Rapid gluing machine for hollow glass production

CN224657188UActive Publication Date: 2026-08-21CHONGQING JINSHUN GLASS CO LTD
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Patent Information

Application Number
CN202521957786.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-11
Publication Date
2026-08-21
Estimated Expiration
2035-09-11

AI Technical Summary

Technical Problem

[0003]传统中空玻璃生产用涂胶机多采用固定化机构设计,涂胶组件位置、运行轨迹通常预设为特定规格,仅能适配单一或少数几种标准尺寸的中空玻璃

Benefits of technology

[0016] 1. This utility model, through its adjustable glue application component and quick clamping and fixing mechanism, can quickly adapt to the glue application needs of insulated glass of different specifications, reducing the time for equipment adjustment and tooling replacement, improving production efficiency, and meeting the needs of customized, multi-specification batch production. The adjustable position of the glue component enables the electric glue gun to accurately apply glue to the glass edges and corners, ensuring the precision and uniformity of glue application, thereby improving the sealing performance, heat insulation and sound insulation effect and service life of insulated glass, making it highly practical.

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Abstract

The utility model discloses a kind of quick gluing machine for hollow glass production, relate to glass processing technical field.The utility model includes: mounting plate, the mounting plate quantity is two, and its both ends bottom is fixed with support leg, and conveying belt is arranged at interval between two mounting plates;Clamping assembly is used to clamp and fix hollow glass, and the clamping assembly includes first first Chinese character shape plate fixed in the top middle of mounting plate, support frame is fixed in the bottom middle of mounting plate, the inner top wall of support frame is equipped with hydraulic cylinder, and the piston end of hydraulic cylinder is connected with abutment plate.The utility model can quickly adapt to the gluing demand of different specifications hollow glass by adjustable gluing assembly and quick clamping and fixing mechanism, reduces the time of equipment adjustment and tool replacement, improves production efficiency, meets the demand of customization, multi-specification batch production, and higher practicality.
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Description

Technical Field

[0001] This utility model relates to the field of glass processing equipment technology, specifically to a rapid adhesive coating machine for insulated glass production. Background Technology

[0002] In the manufacturing process of insulated glass, besides the process of applying adhesive strips to the frame, the application of adhesive to the four corners of the glass is a crucial step in ensuring sealing performance and structural stability. The quality of the corner adhesive application directly affects the heat insulation, sound insulation, and service life of the insulated glass, thus requiring high precision and efficiency in the application process.

[0003] Traditional insulated glass coating machines typically employ a fixed mechanism design, with the coating component positions and operating trajectories pre-set to specific specifications, making them suitable only for single or a few standard sizes of insulated glass. When producing insulated glass products of different specifications and sizes, complex mechanical adjustments or replacement of specialized tooling are required, which is not only cumbersome but also significantly increases production preparation time, reduces production efficiency, and fails to meet the demands of customized, multi-specification batch production, resulting in low practicality. Therefore, we propose a high-speed coating machine for insulated glass production to address these issues. Utility Model Content

[0004] To achieve the above objectives, this utility model specifically adopts the following technical solution:

[0005] A high-speed adhesive applicator for insulating glass production, comprising:

[0006] Mounting plates, there are two mounting plates, and support legs are fixed at the bottom of both ends of the mounting plates. A conveyor belt is provided between the two mounting plates at intervals.

[0007] A clamping assembly for clamping and fixing insulated glass, the clamping assembly including a first U-shaped plate fixed in the middle of the top of the mounting plate, a support frame fixed in the middle of the bottom of the mounting plate, a hydraulic cylinder installed on the inner top wall of the support frame, and an abutment plate connected to the piston end of the hydraulic cylinder;

[0008] The sliding grooves are fixed on the top of the mounting plate. There are four sliding grooves, which are located at the four corners of the first U-shaped plate. The second U-shaped plate is slidably arranged between the sliding grooves on the same side.

[0009] An adhesive applicator is disposed inside the second U-shaped plate. The adhesive applicator is used to apply adhesive to the edges and corners of the glass. The position of the adhesive applicator is adjustable.

[0010] Furthermore, a photoelectric sensor is installed on the top edge of the first U-shaped plate.

[0011] Furthermore, guide rods are slidably inserted on both sides of the top of the support frame, and the upper ends of the guide rods are connected to the bottom of the contact plate.

[0012] Furthermore, extension rods are fixedly provided on both sides of the bottom of the second U-shaped plate, and the side wall of the slide groove is constructed with a strip-shaped hole. The extension rods slide through the inside of the strip-shaped hole, and their ends are threaded with locking nuts.

[0013] Furthermore, the sides of the strip-shaped hole are constructed with scale lines, which are strip-shaped protrusions.

[0014] Furthermore, the adhesive application assembly includes a mounting rod rotatably connected between the upper sides of the second U-shaped plate. The mounting rod has threads with opposite helical directions on both sides and is symmetrically threaded to mounting blocks. The mounting blocks are slidably connected to the inner top wall of the second U-shaped plate. Rectangular frames are fixed on both sides of the bottom of the mounting blocks, and sliding plates are slidably inserted between the rectangular frames. An electric push rod is installed in the middle of the bottom of the mounting block, and the piston end of the electric push rod is connected to the sliding plate. An electric glue gun is installed in the middle of the bottom of the sliding plate.

[0015] The beneficial effects of this utility model are as follows:

[0016] 1. This utility model, through its adjustable glue application component and quick clamping and fixing mechanism, can quickly adapt to the glue application needs of insulated glass of different specifications, reducing the time for equipment adjustment and tooling replacement, improving production efficiency, and meeting the needs of customized, multi-specification batch production. The adjustable position of the glue component enables the electric glue gun to accurately apply glue to the glass edges and corners, ensuring the precision and uniformity of glue application, thereby improving the sealing performance, heat insulation and sound insulation effect and service life of insulated glass, making it highly practical. Attached Figure Description

[0017] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0018] Figure 2 This is a side view of the structure of this utility model;

[0019] Figure 3 This is a top view of the present invention;

[0020] Figure 4 This is a utility model Figure 3 Schematic diagram of cross-section along the AA direction.

[0021] Reference numerals: 1. Mounting plate; 2. Support leg; 3. Conveyor belt; 4. Clamping assembly; 401. First U-shaped plate; 402. Support frame; 403. Hydraulic cylinder; 404. Contact plate; 405. Guide rod; 5. Slide groove; 501. Strip hole; 6. Second U-shaped plate; 7. Glue application assembly; 701. Mounting rod; 702. Mounting block; 703. Rectangular frame; 704. Slide plate; 705. Electric push rod; 706. Electric glue gun; 8. Photoelectric sensor; 9. Extension rod; 10. Locking nut; 11. Scale line. Detailed Implementation

[0022] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings.

[0023] This application provides a rapid adhesive coating machine for insulated glass production, mainly to address the problem that existing technologies typically pre-set the position and trajectory of the adhesive coating components to specific specifications, only adapting to a single or a few standard sizes of insulated glass. When producing insulated glass products of different specifications and sizes, complex mechanical adjustments or replacement of specialized tooling are required, which is not only cumbersome but also significantly increases production preparation time, reduces production efficiency, and makes it difficult to meet the needs of customized, multi-specification batch production. The following technical solution is provided, which will be discussed in conjunction with... Figures 1-4 Please provide a detailed explanation:

[0024] A high-speed adhesive applicator for insulating glass production, comprising:

[0025] Mounting plate 1, there are two mounting plates 1, and support legs 2 are fixed at the bottom of both ends of the mounting plates 1. A conveyor belt 3 is provided between the two mounting plates 1 at intervals.

[0026] Clamping assembly 4 is used to clamp and fix insulated glass. Clamping assembly 4 includes a first U-shaped plate 401 fixed in the middle of the top of the mounting plate 1, a support frame 402 fixed in the middle of the bottom of the mounting plate 1, a hydraulic cylinder 403 installed on the inner top wall of the support frame 402, and an abutment plate 404 connected to the piston end of the hydraulic cylinder 403.

[0027] The slide groove 5 is fixed on the top of the mounting plate 1. There are four slide grooves 5, which are located at the four corners of the first shaped plate 401. The second shaped plate 6 is slidably arranged between the slide grooves 5 on the same side.

[0028] An adhesive applicator 7 is disposed inside the second U-shaped plate 6. The adhesive applicator 7 is used to apply adhesive to the edges and corners of the glass. The position of the adhesive applicator 7 is adjustable. The adhesive applicator 7 includes a mounting rod 701 rotatably connected between the upper sides of the second U-shaped plate 6. The mounting rod 701 has threads with opposite helical directions on both sides and is symmetrically threaded to a mounting block 702. The mounting block 702 is slidably connected to the inner top wall of the second U-shaped plate 6. Rectangular frames 703 are fixed on both sides of the bottom of the mounting block 702. A sliding plate 704 is slidably inserted between the rectangular frames 703. An electric push rod 705 is installed in the middle of the bottom of the mounting block 702. The piston end of the electric push rod 705 is connected to the sliding plate 704. An electric glue gun 706 is installed in the middle of the bottom of the sliding plate 704.

[0029] Workflow Description

[0030] Equipment preparation: Based on the dimensions of the insulating glass to be processed, adjust the position of the second U-shaped plate 6 in the slide groove 5 to adapt to the length requirements of the glass; rotate the mounting rod 701 to adjust the position of the two mounting blocks 702 to adapt to the width requirements of the glass. When rotating the mounting rod 701, since the spiral directions of its two sides are opposite, the symmetrically threaded mounting blocks 702 will slide in opposite directions along the inner top wall of the second U-shaped plate 6 under the action of the threads, thereby adjusting the distance between the two mounting blocks 702 to adapt to insulating glass of different widths.

[0031] Glass loading and fixing: Place the insulating glass to be coated on one of the conveyor belts 3, start the conveyor belt 3 to move the glass closer to the first U-shaped plate 401. When the glass is transported by the conveyor belt 3 to the position between the two conveyor belts 3 (above the contact plate 404), the conveyor belt 3 stops running. At this time, the hydraulic cylinder 403 installed on the top wall of the support frame 402 starts, and its piston end pushes the contact plate 404 to rise, clamping the glass between the contact plate 404 and the second U-shaped plate 6, thus completing the fixing of the glass.

[0032] Glue application operation: The electric push rod 705 is activated, and its piston end pushes the slide plate 704 downward, so that the electric glue gun 706 installed in the middle of the bottom of the slide plate 704 gradually approaches the edge of the glass. When the electric glue gun 706 touches the edge of the glass, glue is applied. After the glue application is completed, the electric push rod 705 retracts, driving the slide plate 704 and the electric glue gun 706 to rise and return to their original positions.

[0033] Glass unloading: The piston end of hydraulic cylinder 403 retracts, driving the contact plate 404 to descend, releasing the glass, starting the conveyor belt 3, and conveying the glued glass out of the glued area, completing one glued operation. Repeat the above steps to perform the glued operation on the next insulating glass.

[0034] The device employs an adjustable adhesive application assembly 7. The mounting rod 701 in the assembly has opposing spiral threads on both sides. By rotating the mounting rod 701, the symmetrically threaded mounting blocks 702 can slide along the top wall of the second U-shaped plate 6, thereby adjusting the position of the two mounting blocks 702 to accommodate insulated glass of different widths. Simultaneously, the second U-shaped plate 6 can slide within the groove 5 to accommodate insulated glass of different lengths, achieving flexible adjustment of the position of the adhesive application assembly 7 and meeting the adhesive application requirements of insulated glass of various specifications. Furthermore, by using a hydraulic cylinder 403 to push the contact plate 404 upward, the insulated glass is quickly clamped between the contact plate 404 and the second U-shaped plate 6, thus fixing the glass. This clamping method is simple and quick to operate, effectively shortening production preparation time and improving production efficiency.

[0035] like Figure 1 As shown, in some embodiments, a photoelectric sensor 8 is installed on the top edge of the first U-shaped plate 401. More specifically, the photoelectric sensor 8 undertakes the precise start and stop control function of glass conveying. It monitors the position status of the glass in real time by emitting light of a specific wavelength and receiving reflected signals. Once the glass reaches a specific position, the sensor immediately captures the signal change and transmits the trigger signal to the equipment control system. The control system responds quickly and immediately issues a stop command for the conveyor belt 3 to ensure that the glass stops accurately at the glue application station directly above the contact plate 404. This sensor realizes the automated control of glass positioning, replacing the traditional manual observation and alignment method, avoiding errors in manual operation, and ensuring that each piece of glass is accurately in the glue application position. This provides a basic guarantee for the accuracy of subsequent clamping and corner glue application, while reducing manual intervention and improving production continuity.

[0036] like Figure 4 As shown, in some embodiments, guide rods 405 are slidably inserted on both sides of the top of the support frame 402. The upper end of the guide rod 405 is connected to the bottom of the contact plate 404. More specifically, the guide rod 405 is vertically slidably inserted into a preset hole at the top of the support frame 402, and its upper end is rigidly connected to the bottom of the contact plate 404, forming a symmetrically distributed guide structure. When the hydraulic cylinder 403 drives the contact plate 404 to rise, the guide rod 405 slides linearly along the hole in the support frame 402 synchronously with the contact plate 404. The symmetrically arranged guide rods 405 on both sides can effectively limit the lateral displacement of the contact plate 404, counteract the eccentric torque that may be generated during the glass clamping process, and avoid instability such as tilting or shaking of the contact plate 404.

[0037] like Figure 1As shown, in some embodiments, extension rods 9 are fixedly provided on both sides of the bottom of the second U-shaped plate 6, and the side wall of the slide groove 5 is constructed with a strip hole 501. The extension rod 9 slides through the inside of the strip hole 501, and its end is threadedly connected with a locking nut 10. More specifically, the extension rod 9 is horizontally inserted into the strip hole 501 and can slide horizontally along the channel, driving the second U-shaped plate 6 to move synchronously in the slide groove 5, realizing the lateral position adjustment of the glue application component 7. The strip hole 501 provides a guide trajectory for the extension rod 9. With the help of the side scale line 11, the moving distance can be precisely controlled to adapt to different lengths of glass. After adjustment, the locking nut 10 at the end of the extension rod 9 is tightened. The position is fixed by the friction between the nut and the side wall of the slide groove 5 to prevent displacement due to vibration during glue application.

[0038] like Figure 1 As shown, in some embodiments, the side of the strip-shaped hole 501 is constructed with scale lines 11, which are strip-shaped protrusions. More specifically, the strip-shaped protrusion scale lines 11 on the side of the hole serve both as positioning markers and anti-slip functions. The protrusion structure increases the surface roughness of the side wall of the slide groove 5. When the locking nut 10 at the end of the extension rod 9 is tightened, the inner wall of the nut comes into close contact with the protrusion scale lines 11. The friction is increased through the interlocking of the concave and convex parts. This mechanical interlocking structure can effectively enhance the locking effect, prevent the nut from loosening due to equipment vibration during the glue application operation, and ensure the stability of the second U-shaped plate 6. At the same time, the strip-shaped protrusion scale lines 11 are clear and intuitive, making it easy for operators to quickly read and adjust the dimensions, achieving precise positioning of the glue application component 7, and further improving the reliability of the equipment in adapting to multiple specifications of glass.

[0039] The above description of the disclosed embodiments enables those skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A rapid coating machine for hollow glass production, characterized in that, Including: Mounting plates (1), there are two mounting plates (1), and support legs (2) are fixedly provided at the bottom of both ends thereof. A conveyor belt (3) is arranged at an interval between the two mounting plates (1); A clamping assembly (4) for clamping and fixing insulating glass. The clamping assembly (4) includes a first C-shaped plate (401) fixedly provided in the middle of the top of the mounting plate (1). A support frame (402) is fixedly provided in the middle of the bottom of the mounting plate (1). A hydraulic cylinder (403) is installed on the inner top wall of the support frame (402). The piston end of the hydraulic cylinder (403) is connected to a抵触 plate (404); Chutes (5) are fixedly provided on the top of the mounting plate (1). The number of chutes (5) is four, and they are located at the four corners of the first C-shaped plate (401). A second C-shaped plate (6) is slidably arranged between the chutes (5) on the same side; A glue application assembly (7) is arranged inside the second C-shaped plate (6). The glue application assembly (7) is used for applying glue to the corners of the glass, and the position of the glue application assembly (7) is adjustable.

2. The rapid adhesive coating machine for insulating glass production according to claim 1, characterized in that, A photoelectric sensor (8) is installed on the top edge of the first C-shaped plate (401).

3. The rapid adhesive coating machine for insulating glass production according to claim 1, characterized in that, Guide rods (405) are slidably inserted through both sides of the top of the support frame (402). The upper ends of the guide rods (405) are connected to the bottom of the抵触 plate (404).

4. The rapid adhesive coating machine for insulating glass production according to claim 1, characterized in that, Extension rods (9) are fixedly provided at the bottoms of both sides of the second C-shaped plate (6). A strip-shaped hole (501) is formed on the side wall of the chute (5). The extension rod (9) is slidably inserted into the strip-shaped hole (501), and a locking nut (10) is threadedly connected to its end.

5. A rapid adhesive coating machine for insulating glass production according to claim 4, characterized in that, A scale line (11) is formed on the side of the strip-shaped hole (501). The scale line (11) is a strip-shaped protrusion.

6. A rapid adhesive coating machine for insulating glass production according to claim 1, characterized in that, The glue application assembly (7) includes a mounting rod (701) rotatably connected between the upper sides of the second C-shaped plate (6). Threads with opposite spiral directions are formed on both sides of the mounting rod (701), and mounting blocks (702) are symmetrically threadedly connected thereto. The mounting blocks (702) are slidably connected to the inner top wall of the second C-shaped plate (6). Rectangular frames (703) are fixedly provided on both sides of the bottom of the mounting block (702). A sliding plate (704) is slidably inserted between the rectangular frames (703). An electric push rod (705) is installed in the middle of the bottom of the mounting block (702). The piston end of the electric push rod (705) is connected to the sliding plate (704). An electric glue gun (706) is installed in the middle of the bottom of the sliding plate (704).