Laminated glass prepressing equipment

By designing a laminated glass pre-pressing equipment, the combination of conveying rollers, support components and guide components is used to solve the problem of glass damage caused by uneven manual operations, and achieve uniform pre-pressing and smooth conveying of the glass plate.

CN223224034UActive Publication Date: 2025-08-15ZHEJIANG HEYAO NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202422415106.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-08
Publication Date
2025-08-15
Estimated Expiration
2034-10-08

AI Technical Summary

Technical Problem

In the prior art, laminated glass is manually operated unevenly during the liquid glue compaction process, which can easily cause glass damage.

Method used

A laminated glass pre-pressing device is designed to achieve stable pre-pressing and guiding of the glass plate by combining conveying rollers, support components, pressurizing components and guide components on the frame assembly, avoiding the skew of the glass plate and ensuring uniform compaction.

Benefits of technology

A uniform pre-pressure of the glass plate is achieved, glass damage is avoided, the smooth conveying of the glass plate is ensured, and bubble formation is prevented.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides laminated glass pre-pressing equipment, and relates to the technical field of glass processing. A conveying roller is installed on the frame assembly, a supporting assembly and a protruding block are installed at the two ends of the frame assembly respectively, the protruding block is installed on the supporting assembly in a sliding mode, and the connecting position between the supporting assembly at the chain fixing position of the frame assembly and the pressurizing assembly is directly adjusted, so that the conveying roller of the frame assembly corresponds to the thickness of a glass plate; then the glass plate is obliquely guided into the position between conveying rollers of the frame assembly, the conveying rollers stably pre-press the glass plate, then the glass plate is guided into the position of the guide assembly, the guide assembly can assist in guiding and straightening the oblique glass plate, and a synchronous assembly of the guide assembly can synchronously guide the glass plate, so that the glass plate can better pass through; the problems that in the prior art, after liquid glue is added between glass, compaction and diffusion are conducted manually, but manual operation is not uniform, and damage to the glass is likely to be caused are solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of glass processing, in particular to a laminated glass pre-pressing device. Background Art

[0002] With the continuous development of science and technology, urban development has also increased, and thus the construction of buildings within cities has also increased. The increase in buildings has also led to an increase in the consumption of some building materials, especially some glass. Glass also has many varieties. For example, some laminated glass, even if laminated glass breaks, the fragments will stick to the film, and the broken glass surface will remain clean and smooth. This effectively prevents puncture injuries and penetrating falls from fragments, ensuring personal safety.

[0003] Laminated glass is a composite glass product consisting of two or more pieces of glass with one or more layers of organic polymer interlayer sandwiched between them. After undergoing special high-temperature pre-pressing and high-temperature and high-pressure processes, the glass and the interlayer are permanently bonded together. The wet lamination method is usually used, which involves adding liquid glue between the glass and then manually compacting and spreading it. However, manual operation is uneven and can easily cause damage to the glass. Utility Model Content

[0004] The disclosed embodiments relate to a laminated glass pre-pressing device, which directly adjusts the connection position between the support assembly and the pressurizing assembly at the fixed position of the frame assembly chain, so that the conveying rollers of the frame assembly correspond to the thickness of the glass sheet. The glass sheet is then introduced between the conveying rollers of the frame assembly in an inclined manner, so that the conveying rollers can stably pre-press the glass sheet. The glass sheet is then introduced into the position of the guide assembly. The guide assembly can assist in guiding and straightening the crooked glass sheet, and the synchronization assembly of the guide assembly can guide synchronously to allow the glass sheet to pass through better.

[0005] In a first aspect of the present disclosure, a laminated glass pre-pressing device is provided, specifically comprising: a frame assembly; a conveying roller is installed on the frame assembly, the conveying roller of the frame assembly carries a glass sheet, a support assembly and a protruding block are respectively installed at both ends of the frame assembly, the protruding block is slidably installed on the support assembly, a pressure assembly is additionally installed at the upper end position of the protruding block on the support assembly, a guide assembly is installed at the right position of the frame assembly, and a synchronization assembly is connected and installed at the bottom position of the guide assembly.

[0006] In at least some embodiments, the bottom frame of the frame assembly is configured as a frame structure, an upper frame is provided at the upper end of the bottom frame, a tail bracket is provided at the right side of the bottom frame, and the bottom frame and the tail bracket are on the same horizontal plane.

[0007] In at least some embodiments, the conveying roller is configured to be rotatably mounted on the frame assembly, the conveying roller at the upper frame of the frame assembly is configured to be a conical structure, and the installation position of the conveying roller on the upper frame is arranged in an inclined manner.

[0008] In at least some embodiments, the connecting frame of the support assembly is configured as a rectangular frame structure, the connecting frame is arranged on the outer wall of the bottom frame of the frame assembly, side panels are added at both ends of the connecting frame, and the protruding block is slidably installed on the connecting frame. At this time, a vertical limit column is rotatably installed at the lower end of the connecting frame, a knob is provided at the bottom of the limit column, and a contact block is rotatably installed at the top of the limit column, and the top of the contact block contacts with the protruding block.

[0009] In at least some embodiments, the bottom of the pressure frame of the pressure assembly is set as a horizontal plate structure, the pressure frame is slidably installed as a whole at the upper end position of the support assembly, a spring is installed between the pressure frame and the support assembly, and an adjustment block is screwed on the top of the pressure frame.

[0010] In at least some embodiments, the expansion frame of the guide assembly is arranged in the front and rear positions of the tail bracket of the frame assembly, a load-bearing plate is slidably installed on the expansion frame, an inner spring plate is added at the sliding installation position of the load-bearing plate and the expansion frame, a transmission belt is installed on the top of the load-bearing plate, and the transmission belt is set to an inclined installation structure.

[0011] In at least some embodiments, the bottom frame of the synchronization assembly is arranged on the bottom extension part of the supporting plate of the guide assembly, and a vertical transmission shaft is rotatably installed on the bottom frame. The top of the transmission shaft is connected to the guide assembly, and a synchronization shaft is rotatably installed on the bottom frame at the same time. The synchronization shaft is transmitted to the transmission shaft through a bevel gear, and the synchronization shaft adopts a telescopic prismatic structure.

[0012] The utility model provides a laminated glass pre-pressing device, which has the following beneficial effects:

[0013] The frame assembly of the present invention is provided with support assemblies at both ends of the bottom frame, and the upper frame of the frame assembly is provided with raised blocks at positions corresponding to the support assemblies, so that the raised blocks are installed on the support assemblies. At this time, the support assemblies are adjusted to limit the downward pressure position of the upper frame. A pressure assembly is installed at the top position of the support assembly. Adjusting the pressure assembly can realize elastic force control of the upper frame. After the glass plate is placed in the conveying roller in an inclined state, the conveying roller is arranged in an inclined manner, so that the glass plate can be stably pre-pressed from one side to complete the dispersion of the liquid glue. After the glass plate is discharged from the position of the conveying roller, the guide assembly will contact the glass plate to realize the guidance of the glass plate by the guide assembly. A synchronization assembly is installed on the guide assembly, and the synchronization assembly can make the guide assembly run synchronously, so that the guide assembly can better straighten and convey the glass plate.

[0014] In addition, an upper frame is directly set at the upper end of the bottom frame, so that the bottom frame and the upper frame can pre-press the glass plate through conveying rollers, and a tail bracket is set at the right side of the bottom frame, and the tail bracket and the bottom frame are in the same horizontal plane, so that the tail bracket can stably receive the glass plate discharged by the bottom frame. The upper frame of the frame assembly is set as the structure for mainly pre-pressing the glass plate, and the conveying rollers of the upper frame are set to be conical. At the same time, the conveying rollers are set to be arranged in an inclined shape, so that the introduced glass plate can be pre-pressed from one side, thereby avoiding the problem of bubbles in the glass plate.

[0015] In addition, after the raised block is slidably installed on the connecting frame, a vertical limit column is rotatably installed at the bottom of the connecting frame. The knob at the bottom of the limit column is rotated and controlled by a bevel gear, while a contact block is rotatably installed on the top of the limit column. When the limit column is raised or lowered, the limit column lifts the raised block through the contact block, thereby achieving the limiting support function of the support assembly on the raised block.

[0016] In addition, the bottom of the pressure frame is directly vertically horizontally plated, so that after the pressure frame is installed on the top of the support assembly, the bottom of the pressure frame can directly contact the raised block. At this time, the spring of the pressure frame presses down the raised block, allowing the frame assembly to achieve pre-pressure on the glass plate, and the adjustment block at the top position of the pressure frame can be rotated to adjust the position of the bottom of the pressure frame, thereby adjusting the position of the pressure frame pre-pressing the glass plate.

[0017] In addition, after the bottom frame of the frame assembly transports the glass plate to the tail bracket position, the corners of the glass plate will contact the transmission belt, and the transmission belt is set to an inclined installation structure, so that the transmission belt can better guide and transport the glass plate. In order to avoid the glass plate getting stuck at the transmission belt, the expansion frame and the carrier plate are directly set to a sliding installation, and the installation of the carrier plate is to add an inner spring plate to avoid the problem of the glass plate getting stuck at the transmission belt. The synchronization shaft is rotatably installed on the bottom frame, and the synchronization shaft is connected to the transmission shaft through a bevel gear to realize the synchronous transmission of the synchronization shaft to the transmission shaft. In order to allow the synchronization component to use a sliding installation guide component, the synchronization shaft is directly set to a telescopic structure, and the telescopic part of the synchronization shaft is set to a hexagonal prism structure, so that the synchronization shaft can perform circumferential transmission while expanding and contracting. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings of the embodiments will be briefly introduced below.

[0019] The drawings described below only relate to some embodiments of the present invention, but are not intended to limit the present invention.

[0020] In the attached figure:

[0021] Figure 1Shows a schematic diagram of the overall structure of this application;

[0022] Figure 2 A schematic diagram showing the conveyor roller structure of the present application is shown;

[0023] Figure 3 A schematic diagram showing the guide assembly structure of the present application is shown;

[0024] Figure 4 A schematic diagram showing the structure of the synchronization component of the present application;

[0025] Figure 5 A schematic diagram showing the structure of the pressurized assembly of the present application is shown;

[0026] Figure 6 A schematic diagram showing the support assembly structure of the present application is shown;

[0027] Reference Signs List

[0028] 1. Frame assembly; 101. Bottom frame; 102. Upper frame; 103. Tail bracket;

[0029] 2. Conveyor roller;

[0030] 3. Support assembly; 301. Connecting frame; 302. Side plate; 303. Limiting column; 304. Contact block;

[0031] 4. Pressurizing assembly; 401. Pressurizing frame; 402. Adjusting block;

[0032] 5. Guide assembly; 501. Extension frame; 502. Loading plate; 503. Inner spring plate; 504. Transmission belt;

[0033] 6. Synchronous assembly; 601. Synchronous shaft; 602. Transmission shaft; 603. Bottom bracket;

[0034] 7. Raised blocks;

[0035] 8. Glass plate. DETAILED DESCRIPTION

[0036] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of them. Based on the described embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0037] Example 1: Please refer to Figures 1 to 6 :

[0038] The utility model proposes a laminated glass pre-pressing device, comprising: a frame assembly 1; a conveying roller 2 is installed on the frame assembly 1, the conveying roller 2 of the frame assembly 1 carries a glass plate 8, a support assembly 3 and a protruding block 7 are respectively installed at both ends of the frame assembly 1, the protruding block 7 is slidably installed on the support assembly 3, a pressing assembly 4 is additionally installed at the upper end position of the protruding block 7 of the support assembly 3, a guide assembly 5 is installed at the right position of the frame assembly 1, and a synchronization assembly 6 is connected and installed at the bottom position of the guide assembly 5.

[0039] In the embodiment of the present disclosure, Figure 2 As shown, the bottom frame 101 of the frame assembly 1 is set as a frame structure, the upper frame 102 is set at the upper end position of the bottom frame 101, and the tail bracket 103 is set at the right position of the bottom frame 101. The bottom frame 101 and the tail bracket 103 are on the same horizontal plane. The upper frame 102 is directly set at the upper end position of the bottom frame 101, so that the bottom frame 101 and the upper frame 102 can realize the pre-pressure effect on the glass plate 8 through the conveying roller 2, and the tail bracket 103 is set at the right position of the bottom frame 101, and the tail bracket 103 and the bottom frame 101 are on the same horizontal plane, so that the tail bracket 103 can stably catch the glass plate 8 discharged by the bottom frame 101.

[0040] In the embodiment of the present disclosure, Figure 2 As shown, the conveying roller 2 is configured to be rotatably mounted on the frame assembly 1, and the conveying roller 2 at the upper frame 102 of the frame assembly 1 is configured to be a conical structure. The installation position of the conveying roller 2 of the upper frame 102 is arranged in an inclined shape. The upper frame 102 of the frame assembly 1 is configured to mainly pre-press the glass plate 8, and the conveying roller 2 of the upper frame 102 is configured to be conical. At the same time, the conveying roller 2 is configured to be arranged in an inclined shape, so that the introduced glass plate 8 can be pre-pressed from one side, thereby avoiding the problem of bubbles in the glass plate 8.

[0041] In the embodiment of the present disclosure, Figure 6When the cam 303 is lifted up, the cam 303 is lifted up and the support 301 is in a state of being rotated.

[0042] In the embodiment of the present disclosure, Figure 5 As shown, the bottom of the pressure frame 401 of the pressure assembly 4 is set to a horizontal plate structure, and the pressure frame 401 is slidably installed as a whole at the upper end position of the support assembly 3. A spring is installed between the pressure frame 401 and the support assembly 3, and an adjusting block 402 is screwed on the top of the pressure frame 401. The bottom vertical horizontal plate of the pressure frame 401 is directly connected, so that after the pressure frame 401 is installed on the top of the support assembly 3, the bottom of the pressure frame 401 can directly contact the raised block 7. At this time, the spring of the pressure frame 401 reaches the point of pressing down the raised block 7, allowing the frame assembly 1 to achieve a pre-stressing effect on the glass plate 8, and the adjusting block 402 at the top position of the pressure frame 401 can be rotated to adjust the position of the bottom of the pressure frame 401, so that the pressure frame 401 can adjust the position of the pre-stressing of the glass plate 8.

[0043] Example 2, based on Example 1, Figure 3 As shown, the expansion frame 501 of the guide assembly 5 is arranged in the front and rear positions of the tail bracket 103 of the frame assembly 1, and a supporting plate 502 is slidably installed on the expansion frame 501, and an inner spring plate 503 is added at the sliding installation position of the supporting plate 502 and the expansion frame 501, and a transmission belt 504 is installed on the top of the supporting plate 502, and the transmission belt 504 is set to an inclined installation structure. After the bottom frame 101 of the frame assembly 1 transports the glass plate 8 to the tail bracket 103 position, the corners of the glass plate 8 will contact the transmission belt 504, and the transmission belt 504 is set to an inclined installation structure, so that the transmission belt 504 can better guide and transport the glass plate 8. In order to avoid the glass plate 8 being stuck at the transmission belt 504, the expansion frame 501 and the supporting plate 502 are directly set to be slidingly installed, and the installation of the supporting plate 502 is equipped with an inner spring plate 503, which avoids the problem of the glass plate 8 being stuck at the transmission belt 504.

[0044] In the embodiment of the present disclosure, Figure 4 As shown, the bottom frame 603 of the synchronization component 6 is arranged at the bottom extension part of the supporting plate 502 of the guide component 5, and a vertical transmission shaft 602 is rotatably installed on the bottom frame 603. The top of the transmission shaft 602 is connected to the guide component 5, and a synchronization shaft 601 is rotatably installed on the bottom frame 603 at the same time. The synchronization shaft 601 is transmitted to the transmission shaft 602 through a bevel gear. The synchronization shaft 601 adopts a telescopic prism structure. The synchronization shaft 601 is rotatably installed on the bottom frame 603, and the synchronization shaft 601 is connected to the transmission shaft 602 through a bevel gear to realize the synchronous transmission of the synchronization shaft 601 to the transmission shaft 602. In order to allow the synchronization component 6 to use the slidingly installed guide component 5, the synchronization shaft 601 is directly set to a telescopic structure, and the telescopic part of the synchronization shaft 601 is set to a hexagonal prism structure, so that the synchronization shaft 601 can perform a circumferential transmission function while being telescopic.

[0045] The working principle of this embodiment is as follows: Before use, the support assemblies 3 are fixed at both ends of the bottom frame 101, and the upper frame 102 is provided with raised blocks 7 at the positions corresponding to the support assemblies 3. The upper frame 102 is directly mounted on the support assemblies 3 via the raised blocks 7. At this time, the support assemblies 3 are adjusted according to the thickness of the glass plate 8 to place the upper frame 102 at a specified height. At this time, the pressure assembly 4 is installed on the upper end of the support assembly 3, and the pressure applied to the raised blocks 7 is controlled by adjusting the pressure assembly 4.

[0046] When in use, the glass plate 8 is directly tilted, and then one corner of the glass plate 8 is sent to the conveying roller 2 of the frame assembly 1, so that the inclined conveying roller 2 can realize pre-pressure on the glass plate 8. After the pre-pressure is stable, the glass plate 8 will be sent to the position of the guide assembly 5. At this time, the guide assembly 5 will rotate to guide the glass plate 8, and the synchronization assembly 6 is connected to the bottom position of the guide assembly 5, so that the guide assembly 5 can form a synchronous operation effect, so that the guide assembly 5 can form a stable conveying effect on the glass plate 8.

[0047] In this article, there are several points to note:

[0048] 1. The drawings of the embodiments of the present disclosure only relate to the structures related to the embodiments of the present disclosure. Other structures may refer to conventional designs.

[0049] 2. In the absence of conflict, the embodiments of the present disclosure and the features therein may be combined with each other to form new embodiments.

[0050] The above are only specific embodiments of the present disclosure, but the scope of protection of the present disclosure is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in this disclosure should be included in the scope of protection of the present disclosure. Therefore, the scope of protection of the present disclosure should be based on the scope of protection of the claims.

Claims

1. A laminated glass pre-pressing device, comprising: A frame assembly (1); a conveying roller (2) is installed on the frame assembly (1), and the conveying roller (2) of the frame assembly (1) carries a glass plate (8), and is characterized in that a support assembly (3) and a protruding block (7) are respectively installed at both ends of the frame assembly (1), the protruding block (7) is slidably installed on the support assembly (3), a pressure assembly (4) is additionally installed at the upper end position of the protruding block (7) at the support assembly (3), a guide assembly (5) is installed at the right position of the frame assembly (1), and a synchronization assembly (6) is connected and installed at the bottom position of the guide assembly (5).

2. The laminated glass pre-pressing equipment according to claim 1, characterized in that: The bottom frame (101) of the frame assembly (1) is configured as a frame structure, an upper frame (102) is provided at the upper end of the bottom frame (101), a tail bracket (103) is provided at the right side of the bottom frame (101), and the bottom frame (101) and the tail bracket (103) are located on the same horizontal plane.

3. The laminated glass pre-pressing equipment according to claim 1, characterized in that: The conveying roller (2) is configured to be rotatably mounted on the frame assembly (1); the conveying roller (2) at the upper frame (102) of the frame assembly (1) is configured to have a conical structure; and the installation position of the conveying roller (2) on the upper frame (102) is arranged in an inclined manner.

4. The laminated glass pre-pressing device according to claim 1, characterized in that: The connecting frame (301) of the support assembly (3) is configured as a rectangular frame structure. The connecting frame (301) is configured on the outer wall of the bottom frame (101) of the frame assembly (1). Side plates (302) are additionally installed at both ends of the connecting frame (301). The raised block (7) is slidably installed on the connecting frame (301). At this time, a vertical limiting column (303) is rotatably installed at the lower end of the connecting frame (301). A knob is provided at the bottom of the limiting column (303). A contact block (304) is rotatably installed at the top of the limiting column (303). The top of the contact block (304) contacts the raised block (7).

5. The laminated glass pre-pressing equipment according to claim 1, characterized in that: The bottom of the pressure frame (401) of the pressure assembly (4) is configured as a horizontal plate structure. The pressure frame (401) is integrally slidably mounted on the upper end of the support assembly (3). A spring is installed between the pressure frame (401) and the support assembly (3). An adjusting block (402) is screwed to the top of the pressure frame (401).

6. The laminated glass pre-pressing equipment according to claim 1, characterized in that: The expansion frame (501) of the guide assembly (5) is arranged at a front-back position of the tail bracket (103) of the frame assembly (1); a bearing plate (502) is slidably mounted on the expansion frame (501); an inner spring plate (503) is additionally mounted at the sliding mounting position between the bearing plate (502) and the expansion frame (501); a transmission belt (504) is mounted on the top of the bearing plate (502); and the transmission belt (504) is arranged as an inclined mounting structure.

7. The laminated glass pre-pressing equipment according to claim 1, characterized in that: The bottom frame (603) of the synchronization component (6) is arranged on the bottom extension portion of the bearing plate (502) of the guide component (5); a vertical transmission shaft (602) is rotatably mounted on the bottom frame (603); the top of the transmission shaft (602) is connected to the guide component (5); a synchronization shaft (601) is rotatably mounted on the bottom frame (603); the synchronization shaft (601) is driven by a bevel gear and the transmission shaft (602); and the synchronization shaft (601) adopts a telescopic prism structure.