Winding device for felt production

By designing an automated clamping and transport mechanism, the problem of low efficiency in traditional felt winding devices has been solved, realizing automated felt winding and transport, improving production efficiency and equipment stability, and reducing costs.

CN224147285UActive Publication Date: 2026-04-21DONGGUAN FENGXIN ELECTRONIC TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DONGGUAN FENGXIN ELECTRONIC TECH CO LTD
Filing Date
2025-04-29
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

In traditional felt production, the winding device is inefficient, manual operation is unstable, resulting in uneven winding, which poses safety hazards and increases production costs. Handcart transportation can easily damage or contaminate the felt.

Method used

Design a winding device that includes a clamping mechanism and a transport mechanism. Utilize components such as cylinders, push rods, pulleys, and clamping arms to achieve automatic winding and transport. Drive the lead screw to rotate via a motor, thereby causing the slide table to slide and realizing the automated transport of felt.

Benefits of technology

It improves the automation and production efficiency of felt production, reduces frictional resistance, extends equipment life, avoids damage from manual handling, and reduces production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the related technical field of felt, in particular to a winding device for felt production, which comprises a winding device main body, a clamping mechanism is arranged on the outer side surface of the winding device main body, and a conveying mechanism is arranged on the outer side surface of the winding device main body. According to the winding device for felt production, through cooperation of the clamping mechanism and the conveying mechanism, automatic winding and conveying of felt are achieved, the production efficiency is greatly improved, through the design of the clamping mechanism, stable rotation of a winding shaft is guaranteed, through a flexible adjusting mechanism, the clamping process is more convenient, and the production efficiency is improved. Meanwhile, friction resistance is reduced, the service life of equipment is prolonged, the conveying mechanism drives a lead screw to rotate through a motor and drives a sliding table to slide in a second sliding groove, automatic conveying of felt is achieved, tedious manual carrying and possible damage are avoided, and in addition, the winding device is compact in overall structure, easy and convenient to operate and high in practicability. And the maintenance is easy.
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Description

Technical Field

[0001] This utility model relates to the field of felt-related technology, and in particular to a winding device for felt production. Background Technology

[0002] Felt is a commonly used industrial material, widely applied in machinery, chemical, metallurgical, and construction industries. In the felt production process, the winding device is one of the key pieces of equipment, its performance directly affecting the quality of the felt and production efficiency. Therefore, a winding device specifically designed for felt production is needed to improve output efficiency.

[0003] When winding felt using a winding device, traditional winding devices are often operated manually, which is not only inefficient but also poses safety hazards. Furthermore, the instability of manual operation can easily lead to uneven winding, affecting the quality of the felt. This increases production costs and wastes products. Therefore, handcarts are used for transporting the felt. However, this method is not only time-consuming and labor-intensive but also prone to damage or contamination of the felt during transportation. Utility Model Content

[0004] The purpose of this invention is to provide a winding device for felt production to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a winding device for felt production, comprising a winding device body, a clamping mechanism provided on the outer surface of the winding device body, and a transport mechanism provided on the outer surface of the winding device body;

[0006] The clamping mechanism includes a fixed column, a cylinder, a push rod, a push plate, a first rotating shaft, a pulley, a clamping arm, a first sliding groove, a second rotating shaft, and a clamping wheel. The outer surface of the main body of the winding device is fixed to the column, and a cylinder is connected through the outer side of the fixed column. The output end of the cylinder is connected to the push rod, one end of the push rod is connected to the push plate, one end of the push plate is provided with the first rotating shaft, one end of the push plate is provided with the pulley, the outer surface of the pulley is connected to the clamping arm, the inner surface of the clamping arm is provided with the first sliding groove, one end of the clamping arm is provided with the second rotating shaft, and one end of the clamping arm is provided with the clamping wheel.

[0007] Preferably, the transport mechanism includes a second chute, a mounting block, a lead screw, a slide table, and a placement table. The outer surface of the main body of the winding device is provided with a second chute, the inner surface of the second chute is provided with a mounting block, the outer surface of the mounting block is connected to a lead screw, the outer surface of the lead screw is provided with a slide table, and the outer surface of the main body of the winding device is provided with a placement table.

[0008] Preferably, the main body of the winding device includes a base, a mounting platform, a motor, and a winding shaft. The mounting platform is provided on the upper surface of the base, and the motor is provided on the outer surface of the mounting platform. The output end of the motor is connected to the winding shaft.

[0009] Preferably, the cylinder and the push rod form a telescopic structure, and the first rotating shaft passes through the fixed column and is connected to the push plate.

[0010] Preferably, the pulley and the first groove form a sliding structure, and the outer surface of the pulley matches the inner surface of the first groove.

[0011] Preferably, the second rotating shaft forms a fixed column connected to the clamping arm, and the second rotating shaft and the clamping arm form a rotating structure.

[0012] Preferably, the second slide groove and the slide table form a sliding structure, and a motor is installed inside the mounting block, with the output end of the motor connected to the lead screw.

[0013] Compared with the prior art, the beneficial effects of this utility model are as follows: This felt production winding device, through the cooperation of a clamping mechanism and a transport mechanism, realizes automatic winding and transport of felt, greatly improving production efficiency. The design of the clamping mechanism not only ensures the stable rotation of the winding shaft, but also makes the clamping process more convenient through a flexible adjustment mechanism, while reducing frictional resistance and extending the service life of the equipment. The transport mechanism drives the lead screw to rotate through a motor, which drives the slide table to slide in the second slide groove, thereby realizing the automatic transport of felt and avoiding the tediousness and potential damage caused by manual handling. In addition, the winding device has a compact overall structure, is easy to operate, easy to maintain and repair, and reduces production costs. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the overall appearance and structure of the present utility model;

[0015] Figure 2 This is a schematic diagram of the clamping mechanism of this utility model;

[0016] Figure 3 This is a bottom view of the clamping mechanism of this utility model;

[0017] Figure 4 This is a schematic diagram of the transportation mechanism structure of this utility model.

[0018] In the diagram: 1. Main body of the winding device; 11. Base; 12. Mounting platform; 13. Motor; 14. Winding shaft; 2. Clamping mechanism; 21. Fixed column; 22. Cylinder; 23. Push rod; 24. Push plate; 25. First rotating shaft; 26. Pulley; 27. Clamping arm; 28. First slide groove; 29. ​​Second rotating shaft; 210. Clamping wheel; 3. Transport mechanism; 31. Second slide groove; 32. Mounting block; 33. Lead screw; 34. Slide table; 35. Placement platform. Detailed Implementation

[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0020] Please see Figure 1-4 This utility model provides a technical solution: a winding device for felt production, including a winding device body 1, a clamping mechanism 2 provided on the outer surface of the winding device body 1, and a transport mechanism 3 provided on the outer surface of the winding device body 1.

[0021] The clamping mechanism 2 includes a fixed post 21, a cylinder 22, a push rod 23, a push plate 24, a first rotating shaft 25, a pulley 26, a clamping arm 27, a first sliding groove 28, a second rotating shaft 29, and a clamping wheel 210. The fixed post 21 is fixed on the outer surface of the main body 1 of the winding device. The cylinder 22 is connected through the outer side of the fixed post 21. The output end of the cylinder 22 is connected to the push rod 23. One end of the push rod 23 is connected to the push plate 24. The first rotating shaft 25 is provided at one end of the push plate 24. The pulley 26 is provided at one end of the push plate 24. The clamping arm 27 is connected to the outer surface of the pulley 26. The inner surface of the clamping arm 27 is opened. The device includes a first sliding groove 28, a second rotating shaft 29 at one end of the clamping arm 27, and a clamping wheel 210 at the other end. Through the arrangement of the fixing column 21, cylinder 22, push rod 23, push plate 24, first rotating shaft 25, pulley 26, clamping arm 27, first sliding groove 28, second rotating shaft 29, and clamping wheel 210, stable clamping of one end of the take-up shaft 14 can be achieved. The outer surface of the clamping wheel 210 is in close contact with one end of the take-up shaft 14, and the outer surface of the clamping wheel 210 is relatively smooth, effectively reducing the friction between the take-up shaft 14 and the clamping wheel when the motor 13 drives the take-up shaft 14 to rotate. The frictional resistance between the holding wheels 210 ensures smooth rotation of the take-up shaft 14. Furthermore, the clamping arm 27 is slidably connected to the push plate 24 via the first sliding groove 28, allowing the clamping arm 27 to be adjusted along the length of the push plate 24. This pushes the push rod 23 to extend and retract, causing the push plate 24 to move. The movement of the push plate 24 causes the pulley 26 to rotate on the first rotating shaft 25, and the rotation of the pulley 26 causes the clamping arm 27 to slide within the first sliding groove 28, thereby adjusting the position of the clamping arm 27 and clamping one end of the take-up shaft 14. Simultaneously, the second... The rotating shaft 29 allows the clamping arm 27 to be more flexible when clamping the take-up shaft 14. When the winding is completed, the cylinder 22 pushes the push rod 23 to reset. The reset movement of the push rod 23 drives the push plate 24 to move in the opposite direction. The reverse movement of the push plate 24 drives the pulley 26 to rotate in the opposite direction on the first rotating shaft 25. The reverse rotation of the pulley 26 drives the clamping arm 27 to slide in the opposite direction in the first sliding groove 28, so that the clamping arm 27 releases its grip on one end of the take-up shaft 14, thereby facilitating the removal of the wound felt for subsequent processing or storage, improving the automation level and production efficiency of felt production.

[0022] Furthermore, the transport mechanism 3 includes a second chute 31, a mounting block 32, a lead screw 33, a slide table 34, and a placement table 35. The outer surface of the winding device body 1 has the second chute 31, the inner surface of the second chute 31 has the mounting block 32, the outer surface of the mounting block 32 is connected to the lead screw 33, the outer surface of the lead screw 33 has the slide table 34, and the outer surface of the winding device body 1 has the placement table 35. Through the arrangement of the second chute 31, mounting block 32, lead screw 33, slide table 34, and placement table 35, a motor is first installed inside the mounting block 32. The output end of the motor is fixedly connected to one end of the lead screw 33. When the motor starts, it drives the lead screw 33 forward. The slide table 34 has a threaded hole on its inner surface that matches the lead screw 33. The rotation of the lead screw 33 causes the slide table 34 to slide within the second slide groove 31. When the rolled-up felt needs to be transported, the motor is started, and the motor drives the lead screw 33 to rotate, causing the slide table 34 to slide within the second slide groove 31. This, in turn, moves the rolled-up felt on the winding shaft 14 to the top of the placement table 35. Then, the felt is manually removed from the winding shaft 14 and placed on the placement table 35, which facilitates the transport of the rolled-up felt, improves transport efficiency, and avoids potential damage during manual handling of the felt, further enhancing its practicality.

[0023] Furthermore, the main body 1 of the winding device includes a base 11, a mounting platform 12, a motor 13 and a winding shaft 14. The mounting platform 12 is provided on the upper surface of the base 11, and the motor 13 is provided on the outer surface of the mounting platform 12. The output end of the motor 13 is connected to the winding shaft 14.

[0024] Furthermore, the cylinder 22 and the push rod 23 form a telescopic structure. The first rotating shaft 25 passes through the fixed column 21 and is connected to the push plate 24. Through the setting of the cylinder 22, the push rod 23 can be driven to perform telescopic movement, thereby realizing the adjustment of the position of the clamping arm 27 and the stable clamping of one end of the winding shaft 14. In addition, the setting of the first rotating shaft 25 enables the pulley 26 to rotate stably on the push plate 24, thereby driving the clamping arm 27 to slide in the first slide groove 28, ensuring the stability and reliability of the clamping arm 27 during the adjustment process, and further improving the automation level and usage effect of the winding device body 1.

[0025] Furthermore, the pulley 26 and the first slide groove 28 form a sliding structure. The outer surface of the pulley 26 matches the inner surface of the first slide groove 28. By setting the pulley 26, the frictional resistance of the clamping arm 27 when sliding in the first slide groove 28 can be reduced, making the sliding of the clamping arm 27 smoother and more stable. This avoids the problem of adjustment difficulties or inaccurate adjustment caused by excessive frictional resistance, and further improves the adjustment accuracy and stability of the main body 1 of the winding device. At the same time, the matching design of the pulley 26 and the first slide groove 28 also ensures the guidance of the clamping arm 27 during the sliding process, so that the clamping arm 27 can slide along the predetermined path, thereby realizing precise control of the clamping position of one end of the winding shaft 14.

[0026] Furthermore, the second rotating shaft 29 forms a fixed column 21 connected to the clamping arm 27. The second rotating shaft 29 and the clamping arm 27 form a rotating structure. Through the setting of the second rotating shaft 29, the clamping arm 27 can achieve a certain angle adjustment when clamping the winding shaft 14, which increases the flexibility and adaptability of clamping.

[0027] Furthermore, the second slide groove 31 and the slide table 34 form a sliding structure. The mounting block 32 is equipped with a motor, and the output end of the motor is connected to the lead screw 33. The second slide groove 31 provides a stable guide for the sliding of the slide table 34, so that the slide table 34 can slide precisely along the length of the second slide groove 31 under the drive of the lead screw 33, thereby ensuring the need for accurate transportation of the rolled-up felt.

[0028] Working principle: In actual operation, it can achieve stable clamping of one end of the take-up shaft 14. The outer surface of the clamping wheel 210 is in close contact with one end of the take-up shaft 14, and the outer surface of the clamping wheel 210 is relatively smooth. This effectively reduces the frictional resistance between the take-up shaft 14 and the clamping wheel 210 when the motor 13 drives the take-up shaft 14 to rotate, ensuring smooth rotation of the take-up shaft 14. In addition, the clamping arm 27 is slidably connected to the push plate 24 through the first sliding groove 28, allowing the clamping arm 27 to be adjusted along the length of the push plate 24, pushing the push rod 23 to extend and retract. The retraction motion drives the push plate 24 to move, and the movement of the push plate 24 drives the pulley 26 to rotate on the first rotating shaft 25. The rotation of the pulley 26 drives the clamping arm 27 to slide within the first sliding groove 28, thereby adjusting the position of the clamping arm 27 and clamping one end of the take-up shaft 14. At the same time, the setting of the second rotating shaft 29 allows the clamping arm 27 to be more flexible when clamping the take-up shaft 14. When the winding is completed, the cylinder 22 pushes the push rod 23 to reset. The reset movement of the push rod 23 drives the push plate 24 to move in the opposite direction. The reverse movement of the push plate 24 drives the pulley 26 on the first rotating shaft 25. The pulley 26 rotates in the opposite direction, causing the clamping arm 27 to slide in the first groove 28, thus releasing the clamping arm 27 from one end of the winding shaft 14. This facilitates the removal of the wound felt for subsequent processing or storage, improving the automation and efficiency of felt production. Furthermore, the transport mechanism 3, when in use, firstly, a motor is installed inside the mounting block 32, with the motor's output fixedly connected to one end of the lead screw 33. When the motor starts, it drives the lead screw 33 to rotate. The inner surface of the slide table 34 is provided with a surface adapted to the lead screw 33. The threaded hole of the screw 33 causes the slide table 34 to slide within the second slide groove 31. When the rolled-up felt needs to be transported, the motor is started, and the motor drives the screw 33 to rotate, causing the slide table 34 to slide within the second slide groove 31. This, in turn, moves the rolled-up felt on the winding shaft 14 to the top of the placement table 35. Then, the felt is manually removed from the winding shaft 14 and placed on the placement table 35, which facilitates the transport of the rolled-up felt, improves transport efficiency, avoids potential damage during manual handling of the felt, and further enhances its practicality.

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

Claims

1. A winding device for felt production, comprising a winding device body (1), characterized in that: The outer side surface of the winding device body (1) is provided with a clamping mechanism (2), and the outer side surface of the winding device body (1) is provided with a conveying mechanism (3). The clamping mechanism (2) comprises a fixed column (21), a pneumatic cylinder (22), a push rod (23), a push plate (24), a first rotating shaft (25), a pulley (26), a clamping arm (27), a first sliding groove (28), a second rotating shaft (29) and a clamping wheel (210), the outer side surface of the winding device body (1) is provided with a fixed column (21), the outer side of the fixed column (21) is connected with a pneumatic cylinder (22), the output end of the pneumatic cylinder (22) is connected with a push rod (23), one end of the push rod (23) is connected with a push plate (24), one end of the push plate (24) is provided with a first rotating shaft (25), one end of the push plate (24) is provided with a pulley (26), the outer side surface of the pulley (26) is connected with a clamping arm (27), the inner side surface of the clamping arm (27) is provided with a first sliding groove (28), one end of the clamping arm (27) is provided with a second rotating shaft (29), and one end of the clamping arm (27) is provided with a clamping wheel (210).

2. The winding device for felt production according to claim 1, characterized in that: The conveying mechanism (3) comprises a second sliding groove (31), a mounting block (32), a lead screw (33), a sliding table (34) and a placing table (35), the outer side surface of the winding device body (1) is provided with a second sliding groove (31), the inner side surface of the second sliding groove (31) is provided with a mounting block (32), the outer side surface of the mounting block (32) is connected with a lead screw (33), the outer side surface of the lead screw (33) is provided with a sliding table (34), and the outer side surface of the winding device body (1) is provided with a placing table (35).

3. The winding device for felt production according to claim 1, characterized in that: The winding device body (1) comprises a base (11), a mounting table (12), a motor (13) and a winding shaft (14), the upper surface of the base (11) is provided with a mounting table (12), the outer side surface of the mounting table (12) is provided with a motor (13), and the output end of the motor (13) is connected with a winding shaft (14).

4. The winding device for felt production according to claim 1, characterized in that: The pneumatic cylinder (22) and the push rod (23) constitute a telescopic structure, the first rotating shaft (25) penetrates the fixed column (21) and is connected with the push plate (24).

5. The winding device for felt production according to claim 1, characterized in that: The pulley (26) and the first sliding groove (28) constitute a sliding structure, and the outer side surface of the pulley (26) is matched with the inner side surface of the first sliding groove (28).

6. The winding device for felt production according to claim 1, characterized in that: The second rotating shaft (29) connects the fixed column (21) and the clamping arm (27), and the second rotating shaft (29) and the clamping arm (27) constitute a rotating structure.

7. The winding device for felt production according to claim 2, characterized in that: The second sliding groove (31) and the sliding table (34) constitute a sliding structure, the mounting block (32) is internally provided with a motor, and the output end of the motor is connected with the lead screw (33).