CN102190212A - Automatic cord arrangement structure of cord winder - Google Patents
Automatic cord arrangement structure of cord winder Download PDFInfo
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- CN102190212A CN102190212A CN2011100607720A CN201110060772A CN102190212A CN 102190212 A CN102190212 A CN 102190212A CN 2011100607720 A CN2011100607720 A CN 2011100607720A CN 201110060772 A CN201110060772 A CN 201110060772A CN 102190212 A CN102190212 A CN 102190212A
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Abstract
The invention relates to an automatic cord arrangement structure of a cord winder device. The structure comprises a shell, a cord wheel, a clockwork spring winder and a standstill locking structure, and is characterized in that a bidirectional screw capable of rotating around the axis of the bidirectional screw is mounted in the shell; a driven wheel is fixed at one end of the bidirectional screw; a driving wheel is fixed on one side of the cord wheel; the driving wheel and the driven wheel are connected through a synchronous belt; a slider capable of sliding along the bidirectional screw is sleeved on the bidirectional screw; at least three guide rotary wheels are mounted in the slider; the guide rotary wheels are arranged along the circumference at intervals to define a threading hole through which a power cord can pass; and a guide plate is also fixed in the slider and inserted into the thread of the bidirectional screw and is in guide fit with the bidirectional screw. As the thread on the bidirectional screw is formed by combining a left spiral structure and a right spiral structure, and under the guide effect of the left and right spiral structures as well as the moving plate, the slider can slide back and forth from left to right along the bidirectional screw so that the power cord is uniformly and orderly wound on the cord wheel and effectively prevented from crossing and overlapping to avoid cord jam of bad loops.
Description
Technical field
The present invention relates to a kind of portable power supply connection box, relate in particular to a kind of automatic winding displacement structure of winder.
Background technology
Holding various outdoor recreational activities, perhaps in the garden, carry out dressing operation and all inevitably need provisional mobile wiring electricity consumption, have the winding roll (also being winder) of supporting various consumers for this reason, winding roll (also being winder) can cause operation field with power supply line length distance, the power lead rolling can also be put in order.
The structure for deploying and retracting of existing winding roll comprises the shell with wire hole, the end face of shell is provided with socket, be provided with the line wheel in the shell, make the line wheel that the clockwork spring wind spring of revolution trend be arranged, and lock brake mechanism, electric power wire rolling is on the line wheel, one end of power lead is communicated with socket, the other end of power lead is connected with plug after passing wire hole, the middle part of line wheel passes and is provided with center shaft, center shaft is fixed on the shell, clockwork spring wind spring one end is fixed on the center shaft, the other end of clockwork spring wind spring and line wheel are fixing, and drawstring moving-wire wheel rotates outside power lead, thereby the revolution that the clockwork spring wind spring is tightened up to the line wheel provides torsion.
As a patent No. is the Chinese utility model patent " a kind of winding roll with braking mechanism " of ZL200920201463.9 (notification number is CN201560020U); The patent No. is the Chinese utility model patent " a kind of winding roll " of ZL200920201464.3 (notification number is CN201549724U); They disclose the structure for deploying and retracting of the different winding roll of several types respectively.
Power lead in the existing winder is freely to arrange in automatic turning course; rambling the arranging of power lead causes the interior power lead of winder to be overlapping; produce very big friction drag; normal loop line; also be easy in addition because of twining confusion, the inhomogeneous stuck phenomenon that produces; cause power lead revolution not smooth, use inconveniently, and arrange owing to power lead is disorderly and unsystematic and to reduce line and take turns the length of holding power lead.
It is inner that the clockwork spring wind spring is arranged on the line wheel in addition, so installation inconvenience of clockwork spring wind spring, because the clockwork spring wind spring is positioned at the line wheel, must there be the bigger space for the placement of clockwork spring wind spring the inside of line wheel, therefore the line of identical size is taken turns, if the inner space is big, then relatively the externally fed source coil of wire around the space just little.Brake latch-up structure in the existing winding roll power lead need be stretched mostly an end distance from after, the line wheel just is stuck, thereby can not control the stretched length of power lead at any time, uses inconvenience.
Summary of the invention
First technical matters to be solved by this invention is to provide a kind of automatic winding displacement structure that power lead twines the winder on online the wheel uniform sequentially that can drive at above-mentioned prior art present situation, is not prone to card line phenomenon.
The present invention solves the problems of the technologies described above the technical scheme that is adopted: a kind of automatic winding displacement structure of winder, comprise housing with wire hole, be provided with line wheel in the housing in order to the rolled power line, revolution provides the clockwork spring wind spring of power to the line wheel, and stop line to take turns rotating spline latch-up structure, it is characterized in that: being equipped with in the described housing can be around the reverse-flighted screw of self axis rotation, one end of reverse-flighted screw is fixed with flower wheel, one side of described line wheel is fixed with driving wheel, link to each other by being with synchronously between this driving wheel and the power wheel, being arranged with on the described reverse-flighted screw can be along the slide block of reverse-flighted screw slippage, the guiding runner of at least three energy around the rotation of self axis is installed in this slide block, each guides runner to surround the through wires hole that the power supply source line passes along the circle spacing setting, also be fixed with directing plate in the described slide block, this directing plate is plugged in the screw thread of described reverse-flighted screw and cooperates with the reverse-flighted screw guiding.
Above-mentioned slide block fixedly forms by the seat of honour and following are involutory, and this slide block structure is convenient to guide the installation of runner.Described guiding runner has four, and each guides runner to be rotatably installed between the described seat of honour and following by rotating shaft respectively.Four guiding runners can be at four direction all around well to the power lead channeling conduct, if adopt certainly three guiding runners along triangle is uniform also can be better to the power lead channeling conduct, if can adopt five and above guiding runner also can.
Above-mentioned housing peripheral intervals is fixed with the support portion that four profiles take the shape of the letter U, and the vertical wall of each support portion is fixed on the front/rear end of housing, and the line between the bottommost of adjacent two support portions is below the housing bottom between described two support portions.Because the profile of each support portion takes the shape of the letter U, the effect of support housing is not only played in the support portion like this, also can be used as handle and uses, and conveniently lifts; Place arbitrarily in the shell in the vertical direction 360 degree scopes in addition, perhaps the shell in the vertical direction falls, and can both guarantee that two support portions contact with ground, guarantees that simultaneously shell does not contact with ground, therefore this shell not only can arbitrarily be placed, but also plays the protecting sheathing effect; When the shell level was fallen, the vertical wall of each support portion was built on stilts with the front/rear end of housing, prevented that the front/rear end of housing is directly impaired with the ground collision.
Above-mentioned housing internal fixation has guide rod, and the bottom of described slide block has the pilot hole that passes for described guide rod.By the directional tagging of guide rod, can guarantee the steady slippage of slide block to slide block.
Above-mentioned spline latch-up structure comprises and is provided with on the online corresponding end-faces of taking turns and is circular friction wall, slipper, friction wheel and button; The middle part of described slipper is rotatably connected on the madial wall of housing opposite side by rotating shaft, the afterbody of described slipper is provided with friction wheel axle, this friction wheel axle can be along the slipper slippage, friction wheel is installed on the friction wheel axle, and friction wheel can with the internal perisporium wipe contact of described friction wall, the torsion spring that the afterbody that makes slipper transfers toward gesture outward is installed in the described rotating shaft; Also be provided with the friction inclined-plane of conflicting for friction wheel in the described housing, when changeing outside online the wheel, it is descending toward lower that friction wheel drives friction inclined-plane, lower edge in friction wall, the online wheel when turning round, and it is up toward eminence that friction wheel drives friction inclined-plane, lower edge in friction wall; Described button is arranged on the housing in order to drive the torsion deflection that slipper overcomes torsion spring.
The length that this spline latch-up structure can stretch to power lead at any time positions, when drawing outside the power lead, the rotation of line wheel can drive friction wheel and be displaced downwardly to nadir along slipper, and make slipper towards the direction deflection that overcomes torsion spring torsion, friction wheel is descending toward lower along the friction inclined-plane simultaneously, be in relaxation state between friction wheel and friction inclined-plane and the friction wall, be that friction force between friction wheel and the friction wall is little, friction force between this moment friction wheel and the friction wall can the brake line wheel, thus when power lead draws outward line take turns can normal rotation; After rotateing in place, the clockwork spring wind spring can make the line wheel have revolution trend, friction force between friction wheel and the friction wall can drive friction wheel along moving on the slipper at this moment, friction wheel is up toward eminence along the friction inclined-plane simultaneously, compress mutually between friction wheel and friction wall and the friction inclined-plane, make slipper towards the deflection of torsion direction simultaneously, so the friction drag between friction wheel and the friction wall imposes on the restoring moment of line wheel greater than the clockwork spring wind spring, play brake action, then only need pressing button as reclaiming power lead, button drives the torsion revolution that slipper overcomes torsion spring, and friction wheel leaves friction wall, the line wheel drives turning down at the clockwork spring wind spring, finishes the take-up process.
Above-mentioned friction inclined-plane is provided with many anti-slip tanks that are provided with at interval.Can increase the friction force between friction wheel and the friction inclined-plane like this, the spline effect of splicing thread wheel.
Above-mentioned button is located on the sidewall of housing, and the inner of button is passed behind the housing between the head with described slipper and cooperated for the inclined-plane.Pressing button, button moves down, and cooperates principle by the inclined-plane, and button promotes slipper deflection, finishes release.Can certainly be that button is directly fixed with slipper, promote button during operation and drive the slipper rotation and also can realize.
The afterbody of above-mentioned slipper has the fork of U-shaped, has two bar-shaped troughs on two sidewalls of this fork, and the two ends of described friction wheel axle are located in this two bar-shaped trough and slippage before and after the energy, and described friction wheel is fixed on the friction wheel axle and is positioned at described fork.This structure can conveniently be installed to friction force on the slipper, friction wheel slipper rotation relatively like this, also sternly bar-shaped trough slippage of friction wheel simultaneously.
One side of above-mentioned line wheel has the axial region that the energy line-wheel rotates together, described driving wheel is fixed on this axial region, enwinding spring axis in the described clockwork spring wind spring is fixed on the madial wall of housing one side, this axial region and clockwork spring wind spring are positioned at the outer the same side of line wheel, the free end of clockwork spring wind spring is fixed on this axial region, the online wheel in the outer process of changeing, described clockwork spring wind spring is wrapped on the described axial region gradually and the clockwork spring wind spring is tightened up.This winder is provided with the online outside of taking turns with the clockwork spring wind spring, so the clockwork spring wind spring is easy for installation, and the inner space of isochrone wheel can be done little, so with under the long-pending situation of line-transect wheel body, adopt the line of this structure for deploying and retracting to take turns and have more spiral space.
Have the cutting plane on the side face of above-mentioned axial region, the free end of described clockwork spring wind spring is compressed on the cutting plane of this axial region by pressing plate.Certainly also can directly the free end of clockwork spring wind spring be fixed by screw and axial region.
Compared with prior art, the invention has the advantages that: cooperate with the screw thread guiding of slide block by reverse-flighted screw, and the reverse-flighted screw line-wheel rotates together, because the screw thread characteristics on the reverse-flighted screw are to be formed by left-hand screw structure and right-hand screw textural association, so after directing plate and the slippage on earth of left-hand screw structure in the slide block, be rotated further as reverse-flighted screw, directing plate then can with the right-hand screw respective outer side edges, directional tagging by left and right sides helical structure and shifting board, slide block can be along past polyslip about reverse-flighted screw, power lead is guided by the through wires hole on the slide block, make power lead twine online the wheel uniform sequentially, effectively avoid power lead to be overlapping and produce the bad card line phenomenon of loop line.
Description of drawings
Fig. 1 is the perspective view of the embodiment of the invention;
Fig. 2 is the front schematic view of the embodiment of the invention;
Fig. 3 is the coupled condition schematic perspective view one of embodiment of the invention clockwork spring wind spring;
Fig. 4 is the coupled condition schematic perspective view two of embodiment of the invention clockwork spring wind spring;
Fig. 5 ends the perspective view one of twist lock fixed structure for the embodiment of the invention;
Fig. 6 ends the perspective view two of twist lock fixed structure for the embodiment of the invention;
Fig. 7 ends the perspective view three of twist lock fixed structure for the embodiment of the invention;
Fig. 8 ends the cross-sectional schematic of twist lock fixed structure for the embodiment of the invention.
Fig. 9 is the installation perspective view between friction wheel and the slipper in the embodiment of the invention;
Figure 10 is the perspective view of button in the embodiment of the invention;
Figure 11 is the installation cutaway view between slide block and the two-way connecting rod in the embodiment of the invention;
Figure 12 is that the A-A of Figure 11 is to cutaway view;
Figure 13 is for being equipped with the perspective view of the slide block that guides runner in the embodiment of the invention;
Figure 14 is the assembling schematic perspective view between directing plate and the reverse-flighted screw in the embodiment of the invention.
The specific embodiment
Embodiment describes in further detail the present invention below in conjunction with accompanying drawing.
Shown in Fig. 1~14, be a preferred embodiment of the present invention.
A kind of automatic winding displacement structure of winder, comprise the housing 1 with wire hole 11, also be provided with four sockets on the front end face of housing 1, socket links to each other with electrode disk in the housing, each socket is provided with end cap 18 sealings, more than is the conventional structure of the shell of winder (winding roll).
Be provided with in the housing 1 in order to the line of rolled power line wheel 2, to the line wheel 2 revolutions provide power clockwork spring wind spring 3, and stop line to take turns 2 rotating spline latch-up structures.
One side of line wheel 2 has the axial region 22 that energy line-wheel 2 rotates together, enwinding spring axis 31 in the clockwork spring wind spring 3 is fixed on the madial wall of housing 1 one sides, this axial region 22 and clockwork spring wind spring 3 are positioned at the same side outside the line wheel 2, the free end of clockwork spring wind spring 3 is fixed on this axial region 22, promptly have cutting plane 221 on the side face of axial region 22, the free end of clockwork spring wind spring 3 is compressed on the cutting plane 221 of this axial region by pressing plate 222.The online wheel in the 2 outer processes of changeing, clockwork spring wind spring 3 is wrapped on the axial region 22 gradually and clockwork spring wind spring 3 is tightened up.
The spline latch-up structure comprises being provided with onlinely takes turns on 2 the corresponding end-faces and is circular friction wall 21, slipper 14, friction wheel 15 and button 16; The middle part of slipper 14 is rotatably connected on the madial wall of housing 1 opposite side by rotating shaft 141, the afterbody of slipper 14 has the fork 143 of U-shaped, have two bar-shaped troughs 144 on two sidewalls of this fork 143, the two ends of friction wheel axle 151 are located in this two bar-shaped trough 144 and slippage before and after the energy, and friction wheel 15 is fixed on the friction wheel axle 151 and is positioned at fork 143.Friction wheel 15 can with the internal perisporium wipe contact of friction wall 21, the torsion spring 142 that the afterbody that makes slipper 14 transfers toward gesture outward is installed in the rotating shaft 141; Also be provided with the friction inclined-plane 17 of conflicting for friction wheel 15 in the housing 1, friction inclined-plane 17 is provided with many anti-slip tanks 171 that are provided with at interval.Online when taking turns 3 outer commentaries on classics, it is descending toward lowers that friction wheel 15 drives friction inclined-plane 17, lower edges in friction wall 21, and online when taking turns 3 revolutions, it is up toward eminences that friction wheel 15 drives friction inclined-plane 17, lower edges in friction wall 21; Button 16 is arranged on the housing 1 in order to drive the torsion deflection that slipper 14 overcomes torsion spring 142.
Shown in Fig. 8,9, button 16 wears and constrains on the sidewall of housing 1, the inner of button 16 is passed between the head of housing 1 back and slipper 14 to the inclined-plane cooperates, and promptly the lower end of the head of slipper 14 and button 16 has the inclined-plane 145,161 that is in contact with one another respectively.
Being equipped with in the housing 1 can be around the reverse-flighted screw 4 of self axis rotation, promptly support 19 is arranged at housing 1 internal fixation, reverse-flighted screw 4 is installed in support 19, one end of reverse-flighted screw 4 has flower wheel 5 by screw retention, one side of line wheel 3 is fixed with driving wheel 6, driving wheel 6 is an integral piece with axial region 22, certainly also driving wheel 6 can be fixed on the axial region 22, therefore driving wheel 6 can rotate by line-wheel 3 together, between this driving wheel 6 and the power wheel 5 by being with 7 to link to each other synchronously, being arranged with on the reverse-flighted screw 4 can be along the slide block 8 of reverse-flighted screw 4 slippages, and slide block 8 fixedly forms by the seat of honour 81 and following 82 are involutory.Along the circle spacing guiding runner 9 of four energy around self axis rotation is installed in this slide block 8, each guide wheel 9 is rotatably installed between the seat of honour 81 and following 82 by rotating shaft 91 respectively.Each guides runner 9 to be provided with and to surround the through wires hole 3 that the power supply source line passes along the circle spacing, also is fixed with directing plate 10 in the slide block 8, and this directing plate 10 is plugged in the screw thread of reverse-flighted screw 4 and cooperates with reverse-flighted screw 4 guiding.Housing 1 internal fixation has guide rod 13, and the bottom of slide block 8 has the pilot hole 83 that passes for guide rod.
Screw thread characteristics on the reverse-flighted screw 4 are to be combined by left-hand screw structure 41 and right-hand screw structure 42, its gauge member for buying on the market.
The principle of work and the process of the automatic winding displacement structure of this winder are as follows:
The retractable cable process: power lead is pulled out, drive line wheel 2 outer commentaries on classics, the rotation of line wheel 2 can drive friction wheel 15 and be displaced downwardly to nadir along slipper 14, and make slipper 14 towards the direction deflection that overcomes the torsion of torsion spring 142, friction wheel 15 is descending toward lower along friction inclined-plane 17 simultaneously, be in relaxation state between friction wheel 15 and friction inclined-plane 17 and the friction wall 21, be that friction force between friction wheel 15 and the friction wall 21 is little, friction force between friction wheel 15 and the friction wall 21 can not take turns 2 by brake line at this moment, so line wheel 2 can normal rotation when drawing outward for power lead, finishes the unwrapping wire process; After rotateing in place, clockwork spring wind spring 3 forwards on the axial region 22 gradually at this moment, clockwork spring wind spring 3 is tightened up, clockwork spring wind spring 3 can make line wheel 2 have revolution trend, friction force between friction wheel 15 and the friction wall 21 can drive friction wheel 15 along moving on the slipper 14 at this moment, friction wheel 15 is up toward eminence along friction inclined-plane 17 simultaneously, compress mutually between friction wheel 15 and friction wall 21 and the friction inclined-plane 17, make slipper 14 towards the deflection of torsion direction simultaneously, so the friction drag between friction wheel 15 and the friction wall 21 imposes on the restoring moment of line wheel 2 greater than clockwork spring wind spring 3, play brake action, then only need pressing button 16 as reclaiming power lead, button 16 drives the torsion revolution that slipper 14 overcomes torsion spring 142, friction wheel 15 leaves friction wall 21, and descending toward lower along friction inclined-plane 17, is in relaxation state between friction wheel 15 and friction inclined-plane 17 and the friction wall 21, line wheel 2 drives turning down at clockwork spring wind spring 3, finishes the take-up process.
Automatic winding displacement process in the retractable cable process: between driving wheel 6 and the power wheel 5 by being with 7 to link to each other synchronously, so the rotation of line wheel 2 can drive driving wheel 6 and power wheel 5 rotates synchronously, reverse-flighted screw 4 line-wheels 2 rotate together, because the screw thread characteristics on the reverse-flighted screw 4 are to be formed by left-hand screw structure and right-hand screw textural association, so after directing plate in the slide block 8 10 and 41 slippages on earth of left-hand screw structure, be rotated further as reverse-flighted screw 4,10 of directing plates can cooperate with right-hand screw structure 42, by left and right sides helical structure 41,42 with the directional tagging of shifting board 10, slide block 8 can be along reverse-flighted screw about 4 toward polyslip like this, power lead is by 92 guiding of the through wires hole on the slide block 8, make the power lead uniform winding on online the wheel, the online wheel in order arranged.
Each guides runner 9 to surround the through wires hole 92 that supply line passes along the circle spacing setting, no matter thataway tilts to spur power lead like this, and power lead all rolls with the surface of guiding runner 9 and fits, and the situation of card line can not occur, guarantee easily to spur electric wire, operate more convenient.
Claims (10)
1. the automatic winding displacement structure of a winder, comprise the have wire hole housing (1) of (11), be provided with line wheel (2) in the housing (1) in order to the rolled power line, revolution provides the clockwork spring wind spring (3) of power to line wheel (2), and stop line to take turns (2) rotating spline latch-up structure, it is characterized in that: being equipped with in the described housing (1) can be around the reverse-flighted screw (4) of self axis rotation, one end of reverse-flighted screw (4) is fixed with flower wheel (5), one side of described line wheel (3) is fixed with driving wheel (6), link to each other by synchronous band (7) between this driving wheel (6) and the power wheel (5), being arranged with on the described reverse-flighted screw (4) can be along the slide block (8) of reverse-flighted screw (4) slippage, the guiding runner (9) of at least three energy around the rotation of self axis is installed in this slide block (8), each guides runner (9) to surround the through wires hole (92) that the power supply source line passes along the circle spacing setting, also be fixed with directing plate (10) in the described slide block (8), this directing plate (10) is plugged in the screw thread of described reverse-flighted screw (4) and cooperates with reverse-flighted screw (4) guiding.
2. the automatic winding displacement structure of winder according to claim 1, it is characterized in that: (82) are involutory fixedly forms by the seat of honour (81) and following for described slide block (8), described guiding runner (9) has four, and each guide wheel (9) is rotatably installed between the described seat of honour (81) and following (82) by rotating shaft (91) respectively.
3. the automatic winding displacement structure of winder according to claim 1, it is characterized in that: described housing (1) peripheral intervals is fixed with the support portion (12) that four profiles take the shape of the letter U, the vertical wall of each support portion (12) is fixed on the front/rear end of housing (1), and the line (L) between the bottommost of adjacent two support portions (12) is positioned at the below of housing (1) bottom between described two support portions (12).
4. multi-angle power lead guide structure according to claim 1 is characterized in that: described housing (1) internal fixation has guide rod (13), and the bottom of described slide block (8) has the pilot hole (83) that passes for described guide rod.
5. the automatic winding displacement structure of winder according to claim 1, it is characterized in that: described spline latch-up structure comprises on the corresponding end-faces that online wheel the (2) are set and is circular friction wall (21), slipper (14), friction wheel (15) and button (16); The middle part of described slipper (14) is rotatably connected on the madial wall of housing (1) opposite side by rotating shaft (141), the afterbody of described slipper (14) is provided with friction wheel axle (151), this friction wheel axle (151) can be along slipper (14) slippage, described friction wheel (15) is installed on the friction wheel axle (151), and friction wheel (15) can with the internal perisporium wipe contact of described friction wall (21), the torsion spring (142) that the afterbody that makes slipper (14) transfers toward gesture outward is installed in the described rotating shaft (141); Also be provided with the friction inclined-plane (17) of conflicting in the described housing (1) for friction wheel (15), when changeing outside online wheel the (3), it is descending toward lower that friction wheel (15) drives friction inclined-plane, lower edge (17) in friction wall (21), during online wheel the (3) revolution, it is up toward eminence that friction wheel (15) drives friction inclined-plane, lower edge (17) in friction wall (21); Described button (16) is arranged on housing (1) and goes up in order to drive the torsion deflection that slipper (14) overcomes torsion spring (142).
6. the structure for deploying and retracting of winder according to claim 5 is characterized in that: described friction inclined-plane (17) is provided with many anti-slip tanks (171) that are provided with at interval.
7. the structure for deploying and retracting of winder according to claim 5, it is characterized in that: described button (16) is located on the sidewall of housing (1), and the inner of button (16) is passed between the head of housing (1) back and described slipper (14) and is cooperated for the inclined-plane.
8. the structure for deploying and retracting of winder according to claim 5, it is characterized in that: the afterbody of described slipper (14) has the fork (143) of U-shaped, have two bar-shaped troughs (144) on two sidewalls of this fork (143), the two ends of described friction wheel axle (151) be located in this two bar-shaped trough (144) and can before and after slippage, described friction wheel (15) is fixed on friction wheel axle (151) and goes up and be positioned at described fork (143).
9. according to the automatic winding displacement structure of the described winder of arbitrary claim in the claim 1~8, it is characterized in that: a side of described line wheel (2) has the axial region (22) that energy line-wheel (2) rotates together, described driving wheel (6) is fixed on this axial region (22), enwinding spring axis (31) in the described clockwork spring wind spring (3) is fixed on the madial wall of housing (1) one side, this axial region (22) and clockwork spring wind spring (3) are positioned at the outer the same side of line wheel (2), the free end of clockwork spring wind spring (3) is fixed on this axial region (22), in the process that online wheel the (2) changeed outward, described clockwork spring wind spring (3) is wrapped on the described axial region (22) gradually and clockwork spring wind spring (3) is tightened up.
10. the automatic winding displacement structure of winder according to claim 9, it is characterized in that: have cutting plane (221) on the side face of described axial region (22), the free end of described clockwork spring wind spring (3) is compressed on the cutting plane (221) of this axial region by pressing plate (222).
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CN2011100607720A CN102190212A (en) | 2011-03-10 | 2011-03-10 | Automatic cord arrangement structure of cord winder |
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CN2011100607720A CN102190212A (en) | 2011-03-10 | 2011-03-10 | Automatic cord arrangement structure of cord winder |
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CN101744584A (en) * | 2008-12-19 | 2010-06-23 | 乐金电子(天津)电器有限公司 | Wire winder with return wire auxiliary device |
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CN106032230A (en) * | 2015-03-13 | 2016-10-19 | 哈尔滨飞机工业集团有限责任公司 | Wire arrangement mechanism |
CN105525459A (en) * | 2016-01-15 | 2016-04-27 | 陈金钟 | Automatic wool planting device |
CN105525459B (en) * | 2016-01-15 | 2017-11-14 | 陈金钟 | Automatic planting wool device |
CN106629274A (en) * | 2016-12-09 | 2017-05-10 | 中国电子科技集团公司第四十四研究所 | Wire arrangement device and wire winding and unwinding device |
CN106629273A (en) * | 2016-12-09 | 2017-05-10 | 中国电子科技集团公司第四十四研究所 | Horn shape wire arrangement device and wire winding and unwinding device |
CN108249232A (en) * | 2016-12-28 | 2018-07-06 | 北京卓翼智能科技有限公司 | A kind of bus cable device for being used to be tethered at unmanned plane |
CN106608565A (en) * | 2017-02-28 | 2017-05-03 | 株洲联诚集团有限责任公司 | Large take-up reel used for engineering |
CN106608565B (en) * | 2017-02-28 | 2018-10-26 | 株洲联诚集团控股股份有限公司 | A kind of large-scale take-up reel of engineering |
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CN108747556A (en) * | 2018-04-24 | 2018-11-06 | 浙江联品电子科技有限公司 | It is a kind of processing transmitter cabinet shearing machine on waste material collection device |
CN109592511A (en) * | 2018-09-29 | 2019-04-09 | 天长市运成电缆辅料有限公司 | A kind of turntable with automatic accomodation cable |
CN109346890A (en) * | 2018-11-30 | 2019-02-15 | 乐清市千云电气科技有限公司 | A kind of socket |
CN109436948A (en) * | 2018-12-31 | 2019-03-08 | 重庆星网施克赛斯自动化有限公司 | A kind of unpowered bus cable device |
CN109607335A (en) * | 2019-01-30 | 2019-04-12 | 安徽宝信信息科技有限公司 | Vapour changes the cable automatic rolling device of the Driving Test practice vehicle roof of electricity |
CN111056385A (en) * | 2020-01-09 | 2020-04-24 | 山东君鸿宇腾电子科技有限公司 | Cable winding equipment for robot |
CN111735490A (en) * | 2020-08-12 | 2020-10-02 | 福建江夏学院 | Multifunctional building structure nondestructive test tester calibration test device |
WO2022057922A1 (en) * | 2020-09-21 | 2022-03-24 | 广东博智林机器人有限公司 | Grinding robot |
CN112141827A (en) * | 2020-09-22 | 2020-12-29 | 合肥神马科技集团有限公司 | Cable traction method of drum type traction machine |
CN113136904A (en) * | 2021-05-15 | 2021-07-20 | 江苏运玛项目管理有限公司 | Foundation settlement monitoring device and method |
CN114275634A (en) * | 2021-12-14 | 2022-04-05 | 广东电网有限责任公司 | Automatic test line coiling mechanism |
CN114275634B (en) * | 2021-12-14 | 2024-01-23 | 广东电网有限责任公司 | Automatic test line coiling mechanism |
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