Stainless steel sheet cutting and processing device

By designing components such as a support plate, chip collection channel, and dust pump, the problem of chip splashing in stainless steel sheet cutting devices was solved, achieving efficient chip collection and equipment cleaning, and improving processing accuracy and safety.

CN223544781UActive Publication Date: 2025-11-14DONGGUAN DONGXIAO HARDWARE PROD CO LTD
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Patent Information

Application Number
CN202422755200.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-12
Publication Date
2025-11-14
Estimated Expiration
2034-11-12

AI Technical Summary

Technical Problem

Existing stainless steel sheet cutting equipment generates debris during continuous operation, resulting in low cleanup efficiency, impacting environmental hygiene, and potentially threatening worker health.

Method used

A stainless steel sheet cutting device was designed, comprising a support component, a chip collection component, a processing component, and a fixing component. The device collects chips through a support plate, discharges chips through a chip collection channel and a dust pump, and cleans the device periodically through an electric slide rail and a chip cleaning brush, thereby improving chip collection efficiency and equipment cleanliness.

Benefits of technology

Effective collection and cleaning of debris keeps the working environment clean, prevents equipment failure, extends equipment life, and improves processing accuracy and safety.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223544781U_ABST
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Abstract

The utility model discloses a stainless steel sheet cutting processing device which comprises a working table body, a working groove is formed in the upper surface of the working table body, and a bearing assembly used for providing a stable supporting function for a stainless steel sheet is installed at the top of the inner wall of the working groove. The inner wall of the working groove is provided with a chipping collecting assembly used for improving the chipping collecting efficiency. A machining assembly used for improving the machining efficiency is installed on the upper surface of the workbench body, and a fixing assembly used for fixing a stainless steel sheet is installed on the surface of the machining assembly. Through the synergistic effect of all structures of the scrap collecting assembly, scraps generated in the cutting process can be effectively collected and discharged through the dust suction pump and the scrap discharging pipeline, and the collecting efficiency of the scraps is greatly improved; and by arranging components such as a first electric sliding rail and a scrap cleaning brush, the interior of the equipment can be cleaned regularly, and equipment failures or performance reduction caused by scrap accumulation are prevented.
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Description

Technical Field

[0001] This utility model relates to the technical field of stainless steel sheet processing, specifically to a stainless steel sheet cutting and processing device. Background Technology

[0002] Stainless steel sheets are thin sheet materials made from stainless steel through heat treatment and precision grinding. Stainless steel sheets are widely used in electronic instruments, mold manufacturing, precision machinery, hardware parts, mechanical parts and other fields. At the same time, due to their excellent corrosion resistance and mechanical properties, they are also often used to make stainless steel cookware and stainless steel furniture parts.

[0003] Chinese Patent No. CN213764253U discloses a cutting device for processing stainless steel products, comprising a base, a conveyor plate above the base, a drive roller at one end of the conveyor plate, and a first driven roller on one side of the drive roller. This cutting device for processing stainless steel products uses a third motor to drive a threaded rod to rotate, causing a push plate to move and push the cut stainless steel sheet into a collection box. It has a simple structure and is easy to operate, replacing manual material handling and avoiding injury to workers from the cutting blade. Furthermore, the position of the worktable is adjusted by a first electric telescopic rod, allowing the stainless steel sheet to be more accurately conveyed into the collection box. The conveyor plate then transports the stainless steel sheet to the worktable, replacing manual loading. Before being conveyed to the worktable, a circular roller guides the stainless steel sheet to ensure it is aligned, facilitating cutting and preventing errors caused by sheet misalignment.

[0004] The aforementioned patent also has some shortcomings. For example, when the device is in continuous operation, the uncontrollable direction of debris splashing will reduce the efficiency of collecting and cleaning debris, which will affect the environmental hygiene of the factory and may also pose a potential threat to the health of workers. Therefore, we need to propose a stainless steel sheet cutting and processing device. Utility Model Content

[0005] The purpose of this invention is to provide a stainless steel sheet cutting and processing device that has the advantage of improving the chip removal efficiency under continuous operation, so as to solve the problems mentioned in the background art.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a stainless steel sheet cutting and processing device, comprising a workbench body, a working groove formed on the upper surface of the workbench body, a bearing component for providing stable support for the stainless steel sheet installed on the top of the inner wall of the working groove, and a chip collecting component for improving chip collection efficiency installed on the inner wall of the working groove; a processing component for improving processing efficiency is installed on the upper surface of the workbench body, and a fixing component for fixing the stainless steel sheet is installed on the surface of the processing component.

[0007] Preferably, the load-bearing component includes a crossbeam, the two ends of which are connected to the two sides of the inner wall of the working groove, and a longitudinal beam is installed on the surface of the crossbeam, the two ends of which are connected to the two ends of the inner wall of the working groove. A load-bearing sluice plate is installed at the opening formed by the connection of the crossbeam, the longitudinal beam and the working groove.

[0008] Preferably, the chip collection assembly includes a partition plate, the surface of which is connected to the inner wall of the working groove. One end of the surface of the partition plate is provided with a chip collection port, the surface of which is connected to a chip collection channel. The bottom of the chip collection channel is connected to a chip collection box, an infrared sensor is installed on the inner wall of the chip collection box, and a dust pump is installed on one end of the inner wall of the chip collection box. The dust discharge port of the dust pump is connected to a chip discharge pipe.

[0009] Preferably, the chip collection assembly further includes a first electric slide rail, the output end of which is equipped with a connecting plate, and the lower surface of the connecting plate is equipped with a chip removal brush.

[0010] Preferably, the processing component includes a second electric slide rail, which is installed on both sides of the upper surface of the workbench body. A support column is installed at the output end of the second electric slide rail, and a third electric slide rail is installed at the top of the support column. A first connecting block is installed at the output end of the third electric slide rail, and a first telescopic rod is installed at the bottom of the first connecting block. A cutting blade is installed at one end of the first telescopic rod, and a protective shell is installed on the surface of the cutting blade.

[0011] Preferably, the processing assembly further includes a fourth electric slide rail, which is connected to the end of the worktable body near the second electric slide rail.

[0012] Preferably, the fixing component includes a second connecting block, the surface of which is connected to the output end of the fourth electric slide rail, a second telescopic rod is mounted on the surface of the second connecting block, a third telescopic rod is mounted on one end of the second telescopic rod, a fixing plate is mounted on one end of the third telescopic rod, and an anti-slip pad is mounted on the lower surface of the fixing plate.

[0013] Compared with the prior art, the beneficial effects of this utility model are:

[0014] 1. This utility model, through the synergistic effect of the various structures of the chip collection component, can effectively collect the chips generated during the cutting process and discharge them through a dust pump and chip discharge pipe, greatly improving the chip collection efficiency and maintaining a clean working environment.

[0015] 2. By setting up components such as the first electric slide rail and the chip removal brush, this utility model can regularly clean the inside of the equipment, prevent equipment failure or performance degradation caused by the accumulation of debris, and extend the service life of the equipment. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of this utility model;

[0017] Figure 2 This is a schematic diagram of the cutting blade structure of this utility model;

[0018] Figure 3 This is a schematic diagram of the fixing component structure of this utility model;

[0019] Figure 4 This is a cross-sectional view of the chip collection assembly structure of this utility model.

[0020] In the diagram: 1. Main body of the workbench; 2. Working groove; 3. Crossbeam; 4. Longitudinal beam; 5. Bearing plate; 6. Divider plate; 7. Chip collection port; 8. Chip collection channel; 9. Chip collection box; 10. Infrared sensor; 11. Dust pump; 12. Chip discharge pipe; 13. First electric slide rail; 14. Connecting plate; 15. Chip cleaning brush; 16. Second electric slide rail; 17. Support column; 18. Third electric slide rail; 19. First connecting block; 20. First telescopic rod; 21. Cutting blade; 22. Protective shell; 23. Fourth electric slide rail; 24. Second connecting block; 25. Second telescopic rod; 26. Third telescopic rod; 27. Fixing plate; 28. Anti-slip mat. Detailed Implementation

[0021] 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.

[0022] Please see Figure 1-4 This utility model provides a technical solution: a stainless steel sheet cutting and processing device, including a workbench body 1, a working groove 2 formed on the upper surface of the workbench body 1, a bearing component for providing stable support for the stainless steel sheet installed on the top of the inner wall of the working groove 2, and a chip collecting component for improving chip collection efficiency installed on the inner wall of the working groove 2; a processing component for improving processing efficiency is installed on the upper surface of the workbench body 1, and a fixing component for fixing the stainless steel sheet is installed on the surface of the processing component. Through the cooperation of the workbench body 1 and the working groove 2, all components installed on it can be stably supported.

[0023] The supporting assembly includes a crossbeam 3, with both ends of the crossbeam 3 connected to the two sides of the inner wall of the working groove 2. A longitudinal beam 4 is mounted on the surface of the crossbeam 3, with both ends of the longitudinal beam 4 connected to the two ends of the inner wall of the working groove 2. A supporting drain plate 5 is installed at the opening formed by the connection of the crossbeam 3, longitudinal beam 4, and working groove 2. The crossbeam 3 and longitudinal beam 4 intersect at a right angle. The supporting drain plate 5 is installed at the opening formed by the connection of the crossbeam 3, longitudinal beam 4, and working groove 2. Through the cooperation between the crossbeam 3, longitudinal beam 4, and supporting drain plate 5, the stainless steel sheet is supported, and the debris generated during the cutting process is allowed to fall through its holes into the chip collection assembly below, reducing the impact of debris on the processing and improving the cleanliness and safety of the processing environment.

[0024] The chip collection assembly includes a partition plate 6, the surface of which is connected to the inner wall of the working groove 2. A chip collection port 7 is provided at one end of the surface of the partition plate 6. A chip collection channel 8 is connected to the surface of the chip collection port 7. A chip collection box 9 is connected to the bottom of the chip collection channel 8. An infrared sensor 10 is installed on the inner wall of the chip collection box 9. A dust pump 11 is installed at one end of the inner wall of the chip collection box 9. The dust discharge port of the dust pump 11 is connected to a chip discharge pipe 12. The chip collection assembly also includes a first electric slide rail 13. A connecting plate 14 is installed at the output end of the first electric slide rail 13. A chip cleaning brush 15 is installed on the lower surface of the connecting plate 14. During continuous cutting operations, the generated debris falls onto the surface of the partition plate 6 through the bearing strainer 5. The cleaning brushes 15 of the connecting plate 14 are driven by the electric slide rail to move repeatedly on the surface of the partition plate 6, thereby sweeping the debris on the surface of the partition plate 6 into the chip collection port 7 and falling into the chip collection box 9 through the chip collection channel 8. The amount of debris inside the chip collection box 9 is monitored in real time by the infrared sensor 10. When the threshold is reached, the dust pump 11 is driven to discharge the debris inside the chip collection box 9 through the chip discharge pipe 12 to the chip processing area. This maintains the cleanliness of the working environment and reduces the risk of equipment failure or performance degradation caused by debris accumulation.

[0025] The processing assembly includes a second electric slide rail 16, which is mounted on both sides of the upper surface of the worktable body 1. A support column 17 is mounted at the output end of the second electric slide rail 16, and a third electric slide rail 18 is mounted on the top of the support column 17. A first connecting block 19 is mounted at the output end of the third electric slide rail 18, and a first telescopic rod 20 is mounted at the bottom of the first connecting block 19. A cutting blade 21 is mounted at one end of the first telescopic rod 20, and a protective shell 22 is mounted on the surface of the cutting blade 21. Through the cooperation of the second electric slide rail 16, the support column 17, and the third electric slide rail 18, the cutting blade 21 can move forward, backward, left, and right. Through the cooperation of the first connecting block 19 and the first telescopic rod 20, the cutting blade 21 can move up and down, thereby effectively improving the cutting efficiency of stainless steel sheets.

[0026] The processing assembly also includes a fourth electric slide rail 23, which is connected to the end of the worktable body near the second electric slide rail 16.

[0027] The fixing assembly includes a second connecting block 24, the surface of which is connected to the output end of the fourth electric slide rail 23. A second telescopic rod 25 is mounted on the surface of the second connecting block 24, a third telescopic rod 26 is mounted on one end of the second telescopic rod 25, and a fixing plate 27 is mounted on one end of the third telescopic rod 26. An anti-slip pad 28 is mounted on the lower surface of the fixing plate 27. Through the connection between the second connecting block 24 and the output end of the fourth electric slide rail 23, the various structures of the fixing assembly can move horizontally under the drive of the fourth electric slide rail 23. Through the cooperation of the second telescopic rod 25 and the third telescopic rod 26, the fixing plate 27 and the anti-slip pad 28 can move horizontally and vertically. The anti-slip pad 28 increases the friction between the fixing plate 27 and the stainless steel sheet, preventing the stainless steel sheet from sliding during processing. Through the cooperation of the fixing plate 27 and the anti-slip pad 28, the stainless steel sheet can be directly contacted and fixed, preventing it from moving during processing and improving processing accuracy and safety.

[0028] 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 stainless steel sheet cutting and processing device, comprising a workbench body (1), characterized in that: The upper surface of the workbench body (1) is provided with a working groove (2). The top of the inner wall of the working groove (2) is equipped with a bearing component for providing stable support for the stainless steel sheet. The inner wall of the working groove (2) is equipped with a chip collecting component for improving chip collection efficiency. The upper surface of the workbench body (1) is equipped with a processing component for improving processing efficiency. The surface of the processing component is equipped with a fixing component for fixing the stainless steel sheet.

2. The stainless steel sheet cutting and processing device according to claim 1, characterized in that: The load-bearing component includes a crossbeam (3), the two ends of which are connected to the two sides of the inner wall of the working groove (2), and a longitudinal beam (4) is installed on the surface of the crossbeam (3), the two ends of which are connected to the two ends of the inner wall of the working groove (2), and a load-bearing sluice plate (5) is installed at the opening formed by the connection of the crossbeam (3), the longitudinal beam (4) and the working groove (2).

3. The stainless steel sheet cutting and processing device according to claim 2, characterized in that: The chip collection assembly includes a partition plate (6), the surface of which is connected to the inner wall of the working groove (2). A chip collection port (7) is provided at one end of the surface of the partition plate (6). A chip collection channel (8) is connected to the surface of the chip collection port (7). A chip collection box (9) is connected to the bottom of the chip collection channel (8). An infrared sensor (10) is installed on the inner wall of the chip collection box (9). A dust pump (11) is installed at one end of the inner wall of the chip collection box (9). A chip discharge pipe (12) is connected to the dust discharge port of the dust pump (11).

4. The stainless steel sheet cutting and processing device according to claim 3, characterized in that: The chip collection assembly also includes a first electric slide rail (13), the output end of which is equipped with a connecting plate (14), and the lower surface of the connecting plate (14) is equipped with a chip cleaning brush (15).

5. The stainless steel sheet cutting and processing device according to claim 4, characterized in that: The processing assembly includes a second electric slide rail (16), which is installed on both sides of the upper surface of the workbench body (1). A support column (17) is installed at the output end of the second electric slide rail (16). A third electric slide rail (18) is installed at the top of the support column (17). A first connecting block (19) is installed at the output end of the third electric slide rail (18). A first telescopic rod (20) is installed at the bottom of the first connecting block (19). A cutting blade (21) is installed at one end of the first telescopic rod (20). A protective shell (22) is installed on the surface of the cutting blade (21).

6. The stainless steel sheet cutting and processing device according to claim 5, characterized in that: The processing assembly also includes a fourth electric slide rail (23), which is connected to the end of the worktable body near the second electric slide rail (16).

7. The stainless steel sheet cutting and processing device according to claim 6, characterized in that: The fixing component includes a second connecting block (24), the surface of which is connected to the output end of the fourth electric slide rail (23). A second telescopic rod (25) is installed on the surface of the second connecting block (24). A third telescopic rod (26) is installed at one end of the second telescopic rod (25). A fixing plate (27) is installed at one end of the third telescopic rod (26). An anti-slip pad (28) is installed on the lower surface of the fixing plate (27).

Citation Information

Patent Citations

  • Cutting device for stainless steel product machining

    CN213764253U