A transfer device for paper rope production

By using a combination of clamping plates and rubber pads in the transfer device for paper rope production, the problem of paper rope rollers sliding or rolling during transfer is solved, achieving stable clamping and positioning of the paper rope rollers and improving the safety and efficiency of the transfer process.

CN224297230UActive Publication Date: 2026-05-29TIANJIN SANMEI ENVIRONMENTAL PROTECTION TECHNOLOGY CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
TIANJIN SANMEI ENVIRONMENTAL PROTECTION TECHNOLOGY CO LTD
Filing Date
2025-07-29
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

Existing paper rope production transfer devices lack effective positioning of the paper rope rollers, which may cause rolling or slipping during transfer, increasing the risk of damage and affecting the stability and safety of the equipment.

Method used

The paper rope roller is clamped and fixed by a combination of clamping plates and rubber pads. The friction and cushioning properties of the rubber pads are used to automatically adjust the clamping through the cooperation of electric telescopic rods and threaded blocks, so as to prevent the paper rope roller from sliding or rolling during transportation.

Benefits of technology

It effectively prevents paper rope rollers from shifting or rolling during transportation due to vibration, starting, or braking, improving the safety and efficiency of the transfer process, reducing the risk of equipment damage, and adapting to the clamping needs of paper rope rollers of different specifications.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a paper rope production transfers device relates to transfer device technical field, including bearing seat and the brake trolley that rotates setting in its bottom four corners, bearing seat one side fixedly connected with the push rod of cooperation brake trolley movement, bearing seat top center fixedly connected with the placing table, the equal interval of placing table top is provided with a plurality of placing grooves, a plurality of placing groove inside bears paper rope roll, bearing seat top is equipped with the clamping piece of paper rope roll front and back surface fixed, the clamping piece includes setting the clamping plate of bearing seat front and back surface. The utility model has the advantages of automatic flexible adjustment, to paper rope roll clamping effect is good, through clamping plate cooperation rubber pad, to paper rope roll front and back end face carries out clamping fixed, prevents its displacement because of vibration, starting or braking in the transfer process.
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Description

Technical Field

[0001] This utility model relates to the field of transfer device technology, specifically a transfer device for paper rope production. Background Technology

[0002] Paper rope is a rope-like material made by twisting, braiding, or weaving paper (such as kraft paper, recycled paper, etc.). It is widely used in packaging, handicrafts, agriculture, construction and other fields. Paper rope production transfer device is a device used to transport and transfer raw materials or finished products during the paper rope manufacturing process. Such devices are usually used to improve production efficiency, reduce manual labor intensity, and ensure the continuity and stability of the production process.

[0003] In the production process, paper ropes are usually wound into rollers for transfer. Most of the wound paper ropes are piled up on the transfer trolley for transfer. The existing transfer device lacks clamping parts to position the paper rope rollers. During the transfer process, especially when starting, stopping or turning, the paper rope rollers without fixing devices may roll or slide. This may not only cause the paper rope rollers to collide with each other and cause damage, but may also cause the entire transfer trolley to lose balance and increase the risk of tipping over. Utility Model Content

[0004] To address the problems mentioned in the background art, the purpose of this utility model is to provide a transfer device for paper rope production, which has the advantages of automatic and flexible adjustment and good clamping effect on paper rope rollers. By using a clamping plate in conjunction with a rubber pad, the front and rear end faces of the paper rope roller are clamped and fixed to prevent displacement due to vibration, starting or braking during the transfer process.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a transfer device for paper rope production, comprising a support base and brake casters rotatably disposed at the four corners of its bottom, wherein a push rod is fixedly connected to one side of the support base to cooperate with the movement of the brake casters.

[0006] A placement platform is fixedly connected to the top center of the support base. Several placement slots are equidistantly opened on the top of the placement platform. Paper rope rollers are carried inside the placement slots. The top of the support base is provided with clamping members that fix the front and rear surfaces of the paper rope rollers. The clamping members include clamping plates disposed on the front and rear surfaces of the support base. Two clamping plates are arranged parallel to the support base. Rubber pads are fixedly connected to the sides of the two clamping plates that are close to each other. The sides of the two rubber pads that are close to each other are slidably connected to the front and rear ends of the paper rope rollers, respectively.

[0007] As a preferred embodiment of this utility model, a controller for controlling the entire device is fixedly connected to one side of the push rod, and L-shaped rods are fixedly connected to the center of the two clamping plates on opposite sides. Threaded blocks are provided on both the front and rear surfaces of the bearing seat.

[0008] As a preferred embodiment of this invention, the two threaded blocks are slidably connected to the front and rear surfaces of the bearing seat, and the two threaded blocks move from the front and rear sides of the bearing seat toward its center.

[0009] As a preferred embodiment of this utility model, each of the two threaded blocks is fixedly connected to a vertically arranged electric telescopic rod at its top, and the top telescopic ends of the two electric telescopic rods are respectively fixedly connected to the bottom of the two L-shaped rods.

[0010] As a preferred embodiment of this utility model, a rectangular shell is fixedly connected to the center of the bottom of the bearing seat, and a horizontally placed bidirectional threaded rod is rotatably connected to the center of the inside of the rectangular shell. The bidirectional threaded rod is perpendicular to the bearing seat, and an L-shaped plate is provided below the center of the front and rear surfaces of the bearing seat.

[0011] In a preferred embodiment of this invention, the two L-shaped plates are fixedly connected to the front and rear surfaces of the rectangular shell on one side close to each other, and a bidirectional threaded rod is rotatably connected between the two L-shaped plates and the front and rear surfaces of the rectangular shell, and the front and rear surfaces of the bidirectional threaded rod are threadedly connected to the inner walls of the two threaded blocks respectively.

[0012] As a preferred embodiment of this utility model, a guide rod is fixedly connected between the front and rear surfaces of the rectangular shell and the side of the L-shaped plate that is close to each other, the threaded block is slidably connected to the guide rod, and a worm gear is fixedly sleeved on the bidirectional threaded rod at the center of the inner surface of the rectangular shell.

[0013] In a preferred embodiment of this invention, a worm is meshed below the worm gear, the worm is arranged parallel to the bearing seat, a power motor is fixedly connected to one side of the inner wall of the rectangular shell, and the output shaft of the power motor is fixedly connected to one end of the worm.

[0014] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0015] 1. This utility model uses a push rod to push the entire transfer device to the vicinity of the paper rope winding equipment. The four corners of the bottom of the support seat are equipped with brake casters for easy and flexible movement. After reaching the designated position, the brake casters prevent the device from sliding and place multiple paper rope rollers into the placement slots on the top of the placement platform in sequence. The paper rope rollers are placed vertically in the slots to avoid rolling or squeezing each other.

[0016] 2. This utility model starts the power motor through the controller, and its output shaft drives the worm to rotate. The worm meshes with the worm wheel, transmitting the rotational power of the power motor to the worm wheel. The worm wheel is fixedly sleeved on the double-threaded rod and rotates with the worm. When the double-threaded rod rotates, the two threaded blocks move symmetrically towards the center (i.e., from the front and rear sides of the bearing seat towards the center). The threaded blocks are slidably connected to the guide rod to ensure that the movement is smooth and without deviation. Each threaded block is connected to an electric telescopic rod at the top. As the threaded block moves towards the center, the electric telescopic rod drives the L-shaped rod to move inward, and finally drives the clamping plate to move towards the paper rope roller. The clamping plate is provided with a rubber pad on the side near the paper rope roller. The rubber pad has good friction and cushioning performance. When the clamping plate moves into place, the rubber pad is pressed against the front and rear end faces of the paper rope roller to achieve clamping and fixation, effectively preventing the paper rope roller from sliding, rolling or colliding during transportation. Attached Figure Description

[0017] Figure 1 This is a three-dimensional drawing of the present invention;

[0018] Figure 2 This is a schematic diagram of the structure of this utility model;

[0019] Figure 3 This is a schematic diagram of the clamping component structure of this utility model.

[0020] In the diagram: 1. Support seat; 2. Brake caster; 3. Push rod; 4. Controller; 5. Placement platform; 6. Placement slot; 7. Paper rope roller; 8. Clamping plate; 9. Rubber pad; 10. L-shaped rod; 11. Electric telescopic rod; 12. Threaded block; 13. Rectangular shell; 14. L-shaped plate; 15. Two-way threaded rod; 16. Guide rod; 17. Worm gear; 18. Worm; 19. Power motor. Detailed Implementation

[0021] To make the above-mentioned objectives, features and advantages of this utility model more apparent and understandable, the specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings.

[0022] Many specific details are set forth in the following description in order to provide a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Those skilled in the art can make similar extensions without departing from the spirit of the present invention. Therefore, the present invention is not limited to the specific embodiments disclosed below.

[0023] Secondly, the term "an embodiment" or "embodiment" as used herein refers to a specific feature, structure, or characteristic that may be included in at least one implementation of the present invention. The phrase "in one embodiment" appearing in different places in this specification does not necessarily refer to the same embodiment, nor is it a single or selective embodiment that excludes other embodiments.

[0024] Secondly, this utility model is described in detail with reference to the schematic diagrams. When describing the embodiments of this utility model, for ease of explanation, the cross-sectional views illustrating the device structure may be partially enlarged, not adhering to the usual scale. Furthermore, the schematic diagrams are merely examples and should not limit the scope of protection of this utility model. In addition, actual manufacturing should include the three-dimensional spatial dimensions of length, width, and depth.

[0025] Example 1

[0026] Reference Figure 1-3 The first embodiment of this utility model provides a transfer device for paper rope production, including a support base 1 and brake casters 2 rotatably disposed at the four corners of its bottom. A push rod 3 is fixedly connected to one side of the support base 1 to cooperate with the movement of the brake casters 2.

[0027] Furthermore, a placement platform 5 is fixedly connected to the center of the top of the support base 1. Several placement slots 6 are equally spaced on the top of the placement platform 5. Paper rope rollers 7 are placed inside the several placement slots 6. The top of the support base 1 is provided with clamping components that fix the front and rear surfaces of the paper rope rollers 7. The clamping components include clamping plates 8 set on the front and rear surfaces of the support base 1. The two clamping plates 8 are set parallel to the support base 1. Rubber pads 9 are fixedly connected to the side of the two clamping plates 8 that are close to each other. The side of the two rubber pads 9 that are close to each other is slidably connected to the front and rear ends of the paper rope rollers 7 respectively.

[0028] Specifically, the transfer device includes a support base 1, with brake casters 2 rotatably mounted at the four corners of the bottom of the support base 1 to facilitate flexible movement of the device within the workshop and to achieve stable stopping through braking when needed. A push rod 3 is fixedly connected to one side of the support base 1, allowing the operator to push the device to move. A placement platform 5 is fixedly connected to the center of the top of the support base 1. The top of the placement platform 5 has several equally spaced placement slots 6 for supporting the paper rope rollers 7. To further improve the stability of the paper rope rollers 7 during the transfer process, the top of the support base 1 is also equipped with clamping components for fixing the front and rear surfaces of the paper rope rollers 7. The component includes two clamping plates 8 respectively disposed on the front and rear sides of the support base 1. The two clamping plates 8 are parallel to the support base 1, and rubber pads 9 are fixedly connected to their opposite sides. The side of the rubber pads 9 facing the paper rope roller 7 slides in contact with the front and rear end faces of the paper rope roller 7, providing clamping force while also buffering and anti-slip, avoiding damage to the surface of the paper rope roller 7. Through the cooperation of the clamping plates 8 and the rubber pads 9, the paper rope roller 7 can be effectively clamped and positioned during the transfer process, preventing it from shifting or rolling due to vibration, starting or braking during transportation, thereby improving the safety and efficiency of the overall transfer process.

[0029] Furthermore, after the paper rope roller 7 is placed in the placement groove 6, the operator can push the clamping plate 8 inward through the controller 4, so that the rubber pad 9 is pressed against the front and rear end faces of the paper rope roller 7. The rubber pad 9 has good elasticity and friction coefficient, which can provide sufficient clamping force without damaging the paper rope roller 7. The cooperation between the clamping plate 8 and the rubber pad 9 can effectively prevent the paper rope roller 7 from shifting or rolling during transportation due to vibration, starting, braking or turning.

[0030] Example 2

[0031] In the second embodiment of this utility model, a controller 4 for controlling the entire device is fixedly connected to one side of the push rod 3, and L-shaped rods 10 are fixedly connected to the center of the two clamping plates 8 on opposite sides. Threaded blocks 12 are provided on the front and rear surfaces of the bearing seat 1.

[0032] Furthermore, the two threaded blocks 12 are slidably connected to the front and rear surfaces of the bearing seat 1, respectively, and the two threaded blocks 12 move from the front and rear sides of the bearing seat 1 towards its center.

[0033] Furthermore, each of the two threaded blocks 12 is fixedly connected to a vertically arranged electric telescopic rod 11 at its top, and the top telescopic ends of the two electric telescopic rods 11 are fixedly connected to the bottom of the two L-shaped rods 10 respectively.

[0034] Specifically, a controller 4 is fixedly connected to one side of the push rod 3 to control the operation of the entire transfer device, including locking the brake caster 2 and the movement of the electric telescopic rod 11, so as to achieve centralized control and improve operating efficiency. Two clamping plates 8 are fixedly connected to L-shaped rods 10 at the center of their opposite sides. The L-shaped rods 10 are vertically arranged. Threaded blocks 12 are provided on the front and rear surfaces of the bearing seat 1. The two threaded blocks 12 are slidably connected to the front and rear surfaces of the bearing seat 1, and their movement path is from the front and rear sides of the bearing seat 1 towards its center. The top of the two threaded blocks 12 is fixedly connected to the vertically arranged electric telescopic rod 11. The telescopic ends of the electric telescopic rod 11 are fixedly connected to the bottom of the two L-shaped rods 10, respectively. Through the telescopic movement of the electric telescopic rod 11, the L-shaped rods 10 can be moved up and down.

[0035] Furthermore, the two threaded blocks 12 can move symmetrically along their axial direction (i.e., move closer to the center from the front and rear sides of the bearing seat 1 or move away from it in the opposite direction). The threaded blocks 12 drive the electric telescopic rod 11 and the L-shaped rod 10 to move, thereby driving the clamping plate 8 to clamp inward or loosen outward. The electric telescopic rod 11 drives the L-shaped rod 10, the clamping plate 8 and the rubber pad 9 to adjust their height, so that the clamping plate 8 and the rubber pad 9 can adapt to paper rope rollers 7 of different heights.

[0036] Example 3

[0037] In the third embodiment of this utility model, a rectangular shell 13 is fixedly connected to the center of the bottom of the bearing seat 1. A horizontally placed bidirectional threaded rod 15 is rotatably connected to the center of the rectangular shell 13. The bidirectional threaded rod 15 is perpendicular to the bearing seat 1. An L-shaped plate 14 is provided below the center of the front and rear surfaces of the bearing seat 1.

[0038] Furthermore, the two L-shaped plates 14 are fixedly connected to the front and rear surfaces of the rectangular shell 13 on one side of each other. Both L-shaped plates 14 and the front and rear surfaces of the rectangular shell 13 are rotatably connected with bidirectional threaded rods 15. The front and rear surfaces of the bidirectional threaded rods 15 are threadedly connected to the inner walls of the two threaded blocks 12 respectively.

[0039] Furthermore, a guide rod 16 is fixedly connected between the front and rear surfaces of the rectangular shell 13 and the L-shaped plate 14 on the side closest to each other. The threaded block 12 is slidably connected to the guide rod 16. A worm gear 17 is fixedly sleeved on the center of the inner surface of the rectangular shell 13.

[0040] Furthermore, a worm 18 is meshed below the worm gear 17, and the worm 18 is arranged parallel to the bearing seat 1. A power motor 19 is fixedly connected to one side of the inner wall of the rectangular shell 13, and the output shaft of the power motor 19 is fixedly connected to one end of the worm 18.

[0041] Specifically, a horizontally placed bidirectional threaded rod 15 is rotatably connected at the center of the rectangular shell 13. The bidirectional threaded rod 15 is perpendicular to the bearing seat 1 and serves as the core transmission element for driving the movement of the threaded blocks 12. L-shaped plates 14 are respectively provided below the center of the front and rear surfaces of the bearing seat 1. The sides of the two L-shaped plates 14 that are close to each other are fixedly connected to the front and rear surfaces of the rectangular shell 13 to support and fix the bidirectional threaded rod 15. The front and rear ends of the bidirectional threaded rod 15 are threadedly connected to the inner walls of the two threaded blocks 12, so that when the bidirectional threaded rod 15 rotates, the two threaded blocks 12 can move symmetrically along its axial direction (i.e., move closer to the center from the front and rear sides of the bearing seat 1 or move away from it in the opposite direction). To ensure the stability and guiding accuracy of the threaded blocks 12 during movement, a guide rod 16 is fixedly connected between the front and rear surfaces of the rectangular shell 13 and the sides of the L-shaped plates 14 that are close to each other. The threaded blocks 12 and the guide rod 16... The sliding connection between the two ensures that there is no deviation or shaking during the movement. Inside the rectangular shell 13, a worm gear 17 is fixedly sleeved on the outer circumferential surface of the bidirectional threaded rod 15 at its center. A worm 18 is meshed below the worm gear 17. The worm 18 is parallel to the bearing seat 1. The power of the worm 18 comes from the power motor 19 fixedly installed on one side of the inner wall of the rectangular shell 13. The output shaft of the power motor 19 is fixedly connected to one end of the worm 18. The power motor 19 drives the worm 18 to rotate, which in turn drives the worm gear 17 and the bidirectional threaded rod 15 to rotate synchronously. The threads on both sides of the bidirectional threaded rod 15 are opposite in direction and are threadedly connected to two threaded blocks 12 respectively. Under the guidance of the guide rod 16, the threaded blocks 12 move symmetrically along the axis of the bidirectional threaded rod 15. The threaded blocks 12 drive the electric telescopic rod 11 and the L-shaped rod 10 to move, thereby driving the clamping plate 8 to clamp inward or loosen outward.

[0042] Furthermore, the controller 4 starts the power motor 19, whose output shaft drives the worm gear 18 to rotate. The worm wheel 17 is fixedly sleeved on the bidirectional threaded rod 15 and rotates together with the worm gear 18. The bidirectional threaded rod 15 is placed horizontally inside the rectangular shell 13, with the threads on both sides in opposite directions. When the bidirectional threaded rod 15 rotates, the two threaded blocks 12 move symmetrically toward the center (i.e., from the front and rear sides of the bearing seat 1 toward the center). The threaded blocks 12 are slidably connected to the guide rod 16 to ensure that the movement is smooth and without deviation. Each threaded block 12 is connected to an electric telescopic rod 11 at the top. As the threaded blocks 12 move toward the center, they drive the clamping plate 8 to move toward the paper rope roller 7. The clamping plate 8 is provided with a rubber pad 9 on the side near the paper rope roller 7. The rubber pad 9 has good friction and cushioning performance. When the clamping plate 8 moves into place, the rubber pad 9 is pressed against the front and rear end faces of the paper rope roller 7 to achieve clamping and fixation, effectively preventing the paper rope roller 7 from sliding, rolling or colliding during transportation.

[0043] Working principle:

[0044] The operator pushes the entire transfer device to the vicinity of the paper rope winding equipment using push rod 3. Braked casters 2 are located at the four corners of the bottom of the support seat 1 for easy movement. Once at the designated position, the brake casters 2 prevent the device from sliding. Multiple paper rope rollers 7 are then sequentially placed into the placement slots 6 on top of the placement platform 5. The paper rope rollers 7 are placed vertically in the slots to prevent rolling or mutual compression. The operator starts the power motor 19 via controller 4. Its output shaft drives the worm gear 18 to rotate. The worm gear 18 meshes with the worm wheel 17, transmitting the rotational power of the power motor 19 to the worm wheel 17. The worm wheel 17 is fixedly sleeved on the double-threaded rod 15 and rotates together with the worm gear 18. When the double-threaded rod 15 rotates, the two threads... The threaded blocks 12 move symmetrically toward the center (i.e., from the front and rear sides of the bearing seat 1 toward the center). The threaded blocks 12 are slidably connected to the guide rods 16 to ensure that the movement is smooth and without deviation. Each threaded block 12 is connected to an electric telescopic rod 11 at the top. As the threaded blocks 12 move toward the center, the electric telescopic rods 11 drive the L-shaped rods 10 to move inward, and finally drive the clamping plate 8 to move toward the paper rope roller 7. The clamping plate 8 is provided with a rubber pad 9 on the side near the paper rope roller 7. The rubber pad 9 has good friction and cushioning performance. When the clamping plate 8 moves into place, the rubber pad 9 is pressed against the front and rear end faces of the paper rope roller 7 to achieve clamping and fixation, effectively preventing the paper rope roller 7 from sliding, rolling or colliding during transportation.

[0045] In summary: the clamping plate 8, in conjunction with the rubber pad 9, clamps and fixes the front and rear ends of the paper rope roller 7, preventing displacement due to vibration, starting, or braking during transport. The rubber pad 9 has good cushioning and friction coefficient, and does not damage the surface of the paper rope roller 7 during clamping, thus improving the product qualification rate. The clamping height can be adjusted by the electric telescopic rod 11 to accommodate paper rope rollers 7 of different specifications, thereby improving the versatility and adaptability of the equipment.

[0046] The paper rope production transfer device used in this application can be additionally equipped with protective measures of common knowledge in the field under different usage environments, including but not limited to the following methods, such as protective covers for equipment protection, dustproof nets for equipment dust prevention, and sealing components or waterproof coatings for equipment waterproofing, which are commonly used by those skilled in the art.

[0047] It should be noted that (motor, screw, worm gear, electric telescopic rod) are existing devices or equipment, or devices or equipment that can be implemented by existing technology. The power supply, connection method, usage method, power source, fixing method, installation method, control method, etc. of the equipment, as well as the materials of each accessory and the selection of various parameters are common knowledge to those skilled in the art, and therefore will not be described in detail in this application document.

[0048] It is important to note that the constructions and arrangements of this application shown in several different exemplary embodiments are merely illustrative. Although only a few embodiments are described in detail in this disclosure, those who consult this disclosure will readily understand that many modifications are possible (e.g., changes in the size, dimensions, structure, shape and proportion of various elements, as well as parameter values ​​(e.g., temperature, pressure, etc.), mounting arrangements, use of materials, color, orientation, etc.) without substantially departing from the novel teachings and advantages of the subject matter described in this application). For example, an element shown as integrally formed may be composed of multiple parts or elements, the position of elements may be inverted or otherwise altered, and the nature or number or position of discrete elements may be changed or altered. Therefore, all such modifications are intended to be included within the scope of this utility model. The order or sequence of any process or method steps may be changed or reordered according to alternative embodiments. In the claims, any "device plus function" clause is intended to cover the structure described herein that performs the function, and not only structural equivalents but also equivalent structures. Without departing from the scope of this invention, other substitutions, modifications, alterations, and omissions may be made in the design, operation, and arrangement of the exemplary embodiments. Therefore, this invention is not limited to the specific embodiments, but extends to various modifications that still fall within the scope of the appended claims.

[0049] Furthermore, in order to provide a concise description of exemplary embodiments, not all features of actual embodiments (i.e., those features that are not relevant to the best mode of carrying out the present invention as currently considered, or those features that are not relevant to implementing the present invention) may be omitted.

[0050] It should be understood that numerous specific implementation decisions can be made during the development of any practical implementation, such as in any engineering or design project. Such development efforts may be complex and time-consuming, but for those skilled in the art who benefit from this disclosure, the development effort will be a routine work of design, manufacturing, and production without requiring much experimentation.

[0051] It should be noted that the above embodiments are only used to illustrate the technical solution of this utility model and are not intended to limit it. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solution of this utility model without departing from the spirit and scope of the technical solution of this utility model, and all such modifications or substitutions should be covered within the scope of the claims of this utility model.

Claims

1. A transfer device for paper rope production, comprising a support base (1) and brake casters (2) rotatably disposed at the four corners of its bottom, wherein a push rod (3) is fixedly connected to one side of the support base (1) to move in coordination with the brake casters (2), characterized in that: A placement platform (5) is fixedly connected to the top center of the support (1). Several placement slots (6) are equidistantly opened on the top of the placement platform (5). Paper rope rollers (7) are carried inside the several placement slots (6). The top of the support (1) is provided with clamping members that fix the front and rear surfaces of the paper rope rollers (7). The clamping members include clamping plates (8) set on the front and rear surfaces of the support (1). The two clamping plates (8) are arranged parallel to the support (1). Rubber pads (9) are fixedly connected to the side of the two clamping plates (8) that are close to each other. The side of the two rubber pads (9) that are close to each other is slidably connected to the front and rear ends of the paper rope rollers (7).

2. The transfer device for paper rope production according to claim 1, characterized in that: The push rod (3) is fixedly connected to a controller (4) that controls the entire device. The two clamping plates (8) are fixedly connected to an L-shaped rod (10) at the center of the side away from each other. The front and rear surfaces of the bearing seat (1) are provided with threaded blocks (12).

3. The transfer device for paper rope production according to claim 2, characterized in that: The two threaded blocks (12) are slidably connected to the front and rear surfaces of the bearing seat (1), and the two threaded blocks (12) move from the front and rear sides of the bearing seat (1) toward its center.

4. The transfer device for paper rope production according to claim 3, characterized in that: The top of each of the two threaded blocks (12) is fixedly connected to a vertically arranged electric telescopic rod (11), and the top telescopic ends of the two electric telescopic rods (11) are fixedly connected to the bottom of the two L-shaped rods (10).

5. A transfer device for paper rope production according to claim 4, characterized in that: A rectangular shell (13) is fixedly connected to the bottom center of the bearing seat (1). A horizontally placed bidirectional threaded rod (15) is rotatably connected to the center of the inside of the rectangular shell (13). The bidirectional threaded rod (15) is perpendicular to the bearing seat (1). An L-shaped plate (14) is provided below the center of the front and rear surfaces of the bearing seat (1).

6. A transfer device for paper rope production according to claim 5, characterized in that: The two L-shaped plates (14) are fixedly connected to the front and rear surfaces of the rectangular shell (13) respectively on one side of each other. Both L-shaped plates (14) and the front and rear surfaces of the rectangular shell (13) are rotatably connected with bidirectional threaded rods (15). The front and rear surfaces of the bidirectional threaded rods (15) are threadedly connected to the inner walls of the two threaded blocks (12) respectively.

7. A transfer device for paper rope production according to claim 6, characterized in that: A guide rod (16) is fixedly connected between the front and rear surfaces of the rectangular shell (13) and the L-shaped plate (14) on the side closest to each other. The threaded block (12) is slidably connected to the guide rod (16). A worm gear (17) is fixedly sleeved on the center of the inner surface of the rectangular shell (13) of the bidirectional threaded rod (15).

8. A transfer device for paper rope production according to claim 7, characterized in that: A worm (18) is meshed below the worm wheel (17). The worm (18) is arranged parallel to the bearing seat (1). A power motor (19) is fixedly connected to one side of the inner wall of the rectangular shell (13). The output shaft of the power motor (19) is fixedly connected to one end of the worm (18).