Rapid gluing machine for hollow glass production

CN224778444UActive Publication Date: 2026-09-22阜南县君诚门窗型材有限公司
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Patent Information

Application Number
CN202522341542.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-05
Publication Date
2026-09-22
Estimated Expiration
2035-11-05

AI Technical Summary

Benefits of technology

本实用新型提供一种中空玻璃生产用快速涂胶机,为了提高中空玻璃涂胶效率适用于高速流水生产,在涂胶台上安装一个由驱动组件驱动可以往返三百六十度转动的定位盘,配合多个真空吸盘可以将需要涂胶的中空玻璃固定住,之后在涂胶台的顶部位于正面和背面的位置均通过伸缩结构、竖向调节组件和横向调节组件安装一个可以多位置调节的注胶头,组成完整的涂胶组件,通过两个注胶头可以同时为中空玻璃顶部两个方位进行同步涂胶,提高涂胶效率,再配合同一个注胶设备为两个注胶头提供胶水,提高涂抹均匀度,通过该设计消除玻璃往复移动的冗余时间,提升单块玻璃涂胶效率,适配高速流水线生产节奏,并且采用同一个注胶设备为两个注胶头提供胶水,确保供给稳定性和均匀性。

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Abstract

The utility model provides a kind of quick gluing machine for hollow glass production.The quick gluing machine for hollow glass production includes: mounting chassis;Gluing station, the gluing station is fixedly connected at the top of mounting chassis, the top back of the gluing station is equipped with mounting bracket, the top of the mounting bracket is equipped with telescopic structure, the telescopic end of the telescopic structure is equipped with a vertical adjusting assembly with driving structure, the bottom of the vertical adjusting assembly is equipped with a horizontal adjusting assembly, the bottom of the horizontal adjusting assembly is equipped with glue injection head by moving plate, the top of the mounting bracket is equipped with glue injection equipment.The quick gluing machine for hollow glass production provided by the utility model eliminates the redundant time of glass reciprocating movement, improves the gluing efficiency of single glass, adapts to the production rhythm of high-speed assembly line, and uses the same glue injection equipment to provide glue for two glue injection heads, to ensure the stability and uniformity of supply.
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Description

Technical Field

[0001] This utility model relates to the field of rapid adhesive application technology in the production of insulating glass, and in particular to a rapid adhesive application machine for the production of insulating glass. Background Technology

[0002] Insulating glass is a glass product made of two or more flat glass panes separated by a spacer frame and sealed around the perimeter. A certain thickness of dry air or inert gas layer is left in the middle. Its core structure includes the glass panes, spacer frame, desiccant, and sealant. The desiccant absorbs moisture in the sealed space to prevent fogging on the inside of the glass, while the sealant prevents gas leakage and water vapor infiltration. This type of glass is mainly used in building doors and windows, curtain walls, and other scenarios. With the heat insulation and sound insulation properties of the air layer, it can reduce the heat transfer between indoors and outdoors, reduce external noise interference, and improve the wind pressure resistance of the glass, combining practical functions and energy-saving effects.

[0003] Rapid sealant application is a key process in the production of insulated glass. It involves using specialized sealant application equipment to quickly and evenly apply sealant to the joint between the glass pane and the spacer frame, or to the perimeter sealing area of ​​the insulated glass. During operation, it is necessary to control the application speed and thickness to ensure that the sealant fills the gaps completely, while avoiding excess sealant or missed areas. This process efficiently seals the insulated glass, ensuring the dryness and airtightness of the air gap, and providing a foundation for the subsequent heat insulation and sound insulation performance of the finished product. It is an important step in improving the production efficiency of insulated glass.

[0004] Traditional glue applicators mostly adopt a single-head, single-path operation mode. When applying glue, the insulating glass needs to be moved clockwise or counterclockwise around the four sides. During the process, the glass needs to be moved repeatedly in the forward and reverse directions to switch the glued edge. This not only creates redundant paths, but also prolongs the processing cycle of a single piece of glass due to frequent start and stop. At the same time, long-term continuous operation of a single head is prone to fluctuations in glue application pressure due to concentrated load, which affects the uniformity of the glue layer and makes it difficult to adapt to the needs of high-efficiency assembly line production.

[0005] Therefore, it is necessary to provide a high-speed adhesive coating machine for insulating glass production to solve the above-mentioned technical problems. Summary of the Invention

[0006] This utility model provides a rapid glue applicator for insulating glass production, which solves the problem that traditional glue applicators require frequent rotation of the insulating glass unit to achieve glue application efficiency, making them unsuitable for high-efficiency production lines.

[0007] To solve the above-mentioned technical problems, the rapid adhesive coating machine for insulating glass production provided by this utility model includes: a mounting base; A glue application table is fixedly connected to the top of a mounting base. A mounting frame is installed on the back of the top of the glue application table. A telescopic structure is installed on the top of the mounting frame. A vertical adjustment component with a drive structure is installed at the telescopic end of the telescopic structure. A horizontal adjustment component is installed at the bottom of the vertical adjustment component. A glue dispensing head is installed at the bottom of the horizontal adjustment component via a moving plate. A glue dispensing device is installed on the top of the mounting frame. A diversion pipe is installed at the outlet of the glue dispensing device via an injection pipe. Two connecting pipes are installed at the two outlets of the diversion pipe respectively. A drive assembly is installed at the top center of the coating table. A positioning plate is installed at the output end of the drive assembly. Multiple suction cups are installed on the top of the positioning plate. A collection ring is installed at the bottom of the positioning plate. Multiple fixing tubes are installed on the top of the collection ring. A support ring is installed on the top of the coating table. A vacuum device is installed on the back of the coating table. An exhaust pipe is installed at the inlet of the vacuum device through a solenoid valve. One end of the lateral adjustment component is also equipped with a drive structure. The drive structure is the same as the drive component, except that the power is selected according to the requirements. Flow meters and solenoid valves that can monitor the flow of glue are installed on the two fixed tubes. The flow can be adjusted according to the flow to ensure the uniformity of glue injection from the two dispensing heads. The other ends of the two connecting tubes are connected to the two dispensing heads respectively. The structure on the glue application component is the same as the structure on the mounting bracket. The glue dispensing equipment and corresponding pipelines are then installed on the mounting bracket located on the back.

[0008] Preferably, a control box with a door is installed on the top of the mounting base, and an operation panel is installed on the front of the glue application table; The control panel allows you to set the device's operating parameters.

[0009] Preferably, the mounting base includes a base plate, a mounting structure, and an adjustment structure, wherein the mounting structure is used to mount the adjustment structure to the bottom of the base plate.

[0010] Preferably, the vertical adjustment assembly includes an adjustment frame, an adjustment screw, a slide bar, and an internal threaded bracket. The adjustment screw and slide bar are installed inside the adjustment frame, and the internal threaded bracket is installed on the outer surface of the adjustment screw and slide bar. The internal threaded frame and slide rod are slidably connected, the internal threaded frame and adjusting screw are threadedly connected, and the adjusting frame and telescopic structure are connected.

[0011] Preferably, the drive assembly includes a protective housing, a drive component, and an angle sensor, wherein the protective housing is used to mount the drive component on top of the coating station.

[0012] Preferably, telescopic components are installed at the bottom of the positioning disk near both sides, and the telescopic ends of the two telescopic components are equipped with support components through pressure monitoring components; Pressure monitoring components can monitor the stress on support components.

[0013] Preferably, the support assembly includes a fixed base and a support bolt, the fixed base being used to fix the support bolt to the top of the pressure monitoring component; The surface of the support bolt is made of soft silicone material, which has a certain degree of toughness.

[0014] Compared with related technologies, the rapid adhesive coating machine for insulating glass production provided by this utility model has the following advantages: This utility model provides a rapid adhesive coating machine for insulated glass production. To improve the adhesive coating efficiency of insulated glass and adapt it to high-speed assembly line production, a positioning plate driven by a drive component and capable of rotating 360 degrees is installed on the coating table. Multiple vacuum suction cups are used to fix the insulated glass to be coated. Then, at the top of the coating table, on both the front and back sides, a multi-position adjustable glue-dispensing head is installed via a telescopic structure, a vertical adjustment component, and a horizontal adjustment component, forming a complete adhesive coating assembly. The two glue-dispensing heads can simultaneously apply adhesive to two positions on the top of the insulated glass, improving coating efficiency. Furthermore, the same glue-dispensing device supplies glue to both heads, improving coating uniformity. This design eliminates the redundant time of glass reciprocating movement, improves the adhesive coating efficiency of a single piece of glass, adapts to the rhythm of high-speed assembly line production, and ensures supply stability and uniformity by using the same glue-dispensing device to supply glue to both heads. Attached Figure Description

[0015] Figure 1 A schematic diagram of the first embodiment of the rapid adhesive coating machine for insulating glass production provided by this utility model; Figure 2 A structural diagram illustrating the installation structure of this utility model is provided. Figure 3 This utility model provides a structural schematic diagram of the exhaust pipe; Figure 4 Provided for this utility model Figure 3 An enlarged view of point A shown; Figure 5 A schematic diagram of the drive component is provided for this utility model; Figure 6 A schematic diagram of the second embodiment of the rapid adhesive coating machine for insulating glass production provided by this utility model; Figure 7 Provided for this utility model Figure 6 A magnified view of point B shown.

[0016] Numbered in the diagram: 1. Mounting base; 101. Base plate; 102. Mounting structure; 103. Adjustment structure; 2. Control panel; 3. Glue application table; 4. Support ring; 5. Positioning plate; 6. Suction cup; 7. Mounting bracket; 8. Horizontal adjustment assembly; 9. Vertical adjustment assembly; 901. Adjustment frame; 902. Adjustment screw; 903. Slide rod; 904. Internal thread frame; 10. Glue injection equipment; 11. Telescopic structure; 12. Glue application assembly; 13. Control box; 14. Box 15. Door, 16. Vacuum equipment, 17. Solenoid valve, 18. Exhaust pipe, 19. Injection pipe, 20. Diverter pipe, 21. Connecting pipe, 21. Drive assembly, 211. Protective shell, 212. Drive component, 213. Angle sensor, 22. Drive structure, 23. Sum ring, 24. Fixed pipe, 25. Moving plate, 26. Dispensing head, 27. Support assembly, 271. Fixed base, 272. Support bolt, 28. Telescopic component, 29. Pressure monitoring component. Detailed Implementation

[0017] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0018] First Embodiment

[0019] Please refer to the following: Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 ,in, Figure 1 A schematic diagram of the first embodiment of the rapid adhesive coating machine for insulating glass production provided by this utility model; Figure 2 A structural diagram illustrating the installation structure of this utility model is provided. Figure 3 This utility model provides a structural schematic diagram of the exhaust pipe; Figure 4 Provided for this utility model Figure 3 An enlarged view of point A shown; Figure 5 A structural schematic diagram of the driving component is provided for this utility model. The rapid adhesive applicator for insulating glass production includes: a mounting base 1; A glue application table 3 is fixedly connected to the top of the mounting base 1. A mounting frame 7 is installed on the back of the top of the glue application table 3. A telescopic structure 11 is installed on the top of the mounting frame 7. A vertical adjustment component 9 with a drive structure 22 is installed at the telescopic end of the telescopic structure 11. A horizontal adjustment component 8 is installed at the bottom of the vertical adjustment component 9. A glue injection head 26 is installed at the bottom of the horizontal adjustment component 8 through a moving plate 25. A glue injection device 10 is installed on the top of the mounting frame 7. A diversion pipe 19 is installed at the outlet of the glue injection device 10 through an injection pipe 18. Two connecting pipes 20 are installed at the two outlets of the diversion pipe 19 respectively. A drive assembly 21 is installed at the top center of the coating table 3. A positioning disk 5 is installed at the output end of the drive assembly 21. Multiple suction cups 6 are installed on the top of the positioning disk 5. A collection ring 23 is installed at the bottom of the positioning disk 5. Multiple fixing tubes 24 are installed on the top of the collection ring 23. A support ring 4 is installed on the top of the coating table 3. A vacuum device 15 is installed on the back of the coating table 3. An exhaust pipe 17 is installed at the inlet of the vacuum device 15 through a solenoid valve 16. One end of the horizontal adjustment component 8 is also equipped with a drive structure 22. The drive structure 22 has the same structure as the drive component 21, except that the power is selected according to the requirements. The two fixed pipes 24 are equipped with flow meters and solenoid valves that can monitor the flow of glue. They can be adjusted according to the flow to ensure the uniformity of glue injection from the two glue injection heads 26. The other ends of the two connecting pipes 20 are connected to the two glue injection heads 26 respectively. The structure on the glue application component 12 is the same as the structure on the mounting frame 7. Then the glue injection device 10 and the corresponding pipeline are installed on the mounting frame 7 located on the back. The bottom of the moving plate 25 is equipped with an auxiliary positioning device. Multiple fixed pipes 24 pass through the positioning plate 5 and are connected to multiple suction cups 6 respectively. The exhaust pipe 17 is connected to the collection ring 23 to provide suction for the suction cups 6. The top of the support ring 4 has a ball bearing. The top of the support ring 4 and the bottom of the positioning plate 5 are connected in a rolling manner to increase the stability of the positioning plate 5. The telescopic structure 11 includes telescopic components and a stabilizing rod to increase the stability of the vertical adjustment component 9 moving up and down.

[0020] Please refer to Figure 1 The top of the mounting base 1 is equipped with a control box 13 with a door 14, and the front of the glue application table 3 is equipped with an operation panel 2. The operation panel 2 allows setting equipment operating parameters. The door 14 is equipped with a lock. The control box 13 contains a power switch and a controller for the operation of auxiliary equipment.

[0021] Please refer to Figure 1 and Figure 2 The mounting base 1 includes a base plate 101, a mounting structure 102, and an adjustment structure 103. The mounting structure 102 is used to mount the adjustment structure 103 to the bottom of the base plate 101. The threaded connection between the mounting structure 102 and the adjusting structure 103 can adjust the stability of the base plate 101.

[0022] Please refer to Figure 3 and Figure 4 The vertical adjustment component 9 includes an adjustment frame 901, an adjustment screw 902, a slide bar 903, and an internal threaded bracket 904. The adjustment screw 902 and the slide bar 903 are installed inside the adjustment frame 901, and the internal threaded bracket 904 is installed on the outer surface of the adjustment screw 902 and the slide bar 903. The internal threaded bracket 904 and the slide rod 903 are slidably connected, the internal threaded bracket 904 and the adjusting screw 902 are threadedly connected, and the adjusting frame 901 is connected to the telescopic structure 11.

[0023] Please refer to Figure 3 and Figure 5 The drive assembly 21 includes a protective shell 211, a drive component 212, and an angle sensor 213. The protective shell 211 is used to mount the drive component 212 on the top of the glue application table 3. The angle sensor 213, together with the drive component 212 controller, can precisely control the rotation speed and rotation angle.

[0024] The working principle of the high-speed adhesive applicator for insulating glass production provided by this utility model is as follows: A positioning plate 5, driven by a drive assembly 21 and capable of rotating 360 degrees, is installed on the glue application table 3. Multiple vacuum suction cups 6 are used to fix the insulating glass unit to be glued. Then, a multi-position adjustable glue injection head 26 is installed on the top of the glue application table 3 at both the front and back positions via a telescopic structure 11, a vertical adjustment assembly 9, and a horizontal adjustment assembly 8, forming a complete glue application assembly 12. The two glue injection heads 26 allow for simultaneous glue application to two locations on the top of the insulating glass unit, improving application efficiency. Furthermore, the same glue injection device 10 provides glue to both injection heads 26, improving the uniformity of the application. In actual use… First, the insulating glass unit that needs to be coated with adhesive is placed on the suction cup 6 using the insulating glass loading structure. Then, the vacuum equipment 15 is activated to provide suction, creating a negative pressure between the suction cup 6 and the insulating glass. Next, the two vertical adjustment components 9 and the two horizontal adjustment components 8 are activated to adjust the position of the two glue injection heads 26 so that they are precisely aligned with the positions on the insulating glass that need to be coated with adhesive. After positioning, the glue injection equipment 10 can be activated to inject adhesive into the two glue injection heads 26 for coating. After coating the two positions, the drive component 21 is activated to rotate the positioning plate 5 ninety degrees, and then the glue injection heads 26 can be used to simultaneously coat the other two positions on the insulating glass.

[0025] Compared with related technologies, the rapid adhesive coating machine for insulating glass production provided by this utility model has the following advantages: To improve the efficiency of insulated glass coating and adapt to high-speed production lines, a positioning plate 5, driven by a drive assembly 21 and capable of rotating 360 degrees, is installed on the coating table 3. Multiple vacuum suction cups 6 are used to hold the insulated glass to be coated. Then, a multi-position adjustable glue-dispensing head 26 is installed on the top of the coating table 3 at both the front and back positions via a telescopic structure 11, a vertical adjustment assembly 9, and a horizontal adjustment assembly 8, forming a complete coating assembly 12. The two glue-dispensing heads 26 can simultaneously apply glue to two positions on the top of the insulated glass, improving coating efficiency. Furthermore, the same glue-dispensing device 10 provides glue to both heads 26, improving coating uniformity. This design eliminates the redundant time of glass reciprocating movement, increases the coating efficiency of a single piece of glass, adapts to the rhythm of high-speed production lines, and ensures supply stability and uniformity by using the same glue-dispensing device 10 to provide glue to both heads 26.

[0026] Second Embodiment

[0027] Please refer to the following: Figures 6-7 , Figure 6 A schematic diagram of the second embodiment of the rapid adhesive coating machine for insulating glass production provided by this utility model; Figure 7 Provided for this utility model Figure 6 The enlarged view at point B shows a second embodiment of the rapid adhesive coating machine for insulating glass production, based on the first embodiment of this application. This second embodiment proposes another rapid adhesive coating machine for insulating glass production. The second embodiment is merely a preferred embodiment of the first embodiment, and its implementation will not affect the independent implementation of the first embodiment.

[0028] Specifically, the difference between the second embodiment of this application and the rapid adhesive applicator for insulating glass production is that, please refer to... Figure 6 and Figure 7 The bottom of the positioning disk 5 is equipped with telescopic components 28 near both sides, and the telescopic ends of the two telescopic components 28 are equipped with support components 27 through pressure monitoring components 29. The pressure monitoring component 29 can monitor the stress on the support component 27, and the telescopic end of the telescopic component 28 passes through the positioning plate 5.

[0029] Please refer to Figure 6 and Figure 7 The support assembly 27 includes a fixed base 271 and a support bolt 272, wherein the fixed base 271 is used to fix the support bolt 272 to the top of the pressure monitoring component 29; The surface of the support bolt 272 is made of soft silicone material to prevent scratches or damage to the surface of the insulated glass.

[0030] Compared with related technologies, the rapid adhesive coating machine for insulating glass production provided by this utility model has the following advantages: To prevent the insulating glass from shaking during the adhesive application process on the suction cup 6, two telescopic components 28 are installed at the bottom of the positioning plate 5 near both sides. Then, the support component 27 is fixed to the telescopic end of the telescopic component 28 by the pressure monitoring component 29. When the suction cup 6 adheres to the insulating glass, the telescopic component 28 is activated, pushing the support component 27 to contact the bottom of the insulating glass, providing an upward thrust and increasing the stability of the insulating glass. During this process, the pressure monitoring component 29 can monitor the pressure changes in real time, improving the stability of the insulating glass fixation.

[0031] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the content of this utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. A rapid adhesive coating machine for insulating glass production, characterized in that, include: Install the base frame; A glue application table is fixedly connected to the top of a mounting base. A mounting frame is installed on the back of the top of the glue application table. A telescopic structure is installed on the top of the mounting frame. A vertical adjustment component with a drive structure is installed at the telescopic end of the telescopic structure. A horizontal adjustment component is installed at the bottom of the vertical adjustment component. A glue dispensing head is installed at the bottom of the horizontal adjustment component via a moving plate. A glue dispensing device is installed on the top of the mounting frame. A diversion pipe is installed at the outlet of the glue dispensing device via an injection pipe. Two connecting pipes are installed at the two outlets of the diversion pipe respectively. A drive assembly is installed at the top center of the coating table. A positioning plate is installed at the output end of the drive assembly. Multiple suction cups are installed on the top of the positioning plate. A collection ring is installed at the bottom of the positioning plate. Multiple fixing tubes are installed on the top of the collection ring. A support ring is installed on the top of the coating table. A vacuum device is installed on the back of the coating table. An exhaust pipe is installed at the inlet of the vacuum device through a solenoid valve.

2. The rapid adhesive coating machine for insulating glass production according to claim 1, characterized in that, A control box with a door is installed on the top of the mounting base, and an operation panel is installed on the front of the glue application table.

3. The rapid adhesive coating machine for insulating glass production according to claim 1, characterized in that, The mounting base includes a base plate, a mounting structure, and an adjustment structure. The mounting structure is used to mount the adjustment structure to the bottom of the base plate.

4. The rapid adhesive coating machine for insulating glass production according to claim 1, characterized in that, The vertical adjustment assembly includes an adjustment frame, an adjustment screw, a slide bar, and an internal threaded bracket. The adjustment screw and slide bar are installed inside the adjustment frame, and the internal threaded bracket is installed on the outer surface of the adjustment screw and slide bar.

5. The rapid adhesive coating machine for insulating glass production according to claim 1, characterized in that, The drive assembly includes a protective housing, a drive component, and an angle sensor. The protective housing is used to mount the drive component on top of the coating station.

6. The rapid adhesive coating machine for insulating glass production according to claim 1, characterized in that, Telescopic components are installed on the bottom of the positioning disk near both sides, and the telescopic ends of the two telescopic components are equipped with support components through pressure monitoring components.

7. The rapid adhesive coating machine for insulating glass production according to claim 6, characterized in that, The support assembly includes a fixed base and a support bolt, the fixed base being used to secure the support bolt to the top of the pressure monitoring component.