Flexible rubber ring numerical control polishing machine capable of collecting sweeps

By integrating vacuum cleaner and storage components on the CNC polishing machine, the problems of rubber debris splashing and blockage are solved, and efficient debris recycling and crushing are achieved, improving the service life and operation convenience of the equipment.

CN223146834UActive Publication Date: 2025-07-25XINGTIAN TRANSMISSION SYST (FOSHAN) CO LTD
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Patent Information

Application Number
CN202421816670.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-30
Publication Date
2025-07-25
Estimated Expiration
2034-07-30

AI Technical Summary

Technical Problem

When the CNC polishing machine polishes the flexible rubber ring, rubber debris is prone to splash everywhere and difficult to effectively recover, especially large particles of debris are prone to clogging the vacuum cleaner mechanism, affecting the recycling efficiency and effect.

Method used

A flexible rubber ring CNC polishing machine that can collect waste chips is designed, including vacuum cleaner, storage component and storage component. The rubber debris is collected through a vacuum cleaner and transported to the storage box for crushing treatment. It is crushed by an electric crushing shaft and stored in the storage box.

Benefits of technology

It realizes efficient collection and crushing of rubber debris, improves recycling efficiency, extends the service life of the polishing machine body, and provides convenience for observation of the polishing process.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223146834U_ABST
Patent Text Reader

Abstract

The utility model relates to the field of polishing machines, in particular to a flexible rubber ring numerical control polishing machine capable of collecting scraps, and solves the technical problems that when a flexible rubber ring is polished and ground by a numerical control polishing machine, the generated rubber scraps are easy to splash around and are difficult to effectively recycle; according to the technical scheme, the flexible rubber ring numerical control polishing machine capable of collecting the scraps comprises a polishing machine body, a shell assembly, a dust collection assembly, a supporting assembly, a storage assembly, a switch assembly and a storage assembly; according to the rubber ring polishing machine, the dust collection hopper is matched with the dust collector to collect chippings generated when the polishing machine body polishes a rubber ring, the chippings are conveyed into the storage box internally provided with the electric smashing shaft to be smashed, and the smashed rubber chippings are stored in the storage box; the problems that when a numerical control polishing machine is used for polishing and grinding a flexible rubber ring, generated rubber chippings are prone to splashing all around, and the rubber chippings are difficult to effectively recycle are solved.
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Description

Technical Field

[0001] The utility model belongs to the field of polishing machines, and particularly relates to a numerically controlled polishing machine for flexible rubber rings capable of collecting waste chips. Background Art

[0002] A polishing machine is a device used to grind and polish the surface of materials, and is widely used in fields such as metal processing, stone processing, glass processing, and wood processing.

[0003] When the existing numerically controlled polishing machine polishes and grinds a flexible rubber ring, a lot of rubber chips are often generated. The rubber chips are very easy to splash along the periphery of the grinding structure during polishing and grinding, and the rubber chips generated during grinding are difficult to be collected by workers when they fall on the ground. Large rubber chips are easy to block the dust collection mechanism, affect the effect of the dust collection structure in collecting rubber chips, and also affect the effect and efficiency of subsequent rubber chip recycling and processing.

[0004] Therefore, aiming at the problem that when the above-mentioned numerically controlled polishing machine polishes and grinds a flexible rubber ring, the rubber chips generated during polishing and grinding are easy to splash everywhere along the periphery of the grinding process, and large rubber chips are easy to block the dust collection mechanism and affect the subsequent rubber chip recycling and processing by workers, a numerically controlled polishing machine for flexible rubber rings capable of collecting waste chips is developed. By adding an electric crushing structure, a concentrated dust collection and collection structure, a rotating switch structure, a housing protection structure, and a storage and storage structure to the numerically controlled polishing machine, the effect and efficiency of rubber chip recycling of the device are improved, and its service life and protection ability are also improved. Summary of the Utility Model

[0005] In order to overcome the problem that when a numerically controlled polishing machine polishes and grinds a flexible rubber ring, the generated rubber chips are easy to splash everywhere and difficult to effectively recycle.

[0006] The technical solution of the present utility model is as follows: A flexible rubber ring numerical control polishing machine capable of collecting waste chips, including a polishing machine main body, and further including a housing assembly, a dust collection assembly, a support assembly, a storage assembly, a switch assembly and a storage component. The inner wall of the housing assembly is installed with the polishing machine main body. The front end of the housing assembly is rotatably installed with a switch assembly with a central opening and closing. The rear end of the housing assembly is fixedly connected with a support assembly for carrying the storage assembly. Inside the support assembly, a storage assembly for crushing rubber ring chips and a storage component for collecting the crushed rubber ring chips are respectively arranged on the upper and lower sides. The left and right ends of the housing assembly are installed with a dust collection assembly for aggregating rubber ring chips. The housing assembly includes a housing, a base, and a first groove body. The left and right ends of the housing are penetrated and provided with the first groove body. The lower end of the housing is fixedly connected with symmetric front and rear bases. The inner wall of the housing is fixedly connected with the polishing machine main body. During use, the housing can protect the polishing machine main body, and the base can provide stable support for the housing to protect the polishing machine main body, thereby improving the service life of the polishing machine main body. The support assembly includes a support frame, a support frame, and a second groove body. The rear end of the housing is fixedly connected with the support frame. The lower end of the support frame is fixedly connected with the support frame. The inner wall of the support frame is provided with the second groove body around. During use, the support frame and the support frame can be used to limit and install the storage box to improve the effect of carrying the storage box. The dust collection assembly includes a vacuum cleaner, a delivery pipe, and a dust collection hopper. The vacuum cleaner is installed in the first groove body. The mutually close ends of the vacuum cleaners are fixedly connected with the dust collection hopper. The mutually far ends of the vacuum cleaners are fixedly connected with the delivery pipe. During use, the vacuum cleaner and the dust collection hopper can be used to collect the rubber chips dropped by the polishing of the polishing machine main body by suction, and the delivery pipe conveys them into the storage box. The storage assembly includes a storage box, an access pipe, an electric crushing shaft, a discharge port, and a sealing cover. The storage box is installed in the support frame. The periphery of the storage box is adapted to the inner wall of the second groove body. The inner wall of the storage box is installed with equally spaced electric crushing shafts. The rear end of the storage box is fixedly connected with the sealing cover. The left and right ends of the storage box are fixedly connected with the access pipe. One end of the delivery pipe is installed in the access pipe. The lower inner wall of the storage box is penetrated and provided with the discharge port. During use, the electric crushing shaft fully crushes the rubber chips in the storage box to facilitate subsequent recycling.

[0007] Preferably, the dust collection assembly can efficiently collect the rubber chips generated during the polishing of the polishing machine main body by wind power, convey them into the storage assembly for full crushing, so as to facilitate the user to recycle them subsequently, and the storage assembly stores them, thereby improving the effect and efficiency of the device for recycling rubber chips.

[0008] Preferably, the storage component includes a storage box and a second handle. The second handle is fixedly connected to the front end of the storage box, and the storage box is arranged inside the support frame. During use, the storage box can store the crushed rubber debris and facilitate the user to recycle the rubber debris inside it.

[0009] Preferably, the switch component includes a switch board, a third groove, a first handle, and a glass plate. The switch board is rotatably installed on the left and right sides of the front end of the housing. The front and rear ends of the switch board are provided with through third grooves, and the glass plate is installed inside the third grooves. The first handle is fixedly connected to the front end of the switch board. During use, by rotating the switch board and cooperating with the glass plate, the housing can be sealed while facilitating the user to observe the polishing condition inside the housing.

[0010] Advantages of the present utility model:

[0011] 1. Through the aggregated collection structure on the dust suction component, the rubber debris generated during the grinding of the polishing machine main body can be collected, conveyed to the storage component with an internal electric crushing structure for crushing, and then stored by the storage component, thereby improving the effect and efficiency of the device for recycling rubber debris;

[0012] 2. The housing can protect the polishing machine main body, and the base provides stable support for the housing to protect the polishing machine main body, thereby extending the service life of the polishing machine main body;

[0013] 3. By rotating the switch board and cooperating with the glass plate, the housing can be sealed while facilitating the user to observe the polishing condition inside the housing;

[0014] 4. The support frame and the support frame cooperate to limit the installation of the storage box, improving its bearing effect on the storage box and thus enhancing the stability of the device during use. Description of the Drawings

[0015] Figure 1 Shown is a three-dimensional structure schematic diagram of a flexible rubber ring numerical control polishing machine capable of collecting waste chips of the present utility model;

[0016] Figure 2 Shown is a three-dimensional structure split schematic diagram of a flexible rubber ring numerical control polishing machine capable of collecting waste chips of the present utility model;

[0017] Figure 3 Shown is a three-dimensional structure split schematic diagram of the housing component of a flexible rubber ring numerical control polishing machine capable of collecting waste chips of the present utility model and the polishing machine;

[0018] Figure 4The figure shows a schematic exploded three-dimensional structure of the dust collection component of a flexible rubber ring numerical control polishing machine capable of collecting waste chips according to the present utility model;

[0019] Figure 5 The figure shows a schematic exploded three-dimensional structure of the switch component of a flexible rubber ring numerical control polishing machine capable of collecting waste chips according to the present utility model;

[0020] Figure 6 The figure shows a schematic exploded three-dimensional structure of the storage component, support component and storage component of a flexible rubber ring numerical control polishing machine capable of collecting waste chips according to the present utility model.

[0021] Explanation of reference numerals: 101 - housing, 102 - base, 103 - first tank, 201 - vacuum cleaner, 202 - conveying pipe, 203 - dust suction hopper, 301 - support frame, 302 - support frame, 303 - second tank, 401 - storage box, 402 - access pipe, 403 - electric crushing shaft, 404 - discharge port, 405 - sealing cover, 501 - switch board, 502 - third tank, 503 - first handle, 504 - glass plate, 601 - storage box, 602 - second handle, 7 - polishing machine main body. Detailed implementation manners

[0022] The present utility model will be further described below with reference to the accompanying drawings and embodiments.

[0023] Please refer to Figure 1-2 , the present utility model provides an embodiment: a flexible rubber ring numerical control polishing machine capable of collecting waste chips, including a polishing machine main body 7, and further including a housing assembly, a dust collection assembly, a support assembly, a storage assembly, a switch assembly and a storage assembly. The inner wall of the housing assembly is provided with a polishing machine main body 7. The front end of the housing assembly is rotatably installed with a switch assembly that opens and closes at the center. The rear end of the housing assembly is fixedly connected with a support assembly that bears the storage assembly. The upper and lower sides inside the support assembly are respectively provided with a storage assembly for crushing rubber ring chips and a storage assembly for collecting the crushed rubber ring chips. The left and right ends of the housing assembly are provided with a dust collection assembly for gathering rubber ring chips. Through the dust collection assembly, rubber chips generated during the polishing and grinding of the polishing machine main body 7 can be efficiently collected by wind power and conveyed into the storage assembly for sufficient crushing, so as to facilitate the user to recycle them later, and the storage assembly is used for storing and storing them, thereby improving the effect and efficiency of the device for recycling rubber chips.

[0024] Please refer to Figure 3-5, in this embodiment, the housing assembly includes a housing 101, a base 102, and a first trough 103. The left and right ends of the housing 101 are penetrated and provided with the first trough 103. The lower end of the housing 101 is fixedly connected with symmetric front and rear bases 102. The inner wall of the housing 101 is fixedly connected with a polishing machine main body 7. When in use, the housing 101 can protect the polishing machine main body 7, and the base 102 can provide stable support for the housing 101 to protect the polishing machine main body 7, thereby prolonging the service life of the polishing machine main body 7. The dust collection assembly includes a vacuum cleaner 201, a delivery pipe 202, and a dust suction hopper 203. The vacuum cleaner 201 is installed in the first trough 103. The mutually close ends of the vacuum cleaners 201 are fixedly connected with the dust suction hopper 203. The mutually far ends of the vacuum cleaners 201 are fixedly connected with the delivery pipe 202. When in use, the vacuum cleaner 201 cooperates with the dust suction hopper 203 to suck and collect the rubber debris ground off by the polishing machine main body 7, and the delivery pipe 202 conveys it to the storage box 401. The switch assembly includes a switch board 501, a third trough 502, a first handle 503, and a glass plate 504. The switch board 501 is rotatably installed on the left and right sides of the front end of the housing 101. The front and rear ends of the switch board 501 are penetrated and provided with the third trough 502. The glass plate 504 is installed in the third trough 502. The front end of the switch board 501 is fixedly connected with the first handle 503. When in use, by rotating the switch board 501 of the switch and cooperating with the glass plate 504, while sealing the housing 101, it is also convenient for the user to observe the polishing situation inside the housing 101.

[0025] Please refer to Figure 6, in this embodiment, the support assembly includes a support frame 301, a support box 302, and a second groove 303. The rear end of the outer shell 101 is fixedly connected to the support frame 301. The lower end of the support frame 301 is fixedly connected to the support box 302. The inner walls around the support frame 301 are provided with the second groove 303. When in use, the support frame 301 and the support box 302 are used to limit and install the storage box 401, so as to improve the effect of bearing the storage box 401. The storage assembly includes a storage box 401, an access pipe 402, an electric crushing shaft 403, a discharge port 404, and a sealing cover 405. The storage box 401 is installed in the support frame 301. The periphery of the storage box 401 is adapted to the inner wall of the second groove 303. The inner wall of the storage box 401 is provided with evenly distributed electric crushing shafts 403. The rear end of the storage box 401 is fixedly connected to the sealing cover 405. The left and right ends of the storage box 401 are fixedly connected to the access pipe 402. One end of the conveying pipe 202 is installed in the access pipe 402. The lower inner wall of the storage box 401 is penetrated and provided with the discharge port 404. When in use, the electric crushing shaft 403 is used to fully crush the rubber debris in the storage box 401, so as to facilitate subsequent recycling. The storage component includes a storage box 601 and a second handle 602. The front end of the storage box 601 is fixedly connected to the second handle 602. The storage box 601 is arranged in the support box 302. When in use, the storage box 601 can store the crushed rubber debris and facilitate the user to recycle the rubber debris inside it.

[0026] When working, first, pull the first handle 503 and rotate to open the switch board 501. Then, put the flexible rubber ring into the polishing machine main body 7 and reset the switch board 501 to close it.

[0027] Next, start the polishing machine main body 7, the vacuum cleaner 201, and the electric crushing shaft 403. The polishing machine main body 7 polishes and grinds the flexible rubber ring. The rubber debris generated during grinding will be absorbed by the vacuum cleaner 201 and conveyed into the storage box 401, and then the four electric crushing shafts 403 will fully crush the rubber debris.

[0028] Then, the crushed rubber debris falls into the storage box 601 by its own gravity, and by pulling the second handle 602, the crushed rubber debris can be taken out for recycling.

[0029] Through the above steps, the dust suction hopper 203 and the vacuum cleaner 201 are used to collect the debris generated when the polishing machine main body 7 polishes the rubber ring, and convey it into the storage box 401 provided with the electric crushing shaft 403 for crushing, and the storage box 601 stores the crushed rubber debris, solving the problem that when the numerical control polishing machine polishes the flexible rubber ring, the generated rubber debris is easy to fly everywhere and difficult to effectively recycle.

[0030] The embodiments of the present utility model have been described in detail above in conjunction with the accompanying drawings. However, the present utility model is not limited to the above embodiments, and various changes can be made without departing from the gist of the present utility model within the scope of knowledge possessed by those skilled in the art.

Claims

1. A flexible rubber ring numerical control polishing machine capable of collecting waste chips, comprising a polishing machine main body (7), characterized in that: It also includes a housing assembly, a dust suction assembly, a support assembly, a storage assembly, a switch assembly and a storage component. The inner wall of the housing assembly is installed with a polishing machine main body (7). The front end of the housing assembly is rotatably installed with a switch assembly that opens and closes at the center. The rear end of the housing assembly is fixedly connected with a support assembly for carrying the storage assembly. Inside the support assembly, a storage assembly for crushing rubber ring debris and a storage component for collecting the crushed rubber ring debris are respectively arranged on the upper and lower sides. The left and right ends of the housing assembly are installed with a dust suction assembly for gathering rubber ring debris; The housing assembly includes a housing (101), a base (102), and a first groove body (103). The left and right ends of the housing (101) are penetrated and provided with the first groove body (103). The lower end of the housing (101) is fixedly connected with symmetric front and rear bases (102). The inner wall of the housing (101) is fixedly connected with a polishing machine main body (7); The support assembly includes a support frame (301), a support frame (302), and a second groove body (303). The rear end of the housing (101) is fixedly connected with a support frame (301). The lower end of the support frame (301) is fixedly connected with a support frame (302). The inner wall of the support frame (301) is provided with a second groove body (303) around it; The dust suction assembly includes a vacuum cleaner (201), a delivery pipe (202), and a dust suction hopper (203). The vacuum cleaner (201) is installed in the first groove body (103). The mutually close ends of the vacuum cleaner (201) are fixedly connected with a dust suction hopper (203). The mutually far ends of the vacuum cleaner (201) are fixedly connected with a delivery pipe (202); The storage assembly includes a storage box (401), an access pipe (402), an electric crushing shaft (403), a discharge port (404), and a sealing cover (405). The storage box (401) is installed in the support frame (301). The periphery of the storage box (401) is adapted to the inner wall of the second groove body (303). The inner wall of the storage box (401) is installed with equally spaced electric crushing shafts (403). The rear end of the storage box (401) is fixedly connected with a sealing cover (405). The left and right ends of the storage box (401) are fixedly connected with access pipes (402). One end of the delivery pipe (202) is installed in the access pipe (402). The lower inner wall of the storage box (401) is penetrated and provided with a discharge port (404).

2. The flexible rubber ring numerical control polishing machine capable of collecting waste chips according to claim 1, wherein: The storage component includes a storage box (601) and a second handle (602). The front end of the storage box (601) is fixedly connected with a second handle (602). The storage box (601) is arranged in the support frame (302).

3. The flexible rubber ring numerical control polishing machine capable of collecting waste chips according to claim 2, characterized in that: The switch assembly includes a switch board (501), a third groove body (502), a first handle (503), and a glass plate (504). The switch board (501) is rotatably installed on the left and right sides of the front end of the housing (101). The front and rear ends of the switch board (501) are penetrated and provided with a third groove body (502). A glass plate (504) is installed in the third groove body (502). The front end of the switch board (501) is fixedly connected with a first handle (503).