Scrap cleaning device for anti-slip threaded rod production
By designing a chip cleaning device for anti-slip threaded rod production, the automated collection and cleaning of chips was achieved, solving the problems of decreased equipment precision and environmental pollution caused by chip accumulation, and improving production efficiency and material utilization.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-27
- Publication Date
- 2026-03-31
AI Technical Summary
During screw machining, the accumulation of debris affects the motion accuracy and stability of the equipment, leading to a decrease in machining accuracy and potentially causing environmental pollution and equipment damage.
A debris cleaning device for anti-slip threaded rod production was designed, including an operating table, a clamping assembly, a drive mechanism, a collection assembly, a scraping assembly, and a cleaning assembly. The device collects and cleans debris automatically, and achieves centralized processing and resource recycling of debris through the cooperation of a rotating plate, a cleaning plate, a scraper, and a collection box.
It effectively reduces the amount of debris scattered in the working environment, reduces the labor intensity of workers, improves production efficiency, reduces the risk of equipment failure, maintains the cleanliness of the working environment, and improves material utilization.
Smart Images

Figure CN224058113U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of screw processing technology, specifically to a debris cleaning device for the production of anti-slip threaded rods. Background Technology
[0002] In utility model patent application CN222552035U, published on March 4, 2025, entitled "A Screw Production Device," this utility model discloses a screw production device, belonging to the field of screw production technology. The key technical point is that the screw production device includes a base, a thread rolling wheel, and an extrusion assembly. The extrusion assembly includes a mounting base, a cleaning roller, a collecting body, and an insertion part. The mounting base is located below a crossbeam at the top of the base, and a pusher cylinder is installed on the crossbeam to push the mounting base. The cleaning roller moves downwards and rotates to connect with the mounting base. The insertion part is fixedly connected to the mounting base, and the collecting body is inserted into the insertion part. As the screw rotates, the cleaning roller can rotate. It uses the rubber sleeve to squeeze the screw and clean the debris generated by the thread rolling. The debris will adhere to the surface of the rubber sleeve. The collecting body scrapes and cleans the rubber sleeve, thus cleaning and collecting the debris, ensuring the cleanliness of the rubber sleeve surface, and thus ensuring the cleaning effect of the rubber sleeve on the screw. At the same time, the cleaning roller located between the two thread rolling wheels can limit the rolling screw, suppress screw runout, and ensure the accuracy of thread rolling.
[0003] In the prior art, including the aforementioned patents, the screw generates a lot of debris during processing. The debris generated during the production process may accumulate on the table or in front of the equipment. The accumulated debris not only affects the motion accuracy and stability of the equipment, but also leads to a decrease in processing accuracy. Utility Model Content
[0004] The purpose of this invention is to provide a debris cleaning device for the production of anti-slip threaded rods, so as to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a debris cleaning device for anti-slip threaded rod production, comprising an operating table, on which a processing device for processing screws is installed, an installation groove is provided on the operating table, an installation plate is provided on the operating table, a horizontal plate is fixedly connected to one side of the installation plate, a clamping assembly for fixing the screw is installed on the installation plate, a driving mechanism for moving the installation plate is provided in the installation groove, a collection assembly is provided between the processing device and the installation groove, the collection assembly includes a groove on the operating table, a rotating plate is rotatably provided in the groove, and an electric push rod connected to the rotating plate is provided in the groove, a cleaning assembly is provided on the rotating plate, a recycling assembly is provided on one side of the rotating plate at the turning point, scraping assemblies are provided on both sides of the groove, the scraping assembly includes two sets of scrapers symmetrically arranged on the operating table, and an adjustment mechanism for driving the two sets of scrapers to move relative to each other is provided on the operating table.
[0006] Furthermore, the adjustment mechanism includes a slider disposed at the bottom end of the scraper, a groove for cooperating with the slider is provided on the operating table, an irregular rod is slidably disposed on the two sliders, a pushing mechanism for cooperating with the irregular rod is provided at the bottom end of the cross plate, and a reset member is provided at the end of the irregular rod.
[0007] Furthermore, the pushing mechanism includes a fixed plate disposed at the bottom end of the horizontal plate, a push rod slidably disposed on the fixed plate, the end of the push rod being used to push the irregular rod to move, and the push rod being slidably connected to the mounting plate, the end of the push rod being connected to a limiting plate, and two sets of first springs being fixedly disposed between the fixed plate and the limiting plate.
[0008] Furthermore, the reset component includes a second spring, which is connected to the end of the irregular rod and the inner wall of the operating table.
[0009] Furthermore, the scraping assembly includes a cleaning plate slidably disposed on the rotating plate, with connecting blocks connected to both ends of the cleaning plate. The inner wall of the groove is symmetrically provided with inclined grooves that cooperate with the connecting blocks. A third spring is installed in the inclined groove, and the end of the third spring is connected to the connecting block.
[0010] Furthermore, the collection assembly includes a placement slot on one side of the rotating plate, and one side of the placement slot extends through the operating table, with a collection box slidably disposed within the placement slot.
[0011] Furthermore, the driving mechanism includes a driving device installed in the mounting slot, a driving block slidably disposed on the driving device, and the driving block being located at the bottom end of the mounting plate.
[0012] Furthermore, the clamping assembly includes a mounting bracket mounted on a mounting plate. A motor is provided on the horizontal plate, and the output end of the motor is connected to a drive gear, which is mounted on the mounting bracket. A first rotating element meshing with the drive gear is provided on one side of the drive gear, and a second rotating element meshing with the first rotating element is provided on one side of the first rotating element. Both the first and second rotating elements consist of a gear and a connecting rod. Two first hinge rods are rotatably provided at the bottom of the mounting bracket, and each first hinge rod is rotatably connected to a mounting rod by the first and second rotating elements respectively. Two sets of second hinge rods are rotatably provided on the mounting bracket, and the end of the second hinge rod away from the mounting bracket is rotatably connected to the middle section of the mounting rod. A clamp is provided at the end of the mounting rod.
[0013] Furthermore, the clamp is a V-shaped clamp, and anti-slip grooves are provided on the clamp.
[0014] Furthermore, the inner wall of the groove is provided with two sets of protrusions, and each set of protrusions has multiple protrusions. The protrusions are used to cooperate with the rotating plate, and the rotating plate is a flexible plate.
[0015] Compared with the prior art, the beneficial effects of this utility model are: the debris cleaning device for anti-slip threaded rod production is reasonable and has the following advantages:
[0016] (1) Through the cooperation between the groove, rotating plate, cleaning plate, connecting block, inclined groove, third spring, protrusion, placement groove, collection box and electric push rod, it is convenient to collect and process the debris, avoid the debris from flying around, thereby reducing the pollution to the working environment and the potential damage to the equipment. Most of the debris generated during the processing will directly enter the groove, while the debris attached to the rotating plate will be cleaned off by the rotation of the rotating plate and the cooperation of the cleaning plate. The inner wall of the groove is provided with protrusions. The design of the protrusions can make the rotating plate vibrate when rotating, which helps to loosen and remove the debris attached to the rotating plate. This automated cleaning method not only reduces the need for manual cleaning and lowers the labor intensity of workers, but also helps maintain a clean working environment and prevents debris from polluting or damaging the working environment and equipment. In addition, the centrally collected debris is easier to process and recycle. The collected debris contains valuable materials, and through centralized collection, it is easier to recycle and reuse resources, improve material utilization, reduce waste, and reduce production interruptions and improve production efficiency. At the same time, it also reduces the risk of equipment failure due to untimely cleaning.
[0017] (2) The cooperation between the fixed plate, push rod, limit plate, first spring, slide groove, scraper, slider, special-shaped rod and second spring facilitates the collection of debris on the operating table, which is convenient for subsequent processing. The scraping assembly, through the design of two sets of scrapers, can effectively scrape the debris generated during the processing from both sides of the groove of the operating table and collect it on the rotating plate, thereby improving the efficiency of debris cleaning. When the drive device moves the mounting plate, the push rod pushes the special-shaped rod, which in turn drives the scraper to perform the cleaning action, reducing manual intervention. In addition, the design of reset components such as the second spring and the third spring ensures that the cleaning assembly can automatically reset after completing the cleaning action. The above scheme reduces the scattering of debris in the working area, helps to maintain the cleanliness of the working environment, reduces safety hazards in the working environment and the risk of equipment damage caused by improper human operation, and also reduces equipment downtime, improving the efficiency and life of the equipment. Attached Figure Description
[0018] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0019] Figure 2 This is a schematic diagram of the drive mechanism of this utility model;
[0020] Figure 3 This is a schematic diagram of the clamping assembly of this utility model;
[0021] Figure 4 This is a schematic diagram of the structure of the propulsion mechanism of this utility model;
[0022] Figure 5 This is a schematic diagram of the scraping assembly of this utility model;
[0023] Figure 6 This is a schematic diagram of the structure of the collecting component of this utility model;
[0024] Figure 7 This utility model Figure 6 A magnified view of a portion of point A shown.
[0025] In the diagram: 100, operating table; 101, processing equipment; 200, mounting slot; 201, drive device; 202, drive block; 203, mounting plate; 204, horizontal plate; 300, mounting bracket; 301, motor; 302, drive gear; 303, first rotating element; 304, second rotating element; 305, first hinge rod; 306, second hinge rod; 307, mounting rod; 308, fixture; 400. Fixed plate; 401, push rod; 402, limiting plate; 403, first spring; 404, slide groove; 405, scraper; 406, slider; 407, irregular rod; 408, second spring; 500, groove; 501, rotating plate; 502, cleaning plate; 503, connecting block; 504, inclined groove; 505, third spring; 506, protrusion; 507, placement groove; 508, collection box; 509, electric push rod. Detailed Implementation
[0026] 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.
[0027] Please see Figure 1-7 The present invention provides a technical solution as follows:
[0028] Example 1:
[0029] A debris cleaning device for producing anti-slip threaded rods includes an operating table 100, on which a processing device 101 for processing threaded rods is mounted. The operating table 100 has a mounting groove 200, and a mounting plate 203 is mounted on it. A horizontal plate 204 is fixedly connected to one side of the mounting plate 203. A clamping assembly for fixing the threaded rod is mounted on the mounting plate 203. A driving mechanism for moving the mounting plate 203 is provided within the mounting groove 200. A collection assembly is provided between the processing device 101 and the mounting groove 200. The collection component includes a groove 500 formed on the operating table 100, a rotating plate 501 rotatably disposed in the groove 500, and an electric push rod 509 connected to the rotating plate 501 disposed in the groove 500. A cleaning component is disposed on the rotating plate 501, and a recycling component is disposed on one side of the rotating plate 501 at the turning point. Scraping components are disposed on both sides of the groove 500. The scraping components include two sets of scrapers 405 symmetrically disposed on the operating table 100. An adjustment mechanism is provided on the operating table 100 to drive the two sets of scrapers 405 to move relative to each other.
[0030] The adjustment mechanism includes a slider 406 disposed at the bottom end of the scraper 405, a groove 404 that cooperates with the slider 406 is provided on the operating table 100, an irregular rod 407 is slidably disposed on the two sliders 406, a pushing mechanism that cooperates with the irregular rod 407 is provided at the bottom end of the horizontal plate 204, and a reset member is provided at the end of the irregular rod 407.
[0031] The pushing mechanism includes a fixed plate 400 disposed at the bottom of the horizontal plate 204. A push rod 401 is slidably disposed on the fixed plate 400, and the end of the push rod 401 is used to push the irregular rod 407 to move. The push rod 401 is slidably connected to the mounting plate 203. The end of the push rod 401 is connected to a limiting plate 402. Two sets of first springs 403 are fixedly disposed between the fixed plate 400 and the limiting plate 402.
[0032] The reset component includes a second spring 408, which is connected to the end of the shaped rod 407 and the inner wall of the operating table 100.
[0033] The scraping assembly includes a cleaning plate 502 slidably disposed on a rotating plate 501. The cleaning plate 502 is connected to connecting blocks 503 at both ends. The inner wall of the groove 500 is symmetrically provided with inclined grooves 504 that cooperate with the connecting blocks 503. A third spring 505 is installed in the inclined groove 504, and the end of the third spring 505 is connected to the connecting block 503.
[0034] The collection assembly includes a placement slot 507 opened on one side of the rotating plate 501, and one side of the placement slot 507 extends through the operating table 100. A collection box 508 is slidably disposed in the placement slot 507.
[0035] The driving mechanism includes a driving device 201 installed in the mounting slot 200, and a driving block 202 is slidably provided on the driving device 201, and the driving block 202 is located at the bottom end of the mounting plate 203.
[0036] The clamping assembly includes a mounting bracket 300 mounted on a mounting plate 203. A motor 301 is mounted on a horizontal plate 204. The output end of the motor 301 is connected to a drive gear 302, and the drive gear 302 is mounted on the mounting bracket 300. A first rotating element 303 meshes with the drive gear 302 on one side, and a second rotating element 304 meshes with the first rotating element 303 on one side. Both the first rotating element 303 and the second rotating element 304 are composed of a gear and a connecting rod. Two first hinge rods 305 are rotatably mounted on the bottom of the mounting bracket 300, and each first hinge rod 305 is rotatably connected to a mounting rod 307, which is rotatably connected to the first rotating element 303 and the second rotating element 304 respectively. Two sets of second hinge rods 306 are rotatably mounted on the mounting bracket 300, and the end of the second hinge rod 306 away from the mounting bracket 300 is rotatably connected to the middle section of the mounting rod 307. A clamp 308 is provided at the end of the mounting rod 307.
[0037] The clamp 308 is a V-shaped clamp, and anti-slip grooves are provided on the clamp 308.
[0038] The inner wall of the groove 500 is provided with two sets of protrusions 506, and there are multiple protrusions 506 in each set. The protrusions 506 are used to cooperate with the rotating plate 501, and the rotating plate 501 is a flexible plate.
[0039] Working principle: In use, the screw to be processed is first placed between two sets of clamps 308. Motor 301 serves as the power source. When motor 301 is started, it drives the drive gear 302 to rotate. Simultaneously, the drive gear 302 rotates, causing the first rotating element 303 to rotate. The first rotating element 303 then drives the second rotating element 304, which is meshed with it on one side, to rotate. The first hinge rod 305 and the second hinge rod 306 are used to install the mounting rod 307. When the first rotating element 303 and the second rotating element... When 304 rotates, it drives the two mounting rods 307 to move relative to each other, thereby realizing the opening and closing action of the clamp 308, which facilitates the processing of the screw to be processed. The second rotating element 304 has only half a tooth to realize unidirectional movement and prevent reverse movement. The anti-slip groove opened on the inner wall of the clamp 308 can prevent the screw from sliding during processing and ensure the stability of clamping. After the screw to be processed is fixed, the drive device 201 drives the screw to move to one side of the processing equipment 101 and processes the screw through the processing equipment 101.
[0040] Secondly, while most of the debris generated during processing enters the groove 500, some debris remains on both sides of the groove 500 during processing by the processing equipment 101. When the drive device 201 moves the mounting plate 203 forward, it also moves the push rod 401 forward. The push rod 401, in turn, pushes the shaped rod 407 forward. The shaped rod 407 slides within the slider 406. Since the slider 406 at the bottom of the scraper 405 is slidably positioned within the groove 404, the shaped rod 407 moves... Simultaneously, the two sets of sliders 406 slide within the groove 404 and move relative to each other, causing the scraper 405 to scrape the debris on both sides of the groove 500 into the groove 500 for easy cleaning. When the end of the shaped rod 407 reaches the top, the scraper 405 does not move. Under the action of the first spring 403, the fixing plate 400 continues to slide forward, facilitating feeding by the screw. After processing, under the action of the drive device 201, the mounting plate 203 is reset, and the push rod 401 moves away from the shaped rod 407. Under the action of the second spring 408... The scraper 405 is reset, facilitating the next operation. The first spring 403 also serves to reset. Debris on the processing equipment 101 enters the groove 500 for centralized processing. The groove 500 allows the debris to slide into the collection box 508. However, some debris adheres to the rotating plate 501. At this point, the electric push rod 509 can rotate one end of the rotating plate 501 upwards. As the rotating plate 501 rotates upwards, it squeezes the cleaning plate 502. Because the cleaning plate 502... Under the action of the connecting blocks 503 on both sides, the cleaning plate 502 is slidably set in the inclined groove 504 through the third spring 505. Therefore, while the rotating plate 501 rotates upward, the cleaning plate 502 will slide downward on the rotating plate 501, thereby cleaning the debris attached to the rotating plate 501. Here, the rotating plate 501 is a flexible plate. The design of the protrusion 506 can make the rotating plate 501 vibrate when rotating, which helps to loosen and remove the debris attached to the rotating plate 501, making it easier for it to fall into the collection box 508.
[0041] Finally, when the electric push rod 509 drives the rotating plate 501 to reset, the cleaning plate 502 is pushed to reset by the action of the third spring 505. After the processing equipment 101 finishes processing, the staff only needs to pull out the collection box 508 to clean it. This method can automatically clean up the debris, reduce the need for manual cleaning, and also help maintain the cleanliness of the working environment and avoid debris from causing pollution or damage to the working environment and equipment.
[0042] 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 chip cleaning device for producing anti-slip threaded rods, comprising an operating table (100), characterized in that: The operation platform (100) is provided with a machining device (101) for machining a screw rod, the operation platform (100) is provided with a mounting groove (200), the operation platform (100) is provided with a mounting plate (203), one side of the mounting plate (203) is fixedly connected with a horizontal plate (204), the mounting plate (203) is provided with a clamping assembly for fixing the screw rod, the mounting groove (200) is provided with a driving mechanism for driving the mounting plate (203) to move, the machining device (101) and the mounting groove (200) are provided with a collecting assembly, the collecting assembly comprises a groove (500) formed in the operation platform (100), the groove (500) is rotatably provided with a rotating plate (501), and the groove (500) is provided with an electric push rod (509) connected with the rotating plate (501), the rotating plate (501) is provided with a cleaning assembly, the rotating plate (501) is provided with a recycling assembly on the side of the rotation point, and the groove (500) is provided with a material scraping assembly on the two sides.
2. The chip cleaning device for the production of an anti-slip threaded rod according to claim 1, characterized in that: The adjusting mechanism comprises a sliding block (406) arranged at the bottom end of the scraper (405), the operation platform (100) is provided with a sliding groove (404) matched with the sliding block (406), two sliding blocks (406) are provided with a special-shaped rod (407), the bottom end of the horizontal plate (204) is provided with a pushing mechanism matched with the special-shaped rod (407), and the end of the special-shaped rod (407) is provided with a reset member.
3. The chip cleaning device for the production of a thread rod against slipping according to claim 2, characterized in that: The pushing mechanism comprises a fixed plate (400) arranged at the bottom end of the horizontal plate (204), the fixed plate (400) is slidably provided with a push rod (401), the end of the push rod (401) is used for pushing the special-shaped rod (407) to move, the push rod (401) is slidably connected with the mounting plate (203), the end of the push rod (401) is connected with a limiting plate (402), and two groups of first springs (403) are fixedly arranged between the fixed plate (400) and the limiting plate (402).
4. The chip cleaning device for the production of an anti-slip threaded rod according to claim 2, characterized in that: The reset member comprises a second spring (408), and the second spring (408) is connected with the end of the special-shaped rod (407) and the inner groove wall of the operation platform (100) respectively.
5. The chip cleaning device for the production of an anti-slip threaded rod according to claim 1, characterized in that: The material scraping assembly comprises a cleaning plate (502) slidably arranged on the rotating plate (501), the cleaning plate (502) is connected with a connecting block (503) at both ends, the inner wall of the groove (500) is symmetrically provided with a chute (504) matched with the connecting block (503), and the chute (504) is provided with a third spring (505), and the end of the third spring (505) is connected with the connecting block (503).
6. The chip cleaning device for the production of an anti-slip threaded rod according to claim 5, characterized in that: The collecting assembly comprises a placing groove (507) formed in one side of the rotating plate (501), and the placing groove (507) penetrates through the operation platform (100) on one side, and the placing groove (507) is slidably provided with a collecting box (508).
7. The chip cleaning device for the production of an anti-slip threaded rod according to claim 1, characterized in that: The driving mechanism comprises a driving device (201) mounted in the mounting groove (200), a driving block (202) is slidably arranged on the driving device (201), and the driving block (202) is located at the bottom end of the mounting plate (203).
8. The chip cleaning device for the production of an anti-slip threaded rod according to claim 1, characterized in that: The clamping assembly comprises a mounting frame (300) mounted on the mounting plate (203), a motor (301) is arranged on the cross plate (204), the output end of the motor (301) is connected with a driving gear (302), the driving gear (302) is mounted on the mounting frame (300), one side of the driving gear (302) is provided with a first rotating element (303) in mesh with the driving gear (302), one side of the first rotating element (303) is provided with a second rotating element (304) in mesh with the first rotating element (303), the first rotating element (303) and the second rotating element (304) are both composed of a gear and a connecting rod, two first hinged rods (305) are rotatably arranged at the bottom of the mounting frame (300), each first hinged rod (305) is rotatably connected with a mounting rod (307) of the first rotating element (303) and the second rotating element (304) respectively, two groups of second hinged rods (306) are rotatably arranged on the mounting frame (300), one end of the second hinged rod (306) away from the mounting frame (300) is rotatably connected with the mounting rod (307) at the middle position, and the end of the mounting rod (307) is provided with a clamp (308).
9. The chip cleaning device for the production of an anti-slip threaded rod according to claim 8, characterized in that: The clamp (308) is a V-shaped clamp, and an anti-skid groove is formed in the clamp (308).
10. The chip cleaning device for the production of an anti-slip threaded rod according to claim 1, characterized in that: Two groups of convex blocks (506) are arranged on the inner wall of the groove (500), each group of convex blocks (506) has a plurality of convex blocks (506), the convex blocks (506) are used for cooperating with the rotating plate (501), and the rotating plate (501) is a flexible plate.