Full-automatic winding device capable of preventing falling

Through the design of multi-stage cylinders, transmission frames and elastic parts, the coil is prevented from being automatically taken out when winding is completed. Combined with multi-stage cylinders and bundlers, the problem of coil drop is solved, and the coil is automatically prevented from falling off and bundling is achieved, and the operation efficiency is improved.

CN223140572UActive Publication Date: 2025-07-22SUMIDA ELECTRIC JIAN CO LTD
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Patent Information

Application Number
CN202422218361.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-10
Publication Date
2025-07-22
Estimated Expiration
2034-09-10

AI Technical Summary

Technical Problem

The fully automatic winding device has problems such as loosening of the wire head, falling off the coil and large machine occupancy position when the winding is completed, resulting in the coil falling.

Method used

The multi-stage cylinder, transmission frame and elastic parts are designed to prevent the coil from being automatically removed when the winding is completed; the multi-stage cylinder, connecting block and bundler are used to prevent the coil from falling off when the winding is removed; the limiting rod limits the cable head to not easily dissipate when the winding is wound.

Benefits of technology

It realizes that the coil is not easy to fall when the winding is completed, and it is automated during the removal process, which improves operating efficiency and prevents the cable head from spreading.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of industrial automation and mechanical manufacturing, in particular to an anti-falling full-automatic winding device which comprises a full-automatic winding machine, a clockwise cutting assembly, a placing frame, a multi-stage air cylinder a and the like. Two through holes are formed in the right side of the full-automatic winding machine, a clockwise cutting assembly is installed on the full-automatic winding machine, a containing frame is fixedly connected to the full-automatic winding machine, and a multi-stage air cylinder a is fixedly connected to the containing frame. By means of the multi-stage air cylinder b, the transmission frame and the elastic piece, the effect that a wound cable does not need to be taken out from the winding shaft manually is achieved, and the effect that a coil is prevented from falling off easily after being taken out manually and wound is achieved; and through a multi-stage air cylinder c, a connecting block and a binding device, the coil binding effect is achieved, and the effect of further preventing the cable from falling off when the cable is taken down is achieved.
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Description

Technical Field

[0001] The utility model relates to the field of industrial automation and machinery manufacturing, in particular to a fully automatic wire winding device that can prevent wire shedding. Background Art

[0002] An automatic wire winding device is a mechanical device used for automatically winding coils. Through a preset wire winding program, the wire is wound onto a shaft at an average speed and in a certain manner, thereby achieving efficient and precise winding of the coils.

[0003] During the operation of a fully automatic wire winding device, problems such as the wire end becoming loose during winding, the wire end falling off after winding, the coil falling off during collection, and the overall large size of the machine, resulting in occupying a large position and being prone to falling, may occur. Therefore, it is meaningful to design a fully automatic wire winding device that can prevent the coil from falling off. Content of the Utility Model

[0004] In order to overcome the shortcoming that the coil is easily dropped when manually taken after winding in the above-mentioned prior art, the technical problem is to provide a fully automatic wire winding device with anti-shedding function that can prevent the coil from falling off when manually taken.

[0005] The technical solution is as follows: A fully automatic wire winding device with anti-shedding function includes a fully automatic wire winding machine, a wire guiding and cutting assembly, a placement rack, a multi-stage cylinder a, a fixing plate a, and a pushing assembly. There are two through holes on the right side of the fully automatic wire winding machine. A wire guiding and cutting assembly is installed on the fully automatic wire winding machine. A placement rack is fixedly connected to the upper part of the fully automatic wire winding machine. A multi-stage cylinder a is fixedly connected to the placement rack. The telescopic rod of the multi-stage cylinder a is fixedly connected to a fixing plate a. A pushing assembly for preventing the coil from falling off is installed in the right through hole of the fully automatic wire winding machine.

[0006] Preferably, the pushing assembly includes a motor, a multi-stage cylinder b, a rotating shaft, a pressing block, a transmission frame, a fixing plate b, an elastic member, and a wire winding shaft. A motor is fixedly connected in the through hole of the fully automatic wire winding machine. Two multi-stage cylinders b are fixedly connected in the through hole of the fully automatic wire winding machine. The output shaft of the motor is connected to the rotating shaft through a coupling. The telescopic rod of the multi-stage cylinder b is fixedly connected to a pressing block. A transmission frame is slidably connected to the rotating shaft. A fixing plate b is fixedly connected to the rotating shaft. There are three protrusions on the fixing plate b. The transmission frame is clamped on the fixing plate b. Four elastic members are annularly distributed between the fixing plate b and the transmission frame. One end of the elastic member is fixedly connected to the fixing plate b, and the other end of the elastic member is fixedly connected to the transmission frame. The rear end of the rotating shaft is fixedly connected to a wire winding shaft, and the wire winding shaft is fixedly connected to the fixing plate b. There are three notches on the wire winding shaft, and the three notches on the wire winding shaft are aligned with the three notches on the fixing plate b.

[0007] Preferably, a bundling assembly is further included. The bundling assembly includes a multi-stage cylinder c, a connecting block, and a bundler. The multi-stage cylinder c is fixedly connected inside the left through hole of the fully automatic winding machine. A connecting block is fixedly connected to the telescopic rod of the multi-stage cylinder c, and a bundler is fixedly connected to the connecting block.

[0008] Preferably, a limiting rod is further included. Three groups of limiting rods are annularly arranged on the fixing plate b. One group of limiting rods consists of two rods, and the limiting rods are fixedly connected to the rotating piece.

[0009] Preferably, a fixing groove is further included. A fixing groove is formed inside the winding shaft.

[0010] Preferably, a light bar is further included. A light bar is fixedly connected to the fully automatic winding machine.

[0011] Preferably, a protective plate is further included. Protective plates are fixedly connected to both sides of the fully automatic winding machine.

[0012] The beneficial effects of the present utility model: Through the multi-stage cylinder b, the transmission frame, and the elastic member, the present utility model plays a role in removing the wound cable from the winding shaft without manual operation, achieving the effect of preventing the coil from easily falling off when manually removed after winding.

[0013] Through the multi-stage cylinder c, the connecting block, and the bundler, the present utility model plays a role in bundling the coil, achieving the effect of further preventing the cable from falling off when removed.

[0014] Through the limiting rod, the present utility model plays a role in restricting the cable head from falling off during winding, achieving the effect that the cable head is not easily scattered during winding. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 is a three-dimensional structural schematic diagram of the present utility model.

[0016] Figure 2 is a three-dimensional structural schematic diagram of the multi-stage cylinder b, the extrusion block, and the elastic member of the present utility model.

[0017] Figure 3 is a three-dimensional structural schematic diagram of the winding shaft, the transmission frame, and the fixing plate b of the present utility model.

[0018] Reference numerals in the drawings: 1 - fully automatic winding machine, 2 - wire guiding and cutting assembly, 3 - placement rack, 4 - multi-stage cylinder a, 5 - fixing plate a, 6 - pushing-out assembly, 601 - motor, 602 - multi-stage cylinder b, 603 - rotating shaft, 604 - extrusion block, 605 - transmission frame, 606 - fixing plate b, 607 - elastic member, 608 - winding shaft, 7 - bundling assembly, 701 - multi-stage cylinder c, 702 - connecting block, 703 - bundler, 8 - limiting rod, 9 - fixing groove, 10 - light bar, 11 - protective plate. Detailed implementation manners

[0019] The present utility model will be further described below in conjunction with the accompanying drawings and specific implementation manners.

[0020] An automatic winding device capable of preventing falling off, as Figures 1 - 3 shown, includes an automatic winding machine 1, a wire aligning and cutting assembly 2, a placement rack 3, a multi-stage cylinder a 4, a fixing plate a 5 and a pushing assembly 6. There are two through holes provided on the right side of the automatic winding machine 1. A wire aligning and cutting assembly 2 is installed on the automatic winding machine 1. A placement rack 3 is fixedly connected to the upper part of the automatic winding machine 1. A multi-stage cylinder a 4 is fixedly connected to the placement rack 3. The telescopic rod of the multi-stage cylinder a 4 is fixedly connected to a fixing plate a 5. A pushing assembly 6 for preventing the coil from falling off is installed in the right through hole of the automatic winding machine 1. The pushing assembly 6 includes a motor 601, a multi-stage cylinder b 602, a rotating shaft 603, a pressing block 604, a transmission frame 605, a fixing plate b 606, an elastic member 607 and a winding shaft 608. A motor 601 is fixedly connected in the through hole of the automatic winding machine 1. Two multi-stage cylinders b 602 are fixedly connected in the through hole of the automatic winding machine 1. The output shaft of the motor 601 is connected to the rotating shaft 603 through a coupling. The telescopic rod of the multi-stage cylinder b 602 is fixedly connected to a pressing block 604. A transmission frame 605 is slidably connected to the rotating shaft 603. A fixing plate b 606 is fixedly connected to the rotating shaft 603. There are three protrusions on the fixing plate b 606. The transmission frame 605 is clamped on the fixing plate b 606. Four elastic members 607 are annularly distributed between the fixing plate b 606 and the transmission frame 605. One end of the elastic member 607 is fixedly connected to the fixing plate b 606, and the other end of the elastic member 607 is fixedly connected to the transmission frame 605. The rear end of the rotating shaft 603 is fixedly connected to a winding shaft 608, and the winding shaft 608 is fixedly connected to the fixing plate b 606. There are three notches on the winding shaft 608. The three notches on the winding shaft 608 are aligned with the three notches on the fixing plate b 606. It also includes a limiting rod 8. Three groups of limiting rods 8 are annularly arranged on the fixing plate b 606. One group of limiting rods 8 consists of two rods. The limiting rods 8 are fixedly connected to the rotating piece. It also includes a fixing groove 9. A fixing groove 9 is opened inside the winding shaft 608.

[0021] When wire winding is required, the cable is introduced into the wire guiding and cutting assembly 2, and the cable head is wound around the fixing groove 9 inside the winding shaft 608. The fixing groove 9 plays a role in fixing the cable during wire winding, achieving the effect of preventing the cable from running off during wire winding. Then, the cable head is led to be wound and fixed between the limiting rods 8 behind the fixing plate. The cable head is clamped between the two limiting rods 8 behind the fixing plate. The limiting rods 8 play a role in restricting the cable head from falling off during wire winding, achieving the effect that the cable head is not easily scattered during wire winding. After the cable head is fixed, the telescopic rod of the multi-stage cylinder a 4 drives the fixing plate a 5 to move forward, cooperating with the winding shaft 608. When the motor 601 is started, the output shaft of the motor 601 drives the rotating shaft 603 to rotate. The rotating shaft 603 drives the fixing plate b 606 to rotate. The fixing plate b 606 drives the winding shaft 608 to rotate. The driving frame 605 is clamped on the fixing plate b 606. The fixing plate b 606 drives the driving frame 605 to rotate, and the cable will be evenly wound on the winding shaft 608. The wire guiding and cutting assembly 2 will reciprocate back and forth along the slide rail a to make the cable evenly distributed. When the cable winding is completed, the motor 601 is turned off and the wire is cut. The telescopic rod of the multi-stage cylinder b 602 connects the extrusion block 604 and pushes it backward. The extrusion block 604 drives the driving frame 605 to be pushed backward, and the elastic member 607 is extruded. At this time, the wound cable is pushed backward by the driving frame 605, which plays a role of not requiring manual removal of the wound cable from the winding shaft 608, achieving the effect of preventing the coil from easily falling off when manually removed. After the cable is removed, the multi-stage cylinder b 602 drives the extrusion block 604 to reset. At this time, the elastic member 607 expands and pushes the driving frame 605 to move forward to complete the reset.

[0022] As Figure 2 shown, it further includes a bundling assembly 7. The bundling assembly 7 includes a multi-stage cylinder c 701, a connecting block 702, and a bundler 703. The multi-stage cylinder c 701 is fixedly connected inside the left through hole of the fully automatic wire winding machine 1. A connecting block 702 is fixedly connected to the telescopic rod of the multi-stage cylinder c 701, and a bundler 703 is fixedly connected to the connecting block 702.

[0023] When the telescopic rod of the multi-stage cylinder c 701 drives the bundler 703 to extend forward to the position of the driving frame 605, the bundler 703 moves forward, passes through the notches on the fixing plate b 606 and the winding shaft 608, and completes the first bundling of the cable. At this time, manually rotate the driving frame 605 so that the notches on the driving frame 605 and the winding shaft 608 are aligned with the bundler 703, and bundle the wound cable in the same way, which plays a role in bundling the coil and achieves the effect of further preventing the cable from falling off when removed.

[0024] As Figure 1 shown, it further includes a light bar 10. The light bar 10 is fixedly connected to the fully automatic wire winding machine 1.

[0025] When the winding device is used at night, the light strip is turned on, which plays a role in lighting and achieves the effect of improving the operation efficiency at night.

[0026] As Figure 1 shown, it further includes a protective plate 11, and the two sides of the full-automatic winding machine 1 are fixedly connected with the protective plate 11.

[0027] The protective plate 11 plays a role in preventing the full-automatic winding machine 1 from being impacted and achieves the effect of protecting the full-automatic winding machine 1.

[0028] The technical principle of the embodiments of the present invention has been described above in combination with specific embodiments. These descriptions are only for explaining the principle of the embodiments of the present invention and cannot be construed in any way as a limitation on the protection scope of the embodiments of the present invention. Based on the explanations herein, those skilled in the art can readily conceive of other specific embodiments of the embodiments of the present invention without creative efforts, and these embodiments will fall within the protection scope of the embodiments of the present invention.

Claims

1. An anti-detachment full-automatic wire winding device, comprising a full-automatic wire winding machine (1), a wire guiding and cutting assembly (2), a placement rack (3), a multi-stage cylinder a (4) and a fixing plate a (5). The right side of the full-automatic wire winding machine (1) is provided with two through holes. A wire guiding and cutting assembly (2) is installed on the full-automatic wire winding machine (1). A placement rack (3) is fixedly connected to the upper part of the full-automatic wire winding machine (1). A multi-stage cylinder a (4) is fixedly connected to the placement rack (3). The telescopic rod of the multi-stage cylinder a (4) is fixedly connected to a fixing plate a (5), and it is characterized in that, It further includes a pushing component (6). A pushing component (6) for preventing the coil from falling is installed in the right through hole of the full-automatic winding machine (1).

2. The fully automatic wire winding device capable of preventing shedding according to claim 1, wherein The pushing component (6) includes a motor (601), a multi-stage cylinder b (602), a rotating shaft (603), a pressing block (604), a transmission frame (605), a fixing plate b (606), an elastic member (607), and a winding shaft (608). The motor (601) is fixedly connected in the through hole of the full-automatic winding machine (1). Two multi-stage cylinders b (602) are fixedly connected in the through hole of the full-automatic winding machine (1). The output shaft of the motor (601) is connected to the rotating shaft (603) through a coupling. The telescopic rod of the multi-stage cylinder b (602) is fixedly connected with the pressing block (604). The transmission frame (605) is slidably connected to the rotating shaft (603). The fixing plate b (606) is fixedly connected to the rotating shaft (603). There are three protrusions on the fixing plate b (606), and the transmission frame (605) is clamped on the fixing plate b (606). Four elastic members (607) are annularly arranged between the fixing plate b (606) and the transmission frame (605). One end of the elastic member (607) is fixedly connected to the fixing plate b (606), and the other end of the elastic member (607) is fixedly connected to the transmission frame (605). The rear end of the rotating shaft (603) is fixedly connected with the winding shaft (608), and the winding shaft (608) is fixedly connected to the fixing plate b (606). There are three notches on the winding shaft (608), and the three notches on the winding shaft (608) are aligned with the three notches on the fixing plate b (606).

3. The fully automatic wire winding device capable of preventing falling off according to claim 2, wherein, It further includes a bundling component (7). The bundling component (7) includes a multi-stage cylinder c (701), a connecting block (702), and a bundler (703). The multi-stage cylinder c (701) is fixedly connected in the left through hole of the full-automatic winding machine (1). The telescopic rod of the multi-stage cylinder c (701) is fixedly connected with the connecting block (702), and the bundler (703) is fixedly connected to the connecting block (702).

4. A fully automatic wire winding device capable of preventing falling off according to claim 3, characterized in that, It further includes a limiting rod (8). Three groups of limiting rods (8) are annularly arranged on the fixing plate b (606). One group of limiting rods (8) consists of two rods, and the limiting rods (8) are fixedly connected to the rotating piece.

5. A fully automatic wire winding device capable of preventing detachment according to claim 4, characterized in that, It further includes a fixing groove (9). A fixing groove (9) is opened on the inner side of the winding shaft (608).

6. The fully automatic wire winding device capable of preventing falling off according to claim 5, wherein, It further includes a light bar (10). The light bar (10) is fixedly connected to the full-automatic winding machine (1).

7. The fully automatic wire winding device capable of preventing detachment according to claim 6, wherein, It further includes a protective plate (11). The protective plates (11) are fixedly connected to both sides of the full-automatic winding machine (1).