Clamping mechanism for carrying adhesive tape roll

By designing a handcart with locking rollers, combined with a handling motor and electric push rod, the rotary storage and uniform clamping of tape rolls were achieved, solving the problems of inconvenient operation and wasted storage space during tape roll handling, and improving operational efficiency and storage utilization.

CN224277221UActive Publication Date: 2026-05-26JIAXING NINGTAO ELECTRONIC TECHNOLOGY CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIAXING NINGTAO ELECTRONIC TECHNOLOGY CO LTD
Filing Date
2025-04-09
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

During the handling of tape rolls, manual operation of heavy or bulky tape rolls can easily lead to fatigue. Furthermore, in existing technologies, tape rolls can only be placed in a fixed direction or position, resulting in inefficient use of storage space.

Method used

A clamping mechanism for handling tape rolls was designed, including a handcart with locking rollers, a handling component and a clamping component, a handling motor driving a rotating storage frame, and clamping rollers achieving rotational storage and uniform clamping of the tape rolls through an electric push rod and a multi-link structure.

Benefits of technology

It achieves efficient storage and uniform clamping of tape rolls, reduces the physical exertion of operators, improves the utilization rate of storage space, and avoids fatigue and waste of storage space caused by long-term manual operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a clamping mechanism for carrying an adhesive tape roll, which comprises a trolley with locking rollers, a carrying part is arranged on the outer surface of the trolley, the carrying part comprises a storage frame, and the storage frame rotates to store the adhesive tape roll. A telescopic rod of the electric push rod stretches out and draws back to drive a supporting frame to ascend and descend, the supporting frame is rotationally connected with a connecting block and a deflection block, the supporting block fixedly supports the deflection block through a supporting rod, meanwhile, deflection of the deflection block does not affect the other side, the connecting block is rotationally connected with a clamping block, and the clamping block is rotationally connected with the deflection block; the clamping blocks are driven to move and deflect at the same time, the clamping blocks are not affected, the clamping blocks are rotationally connected with the clamping rolling wheels, the clamping rolling wheels rotate transversely, more uniform clamping force can be provided when the adhesive tape rolls are clamped, and the adhesive tape roll clamping device has the effect of clamping and carrying the adhesive tape rolls.
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Description

Technical Field

[0001] This application relates to the field of tape rolls, and more particularly to a clamping mechanism for handling tape rolls. Background Technology

[0002] After production, the tape rolls are removed from the tape cutting machine and transported to the packaging room for packaging. In the workshop, finished tape rolls are generally transported using handling equipment. First, the finished tape rolls are removed and placed in the handling frame. Then, the handling frame is moved to the designated location by handcart or manual handling.

[0003] Chinese Patent CN209258905U discloses a clamping tool for handling tape rolls. The tool aims to provide a simple, easy-to-operate, space-efficient tape roll handling device that neatly stacks tape rolls and significantly reduces worker workload. It includes a main shaft with a slider mounted on it. A clamping assembly is fixed to the slider, and a safety assembly is provided on the clamping assembly. A handle is fixed to one end of the main shaft, and a detachable screw-on limit plate is screwed to the other end. A frustum-shaped positioning sleeve is fixed to the limit plate, gradually decreasing in size from top to bottom. A push plate that drives the slider to slide on the main shaft is mounted on the handle.

[0004] Regarding the aforementioned technologies, the inventors believe that manual clamping and adjustment of tape rolls during handling typically requires significant physical and mental effort from the operator, especially when handling heavy or bulky tape rolls. Prolonged manual operation can lead to fatigue or inconvenience. Furthermore, existing technologies can only place the tape roll in a fixed direction or position, resulting in inefficient use of storage space and wasted storage space. Therefore, the inventors propose a clamping mechanism for handling tape rolls to address the aforementioned problems. Utility Model Content

[0005] To address the technical problems of fatigue and inconvenience caused by prolonged manual operation when handling heavy or bulky tape rolls, and the fact that existing technologies can only place tape rolls in a fixed direction or position, resulting in inefficient use of storage space, this application provides a clamping mechanism for handling tape rolls.

[0006] This application provides a clamping mechanism for handling tape rolls, which adopts the following technical solution:

[0007] A clamping mechanism for handling tape rolls includes a trolley with locking rollers. The outer surface of the trolley is provided with a handling component, which includes a storage frame. The rotation of the storage frame stores the tape roll.

[0008] The outer surface of the trolley is provided with a clamping component, which includes clamping rollers. The relative movement of the clamping rollers clamps the tape roll.

[0009] Optionally, the transport component further includes a transport motor, which is fixedly installed on the inner wall of the handcart. A disc is fixedly installed on the output shaft of the transport motor, and the disc is rotatably connected to the upper surface of the handcart. The storage frame is placed in the groove of the disc.

[0010] Optionally, a bracket is fixedly mounted on the outer surface of the handcart, a drive motor is fixedly mounted on the outer surface of the bracket, and a rotating frame is fixedly mounted on the output shaft of the drive motor.

[0011] Optionally, a limiting groove is formed on the outer surface of the bracket, a slider is slidably sleeved on the outer surface of the bracket, a support rod is slidably inserted into the inner wall of the groove of the slider, a round rod is rotatably connected to the outer surface of the support rod, the round rod is located in the groove of the rotating frame, and the outer surface of the round rod is in rolling contact with the inner wall of the limiting groove.

[0012] Optionally, the clamping component further includes an electric push rod, which is fixedly installed on the lower surface of the support rod, and a support frame is fixedly installed at one end of the telescopic rod of the electric push rod.

[0013] Optionally, the outer surface of the support frame is rotatably connected to a connecting block and a deflection block, the outer surface of the deflection block is rotatably connected to a support block, and the support block is rotatably connected to the outer surface of the support rod.

[0014] Optionally, a clamping block is rotatably connected to the outer surface of the connecting block, the inner wall of the groove of the clamping block is rotatably connected to the outer surface of the deflection block, and the outer surface of the clamping block is rotatably connected to the clamping roller.

[0015] In summary, this application includes at least one of the following beneficial technical effects:

[0016] 1. By setting up a conveying component, tape rolls are stored. A conveying motor drives a rotating disc, and a storage frame is placed in the groove of the disc. The storage frame has four compartments of equal volume. After the tape rolls in the compartments are full, the conveying motor can be started to rotate the disc, causing the storage frame to rotate 90 degrees, making it easy to store the tape rolls in the next compartment. The drive motor drives the rotating frame to rotate, and the round rod is located in the groove of the rotating frame. When the rotating frame rotates, it can drive the round rod to move in the rolling contact limit groove, thereby driving the support rod rotatably connected to it to rise and fall in the sliding block. The support rod drives the slider to move on the sliding sleeve bracket. This solves the technical problem in the prior art that the tape rolls can only be placed in a fixed direction or position, resulting in inefficient use of storage space and wasted storage space.

[0017] 2. By setting up clamping components, the tape roll is clamped. The extension and retraction of the electric push rod drives the support frame to rise and fall. The support frame is rotatably connected to the connecting block and the deflection block. While fixing them, their rotation does not affect the support frame. The deflection block is rotatably connected to the support block. The support block is rotatably connected to the support rod. While the support block fixes and supports the deflection block through the support rod, its deflection does not affect the other. The connecting block is rotatably connected to the clamping block. The clamping block is rotatably connected to the deflection block. While driving the clamping block to move, its deflection does not affect the clamping block. The clamping block is rotatably connected to the clamping roller. The clamping roller rotates laterally, which can provide a more uniform clamping force when clamping the tape roll. This solves the technical problem that in the process of handling tape rolls, manual clamping and adjustment usually require the operator to exert a lot of physical strength and energy, especially when handling heavy or bulky tape rolls. Prolonged manual operation can lead to fatigue or inconvenience. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of a clamping mechanism for handling tape rolls proposed in this utility model;

[0019] Figure 2 This is a perspective view of the conveying motor structure of a clamping mechanism for conveying tape rolls proposed in this utility model;

[0020] Figure 3 This is a perspective view of the drive motor structure of a clamping mechanism for conveying tape rolls proposed in this utility model;

[0021] Figure 4 This is a perspective view of the electric push rod structure of a tape roll handling clamping mechanism proposed in this utility model.

[0022] In the diagram: 1. Handcart; 2. Transport motor; 21. Disc; 22. Storage box; 3. Bracket; 31. Drive motor; 32. Rotating frame; 4. Limiting groove; 41. Slider; 42. Support rod; 43. Round rod; 5. Electric push rod; 51. Support frame; 6. Connecting block; 61. Deflection block; 62. Support block; 7. Clamping block; 71. Clamping roller. Detailed Implementation

[0023] The following is in conjunction with the appendix Figures 1-4 This application will be described in further detail.

[0024] Reference Figures 1-4 A clamping mechanism for transporting tape rolls includes a trolley 1 with locking rollers. The outer surface of the trolley 1 is provided with a transport component, which includes a storage frame 22. The rotation of the storage frame 22 stores the tape roll.

[0025] To store the tape rolls to the next compartment, the transport component also includes a transport motor 2, which is fixedly installed on the inner wall of the trolley 1. The output shaft of the transport motor 2 is fixedly mounted with a disc 21, which is rotatably connected to the upper surface of the trolley 1. A storage frame 22 is placed in the groove of the disc 21 and is fixedly installed to the trolley 1 by the transport motor 2. The output shaft of the transport motor 2 is fixedly installed to the disc 21, driving the disc 21 to rotate. The disc 21 is rotatably connected to the trolley 1 to ensure the stability of its rotation. The storage frame 22 is placed in the groove of the disc 21 for easy access. The storage frame 22 has four compartments of equal volume. After the tape rolls in the compartments are full, the transport motor 2 can be started to rotate the disc 21, causing the storage frame 22 to rotate 90 degrees, making it easy to store the tape rolls to the next compartment.

[0026] In order to move the round rod 43 in the groove of the rotating frame 32 within the rolling contact limiting groove 4 by rotating the frame 32, a bracket 3 is fixedly installed on the outer surface of the handcart 1, a drive motor 31 is fixedly installed on the outer surface of the bracket 3, and the output shaft of the drive motor 31 is fixedly installed on the rotating frame 32. The handcart 1 is fixedly installed with the bracket 3, and the bracket 3 is fixedly installed with the drive motor 31, which supports the drive motor 31. The output shaft of the drive motor 31 is fixedly installed with the rotating frame 32, driving the rotating frame 32 to rotate, so that the round rod 43 in the groove of the rotating frame 32 can move within the rolling contact limiting groove 4 by rotating the frame 32.

[0027] To drive the support rod 42, which is rotatably connected to it, to rise and fall, a limiting groove 4 is provided on the outer surface of the bracket 3. A slider 41 is slidably sleeved on the outer surface of the bracket 3. The support rod 42 is slidably inserted into the inner wall of the groove of the slider 41. A round rod 43 is rotatably connected to the outer surface of the support rod 42. The round rod 43 is located in the groove of the rotating frame 32. The outer surface of the round rod 43 is in rolling contact with the inner wall of the limiting groove 4. The limiting groove 4 is provided on the bracket 3. The limiting groove 4 is inverted U-shaped. The supporting rod 42 can be driven to rise and fall through the limiting groove 4. The bracket 3 is slidably sleeved with the slider 41. The slider 41 is slidably inserted into the support rod 42. While fixing it, it does not affect its movement. The support rod 42 is rotatably connected to the round rod 43. While the round rod 43 drives the support rod 42 to rise and fall, its rotation does not affect the support rod 42. The round rod 43 is located in the groove of the rotating frame 32. When the rotating frame 32 rotates, it can drive the round rod 43 to move in the limiting groove 4 where it is in rolling contact, thereby driving the support rod 42, which is rotatably connected to it, to rise and fall.

[0028] By setting up a handling component, tape rolls are stored. The handling motor 2 drives the disc 21 to rotate, and the storage frame 22 is placed in the groove of the disc 21. The storage frame 22 is provided with four compartments of equal volume. After the tape rolls in the compartments are full, the handling motor 2 can be started to rotate the disc 21, causing the storage frame 22 to rotate 90 degrees, so that the tape rolls can be stored in the next compartment. The drive motor 31 drives the rotating frame 32 to rotate. The round rod 43 is located in the groove of the rotating frame 32. When the rotating frame 32 rotates, it can drive the round rod 43 to move in the rolling contact limiting groove 4, thereby driving the support rod 42 rotatably connected to it to rise and fall in the sliding block 41. The support rod 42 drives the slider 41 to move on the sliding sleeve bracket 3. This solves the technical problem in the prior art that the tape rolls can only be placed in a fixed direction or position, resulting in inefficient use of storage space and wasted storage space.

[0029] In order to clamp the tape roll, the outer surface of the trolley 1 is provided with a clamping component, which includes a clamping roller 71. The relative movement of the clamping roller 71 clamps the tape roll.

[0030] In order to drive the clamping block 7, which is rotatably connected to the support frame 51, to move up and down, the clamping component also includes an electric push rod 5. The electric push rod 5 is fixedly installed on the lower surface of the support rod 42. One end of the telescopic rod of the electric push rod 5 is fixedly installed with the support frame 51. The electric push rod 5 is fixedly installed with the support rod 42. The extension and retraction of the electric push rod 5 drives the support frame 51 to move up and down, so as to drive the clamping block 7, which is rotatably connected to the support frame 51, to move up and down.

[0031] To maintain good flexibility, the outer surface of the support frame 51 is rotatably connected to the connecting block 6 and the deflecting block 61, respectively. The outer surface of the deflecting block 61 is rotatably connected to the support block 62, which is rotatably connected to the outer surface of the support rod 42. The support frame 51 is rotatably connected to the connecting block 6 and the deflecting block 61, which fixes the support frame 51 and does not affect its rotation. The deflecting block 61 is rotatably connected to the support block 62, and the support block 62 is rotatably connected to the support rod 42. The support block 62 fixes and supports the deflecting block 61 through the support rod 42, and its deflection does not affect the other, so as to maintain good flexibility.

[0032] To provide a more uniform clamping force when clamping the tape roll, a clamping block 7 is rotatably connected to the outer surface of the connecting block 6. The inner wall of the groove of the clamping block 7 is rotatably connected to the outer surface of the deflection block 61. The outer surface of the clamping block 7 is rotatably connected to the clamping roller 71. Through the rotatable connection between the connecting block 6 and the clamping block 7, and the rotatable connection between the clamping block 7 and the deflection block 61, the clamping block 7 can be moved without being affected by its deflection. Through the rotatable connection between the clamping block 7 and the clamping roller 71, the rotation of the clamping roller 71 does not affect the clamping block 7. The rotation direction of the clamping roller 71 is lateral rotation, which can provide a more uniform clamping force when clamping the tape roll.

[0033] By setting up clamping components, the tape roll is clamped. The extension and retraction of the telescopic rod of the electric push rod 5 drives the support frame 51 to rise and fall. The support frame 51 is rotatably connected to the connecting block 6 and the deflection block 61. While fixing them, their rotation does not affect the support frame 51. The deflection block 61 is rotatably connected to the support block 62. The support block 62 is rotatably connected to the support rod 42. While the support block 62 fixes and supports the deflection block 61 through the support rod 42, its deflection does not affect the other. The connecting block 6 is rotatably connected to the clamping block 7. The clamping block 7 is rotatably connected to the deflection block 61. While driving the clamping block 7 to move, its deflection does not affect the clamping block 7. The clamping block 7 is rotatably connected to the clamping roller 71. The rotation direction of the clamping roller 71 is transverse rotation, which can provide a more uniform clamping force when clamping the tape roll. This solves the technical problem that in the process of handling tape rolls, manual clamping and adjustment usually require the operator to exert a lot of physical strength and energy, especially when handling tape rolls with heavy weight or large volume. Long-term manual operation will lead to fatigue or inconvenience.

[0034] Working principle: When it is necessary to clamp the tape roll, start the electric push rod 5, start the extension and retraction of the telescopic rod to drive the support frame 51 fixedly installed thereto to rise and fall, thereby driving the support block 62 rotatably connected to the support rod 42 to deflect, causing the deflection block 61 rotatably connected to the support block 62 and the support frame 51 to deflect. Since the clamping block 7 is rotatably connected to the deflection block 61 and the connecting block 6 respectively, the two cooperate with each other to drive the clamping block 7 to deflect. The clamping roller 71 rotatably connected on the clamping block 7 clamps the tape roll.

[0035] When it is necessary to store and transport the clamped tape roll, the drive motor 31 on the bracket 3 is started to drive the rotating frame 32 to rotate, so that the round rod 43 located in the groove of the rotating frame 32 moves up and down in the rolling contact limiting groove 4, thereby driving the support rod 42, which is rotatably connected to the round rod 43, to move up and down in the sliding block 41. The slider 41 then drives the support rod 42 to move on the sliding sleeve bracket 3, thereby placing the tape roll clamped by the clamping component into the storage frame 22. The storage frame 22 is provided with four compartments of equal volume. After the tape rolls in the compartments are full, the transport motor 2 can be started to rotate the disc 21, driving the storage frame 22 to rotate 90 degrees and store the tape rolls in the next compartment.

[0036] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A clamping mechanism for handling tape rolls, characterized in that: The device includes a handcart (1) with locking rollers, the outer surface of which is provided with a transport component, the transport component including a storage frame (22), the rotation of which stores the tape roll; The transport component also includes a transport motor (2), which is fixedly installed on the inner wall of the handcart (1). The output shaft of the transport motor (2) is fixedly installed with a disc (21), which is rotatably connected to the upper surface of the handcart (1). The storage frame (22) is placed in the groove of the disc (21). The outer surface of the handcart (1) is provided with a clamping component, which includes a clamping roller (71). The relative movement of the clamping roller (71) clamps the tape roll. The clamping component also includes an electric push rod (5), which is fixedly installed on the lower surface of the support rod (42), and a support frame (51) is fixedly installed at one end of the telescopic rod of the electric push rod (5).

2. The clamping mechanism for handling tape rolls according to claim 1, characterized in that: A bracket (3) is fixedly installed on the outer surface of the handcart (1), a drive motor (31) is fixedly installed on the outer surface of the bracket (3), and a rotating frame (32) is fixedly installed on the output shaft of the drive motor (31).

3. The clamping mechanism for handling tape rolls according to claim 2, characterized in that: The outer surface of the bracket (3) is provided with a limiting groove (4), and a slider (41) is slidably sleeved on the outer surface of the bracket (3). A support rod (42) is slidably inserted into the inner wall of the groove of the slider (41). A round rod (43) is rotatably connected to the outer surface of the support rod (42). The round rod (43) is located in the groove of the rotating frame (32), and the outer surface of the round rod (43) is in rolling contact with the inner wall of the limiting groove (4).

4. The clamping mechanism for handling tape rolls according to claim 1, characterized in that: The outer surface of the support frame (51) is rotatably connected to a connecting block (6) and a deflection block (61). The outer surface of the deflection block (61) is rotatably connected to a support block (62). The support block (62) is rotatably connected to the outer surface of the support rod (42).

5. The tape roll handling clamping mechanism according to claim 4, characterized in that: The outer surface of the connecting block (6) is rotatably connected to a clamping block (7), the inner wall of the groove of the clamping block (7) is rotatably connected to the outer surface of the deflection block (61), and the outer surface of the clamping block (7) is rotatably connected to the clamping roller (71).