Vacuum glass sealing detection equipment
By combining a high-pressure water pump and a high-pressure nozzle with a cylinder, a sealing adjustment device, and a turntable structure, the problems of slow speed and insufficient accuracy in vacuum glass sealing testing have been solved, achieving rapid and accurate sealing testing.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- PUTIAN YILONG GLASS PROD CO LTD
- Filing Date
- 2025-06-05
- Publication Date
- 2026-04-21
AI Technical Summary
Existing vacuum glass sealing testing equipment is slow and inaccurate, mainly because water has poor penetrability and cannot quickly pass through poorly sealed insulated glass.
The system employs a high-pressure water pump and high-pressure nozzle in conjunction with a cylinder, a sealing adjustment device, and a turntable structure. It achieves sealing performance testing by spraying water under high pressure and rotating the glass, thereby improving testing efficiency and accuracy.
It enables rapid and accurate sealing testing of vacuum glass, improving testing efficiency and accuracy, and is adaptable to glass samples of different sizes.
Smart Images

Figure CN224151902U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of testing equipment technology, and in particular to a vacuum glass seal testing device. Background Technology
[0002] Vacuum glass is a new type of deep-processed glass product, developed based on the principle of thermos flasks. Vacuum glass consists of two layers of glass, sealed on all four sides, with a gap between them. This gap is then evacuated to create a vacuum. Because the vacuum layer between the two glass layers can insulate against sound and heat, vacuum glass has excellent heat insulation and sound insulation properties.
[0003] Chinese Patent Publication No. CN217331504U discloses a sealing performance testing device for tempered insulating glass processing, comprising a testing chamber with a detachable cover plate on the top and several ceramic heating elements installed on the inner wall of the chamber. This invention, through its structural design, enables precise testing of the glass edges and corners, improving the accuracy of the test results, ensuring product quality, and reducing the rate of defective products leaving the factory.
[0004] However, the above-mentioned device has certain drawbacks in using an atomizer to atomize water: due to the lack of sufficient water pressure, the water has poor penetrability and is difficult to quickly pass through poorly sealed insulating glass, which increases the detection time and affects the detection speed. Utility Model Content
[0005] In order to overcome the shortcomings of the existing technology, the technical problem to be solved by this utility model is to propose a vacuum glass seal testing device that can improve the detection speed and detection accuracy.
[0006] To achieve this objective, the present invention adopts the following technical solution:
[0007] This utility model provides a vacuum glass sealing testing device, including a testing box, a number of support legs are provided at the bottom of the testing box, a rotating shaft is rotatably connected to the bottom of the testing box, a motor is connected to one end of the rotating shaft, a turntable is provided at the end of the rotating shaft away from the motor, and support components are provided on both sides of the testing box.
[0008] A cylinder is provided on the support assembly, and a sealing adjustment device is provided on the side of the support assembly away from the cylinder. A sealing plate is slidably connected to the sealing adjustment device. An installation assembly for placing glass is provided at the bottom of the sealing adjustment device. The installation assembly is movably embedded in the turntable. A water tank is provided on one side of the detection box. A high-pressure water pump is connected to the bottom of the water tank. A high-pressure nozzle is connected to the high-pressure water pump through a connecting pipe. The high-pressure nozzle passes through the detection box.
[0009] The preferred technical solution of this utility model is that the sealing adjustment device includes two sets of fixing plates, a guide column is provided between the two sets of fixing plates, the upper fixing plate is connected to the cylinder drive end, the lower fixing plate is rotatably connected to the guide column, the lower fixing plate is abutted against the bottom of the sealing plate, the sealing plate is slidably connected to the guide column, and a limit spring is provided between the upper fixing plate and the sealing plate.
[0010] A preferred embodiment of this invention is that the mounting assembly includes mounting rods evenly distributed around the bottom of the fixing plate, an adjusting rod is slidably connected inside the mounting rod, a mounting bracket is provided at the end of the adjusting rod away from the mounting rod, and a locking device for fixing the position of the adjusting rod is provided on the mounting rod.
[0011] A preferred embodiment of this invention is that the locking device includes an adjustment groove at the top of the mounting rod, a screw at the top of the adjustment rod, the screw being slidably connected to the adjustment groove, and a locking nut on the screw.
[0012] A preferred embodiment of this invention is that an electric push rod is provided at the bottom of the fixing plate, and a pressure plate is connected to the driving end of the electric push rod for fixing the position of the glass.
[0013] A preferred embodiment of this invention is that the support assembly includes ears disposed on both sides of the detection box, at least two sets of fixing rods are disposed on the top of the ears, a connecting plate is disposed on the fixing rod, and the cylinder is mounted on the connecting plate.
[0014] The preferred technical solution of this utility model is that a number of drainage holes are evenly distributed on the turntable, and a receiving groove is opened around the top of the turntable corresponding to the mounting frame, the depth of the receiving groove being greater than the thickness of the horizontal end of the mounting frame.
[0015] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0016] This invention utilizes a cylinder, a sealing adjustment device, an installation component, and a turntable. The tempered glass to be tested is mounted on the installation component. The cylinder drives the sealing adjustment device and the installation component to move, causing the installation component to be embedded in the turntable. A motor drives the turntable to rotate, causing the glass on the installation component to rotate. Combined with the action of a high-pressure nozzle, this achieves the sealing performance test of the tempered glass, ensuring the test effect and improving the test efficiency. Attached Figure Description
[0017] Figure 1 This is a cross-sectional view of the detection equipment structure provided in a specific embodiment of this utility model;
[0018] Figure 2This is a schematic diagram of the detection equipment structure provided in a specific embodiment of this utility model;
[0019] Figure 3 This is a schematic diagram of the sealing adjustment device and installation components provided in a specific embodiment of the present utility model;
[0020] Figure 4 This is a schematic diagram of the installation component structure provided in a specific embodiment of this utility model;
[0021] Figure 5 This is a schematic diagram of the turntable structure provided in a specific embodiment of this utility model.
[0022] The attached diagram lists the components represented by each number as follows:
[0023] 1. Testing box; 11. Support leg; 12. Ear; 13. Fixing rod; 14. Connecting plate; 15. Rotating shaft; 2. Turntable; 21. Receiving groove; 22. Drain hole; 3. Motor; 4. Cylinder; 5. Sealing adjustment device; 51. Fixing plate; 52. Guide column; 53. Limit spring; 6. Mounting assembly; 61. Mounting rod; 611. Adjusting groove; 612. Locking nut; 62. Adjusting rod; 621. Screw; 63. Mounting bracket; 64. Pressure plate; 7. Sealing plate; 8. Electric push rod; 9. Water tank; 91. High-pressure water pump; 92. High-pressure nozzle. Detailed Implementation
[0024] The technical solution of this utility model will be further described below with reference to the accompanying drawings and specific embodiments.
[0025] A vacuum glass sealing testing device includes a testing box 1, a plurality of support legs 11 are provided at the bottom of the testing box 1, a rotating shaft 15 is rotatably connected to the bottom of the testing box 1, a motor 3 is connected to one end of the rotating shaft 15, a turntable 2 is provided at the end of the rotating shaft 15 away from the motor 3, and support components are provided on both sides of the testing box 1.
[0026] A cylinder 4 is provided on the support assembly. A sealing adjustment device 5 is provided on the side of the support assembly away from the cylinder 4. A sealing plate 7 is slidably connected to the sealing adjustment device 5. An installation assembly 6 for placing glass is provided at the bottom of the sealing adjustment device 5. The installation assembly 6 is movably embedded in the turntable 2. A water tank 9 is provided on one side of the detection box 1. A high-pressure water pump 91 is connected to the bottom of the water tank 9. A high-pressure nozzle 92 is connected to the high-pressure water pump 91 through a connecting pipe. The high-pressure nozzle 92 passes through the detection box 1.
[0027] The support assembly includes ear parts 12 disposed on both sides of the detection box 1. At least two sets of fixing rods 13 are disposed on the top of the ear parts 12. A connecting plate 14 is disposed on the fixing rod 13. The cylinder 4 is mounted on the connecting plate 14.
[0028] The tempered glass to be tested is placed on the mounting assembly 6 and fixed in place by the mounting assembly 6. The cylinder 4 drives the sealing adjustment device 5, the sealing plate 7, and the mounting assembly 6 to move downwards. When the sealing plate 7 contacts the top of the test chamber 1, the cylinder 4 continues to operate, causing the sealing adjustment device 5 to drive the mounting assembly 6 to continue moving downwards until it is embedded in the turntable 2. The high-pressure water pump 91 is started, so that the water in the water tank 9 is sprayed onto one side of the tempered glass through the high-pressure nozzle 92. At the same time, the motor 3 is started, and the motor 3 drives the turntable 2 to rotate through the rotating shaft 15. The turntable 2 drives the tempered glass on the mounting assembly 6 to rotate to test the sealing performance of the tempered glass. After the test is completed, the water in the test chamber 1 flows out through the drain pipe at the bottom. High-pressure water can better test the sealing performance of tempered glass, ensuring the efficiency of the test and improving the accuracy of the test.
[0029] As a possible implementation of this solution, preferably, the sealing adjustment device 5 includes two sets of fixing plates 51, and a guide post 52 is provided between the two sets of fixing plates 51. The upper fixing plate 51 is connected to the driving end of the cylinder 4, and the lower fixing plate 51 is rotatably connected to the guide post 52. The lower fixing plate 51 is abutted against the bottom of the sealing plate 7, and the sealing plate 7 is slidably connected to the guide post 52. A limit spring 53 is provided between the upper fixing plate 51 and the sealing plate 7.
[0030] The cylinder 4 drives the fixed plate 51 to move downward, and the guide column 52 drives the sealing plate 7 and the mounting assembly 6 to move downward until the sealing plate 7 abuts against the top of the test box 1. At this time, the cylinder 4 continues to work until the mounting assembly 6 is embedded in the turntable 2. During this process, the upper fixed plate 51 compresses the limit springs 53 on both sides. Through the action of the limit springs 53 on both sides, the force of the sealing plate 7 on the test box 1 is increased, so as to improve the sealing performance of the test box 1 during operation.
[0031] As a possible implementation of this solution, preferably, the mounting assembly 6 includes mounting rods 61 evenly distributed around the bottom perimeter of the fixing plate 51. An adjusting rod 62 is slidably connected inside the mounting rod 61. A mounting bracket 63 is provided at the end of the adjusting rod 62 away from the mounting rod 61. A locking device for fixing the position of the adjusting rod 62 is provided on the mounting rod 61. An electric push rod 8 is provided at the bottom of the fixing plate 51. A pressure plate 64 is connected to the drive end of the electric push rod 8 for fixing the position of the glass.
[0032] The tempered glass to be tested is placed on four sets of mounting brackets 63. According to the size of the tempered glass, the position of the mounting bracket 63 is adjusted by adjusting the position of the adjusting rod 62 and the mounting rod 61 to make it fit the tempered glass of the corresponding size. It is then fixed by a locking device to ensure the stability of the tempered glass during the testing process. At the same time, the electric push rod 8 drives the pressure plate 64 to act on the tempered glass, further increasing the stability of the tempered glass during the testing process and ensuring the testing effect.
[0033] As a possible implementation of this solution, preferably, the locking device includes an adjustment groove 611 opened at the top of the mounting rod 61, a screw 621 provided at the top of the adjustment rod 62, the screw 621 being slidably connected to the adjustment groove 611, and a locking nut 612 provided on the screw 621.
[0034] According to the size of the tempered glass, adjust the position of the adjusting rod 62 in the mounting rod 61 so that the mounting bracket 63 is compatible with it. Rotate the locking nut 612 on the screw 621 to fix the position of the adjusting rod 62. The tempered glass is positioned to ensure the stability of the tempered glass during the testing process. It can be used for tempered glass of different sizes and has a wide range of applications.
[0035] As a possible implementation of this solution, preferably, the turntable 2 has several sets of drainage holes 22 evenly distributed on it, and the top of the turntable 2 has a receiving groove 21 corresponding to the mounting frame 63. The depth of the receiving groove 21 is greater than the thickness of the horizontal end of the mounting frame 63.
[0036] Under the action of cylinder 4, the tempered glass on the mounting bracket 63 is driven to move towards the turntable 2 until the mounting bracket 63 is embedded in the receiving groove 21. According to the thickness of the tempered glass and the position of the high-pressure nozzle 92, the position of the mounting bracket 63 in the receiving groove 21 is adjusted by cylinder 4 so that the position of the tempered glass to be tested matches the position of the high-pressure nozzle 92, thereby improving the accuracy of the test.
[0037] This utility model has been described through preferred embodiments. Those skilled in the art will understand that various changes or equivalent substitutions can be made to these features and embodiments without departing from the spirit and scope of this utility model. This utility model is not limited to the specific embodiments disclosed herein; other embodiments falling within the scope of the claims of this application are all within the protection scope of this utility model.
Claims
1. A vacuum glass seal testing device, characterized in that: The test box (1) includes a test box (1), the bottom of which is provided with several sets of support legs (11), the bottom of which is rotatably connected to a rotating shaft (15), one end of which is connected to a motor (3), and a turntable (2) is provided at the end of the rotating shaft (15) away from the motor (3). Support components are provided on both sides of the test box (1). A cylinder (4) is provided on the support assembly. A sealing adjustment device (5) is provided on the side of the support assembly away from the cylinder (4). A sealing plate (7) is slidably connected to the sealing adjustment device (5). An installation assembly (6) for placing glass is provided at the bottom of the sealing adjustment device (5). The installation assembly (6) is movably embedded in the turntable (2). A water tank (9) is provided on one side of the detection box (1). A high-pressure water pump (91) is connected to the bottom of the water tank (9). A high-pressure nozzle (92) is connected to the high-pressure water pump (91) through a connecting pipe. The high-pressure nozzle (92) is set through the detection box (1).
2. The vacuum glass sealing testing device according to claim 1, characterized in that: The sealing adjustment device (5) includes two sets of fixing plates (51), and a guide post (52) is provided between the two sets of fixing plates (51). The upper fixing plate (51) is connected to the driving end of the cylinder (4), and the lower fixing plate (51) is rotatably connected to the guide post (52). The lower fixing plate (51) is abutted against the bottom of the sealing plate (7). The sealing plate (7) is slidably connected to the guide post (52). A limit spring (53) is provided between the upper fixing plate (51) and the sealing plate (7).
3. The vacuum glass sealing testing device according to claim 1, characterized in that: The mounting assembly (6) includes mounting rods (61) evenly distributed around the bottom of the fixing plate (51). An adjusting rod (62) is slidably connected inside the mounting rod (61). A mounting bracket (63) is provided at the end of the adjusting rod (62) away from the mounting rod (61). A locking device for fixing the position of the adjusting rod (62) is provided on the mounting rod (61).
4. The vacuum glass sealing testing device according to claim 3, characterized in that: The locking device includes an adjustment groove (611) on the top of the mounting rod (61), a screw (621) on the top of the adjustment rod (62), the screw (621) being slidably connected to the adjustment groove (611), and a locking nut (612) on the screw (621).
5. The vacuum glass sealing testing device according to claim 3, characterized in that: The bottom of the fixing plate (51) is provided with an electric push rod (8), and the driving end of the electric push rod (8) is connected to a pressure plate (64) for fixing the position of the glass.
6. The vacuum glass sealing testing device according to claim 1, characterized in that: The support assembly includes ears (12) on both sides of the detection box (1), at least two sets of fixing rods (13) are provided on the top of the ears (12), and a connecting plate (14) is provided on the fixing rods (13), and the cylinder (4) is mounted on the connecting plate (14).
7. The vacuum glass sealing testing device according to claim 1, characterized in that: The turntable (2) has several sets of drainage holes (22) evenly spaced on it. The turntable (2) has a receiving groove (21) on the top four sides corresponding to the mounting frame (63). The depth of the receiving groove (21) is greater than the thickness of the horizontal end of the mounting frame (63).
Citation Information
Patent Citations
Sealing performance detection device for tempered hollow glass processing
CN217331504U