Detection device for rapidly detecting grinding removal amount of glass appearance
By designing a detection device that quickly detects the degrinding amount of glass appearance, the rotary encoder and detection arm assembly are used to detect the glass edge size in real time, and the grinding wheel feeding amount is controlled, the problem of uneven glass grinding is solved and the quality of finished glass processing products is improved.
Patent Information
- Application Number
- CN202421985400.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-16
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-08-16
AI Technical Summary
Glass grinding processing equipment cannot judge the glass shape in real time, resulting in uneven grinding and affecting the quality of finished glass processing products.
A detection device for rapidly detecting the degrinding amount of glass exterior is designed, including a wheel assembly and a detection assembly positioned for the Y-axis direction of the glass. The detection assembly uses a rotary encoder and detection arm assembly to detect the glass edge dimensions in real time and controls the feeding of the grinding wheel.
Continuous inspection of the entire edge of the glass is achieved, and the grinding wheel feed is adjusted in time to ensure uniform grinding of the glass, and the quality of the finished glass is improved.
Smart Images

Figure CN223000276U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of glass processing equipment, and particularly relates to a detection device for quickly detecting the grinding amount of the glass appearance. Background Art
[0002] The glass grinding processing equipment does not have the function of judging the size of the glass appearance. Only relying on the fixed mechanism adjusted in advance to set the stripping amount, if there is an error in the glass appearance size, it will lead to the situation that the glass is not ground in place or over-ground, resulting in a decline in the quality of the glass processing finished product.
[0003] The utility model designs a detection device for quickly detecting the grinding amount of the glass appearance to solve the above problems. Content of the Utility Model
[0004] In order to achieve the above purpose, the utility model adopts the following technical solutions:
[0005] A detection device for quickly detecting the grinding amount of the glass appearance, which includes a wheel component and a detection component for positioning the glass in the Y-axis direction;
[0006] The detection component includes a fixed bracket, a cylinder bracket, and a rotating cover. The cylinder bracket is fixedly installed on the fixed bracket. The rotating cover covers the upper part of the fixed bracket in a rotatable connection manner. A rotary encoder is installed in the fixed bracket. The rotary encoder is connected to the rotating cover through a transmission shaft. A rotary cylinder is installed in the cylinder bracket. The rotating part of the rotary cylinder is connected to the rotating cover. A detection arm component is installed on the rotating cover. The rotation of the rotating cover can make the detection arm component contact the glass.
[0007] As a preferred solution, the detection arm component includes a detection arm installed on the rotating cover. A wheel shaft is installed at the head of the detection arm, and a detection wheel is installed on the wheel shaft through a bearing.
[0008] As a preferred solution, a waterproof sealing ring is installed between the upper end of the fixed bracket and the lower end of the rotating cover.
[0009] As a preferred solution, the wheel component includes a base and a plurality of positioning wheels installed on the base and arranged along the X-axis.
[0010] As a preferred solution, a cable connector for connecting to the rotary encoder is provided on the fixed bracket.
[0011] Compared with the existing technology, the advantages of the utility model are as follows:
[0012] 1. Before the glass runs to the grinding station, the present utility model detects the external dimensions of the glass, and controls the feed rate of the grinding wheel according to the detected dimensional data. Under the action of the detection component, it can continuously detect the entire edge of the glass and timely transmit the data to the grinding equipment, thereby realizing the function of uniform grinding of the glass and achieving the effect of improving the quality of the processed glass products. Description of the Drawings
[0013] Figure 1 is a schematic diagram of the present utility model.
[0014] Figure 2 is a schematic diagram of the present utility model.
[0015] Names of the reference numerals in the figure: 100, wheel support assembly; 101, base; 102, positioning wheel.
[0016] 200, detection component; 201, fixed bracket; 202, cylinder bracket; 203, rotating cover; 204, rotary encoder; 205, transmission shaft; 206, rotary cylinder; 207, waterproof sealing ring; 208, cable joint.
[0017] 300, detection arm assembly; 301, detection arm; 302, wheel shaft; 303, detection wheel. Detailed Description of the Embodiment
[0018] The following combines the drawings and embodiments to further describe in detail the specific implementation manners of the present utility model. The following embodiments or drawings are used to illustrate the present utility model, but not to limit the scope of the present utility model.
[0019] A detection device for quickly detecting the grinding amount of the glass appearance, as Figure 1 and Figure 2 shown, includes a wheel support assembly 100 for positioning the glass in the Y-axis direction and a detection component 200. The above structural components are all installed on the working platform. A conveying device with a conveyor belt and a cylinder and a stop wheel with a lifting function are also installed on the platform. The wheel support assembly 100, the detection component 200, and the stop wheel are arranged in sequence from left to right along the X-axis on the working platform.
[0020] The conveying device first pushes the glass against the wheel support assembly 100 through the cylinder, then pushes the glass to the position against the raised stop wheel through the conveyor belt, and then the detection component 200 operates to contact the end face of the glass to be ground for the detection process. After the detection component 200 completes the first detection process, the stop wheel descends, and the conveyor belt continues to convey the glass to move along the X-axis, and the detection component 200 continuously detects the end face in contact with the glass.
[0021] The detection component 200 includes a fixed bracket 201, a cylinder bracket 202, and a rotating cover 203. The cylinder bracket 202 is fixedly installed on the fixed bracket 201 by screws. The rotating cover 203 covers the upper part of the fixed bracket 201 in a rotatably connected manner. A rotary encoder 204 fixed by screws is installed inside the fixed bracket 201. The rotary encoder 204 is connected to the rotating cover 203 through a transmission shaft 205. A rotary cylinder 206 fixed by screws is installed inside the cylinder bracket 202. The rotating part of the rotary cylinder 206 is fixedly connected to the rotating cover 203 by screws. A detection arm assembly 300 is installed on the rotating cover 203. The rotation of the rotating cover 203 can make the detection arm assembly 300 contact the glass.
[0022] The rotating cover 203 is driven by the cylinder bracket 202 to rotate, and the detection arm assembly 300 rotates with the rotating cover 203 until the head of the detection arm assembly 300 abuts against the end face of the glass. During this process, the transmission shaft 205 rotates with the rotating cover 203. Then, the rotary encoder 204 calculates the size of the glass end face according to the rotation angle of the transmission shaft 205 and outputs it to the grinding wheel device to control the feed amount of the grinding wheel. Therefore, when the external dimension of the glass changes, under the action of the detection arm assembly 300, the rotating cover 203 performs rotational movements at different angles, and the rotary encoder 204 can detect the external dimension of the glass in real time.
[0023] Before the glass runs to the grinding station, the external dimension of the glass is detected, and according to the detected dimension data, the feed amount of the grinding wheel is controlled. Under the action of the detection component 200, the entire edge of the glass can be continuously detected, and the data can be timely transmitted to the grinding equipment, so as to realize the function of uniform grinding of the glass and achieve the effect of improving the quality of the glass processing finished product.
[0024] The detection arm assembly 300 includes a detection arm 301 fixedly installed on the rotating cover 203 by screws. A wheel shaft 302 is installed at the head of the detection arm 301, and a detection wheel 303 is installed on the wheel shaft 302 through a bearing.
[0025] A waterproof sealing ring 207 is installed between the upper end of the fixed bracket 201 and the lower end of the rotating cover 203. A cable connector 208 for connecting to the rotary encoder 204 is provided on the fixed bracket 201.
[0026] The abutting wheel assembly 100 includes a base and a plurality of positioning abutting wheels 102 arranged along the X-axis and installed on the base 101.
[0027] The above is only the preferred embodiment of the present invention, and does not impose any form of limitation on the present invention. Any simple modification or equivalent change made to the above embodiments based on the technical essence of the present invention shall fall within the protection scope of the present invention.
Claims
1. A device for quickly detecting the amount of grinding removed from a glass shape, characterized in that: It comprises a wheel assembly (100) for positioning the glass in the Y-axis direction and a detection assembly (200); The detection assembly (200) comprises a fixed bracket (201), a cylinder bracket (202), and a rotating cover (203); the cylinder bracket (202) is fixedly mounted on the fixed bracket (201); the rotating cover (203) is rotatably connected and covers the fixed bracket (201); a rotary encoder (204) is mounted in the fixed bracket (201); the rotary encoder (204) is connected to the rotating cover (203) via a transmission shaft (205); a rotary cylinder (206) is mounted in the cylinder bracket (202); the rotating portion of the rotary cylinder (206) is connected to the rotating cover (203); a detection arm assembly (300) is mounted on the rotating cover (203); the detection arm assembly (300) can be brought into contact with glass when the rotating cover (203) rotates.
2. A device for rapidly detecting the amount of grinding removed from a glass shape according to claim 1, characterized in that: The detection arm assembly (300) comprises a detection arm (301) mounted on a rotating cover (203); a wheel axle (302) and a detection wheel (303) mounted on the wheel axle (302) via a bearing are mounted on the head of the detection arm (301).
3. A device for quickly detecting the amount of grinding removed from a glass shape according to claim 1, characterized in that: A waterproof sealing ring (207) is installed between the upper end of the fixed bracket (201) and the lower end of the rotating cover (203).
4. A device for rapidly detecting the amount of grinding removed from a glass shape according to claim 1, characterized in that: The supporting wheel assembly (100) comprises a base and a plurality of positioning supporting wheels (102) mounted on the base (101) and arranged along the X-axis.
5. The device for quickly detecting the amount of grinding removed from a glass shape according to claim 1, characterized in that: The fixing bracket (201) is provided with a cable connector (208) for connecting to the rotary encoder (204).