An electrically adjustable tail rope take-up device

By using an electric winding device driven by a servo motor and a partition plate to divide the winding area, the problems of high labor intensity, low efficiency and difficulty in removing impurities in traditional tail rope winding devices are solved, achieving efficient and clean tail rope winding and convenient rope end fixing.

CN122276535APending Publication Date: 2026-06-26JIANGSU TONGZE ELECTRIC POWER TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
JIANGSU TONGZE ELECTRIC POWER TECHNOLOGY CO LTD
Filing Date
2026-04-13
Publication Date
2026-06-26

AI Technical Summary

Technical Problem

Traditional tail rope take-up devices lack electric adjustment functions, resulting in high labor intensity, low winding efficiency, inability to divide winding into sections, easy tangling, inability to remove impurities, and difficulty in securing the rope end.

Method used

The system uses a servo motor to drive the mounting handle to rotate for electric winding. It is designed with partitions to divide the winding area, a brush plate to remove impurities, and a cable tie to fix the rope end.

Benefits of technology

It achieves efficient electric winding, avoids tangled tail rope, keeps the winding neat, extends service life, and makes it easy to fix the rope end.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention relates to the field of cable winding technology, specifically to an electrically adjustable tail rope winding device. It includes two supports with two connecting pipes fixed between them. Each support has a mounting handle rotatably connected to its surface. One end of each mounting handle is rotatably connected to the power output end of a servo motor assembly. The servo motor assembly is fixed to the surface of one support, and multiple crossbars are fixed between the two supports. The beneficial effect is that by using a servo motor assembly to drive the mounting handles, electric winding of the tail rope is achieved. The operator only needs to trigger the switch of the servo motor assembly to easily complete the winding of the tail rope, greatly reducing labor intensity and improving winding efficiency, making it particularly suitable for large-scale production or operational scenarios.
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Description

Technical Field

[0001] This invention relates to the field of take-up devices, specifically an electrically adjustable tail rope take-up device. Background Technology

[0002] In numerous fields such as industrial production, construction, and logistics, the winding and management of tail ropes is a common and important task. Traditional tail rope winding devices typically suffer from the following problems: Many tail rope take-up devices lack electric adjustment functions and rely on manual operation for winding, which is not only labor-intensive but also has low winding efficiency, making it difficult to meet the needs of large-scale production or operation.

[0003] Most traditional cable reel devices only have a simple winding function and cannot wind up the tail rope in sections. When multiple sets of tail ropes of different types or specifications need to be wound up at the same time, confusion can easily occur, which is not conducive to subsequent use and management.

[0004] During use, tail ropes often accumulate various debris, dust, and other impurities on their surface. Traditional winding devices cannot effectively remove these impurities during the winding process, resulting in an untidy tail rope that not only affects its appearance but may also negatively impact its performance and shorten its lifespan.

[0005] After the tail rope is wound up, securing and managing the rope end is a common challenge. If the rope end is not properly secured, it can easily come undone during storage or transportation, making it difficult to quickly find the rope end the next time it is used, wasting time and effort. Summary of the Invention

[0006] The purpose of this invention is to provide an electrically adjustable tail rope take-up device to solve the problems mentioned in the background art.

[0007] To achieve the above objectives, the present invention provides the following technical solution: an electrically adjustable tail rope take-up device, comprising two brackets, two connecting pipes fixed between the two brackets, mounting handles rotatably connected to the surfaces of both brackets, one end of a mounting handle rotatably connected to the power output end of a servo motor assembly, the servo motor assembly fixed to the surface of one bracket, and multiple crossbars fixed between the two brackets. A partition is provided between the two supports, and a crossbar passes through the partition. The surface of the partition has multiple elongated openings, and two of the elongated openings are screwed with screw rods. One end of the screw rods rests against the body of the crossbar. Two buckle plates are installed above the connecting pipe. A brush plate overlaps on the top surface of the two buckle plates. A guide rod is fixed on the top surface of the buckle plates, and the guide rod passes through the brush plate. A wire harness is fixed on the top surface of the brush plate.

[0008] Preferably, the surface of the bracket is provided with an installation opening, and a bearing is fixed inside the installation opening. The inner ring of the bearing is sleeved on the shaft body of the installation handle, and the installation handle is a "T"-shaped round rod.

[0009] Preferably, the surface of one bracket is provided with a plurality of screw holes, and the plurality of screw holes are arranged in a circumferential pattern with the installation opening as the center. A hand-tightening screw rod I is screwed on the surface of one installation handle, and one end of the hand-tightening screw rod I is screwed into the screw hole.

[0010] Preferably, the surface of the partition board is provided with a plurality of insertion openings, which correspond to the cross bars one by one. The cross bars penetrate through the corresponding insertion openings. Grooves are provided on the surfaces of two of the insertion openings, screw holes are provided on the surfaces of the grooves, rubber cushion blocks are fixed on the surfaces of two of the oval openings, and the rubber cushion blocks are in an annular plate structure. After the hand-tightening screw rod II penetrates through the inner ring opening of the rubber cushion block, it is screwed into the screw hole, and the rubber gasket is elastically deformed while being clamped between the hand-tightening screw rod II and the cross bar.

[0011] Preferably, the buckle plate is in a "C"-shaped plate structure, through holes are provided on both side plates of the buckle plate that are distributed in parallel, a through hole is provided on the surface of the connecting pipe, and a bolt is inserted into the through hole and the through hole, and the buckle plate is fixed on the connecting pipe after the bolt is tightened.

[0012] Preferably, reserved holes are provided at both ends of the brush plate, the guide rod is a "T"-shaped round rod, the guide rod penetrates through the reserved holes, and a spring is sleeved on the rod body of the guide rod. The spring is clamped between the top plate of the guide rod and the brush plate.

[0013] Preferably, the spring initially presses down on the brush plate, and the bristles of the brush plate face downward.

[0014] Preferably, a round hole is provided on the surface of the wire bundling handle, a hand-tightening screw rod III is screwed on the top surface of the wire bundling handle, the hand-tightening screw rod III penetrates through the top plate of the wire bundling handle and extends into the round hole, a gasket is sleeved on the rod body of the hand-tightening screw rod III, and the gasket is clamped between the top end of the hand-tightening screw rod III and the wire bundling handle.

[0015] Compared with the prior art, the beneficial effects of the present invention are as follows: The electric adjustable tail rope winding device proposed by the present invention realizes the electric winding of the tail rope by setting a servo motor group to drive the installation handle to rotate. The operator only needs to trigger the switch of the servo motor group to easily complete the winding work of the tail rope, greatly reducing the labor intensity and improving the winding efficiency, especially suitable for large-scale production or operation scenarios.

[0016] A partition board structure is designed in the device. The partition board can be slid along the cross bar to a specified position according to actual needs, and the partition board is braked on the cross bar by screwing the hand-tightening screw rod II. In this way, the cross bar can be divided into different areas to meet the separate winding of two groups of tail lines, effectively avoiding the chaos phenomenon during the winding of multiple groups of tail ropes, and facilitating subsequent use and management.

[0017] A buckle plate and brush plate structure are installed above the connecting tube. When the tail rope is released, its end is passed between the brush plate and the connecting tube. During the tail rope winding process, the bristles of the brush plate clean the surface of the tail rope, sweeping off attached debris, dust and other impurities, ensuring the cleanliness of the tail rope after winding, which helps to extend the service life of the tail rope and improve its performance stability.

[0018] A cable tie is fixed to the top surface of the brush plate. After the tail rope is wound up to the end and pulled out from between the brush plate and the connecting tube, the end of the tail rope can be inserted into the round hole on the surface of the cable tie, and the end of the tail rope can be held in place by tightening the hand screw. This design ensures that the rope end is properly secured, allowing for quick location of the rope end during the next use, saving time and effort and improving work efficiency. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the structure of the present invention; Figure 2 for Figure 1 Sectional view of the structure at point AA; Figure 3 for Figure 2 Enlarged schematic diagram of the structure at point C; Figure 4 for Figure 1 Structural cross-section view at point BB; Figure 5 for Figure 4 Enlarged schematic diagram of the structure at point D; Figure 6 This is a schematic diagram of the partition structure of the present invention; Figure 7 This is a schematic diagram of the connection structure between the brush plate and the buckle plate of the present invention; Figure 8 This is a schematic diagram of the connection structure between the bracket and the connecting tube of the present invention.

[0020] In the diagram: bracket 1, connecting pipe 101, through hole 102, mounting port 103, bearing 104, screw hole 105, mounting handle 2, connecting rod 201, wheel frame 202, crossbar 203, hand-tightening screw 1 204, partition 3, socket 301, notch 302, rubber gasket 303, screw hole 304, rubber pad 305, hand-tightening screw 2 306, buckle plate 4, through hole 401, bolt 402, brush plate 403, reserved hole 404, guide rod 405, spring 406, cable tie handle 5, hand-tightening screw 3 501, servo motor assembly 6. Detailed Implementation

[0021] To make the objectives, technical solutions, and advantages of the present invention clear and complete, the embodiments of the present invention will be further described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are only some, not all, embodiments of the present invention, and are merely illustrative of the embodiments of the present invention. They are not intended to limit the embodiments of the present invention. All other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0022] Please see Figures 1-8 This invention provides a technical solution: an electrically adjustable tail rope take-up device, comprising two brackets 1, with two connecting pipes 101 fixed between the two brackets 1, and mounting handles 2 rotatably connected to the surfaces of both brackets 1. One end of a mounting handle 2 is rotatably connected to the power output end of a servo motor assembly 6, which is fixed to the surface of one bracket 1. Multiple crossbars 203 are fixed between the two brackets 1. The surface of the bracket 1 has a mounting opening 103, and a bearing 104 is fixed inside the mounting opening 103. The inner ring of the bearing 104 is fitted onto the shaft of the mounting handle 2, which is a "T"-shaped round rod. The surface of one bracket 1 has multiple screw holes 105, which are arranged circumferentially with the mounting opening 103 as the center. A hand-tightening screw 204 is screwed onto the surface of one mounting handle 2, with one end of the hand-tightening screw 204 screwed into the screw hole 105.

[0023] After the servo motor group 6 is triggered, the servo motor group 6 drives the mounting handle 2 to rotate, and the tail rope is wound up through the crossbar 203 between the two mounting handles 2. After the winding is completed, the hand screw 204 can be screwed into the screw hole 105 to brake the mounting handle 2. Multiple connecting rods 201 are fixed on the surface of the mounting handle 2, and one end of each connecting rod 201 is fixed to the inner ring surface of the wheel frame 202.

[0024] To achieve the winding tail line of the crossbar 203 zone, the following was proposed: A partition 3 is provided between the two supports 1. A crossbar 203 passes through the partition 3. The surface of the partition 3 has multiple elongated openings. Two of the elongated openings are screwed with screws 306. One end of the screw 306 rests on the body of the crossbar 203. The surface of the partition 3 has multiple insertion slots 301, which correspond one-to-one with the crossbar 203. The crossbar 203 passes through the corresponding insertion slots 301. Two of the insertion slots 301 have notches 302 on their surfaces. The notches 302 have screw holes 304 on their surfaces. Rubber pads 305 are fixed to the surfaces of the two elongated openings. The rubber pads 305 have an annular plate structure. The screw 306 passes through the inner ring of the rubber pad 305 and is screwed into the screw hole 304. The rubber pads 303 are clamped between the screw 306 and the crossbar 203 and undergo elastic deformation.

[0025] When it is necessary, the partition plate 3 is toggled to slide along the cross bar 203 to the designated position, and then the manual screw rod two 306 is screwed to clamp the cross bar 203. The rubber gasket 303 is clamped between the manual screw rod two and the cross bar 203 to increase the friction between the manual screw rod two 306 and the cross bar 203, so as to brake the partition plate 3 on the cross bar 203. The areas on both sides of the partition plate 3 meet the requirements for winding two groups of trailing wires.

[0026] In order to sweep the debris on the surface of the trailing wire when winding the trailing wire, the following is proposed: Above the connecting pipe 101, two buckles 4 are installed. On the top surfaces of the two buckles 4, a brush plate 403 is lapped. On the top surface of the buckle 4, a guide rod 405 is fixed. The guide rod 405 penetrates through the brush plate 403. On the top surface of the brush plate 403, a wire bundling handle 5 is fixed; the buckle 4 is in a "C"-shaped plate structure. Through holes 401 are opened on both parallel side plates of the buckle 4. A through hole 102 is opened on the surface of the connecting pipe 101. A bolt 402 is inserted into the through hole 102 and the through hole 401. After the bolt 402 is locked, the buckle 4 is fixed on the connecting pipe 101; reserved holes 404 are opened at both ends of the brush plate 403. The guide rod 405 is a "T"-shaped round rod. The guide rod 405 penetrates through the reserved hole 404. A spring 406 is sleeved on the rod body of the guide rod 405. The spring 406 is clamped between the top plate of the guide rod 405 and the brush plate 403; in the initial state, the spring 406 pushes down the brush plate 403, and the bristles of the brush plate 403 face down; a round hole is opened on the surface of the wire bundling handle 5. A manual screw rod three 501 is screwed on the top surface of the wire bundling handle 5. The manual screw rod three 501 penetrates through the top plate of the wire bundling handle 5 and extends into the round hole. A gasket is sleeved on the rod body of the manual screw rod three 501. The gasket is clamped between the top end of the manual screw rod three 501 and the wire bundling handle 5.

[0027] After the buckle 4 is pre-fastened on the connecting pipe 101, the bolt 402 is passed through the buckle 4 and the connecting pipe 101 and then locked to complete the installation of the buckle 4 on the connecting pipe 101. It should be noted that when the trailing rope is paid out, the end of the trailing rope needs to pass through between the brush plate 403 and the connecting pipe 101. In this way, during the winding process of the trailing rope, the brush plate 403 sweeps the debris on the surface of the trailing rope; when the trailing rope is wound to the end and is pulled out from between the brush plate 403 and the connecting pipe 101, the end of the trailing rope is inserted into the round hole on the surface of the wire bundling handle 5, and then the manual screw rod three 501 is screwed to clamp the end of the trailing rope, which is convenient for quickly finding the rope end when the trailing rope is used next time.

[0028] Usage method of the electrically adjustable trailing rope winding device: To meet the required zoned winding needs of the tail rope, move the partition 3 so that it slides along the crossbar 203 to the designated position. Tighten the second hand-tightening screw 306 so that it passes through the inner ring of the rubber pad 305 and is screwed into the screw hole 304. One end of the second hand-tightening screw 306 rests against the body of the crossbar 203. The rubber pad 303 is clamped between the second hand-tightening screw 306 and the crossbar 203, undergoing elastic deformation to increase the friction between the second hand-tightening screw 306 and the crossbar 203, thus braking the partition 3 onto the crossbar 203. At this time, the areas on both sides of the partition 3 can meet the winding needs of two sets of tail ropes. Pass the end of the tail rope through the brush plate 403 and the connecting tube 101. Trigger the switch of the servo motor group 6. The servo motor group 6 drives the mounting handle 2 to rotate, and the tail rope is wound up through the crossbar 203 between the two mounting handles 2. During the winding process, the brush plate 403 will sweep off the debris on the surface of the tail rope. After the tail rope is wound up, tighten the hand screw 204 to screw it into the screw hole 105, thus braking the mounting handle 2. When the tail rope is wound to the end and pulled out from between the brush plate 403 and the connecting tube 101, insert the end of the tail rope into the round hole on the surface of the cable tie 5, and then tighten the hand screw 501. The hand screw 501 passes through the top plate of the cable tie 5 and extends into the round hole. The washer fitted on the body of the hand screw 501 clamps between the top of the hand screw 501 and the cable tie 5. By tightening the hand screw 501 to clamp the end of the tail rope, it is easy to quickly find the rope end when the tail rope is used again.

[0029] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An electrically adjustable tail rope take-up device, comprising two brackets (1), with two connecting pipes (101) fixed between the two brackets (1), characterized in that: The surfaces of the two brackets (1) are both rotatably connected with mounting handles (2). One end of a mounting handle (2) is rotatably connected to the power output end of a servo motor set (6), and the servo motor set (6) is fixed on the surface of one bracket (1). A plurality of cross bars (203) are fixed between the two brackets (1). A partition plate (3) is arranged between the two brackets (1). The cross bars (203) penetrate through the partition plate (3). A plurality of oblong openings are formed on the surface of the partition plate (3). Hand-tightening screws II (306) are screwed on the surfaces of two of the oblong openings. One end of a hand-tightening screw II (306) abuts against the rod body of the cross bar (203). Two buckle plates (4) are installed above the connecting pipe (101). A brush plate (403) is lapped on the top surfaces of the two buckle plates (4). Guide rods (405) are fixed on the top surfaces of the buckle plates (4). The guide rods (405) penetrate through the brush plate (403). A wire-binding handle (5) is fixed on the top surface of the brush plate (403).

2. The electrically adjustable tail rope take-up device according to claim 1, characterized in that: Mounting openings (103) are formed on the surface of the bracket (1). Bearings (104) are fixed inside the mounting openings (103). The inner rings of the bearings (104) are sleeved on the shafts of the mounting handles (2). The mounting handles (2) are "T"-shaped round rods.

3. The electrically adjustable tail rope take-up device according to claim 2, characterized in that: A plurality of screw holes (105) are formed on the surface of one bracket (1). The plurality of screw holes (105) are arranged in a circumferential pattern with the mounting opening (103) as the center. A hand-tightening screw I (204) is screwed on the surface of one mounting handle (2). One end of the hand-tightening screw I (204) is screwed into the screw hole (105).

4. The electrically adjustable tail rope take-up device according to claim 1, characterized in that: A plurality of insertion openings (301) are formed on the surface of the partition plate (3). The insertion openings (301) correspond to the cross bars (203) one by one. The cross bars (203) penetrate through the corresponding insertion openings (301).缺槽(302) are formed on the surfaces of two of the insertion openings (301). Screw holes (304) are formed on the surfaces of the缺槽(302). Rubber cushion blocks (305) are fixed on the surfaces of two of the oblong openings. The rubber cushion blocks (305) are in the shape of annular plates. The hand-tightening screws II (306) penetrate through the inner ring openings of the rubber cushion blocks (305) and are then screwed into the screw holes (304). Rubber gaskets (303) are elastically deformed while being clamped between the hand-tightening screws II (306) and the cross bars (203).

5. The electrically adjustable tail rope take-up device according to claim 1, characterized in that: The buckle plates (4) are in the shape of "匚"-shaped plates. Through holes (401) are formed on both side plates of the buckle plates (4) that are distributed in parallel. Through holes (102) are formed on the surface of the connecting pipe (101). Bolts (402) are inserted into the through holes (102) and the through holes (401). After the bolts (402) are tightened, the buckle plates (4) are fixed on the connecting pipe (101).

6. The electrically adjustable tail rope take-up device according to claim 1, characterized in that: Reserved holes (404) are formed at both ends of the brush plate (403). The guide rods (405) are "T"-shaped round rods. The guide rods (405) penetrate through the reserved holes (404). Springs (406) are sleeved on the rod bodies of the guide rods (405). The springs (406) are clamped between the top plates of the guide rods (405) and the brush plate (403).

7. The electrically adjustable tail rope take-up device according to claim 6, characterized in that: In the initial state, the springs (406) push down and support the brush plate (403), and the bristles of the brush plate (403) face downward.

8. The electrically adjustable tail rope take-up device according to claim 1, characterized in that: The surface of the wire harness handle (5) has a round opening. A hand-tightening screw three (501) is screwed onto the top surface of the wire harness handle (5). The hand-tightening screw three (501) passes through the top plate of the wire harness handle (5) and extends into the round opening. A washer is fitted on the rod of the hand-tightening screw three (501). The washer is clamped between the top of the hand-tightening screw three (501) and the wire harness handle (5).