulk movement, and compact structure, small, convenient to use person's use.
Referring back to fig. 1 to 3, further, the clothes drying assembly in the present embodiment further includes a housing 5. The housing 5 includes an upper case 51 and a lower case 52. The upper case 51 is disposed on one surface of the carrier plate 1 and covers the driving member 2, and the lower case 52 is disposed on the other surface of the carrier plate 1 and covers the winding roll 3 and the wire clamping member 4. Through the setting of epitheca 51 and inferior valve 52, cover the protection to driving piece 2, take-up reel 3 and the card line spare 4 that the loading board 1 two sides bore respectively, also make things convenient for whole removal and the installation of the clothing subassembly that dries in the air. In addition, the shape and pattern on the upper shell 51 can be beautified to enhance the beauty of the whole clothes-airing assembly, so that the clothes-airing assembly can be used as a decoration when being used in a household.
Referring to fig. 3 again, further, the surface of the bearing plate 1 facing the lower shell 52 is provided with a bearing groove 11, the winding roll 3 and the wire clamping member 4 are accommodated in the bearing groove 11, and the lower shell 52 is clamped in the notch of the bearing groove 11. Specifically, loading board 1 is rectangular shaped plate, and is preferred, and loading board 1's four corners sets up to R type angle respectively for the whole appearance of the clothing subassembly that dries in the air is mellow and full, when having avoided the edges and corners injury, has still increased beautifully. Cylindrical fixing and mounting positions 12 are further provided at four corners of the carrier plate 1, respectively, to facilitate mounting of the upper case 51 and the lower case 52. The bearing grooves 11 are arranged around the periphery of the bearing plate 1 to form a rectangular groove body structure with an R angle, the periphery of the notch of the bearing grooves 11 is respectively provided with four clamping blocks 111, the four clamping blocks 111 in the embodiment are respectively positioned on the four sides of the bearing grooves 11, and the clamping blocks 111 on each two opposite sides can be arranged just opposite to each other or arranged in a staggered manner. The bearing grooves 11 have a shorter side length and a notch 112 is respectively formed on the groove wall, and the notch 112 is opposite to the wire clamping member 4. The lower shell 52 is plate-shaped, the periphery of the lower shell 52 is opposite to the positions of the clamping blocks 111, the clamping blocks 521 are respectively arranged, the clamping blocks 111 are matched with the clamping grooves 521, the clamping structures can be formed between the clamping blocks and the clamping blocks, and the lower shell 52 can be firmly fixed on the bearing plate 1 after clamping. Preferably, the latch 111 is a protrusion located on the inner wall of the bearing groove 11, and the latch 521 is formed by recessing a surface of the lower shell 52 facing away from the bearing plate 1, and is approximately step-shaped. The lower case 52 is provided with a limit position 522 at a position facing the fixed mounting position 12, and the fixed mounting position 12 abuts against the limit position 522 to limit the displacement of the lower case 52. The specific limiting position 522 is formed by recessing one surface of the lower shell 52 facing the bearing plate 1, and in this embodiment, the limiting position 522 is in a circular arc step shape matched with the fixed mounting position 12.
When specifically applying, inferior valve 52 just bears the notch of recess 11, directly through the mode of pressing for fixture block 111 card is located in draw-in groove 521, also is that fixture block 111 card is in the one side of inferior valve 52 dorsad loading board 1, and fixed mounting position 12 tip supports restriction position 522 this moment, forms spacingly to inferior valve 52, also is fixed mounting position 12 butt in inferior valve 52 towards the one side of loading board 1, makes the firm card of inferior valve 52 locate in the notch that bears recess 11. Bearing board 1 in this embodiment all adopts the plastics material with inferior valve 52, and both all can carry out elastic deformation to a certain extent, when needs are dismantled, reversely withdraw from inferior valve 52 through the position of breach 112, dismantlement inferior valve 52 that can relax, so can form a joint stable, but dismantle convenient buckle structure again, be convenient for adjust the maintenance to take up 3 and card line spare 4 that bear the weight of in bearing groove 11. Preferably, one side of the bearing plate 1 facing the lower case 52 is provided with first reinforcing ribs 113 which are vertically and horizontally staggered to increase the strength of the bearing plate 1, and one side of the lower case 52 facing the bearing plate 1 is provided with second reinforcing ribs 523 which are vertically and horizontally staggered to increase the strength of the lower case 52.
Referring to fig. 2 and 3 again, further, one surface of the bearing plate 1 facing the upper shell 51 is flat, the driving element 2 is disposed on the flat, one surface of the upper shell 51 facing the bearing plate 1 has a covering groove 511, and the upper shell 51 is covered on the bearing plate 1, so that the driving element 2 can be accommodated in the covering groove 511. Specifically, four corners of the upper shell 51 are respectively provided with a fixing position 512, the fixing position 512 corresponds to the position of the fixing mounting position 12, the fixing position 512 is a circular hole, the inner walls of the fixing position 512 and the fixing mounting position 12 are provided with threads, and the upper shell 51 can be fixed on the bearing plate 1 through screws. Preferably, a plurality of heat dissipation holes 513 are formed in the upper case 51, and through the arrangement of the plurality of heat dissipation holes 513, heat in the clothes drying assembly can be dissipated conveniently, the heat dissipation holes 513 in this embodiment are strip-shaped, and the plurality of heat dissipation holes 513 are respectively formed at two ends of the upper case 51. In this embodiment, the upper housing 51 may be made of plastic.
With continuing reference to fig. 4 and 5, fig. 4 is a schematic structural diagram of the driving member in this embodiment, fig. 5 is a schematic structural diagram of the inside of the driving member in this embodiment, and further, the driving member 2 includes a driving motor 21, a reduction box 22 and a driving shaft 23. The output end of the driving motor 21 is connected with one end of the reduction gearbox 22, the other end of the reduction gearbox 22 is connected with one end of the driving shaft 23, and the other end of the driving shaft 23 penetrates through the bearing plate 1 and then is connected with the winding roll 3. The driving shaft 23 is perpendicular to the driving motor 21. Through the perpendicular setting of drive shaft 23 and driving motor 21 for driving motor 21's drive direction carries out 90 degrees and turns to, and the take-up reel 3 that is connected to the another side of loading board 1 of adaptation forms the drive structure that is similar to "L" shape, makes take-up reel 3 and driving piece 2 rationally distributed respectively on the both sides of loading board 1, for the drive arrangement of linear type, saves drive space.
Specifically, a motor detent 114 is disposed on a side of the carrier plate 1 facing the upper case 51. Motor screens 114 and driving motor 21 looks adaptation, driving motor 21 fixes firmly through the card and bears on loading board 1 in this motor screens 114, and motor screens 114 has elastic arc support for two relative settings in this embodiment, and driving motor 21 lays in the surface of loading board 1, and two arc supports can fix drive motor 21's both ends respectively and stabilize driving motor 21. The driving motor 21 is parallel to the bearing plate 1, and the output end of the driving motor 21 is provided with a worm 211. The driving motor 21 in this embodiment may be a 24V dc motor.
Specifically, the reduction gearbox 22 includes a turbine member 221, reduction teeth 222, and a casing 223. The worm wheel member 221 is matched with the worm 211, and the worm 211 is meshed with the worm wheel member 221, so that the worm wheel member and the worm form a meshing structure with a self-locking function. The turbine member 221 and the reduction gear 222 are provided in the casing 223, wherein the casing 223 includes an upper casing 2231 and a lower casing 2232, and the upper casing 2231 and the lower casing 2232 are fixed by screws after being closed.
The turbine member 221 includes a gear shaft 2211, a turbine 2212, and drive teeth 2213. Both ends of the toothed shaft 2211 are rotatably connected to the inner walls of the upper case 2231 and the lower case 2232 through bearings, preferably, the inner walls of the upper case 2231 and the lower case 2232 have a groove-shaped bearing position 2233 formed by protruding outward, and the bearing is disposed in the bearing position 2233 as a bearing for rotational connection transmission, so that the size of the case 223 can be reduced by the arrangement of the bearing position 2233, and the size of the driving member can be further reduced.
The turbine 2212 and the transmission gear 2213 are respectively sleeved on the gear shaft 2211, and are coaxially arranged through the gear shaft 2211 to form a synchronous rotation relationship, wherein the transmission gear 2213 is located above the turbine 2212. The worm 211 at the output end of the driving motor 21 penetrates through the reduction gearbox 223 and then is meshed with the worm 2212, the worm 2212 is driven to rotate when the worm 211 rotates, and the worm 2212 stops rotating when the worm 211 stops rotating and forms self-locking on the worm 211.
A through opening is formed in the inner wall of the lower case 2232, a bearing is disposed in the through opening of the lower case 2232, a bearing is disposed at a position where the inner wall of the upper case 2231 faces the through opening, and the driving shaft 23 is rotatably connected to the upper case 2231 and the lower case 2232 through the two bearings. The drive shaft 23 is parallel to the gear shaft 2211. The reduction gear 222 is sleeved on the driving shaft 23 and meshed with the transmission gear 2213. The driving end of the driving shaft 23 is connected to the winding roll 3 after passing through the through hole of the lower case 2232 and the bearing plate 1 in sequence. The drive shaft 23 is perpendicular to the carrier plate 1, i.e. the drive shaft 23 is perpendicular to the drive motor 21, so that an L-shaped drive member structure is formed. The specific driving process is as follows: the drive motor 21 drives the worm 211 to rotate, and then drives the turbine 2212 to rotate, and then drives in proper order through gear shaft 2211, driving tooth 2213 and reduction gear 222, drives the rotation of drive shaft 23, drives the rotation of take-up reel 3 again through drive shaft 23, so, through control drive motor 21, can accomplish the rotation control of take-up reel 3. And through the multistage transmission setting of worm 211, turbine 2212, driving tooth 2213 and reduction teeth 222 for the output torque of drive shaft 23 grow, can satisfy the clothes-horse to the demand that the heavy object bore. The meshing structure of the worm 211 and the worm wheel 2212 in the embodiment has a self-locking function, and when the driving motor 21 stops driving or is powered off, the worm 211 and the worm wheel 2212 can keep the current meshing state, and cannot slide, so that the phenomenon of wire sliding is avoided.
With reference to fig. 5 to 9, fig. 6 is a schematic structural diagram of the wire winding disc in the present embodiment, fig. 7 is a cross-sectional view of the wire winding disc in the present embodiment, fig. 8 is a schematic structural diagram of another view angle of the wire winding disc in the present embodiment, and fig. 9 is a schematic structural diagram of the plastic wire winding disc in the present embodiment. Further, the winding roll 3 includes a plastic winding roll 31, a sheet metal member 32 and a sheet metal fixing member 33. The sheet metal component 32 is laid on one side of the plastic winding roll 31, and the output end of the driving component 2 is connected with the plastic winding roll 31 after penetrating through the sheet metal component 32. In this embodiment, the driving shaft 23 of the driving member 2 is connected to the plastic winding roll 31 after passing through the sheet metal member 32.
Specifically, the driving end of the driving shaft 23 is provided with a flat position 231. The plastic winding roll 31 includes a central shaft 311 and a reel 312, the reel 312 is sleeved outside the central shaft 311, a first matching position 3111 is disposed at a position of the central shaft 311 corresponding to the offset position 231, the first matching position 3111 is a groove structure with a D-shaped cross section, the flat position 231 of the driving shaft 23 is matched with the first matching position 3111, the driving shaft 23 passes through the flat position matching structure formed by the flat position 231 and the first matching position 3111, and the central shaft 311 and the reel 312 can be sequentially driven to rotate when the driving shaft 23 rotates, preferably, the flat position 231 of the driving shaft 23 and the first matching position 3111 can also form an interference fit on the basis of performing the offset fit, so that the fit between the driving shaft 23 and the central shaft 311 is tighter, and the driving shaft 23 drives the plastic winding roll 31 to rotate more stably. The second cooperation position 321 has been seted up at the central part of sheet metal component 32, and second cooperation position 321 just faces with first cooperation position 3111, and the shape and the size of both cross sections are unanimous, and the off normal 231 of drive shaft 23 passes first second cooperation 321 and then is connected with first cooperation position 3111 for off normal 231 of drive shaft 23 has formed flat position cooperation with first cooperation position 3111 and second cooperation position 321 respectively. For plastic's axis 311, the hardness of metal sheet metal component 32 is higher, and when drive shaft 23 rotated, sheet metal component 32 formed the protection to axis 311, avoided long-time use back axis 311 to appear damaging, and in addition, plastic's reel 312 when the steel wire line of book, need not the rubber coating also can not produce the noise. In addition, the cost of the plastic winding roll 31 made of plastic material is greatly reduced compared with the winding roll made of metal.
The quantity of panel beating mounting 33 is a plurality of, and the both ends difference panel beating 32 of a plurality of panel beating mounting 33 and plastic take-up reel 31's axis 311 are connected, through the setting of a plurality of panel beating mounting 33 for panel beating 32 is fixed in on plastic take-up reel 31's reel 312. Specifically, a through hole is formed in the sheet metal part 32, a blind hole with threads is formed in the middle shaft 311, and the sheet metal fixing part 33 penetrates through the through hole of the sheet metal part 32 and then is in threaded connection with the blind hole of the middle shaft 311. Preferably, the plurality of sheet metal fixing parts 33 are sequentially arranged at intervals in the circumferential direction around the central axis 311, and the intervals between two adjacent sheet metal fixing parts 33 are the same, so that the rotation of the reel 312 is more balanced. The number of the sheet metal fixing members 33 in this embodiment is four.
Referring to fig. 6 to 9, further, the number of the reels 312 is two, the two reels 312 have the same size and shape, the two reels 312 are respectively sleeved on the central shaft 311, and the surfaces of the two reels 312 are attached to each other. Preferably, the two reels 312 may share the attached disk surface. The two reels 312 are respectively wound with steel wires, and the winding directions of the steel wires on the two reels 312 are the same. So that the driving shaft 23 can synchronously wind and unwind the steel wire in two directions when driving the two reels 312 to rotate. At this time, the longitudinal section of the plastic winding reel 31 is "king" shaped.
Preferably, the number of sheet metal parts 32 is two, and when the number of reel 312 is one, two sheet metal parts 32 are respectively arranged on two sides of reel 312, and when the number of reel 312 is two, two sheet metal parts 32 are respectively arranged on one side of two reels 312 opposite to each other. The strength of the coil 312 is further increased by the cooperation of the two sheet metal parts 32.
Referring to fig. 6 to 9, further, the disc surface of the reel 312 is provided with an accommodating groove 313, the sheet metal part 32 is accommodated in the accommodating groove 313, the sheet metal part 32 in the present embodiment is disc-shaped, and the size and shape of the accommodating groove 313 are matched with those of the sheet metal part 32. The sheet metal part 32 is accommodated in the accommodating groove 313, and when the reel 312 rotates, the inner wall of the accommodating groove 313 limits the sheet metal part 32, so that the sheet metal part 32 is more stably fixed on the reel 312.
Referring to fig. 6 to 9, furthermore, the disc surface of the reel 312 is further provided with a plurality of positioning pillars 314, the positioning pillars 314 are located at the bottom of the accommodating groove 313, preferably, the number of the positioning pillars 314 is plural, and the plurality of positioning pillars 314 are symmetrically distributed around the central axis of the central shaft 311. The sheet metal part 32 is provided with a positioning hole 322 at a position corresponding to the positioning post 314, and the positioning post 314 is correspondingly disposed in the positioning hole 322. When the sheet metal part 32 is correspondingly accommodated in the accommodating groove 313, the positioning hole 322 and the positioning column 314 are matched, so that the through hole of the sheet metal part 32 and the blind hole of the middle shaft 311 can be aligned quickly, and the sheet metal part 32 can be installed quickly.
Referring to fig. 6 to 9, a through hole 315 is further formed on the disc surface of the reel 312, and the reel 312 is convenient for initial winding of the steel wire and fixing of the wire end of the steel wire by the arrangement of the through hole 315. In a specific application, the through hole 315 is communicated with the center shaft 311, the wire end of the steel wire firstly passes through the through hole communicated with the through hole 311 of the center shaft, and then passes through the through hole 315, and then the sheet metal part 32 is fixed on the disc surface of the reel 312, so that the wire end is pressed between the sheet metal part 32 and the reel 312.
With reference to fig. 3, 10, 11 and 12, further, fig. 10 is a schematic structural view of the wire clamping member in the present embodiment, fig. 11 is a schematic structural view of another viewing angle of the wire clamping member in the present embodiment, and fig. 12 is a schematic structural view of another viewing angle of the wire clamping member in the present embodiment. The wire clamping member 4 includes a fixing plate 41, a wire clamping turn plate member 42, and a wire clamping turn wheel member 43. The wire chuck member 42 includes a wire chuck shaft 421 and a wire chuck rotary 422. One end of the wire clamping turntable shaft 421 is vertically arranged on the fixing plate 41, the other end of the wire clamping turntable shaft is opposite to the bearing plate 1, the wire clamping turntable 422 is sleeved on the wire clamping turntable shaft 421, the wire clamping turntable 422 can rotate around the wire clamping turntable shaft 421, and the wire clamping turntable 422 is provided with an annular groove 4221 along the periphery of the wire clamping turntable 422. The wire reel 43 includes a wire reel shaft 431 and a wire reel 432. One end of the wire clamping rotating wheel shaft 431 is vertically arranged on the fixing plate 41, the other end of the wire clamping rotating wheel shaft 431 is opposite to the bearing plate 1, and the wire clamping rotating wheel shaft 431 is parallel to the wire clamping rotating wheel shaft 421. The wire-locking turning wheel 432 is sleeved on the wire-locking turning wheel shaft 431, and the wire-locking turning wheel 432 can rotate around the wire-locking turning wheel shaft 431. The rim of the wire engaging pulley 432 is located within the annular groove 4221 and faces the bottom of the annular groove 4221 such that a guide space is formed between the wire engaging pulley 432 and the annular groove 4221. The wire space that forms between the rim through card line runner 432 and the ring groove 4221 of card line carousel 422 carries out spacing direction to the steel wire line for the home range of steel wire line is injectd in the guide space, has avoided the dislocation of steel wire line, and when the effect of heavy object on the steel wire line, it turned to along the ring groove 4221 of card line carousel 422, and the angle that turns to is mellow and full, makes the angle that turns to of steel wire line reasonable, difficult rupture. In a specific application, the thickness of the wire clamping rotating wheel 432 is slightly smaller than the groove width of the annular groove 4221 of the wire clamping rotating disc 422, so that a gap between the wheel surface of the wire clamping rotating wheel 432 and the side wall of the annular groove 4221 is smaller than the diameter of a steel wire. The number of the wire clamping members 4 in this embodiment is two, and the two wire clamping members 4 are respectively located on two opposite sides of the winding roll 3 and opposite to the two notches 112, and are used for guiding and limiting the steel wire on the two reels 312.
Referring to fig. 10 to 12 again, the wire-clamping member 4 further includes an elastic member 44. Two ends of the elastic element 44 are respectively connected to the wire-clamping turntable shaft 421 and the wire-clamping turntable shaft 431, so that the wire-clamping turntable shaft 421 is suspended and can move relative to the fixing plate 41. Preferably, the number of the elastic members 44 is two, two ends of one of the elastic members 44 are respectively connected to the upper end of the wire clamping turntable shaft 421 and the upper end of the wire clamping turntable shaft 431, two ends of the other elastic member 44 are respectively connected to the lower end of the wire clamping turntable shaft 421 and the lower end of the wire clamping turntable shaft 431, and the two elastic members 44 are parallel to each other. The elastic member 44 in this embodiment may be a wire spring. It can be understood that, after the wire-clamping turntable shaft 421 is suspended, when the wire bears the weight, the elastic element 44 will deform, and when the weight borne by the wire disappears, the elastic element 44 will return to the natural state.
With continued reference to figures 2, 3, 10, 11 and 12, the clothes drying assembly of this embodiment further comprises a touch detection member 6. The touch detection piece 6 is arranged on one surface of the bearing plate 1 facing the upper cover 51, the position of the bearing plate 1 facing the touch end of the touch detection piece 6 is provided with a first strip-shaped through hole 115, and preferably, the touch end of the touch detection piece 6 is adjacent to and facing the end part of the first strip-shaped through hole 115.
The fixing plate 41 and the carrier plate 1 are parallel and fixed at two ends thereof to the carrier plate 1 through a fixing member 411, so that the fixing plate 41 is stably suspended and fixed on the carrier plate 1. The fixing member 411 in this embodiment is a combination of a support column and a screw, and two ends of the support column are respectively and perpendicularly abutted to the fixing plate 41 and the bearing plate 1, so as to support the fixing plate 41 in parallel and in suspension, and then fix the fixing plate 41 on the bearing plate 1 by the screw. The wire clamping turntable shaft 421 is displaced relative to the fixing plate 41, that is, the wire clamping turntable shaft 421 can be displaced relative to the carrier plate 1, and the displaced wire clamping turntable shaft 421 abuts against the touch detection member 6.
Specifically, the fixing plate 41 is provided with a second strip-shaped through hole 412 and a fixing hole 413; the second through bar 412 and the fixing hole 413 are arranged side by side, wherein the second through bar 412 is opposite to the first through bar 115. One end of the wire clamping rotating shaft 431 is leaked out of the fixing hole 412, and the wire clamping rotating shaft 431 is fixedly connected with the fixing hole 412, for example, fixed by glue, or fixed by screw connection, or fixed by clamping, so that the wire clamping rotating shaft 431 and the fixing plate 41 form a fixed connection relationship. The other end of the wire clamping rotating wheel shaft 431 is fixedly connected with the bearing plate 1. Both ends of the wire clamping turntable shaft 421 pass through the second strip-shaped through hole 412 and the first strip-shaped through hole 115, respectively, and both ends of the wire clamping turntable shaft 421 can displace in the first strip-shaped through hole 115 and the second strip-shaped through hole 412, respectively. When the elastic member 44 is specifically disposed, one end of the elastic member 44 is fixedly connected to the end of the wire clamping turntable shaft 421, which is exposed out of the fixing hole 413, and the other end is fixedly connected to the end of the wire clamping turntable shaft 421, which passes through the second strip-shaped through hole 412. One end of the other elastic member 44 is fixedly connected to the end of the wire clamping rotating shaft 431 close to the bearing plate 1, and the other end thereof is fixedly connected to the end of the wire clamping rotating shaft 421 close to the bearing plate 1. Thus, the wire-clamping rotating disk shaft 421 is stably and elastically supported by the two elastic members 44 arranged in parallel, and the wire-clamping rotating disk shaft 421 can be rapidly restored after moving in the first strip-shaped through hole 115 and the second strip-shaped through hole 412.
When hanging heavy object on the steel wire, for example, the clothing that needs the sunning, its pressure can act on card line carousel 422, and then act on card line carousel axle 421, make card line carousel axle 421 remove in first bar opening 115, two elastic component 44 of natural state are stretched, when the card line carousel axle 421 of removal lived touch detection piece 6 in the butt, touch detection piece 6 will send a signal, bear the weight of with representing the heavy object, can know there is the clothing sunning through this signal, so that the follow-up automated control of clothing assembly dries in the air. On the contrary, when the weight hung on the steel wire disappears, the two elastic members 44 in the stretching state recover to the natural state again, and drive the wire clamping rotary table shaft 421 to leave the touch detection member 6, and at this time, the clothes can be known not to be aired, so that the subsequent clothes drying assembly can be automatically controlled. The touch detector 6 in this embodiment may be a touch switch.
Example two
The embodiment provides a clothes drying system, which is arranged based on a clothes drying assembly of the first embodiment, and specifically, the clothes drying system of the first embodiment comprises a clothes drying assembly and a clothes drying control module 7; the clothes drying control module 7 is electrically connected with the driving part 2 and the touch detection part 6 respectively. The signal that the touching detection piece 6 detected is transmitted to the clothes drying control module 7, and the clothes drying control module 7 controls the driving motor 21 according to the signal, so that an automatic clothes drying control system is formed. For example, the touch detection member 6 sends a weight bearing signal to the clothes drying control module 7, the clothes drying control module 7 controls the driving motor 21 to start to operate and retract the steel wire after a period of time, for example, 10 minutes later, and for example, after the weight bearing signal of the touch detection member 6 disappears, the clothes drying control module 7 controls the driving motor 21 to start to reversely operate and retract the steel wire after 10 seconds later. Wherein, the steel wire is collected, and the clothes hanger is also collected. Referring to fig. 2, in a specific arrangement, the clothes drying control module 7 is disposed on one surface of the bearing plate 1 facing the upper shell 51 and located on one side of the driving member 2. The clothes drying control module 7 in this embodiment may be a PCB board.
To sum up: through the setting of loading board for each part of the clothing subassembly that dries in the air forms an orderly whole, compact structure, and small, and the use of the clothing subassembly that dries in the air of being convenient for. Simultaneously, other parts are protected by the shell, and the attractiveness of the clothes airing assembly can be improved. Through the setting of plastic take-up reel and sheet metal component, reduced the noise of the clothing subassembly during operation that dries in the air, also reduced the cost of take-up reel. Through the cooperation setting of card line carousel and card line runner, form the line ball direction to the steel wire line, be convenient for turning to of steel wire line. In addition, through the setting of touching the detection piece and the clothing control module that dries in the air, realize the automatic control of clothing subassembly that dries in the air.
The above is only an embodiment of the present invention, and is not intended to limit the present invention. Various modifications and changes may occur to those skilled in the art. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention should be included in the scope of the claims of the present invention.
Claims (9)
1. A clothes drying assembly, comprising:
a carrier plate (1);
the driving piece (2) is arranged on one surface of the bearing plate (1);
the winding roll (3) is positioned on the other surface of the bearing plate (1); the output end of the driving piece (2) penetrates through the bearing plate (1) and then is connected with the winding roll (3), and the driving piece (2) drives the winding roll (3) to rotate; and
and the wire clamping piece (4) is arranged on the other surface of the bearing plate (1) and is opposite to the winding roll (3).
2. A clothes drying assembly according to claim 1, further comprising a housing (5); the housing (5) comprises an upper shell (51) and a lower shell (52); the upper shell (51) is arranged on one surface of the bearing plate (1) and covers the driving piece (2); the lower shell (52) is arranged on the other surface of the bearing plate (1) and covers the winding roll (3) and the wire clamping piece (4).
3. The clothes drying assembly according to claim 2, wherein the bearing plate (1) is provided with a bearing groove (11) at the side opposite to the lower shell (52); the winding roll (3) and the wire clamping piece (4) are contained in the bearing groove (11), and the lower shell (52) is clamped in a notch of the bearing groove (11).
4. Laundry assembly according to claim 1, characterized in that the drive member (2) comprises a drive motor (21), a reduction gearbox (22) and a drive shaft (23); the driving motor (21) is laid on the bearing plate (1), the output end of the driving motor is connected with one end of the reduction gearbox (22), the other end of the reduction gearbox (22) is connected with one end of the driving shaft (23), and the other end of the driving shaft (23) penetrates through the bearing plate (1) and then is connected with the winding roll (3); the drive shaft (23) is perpendicular to the drive motor (21).
5. Clothes drying assembly according to claim 4, characterized in that the output of the drive motor (21) has a worm (211); the reduction box (22) is provided with a turbine part (221) matched with the worm (211); the worm (211) is engaged with a turbine member (221).
6. A clothes drying assembly according to claim 1, wherein the winding roller (3) comprises a plastic winding roller (31) and sheet metal parts (32); the sheet metal part (32) is laid on one surface of the plastic winding roll (31); the output end of the driving piece (2) penetrates through the sheet metal part (32) and then is connected with the plastic winding roll (31).
7. Laundry assembly according to claim 6, characterized in that the number of sheet metal parts (32) is two; the two sheet metal parts (32) are respectively paved on two surfaces of the plastic winding roll (31).
8. Clothes drying assembly according to claim 1, characterized in that the line clamping member (4) comprises a fixing plate (41), a line clamping rotary disc member (42) and a line clamping rotary wheel member (43); the wire clamping rotary disc piece (42) comprises a wire clamping rotary disc shaft (421) and a wire clamping rotary disc (422); the fixing plate (41) is connected with the bearing plate (1); the wire clamping rotary table shaft (421) is arranged on the fixing plate (41), and the wire clamping rotary table (422) is sleeved on the wire clamping rotary table shaft (421); the wire clamping rotary table (422) is provided with an annular groove (4221) along the periphery of the wire clamping rotary table; the wire clamping rotating wheel piece (43) comprises a wire clamping rotating wheel shaft (431) and a wire clamping rotating wheel (432); the wire clamping rotating wheel shaft (431) is arranged on the fixing plate (41) and is parallel to the wire clamping rotating disk shaft (421); the wire clamping rotating wheel (432) is sleeved on the wire clamping rotating wheel shaft (431), and the rim of the wire clamping rotating wheel (432) is located in the annular groove (4221) and is opposite to the bottom of the annular groove (4221).
9. A clothes drying assembly according to claim 8, further comprising a touch detection member (6); the touch detection piece (6) is arranged on the bearing plate (1);
the wire clamping piece (4) further comprises an elastic piece (44); two ends of the elastic piece (44) are respectively connected with the wire clamping rotating disc shaft (421) and the wire clamping rotating disc shaft (431), so that the wire clamping rotating disc shaft (421) can displace relative to the bearing plate (1), and the displaced wire clamping rotating disc shaft (421) is abutted to the touch detection piece (6).
Priority Applications (1)
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CN201920771319.2U CN210340169U (en) | 2019-05-27 | 2019-05-27 | Clothes airing assembly |
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CN201920771319.2U CN210340169U (en) | 2019-05-27 | 2019-05-27 | Clothes airing assembly |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110104578A (en) * | 2019-05-27 | 2019-08-09 | 惠州市奥科伟业精密电机有限公司 | It dries in the air clothing component and system |
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2019
- 2019-05-27 CN CN201920771319.2U patent/CN210340169U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110104578A (en) * | 2019-05-27 | 2019-08-09 | 惠州市奥科伟业精密电机有限公司 | It dries in the air clothing component and system |
CN110104578B (en) * | 2019-05-27 | 2024-05-10 | 惠州市奥科伟业精密电机有限公司 | Clothes airing component and system |
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