Screen cloth stripping positioning device

By designing a mesh stripping positioning device using a motor-driven bidirectional threaded rod and movable clamp, the problem of traditional mesh stripping methods relying on manual operation is solved, and efficient and accurate mesh stripping and positioning is achieved, improving the degree of automation and adaptability.

CN223031514UActive Publication Date: 2025-06-27HAINING CHAOLI NEW MATERIALS CO LTD
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Patent Information

Application Number
CN202422369619.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-27
Publication Date
2025-06-27
Estimated Expiration
2034-09-27

AI Technical Summary

Technical Problem

The traditional mesh stripping and positioning methods rely on manual operations, which are inefficient and difficult to ensure the accuracy of stripping and the stability of positioning. The existing automation devices have problems such as limited accuracy, poor adaptability, and high maintenance costs.

Method used

A mesh stripping positioning device is designed, and a motor-driven bidirectional threaded rod is used to realize the synchronous movement of the clamping structure. The movable clamps in the clamping structure are adjusted according to the shape and thickness of the mesh. The support plate and the reel provide stable support. The monitoring device monitors the clamping and peeling status in real time.

Benefits of technology

It improves the accuracy and stability of mesh stripping and positioning, reduces manual intervention, improves the degree of processing automation, reduces product defect rate, enhances the adaptability of the device, and can handle various types of mesh materials.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a screen cloth stripping positioning device, and relates to the technical field of screen cloth stripping equipment, the screen cloth stripping positioning device comprises a workbench, the top of the workbench is fixedly provided with a fixed table, one side of the fixed table is provided with a monitoring device used in cooperation with a clamping structure, and the fixed table is internally provided with a sliding groove used in cooperation with the clamping structure. According to the screen cloth clamping device, manual auxiliary starting is adopted, synchronous movement of the clamping structure is achieved through the two-way threaded rod driven by the motor, screen cloth is rapidly and accurately clamped, the movable clamping plates in the clamping structure adapt to screen cloth of different shapes and thicknesses, tight and reliable clamping is guaranteed, the supporting plates are stably installed, supporting is provided for the reel and the fixing frame, and the screen cloth clamping device is convenient to use. The reel rotates to wind the screen cloth, the monitoring device monitors the clamping and stripping states in real time, the automation level is improved, manual intervention is reduced, the machining precision and efficiency are improved, the adaptability of the device to various screen cloth materials is enhanced, and the overall practicability and flexibility are improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of mesh cloth stripping equipment, in particular to a mesh cloth stripping and positioning device. Background Technique

[0002] In many industries such as textile, clothing, footwear, automotive interiors, and electronic product manufacturing, mesh cloth materials are widely used due to their unique breathability, flexibility, and durability. However, during the production process of these products, the stripping and positioning of mesh cloth, as a key pretreatment step, directly affect the quality and production efficiency of subsequent processing.

[0003] Primarily responsible for stripping the mesh cloth from the raw material (such as a tape), this mechanism may include components such as a mesh cloth scraper and a stripping press fixture, achieving the stripping of the mesh cloth through physical or mechanical means. For example, in some devices, the stripping press fixture will press and fix the tape with the mesh cloth on the mesh cloth positioning platform during the process of the mesh cloth scraper stripping the mesh cloth to ensure the stability and accuracy of the stripping process. It is used to receive the mesh cloth stripped from the tape and accurately position it at the designated position, which usually requires a stable positioning platform and possibly a clamping structure to fix the mesh cloth.

[0004] However, traditional methods of mesh cloth stripping and positioning rely mostly on manual operation, which is not only inefficient but also difficult to ensure the accuracy of stripping and the stability of positioning. Although there are already some automated mesh cloth stripping and positioning devices on the market, they still have problems such as limited accuracy, poor adaptability, and high maintenance costs. Content of the Utility Model

[0005] Based on this, the purpose of the utility model is to provide a mesh cloth stripping and positioning device to solve the technical problems that traditional methods of mesh cloth stripping and positioning rely mostly on manual operation, which is not only inefficient but also difficult to ensure the accuracy of stripping and the stability of positioning. Although there are already some automated mesh cloth stripping and positioning devices on the market, they still have problems such as limited accuracy, poor adaptability, and high maintenance costs.

[0006] To achieve the above purpose, the utility model provides the following technical solution: A mesh cloth stripping and positioning device, including a workbench, a fixed platform is fixedly installed on the top of the workbench, a motor is fixedly installed on one side of the fixed platform, the output end of the motor is fixedly connected with a bidirectional threaded rod, a pair of clamping structures are movably installed on the bidirectional threaded rod, a clamping plate is movably installed inside the clamping structure, a support plate is fixedly installed on one side of the top of the fixed platform, a fixed frame is fixedly installed inside the support plate, a reel is rotatably connected inside the fixed frame, a monitoring device is arranged on one side of the fixed platform for cooperating with the clamping structure, and a chute for cooperating with the clamping structure is opened inside the fixed platform.

[0007] By adopting the above technical solution, during use, first, a section of the net head is manually assisted to be peeled off, and then both ends of the net head are clamped within the clamping plates inside the clamping structure. Then, the motor drives the bidirectional threaded rod to rotate. Due to the characteristics of the bidirectional threaded rod, a pair of clamping structures can move towards the center or towards both sides simultaneously. This design realizes the rapid and precise clamping of the workpiece, improves work efficiency and clamping stability. The clamping plates inside the clamping structure are movably installed and can be adjusted according to the shape and thickness of the net cloth to ensure the tightness and reliability of clamping. The support plate is fixedly installed on the fixed table, providing stable support for the fixed frame and the reel. The reel is rotatably connected within the fixed frame and is used for winding the net cloth to facilitate cooperation with the clamping structure. Moreover, the monitoring device arranged on one side of the fixed table can real-time monitor key parameters such as the clamping state of the clamping structure and the peeling state of the net cloth. With this structure, the degree of automation of processing is improved, the need for manual intervention is reduced, and it also helps to promptly discover and solve problems, improve processing accuracy and efficiency, improve the accuracy and stability of net cloth peeling and positioning, reduce the defective rate of products, enhance the adaptability of the device, be able to process various types of net cloth materials, and improve the practicality and flexibility of the entire net cloth peeling and positioning device.

[0008] The present utility model is further configured such that auxiliary rods are rotatably connected to the inner side of the support plate in a symmetrical structure. The auxiliary rods are located below the reel, and the reel and the auxiliary rods form a triangular structure.

[0009] By adopting the above technical solution, the provided auxiliary rods can play an auxiliary guiding effect on the net cloth during the net cloth peeling process.

[0010] The present utility model is further configured such that the clamping structure includes a connection block, a movable block, and a convex block. The bidirectional threaded rod movably penetrates through the convex block. The movable block is fixed to the bottom of the connection block. The inner side of the connection block is fixedly connected to the movable block. The clamping plate is located within the movable block, and a driving structure for cooperating with the clamping plate is provided inside the connection block. An activity slot for cooperating with the bidirectional threaded rod is opened inside the convex block.

[0011] By adopting the above technical solution, the bidirectional threaded rod movably penetrates through the convex block. By rotating the bidirectional threaded rod, thrust or pulling force can be generated in two directions simultaneously, thereby realizing the precise adjustment of the movable block and the clamping plate. The movable block is fixed to the bottom of the connection block, and the inner side of the connection block is fixedly connected to the movable block. This structure ensures the stability and reliability of the movable block during movement and avoids clamping failure caused by shaking or deviation. An activity slot for cooperating with the bidirectional threaded rod is opened inside the convex block. This design enables the bidirectional threaded rod to smoothly pass through the convex block during rotation and drive the movable block and the clamping plate to move. At the same time, the activity slot also plays a certain guiding role.

[0012] The present utility model is further configured such that the driving structure includes an air delivery device, an air inlet pipe, a guide pipe, and a telescopic rod. The output end of the telescopic rod is fixedly connected to the clamping plate. The telescopic rod is fixed on both sides of the movable block. The guide pipe is fixedly connected to the bottom of the telescopic rod. An air inlet for cooperating with the guide pipe is provided at the bottom of the telescopic rod, and a piston structure for cooperating with the guide pipe is provided inside the telescopic rod. The air delivery device is fixed on the back of the support plate. A connecting pipe is fixedly connected to the bottom of the guide pipe. The air inlet pipe is located at the bottom of the connecting pipe, and an air delivery hose is fixedly connected between the air inlet pipe and the air delivery device.

[0013] By adopting the above technical solution, the piston structure provided inside the telescopic rod is closely matched with the guide pipe. Through the input and discharge of gas, the telescopic movement of the telescopic rod is realized. This design makes the control of the clamping plate more accurate and reliable. As a driving element, the output end of the telescopic rod is directly fixedly connected to the clamping plate, ensuring the accuracy and stability of the clamping plate during movement or clamping. The air inlet pipe is connected to the air delivery device through an air delivery hose. This flexible connection method makes the arrangement and installation of the air inlet pipe more flexible and can adapt to different working environments and requirements.

[0014] The present utility model is further configured such that an infrared sensor is provided inside the clamping plate, and an intelligent control system for cooperating with the infrared sensor is provided inside the air delivery device.

[0015] By adopting the above technical solution, through the mutual cooperation between the provided infrared sensor and the intelligent control system, when the mesh fabric is stuck between the clamping plates, the infrared sensor transmits a signal to the intelligent control system, so that the air delivery device can perform automatic control. Through the mutual cooperation between the air delivery hose and the guide pipe, gas is filled into the telescopic rod, so that the clamping plates can move inward simultaneously, so as to achieve the effect of quickly clamping the mesh fabric.

[0016] The present utility model is further configured such that slots are provided on both sides of the movable block. The slots are located on one side of the air inlet pipe. A first installation slot for cooperating with the support plate is provided at the top of the fixed table.

[0017] By adopting the above technical solution, the provided slots are located on one side of the air inlet pipe, which is beneficial to achieving a good installation effect on the air delivery hose, enabling the air delivery hose to better cooperate with the air inlet pipe and the air delivery device for use, and the first installation slot is beneficial to the flexible installation of the support plate.

[0018] The present utility model is further configured such that a fixed block is fixedly connected to one side of the fixed table through a second installation slot, and the monitoring device is fixed inside the fixed block. A plurality of support legs are fixedly installed at the bottom of the workbench.

[0019] By adopting the above technical solution, the set fixing block is firmly connected to the fixing platform through the second installation groove, providing a stable and reliable installation platform for the monitoring device. Thus, the monitoring device can better monitor the mesh fabric during the peeling process of the mesh fabric. Moreover, the position and angle of the monitoring device can be conveniently adjusted through the fixing block to meet different monitoring requirements. Finally, through the design of multiple sets of support legs, the workbench can be stably placed on the ground without shaking or tilting easily.

[0020] To sum up, the utility model mainly has the following beneficial effects:

[0021] 1. The utility model is manually assisted to start, and the bidirectional threaded rod driven by the motor is used to realize the synchronous movement of the clamping structure to quickly and accurately clamp the mesh fabric. The movable clamping plate in the clamping structure adapts to mesh fabrics of different shapes and thicknesses, ensuring tight and reliable clamping. The support plate is stably installed to provide support for the reel and the fixed frame. The reel rotates to wind the mesh fabric, and the monitoring device monitors the clamping and peeling states in real time, improving the automation level, reducing manual intervention, enhancing the processing precision and efficiency, strengthening the adaptability of the device to various mesh fabric materials, and improving the overall practicability and flexibility.

[0022] 2. The utility model passes through. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 is the first perspective schematic diagram of the overall structure of the utility model;

[0024] Figure 2 is the second perspective schematic diagram of the overall structure of the utility model;

[0025] Figure 3 is the first perspective schematic diagram of the disassembled structure of the utility model;

[0026] Figure 4 is the second perspective schematic diagram of the disassembled structure of the utility model;

[0027] Figure 5 is the cross-sectional structure schematic diagram of the utility model.

[0028] In the figure: 1. Workbench; 2. Support leg; 3. Motor; 4. Fixing platform; 5. Support plate; 6. Fixed frame; 7. Reel; 8. Clamping structure; 801. Connecting block; 802. Clamping plate; 803. Movable block; 9. Chute; 10. Fixing block; 11. Monitoring device; 12. Air supply device; 13. Auxiliary rod; 14. First installation groove; 15. Convex block; 16. Movable groove; 17. Bidirectional threaded rod; 18. Air inlet pipe; 19. Groove; 20. Second installation groove; 21. Air guide pipe; 22. Telescopic rod; 23. Connecting pipe. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0029] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present utility model, and should not be construed as a limitation to the present utility model.

[0030] Next, the embodiments of the present utility model will be described according to its overall structure.

[0031] A mesh cloth peeling and positioning device, as Figures 1-5 shown, includes a workbench 1. A fixed table 4 is fixedly installed on the top of the workbench 1. A motor 3 is fixedly installed on one side of the fixed table 4. The output end of the motor 3 is fixedly connected to a bidirectional threaded rod 17. A pair of clamping structures 8 are movably installed on the bidirectional threaded rod 17. A clamping plate 802 is movably installed inside the clamping structure 8. A support plate 5 is fixedly installed on one side of the top of the fixed table 4. A fixed frame 6 is fixedly installed inside the support plate 5. A reel 7 is rotatably connected inside the fixed frame 6. A monitoring device 11 for cooperating with the clamping structure 8 is arranged on one side of the fixed table 4. A chute 9 for cooperating with the clamping structure 8 is opened inside the fixed table 4.

[0032] During use, first, manually assist in peeling a section of the mesh cloth head. Then, both ends of the mesh cloth head are clamped in the clamping plate 802 inside the clamping structure 8. Then, the motor 3 drives the bidirectional threaded rod 17 to rotate. Due to the characteristics of the bidirectional threaded rod 17, a pair of clamping structures 8 can move towards the center or towards both sides simultaneously. This design realizes the rapid and precise clamping of the workpiece, improves the work efficiency and clamping stability. The clamping plate 802 inside the clamping structure 8 can be adjusted according to the shape and thickness of the mesh cloth through movable installation to ensure the tightness and reliability of clamping. The support plate 5 is fixedly installed on the fixed table 4, providing stable support for the fixed frame 6 and the reel 7. The reel 7 is rotatably connected inside the fixed frame 6 and is used for winding the mesh cloth to cooperate with the clamping structure 8 for use. And the monitoring device 11 arranged on one side of the fixed table 4 can monitor key parameters such as the clamping state of the clamping structure 8 and the peeling state of the mesh cloth in real time. With this structure, the degree of automation of processing is improved, the need for manual intervention is reduced, and it also helps to timely discover and solve problems, improve the processing accuracy and efficiency, improve the accuracy and stability of mesh cloth peeling and positioning, reduce the product defect rate, enhance the adaptability of the device, and be able to process various types of mesh cloth materials, thereby improving the practicability and flexibility of the entire mesh cloth peeling and positioning device.

[0033] The further provided auxiliary rod 13 can play an auxiliary guiding effect on the mesh fabric during the mesh fabric peeling process. The bidirectional threaded rod 17 movably penetrates through the convex block 15. By rotating the bidirectional threaded rod 17, thrust or pulling force can be generated in two directions simultaneously, thereby realizing the precise adjustment of the movable block 803 and the clamping plate 802. The movable block 803 is fixed to the bottom of the connecting block 801, and the inner side of the connecting block 801 is fixedly connected to the movable block 803. This structure ensures the stability and reliability of the movable block 803 during the movement process, avoiding the clamping failure caused by shaking or deviation. An activity groove 16 for cooperating with the bidirectional threaded rod 17 is provided in the convex block 15. This design enables the bidirectional threaded rod 17 to smoothly pass through the convex block 15 during rotation and drive the movable block 803 and the clamping plate 802 to move. At the same time, the activity groove 16 also plays a certain guiding role. The piston structure provided in the telescopic rod 22 closely cooperates with the air guide pipe 21. Through the input and discharge of gas, the telescopic movement of the telescopic rod 22 is realized. This design makes the control of the clamping plate 802 more precise and reliable. As a driving element, the output end of the telescopic rod 22 is directly fixedly connected to the clamping plate 802, ensuring the accuracy and stability of the clamping plate 802 during movement or clamping. The air inlet pipe 18 is connected to the air supply device 12 through an air conveying hose. This flexible connection method makes the air inlet pipe 18 more flexible in layout and installation, and can adapt to different working environments and requirements.

[0034] In this embodiment, the infrared sensor and the intelligent control system cooperate with each other. When the mesh fabric is stuck between the clamping plates 802, the infrared sensor transmits a signal to the intelligent control system, so that the air supply device 12 can perform automatic control. Through the mutual cooperation between the air conveying hose and the air guide pipe 21, gas is filled into the telescopic rod 22, so that the clamping plates 802 can move inward simultaneously, so as to achieve the effect of quickly clamping the mesh fabric. The provided slot 19 is located on one side of the air inlet pipe 18, which is beneficial to the installation of the air conveying hose, enabling the air conveying hose to better cooperate with the air inlet pipe 18, the air supply device 12 and the connecting pipe 23 for use. And through the first installation groove 14, it is beneficial to flexibly install the support plate 5. The provided fixed block 10 is firmly connected to the fixed table 4 through the second installation groove 20, providing a stable and reliable installation platform for the monitoring device 11, so that the monitoring device 11 can better monitor the mesh fabric during the mesh fabric peeling process. And the position and angle of the monitoring device 11 can be conveniently adjusted through the fixed block 10 to meet different monitoring requirements. Finally, through the design of multiple groups of support legs 2, the workbench 1 can be stably placed on the ground and is not prone to shaking or tilting.

[0035] Although embodiments of the present utility model have been shown and described, the specific embodiments are merely explanations of the present utility model and not limitations thereof. The specific features, structures, materials, or characteristics described can be combined in a suitable manner in any one or more embodiments or examples. After reading this specification, those skilled in the art can make modifications, substitutions, and variations that do not make creative contributions to the embodiments as needed, but as long as they are within the scope of the claims of the present utility model, they are protected by the patent law.

Claims

1. A mesh stripping and positioning device, comprising a workbench (1), characterized in that: A fixed platform (4) is fixedly installed on the top of the workbench (1), a motor (3) is fixedly installed on one side of the fixed platform (4), a bidirectional threaded rod (17) is fixedly connected to the output end of the motor (3), a pair of clamping structures (8) are movably installed on the bidirectional threaded rod (17), a clamping plate (802) is movably installed in the clamping structure (8), a support plate (5) is fixedly installed on one side of the top of the fixed platform (4), a fixed frame (6) is fixedly installed on the inner side of the support plate (5), a reel (7) is rotatably connected in the fixed frame (6), a monitoring device (11) for use with the clamping structure (8) is arranged on one side of the fixed platform (4), and a slide groove (9) for use with the clamping structure (8) is provided in the fixed platform (4).

2. The mesh stripping and positioning device according to claim 1, characterized in that: An auxiliary rod (13) is rotatably connected to the inner side of the support plate (5) in a symmetrical structure. The auxiliary rod (13) is located below the reel (7). The reel (7) and the auxiliary rod (13) form a triangular structure.

3. The mesh stripping and positioning device according to claim 1, characterized in that: The clamping structure (8) comprises a connecting block (801), a movable block (803), and a protrusion (15); the bidirectional threaded rod (17) movably passes through the protrusion (15); the movable block (803) is fixed to the bottom of the connecting block (801); the inner side of the connecting block (801) is fixedly connected to the movable block (803); the clamping plate (802) is located in the movable block (803); a driving structure for cooperating with the clamping plate (802) is provided in the connecting block (801); and a movable groove (16) for cooperating with the bidirectional threaded rod (17) is provided in the protrusion (15).

4. The mesh stripping and positioning device according to claim 3, characterized in that: The driving structure comprises an air delivery device (12), an air intake pipe (18), an air guide pipe (21), and a telescopic rod (22); the output end of the telescopic rod (22) is fixedly connected to the clamping plate (802); the telescopic rod (22) is fixedly connected to both sides of the movable block (803); the air guide pipe (21) is fixedly connected to the bottom of the telescopic rod (22); an air intake port for use with the air guide pipe (21) is provided at the bottom of the telescopic rod (22); and a piston structure for use with the air guide pipe (21) is provided inside the telescopic rod (22); the air delivery device (12) is fixed to the back of the support plate (5); the bottom of the air guide pipe (21) is fixedly connected to a connecting pipe (23); the air intake pipe (18) is located at the bottom of the connecting pipe (23); and an air delivery hose is fixedly connected between the air intake pipe (18) and the air delivery device (12).

5. The mesh stripping and positioning device according to claim 4, characterized in that: An infrared sensor is arranged in the clamping plate (802), and an intelligent control system used in conjunction with the infrared sensor is arranged in the gas delivery device (12).

6. The mesh stripping and positioning device according to claim 4, characterized in that: The movable block (803) is provided with slots (19) on both sides, and the slots (19) are located on one side of the air intake pipe (18). The top of the fixed platform (4) is provided with a first mounting slot (14) used in conjunction with the support plate (5).

7. The mesh stripping and positioning device according to claim 1, characterized in that: One side of the fixed platform (4) is fixedly connected to a fixed block (10) via a second mounting groove (20), and the monitoring device (11) is fixed to the inner side of the fixed block (10). A plurality of groups of supporting legs (2) are fixedly mounted on the bottom of the workbench (1).