Polishing equipment with dust filtering function for metal zipper manufacturing
By introducing a dustproof cloth filter and scraper cleaning structure into the metal zipper polishing equipment, combined with the transmission mechanism, the environmental and health hazards of dust during the polishing process are solved, achieving efficient dust filtration and collection, and reducing energy consumption and operating costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-24
- Publication Date
- 2026-03-20
AI Technical Summary
Existing metal zipper polishing equipment generates a large amount of dust during the polishing process, affecting the workshop environment and workers' health. Furthermore, the dust collection device is prone to clogging, affecting normal operation.
A polishing device with dust filtration function was designed. Through a combination of dust cloth filtration and scraper cleaning structure, combined with a transmission mechanism and fan, dust can be effectively filtered and collected, avoiding dust blockage and reducing energy consumption.
It effectively filters and collects dust during the polishing process, ensuring normal equipment operation, reducing the wear and tear on the dustproof cloth, improving filtration efficiency and service life, and reducing operating costs.
Smart Images

Figure CN224011979U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of polishing technology for metal zipper manufacturing, specifically a polishing device for metal zipper manufacturing with dust filtration function. Background Technology
[0002] Zippers are connectors that use continuously arranged teeth to join or separate items. They are now widely used in clothing, bags, tents, etc. In the traditional metal zipper manufacturing process, metal zipper granules are fed into a zipper granulator to combine the zipper granules with fabric tape. Among them, Chinese Patent No.: CN202323219435.9 discloses a metal zipper granulator, which includes a polishing machine and a granulator body. The outer surfaces of the two fixed blocks on the rear side are rotatably connected to lead screws, the outer surfaces of the two fixed blocks on the left side are fixedly connected to slide rods, and the outer surface of the right rear fixed block is fixedly installed with a first motor. The outer surfaces of the lead screws and slide rods are provided with sliders. The bottom outer surface of the fixed frame is fixedly installed with a first electric push rod, and the bottom outer surface of the mounting plate is fixedly installed with a second motor. The output end of the second motor is fixedly connected to a polishing broom. This metal zipper grinding machine uses a first electric push rod to drive a second motor and a polishing brush. Together with the first motor, lead screw, and slider, it can effectively polish the gaps and recesses of the zipper, resulting in a more complete polish and improving the zipper's appearance, uniformity, and quality.
[0003] Based on the above, the inventors have discovered the following problems: The above-mentioned device can effectively polish zippers, but it ignores the large amount of dust generated during the polishing process. This dust not only affects the workshop environment but may also harm the health of workers. Inhalation of this dust can lead to respiratory diseases in workers. Therefore, it is necessary to equip the device with effective dust collection and treatment equipment to reduce the harm of dust to the environment and health. Furthermore, dust can clog the dust collection device. In order to ensure the normal operation of the dust collection device, it is also necessary to filter the dust to ensure the normal operation of the zipper polishing process. Utility Model Content
[0004] To achieve the above objectives, this utility model provides the following technical solution: a polishing device for manufacturing metal zippers with dust filtration function, comprising a base, a conveying mechanism at the upper end of the base, a polishing mechanism at the upper end of the conveying mechanism, a dust suction port between the polishing mechanisms, a conveying pipe at the dust suction port, a dust suction component connected to the conveying pipe, and a power mechanism on the side of the base. The polishing mechanism includes a drive roller, which is connected to the power mechanism, and a connecting shaft is connected to the drive roller. The connecting shaft is connected to a transmission mechanism, which is connected to one end of the dust suction component.
[0005] Furthermore, the dust collection assembly includes a housing, a filter assembly, and a connecting post. The end of the delivery pipe away from the dust collection port is provided with an inlet hole, which is connected to one side of the upper end of the housing. An operating chamber is provided on the side of the housing away from the inlet hole, and a fan is provided in the operating chamber. The fan is connected to the connecting post, which passes through the housing and is connected to the transmission mechanism. A dust collection groove is provided at the lower end of the inlet hole and inside the housing, and a filter assembly is provided on one side of the dust collection groove.
[0006] Furthermore, the filter assembly includes a dustproof cloth, a rectangular cavity is provided on one side of the dust collection tank and at the lower end of the housing, a rotating roller is provided on the side wall of the housing, a linkage roller is provided on the inner wall of the rectangular cavity, the rotating roller and the linkage roller are vertically aligned, and a dustproof cloth is fitted on the rotating roller and the linkage roller, a transmission cavity is provided on the side wall of the housing, a gear one is provided on the linkage roller passing through the side wall of the housing and extending into the transmission cavity, a gear two is meshed on the gear one, a connecting post is provided on the side of both the gear two and the gear one, the connecting post is movably connected to the inner wall of the transmission cavity, a rotating shaft is provided at the end of the gear two away from the connecting post, a transmission fan is provided on the rotating shaft extending into the housing, a scraper is provided at the lower end of the linkage roller, the two ends of the scraper are connected to the inner wall of the rectangular cavity, and the upper end of the scraper is in contact with the surface of the dustproof cloth.
[0007] Furthermore, the transmission mechanism includes a pair of transmission wheels and a transmission belt, wherein the pair of transmission wheels are respectively connected to a connecting shaft and a connecting column, and the transmission belt is connected to the pair of transmission wheels.
[0008] Furthermore, the scraper is provided with a collection groove at its lower end, and the collection groove is movably connected to the lower end of the rectangular cavity.
[0009] Furthermore, the dust collection trough is movably connected to the lower end of the housing.
[0010] Furthermore, the transmission fan is horizontally aligned with the fan and the dustproof cloth.
[0011] Compared with the prior art, the beneficial effects of this utility model are: the polishing equipment for manufacturing metal zippers with dust filtration function is reasonable and has the following advantages:
[0012] (1) Through the design of the dustproof cloth, the dust sucked into the box can be filtered and collected, avoiding the dust from affecting the operation of the drive fan and the fan. The air flow generated by the fan rotation drives the drive fan to rotate. Combined with the cooperation of gear one and gear two, the dustproof cloth moves on the rotating roller and the linkage roller, so that different parts on the dustproof cloth are filtered in sequence, ensuring the normal operation of the filtration operation and avoiding dust blockage on the dustproof cloth, which affects the dust collection effect of the dust collection component. In addition, the design of the scraper can scrape off the excess dust on the dustproof cloth, so that the dustproof cloth can continue to perform the filtration effect, reducing the wear of the dustproof cloth and significantly improving the overall filtration efficiency and service life.
[0013] (2) The design of transmitting the rotational power of the power mechanism to the fan through the cooperation of the transmission mechanism, connecting shaft and connecting column can not only make the air in the housing, inlet, conveying pipe and dust suction port flow, so that the dust at the dust suction port port enters the dust collection tank with the airflow, and achieve the cleaning and collection effect of dust generated during the polishing process; but also eliminates the need to use an additional power mechanism, reducing the energy consumption of the overall device, achieving higher energy utilization efficiency and lower operating costs. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the front structure of this utility model;
[0015] Figure 2 This is a schematic diagram of the rear structure of the present invention;
[0016] Figure 3 This is a schematic diagram of the cross-sectional structure of the dust collection component of this utility model;
[0017] Figure 4 This is a schematic diagram showing the detailed structure of the dust collection component of this utility model;
[0018] Figure 5 This is an exploded view of the dust collection component of this utility model;
[0019] Figure 6 This utility model Figure 1 Enlarged structural diagram at point A.
[0020] In the diagram: 1. Base; 2. Power mechanism; 4. Connecting shaft; 5. Housing; 7. Conveying pipe; 8. Dust suction port; 9. Polishing mechanism; 10. Conveying mechanism; 11. Manhole; 12. Dust collection trough; 13. Rectangular cavity; 14. Operating cavity; 15. Fan; 16. Transmission fan; 17. Dustproof cloth; 18. Connecting column; 19. Collection trough; 20. Gear 1; 21. Transmission cavity; 22. Gear 2; 23. Transmission mechanism; 24. Rotating roller; 25. Linkage roller; 26. Scraper; 27. Connecting column. 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 1-6 The present invention provides a technical solution as follows:
[0023] Example:
[0024] In this embodiment, a polishing device for manufacturing metal zippers with dust filtration function includes a base 1, a conveying mechanism 10 at the upper end of the base 1, a polishing mechanism 9 at the upper end of the conveying mechanism 10, a dust suction port 8 between the polishing mechanisms 9, a conveying pipe 7 on the dust suction port 8, a dust suction component connected to the conveying pipe 7, and a power mechanism 2 on the side of the base 1. The polishing mechanism 9 includes a drive roller, which is connected to the power mechanism 2 and a connecting shaft 4. The connecting shaft 4 is connected to a transmission mechanism 23, which is connected to one end of the dust suction component.
[0025] The dust collection assembly includes a housing 5, a filter assembly, and a connecting post 18. The end of the delivery pipe 7 away from the dust collection port 8 is provided with an inlet 11, which is connected to the upper side of the housing 5. The side of the housing 5 away from the inlet 11 is provided with an operating chamber 14, which is provided with a fan 15. The fan 15 is connected to the connecting post 18, which passes through the housing 5 and is connected to the transmission mechanism 23. The lower end of the inlet 11 and located inside the housing 5 is provided with a dust collection groove 12, and a filter assembly is provided on one side of the dust collection groove 12.
[0026] The transmission mechanism 23 drives the connecting column 18 to rotate, which in turn drives the fan 15 to rotate. The rotation of the fan 15 causes the air in the housing 5, the inlet 11, the conveying pipe 7 and the dust suction port 8 to flow, thereby drawing the dust at the dust suction port 8 into the dust collection tank 12 with the airflow, achieving the cleaning and collection effect of the dust generated during the polishing process.
[0027] The filter assembly includes a dustproof cloth 17. A rectangular cavity 13 is provided on one side of the dust collection trough 12 and at the lower end of the housing 5. A rotating roller 24 is provided on the side wall of the housing 5. A linkage roller 25 is provided on the inner wall of the rectangular cavity 13. The rotating roller 24 and the linkage roller 25 are vertically aligned, and the dustproof cloth 17 is sleeved on the rotating roller 24 and the linkage roller 25. A transmission cavity 21 is opened on the side wall of the housing 5. The linkage roller 25 passes through the side wall of the housing 5 and extends into the transmission cavity 21. Gear 20, gear 22 meshes with gear 22, and connecting posts 27 are provided on the side of both gear 22 and gear 20. The connecting posts 27 are movably connected to the inner wall of the transmission cavity 21. A rotating shaft is provided at the end of gear 22 away from the connecting post 27. The rotating shaft extends into the housing 5 and is provided with a transmission fan 16. A scraper 26 is provided at the lower end of the linkage roller 25. Both ends of the scraper 26 are connected to the inner wall of the rectangular cavity 13, and the upper end of the scraper 26 is in contact with the surface of the dustproof cloth 17.
[0028] The dustproof cloth 17 is designed to filter and collect dust drawn into the housing 5, preventing dust from affecting the operation of the drive fan 16 and the fan 15. The airflow generated by the rotation of the fan 15 drives the drive fan 16 to rotate, which in turn drives the gear 22 to rotate, which in turn drives the gear 20 to rotate, causing the rotating roller 24 to rotate. This causes the dustproof cloth 17 to move on the rotating roller 24 and the linkage roller 25, allowing different parts of the dustproof cloth 17 to be filtered sequentially. This ensures the normal operation of the filtration process and prevents dust from clogging the dustproof cloth 17, which would affect the dust collection effect of the dust collection components. Furthermore, the scraper 26 is designed to scrape off excess dust from the dustproof cloth 17, allowing the dustproof cloth 17 to continue filtering, reducing the wear and tear of the dustproof cloth 17, and significantly improving the overall filtration efficiency and service life.
[0029] The transmission mechanism 23 includes a pair of transmission wheels and a transmission belt. The pair of transmission wheels are respectively connected to the connecting shaft 4 and the connecting column 18, and the transmission belt is connected to the pair of transmission wheels.
[0030] The design of transmitting the rotational power of the power mechanism 2 to the fan 15 through the cooperation of the transmission mechanism 23, the connecting shaft 4 and the connecting column 18 can avoid the use of a separate power mechanism, reduce energy loss, and achieve higher energy utilization efficiency and lower operating costs.
[0031] The scraper 26 is provided with a collection groove 19 at its lower end, and the collection groove 19 is movably connected to the lower end of the rectangular cavity 13.
[0032] The dust collection trough 12 is movably connected to the lower end of the box body 5;
[0033] With the dust collection trough 12 and the collection trough 19 being movably connected to the housing 5 respectively, when the dust collection trough 12 and the collection trough 19 are full of dust, the dust collection trough 12 and the collection trough 19 can be replaced to achieve continuous use of the dust collection trough 12 and the collection trough 19.
[0034] The transmission fan 16 is aligned horizontally with the fan 15 and the dustproof cloth 17.
[0035] Working principle: When the polishing device is operating, its power mechanism 2 is in the start state. Through the cooperation of the transmission mechanism 23, the connecting shaft 4, and the connecting column 18, the rotational power of the power mechanism 2 is transmitted to the fan 15, causing the fan 15 to rotate. The rotation of the fan 15 causes air to flow in the housing 5, the inlet 11, the conveying pipe 7, and the dust suction port 8, thereby drawing the dust at the dust suction port 8 into the dust collection tank 12 with the airflow, achieving the cleaning and collection effect of dust generated during the polishing process. At the same time, the airflow generated by the rotation of the fan 15 drives the transmission fan 16 to rotate, driving... Gear 22 rotates, which in turn drives gear 20 to rotate, causing the rotating roller 24 to rotate. This causes the dustproof cloth 17 to move on the rotating roller 24 and the linkage roller 25, allowing different parts of the dustproof cloth 17 to be filtered sequentially. This ensures the normal operation of the filtration process and prevents dust from clogging the dustproof cloth 17, which would affect the dust collection effect of the dust collection component. Furthermore, the design of the scraper 26 can scrape off excess dust from the dustproof cloth 17, allowing the dustproof cloth 17 to continue filtering, reducing the wear and tear on the dustproof cloth 17, and significantly improving the overall filtration efficiency and service life.
[0036] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
Claims
1. A polishing device for manufacturing metal zippers with dust filtration function, comprising a base (1), characterized in that: The base (1) is provided with a conveying mechanism (10) at its upper end, and a polishing mechanism (9) is provided at its upper end. A dust suction port (8) is provided between the polishing mechanisms (9). A conveying pipe (7) is provided on the dust suction port (8). A dust suction assembly is connected to the conveying pipe (7). A power mechanism (2) is provided on the side of the base (1). The polishing mechanism (9) includes a drive roller. The drive roller is connected to the power mechanism (2). The drive roller is connected to a connecting shaft (4). A transmission mechanism (23) is connected to the connecting shaft (4). The transmission mechanism (23) is connected to one end of the dust suction assembly.
2. The polishing equipment for manufacturing metal zippers with dust filtration function according to claim 1, characterized in that: The dust collection assembly includes a housing (5), a filter assembly, and a connecting post (18). The end of the delivery pipe (7) away from the dust collection port (8) is provided with an inlet (11). The inlet (11) is connected to one side of the upper end of the housing (5). The side of the housing (5) away from the inlet (11) is provided with an operating chamber (14). The operating chamber (14) is provided with a fan (15). The fan (15) is connected to the connecting post (18). The connecting post (18) passes through the housing (5) and is connected to the transmission mechanism (23). The lower end of the inlet (11) and located inside the housing (5) is provided with a dust collection groove (12). The side of the dust collection groove (12) is provided with a filter assembly.
3. The polishing equipment for manufacturing metal zippers with dust filtration function according to claim 2, characterized in that: The filter assembly includes a dustproof cloth (17). A rectangular cavity (13) is provided on one side of the dust collection tank (12) and at the lower end of the housing (5). A rotating roller (24) is provided on the side wall of the housing (5). A linkage roller (25) is provided on the inner wall of the rectangular cavity (13). The rotating roller (24) and the linkage roller (25) are vertically aligned, and the dustproof cloth (17) is fitted on the rotating roller (24) and the linkage roller (25). A transmission cavity (21) is opened on the side wall of the housing (5). The linkage roller (25) passes through the side wall of the housing (5) and extends into the transmission cavity (21) and is equipped with gears. Gear 1 (20) meshes with gear 2 (22). Both gear 2 (22) and gear 1 (20) are provided with connecting columns (27) on their sides. The connecting columns (27) are movably connected to the inner wall of the transmission cavity (21). One end of gear 2 (22) away from the connecting column (27) is provided with a rotating shaft. The rotating shaft extends into the housing (5) and is provided with a transmission fan (16). The lower end of the linkage roller (25) is provided with a scraper (26). Both ends of the scraper (26) are connected to the inner wall of the rectangular cavity (13), and the upper end of the scraper (26) is in contact with the surface of the dustproof cloth (17).
4. The polishing equipment for manufacturing metal zippers with dust filtration function according to claim 3, characterized in that: The transmission mechanism (23) includes a pair of transmission wheels and a transmission belt. The pair of transmission wheels are respectively connected to the connecting shaft (4) and the connecting column (18), and the transmission belt is connected to the pair of transmission wheels.
5. A polishing device for manufacturing metal zippers with dust filtration function according to claim 4, characterized in that: The scraper (26) is provided with a collection groove (19) at its lower end, and the collection groove (19) is movably connected to the lower end of the rectangular cavity (13).
6. A polishing device for manufacturing metal zippers with dust filtration function according to claim 5, characterized in that: The dust collection trough (12) is movably connected to the lower end of the box body (5).
7. A polishing device for manufacturing metal zippers with dust filtration function according to claim 6, characterized in that: The transmission fan (16) is aligned horizontally with the fan (15) and the dustproof cloth (17).
Citation Information
Patent Citations
Metal zipper granulator
CN221382712U