Glass edge grinding machine detection equipment
By designing glass edger detection equipment, using components such as ultrasonic wear measuring instruments and pressure pumps, the problems of low manual detection efficiency and insufficient accuracy are solved, and accurate detection of glass edge size and surface quality is achieved, ensuring high efficiency and safety of detection.
Patent Information
- Application Number
- CN202422850330.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-21
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-11-21
AI Technical Summary
Traditional glass edge quality inspection relies on manual labor, low efficiency and accuracy are affected by the experience of the inspector, and small defects are easily missed.
A glass edge grinder detection equipment is designed, including ultrasonic wear measuring instruments, pressure pumps, protective covers, explosion-proof lighting and storage cabinets, to achieve accurate measurement and detection of glass edge dimensions, surface quality and hardness.
Accurate micrometer measurement of glass edge dimensions is achieved, ensuring uniform pressure transmission, preventing splash damage, and improving detection efficiency and accuracy.
Smart Images

Figure CN223283689U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of glass edge grinding machine detection, in particular to a glass edge grinding machine detection device. Background Art
[0002] In the glass processing industry, glass edging is a key process. Traditional glass edging quality inspection mainly relies on manual labor. Manual inspection has many disadvantages. The first is low efficiency. Inspectors need to check the glass edges one by one, which takes a lot of time for mass-produced glass.
[0003] Moreover, the accuracy of manual inspection is easily affected by factors such as the experience and status of the inspectors. Long-term inspection work will cause fatigue of the inspectors, which may lead to the omission of some edge grinding defects, such as minor edge chipping and uneven grinding marks. For this reason, we propose a glass edge grinding machine inspection equipment. Utility Model Content
[0004] In order to make up for the deficiencies of the prior art and solve at least one problem raised in the background technology, a glass edge grinding machine detection device is proposed.
[0005] In response to the above problems, the utility model provides a glass edge grinding machine detection device, which includes a body, a load-bearing frame fixedly connected to the top side of the body, a first support frame rigidly connected to the side wall of the load-bearing frame, an ultrasonic wear measuring device is installed in the interior of the first support frame, a second support frame rigidly connected to the side wall of the load-bearing frame, the second support frame is arranged at a side position of the first support frame, a drive motor is installed in the interior of the load-bearing frame, the drive motor is arranged at a side position of the second support frame, the output end of the drive motor is connected to a threaded rod, the threaded rod is arranged in the interior of the second support frame and is rotatably arranged, and a sliding block is slidably provided on the internal threaded rod of the second support frame A fixed platform is welded to the bottom of the sliding block, an angle measuring device is installed inside the fixed platform, a rotating wheel is installed on the top of the body, the rotating wheels are arranged in a linear array on the top of the body, a conveyor belt is connected between the multiple rotating wheels, a power motor is installed inside the body, the power motor is arranged at one side of the rotating wheel, and is connected to the end of the rotating wheel, a load-bearing column is fixed to the bottom of the body, and the load-bearing column is arranged around the bottom of the body, which can effectively and accurately measure the dimensional accuracy of the glass edge. For straight-edge glass, it can be accurate to the micron level, and can effectively detect the surface quality of the glass after edging, including wear marks, edge collapse, and roughness.
[0006] In a further technical solution, a third support frame is rigidly connected to the side wall of the load-bearing frame, and the third support frame is arranged at a side position of the first support frame. A pressure pump is installed on the top of the third support frame, and the output end of the pressure pump is connected to the load-bearing plate. The bottom of the load-bearing plate is fixed with pressure balls, and the pressure balls are arranged in a linear array at the bottom of the load-bearing plate, which can effectively ensure that pressure can be transmitted evenly and stably when in contact with the glass, avoiding uneven pressure distribution due to uneven surface, and the hardness of the glass is tested through the output of the pressure pump.
[0007] In a further technical solution, a protective cover is provided on the top of the body, and the protective cover is arranged in an enclosing manner on the top of the body. A rotating rod is rotatably provided on the side wall of the protective cover, and the rotating rod is symmetrically arranged on the side wall of the protective cover. A transparent protective window is fixed on the side wall of the rotating rod, and the transparent protective window is rotatably connected to the protective cover, which can effectively fit tightly to the equipment body and effectively prevent external objects from entering the interior of the equipment. The transparent protective window can effectively view the internal situation of the detection setting, and can also block these splashes to prevent them from causing harm to the operator, while avoiding splashes from entering the interior of the equipment and affecting the normal operation of the equipment.
[0008] In a further technical solution, a lamp holder is welded on the inner side wall of the protective cover, and explosion-proof lighting lamps are installed on the side wall of the lamp holder. The explosion-proof lighting lamps are arranged in a linear array inside the lamp holder, which can effectively ensure the effective output of lighting light and ensure that the working area is adequately illuminated. The explosion-proof lighting lamps ensure the waterproof and dustproof performance of the lamp, preventing external moisture and dust from entering the lamp body and affecting the normal service life and explosion-proof performance of the lamp.
[0009] In a further technical solution, a storage cabinet is provided inside the body, and the storage cabinet is symmetrically arranged inside the body. A sunken handle is provided on the side wall of the storage cabinet, which can effectively provide a safe, orderly and convenient storage solution for tools, accessories and test samples related to the glass edge grinding machine testing equipment, thereby improving work efficiency and ensuring the integrity and availability of items.
[0010] In a further technical solution, a limit rod is provided for the internal sliding of the third support frame. The limit rod is symmetrically arranged inside the third support frame. The end of the limit rod is connected to the bottom position of the load-bearing plate, and the other end of the limit rod is connected to a fixed rod, which can effectively provide a guide for the linear movement of the load-bearing plate, ensuring that the pressure ball at the bottom of the load-bearing plate can accurately enter the detection process, and the fixed rod connected to the top of the limit rod can stably slide the limit rod.
[0011] In a further technical solution, a stabilizing block is fixed to the bottom of the load-bearing column, and a shock-absorbing pad is glued to the bottom of the stabilizing block. When the glass edge grinding machine generates vibration during operation, the shock-absorbing pad can effectively reduce the transmission of vibration to other parts of the equipment and the surrounding environment through its own elastic deformation.
[0012] The beneficial effects of the utility model are:
[0013] 1. The glass edge grinding machine detection equipment described in the present invention can effectively and accurately measure the dimensional accuracy of the glass edge. For straight-edge glass, it can be accurate to the micron level, and can effectively detect the surface quality of the glass after edge grinding, including wear marks, edge chipping, and roughness.
[0014] 2. The glass edge grinding machine detection equipment described in the present invention can effectively ensure that pressure can be transmitted evenly and stably when in contact with the glass, avoiding uneven pressure distribution due to uneven surface, and performing hardness detection on the glass through the output of the pressure pump. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is a schematic diagram of the overall structure of the detection device according to the embodiment of the utility model;
[0016] Figure 2 is a cross-sectional view of a detection device according to an embodiment of the present utility model;
[0017] Figure 3 This is a schematic structural diagram of a drive motor according to an embodiment of the present utility model;
[0018] Figure 4 It is a structural schematic diagram of the threaded rod in an embodiment of the present utility model.
[0019] In the figure: 11. Machine body; 12. Load-bearing frame; 13. First support frame; 14. Ultrasonic wear measuring device; 15. Second support frame; 16. Drive motor; 17. Threaded rod; 18. Sliding block; 19. Fixed platform; 110. Angle measuring device; 111. Rotating wheel; 112. Conveyor belt; 113. Power motor; 114. Load-bearing column; 21. Third support frame; 22. Pressure pump; 23. Load-bearing plate; 24. Pressure ball; 31. Protective cover; 32. Rotating rod; 33. Transparent protective window; 41. Lamp holder; 42. Explosion-proof lighting lamp; 51. Locker; 52. Sunken handle; 61. Limit rod; 62. Fixed rod; 71. Stabilizing block; 72. Shock-absorbing pad. DETAILED DESCRIPTION
[0020] The embodiments of the present invention will be further described below with reference to the accompanying drawings.
[0021] Example:
[0022] like Figure 1-Figure 4 As shown, a glass edge grinding machine detection device includes a body 11, a load-bearing frame 12 is fixedly connected to one side of the top of the body 11, a first support frame 13 is rigidly connected to the side wall of the load-bearing frame 12, an ultrasonic wear measuring device 14 is installed in the interior of the first support frame 13, a second support frame 15 is rigidly connected to the side wall of the load-bearing frame 12, the second support frame 15 is arranged at a side position of the first support frame 13, a drive motor 16 is installed in the interior of the load-bearing frame 12, the drive motor 16 is arranged at a side position of the second support frame 15, the output end of the drive motor 16 is connected to a threaded rod 17, the threaded rod 17 is arranged in the second support frame The interior of the second support frame 15 is rotatably arranged, and a sliding block 18 is slidably arranged on the internal threaded rod 17 of the second support frame 15. A fixed platform 19 is welded to the bottom of the sliding block 18. An angle measuring device 110 is installed inside the fixed platform 19. A rotating wheel 111 is installed on the top of the body 11. The rotating wheel 111 is arranged in a linear array at the top of the body 11. A conveyor belt 112 is connected between the multiple rotating wheels 111. A power motor 113 is installed inside the body 11. The power motor 113 is located at one side of the rotating wheel 111 and is connected to the end of the rotating wheel 111. The bottom of the body 11 A load-bearing column 114 is fixedly connected, and the load-bearing column 114 is arranged around the bottom of the body 11. When working, the glass passes through the rotating wheel 111 installed on the top of the body 11, and a conveyor belt 112 is connected between the multiple rotating wheels 111, which can drive the glass into the interior of the detection equipment, so that the first support frame 13 is just connected to the side wall of the load-bearing frame 12 fixed to the top side of the body 11, and an ultrasonic wear measuring device 14 is installed inside the first support frame 13, which can realize the wear detection of the glass surface, so that the glass is within the qualified range, and a second support frame 15 is just connected to the side wall of the load-bearing frame 12, and the inside of the load-bearing frame 12 A driving motor 16 is provided to rotate, driving the threaded rod 17 connected to the inside of the second support frame 15 to rotate, so that the sliding block 18 provided on the threaded rod 17 of the second support frame 15 slides back and forth, driving the fixed platform 19 welded to the bottom of the sliding block 18, and an angle measuring device 110 is provided inside the fixed platform 19 to detect the angle of the glass so that the glass is within the qualified range. Through the above structure, the dimensional accuracy of the glass edge can be effectively and accurately measured. For straight-edge glass, it can be accurate to the micron level, and the surface quality of the glass after edging, including wear marks, edge chipping, and roughness, can be effectively detected.
[0023] In another embodiment, Figure 1 and Figure 2As shown, a third support frame 21 is rigidly connected to the side wall of the load-bearing frame 12, and the third support frame 21 is arranged at a side position of the first support frame 13. A pressure pump 22 is installed on the top of the third support frame 21, and the output end of the pressure pump 22 is connected to the load-bearing plate 23. The bottom of the load-bearing plate 23 is fixedly connected to a pressure ball 24. The pressure ball 24 is arranged at the bottom of the load-bearing plate 23 in a linear array. During work, when it is necessary to test the glass, the third support frame 21 is rigidly connected to the side wall of the load-bearing frame 12, and a pressure pump 22 is installed on the top of the third support frame 21, so that the output end of the pressure pump 22 is connected to the load-bearing plate 23, and the bottom of the load-bearing plate 23 is fixedly connected to the pressure ball 24, which can realize the hardness test of the glass so that the glass meets the qualified range. Through the above structure, it can effectively ensure that pressure can be transmitted evenly and stably when in contact with the glass, avoiding the situation of uneven pressure distribution due to uneven surface, and the hardness of the glass is tested through the output of the pressure pump 22.
[0024] In another embodiment, Figure 1 As shown, a protective cover 31 is provided on the top of the machine body 11. The protective cover 31 is arranged on the top of the machine body 11 in an enclosing manner. A rotating rod 32 is rotatably provided on the side wall of the protective cover 31. The rotating rod 32 is symmetrically provided on the side wall of the protective cover 31. A transparent protective window 33 is fixed on the side wall of the rotating rod 32. The transparent protective window 33 is rotatably connected to the protective cover 31. When working, when the glass is detected, the glass shattering occurs, so that the glass slag pops out. The protective cover 31 is provided on the top of the machine body 11, and the side wall of the protective cover 31 is symmetrically provided. A transparent protective window 33 is fixed on the side wall of the rotating rod 32. The transparent protective window 33 is rotatably connected to the protective cover 31. A rotating rod 32 is rotatably provided on the wall, and the transparent protective window 33 on the side wall of the rotating rod 32 can be opened and closed, so that the equipment can be protected while preventing the internal glass from popping out, thereby protecting the personnel outside. Through the above structure, it can effectively fit closely to the equipment body, effectively prevent external objects from entering the interior of the equipment, and the transparent protective window 33 can effectively view the internal situation of the detection device, and can also block these splashes to prevent them from causing harm to the operator, while avoiding splashes from entering the interior of the equipment and affecting the normal operation of the equipment.
[0025] In another embodiment, Figure 1As shown, a lamp holder 41 is welded on the inner side wall of the protective cover 31, and explosion-proof lighting lamps 42 are installed on the side wall of the lamp holder 41. The explosion-proof lighting lamps 42 are arranged in a linear array inside the lamp holder 41. During work, when the glass is inspected, due to environmental factors, the personnel cannot observe the internal situation of the inspection equipment. The lamp holder 41 is welded on the inner side wall of the protective cover 31, and explosion-proof lighting lamps 42 are installed on the side wall of the lamp holder 41, which can illuminate the inspection equipment and ensure that the brightness inside the equipment is always sufficient. Through the above structure, the effective output of the lighting light can be effectively ensured, so that the working area is adequately illuminated, and the explosion-proof lighting lamps 42 ensure the waterproof and dustproof performance of the lamp, preventing external moisture and dust from entering the lamp body, affecting the normal service life and explosion-proof performance of the lamp.
[0026] In another embodiment, Figure 1 and Figure 2 As shown, a storage cabinet 51 is provided inside the body 11, and the storage cabinet 51 is symmetrically arranged inside the body 11. A sunken handle 52 is provided on the side wall of the storage cabinet 51. During work, when various tools and other items are needed, a storage cabinet 51 is provided inside the body 11, and a sunken handle 52 is provided on the side wall of the storage cabinet 51, so that the storage cabinet 51 can be opened and closed, and personnel can take out the items placed inside the storage cabinet 51. Through the above structure, a safe, orderly and convenient storage solution can be effectively provided for the tools, accessories and test samples related to the glass edge grinding machine testing equipment, thereby improving work efficiency and ensuring the integrity and availability of items.
[0027] In another embodiment, Figures 1 to 3 As shown, the third support frame 21 is provided with a limit rod 61 for internal sliding, and the limit rod 61 is symmetrically arranged inside the third support frame 21. The end of the limit rod 61 is connected to the bottom position of the load-bearing plate 23, and the other end of the limit rod 61 is connected to the fixed rod 62. During operation, when the hardness of the glass is tested, the pressure ball 24 is fixed to the bottom of the load-bearing plate 23 to perform pressure testing on the glass, the third support frame 21 is provided with a limit rod 61 for internal sliding, and the top of the limit rod 61 is connected to the fixed rod 62, which can realize the limiting processing of the load-bearing plate 23, so that the load-bearing plate 23 always maintains a specific trajectory. Through the above structure, it can effectively provide a guide for the linear movement of the load-bearing plate 23, ensuring that the pressure ball 24 at the bottom of the load-bearing plate 23 can accurately enter the detection process, and the fixed rod 62 connected to the top of the limit rod 61 can stably slide the limit rod 61.
[0028] In another embodiment, Figures 1 to 3As shown, a stabilizing block 71 is fixed to the bottom of the load-bearing column 114, and a shock-absorbing pad 72 is glued to the bottom of the stabilizing block 71. During operation, when the detection equipment is working, vibration will occur. The stabilizing block 71 is fixed to the bottom of the load-bearing column 114, and a shock-absorbing pad 72 is glued to the bottom of the stabilizing block 71, which can achieve shock-absorbing treatment for the detection equipment and ensure the safe operation of the detection equipment and the glass. Through the above structure, when the glass edge grinding machine generates vibration during operation, the shock-absorbing pad 72 can effectively reduce the transmission of vibration to other parts of the equipment and the surrounding environment through its own elastic deformation.
[0029] During operation, the glass passes through the rotating wheel 111 installed on the top of the body 11, and a conveyor belt 112 is connected between the multiple rotating wheels 111, which can drive the glass into the interior of the detection equipment, so that the first support frame 13 is just connected to the side wall of the load-bearing frame 12 fixed to one side of the top of the body 11, and an ultrasonic wear measuring device 14 is installed inside the first support frame 13, which can realize the wear detection of the glass surface, so that the glass is within the qualified range, and a second support frame 15 is just connected to the side wall of the load-bearing frame 12, and a driving motor 16 is installed inside the load-bearing frame 12 to rotate, driving the threaded rod 17 connected to the inside of the second support frame 15 to rotate, so that the second support frame 15 threaded rod 17 is provided The sliding block 18 slides back and forth, driving the fixed platform 19 welded at the bottom of the sliding block 18, and an angle measuring device 110 is installed inside the fixed platform 19 to detect the angle of the glass so that the glass is within the qualified range. When the glass needs to be tested, a third support frame 21 is just connected to the side wall of the load-bearing frame 12, and a pressure pump 22 is installed on the top of the third support frame 21, so that the output end of the pressure pump 22 is connected to the load-bearing plate 23, and a pressure ball 24 is fixed to the bottom of the load-bearing plate 23, which can realize the hardness test of the glass so that the glass is within the qualified range. When the glass is tested, the occurrence of glass shattering causes the glass slag to pop out, and a protective cover 31 is provided on the top of the body 11. , and a rotating rod 32 is rotatably provided on the side wall of the protective cover 31, and the transparent protective window 33 on the side wall of the rotating rod 32 can be opened and closed, so that the equipment can be protected while preventing the internal glass from popping out, thereby protecting the personnel outside. When the glass is inspected, due to environmental factors, the personnel cannot observe the internal situation of the inspection equipment. A lamp holder 41 is welded on the inner side wall of the protective cover 31, and an explosion-proof lighting lamp 42 is installed on the side wall of the lamp holder 41, which can illuminate the inspection equipment and ensure that the brightness inside the equipment is always sufficient. When various tools and other items are needed, a storage cabinet 51 is provided inside the body 11, and a sunken handle is provided on the side wall of the storage cabinet 51 52, the locker 51 can be opened and closed, and personnel can take out items placed inside the locker 51. When the hardness of the glass is tested, a pressure ball 24 is fixed to the bottom of the load-bearing plate 23. When the pressure test of the glass is performed, a limit rod 61 is slidingly provided inside the third support frame 21, and a fixed rod 62 is connected to the top of the limit rod 61, which can limit the load-bearing plate 23 and allow the load-bearing plate 23 to always maintain a specific trajectory. When the detection equipment is working, vibration will occur. A stabilizing block 71 is fixed to the bottom of the load-bearing column 114, and a shock-absorbing pad 72 is glued to the bottom of the stabilizing block 71, which can achieve shock-absorbing treatment for the detection equipment and ensure the safe operation of the detection equipment and the glass.
[0030] The above embodiments merely represent specific implementation methods of the present invention. Although the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the present invention. It should be noted that a person skilled in the art may make various modifications and improvements without departing from the concept of the present invention, and these modifications and improvements are all within the scope of protection of the present invention.
Claims
1. A glass edge grinding machine detection device, comprising a machine body (11), characterized in that: A load-bearing frame (12) is fixedly connected to one side of the top of the body (11), a first support frame (13) is rigidly connected to the side wall of the load-bearing frame (12), an ultrasonic wear measuring device (14) is installed inside the first support frame (13), a second support frame (15) is rigidly connected to the side wall of the load-bearing frame (12), the second support frame (15) is arranged at one side of the first support frame (13), a driving motor (16) is installed inside the load-bearing frame (12), the driving motor (16) is arranged at one side of the second support frame (15), an output end of the driving motor (16) is connected to a threaded rod (17), the threaded rod (17) is arranged inside the second support frame (15) and is rotatable, the internal threaded rod (17) of the second support frame (15) is fixedly connected to the side wall of the load-bearing frame (12), the second support frame (15) is provided with a driving motor (16), the driving motor (16) is provided at one side of the second support frame (15), an output end of the driving motor (16) is connected to a threaded rod (17), the threaded rod (17) is provided inside the second support frame (15) and is rotatable, 7) is provided with a sliding block (18) for sliding, a fixed platform (19) is welded to the bottom of the sliding block (18), an angle measuring device (110) is provided inside the fixed platform (19), a rotating wheel (111) is provided on the top of the machine body (11), the rotating wheel (111) is provided on the top of the machine body (11) and is arranged in a linear array, a conveyor belt (112) is connected between the plurality of rotating wheels (111), a power motor (113) is provided inside the machine body (11), the power motor (113) is provided at one side of the rotating wheel (111) and is connected to the end of the rotating wheel (111), a load-bearing column (114) is fixed to the bottom of the machine body (11), and the load-bearing column (114) is provided around the bottom of the machine body (11).
2. The glass edge grinding machine detection device according to claim 1, characterized in that: A third support frame (21) is rigidly connected to the side wall of the load-bearing frame (12), and the third support frame (21) is arranged at a side position of the first support frame (13). A pressure pump (22) is installed on the top of the third support frame (21), and the output end of the pressure pump (22) is connected to a load-bearing plate (23). The bottom of the load-bearing plate (23) is fixedly connected with a pressure ball (24), and the pressure ball (24) is arranged at the bottom of the load-bearing plate (23) in a linear array.
3. The glass edge grinding machine detection device according to claim 2, characterized in that: A protective cover (31) is provided on the top of the machine body (11). The protective cover (31) is arranged on the top of the machine body (11) in an enclosing manner. A rotating rod (32) is rotatably provided on the side wall of the protective cover (31). The rotating rod (32) is symmetrically arranged on the side wall of the protective cover (31). A transparent protective window (33) is fixedly connected to the side wall of the rotating rod (32). The transparent protective window (33) is rotatably connected to the protective cover (31).
4. The glass edge grinding machine detection device according to claim 3, characterized in that: A lamp holder (41) is welded on the inner side wall of the protective cover (31), and explosion-proof lighting lamps (42) are installed on the side wall of the lamp holder (41). The explosion-proof lighting lamps (42) are arranged in a linear array inside the lamp holder (41).
5. The glass edge grinding machine detection device according to claim 4, characterized in that: A storage cabinet (51) is provided inside the machine body (11). The storage cabinet (51) is symmetrically arranged inside the machine body (11). A sunken handle (52) is provided on the side wall of the storage cabinet (51).
6. The glass edge grinding machine detection device according to claim 5, characterized in that: A limiting rod (61) is slidably provided inside the third support frame (21), and the limiting rod (61) is symmetrically arranged inside the third support frame (21). The end of the limiting rod (61) is connected to the bottom position of the load-bearing plate (23), and the other end of the limiting rod (61) is connected to a fixing rod (62).
7. The glass edge grinding machine detection device according to claim 1, characterized in that: A stabilizing block (71) is fixed to the bottom of the load-bearing column (114), and a shock-absorbing pad (72) is glued to the bottom of the stabilizing block (71).