Automatic winding device for stainless steel wire net filler

By designing an automatic winding device for stainless steel wire mesh filler with a limiting rod and a cleaning brush, the problems of guide components being carried out and small particles being adsorbed are solved, ensuring safety and winding quality.

CN223792611UActive Publication Date: 2026-01-13HUBEI BAIJIABANG STAINLESS STEEL PROD CO LTD
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Patent Information

Application Number
CN202422678539.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-04
Publication Date
2026-01-13
Estimated Expiration
2034-11-04

AI Technical Summary

Technical Problem

Existing automatic winding devices for stainless steel wire mesh fillers have safety hazards, such as the guide components being pulled out by the wire mesh, and the wire mesh being adsorbed with tiny particles that affect the winding effect.

Method used

A device comprising a support, a worktable, a winding assembly, a clamping assembly, a guiding assembly, and a cleaning assembly was designed to address the aforementioned problems through a limiting rod and a cleaning brush. The limiting rod restricts the movement direction of the wire mesh via a telescopic rod and a limiting plate, while the cleaning brush removes fine particles using both internal and external brushes.

Benefits of technology

This effectively prevents the safety hazards caused by the guide components being pulled out by the wire mesh, and removes tiny particles from the wire mesh, ensuring the winding effect and the quality of the finished product.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an automatic winding device for stainless steel wire mesh packing, and belongs to the field of corrugated wire mesh product processing equipment.The automatic winding device comprises a support, a workbench is assembled at the top of the support, a winding assembly is assembled at the top of the support, a clamping piece assembly is assembled at the top of the workbench, and a guide assembly is assembled at the bottom of the winding assembly; the guide assembly comprises a mounting plate. The winding device is provided with the support, the workbench, the winding assembly, the clamping piece assembly, the mounting plate, a first fixing table, a first limiting rod, a second limiting rod, a second fixing table, a fixing sleeve, a second limiting plate, a gear rod, a first limiting plate, a mounting table, a motor, a main gear and a telescopic rod. The moving distance of the first limiting plate is limited through the telescopic rod, the first limiting rod and the second limiting rod, so that the problem that the guide assembly limits the moving direction of the silk screen through the movable plate, and the movable plate is possibly brought out by the silk screen in the winding process to cause potential safety hazards is solved.
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Description

Technical Field

[0001] This application relates to the field of corrugated wire mesh product processing equipment, and more specifically, to an automatic winding device for stainless steel wire mesh filler. Background Technology

[0002] Currently, my country is vigorously promoting the application of automatic winding devices for stainless steel wire mesh packing. Corrugated structured packing can be categorized by material into copper, aluminum, and stainless steel in industrial applications. Stainless steel wire mesh is widely used in the fine chemical industry, and the demand for stainless steel wire mesh structured packing is steadily increasing. Stainless steel wire mesh structured packing consists of multiple internal corrugated wire mesh sheets and external stainless steel clamps. Before manufacturing, the raw material needs to be formed using a packing molding process. The formed stainless steel wire mesh packing sheets need to be wound into coils and then manually cut according to the required diameter. Previously, manual winding was used. However, manual winding is not easy to tighten, and the manual force involved can cause excessive stretching of the wire mesh packing, leading to quality problems in subsequent inspections. Furthermore, the diagonal lines of the packing sheets are prone to displacement during manual winding, causing unevenness on the surface of the packing coil. Therefore, using specialized machinery for winding is a key factor in ensuring the quality of the finished product.

[0003] Existing automatic rewinding devices for stainless steel wire mesh have a problem: the guiding component relies on a movable plate to restrict the movement direction of the wire mesh. This movable plate may be pulled out by the wire mesh during the rewinding process, posing a safety hazard. Additionally, existing automatic rewinding devices for stainless steel wire mesh may have small particles adhering to the wire mesh, which could affect the rewinding efficiency. Utility Model Content

[0004] To address the shortcomings of existing technologies, this utility model provides an automatic winding device for stainless steel wire mesh fillers, solving the problems mentioned in the background section. To achieve the above objectives, this utility model is implemented through the following technical solution: An automatic winding device for stainless steel wire mesh fillers includes a support frame, a worktable mounted on the top of the support frame, a winding assembly mounted on the top of the support frame, a clamping assembly mounted on the top of the worktable, a guide assembly mounted on the bottom of the winding assembly, and a mounting plate fixedly connected to the bottom of the winding assembly. A first fixing platform is fixedly connected to the top of the mounting plate, and a first limiting rod is rotatably connected to the side of the first fixing platform. A second limiting rod is connected to the second limiting rod, and a second fixed platform is rotatably connected to the side of the second limiting rod. A first limiting plate is fixedly connected to the top of the second fixed platform. A fixed sleeve is fixedly connected to the top of the mounting plate, and a second limiting plate is fixedly connected to the side of the fixed sleeve. A gear rod is slidably connected to the inner wall of the fixed sleeve. A mounting platform is fixedly connected to the top of the worktable, and a motor is mounted on the top of the mounting platform. A main gear is fixedly connected to the side of the output shaft of the motor. A telescopic rod is fixedly connected to the top of the worktable, and the top of the telescopic rod is fixedly connected to the bottom of the first limiting plate.

[0005] Preferably, the main gear meshes with the side gear of the gear rod.

[0006] Preferably, the gear rod is fixedly connected to the first limiting plate.

[0007] Preferably, the first limiting plate is located directly above the second limiting plate.

[0008] Preferably, a cleaning component is mounted on the top of the winding assembly. The cleaning component includes a toothed plate. A first transmission gear is rotatably connected to the middle of the first limiting plate. A transmission belt is rotatably connected to the side of the first transmission gear. A second transmission gear is rotatably connected to the inner side of the transmission belt. The second transmission gear is rotatably connected to the middle of the second limiting plate. A first rotating rod is rotatably connected to the top of the first limiting plate. A second rotating rod is rotatably connected to the top of the first limiting plate. A ratchet is fixedly connected to the top of the first rotating rod. A driven gear is fixedly connected to the top of the second rotating rod. An internal cleaning brush is fixedly connected to the bottom of the first rotating rod. An external cleaning brush is fixedly connected to the bottom of the second rotating rod.

[0009] Preferably, the ratchet meshes with the driven gear, and the first transmission gear meshes with the gear tooth plate.

[0010] The advantages of this application are:

[0011] (1) This application solves the problem that the guide assembly relies on the movable plate to restrict the direction of wire mesh movement, and the movable plate may be pulled out by the wire mesh during the winding process, causing safety hazards, by setting up a bracket, worktable, winding assembly, clamping assembly, mounting plate, first fixed platform, first limiting rod, second limiting rod, second fixed platform, fixed sleeve, second limiting plate, gear rod, first limiting plate, mounting platform, motor, main gear, and telescopic rod. The telescopic rod and the first and second limiting rods limit the movement distance of the first limiting plate, thereby solving the problem that the guide assembly relies on the movable plate to restrict the direction of wire mesh movement, and the movable plate may be pulled out by the wire mesh during the winding process.

[0012] (2) This application solves the problem that tiny particles may be adsorbed on the wire mesh, and that these tiny particles may affect the winding effect. This is achieved by setting up a gear plate, a first transmission gear, a ratchet, a transmission belt, a second transmission gear, a driven gear, a second rotating rod, a first rotating rod, an internal cleaning brush, and an external cleaning brush. The internal and external cleaning brushes clean the tiny particles on the wire mesh, thereby solving the problem that tiny particles may be adsorbed on the wire mesh, and that the tiny particles adhering to the wire mesh may affect the winding effect. At the same time, the cleaning brush can rotate to the outside of the equipment for easy cleaning. Attached Figure Description

[0013] The accompanying drawings, which form part of this application, are used to provide a further understanding of the application and to make other features, objects, and advantages of the application more apparent. The illustrative embodiments and descriptions of this application are used to explain the application and do not constitute an undue limitation of the application. In the drawings:

[0014] Figure 1 This is a three-dimensional appearance drawing of the present invention;

[0015] Figure 2 This is a side sectional view of the present invention;

[0016] Figure 3 This is a three-dimensional appearance drawing of the guide component of this utility model;

[0017] Figure 4 This is a three-dimensional appearance drawing of the cleaning component of this utility model;

[0018] Figure 5 This is a top view of the cleaning component of this utility model.

[0019] In the above image,

[0020] 100. Support frame; 200. Worktable; 300. Rewinding assembly; 400. Clamping assembly;

[0021] Guide assembly; 501, mounting plate; 502, first fixed platform; 503, first limiting rod; 504, second limiting rod; 505, second fixed platform; 506, fixing sleeve; 507, second limiting plate; 508, gear rod; 509, first limiting plate; 510, mounting platform; 511, motor; 512, main gear; 513, telescopic rod;

[0022] 600. Cleaning assembly; 601. Gear plate; 602. First drive gear; 603. Ratchet; 604. Drive belt; 605. Second drive gear; 606. Driven gear; 607. Second rotating rod; 608. First rotating rod; 609. Internal cleaning brush; 610. External cleaning brush. Detailed Implementation

[0023] To enable those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are merely some, not all, of the embodiments of the present application. All other embodiments obtained by those skilled in the art based on the embodiments of the present application without creative effort should fall within the scope of protection of the present application.

[0024] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. This application will now be described in detail with reference to the accompanying drawings and embodiments.

[0025] See Figures 1-5This embodiment provides an automatic winding device for stainless steel wire mesh filler, including a support 100, a workbench 200 mounted on the top of the support 100, a winding assembly 300 mounted on the top of the support 100, a clamping assembly 400 mounted on the top of the workbench 200, and a guide assembly 500 mounted on the bottom of the winding assembly 300. The guide assembly 500 includes a mounting plate 501, which is fixedly connected to the bottom of the winding assembly 300. A first fixing platform 502 is fixedly connected to the top of the mounting plate 501, and a first limiting device is rotatably connected to the side of the first fixing platform 502. Positioning rod 503, with a second limiting rod 504 rotatably connected to the side of the first limiting rod 503, and a second fixed platform 505 rotatably connected to the side of the second limiting rod 504. The first limiting rod 503 and the second limiting rod 504 can be extended and locked to prevent the first limiting plate 509 from falling off and causing a safety risk. The top of the second fixed platform 505 is fixedly connected to the first limiting plate 509, and the top of the mounting plate 501 is fixedly connected to the fixed sleeve 506. The side of the fixed sleeve 506 is fixedly connected to the second limiting plate 507, with the first limiting plate 509 located directly above the second limiting plate 507. A gear rod 508 is slidably connected to the inner wall of the fixed sleeve 506, and the gear rod 508 is fixedly connected to the first limiting plate 509. The gear rod 508 slides up and down, which drives the first limiting plate 509 to slide up and down to complete the adjustment. A mounting platform 510 is fixedly connected to the top of the worktable 200. A motor 511 is mounted on the top of the mounting platform 510. A main gear 512 is fixedly connected to the upper side of the output shaft of the motor 511, and the main gear 512 meshes with the gear on the side of the gear rod 508. Rotation of the output shaft of the motor 511 drives the main gear 512 to rotate. A telescopic rod 513 is fixedly connected to the top of the worktable 200. Rotation of the main gear 512 causes it to collide with the gear rod 508 and slide up and down. The top of the telescopic rod 513 is fixedly connected to the bottom of the first limiting plate 509. The telescopic rod 513 can limit the movement distance of the first limiting plate 509 near the worktable 200. This application solves the problem that the guide assembly 500 relies on a movable plate to restrict the movement direction of the wire mesh, which could cause a safety hazard if the movable plate is pulled out by the wire mesh during the winding process. This is achieved by setting up a bracket 100, a worktable 200, a winding assembly 300, a clamping plate assembly 400, a mounting plate 501, a first fixed platform 502, a first limiting rod 503, a second limiting rod 504, a second fixed platform 505, a fixing sleeve 506, a second limiting plate 507, a gear rod 508, a first limiting plate 509, a mounting platform 510, a motor 511, a main gear 512, and a telescopic rod 513. The telescopic rod 513 and the first and second limiting rods 503 and 504 limit the movement distance of the first limiting plate 509.

[0026] When the above equipment is used and the distance between the guide components 500 needs to be adjusted, the motor 511 is started. The output shaft of the motor 511 rotates, which drives the main gear 512 to rotate. The rotation of the main gear 512 collides with the gear rod 508 and slides up and down. The up and down sliding of the gear rod 508 drives the first limiting plate 509 to slide up and down to complete the adjustment. When the top of the wire mesh collides with the bottom of the first limiting plate 509, the first limiting rod 503 and the second limiting rod 504 straighten and lock to prevent the first limiting plate 509 from falling off and causing safety risks. The telescopic rod 513 limits the movement distance of the first limiting plate 509 on the side close to the worktable 200 to prevent the first limiting plate 509 from falling off.

[0027] See Figures 1-5 Based on Embodiment 1, this application adds a winding assembly 300. A cleaning assembly 600 is mounted on the top of the winding assembly 300. The cleaning assembly 600 includes a gear plate 601. A first transmission gear 602 is rotatably connected to the middle of a first limiting plate 509. The rising of the first limiting plate 509 can drive the first transmission gear 602 to rise. A transmission belt 604 is connected to the side of the first transmission gear 602. The first transmission gear 602 can collide with and rotate with the gear plate 601. A second transmission gear 605 is connected to the inner side of the transmission belt 604. The first transmission gear 602 can drive the transmission belt 604 to rotate, and the transmission belt 604 drives the second transmission gear 605 to rotate. Gear 605 rotates, and the second transmission gear 605 is rotatably connected to the middle of the second limiting plate 507. A first rotating rod 608 is rotatably connected to the top of the first limiting plate 509, and a second rotating rod 607 is rotatably connected to the top of the first limiting plate 509. A ratchet 603 is fixedly connected to the top of the first rotating rod 608, and a driven gear 606 is fixedly connected to the top of the second rotating rod 607. The driven gear 606 can drive the second rotating rod 607 to rotate. An internal cleaning brush 609 is fixedly connected to the bottom of the first rotating rod 608, and an external cleaning brush 610 is fixedly connected to the bottom of the second rotating rod 607. The ratchet 603 meshes with the driven gear 606, and the ratchet 603 can collide with the driven gear 606 to rotate. The first transmission gear 602 meshes with the gear plate 601. This application solves the problem of tiny particles adhering to the wire mesh, which may affect the winding effect, by setting up a gear tooth plate 601, a first transmission gear 602, a ratchet 603, a transmission belt 604, a second transmission gear 605, a driven gear 606, a second rotating rod 607, a first rotating rod 608, an internal cleaning brush 609, and an external cleaning brush 610. At the same time, the cleaning brush can be rotated to the outside of the equipment for easy cleaning.

[0028] In practical use, the above-mentioned equipment is activated by starting the winding assembly 300, which winds up the wire mesh. Particles on the wire mesh are cleaned by the internal cleaning brush 609 and the external cleaning brush 610. When cleaning the cleaning assembly 600 is required, the motor 511 is activated. The output shaft of the motor 511 drives the main gear 512 to rotate. The main gear 512 drives the gear rod 508 to rise, causing the first limiting plate 509 to rise. The rising of the first limiting plate 509 drives the first transmission gear 602 to rise. The first transmission gear 602 collides with the gear plate 601 and rotates, driving the transmission belt 604 to rotate. The transmission belt 604 drives the second transmission gear 605 to rotate. The first transmission gear 602 rotates clockwise and collides with the ratchet 603, causing the ratchet 603 to rotate. The rotation of the ratchet 603 drives the first rotating rod 608 to rotate. The rotation of the first rotating rod 608 causes the internal cleaning brush 609 to rotate out. The ratchet 603 collides with the driven gear 606 and rotates. The driven gear 606 drives the second rotating rod 607 to rotate. The rotation of the second rotating rod 607 causes the external cleaning brush 610 to rotate out. After cleaning is completed, the first limit plate 509 continues to rise to adjust the internal cleaning brush 609 and the external cleaning brush 610 back to their original positions.

[0029] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. An automatic winding device for stainless steel wire mesh filler, comprising a support (100), a workbench (200) mounted on the top of the support (100), a winding assembly (300) mounted on the top of the support (100), and a clamping assembly (400) mounted on the top of the workbench (200). Its features are, The bottom of the winding assembly (300) is equipped with a guide assembly (500), the guide assembly (500) includes a mounting plate (501), the mounting plate (501) is fixedly connected to the bottom of the winding assembly (300), the top of the mounting plate (501) is fixedly connected to a first fixing platform (502), the side of the first fixing platform (502) is rotatably connected to a first limiting rod (503), the side of the first limiting rod (503) is rotatably connected to a second limiting rod (504), the side of the second limiting rod (504) is rotatably connected to a second fixing platform (505), and the top of the second fixing platform (505) is fixedly connected to a first limiting plate (505). 09), the top of the mounting plate (501) is fixedly connected to a fixing sleeve (506), the side of the fixing sleeve (506) is fixedly connected to a second limiting plate (507), the inner wall of the fixing sleeve (506) is slidably connected to a gear rod (508), the top of the worktable (200) is fixedly connected to a mounting platform (510), the top of the mounting platform (510) is equipped with a motor (511), the output shaft of the motor (511) is fixedly connected to a main gear (512), the top of the worktable (200) is fixedly connected to a telescopic rod (513), and the top of the telescopic rod (513) is fixedly connected to the bottom of the first limiting plate (509).

2. The automatic winding device for stainless steel wire mesh filler according to claim 1, characterized in that, The main gear (512) meshes with the side gear of the gear rod (508).

3. The automatic winding device for stainless steel wire mesh filler according to claim 1, characterized in that, The gear rod (508) is fixedly connected to the first limiting plate (509).

4. The automatic winding device for stainless steel wire mesh filler according to claim 1, characterized in that, The first limiting plate (509) is located directly above the second limiting plate (507).

5. The automatic winding device for stainless steel wire mesh filler according to claim 1, characterized in that, The top of the winding assembly (300) is equipped with a cleaning assembly (600), which includes a toothed plate (601). A first transmission gear (602) is rotatably connected to the middle of the first limiting plate (509). A transmission belt (604) is rotatably connected to the side of the first transmission gear (602). A second transmission gear (605) is rotatably connected to the inner side of the transmission belt (604). The second transmission gear (605) is rotatably connected to the middle of the second limiting plate (507). The top of the first limiting plate (509) is rotatably connected to a first rotating rod (608), the top of the first limiting plate (509) is rotatably connected to a second rotating rod (607), the top of the first rotating rod (608) is fixedly connected to a ratchet (603), the top of the second rotating rod (607) is fixedly connected to a driven gear (606), the bottom of the first rotating rod (608) is fixedly connected to an internal cleaning brush (609), and the bottom of the second rotating rod (607) is fixedly connected to an external cleaning brush (610).

6. The automatic winding device for stainless steel wire mesh filler according to claim 5, characterized in that, The ratchet (603) meshes with the driven gear (606), and the first transmission gear (602) meshes with the gear plate (601).