Chuck for clamping ribbon raw materials

By designing a clamping device and using sliding and rotating components to adjust the position of the clamping plate, the problem of time-consuming and labor-intensive cable tie removal was solved, enabling rapid separation of cable tie waste and improving production efficiency.

CN223834928UActive Publication Date: 2026-01-27HENAN TONGDE ELECTRIC CO LTD
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Patent Information

Application Number
CN202520475849.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-18
Publication Date
2026-01-27
Estimated Expiration
2035-03-18

AI Technical Summary

Technical Problem

In current cable tie production, removing cable ties is time-consuming, labor-intensive, and cannot be flexibly adjusted, resulting in low production efficiency.

Method used

Design a clamping device including a first support frame, a second support frame, a third support frame, and a clamping cylinder. The position of the clamping plate is adjusted and clamped through a sliding component and a rotating component. The clamping cylinder and the clamping plate work together to quickly remove and separate cable tie waste.

Benefits of technology

It enables rapid removal and separation of cable tie waste, improves production efficiency, and allows for adjustment of the clamping plate distance to meet the processing needs of different cable ties.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a chuck for clamping ribbon raw materials, which belongs to the technical field of ribbon production and comprises a first support frame, a second support frame and a third support frame, a sliding component is arranged on the first support frame, and the second support frame is connected onto the first support frame through the sliding component. The clamping device has the beneficial effects that by arranging the first supporting frame, the second supporting frame, the third supporting frame, the rotating assembly and the like, the position of the clamping plate can be conveniently adjusted, so that the clamping device is matched with an injection molding machine to clamp and take out ribbon waste materials at different positions, and the clamping jaw air cylinder, the first pushing frame, the clamping plate and anti-skid lines are arranged; and after the clamping jaw cylinder moves to one side of the ribbon waste, the two clamping plates are pushed to get close to clamp the waste, anti-skid operation is carried out during clamping through anti-skid lines, and the distance between the clamping jaw cylinders is adjusted through a limiting plate, a limiting groove, a stop lever, a threaded rod and the like, so that the clamping jaw cylinder is matched for adjustment and use.
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Description

Technical Field

[0001] This utility model relates to the field of cable tie production technology, and more specifically, it relates to a clamp for gripping cable tie raw materials. Background Technology

[0002] Cable ties, also known as wire ties, cable bundles, or locking straps, are straps used to bundle things together. They are generally classified by material, such as nylon cable ties, stainless steel cable ties, and powder-coated stainless steel cable ties. Cable ties are typically produced using specialized injection molding machines, also known as injection molding machines or injection molding machines. These machines are the main molding equipment used to create various shapes of plastic products from thermoplastic or thermosetting plastics using plastic molds.

[0003] In related technologies, when cable ties are produced, multiple cable ties are usually connected together by connecting material. The whole assembly needs to be removed and cut by a cutting device to obtain the finished cable ties.

[0004] The existing technical solutions mentioned above have the following drawbacks: by removing the cable ties and then processing them, it is time-consuming and labor-intensive during use, reducing production efficiency, and it is impossible to adjust the cable ties when removing them. Utility Model Content

[0005] (1) Technical problems to be solved

[0006] To address the shortcomings of existing technologies, the purpose of this utility model is to provide a clamp for gripping cable tie materials, which features the ability to quickly remove waste materials connected by cable ties and adjust the distance between the clamping plates as needed.

[0007] (2) Technical solution

[0008] To achieve the above objectives, this utility model provides a clamp for gripping cable tie materials, including a first support frame, a second support frame, and a third support frame. The first support frame is provided with a sliding component, the second support frame is connected to the first support frame through the sliding component, the third support frame is slidably connected to one side of the second support frame, and the bottom of the third support frame is provided with a rotatable support base.

[0009] The bottom of the support base is provided with multiple gripper cylinders, and the output end of each of the multiple gripper cylinders is provided with two clamping plates, which cooperate with each other.

[0010] The clamping plate is used to clamp and remove waste generated during cable tie production.

[0011] When using a clamp for gripping cable tie materials according to this technical solution, the position of the clamping plate is adjusted when gripping waste material through the first support frame, the second support frame, the third support frame and the support base. The clamping plate can be adjusted to align with the cable tie for clamping and removal. The clamping plate can be rotated downwards to put the waste material down, which facilitates continuous use. The clamping claw cylinder and the clamping plate work together to clamp the waste material, thereby driving the separation operation between the waste material and the finished cable tie.

[0012] Furthermore, the front of the second support frame is connected to two drive wheels, which are positioned vertically. The front of the third support frame is connected to a support block, and the top and bottom of the support block are connected to belts, which are looped onto the two drive wheels.

[0013] Furthermore, a rotating assembly is provided at the bottom of the third support frame, and the support base is connected to the bottom of the third support frame through the rotating assembly. A stop block is connected to the top of the support base, and the stop block is located on one side of the third support frame. The stop block cooperates with the third support frame and limits the position of the support base. A sliding seat is connected to the top of each gripper cylinder, and multiple gripper cylinders are slidably connected to the bottom of the support base through the sliding seat.

[0014] Furthermore, limit plates are provided on both sides of the support base, the two limit plates cooperate with each other, and adjustment plates are respectively connected to both sides of the two limit plates. Threaded rods are threadedly connected to both adjustment plates, the top ends of the two threaded rods are rotatably connected to the bottom of the support base, and rotating disks are connected to the bottom ends of the two threaded rods.

[0015] Furthermore, both sides of the multiple gripper cylinders are connected to stop rods, and multiple limit grooves are opened on both of the two limit plates. The multiple limit grooves are inclined towards the center of the support base, and the multiple stop rods are slidably connected in the multiple limit grooves respectively.

[0016] Furthermore, the bottom of the gripper cylinder is connected to two fixed plates, and a push plate is disposed between the two fixed plates. The push plate is connected to the output end of the gripper cylinder. A first push frame is rotatably connected to both sides of the push plate, and a second push frame is rotatably connected to the other side of each of the two first push frames. Two pins are rotatably connected between the two fixed plates, and the other side of each of the two second push frames is connected to the two pins. A third push frame is connected to the bottom of each of the two pins. The two clamping plates are respectively connected to the bottom of the two third push frames, and anti-slip textures are provided on the opposite sides of the two clamping plates.

[0017] (3) Beneficial effects

[0018] In summary, this utility model has the following beneficial effects:

[0019] 1. By setting up a first support frame, a second support frame, a third support frame, and a rotating component, the position of the clamping plate can be easily adjusted, thereby cooperating with the injection molding machine to clamp and remove cable tie waste from different positions. By setting up a gripper cylinder, a first pushing frame, a clamping plate, and anti-slip texture, after moving to one side of the cable tie waste, the two clamping plates are pushed close to clamp the waste. The anti-slip texture provides anti-slip operation during clamping. The distance between the gripper cylinders is adjusted by a limiting plate, a limiting groove, a stop bar, and a threaded rod, thereby cooperating with the machine for adjustment and use. Attached Figure Description

[0020] To more clearly illustrate the specific embodiments of this utility model or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only one embodiment of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0021] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0022] Figure 2 This is a three-dimensional structural diagram of the present invention.

[0023] Figure 3 This utility model Figure 1 Schematic diagram of the middle support base;

[0024] Figure 4 This utility model Figure 3 Schematic diagram of the structure of the middle gripper cylinder;

[0025] Figure 5 This utility model Figure 3 A schematic diagram of the structure of the middle clamping plate.

[0026] The labels in the attached diagram are:

[0027] 1. First support frame; 2. Sliding assembly; 3. Second support frame; 4. Third support frame; 5. Drive wheel; 6. Belt; 7. Support block; 8. Rotating assembly; 9. Support seat; 10. Stop block; 11. Gripper cylinder; 12. Limiting plate; 13. Limiting groove; 14. Stop bar; 15. Adjusting plate; 16. Threaded rod; 17. Rotating disk; 18. Fixing plate; 19. Push plate; 20. First push frame; 21. Second push frame; 22. Pin shaft; 23. Third push frame; 24. Clamping plate; 25. Anti-slip texture; 26. Sliding seat. Detailed Implementation

[0028] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the technical solutions in the specific embodiments of this utility model are clearly and completely described below to further illustrate this utility model. Obviously, the specific embodiments described are only a part of the embodiments of this utility model, and not all of them.

[0029] Example:

[0030] This utility model provides a technical solution: a clamp for gripping cable tie materials, comprising a first support frame 1, a second support frame 3, and a third support frame 4, as shown below. Figure 1 The first support frame 1 is equipped with a sliding component 2, the second support frame 3 is connected to the first support frame 1 via the sliding component 2, and the third support frame 4 is slidably connected to one side of the second support frame 3, as shown below. Figure 2 The bottom of the third support frame 4 is provided with a rotatable support base 9; the bottom of the support base 9 is provided with multiple gripper cylinders 11, and the output end of each of the multiple gripper cylinders 11 is provided with two clamping plates 24, which cooperate with each other; the clamping plates 24 are used to clamp and remove the waste generated during the production of cable ties.

[0031] Specifically, the second support frame 3 has two drive wheels 5 connected to its front side, positioned vertically. The third support frame 4 has a support block 7 connected to its front side. A belt 6 is connected to the top and bottom of the support block 7, and the belt 6 is fitted onto the two drive wheels 5. A rotating assembly 8 is located at the bottom of the third support frame 4. A support base 9 is connected to the bottom of the third support frame 4 via the rotating assembly 8. A stop block 10 is connected to the top of the support base 9, located on one side of the third support frame 4. The stop block 10 cooperates with the third support frame 4 and limits the movement of the support base 9. Figure 3 Each gripper cylinder 11 has a sliding seat 26 connected to its top. Multiple gripper cylinders 11 are slidably connected to the bottom of the support base 9 via the sliding seats 26. Limiting plates 12 are provided on both sides of the support base 9. Two limiting plates 12 cooperate with each other. Adjusting plates 15 are connected to both sides of each limiting plate 12. Threaded rods 16 are threaded onto each of the two adjusting plates 15. The tops of the two threaded rods 16 are rotatably connected to the bottom of the support base 9. Rotating disks 17 are connected to the bottoms of the two threaded rods 16. Stop rods 14 are connected to both sides of each gripper cylinder 11. Multiple limiting grooves 13 are provided on each of the two limiting plates 12. These grooves 13 are inclined towards the center of the support base 9. Multiple stop rods 14 are slidably connected within the multiple limiting grooves 13. Figure 4 and Figure 5The bottom of the gripper cylinder 11 is connected to two fixed plates 18, and a push plate 19 is provided between the two fixed plates 18. The push plate 19 is connected to the output end of the gripper cylinder 11. The two sides of the push plate 19 are respectively rotatably connected to the first push frame 20, and the other side of each of the two first push frames 20 is rotatably connected to the second push frame 21. The two fixed plates 18 are rotatably connected to the two pins 22, and the other side of each of the two second push frames 21 is connected to the two pins 22. The bottom of each of the two pins 22 is connected to the third push frame 23. The two clamping plates 24 are respectively connected to the bottom of the two third push frames 23. The opposite sides of the two clamping plates 24 are provided with anti-slip textures 25. By adopting the above technical solution, the sliding seat 26, the limiting plate 12, the limiting groove 13 and the stop bar 14 facilitate the adjustment of the distance between multiple gripper cylinders 11 according to different usage needs, thereby adjusting the distance between the bottom clamping plates 24, better clamping the waste material, and making it easier to remove the waste material. The threaded rod 16 and the rotating disk 17 facilitate the operation and adjustment by the operator. The gripper cylinders 11, the first push frame 20, the pin 22 and the third push frame 23 facilitate the movement of the two clamping plates 24 closer or further apart, thereby clamping and removing the waste material, and then putting it down after removal, so as to facilitate continuous use. The anti-slip texture 25 provides anti-slip operation when clamping the waste material.

[0032] The working principle of this utility model is as follows: During use, after the cable tie is manufactured by the injection molding machine, the second support frame 3 and the third support frame 4 are moved laterally via the sliding component 2, thereby moving the lower clamping plate 24 above the injection molding machine. The two drive wheels 5 rotate synchronously, driving the support block 7 to lower, which in turn causes the third support frame 4 to slide down on the second support frame 3, thus lowering the bottom clamping plate 24. The clamping plate 24 then extends into the injection molding machine's space above it. After reaching the desired depth, the rotating component 8 rotates the bottom clamping plate 24 towards the cable tie. The bottom support base 9 rotates 90 degrees towards the cable tie based on the rotating component 8, aligning the clamping plate 24 with the cable tie. After alignment, the clamping plate 24 is then lowered again via the sliding component 2. The moving component 2 moves the second support frame 3, causing the clamping plate 24 at the bottom of the third support frame 4 to move closer to the cable tie. During this process, waste material left over from the production of multiple cable ties enters between the two clamping plates 24. After the waste material enters between the clamping plates 24, the second support frame 3 stops moving. At this time, the gripper cylinder 11 operates, extending its output end and pushing the push plate 19 connected to the output end towards the waste material. This drives the two first push frames 20 to move, which in turn drives the two second push frames 21 to rotate the pins 22 in opposite directions. The two first push frames 20 rotate and engage on the push plate 19. When the two pins 22 rotate, they drive the bottom third push frame 23 to rotate synchronously, thereby driving the bottom of the two third push frames 23 to rotate. The clamping plates 24 are brought close together to clamp the waste material. Anti-slip textures 25 on opposite sides of the clamping plates 24 prevent slippage during clamping. After clamping, the waste material is cut by the cutting equipment on the injection molding machine, separating the finished cable tie from the waste material. After separation, the sliding assembly 2 drives the second support frame 3 to move in the opposite direction on the first support frame 1, further separating the waste material from the cable tie. After separation, the two drive wheels 5 rotate in opposite directions, driving the belt 6 to reverse transmission, causing the third support frame 4 to slide and rise on one side of the second support frame 3, thereby raising the clamping plates 24 and lifting the clamped waste material at the bottom out of the injection molding machine. After removal, the sliding assembly... 2. The second support frame 3 slides again on the first support frame 1, causing the clamping plate 24 to move from the top of the injection molding machine to one side. After moving, the rotating assembly 8 drives the support seat 9 to rotate 90 degrees in the opposite direction at the bottom of the third support frame 4, making the support seat 9 perpendicular to the third support frame 4. The stop block 10 limits the rotation angle of the support seat 9. After rotation, the output end of the gripper cylinder 11 shortens, pulling the first push frame 20 closer to the gripper cylinder 11. The two first push frames 20 pull the two second push frames 21, causing the pin shaft 22 to rotate in the opposite direction. The pin shaft 22 drives the two third push frames 23 at the bottom to rotate in the opposite direction, thereby causing the two clamping plates 24 at the bottom to move away from each other.This allows the clamped waste material to fall between the clamping plates 24, facilitating unified processing by staff and enabling continuous removal operations. Depending on usage needs, staff can rotate the two rotating discs 17, causing the two adjusting plates 15 to rise or fall on the threaded rod 16. This, in turn, causes the two limiting plates 12 to rise or fall synchronously. Through the limiting groove 13, the stop rod 14 moves within the limiting groove 13, thereby adjusting the distance between the multiple clamping cylinders 11 via the sliding seat 26 at the top of the clamping cylinder 11. This allows for adjustments based on usage requirements and facilitates operation.

[0033] This specific embodiment is merely an explanation of the present utility model and is not intended to limit the present utility model. After reading this specification, those skilled in the art can make modifications to this embodiment without contributing any inventive step, but as long as they are within the scope of the claims of the present utility model, they are protected by patent law.

Claims

1. A clamp for gripping cable tie material, comprising a first support frame (1), a second support frame (3), and a third support frame (4), characterized in that: The first support frame (1) is provided with a sliding component (2), the second support frame (3) is connected to the first support frame (1) through the sliding component (2), the third support frame (4) is slidably connected to one side of the second support frame (3), and the bottom of the third support frame (4) is provided with a rotatable support base (9); The bottom of the support base (9) is provided with a plurality of gripper cylinders (11), and the output end of each of the plurality of gripper cylinders (11) is provided with two clamping plates (24), which cooperate with each other. Clamping plate (24) is used to clamp and remove waste generated during cable tie production.

2. The clamp for gripping cable tie materials according to claim 1, characterized in that: The front of the second support frame (3) is connected to two drive wheels (5), which are positioned vertically. The front of the third support frame (4) is connected to a support block (7), and the top and bottom of the support block (7) are connected to a belt (6), which is sleeved on the two drive wheels (5).

3. A clamp for gripping cable tie materials according to claim 1, characterized in that: The bottom of the third support frame (4) is provided with a rotating component (8). The support seat (9) is connected to the bottom of the third support frame (4) through the rotating component (8). The top of the support seat (9) is connected with a stop block (10). The stop block (10) is located on one side of the third support frame (4). The stop block (10) cooperates with the third support frame (4) and limits the support seat (9). The top of each gripper cylinder (11) is connected with a sliding seat (26). Multiple gripper cylinders (11) are slidably connected to the bottom of the support seat (9) through the sliding seat (26).

4. A clamp for gripping cable tie materials according to claim 1, characterized in that: Limiting plates (12) are provided on both sides of the support base (9). The two limiting plates (12) cooperate with each other. Adjusting plates (15) are connected to both sides of the two limiting plates (12). Threaded rods (16) are threadedly connected to both adjusting plates (15). The top ends of the two threaded rods (16) are rotatably connected to the bottom of the support base (9). Rotating disks (17) are connected to the bottom ends of the two threaded rods (16).

5. A clamp for gripping cable tie materials according to claim 4, characterized in that: Both sides of the multiple gripper cylinders (11) are connected to a stop bar (14), and multiple limit grooves (13) are opened on the two limit plates (12). The multiple limit grooves (13) are inclined toward the center of the support base (9), and the multiple stop bars (14) are slidably connected in the multiple limit grooves (13).

6. A clamp for gripping cable tie materials according to claim 1, characterized in that: The gripper cylinder (11) has two fixed plates (18) connected to its bottom. A push plate (19) is provided between the two fixed plates (18). The push plate (19) is connected to the output end of the gripper cylinder (11). A first push frame (20) is rotatably connected to both sides of the push plate (19). A second push frame (21) is rotatably connected to the other side of each of the two first push frames (20). Two pins (22) are rotatably connected between the two fixed plates (18). The other side of each of the two second push frames (21) is connected to the two pins (22). A third push frame (23) is connected to the bottom of each of the two pins (22). Two clamping plates (24) are connected to the bottom of each of the two third push frames (23). Anti-slip textures (25) are provided on the opposite sides of the two clamping plates (24).