A glass detection system for controlling temperature and an operation method thereof
By designing a temperature-controlled glass detection system, and using a constant temperature box and conveyor belt to automatically transport and fix the glass, the problems of cumbersome manual operation and difficulty in temperature control in the existing technology are solved, and efficient and accurate glass bulletproof and anti-smash detection is achieved.
Patent Information
- Application Number
- CN202010153595.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-03-06
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2040-03-06
AI Technical Summary
The existing glass bulletproof and anti-smash detection technology lacks a complete detection system, resulting in cumbersome manual handling and fixing processes, high labor intensity, and it is difficult to control the glass temperature in high or low temperature environments, affecting the detection results.
A temperature-controlled glass detection system is designed, including a constant temperature box, a conveyor belt and a detection device. It automatically transports and fixes the glass to be tested through mechanical conveyor belts, reducing manual operation and ensuring that the glass reaches a stable temperature before detection.
The efficient and automated glass bulletproof and anti-smash detection process is realized, which reduces labor intensity, improves work efficiency, and ensures the accuracy and consistency of the inspection results.
Smart Images

Figure CN111220486B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of glass bulletproof and anti-smashing detection, in particular to a glass detection system for controlling temperature and an operation method thereof. Background Art
[0002] High-strength glass combines the two characteristics of light transmittance and high strength, and has been widely used in many aspects such as building structures, safety protection, and vehicle decoration. Due to its special use requirements, high-strength glass needs to be subjected to sample testing to ensure stable product performance. Among them, bulletproof detection and anti-smashing detection are two main detection items. At the same time, to test the use performance of glass in different temperature environments, it is also necessary to control the temperature of the glass to be tested during bulletproof and anti-smashing detections.
[0003] At present, there is no complete detection system for bulletproof detection and anti-smashing detection of glass. After the glass is subjected to high-temperature or low-temperature treatment, it is necessary to manually carry the glass to be tested to the detection equipment and perform manual adjustment and fixation. This process requires the cooperation of multiple people and has a high labor intensity. In the detection under high-temperature or low-temperature conditions, it is not conducive to manual handling operations. At the same time, to ensure accurate detection results and prevent large temperature changes in the glass to be tested, the handling and fixation process needs to be completed quickly. Manual operation has low efficiency and is difficult to control time. Therefore, it is necessary to develop a complete glass bulletproof and anti-smashing system to overcome the above problems. Summary of the Invention
[0004] The purpose of the present invention is to provide a glass detection system for controlling temperature, which can perform bulletproof detection and anti-smashing detection of glass under high-temperature and low-temperature conditions, reduce the number of operators, lower the labor intensity, and can quickly complete the process of transporting and fixing the glass to be tested, improve work efficiency, and ensure the accuracy of detection results. The present invention also provides an operation method for the glass detection system for controlling temperature, which simplifies the preparation process of bulletproof detection and anti-smashing detection of glass, eliminates the need for manual handling, and reduces the detection preparation time.
[0005] To solve the above technical problems, the present invention adopts the following technical solutions: A glass detection system for controlling temperature includes a number of constant temperature chambers, a first straight conveyor belt, a second straight conveyor belt, a third straight conveyor belt, a first corner conveyor belt and a second corner conveyor belt which are horizontally arranged, as well as a bulletproof detection device and an anti-smashing detection device. The constant temperature chambers are all arranged on the first straight conveyor belt. One end of the first straight conveyor belt is connected to the second straight conveyor belt through the first corner conveyor belt, and the other end of the first straight conveyor belt is connected to the third straight conveyor belt through the second corner conveyor belt. The bulletproof detection device includes a bulletproof detection movable frame, and the end of the second straight conveyor belt far from the first corner conveyor belt is detachably connected to the bulletproof detection movable frame. The anti-smashing detection device includes an anti-smashing detection movable frame, and the end of the third straight conveyor belt far from the second corner conveyor belt is detachably connected to the anti-smashing detection movable frame.
[0006] A number of constant temperature chambers can simultaneously process multiple pieces of glass to be detected at different temperatures, improving work efficiency. The two ends of the first straight conveyor belt are respectively connected to the first corner conveyor belt and the second corner conveyor belt, and can transport the glass to be detected that has been processed at high or low temperature to the bulletproof detection device and the anti-smashing detection device through the second straight conveyor belt and the third straight conveyor belt respectively, without manual handling, reducing labor intensity and improving work efficiency.
[0007] In the aforementioned glass detection system for controlling temperature, the bulletproof detection device further includes a detection table, a detection table support, a bulletproof detection fixing frame, a test card frame, a bulletproof detection rotating shaft and fastening bolts. The detection table is fixedly arranged on the detection table support. The bulletproof detection fixing frame and the test card frame are both vertically arranged on the detection table, and the bulletproof detection fixing frame is parallel to the test card frame. The bulletproof detection rotating shaft is arranged on the detection table, and the bulletproof detection movable frame is fixedly connected to the bulletproof detection rotating shaft. The bulletproof detection movable frame can rotate around the bulletproof detection rotating shaft. When the bulletproof detection movable frame is in the horizontal position, the end of the bulletproof detection movable frame far from the bulletproof detection rotating shaft is detachably connected to the second straight conveyor belt. When the bulletproof detection movable frame is in the vertical position, the bulletproof detection movable frame is parallel to the bulletproof detection fixing frame. Fastening bolts are provided on both the bulletproof detection fixing frame and the bulletproof detection movable frame. The bulletproof detection movable frame is placed horizontally to receive the glass to be detected transported by the second straight conveyor belt, and then the bulletproof detection movable frame rotates to the vertical position with the bulletproof detection rotating shaft, cooperates with the bulletproof detection fixing frame to clamp and fix the glass to be detected, and is fixed through the fastening bolts, thus completing the preparation process for bulletproof detection.
[0008] In the aforementioned glass detection system for controlling temperature, the anti-smashing detection device further includes a detection frame, an impact hammer, an anti-smashing detection fixing frame, an anti-smashing detection rotating shaft, positioning clips, and a bearing locking sleeve. The detection frame is a cuboid frame with a square top surface and a square bottom surface, and the impact hammer is movably arranged on the top surface of the detection frame. The anti-smashing detection fixing frame is arranged at the lower part of the detection frame, the anti-smashing detection rotating shaft is fixedly connected to the anti-smashing detection fixing frame, and the bearing locking sleeve is arranged on the anti-smashing detection rotating shaft. The anti-smashing detection movable frame is a square frame, the anti-smashing detection movable frame is connected to the anti-smashing detection rotating shaft, and the anti-smashing detection movable frame can rotate around the anti-smashing detection rotating shaft. The positioning clips are arranged at the four vertices of the anti-smashing detection movable frame. When the anti-smashing detection movable frame is in a horizontal position, the anti-smashing detection movable frame is detachably connected to the third straight conveyor belt. According to the anti-smashing detection standard, the anti-smashing detection device should be adapted to the ways of horizontally and vertically installing samples. Therefore, in the present invention, the anti-smashing detection rotating shaft and the anti-smashing detection movable frame are used to realize these two ways of installing the glass to be detected. The function of the positioning clips is to fix the glass to be detected at the accurate detection position, and the function of the bearing locking sleeve is to fix the anti-smashing detection rotating shaft to prevent the anti-smashing detection movable frame from deflecting when the impact hammer drops, which may affect the detection result.
[0009] In the present invention, the bulletproof detection fixing frame includes a fixing frame, a rigid cushion plate, and a rubber pad connected in sequence. The bulletproof detection movable frame includes a movable frame and a rubber pad fixedly connected. When the bulletproof detection movable frame is in a vertical position, a space for clamping the glass to be detected is formed between the bulletproof detection movable frame and the bulletproof detection fixing frame. From the direction close to the test card frame to the direction far from the test card frame, they are the fixing frame, the rigid cushion plate, the rubber pad of the bulletproof detection fixing frame, the rubber pad of the bulletproof detection movable frame, and the movable frame in sequence. The setting of the rigid cushion plate and the rubber pad can prevent the glass from colliding with the frame after being hit by a bullet, which may affect the detection result and improve the accuracy of the detection result.
[0010] In the present invention, the bulletproof detection device further includes a limit card, a camera support frame, and bulletproof detection movable wheels. The limit card is arranged at one end of the bulletproof detection movable frame close to the bulletproof detection rotating shaft, and the limit card is located on the side of the bulletproof detection movable frame close to the bulletproof detection fixing frame. The camera support frame is arranged on the detection table. The bulletproof detection movable wheels are arranged at the bottom of the detection table support. The function of the limit card is to prevent the glass to be detected from slipping or shifting during the rotation of the bulletproof detection movable frame, which requires repositioning and may affect the work efficiency. The camera support frame can set a camera on the detection table to record the bulletproof detection result and provide a basis for the detection result. The bulletproof detection movable wheels are used to rotate or move the bulletproof detection device, which is convenient for adjusting the position and environment of the bulletproof detection.
[0011] In the aforementioned temperature-controlled glass detection system, the anti-smashing detection device also includes a plurality of fixed support frames, a camera support frame and an anti-smashing detection movable wheel. The fixed support frame is detachably arranged below the anti-smashing detection fixed frame. When the anti-smashing detection movable frame is in a horizontal position, the top surface of the fixed support frame conflicts with the bottom surface of the anti-smashing detection movable frame. The camera support frame is connected to the detection frame. The anti-smashing detection movable wheel is arranged at the bottom of the detection frame. The function of the fixed support frame is to further prevent the anti-smashing detection movable frame from rotating when the impact hammer falls, thereby improving the structural stability and the accuracy of the detection results. The camera support frame is used to install a camera, record the anti-smashing detection process, and provide the detection results. The anti-smashing detection rotating wheel is used to rotate or move the anti-smashing detection device, so as to facilitate the adjustment of the position and environment of the anti-smashing detection.
[0012] The length of the first straight conveyor belt described in the present invention is 5m-8m, and the length of the second straight conveyor belt and the third straight conveyor belt are 3m-5m. The purpose of controlling the first straight conveyor belt, the second straight conveyor belt and the third straight conveyor belt is to reduce the time for the glass to be tested to leave the constant temperature box, to avoid large temperature changes in the glass to be tested, and to fail to meet the detection requirements.
[0013] An operating method of a temperature-controlled glass detection system, using the temperature-controlled glass detection system of the present invention, comprises the following steps:
[0014] a. According to the temperature required for the test, the glass to be tested is stored in a constant temperature box for 3 hours;
[0015] b. According to the inspection items, the first straight conveyor belt, the second straight conveyor belt, the third straight conveyor belt, the first corner conveyor belt and the second corner conveyor belt are respectively started to transport the glass to be inspected after the temperature treatment to the bulletproof inspection device and the anti-smashing inspection device. The bulletproof inspection movable frame and the anti-smashing inspection movable frame are both in a horizontal position;
[0016] c. Conduct bulletproof and smashproof tests and record the test results.
[0017] In the aforementioned operating method of the temperature-controlled glass detection system, when performing bulletproof detection, the first straight conveyor belt, the second straight conveyor belt and the first corner conveyor belt are started in step b, and the rotation direction of the first straight conveyor belt is toward the first corner conveyor belt, and the glass to be detected is transported to the bulletproof detection movable frame, and the bulletproof detection rotating shaft is rotated to make the bulletproof detection movable frame in a vertical position, and the glass to be detected is fixed by tightening bolts.
[0018] In the operation method of the glass detection system for controlling temperature described above, when performing anti-smashing detection, in step b, the first straight conveyor belt, the third straight conveyor belt, and the second corner conveyor belt are started. The rotation direction of the first straight conveyor belt faces the second corner conveyor belt, and the glass to be detected is transported to the anti-smashing detection movable frame, fixed by the positioning clamp, and the locking bearing locking sleeve is locked.
[0019] Compared with the prior art, the beneficial effects of the present invention are as follows: A glass detection system for controlling temperature is provided, which can perform bulletproof detection and anti-smashing detection of glass at different temperatures, quickly complete the transfer and fixation of the glass to be detected, does not require the cooperation of multiple people, reduces the labor intensity, simplifies the preparation process of bulletproof detection and anti-smashing detection of glass, reduces the preparation time, and can also prevent the temperature of the glass treated at high temperature or low temperature from changing greatly, ensuring the accuracy of the detection results. The present invention also provides an operation method of the glass detection system for controlling temperature, which is simple to operate, reduces the number of operators, enables the preparation process of bulletproof detection and anti-smashing detection of glass to be completed quickly, and improves the efficiency of the detection preparation work. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 is a top view of the present invention;
[0021] Figure 2 is a front view of the bulletproof detection movable frame in the bulletproof detection device when it is in the horizontal position;
[0022] Figure 3 is a front view of the bulletproof detection movable frame in the bulletproof detection device when it is in the vertical position;
[0023] Figure 4 is a front view of the anti-smashing detection movable frame in the anti-smashing detection device when it is in the horizontal position;
[0024] Figure 5 is a front view of the anti-smashing detection movable frame in the anti-smashing detection device when it is in the vertical position;
[0025] Figure 6 is a top view of the anti-smashing detection fixed frame and the anti-smashing detection movable frame in the anti-smashing detection device.
[0026] Meanings of the reference numerals: 1 - Thermostat, 2 - First straight conveyor belt, 3 - Second straight conveyor belt, 4 - Third straight conveyor belt, 5 - First corner conveyor belt, 6 - Second corner conveyor belt, 7 - Bulletproof detection device, 8 - Anti-smashing detection device, 9 - Bulletproof detection movable frame, 10 - Anti-smashing detection movable frame, 11 - Detection table, 12 - Detection table support, 13 - Bulletproof detection fixed frame, 14 - Test card frame, 15 - Bulletproof detection rotating shaft, 16 - Fastening bolt, 17 - Detection frame, 18 - Impact hammer, 19 - Anti-smashing detection fixed frame, 20 - Anti-smashing detection rotating shaft, 21 - Positioning clamp, 22 - Bearing locking sleeve, 23 - Fixed frame, 24 - Rigid backing plate, 25 - Rubber pad, 26 - Movable frame, 27 - Limit card, 28 - Camera support frame, 29 - Bulletproof detection rotating wheel, 30 - Fixed support frame, 31 - Anti-smashing detection rotating wheel.
[0027] The present invention will be further described below in conjunction with the accompanying drawings and specific embodiments. Specific embodiments
[0028] Embodiment 1 of the present invention: As Figure 1 shown, a glass detection system for controlling temperature includes three thermostats 1, a horizontally arranged first straight conveyor belt 2, second straight conveyor belt 3, third straight conveyor belt 4, first corner conveyor belt 5 and second corner conveyor belt 6, as well as a bulletproof detection device 7 and an anti-smashing detection device 8. The thermostats 1 are all arranged on the first straight conveyor belt 2. One end of the first straight conveyor belt 2 is connected to the second straight conveyor belt 3 via the first corner conveyor belt 5, and the other end of the first straight conveyor belt 2 is connected to the third straight conveyor belt 4 via the second corner conveyor belt 6. The bulletproof detection device 7 includes a bulletproof detection movable frame 9, and the end of the second straight conveyor belt 3 away from the first corner conveyor belt 5 is detachably connected to the bulletproof detection movable frame 9. The anti-smashing detection device 8 includes an anti-smashing detection movable frame 10, and the end of the third straight conveyor belt 4 away from the second corner conveyor belt 6 is detachably connected to the anti-smashing detection movable frame 10. The first straight conveyor belt 2 can transport the glass to be detected to the bulletproof detection device 7 through the first corner conveyor belt 5 and the second straight conveyor belt 3, and the first straight conveyor belt 2 can also transport the glass to be detected to the anti-smashing detection device 8 through the second corner conveyor belt 6 and the third straight conveyor belt 4. The three thermostats 1 can process the glass to be detected at different temperatures simultaneously according to the detection requirements, and then perform detections respectively, improving the working efficiency.
[0029] As Figure 2 and Figure 3As shown in the figure, the bulletproof detection device 7 in this embodiment further includes a detection table 11, a detection table bracket 12, a bulletproof detection fixing frame 13, a test card frame 14, a bulletproof detection rotating shaft 15, and fastening bolts 16. The detection table 11 is fixedly arranged on the detection table bracket 12. The bulletproof detection fixing frame 13 and the test card frame 14 are both vertically arranged on the detection table 11, and the bulletproof detection fixing frame 13 is parallel to the test card frame 14. The bulletproof detection rotating shaft 15 is arranged on the detection table 11. The bulletproof detection movable frame 9 is fixedly connected to the bulletproof detection rotating shaft 15. The bulletproof detection movable frame 9 can rotate around the bulletproof detection rotating shaft 15. When the bulletproof detection movable frame 15 is in the horizontal position, the end of the bulletproof detection movable frame 9 far from the bulletproof detection rotating shaft 15 is detachably connected to the second straight conveyor belt 3. When the bulletproof detection movable frame 9 is in the vertical position, the bulletproof detection movable frame 9 is parallel to the bulletproof detection fixing frame 13. Fastening bolts 16 are arranged on both the bulletproof detection fixing frame 13 and the bulletproof detection movable frame 9. After the glass to be detected is transported onto the bulletproof detection movable frame 9, the bulletproof detection movable frame 9 is driven by the bulletproof detection rotating shaft 15 to the vertical position, cooperates with the bulletproof detection fixing frame 13 to fix the glass to be detected, and is reinforced by the fastening bolts 16, then the bulletproof detection of the glass can be started.
[0030] As Figure 4 and Figure 5 shown in the figure, the anti-smashing detection device 8 in this embodiment further includes a detection frame 17, a hammer 18, an anti-smashing detection fixing frame 19, an anti-smashing detection rotating shaft 20, a positioning clamp 21, and a bearing locking sleeve 22. The detection frame 17 is a cuboid frame with both the top surface and the bottom surface being square. The hammer 18 is movably arranged on the top surface of the detection frame 17. The anti-smashing detection fixing frame 19 is arranged at the lower part of the detection frame 17. The anti-smashing detection rotating shaft 20 is fixedly connected to the anti-smashing detection fixing frame 19. The bearing locking sleeve 22 is arranged on the anti-smashing detection rotating shaft 20. The anti-smashing detection movable frame 10 is a square frame. The anti-smashing detection movable frame 10 is connected to the anti-smashing detection rotating shaft 20. The anti-smashing detection movable frame 10 can rotate around the anti-smashing detection rotating shaft 20. The positioning clamps 21 are arranged at the four vertices of the anti-smashing detection movable frame 10. When the anti-smashing detection movable frame 10 is in the horizontal position, the anti-smashing detection movable frame 10 is detachably connected to the third straight conveyor belt 4. The bearing locking sleeve 22 can fix the anti-smashing detection rotating shaft 20 to prevent the anti-smashing detection movable frame 10 from deflecting when the hammer 18 falls, which may affect the detection result.
[0031] In this embodiment, the length of the first straight conveyor belt 2 is 5 m, and the lengths of the second straight conveyor belt 3 and the third straight conveyor belt 4 are 3 m, which can ensure that the glass to be detected will not have a large temperature change during the long transportation process, and improve the accuracy of the detection result.
[0032] Embodiment 2 of the present invention: As Figure 1As shown in the figure, a glass detection system for controlling temperature includes three constant temperature chambers 1, a horizontally arranged first straight conveyor belt 2, a second straight conveyor belt 3, a third straight conveyor belt 4, a first corner conveyor belt 5 and a second corner conveyor belt 6, as well as a bulletproof detection device 7 and an anti-smashing detection device 8. The constant temperature chambers 1 are all arranged on the first straight conveyor belt 2. One end of the first straight conveyor belt 2 is connected to the second straight conveyor belt 3 via the first corner conveyor belt 5, and the other end of the first straight conveyor belt 2 is connected to the third straight conveyor belt 4 via the second corner conveyor belt 6. The bulletproof detection device 7 includes a bulletproof detection movable frame 9, and the end of the second straight conveyor belt 3 far from the first corner conveyor belt 5 is detachably connected to the bulletproof detection movable frame 9. The anti-smashing detection device 8 includes an anti-smashing detection movable frame 10, and the end of the third straight conveyor belt 4 far from the second corner conveyor belt 6 is detachably connected to the anti-smashing detection movable frame 10. The first straight conveyor belt 2 can transport the glass to be detected to the bulletproof detection device 7 through the first corner conveyor belt 5 and the second straight conveyor belt 3. The first straight conveyor belt 2 can also transport the glass to be detected to the anti-smashing detection device 8 through the second corner conveyor belt 6 and the third straight conveyor belt 4. The three constant temperature chambers 1 can process the glass to be detected at different temperatures simultaneously according to the detection requirements, and then conduct detections respectively, improving the working efficiency.
[0033] As Figure 2 and Figure 3 shown in the figure, in this embodiment, the bulletproof detection device 7 further includes a detection table 11, a detection table support 12, a bulletproof detection fixing frame 13, a test card frame 14, a bulletproof detection rotating shaft 15 and a fastening bolt 16. The detection table 11 is fixedly arranged on the detection table support 12. The bulletproof detection fixing frame 13 and the test card frame 14 are both vertically arranged on the detection table 11, and the bulletproof detection fixing frame 13 is parallel to the test card frame 14. The bulletproof detection rotating shaft 15 is arranged on the detection table 11, and the bulletproof detection movable frame 9 is fixedly connected to the bulletproof detection rotating shaft 15. The bulletproof detection movable frame 9 can rotate around the bulletproof detection rotating shaft 15. When the bulletproof detection movable frame 15 is in the horizontal position, the end of the bulletproof detection movable frame 9 far from the bulletproof detection rotating shaft 15 is detachably connected to the second straight conveyor belt 3. When the bulletproof detection movable frame 9 is in the vertical position, the bulletproof detection movable frame 9 is parallel to the bulletproof detection fixing frame 13. The bulletproof detection fixing frame 13 and the bulletproof detection movable frame 9 are both provided with fastening bolts 16. After the glass to be detected is transported onto the bulletproof detection movable frame 9, the bulletproof detection movable frame 9 is driven by the bulletproof detection rotating shaft 15 to the vertical position, cooperates with the bulletproof detection fixing frame 13 to fix the glass to be detected, and is reinforced by using the fastening bolt 16, then the bulletproof detection of the glass can be started.
[0034] As Figure 2 and Figure 3As shown, the bulletproof detection fixing frame 13 in this embodiment includes a fixing frame 23, a rigid backing plate 24, and a rubber pad 25 that are sequentially connected. The bulletproof detection movable frame 9 includes a movable frame 26 and a rubber pad 25 that are fixedly connected to prevent the glass from colliding with the frame. When the bulletproof detection movable frame 9 is in a vertical position, a space for clamping the glass to be detected is formed between the bulletproof detection movable frame 9 and the bulletproof detection fixing frame 13. From the direction close to the test card frame 14 to the direction far from the test card frame 14, they are the fixing frame 23, the rigid backing plate 24, the rubber pad 25 of the bulletproof detection fixing frame 13, the rubber pad 25 of the bulletproof detection movable frame 9, and the movable frame 26 in sequence.
[0035] As Figure 2 and Figure 3 shown, the bulletproof detection device 7 in this embodiment further includes a limit card 27, a camera support frame 28, and bulletproof detection movable wheels 29. The limit card 27 is provided at one end of the bulletproof detection movable frame 9 close to the bulletproof detection rotating shaft 20, and the limit card 27 is located on the side of the bulletproof detection movable frame 9 close to the bulletproof detection fixing frame 13 to prevent the glass to be detected from sliding when the bulletproof detection movable frame 9 rotates. The camera support frame 28 is provided on the detection table 11, and a camera can be set to record the bulletproof detection process. The bulletproof detection movable wheels 29 are provided at the bottom of the detection table support 12 and can flexibly adjust the position of the bulletproof detection device 7.
[0036] As Figure 4 and Figure 5 shown, the anti-smashing detection device 8 in this embodiment further includes a detection frame 17, a hammer 18, an anti-smashing detection fixing frame 19, an anti-smashing detection rotating shaft 20, a positioning clip 21, and a bearing locking sleeve 22. The detection frame 17 is a cuboid frame with both the top and bottom surfaces being squares, and the hammer 18 is movably provided on the top surface of the detection frame 17. The anti-smashing detection fixing frame 19 is provided at the lower part of the detection frame 17, the anti-smashing detection rotating shaft 20 is fixedly connected to the anti-smashing detection fixing frame 19, and the bearing locking sleeve 22 is provided on the anti-smashing detection rotating shaft 20. The anti-smashing detection movable frame 10 is a square frame, the anti-smashing detection movable frame 10 is connected to the anti-smashing detection rotating shaft 20, and the anti-smashing detection movable frame 10 can rotate around the anti-smashing detection rotating shaft 20. The positioning clip 21 is provided at the four vertices of the anti-smashing detection movable frame 10. When the anti-smashing detection movable frame 10 is in a horizontal position, the anti-smashing detection movable frame 10 is detachably connected to the third straight conveyor belt 4. The bearing locking sleeve 22 can fix the anti-smashing detection rotating shaft 20 to prevent the anti-smashing detection movable frame 10 from deflecting when the hammer 18 falls, affecting the detection result.
[0037] As Figure 4 , Figure 5 and Figure 6As shown in the figure, the anti-smashing detection device 8 in this embodiment further includes four fixed support frames 30, a camera support frame 28, and anti-smashing detection movable wheels 31. The fixed support frames 30 are detachably arranged below the anti-smashing detection fixed frame 19. When the anti-smashing detection movable frame 10 is in the horizontal position, the top surface of the fixed support frame 30 abuts against the bottom surface of the anti-smashing detection movable frame 10 to further fix the position of the anti-smashing detection movable frame 10. The camera support frame 28 is connected to the detection frame 17 and can install a camera to record the anti-smashing detection result. The anti-smashing detection movable wheels 31 are arranged at the bottom of the detection frame 17 to facilitate the adjustment of the position of the anti-smashing detection device 8.
[0038] In this embodiment, the length of the first straight conveyor belt 2 is 7 m, and the lengths of the second straight conveyor belt 3 and the third straight conveyor belt 4 are 4 m, ensuring that the glass to be detected will not undergo large temperature changes during the long transportation process, thereby improving the accuracy of the detection result.
[0039] Embodiment 3 of the present invention: As Figure 1 shown, a glass detection system for controlling temperature includes three constant temperature chambers 1, a horizontally arranged first straight conveyor belt 2, a second straight conveyor belt 3, a third straight conveyor belt 4, a first corner conveyor belt 5, and a second corner conveyor belt 6, as well as a bulletproof detection device 7 and an anti-smashing detection device 8. The constant temperature chambers 1 are all arranged on the first straight conveyor belt 2. One end of the first straight conveyor belt 2 is connected to the second straight conveyor belt 3 via the first corner conveyor belt 5, and the other end of the first straight conveyor belt 2 is connected to the third straight conveyor belt 4 via the second corner conveyor belt 6. The bulletproof detection device 7 includes a bulletproof detection movable frame 9, and the end of the second straight conveyor belt 3 away from the first corner conveyor belt 5 is detachably connected to the bulletproof detection movable frame 9. The anti-smashing detection device 8 includes an anti-smashing detection movable frame 10, and the end of the third straight conveyor belt 4 away from the second corner conveyor belt 6 is detachably connected to the anti-smashing detection movable frame 10. The first straight conveyor belt 2 can transport the glass to be detected to the bulletproof detection device 7 through the first corner conveyor belt 5 and the second straight conveyor belt 3, and the first straight conveyor belt 2 can also transport the glass to be detected to the anti-smashing detection device 8 through the second corner conveyor belt 6 and the third straight conveyor belt 4. The three constant temperature chambers 1 can process the glass to be detected at different temperatures simultaneously according to the detection requirements and then perform detections respectively, improving the work efficiency.
[0040] As Figure 2 and Figure 3As shown in the figure, the bulletproof detection device 7 in this embodiment further includes a detection table 11, a detection table support 12, a bulletproof detection fixing frame 13, a test card frame 14, a bulletproof detection rotating shaft 15, and a fastening bolt 16. The detection table 11 is fixedly arranged on the detection table support 12. The bulletproof detection fixing frame 13 and the test card frame 14 are both vertically arranged on the detection table 11, and the bulletproof detection fixing frame 13 is parallel to the test card frame 14. The bulletproof detection rotating shaft 15 is arranged on the detection table 11. The bulletproof detection movable frame 9 is fixedly connected to the bulletproof detection rotating shaft 15. The bulletproof detection movable frame 9 can rotate around the bulletproof detection rotating shaft 15. When the bulletproof detection movable frame 15 is in the horizontal position, the end of the bulletproof detection movable frame 9 far from the bulletproof detection rotating shaft 15 is detachably connected to the second straight conveyor belt 3. When the bulletproof detection movable frame 9 is in the vertical position, the bulletproof detection movable frame 9 is parallel to the bulletproof detection fixing frame 13. Fastening bolts 16 are provided on both the bulletproof detection fixing frame 13 and the bulletproof detection movable frame 9. After the glass to be detected is transported onto the bulletproof detection movable frame 9, the bulletproof detection movable frame 9 is driven by the bulletproof detection rotating shaft 15 to the vertical position, cooperates with the bulletproof detection fixing frame 13 to fix the glass to be detected, and is reinforced by using the fastening bolts 16, then the bulletproof detection of the glass can be started.
[0041] As Figure 2 and Figure 3 shown in the figure, the bulletproof detection fixing frame 13 in this embodiment includes a fixed frame 23, a rigid cushion plate 24, and a rubber pad 25 connected in sequence. The bulletproof detection movable frame 9 includes a movable frame 26 and a rubber pad 25 fixedly connected, to prevent the glass from colliding with the frame. When the bulletproof detection movable frame 9 is in the vertical position, a space for clamping the glass to be detected is formed between the bulletproof detection movable frame 9 and the bulletproof detection fixing frame 13. From the direction close to the test card frame 14 to the direction far from the test card frame 14, they are the fixed frame 23, the rigid cushion plate 24, the rubber pad 25 of the bulletproof detection fixing frame 13, the rubber pad 25 of the bulletproof detection movable frame 9, and the movable frame 26 in sequence.
[0042] As Figure 2 and Figure 3 shown in the figure, the bulletproof detection device 7 in this embodiment further includes a limit card 27, a camera support frame 28, and a bulletproof detection movable wheel 29. The limit card 27 is arranged at one end of the bulletproof detection movable frame 9 close to the bulletproof detection rotating shaft 20, and the limit card 27 is located on the side of the bulletproof detection movable frame 9 close to the bulletproof detection fixing frame 13, to prevent the glass to be detected from sliding when the bulletproof detection movable frame 9 rotates. The camera support frame 28 is arranged on the detection table 11, and a camera can be set to record the bulletproof detection process. The bulletproof detection movable wheel 29 is arranged at the bottom of the detection table support 12, and can flexibly adjust the position of the bulletproof detection device 7.
[0043] As Figure 4 andFigure 5 As shown in the figure, the anti-smashing detection device 8 in this embodiment further includes a detection frame 17, a shock hammer 18, an anti-smashing detection fixing frame 19, an anti-smashing detection rotating shaft 20, a positioning clamp 21, and a bearing locking sleeve 22. The detection frame 17 is a cuboid frame with both the top surface and the bottom surface being squares, and the shock hammer 18 is movably arranged on the top surface of the detection frame 17. The anti-smashing detection fixing frame 19 is arranged at the lower part of the detection frame 17, the anti-smashing detection rotating shaft 20 is fixedly connected with the anti-smashing detection fixing frame 19, and the bearing locking sleeve 22 is arranged on the anti-smashing detection rotating shaft 20. The anti-smashing detection movable frame 10 is a square frame, the anti-smashing detection movable frame 10 is connected with the anti-smashing detection rotating shaft 20, and the anti-smashing detection movable frame 10 can rotate around the anti-smashing detection rotating shaft 20. The positioning clamps 21 are arranged at the four vertices of the anti-smashing detection movable frame 10. When the anti-smashing detection movable frame 10 is in a horizontal position, the anti-smashing detection movable frame 10 is detachably connected to the third straight conveyor belt 4. The bearing locking sleeve 22 can fix the anti-smashing detection rotating shaft 20 to prevent the anti-smashing detection movable frame 10 from deflecting when the shock hammer 18 falls, affecting the detection result.
[0044] As Figure 4 , Figure 5 and Figure 6 As shown in the figure, the anti-smashing detection device 8 in this embodiment further includes two fixed support frames 30, a camera support frame 28, and anti-smashing detection movable wheels 31. The fixed support frames 30 are detachably arranged below the anti-smashing detection fixing frame 19. When the anti-smashing detection movable frame 10 is in a horizontal position, the top surface of the fixed support frame 30 abuts against the bottom surface of the anti-smashing detection movable frame 10 to further fix the position of the anti-smashing detection movable frame 10. The camera support frame 28 is connected to the detection frame 17 and can install a camera to record the anti-smashing detection result. The anti-smashing detection movable wheels 31 are arranged at the bottom of the detection frame 17 to facilitate the adjustment of the position of the anti-smashing detection device 8.
[0045] In this embodiment, the length of the first straight conveyor belt 2 is 8 m, and the lengths of the second straight conveyor belt 3 and the third straight conveyor belt 4 are 5 m, ensuring that the glass to be detected will not have a large temperature change during the long transportation process and improving the accuracy of the detection result.
[0046] Embodiment 4 of the present invention: This embodiment is an operation method of the glass detection system for controlling temperature during glass bulletproof detection, including the following steps,
[0047] a. According to the temperature required for detection, store the glass to be detected in the constant temperature box 1 for 3 hours;
[0048] b. According to the detection items, start the first straight conveyor belt 2, the second straight conveyor belt 3 and the first corner conveyor belt 5, and transport the glass to be detected after temperature treatment to the bulletproof detection device 7. The bulletproof detection movable frame 9 is in the horizontal position, then adjust the bulletproof detection movable frame 9 to the vertical position and fix it with the fastening bolt 16;
[0049] c. Conduct a bulletproof detection test and record the detection results.
[0050] Example 5 of the present invention: This example is an operation method of the glass detection system for controlling temperature during glass anti-smashing detection, including the following steps,
[0051] a. According to the temperature required for detection, store and process the glass to be detected in the constant temperature box 1 for 3 hours;
[0052] b. According to the detection items, start the first straight conveyor belt 2, the third straight conveyor belt 4 and the second corner conveyor belt 6, transport the glass to be detected after temperature treatment to the anti-smashing detection device 8, fix the glass to be detected with the positioning clamp 21, and then lock the bearing locking sleeve 22;
[0053] c. Conduct bulletproof detection and anti-smashing detection and record the detection results.
[0054] Working principle of the present invention: The present invention uses the constant temperature box 1 to process the glass to be detected at different temperatures, and then uses the conveyor belt to transport the processed glass to the bulletproof detection device 7 and the anti-smashing detection device 8 for detection respectively. The transportation, position adjustment and fixing process of the glass to be detected are completed through mechanical movement, reducing the number of operators, and improving the efficiency by controlling the length of the conveyor belt, avoiding large temperature changes of the glass to be detected due to heat exchange.
Claims
1. A glass detection system for controlling temperature, characterized in that: It includes several constant temperature boxes (1), a horizontally arranged first straight conveyor belt (2), a second straight conveyor belt (3), a third straight conveyor belt (4), a first corner conveyor belt (5) and a second corner conveyor belt (6), as well as a bulletproof detection device (7) and an anti-smashing detection device (8). The constant temperature boxes (1) are all arranged on the first straight conveyor belt (2). One end of the first straight conveyor belt (2) is connected to the second straight conveyor belt (3) through the first corner conveyor belt (5), and the other end of the first straight conveyor belt (2) is connected to the third straight conveyor belt (4) through the second corner conveyor belt (6). The bulletproof detection device (7) includes a bulletproof detection movable frame (9), and the end of the second straight conveyor belt (3) far from the first corner conveyor belt (5) is detachably connected to the bulletproof detection movable frame (9). The anti-smashing detection device (8) includes an anti-smashing detection movable frame (10), and the end of the third straight conveyor belt (4) far from the second corner conveyor belt (6) is detachably connected to the anti-smashing detection movable frame (10). The bulletproof detection device (7) further includes a detection table (11), a detection table support (12), a bulletproof detection fixed frame (13), a test card frame (14), a bulletproof detection rotating shaft (15) and a fastening bolt (16). The detection table (11) is fixedly arranged on the detection table support (12). The bulletproof detection fixed frame (13) and the test card frame (14) are both vertically arranged on the detection table (11), and the bulletproof detection fixed frame (13) is parallel to the test card frame (14). The bulletproof detection rotating shaft (15) is arranged on the detection table (11), and the bulletproof detection movable frame (9) is fixedly connected to the bulletproof detection rotating shaft (15). The bulletproof detection movable frame (9) can rotate around the bulletproof detection rotating shaft (15). When the bulletproof detection movable frame (9) is in the horizontal position, the end of the bulletproof detection movable frame (9) far from the bulletproof detection rotating shaft (15) is detachably connected to the second straight conveyor belt (3). When the bulletproof detection movable frame (9) is in the vertical position, the bulletproof detection movable frame (9) is parallel to the bulletproof detection fixed frame (13). Fastening bolts (16) are arranged on both the bulletproof detection fixed frame (13) and the bulletproof detection movable frame (9). The anti-smashing detection device (8) further includes a detection frame (17), a hammer (18), an anti-smashing detection fixed frame (19), an anti-smashing detection rotating shaft (20), a positioning clamp (21) and a bearing locking sleeve (22). The detection frame (17) is a cuboid frame with both the top surface and the bottom surface being square, and the hammer (18) is movably arranged on the top surface of the detection frame (17). The anti-smashing detection fixed frame (19) is arranged at the lower part of the detection frame (17), the anti-smashing detection rotating shaft (20) is fixedly connected to the anti-smashing detection fixed frame (19), and the bearing locking sleeve (22) is arranged on the anti-smashing detection rotating shaft (20). The positioning clamps (21) are arranged at the four vertices of the anti-smashing detection movable frame (10).
2. The glass detection system for controlling temperature according to claim 1, wherein: The anti-smashing detection movable frame (10) is a square frame. The anti-smashing detection movable frame (10) is connected to the anti-smashing detection rotating shaft (20), and the anti-smashing detection movable frame (10) can rotate around the anti-smashing detection rotating shaft (20). When the anti-smashing detection movable frame (10) is in the horizontal position, the anti-smashing detection movable frame (10) is detachably connected to the third straight conveyor belt (4).
3. The glass detection system for controlling temperature according to claim 1, wherein: The bulletproof detection fixed frame (13) includes a fixed frame (23), a rigid backing plate (24) and a rubber pad (25) connected in sequence. The bulletproof detection movable frame (9) includes a movable frame (26) and a rubber pad (25) fixedly connected. When the bulletproof detection movable frame (9) is in the vertical position, a space for clamping the glass to be detected is formed between the bulletproof detection movable frame (9) and the bulletproof detection fixed frame (13). From the direction close to the test card frame (14) to the direction far from the test card frame (14), they are the fixed frame (23), the rigid backing plate (24), the rubber pad (25) of the bulletproof detection fixed frame (13), the rubber pad (25) of the bulletproof detection movable frame (9) and the movable frame (26) in sequence.
4. The glass detection system for controlling temperature according to claim 3, characterized in that: The bulletproof detection device (7) further includes a limit card (27), a camera support frame (28) and a bulletproof detection movable wheel (29). The limit card (27) is arranged at one end of the bulletproof detection movable frame (9) close to the bulletproof detection rotating shaft (15), and the limit card (27) is located on one side of the bulletproof detection movable frame (9) close to the bulletproof detection fixed frame (13); the camera support frame (28) is arranged on the detection table (11); the bulletproof detection movable wheel (29) is arranged at the bottom of the detection table support (12).
5. The glass detection system for controlling temperature according to claim 2, characterized in that: The anti-smashing detection device (8) further includes a plurality of fixed support frames (30), a camera support frame (28) and anti-smashing detection movable wheels (31). The fixed support frames (30) are detachably arranged below the anti-smashing detection fixed frame (19). When the anti-smashing detection movable frame (10) is in the horizontal position, the top surface of the fixed support frame (30) abuts against the bottom surface of the anti-smashing detection movable frame (10); the camera support frame (28) is connected to the detection frame (17); the anti-smashing detection movable wheels (31) are arranged at the bottom of the detection frame (17).
6. The glass detection system for controlling temperature according to claim 1, characterized in that: The length of the first straight conveyor belt (2) is 5m - 8m, and the lengths of the second straight conveyor belt (3) and the third straight conveyor belt (4) are 3m - 5m.
7. An operating method of a glass detection system for controlling temperature, using the glass detection system for controlling temperature according to any one of claims 1-6, characterized in that: Including the following steps, a. According to the temperature required for detection, the glass to be detected is treated at different temperatures in the constant temperature box (1), and the treatment time is 3 hours; b. According to the detection items, the first straight conveyor belt (2), the second straight conveyor belt (3), the third straight conveyor belt (4), the first corner conveyor belt (5) and the second corner conveyor belt (6) are respectively started, and the glass to be detected after the temperature treatment is transported to the bulletproof detection device (7) and the anti-smashing detection device (8). The bulletproof detection movable frame (9) and the anti-smashing detection movable frame (10) are both in the horizontal position, and then the bulletproof detection movable frame (9) and the anti-smashing detection movable frame (10) are adjusted to the detection positions; c. Perform bulletproof detection and anti-smashing detection, and record the detection results.
8. The operating method of the glass detection system for controlling temperature according to claim 7, characterized in that: When performing bulletproof detection, in step b, start the first straight conveyor belt (2), the second straight conveyor belt (3) and the first corner conveyor belt (5). The rotation direction of the first straight conveyor belt (2) faces the first corner conveyor belt (5), transport the glass to be detected onto the bulletproof detection movable frame (9), rotate the bulletproof detection rotating shaft (15) to make the bulletproof detection movable frame (9) in a vertical position, and fix the glass to be detected through the fastening bolt (16).
9. The operating method of the glass detection system for controlling temperature according to claim 7, characterized in that: When performing anti-smashing detection, in step b, start the first straight conveyor belt (2), the third straight conveyor belt (4) and the second corner conveyor belt (6). The rotation direction of the first straight conveyor belt (2) faces the second corner conveyor belt (6), transport the glass to be detected onto the anti-smashing detection movable frame (10), fix the glass to be detected through the positioning clamp (21), and lock the locking bearing locking sleeve (22).
Citation Information
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