A cable coiling apparatus

By designing lifting and separating components, the problems of cumbersome and unsafe disassembly of the winding drum in the existing technology are solved, realizing safe and convenient disassembly of cable winding equipment.

CN117284875BActive Publication Date: 2025-10-24ZHEJIANG JIAZE CABLE CO LTD
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Patent Information

Application Number
CN202311286221.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-10-07
Publication Date
2025-10-24
Estimated Expiration
2043-10-07

AI Technical Summary

Technical Problem

Existing cable winding equipment requires lifting equipment when disassembling the winding drum, making the disassembly process troublesome and unsafe.

Method used

A cable winding device was designed. Through the combined use of lifting and separating components, the winding drum can be safely and conveniently disassembled from the base. The disassembly mechanism utilizes the detachment mechanism of the spool and the spool hole, and the safety and convenience of the disassembly process are ensured by the barrier platform and the buffer ridge.

Benefits of technology

It enables safe and convenient disassembly of the winding drum, avoids dependence on lifting equipment, and improves disassembly efficiency and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a cable winding device, comprising a winding drum, a first base, a second base, a driving motor, a driving pulley, a main shaft, a driven pulley, a belt, a clamping shaft, a clamping hole, a threaded hole provided on the second base, a threaded rod threadedly connected to the threaded hole, a positioning end provided at the end of the threaded rod, a positioning groove provided at the end of the winding drum away from the clamping hole and for the positioning end to be embedded, a handwheel provided at the end of the threaded rod away from the positioning end, an open groove provided on the ground between the first base and the second base, an "I"-shaped bracket provided in the open groove, clamping grooves for the lower sides of the two ends of the winding drum to be embedded at both ends of the bracket, a lifting component for driving the bracket to move up and down is provided in the open groove, and a separation component for driving the bracket to move toward the side away from the first base so that the clamping shaft and the clamping hole are disengaged is also provided between the open groove and the first base.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the technical field of cable production, and particularly relates to a cable winding device. BACKGROUND

[0002] The main process of the cable is drawing, twisting, covering and winding, and the finished cable is often wound by a winding device.

[0003] At present, a wire and cable production and processing device is disclosed in Chinese Patent No. CN215557929U and published on January 18, 2022, which comprises a base, a lead screw shaft, a wire arranging device and a motor. Two upright columns are symmetrically installed on the upper surface of the base, a circular shaft A is installed between the upper ends of the two upright columns, the ends of the circular shaft A are fixed on the embedded bearings A on the upright columns, a driven wheel A and a driven wheel B are installed at one end of the circular shaft A through the upright column, a wire arranging wheel is installed on the upper end of the wire arranging device, two brackets are symmetrically installed on the upper surface of the base at the front ends of the two upright columns, a sleeve is fixed on the left bracket through a fixed seat, a lead screw shaft is spirally installed in the sleeve, a circular shaft B is fixed on the right bracket through two bearing seats, a fixer is installed at the inner end of the circular shaft B, and a driven wheel C is installed on the shaft of the circular shaft B.

[0004] The wire and cable production and processing device moves the cable back and forth through the wire arranging device, realizes that the cable can be uniformly and orderly wound on the winding drum, and when the winding drum finishes winding the cable, the operator moves the fixer towards the side away from the winding drum by using the hand crank, thereby loosening the winding drum, and finally the winding drum can be taken off from the base. However, since the winding drum with the cable has a large weight, it is often necessary to disassemble the winding drum by using a lifting device, which makes the whole process of disassembling the winding drum very troublesome, and is not conducive to the safe disassembly of the winding drum. SUMMARY

[0005] The purpose of the present application is to provide a cable winding device which is beneficial to the safe and convenient disassembly of the winding drum.

[0006] The above technical objectives of the present invention are achieved through the following technical solutions: a cable winding device, comprising a winding drum, a first base located at one end of the winding drum, a second base located at the end of the winding drum away from the first base, a driving motor arranged on the lower side of the first base, a driving pulley arranged on the output shaft of the driving motor, a main shaft rotatably connected to the first base, a driven pulley arranged at the end of the main shaft, a belt arranged between the driving pulley and the driven pulley, a clamping shaft arranged at the end of the main shaft away from the driven pulley, a clamping hole opened at the center of one end of the winding drum and for the clamping shaft to be embedded in to drive the winding drum to rotate, a threaded hole opened on the second base, A threaded rod threadedly connected to the threaded hole, a positioning end arranged at the end of the threaded rod, a positioning groove opened at the end of the winding drum away from the clamping hole and for the positioning end to be embedded, and a handwheel arranged at the end of the threaded rod away from the positioning end, an open groove is opened on the ground between the first base and the second base, an "I"-shaped bracket is set in the open groove, and clamping grooves for the lower sides of the two ends of the winding drum to be embedded are opened at both ends of the bracket, and a lifting component for driving the bracket to move up and down is set in the open groove, and a separation component for driving the bracket to move toward the side away from the first base so that the clamping shaft and the clamping hole are disengaged is also provided between the open groove and the first base.

[0007] By adopting the above technical solution, when it is necessary to remove the winding drum from between the first base and the second base, the lifting assembly is first used to drive the bracket in the open groove to move upward, so that the card slots at both ends of the bracket are embedded in the lower sides of the two ends of the winding drum, and then the threaded rod on the second base can be rotated by the handwheel to make the positioning end of the threaded rod disengage from the positioning slot, and then the separation assembly is used to drive the bracket toward the side away from the first base. At this time, the bracket can drive the winding drum to move toward the side away from the first base, so that the card shaft and the card hole are disengaged, and the winding drum can be disengaged from the first base and the second base, which is ultimately conducive to the safe and convenient disassembly of the winding drum.

[0008] The present invention is further configured as follows: a blocking platform with a triangular cross-section is provided on the ground on one side of the first base and the second base, and one end of the card slot close to the blocking platform is communicated with the outside.

[0009] By adopting the above technical solution, the end of the card slot close to the barrier platform is connected to the outside world. Therefore, when the winding drum is detached from the first base and the second base, the operator rotates the winding drum on the bracket toward one side of the barrier platform. At this time, the end of the winding drum can roll down from the end of the card slot close to the barrier platform, and then the winding drum continues to rotate under the action of inertia and can abut against the barrier platform. The winding drum can be blocked and positioned by the barrier platform. Compared with the existing technology that requires lifting equipment to dismantle the winding drum, this method is conducive to the safe and convenient disassembly of the winding drum.

[0010] The further arrangement of the present application is that the bottom wall of the clamping groove is provided with a landslide inclined downward towards the side of the blocking table.

[0011] By adopting the above technical scheme, when the separating assembly drives the winding drum to move away from the first base side to make the clamping shaft and the clamping hole disengage, the winding drum can roll out of the clamping groove along the landslide at the bottom of the clamping groove under the gravity of the winding drum itself, without relying on manpower to push the winding drum in the clamping groove to make it roll out, which is further beneficial to the safe and convenient disassembly of the winding drum.

[0012] The further arrangement of the present application is that the ground between the open groove and the blocking table is provided with a plurality of buffer protrusions.

[0013] By adopting the above technical scheme, since the winding drum with the wound cable has a large weight, it has a large inertia when rolling, and at this time, the plurality of buffer protrusions provided on the ground between the open groove and the blocking table can buffer the rolling winding drum, which is beneficial to the safe contact of the winding drum on the blocking table.

[0014] The further arrangement of the present application is that the lifting assembly comprises a lifting table supported on the lower side of the bracket, a connecting sleeve provided at the center of the lifting table and passing through the middle part of the bracket, and a plurality of lifting cylinders provided at the bottom of the open groove and connected with the bottom wall of the open groove at the lower end and connected with the lifting table at the upper end.

[0015] By adopting the above technical scheme, the lifting table can drive the bracket to move up and down by connecting the bracket with the connecting sleeve; and since the bracket can also move horizontally along the connecting sleeve, it will not affect the subsequent translation movement of the separating assembly driving the bracket.

[0016] The further arrangement of the present application is that the separating assembly comprises a connecting groove opened on the ground below the first base and communicating with the open groove, a motor seat provided at the side of the lifting table and connected with the driving motor after passing through the connecting groove, a bearing seat provided on the side of the first base away from the second base, a lead screw rotatably connected to the bearing seat at one end, an internal thread sleeve threadedly connected to the lead screw, two connecting rods provided at the side of the bracket and penetrating into the connecting groove, a fixed plate provided at the end of the two connecting rods away from the bracket, a connecting arm provided below the internal thread sleeve, branch arms provided on both sides of the connecting arm, a clamping hole opened at the lower end of the branch arm and embedded after the fixed plate moves up, and a linkage provided between the lead screw and the driving motor and used for connecting the lead screw with the output shaft of the driving motor after moving up.

[0017] When the end of the winding drum is embedded in the clamping groove by lifting the bracket with the lifting cylinder, the driving motor is lifted with the motor base, so that the driving motor driving pulley is separated from the belt, and the rotation of the driving motor cannot drive the winding drum to rotate any more; the driving motor output shaft is connected with the end of the screw rod by the linkage after being lifted, and the fixed plate connected with the connecting rod of the bracket is embedded in the clamping hole of the branch arm after the bracket is lifted; the driving motor is started, the inner thread sleeve is translated along the screw rod after the screw rod is rotated by the driving motor, the connecting arm and the branch arm drive the fixed plate to translate, and then the bracket is driven to move away from the first base, so that the clamping shaft is separated from the clamping hole.

[0018] When the winding drum needs to be rotated again, the bracket is lowered by the lifting cylinder, so that the driving motor is lowered and the driving motor driving pulley is in contact with the belt again, and the rotation of the driving motor can drive the winding drum to rotate through the belt.

[0019] The linkage comprises a first tooth-shaped groove opened on the end face of the driving motor output shaft, a second tooth-shaped groove opened on the end face of the end of the screw rod close to the driving motor, a tooth-shaped column embedded in the second tooth-shaped groove and used for being embedded in the first tooth-shaped groove after being moved, a threaded adjusting hole opened at the central axis of the screw rod and communicated with the second tooth-shaped groove, a threaded adjusting shaft screwed in the threaded adjusting hole, and a knob arranged at one end of the threaded adjusting shaft.

[0020] When the driving motor is lifted and the driving motor output shaft is moved to the position of the end of the screw rod, the threaded adjusting shaft is moved in the threaded adjusting hole by rotating the knob, and since the end of the threaded adjusting shaft away from the knob is circumferentially rotatably connected and axially fixedly connected with the end of the tooth-shaped column, the threaded adjusting shaft can drive the end of the tooth-shaped column away from the second tooth-shaped groove to be embedded in the first tooth-shaped groove, so that the driving motor output shaft and the end of the screw rod are connected by the tooth-shaped column, and then the driving motor output shaft can drive the screw rod to rotate.

[0021] Meanwhile, the knob is reversely rotated, so that the end of the tooth-shaped column away from the second tooth-shaped groove is separated from the first tooth-shaped groove.

[0022] The end of the threaded adjusting shaft away from the knob is provided with an annular block with a "convex" cross section, and the end of the tooth-shaped column is provided with an annular groove embedded with the annular block and matched with the annular block.

[0023] By adopting the technical scheme, the threaded adjusting shaft is embedded in the annular groove at the end of the toothed column by using the annular block with a "convex" cross section, at this time, the annular block can rotate in the circumferential direction in the annular groove, but the annular block cannot move in the axial direction in the annular groove, and finally, the end of the threaded adjusting shaft away from the knob is connected in the circumferential direction and fixedly connected in the axial direction on the end of the toothed column.

[0024] Further, the active pulley is provided with a stop ring on both sides, which abuts against the side of the belt.

[0025] By adopting the technical scheme, the active pulley is provided with a stop ring on both sides, which abuts against the side of the belt.

[0026] In summary, the present application has the following advantages: when it is necessary to disassemble the winding drum between the first base and the second base, first, the lifting cylinder drives the lifting platform to move up, the lifting platform drives the bracket to move up through the connecting sleeve, the clamping grooves at both ends of the bracket are embedded in the lower ends of the winding drum, the fixed plate connected by the connecting rod of the bracket is embedded in the bayonet of the branch arm, the lifting platform drives the driving motor to move up through the motor base, the driving motor is separated from the belt, the rotation of the driving motor cannot drive the winding drum to rotate, then the hand wheel is rotated to drive the threaded rod of the second base to move, and the positioning end at the end of the threaded rod is separated from the positioning groove.

[0027] The driving motor output shaft moves to the position at the end of the screw rod, the operator rotates the knob to drive the threaded adjusting shaft to move in the threaded adjusting hole, the end of the threaded adjusting shaft away from the knob is connected in the circumferential direction and fixedly connected in the axial direction on the end of the toothed column by the annular block and the annular groove, the toothed column is embedded in the first toothed groove away from the second toothed groove, the driving motor output shaft and the end of the screw rod are connected through the toothed column, the driving motor is started, and the driving motor output shaft drives the screw rod to rotate. The driving motor drives the screw rod to rotate, the inner threaded sleeve translates along the screw rod, the connecting arm and the branch arm drive the fixed plate to translate, the fixed plate drives the bracket to move away from the first base, the clamping shaft is separated from the bayonet, the winding drum rolls out of the clamping groove along the slide at the bottom of the clamping groove under the action of its own gravity, and the winding drum is positioned by the blocking table under the action of inertia, compared with the existing technology, the winding drum is disassembled by the lifting equipment, and the winding drum is safely and conveniently disassembled.

[0028] When the winding drum is disassembled, each mechanism needs to be reset, first the drive motor output shaft reverses rotation, thereby driving the inner thread sleeve along the screw rod to move reversely, so that the bracket moves towards the first base side and resets; then reverse rotation knob, so that the toothed column is out of the first toothed groove, and the lifting cylinder drives the bracket to move down and reset the bracket to the open slot, and the drive motor moves down and drives the drive pulley to contact the belt again, so that the next time the drive motor starts can drive the winding drum to rotate for winding the cable, and the fixed plate moves down from the bayonet to disengage. BRIEF DESCRIPTION OF DRAWINGS

[0029] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.

[0030] Figure 1 is a structural schematic diagram of the present application;

[0031] Figure 2 is a structural schematic diagram of the present application, wherein the winding drum is exploded;

[0032] Figure 3 is a local enlarged view of the connection relationship between the drive motor, bracket, lifting assembly and separation assembly in the present application;

[0033] Figure 4 is a partial structure sectional view of the present application, at this time the lifting platform drives the bracket to move up so that the clamping grooves at both ends of the bracket are embedded into the lower sides of both ends of the winding drum;

[0034] Figure 5 is a local sectional view of the connection relationship between the bearing seat, screw rod, inner thread sleeve and toothed column in the present application.

[0035] In the figure, 1, winding drum; 11, clamping hole; 12, positioning groove; 2, first base; 21, driving motor; 211, driving pulley; 2111, blocking ring; 22, main shaft; 221, driven pulley; 222, clamping shaft; 23, belt; 3, second base; 31, threaded hole; 32, threaded rod; 321, positioning end; 322, hand wheel; 4, open slot; 5, bracket; 51, clamping slot; 511, slide; 6, lifting assembly; 61, lifting platform; 62, connecting sleeve; 63, lifting cylinder; 7, separation assembly; 71, connecting groove; 72, motor base; 73, bearing seat; 74, screw rod; 75, internally threaded sliding sleeve; 76, connecting rod; 77, fixed plate; 78, connecting arm; 79, branch arm; 701, clamping port; 702, linkage; 7021, first tooth-shaped groove; 7022, second tooth-shaped groove; 7023, tooth-shaped column; 70231, annular groove; 7024, threaded adjusting hole; 7025, threaded adjusting shaft; 70251, annular block; 7026, knob; 8, blocking table; 81, buffer convex strip. DETAILED DESCRIPTION

[0036] The technical solutions in the embodiments will be clearly and completely described below. Obviously, the described embodiments are only part of the embodiments of the present application, not all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by a person of ordinary skill in the art without creative labor fall within the protection scope of the present application.

[0037] A cable winding device, referring to Figure 1 , Figure 2 , Figure 3The cable winding device includes a winding drum 1, a first base 2, a second base 3, a driving motor 21, a driving pulley 211, a main shaft 22, a driven pulley 221, a belt 23, a clamping shaft 222, a clamping hole 11, a threaded hole 31, a threaded rod 32, a positioning end 321, a positioning groove 12, and a handwheel 322, wherein the winding drum 1 is used to wind up the cable, and the first base 2 is located at one end of the winding drum 1 and the lower end is fixed to the ground by anchor bolts. At the same time, the second base 3 is located at the end of the winding drum 1 away from the first base 2 and the lower end is also fixed to the ground by anchor bolts, and the driving motor 21 is located at the lower side of the first base 2, wherein the driving pulley 211 is key-connected to the output shaft of the driving motor 21, and the main shaft 22 is rotatably connected to the first base 2 through a bearing, and the driven pulley 221 is key-connected to one end of the main shaft 22, and the belt 23 is provided on the driving pulley 211 and the driven pulley 22 The cam 222 is fixed to the upper end of the drive shaft 21 and is fixed to the upper end of the drive shaft 21. The cam 222 is fixed to the lower end of the drive shaft 21 and is fixed to the lower end of the drive shaft 21.

[0038] Reference Figure 1 、 Figure 3 An open groove 4 is provided on the ground between the first base 2 and the second base 3, and an "I"-shaped bracket 5 is provided in the open groove 4, wherein both ends of the bracket 5 are provided with a card slot 51 for embedding the lower sides of the two ends of the supply and reel 1, and a blocking platform 8 with a triangular cross-section is fixed to the ground on one side of the first base 2 and the second base 3 by bolts, and at the same time, one end of the card slot 51 close to the blocking platform 8 is communicated with the outside world, and a slide 511 inclined downward toward the side of the blocking platform 8 is integrally provided on the bottom wall of the card slot 51, wherein a plurality of buffer ridges 81 are bonded to the ground between the open groove 4 and the blocking platform 8.

[0039] Reference Figure 1 、 Figure 2 、 Figure 3The open groove 4 is provided with a lifting assembly 6 for driving the bracket 5 to move up and down, the lifting table 61, the connecting sleeve 62 and the lifting cylinder 63, wherein the lifting table 61 is supported at the lower side of the bracket 5, the connecting sleeve 62 is welded at the center of the lifting table 61 and passes through the middle part of the bracket 5, and the lifting cylinder 63 is provided with four and located at the four corners of the lower side of the lifting table 61, and the lower end of the lifting cylinder 63 is connected with the bottom wall of the open groove 4 and the upper end is connected with the lower surface of the lifting table 61.

[0040] With reference to Figure 1 , Figure 3 , Figure 4 The open groove 4 and the first base 2 are further provided with a separation assembly 7, and the separation assembly 7 is used for driving the bracket 5 to move away from the first base 2 so that the clamping shaft 222 and the clamping hole 11 are separated; the separation assembly 7 includes a connecting groove 71, a motor seat 72, a bearing seat 73, a screw rod 74, an internally threaded sliding sleeve 75, a connecting rod 76, a fixed plate 77, a connecting arm 78, a branch arm 79, a bayonet 701 and a linkage 702, wherein the connecting groove 71 is opened on the ground at the lower side of the first base 2 and communicates with the open groove 4, one end of the motor seat 72 is welded and fixed with the side edge of the lifting table 61 and passes through the connecting groove 71 and is connected with the driving motor 21 through bolts, the bearing seat 73 is fixed on the ground away from the second base 3 through foundation bolts, one end of the screw rod 74 is rotatably connected with the bearing seat 73, the internally threaded sliding sleeve 75 is threadedly connected with the screw rod 74, the connecting rod 76 is provided with two and one end is welded at the side edge of the bracket 5, the connecting rod 76 can pass into the connecting groove 71, the fixed plate 77 is welded at the end away from the bracket 5 of the two connecting rods 76, the connecting arm 78 is welded at the lower side of the internally threaded sliding sleeve 75, the branch arm 79 is integrally provided at both sides of the connecting arm 78, and the bayonet 701 is opened at the lower end of the branch arm 79 and is embedded after the fixed plate 77 moves upward.

[0041] With reference to Figure 3 , Figure 4 , Figure 5The linkage 702 is arranged between the lead screw 74 and the driving motor 21 and is used for connecting the lead screw 74 with the output shaft of the driving motor 21 after the upward movement, and the linkage 702 comprises a first tooth-shaped groove 7021, a second tooth-shaped groove 7022, a tooth-shaped column 7023, a threaded adjusting hole 7024, a threaded adjusting shaft 7025 and a knob 7026, the first tooth-shaped groove 7021 is arranged at the center of the end face of the output shaft of the driving motor 21, the second tooth-shaped groove 7022 is arranged at the center of the end face of the end of the lead screw 74 close to the driving motor 21, the tooth-shaped column 7023 is embedded in the second tooth-shaped groove 7022 at one end and is embedded in the first tooth-shaped groove 7021 at the other end after the movement, the threaded adjusting hole 7024 is arranged at the central axis of the lead screw 74 and is communicated with the second tooth-shaped groove 7022, the threaded adjusting shaft 7025 is threadedly connected in the threaded adjusting hole 7024, the knob 7026 is welded at the end of the threaded adjusting shaft 7025, the end of the threaded adjusting shaft 7025 away from the knob 7026 is rotationally connected and axially fixedly connected on the end of the tooth-shaped column 7023, the end of the threaded adjusting shaft 7025 away from the knob 7026 is integrally provided with an annular block 70251 with a "convex" cross section, and the end of the tooth-shaped column 7023 is provided with an annular groove 70231 for embedding the annular block 70251 and cooperating with the annular block 70251.

[0042] Principle: when it is needed to disassemble the winding drum 1 from between the first base 2 and the second base 3, first of all, the lifting cylinder 63 is used to drive the lifting table 61 to move upward, the lifting table 61 can drive the bracket 5 to move upward by using the connecting sleeve 62 to connect the bracket 5, so that the clamping grooves 51 at the two ends of the bracket 5 are embedded with the lower sides of the two ends of the winding drum 1, and the fixed plate 77 connected with the connecting rod 76 of the bracket 5 can be embedded in the clamping opening 701 on the branch arm 79 after the upward movement, and the lifting table 61 drives the driving motor 21 to move upward by the motor base 72, so that the driving motor 21 is separated from the belt 23 after the driving motor 21 moves upward, and the rotation of the driving motor 21 cannot drive the winding drum 1 to rotate, then the hand wheel 322 is rotated to drive the threaded rod 32 on the second base 3, so that the positioning end 321 at the end of the threaded rod 32 is separated from the positioning groove 12.

[0043] Wherein the driving motor 21 output shaft on the move after the end of the position of the lead screw 74, the operator by rotating the knob 7026 driven screw adjustment shaft 7025 in the threaded adjustment hole 7024 move, and because the threaded adjustment shaft 7025 away from the knob 7026 one end of the annular block 70251 and annular groove 70231 circumferential rotation connection and axial fixed connection on the end of the toothed column 7023, so the threaded adjustment shaft 7025 can drive the toothed column 7023 away from the second end of the toothed groove 7022 embedded in the first toothed groove 7021, at this time rely on the toothed column 7023 can be connected to the driving motor 21 output shaft and the end of the lead screw 74, then start the driving motor 21, the driving motor 21 output shaft can drive the lead screw 74 rotation; and driving motor 21 drive the lead screw 74 rotation, the internal thread sleeve 75 can be translated along the lead screw 74, while the connecting arm 78 and branch arm 79 driven fixed plate 77 translation, then the fixed plate 77 can drive the bracket 5 away from the first side of the base 2, so that the shaft 222 and card hole 11 off; then under its own gravity winding drum 1, winding drum 1 can be rolled along the card slot 51 from the card slot 51 in the landslide 511, while the winding drum 1 under the action of inertia continue to rotate can be blocked on the barrier platform 8, through the barrier platform 8 can be blocked positioning winding drum 1, compared to the prior art need to be lifting equipment to remove the winding drum 1, can be beneficial to the winding drum 1 safe, convenient disassembly.

[0044] When the winding drum 1 is disassembled, each mechanism needs to be reset, first the driving motor 21 output shaft reverse rotation, thus driving the internal thread sleeve 75 along the lead screw 74 reverse movement, so that the bracket 5 towards the first side of the base 2 close to reset; then reverse rotation knob 7026, so that the toothed column 7023 from the first toothed groove 7021, while the lifting cylinder 63 driven bracket 5 down after the bracket 5 reset to the open slot 4, while the driving motor 21 down driven drive pulley 211 again on the belt 23, so that the next time the driving motor 21 start can drive the winding drum 1 rotation for winding cable, while the fixed plate 77 down from the card mouth 701 off.

Claims

1. A cable winding device, comprising a winding drum (1), a first base (2) located at one end of the winding drum (1), a second base (3) located at the end of the winding drum (1) away from the first base (2), a driving motor (21) arranged on the lower side of the first base (2), a driving pulley (211) arranged on the output shaft of the driving motor (21), a main shaft (22) rotatably connected to the first base (2), a driven pulley (221) arranged at the end of the main shaft (22), a belt (23) arranged between the driving pulley (211) and the driven pulley (221), a clamping shaft (222) arranged at the end of the main shaft (22) away from the driven pulley (221), a clamping hole (11) arranged at the center of the end of the winding drum (1) and used for embedding the clamping shaft (222) to drive the winding drum (1) to rotate, a threaded hole (31) arranged on the second base (3), a threaded rod (32) threadedly connected in the threaded hole (31), a positioning end (321) arranged at the end of the threaded rod (32), a positioning groove (12) arranged at the end of the winding drum (1) away from the clamping hole (11) and used for embedding the positioning end (321), and a hand wheel (322) arranged at the end of the threaded rod (32) away from the positioning end (321), characterized in that: An open slot (4) is provided on the ground between the first base (2) and the second base (3), and a bracket (5) in the shape of an "I" is provided in the open slot (4). Both ends of the bracket (5) are provided with a card slot (51) for embedding the lower sides of the two ends of the supply and reel (1). A lifting component (6) for driving the bracket (5) to move up and down is provided in the open slot (4), and a separation component (7) for driving the bracket (5) to move toward a side away from the first base (2) so as to separate the card shaft (222) and the card hole (11) is further provided between the open slot (4) and the first base (2); the lifting component (6) includes a lifting platform (61) supported on the lower side of the bracket (5), a lifting platform (61) provided on the lifting platform (61), and a separating component (7) for driving the bracket (5) to move toward a side away from the first base (2) so as to separate the card shaft (222) and the card hole (11). ) center and for the middle of the bracket (5) to pass through, a plurality of lifting cylinders (63) arranged at the bottom of the opening groove (4) and the lower end of which is connected to the bottom wall of the opening groove (4) and the upper end of which is connected to the lifting platform (61); the separation component (7) includes a connecting groove (71) opened on the ground below the first base (2) and communicating with the opening groove (4), a motor seat (72) arranged at the side of the lifting platform (61) and connected to the drive motor (21) after passing through the connecting groove (71), a bearing seat (73) arranged on the side of the first base (2) away from the second base (3), a screw rod (74) with one end rotatably connected to the bearing seat (73), an internal threaded sleeve (75) threadedly connected to the screw rod (74), two A connecting rod (76) is provided at the side of the bracket (5) and is inserted into the connecting groove (71); a fixing plate (77) is provided at one end of the two connecting rods (76) away from the bracket (5); a connecting arm (78) is provided at the lower side of the internal threaded sleeve (75); branch arms (79) are provided on both sides of the connecting arm (78); a bayonet (701) is provided at the lower end of the branch arm (79) and is provided for the fixing plate (77) to be inserted after the fixing plate (77) is moved upward; and a linkage member (702) is provided between the screw rod (74) and the drive motor (21) and is used to connect the screw rod (74) to the output shaft of the drive motor (21) after the drive motor (21) is moved upward; the linkage member (702) includes a first toothed groove (7021) provided on the end face of the output shaft of the drive motor (21); A second toothed groove (7022) is provided on an end surface of a screw rod (74) close to an end of a drive motor (21); a toothed column (7023) having one end embedded in the second toothed groove (7022) and the other end being adapted to be embedded in the first toothed groove (7021) after movement; a threaded adjustment hole (7024) is provided at a central axis of the screw rod (74) and communicates with the second toothed groove (7022); a threaded adjustment shaft (7025) threadedly connected to the threaded adjustment hole (7024); and a knob (7026) provided at one end of the threaded adjustment shaft (7025); and the end of the threaded adjustment shaft (7025) away from the knob (7026) is circumferentially rotatably connected and axially fixedly connected to the end of the toothed column (7023).

2. A cable coiling apparatus according to claim 1, wherein: The ground on the side of the first base (2) and the second base (3) is provided with a barrier platform (8) with a triangular cross section, and the one end of the clamping groove (51) close to the barrier platform (8) is communicated with the outside.

3. A cable coiling apparatus according to claim 2, wherein: The bottom wall of the clamping groove (51) is provided with a landslide (511) inclined downward towards the side of the barrier platform (8).

4. A cable coiling apparatus according to claim 3, wherein: The ground between the open slot (4) and the barrier platform (8) is provided with a plurality of buffer convex strips (81).

5. A cable coiling apparatus according to claim 1, wherein: The end of the threaded adjusting shaft (7025) away from the knob (7026) is provided with an annular block (70251) with a "convex" cross section, and the end of the toothed column (7023) is provided with an annular groove (70231) for embedding the annular block (70251) and cooperating with the annular block (70251).

6. A cable coiling apparatus according to claim 1, wherein: The two sides of the driving belt wheel (211) are provided with stop rings (2111) abutting against the side edges of the belt (23).

Citation Information

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