Fireproof glass laminating device
The connection mechanism of the electric push rod and the motor drive realizes stable clamping and scraper cleaning of the glass, solving the problem of offsetting and cleaning of the glass during the lamination process, and improving the stability and cleaning effect of the fire-resistant glass lamination device.
Patent Information
- Application Number
- CN202422428910.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-09
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2034-10-09
AI Technical Summary
During the processing process of traditional fire-proof glass lamination devices, the glass is easily deviated by force, resulting in failure to effectively fix it, affecting the lamination effect and cleaning difficulty.
The connecting mechanism driven by electric push rods and motors is adopted to achieve stable clamping of glasses of different sizes, and the glass surface is cleaned through a scraper mechanism.
It improves the stability and cleanliness of the glass lamination process, ensures that the glass has no impurities on the surface before lamination, and improves the applicability and efficiency of the lamination device.
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Figure CN223252542U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of glass manufacturing, in particular to a fireproof glass laminating device. Background Art
[0002] Fire-resistant glass is a building material specially designed to provide fire protection. It can effectively block flames, smoke and high temperatures in the event of a fire, thereby helping to prevent the spread of fire and providing more escape time. Fire-resistant glass is commonly used in windows, doors, partitions and curtain walls of buildings. Laminated fire-resistant glass consists of two or more layers of glass and an intermediate layer, usually a fire-resistant adhesive film or plastic film. In the event of a fire, the intermediate layer will form an insulating layer to block flames and smoke. It provides a longer period of fire protection, and the glass will not fall off after breaking. The use of laminating devices in the processing of fire-resistant glass is mainly to achieve enhanced fire resistance, improve structural stability, ensure durability and long-term performance, and comply with building codes and standards.
[0003] Traditional laminators mainly bond glass and film together by heating and pressurizing. The heating system provides uniform heat to soften the fireproof film and tightly bond it to the glass under high pressure. The heating system usually includes electric heating and hot air circulation equipment. The cooling system is used to cool and solidify the glass after lamination to maintain a stable structure and performance. The pressure control system ensures that uniform pressure is applied during the lamination process to ensure a close bond between the glass and the middle interlayer.
[0004] However, the pressure generated by traditional fire-resistant glass laminating devices during lamination can cause the glass to shift and slide due to the force. This means that the position of the glass cannot be effectively fixed in the actual production process, and it is difficult to effectively clean the glass surface. Therefore, a fire-resistant glass clamping device is proposed to solve the above problems. Utility Model Content
[0005] The utility model aims to provide a fireproof glass laminating device, aiming to improve the problem that the glass cannot be fixed in position during the processing and is easily deflected when subjected to external force.
[0006] The top end of the sliding panel also is provided with a pair of sliding panels, and the bottom end of the sliding panel is mounted on the second cam, and the pair is mounted on a pair of sliding panels.
[0007] Optionally, the pressing assembly includes a device cover and a cylinder, the device cover is fixedly connected to the inside of the frame column, the cylinder is fixedly connected to the top of the device cover, and the output end of the cylinder is fixedly connected to a lower pressure plate;
[0008] Optionally, a sliding column is fixedly connected inside the extrusion plate, and a fixed plate is fixedly connected to the side wall of the workbench;
[0009] Optionally, the side wall of the first support plate is fixedly connected to the second support plate, the bottom of the second support plate is fixedly connected to a motor, the output end of the motor is fixedly connected to a turntable, and the bottom of the motor is fixedly connected to a support block;
[0010] Optionally, a fixed block is fixedly connected to the top of the fixed plate, and the sliding column is slidably connected inside the fixed block;
[0011] Optionally, the top of the turntable is rotatably connected to a push plate, and one end of the push plate is rotatably connected to a sliding frame;
[0012] Optionally, a push column is fixedly connected to the outer wall of the sliding frame, and one end of the push column is fixedly connected to a scraper;
[0013] Optionally, a sliding rail is fixedly connected to the top of the second support plate, and the sliding frame is slidably connected to the outer wall of the sliding rail.
[0014] The above one or more technical solutions in the fireproof glass laminating device provided by the embodiment of the present invention have at least one of the following technical effects:
[0015] 1. In the utility model, the electric push rod pushes the connecting block to drive the connecting rod to move, thereby causing the two sliding plates to move in opposite directions. The movement of the sliding plates drives the two upper support rods to clamp to the middle of the workbench, thereby pushing the extrusion plates on both sides, achieving an effective fixing effect for glass of different sizes, solving the problem that the glass cannot be stabilized in position during the processing and is easily deflected when subjected to external force, thereby improving the stability during lamination.
[0016] 2. In the utility model, the motor drives the turntable to rotate, and at the same time pushes the sliding frame to drive the scraper to move forward, thereby achieving the effect of cleaning the glass surface, solving the problem of dust and dirt adhering to the glass surface during the pretreatment of fireproof glass, thereby improving the applicability of the glass laminating device. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the drawings required for use in the embodiments or descriptions of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative labor.
[0018] Figure 1 This is a three-dimensional schematic diagram of the fireproof glass laminating device proposed in the utility model;
[0019] Figure 2 This is a schematic diagram of the structure of the extruded plate of the fireproof glass laminating device proposed in the utility model;
[0020] Figure 3 This is a schematic structural diagram of the sliding plate of the fireproof glass laminating device proposed by the present invention.
[0021] Figure 4 This is the push column of the fireproof glass laminating device proposed by the utility model.
[0022] 1. Frame column; 2. First support plate; 3. Workbench; 4. Connecting plate; 5. Sliding plate; 6. Slide rail 1; 7. Connecting column 1; 8. Connecting rod 1; 9. Connecting column 2; 10. Connecting block; 11. Electric push rod; 12. Support rod; 13. Rotating block; 14. Swinging plate; 15. Fixed plate; 16. Connecting rod 2; 17. Extrusion plate; 18. Sliding column; 19. Fixed block; 20. Support block; 21. Motor; 22. Second support plate; 23. Turntable; 24. Pushing plate; 25. Sliding frame; 26. Slide rail 2; 27. Pushing column; 28. Scraper; 29. Device cover; 30. Lower pressure plate; 31. Cylinder. DETAILED DESCRIPTION
[0023] The following describes in detail embodiments of the present invention, examples of which are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to be used to explain the embodiments of the present invention, and should not be construed as limiting the present invention.
[0024] In the description of the embodiments of the present invention, it should be understood that the terms "length", "width", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", etc., indicating the orientation or position relationship, are based on the orientation or position relationship shown in the accompanying drawings, and are only for the convenience of describing the embodiments of the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.
[0025] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be understood to indicate or imply relative importance or implicitly specify the number of the technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of the features. In the description of the embodiments of the present invention, "plurality" means two or more, unless otherwise specifically defined.
[0026] In the embodiments of the present invention, unless otherwise expressly specified or limited, the terms "installed," "connected," "connected," "fixed," etc. should be understood in a broad sense. For example, they may refer to fixed connection, detachable connection, or integration; mechanical connection, electrical connection; direct connection, indirect connection through an intermediate medium; internal communication between two components, or interaction between two components. Those skilled in the art will understand the specific meanings of the above terms in the embodiments of the present invention based on specific circumstances.
[0027] Reference Figure 1 — Figure 3The utility model provides an embodiment of a fireproof glass laminating device, comprising a frame column 1, a first support plate 2 being fixedly connected to the side wall of the frame column 1, a workbench 3 being fixedly connected to the top of the first support plate 2, an electric push rod 11 being fixedly connected to the bottom of the workbench 3, a connecting block 10 being fixedly connected to the output end of the electric push rod 11, a connecting block 10 being fixedly connected to the top of the connecting block 10, an outer wall of the connecting column 29 being rotatably connected to a connecting rod 18, one end of the connecting rod 18 being rotatably connected to a connecting column 17, a sliding plate 5 being fixedly connected to the bottom of the sliding plate 5, a slide rail 6 being provided, and a connecting rod 10 being fixedly connected to the top of the sliding plate 5. The connecting plate 4 is fixedly connected to the top of the connecting plate 4 with a support rod 12, and one end is rotatably connected to the rotating block 13. One end of the rotating block 13 is rotatably connected to the swing plate 14. One end of the swing plate 14 is rotatably connected to the connecting rod 2 16. The connecting rod 2 16 is fixedly connected to the extrusion plate 17. A pressing assembly is provided inside the frame column 1. The pressing assembly is used to laminate the glass. The pressing assembly includes a device cover 29 and a cylinder 31. The device cover 29 is fixedly connected to the inside of the frame column 1. The cylinder 31 is fixedly connected to the top of the device cover 29. The output end of the cylinder 31 is fixedly connected to the lower pressure plate 30. The inside of the extrusion plate 17 is fixedly connected to the sliding column 18.
[0028] Specifically, when using this glass manufacturing device, the glass to be processed is first placed on the workbench 3 to ensure its correct position. Subsequently, the electric push rod 11 moves the connecting block 10 forward, which causes the connecting rods 1 and 8 on both sides to expand outward. The connecting rods 1 and 8 are connected to two sliding plates 5, which translate in opposite directions along the slide rails 6. During this process, the translational movement of the sliding plates 5 causes the upper support rods 12 to move. The support rods 12, through the rotating blocks 13 at both ends, in turn drive the swing plates 14 connected to the rotating blocks 13. The swinging of the swing plates 14 causes the positions of the connecting rods 16 and the extrusion plates 17 to expand and contract, thereby achieving relative movement of the extrusion plates 17 on both sides. The movement of the extrusion plates 17 ultimately clamps the glass on the workbench 3. By precisely adjusting the clamping force, glass of different sizes can be effectively fixed, providing stable support for the subsequent lamination process.
[0029] Reference Figure 4The side wall of the workbench 3 is fixedly connected to a fixed plate 15, the side wall of the first support plate 2 is fixedly connected to a second support plate 22, the bottom of the second support plate 22 is fixedly connected to a motor 21, the output end of the motor 21 is fixedly connected to a turntable 23, the bottom of the motor 21 is fixedly connected to a support block 20, the top of the fixed plate 15 is fixedly connected to a fixed block 19, the sliding column 18 is slidably connected to the inside of the fixed block 19, the top of the turntable 23 is rotatably connected to a push plate 24, one end of the push plate 24 is rotatably connected to a sliding frame 25, the outer wall of the sliding frame 25 is fixedly connected to a push column 27, one end of the push column 27 is fixedly connected to a scraper 28, the top of the second support plate 22 is fixedly connected to a slide rail 26, and the sliding frame 25 is slidably connected to the outer wall of the slide rail 26.
[0030] Specifically, after the fire-resistant glass is secured and clamped, the output of the motor 21 is activated, driving the turntable 23 to rotate. The rotation of the turntable 23, through a connecting mechanism, also causes the push plate 24 above it to rotate. The rotation of the push plate 24 pushes the sliding frame 25 forward on the second slide rail 26. The forward motion of the sliding frame 25 applies a driving force to the push posts 27 on one side, which in turn drive the scraper 28 connected to it. Driven by the push posts 27, the scraper 28 scrapes along the glass surface, thereby cleaning it. In this way, the scraper 28 effectively removes impurities and dirt from the glass surface, ensuring that the glass surface is in optimal condition before lamination. When the turntable 23 completes one rotation, the sliding frame 25's forward and backward movement causes the scraper 28 to automatically return to its initial position, ready for the next round of cleaning. This system ensures uniform scraping by the scraper 28 and thorough cleaning of the glass surface, thereby improving the overall quality and efficiency of the fire-resistant glass lamination process.
[0031] Working principle: When using the laminating device, first place the glass to be processed on the workbench 3, and then push the connecting block 10 forward through the electric push rod 11, and the displacement of the connecting block 10 drives the connecting rods 8 on both sides to move outward. At the same time, the connecting rods 8 on both sides are connected to the two sliding plates 5, and the two sliding plates 5 move horizontally in opposite directions along the slide rail 6. Then the sliding plate 5 drives the upper support rod 12 to move. During the movement of the support rod 12, the rotating blocks 13 at both ends drive the swing plate 14 connected to the rotating block 13. The positions of the connecting rod 16 and the extrusion plate 17 are extended and retracted through the swinging of the swing plate 14, so that the extrusion plates 17 on both sides move relative to each other. The movement of the extrusion plate 17 clamps the glass above the workbench 3, thereby achieving the effect of effectively fixing glass of different sizes. After the fireproof glass is fixed and clamped, the turntable 23 is driven to rotate by starting the output end of the motor 21, and then the turntable 23 rotates to drive the push plate 24 above, and the push plate 24 pushes the sliding frame 25 to slide forward on the slide rail 26. The sliding frame 25 is driven by the force to drive the push column 27 on one side to move, and the push column 27 is driven by the force to drive the scraper 28, so that the scraper 28 scrapes along the glass surface, thereby achieving the effect of cleaning the glass surface. When the turntable 23 rotates one circle, the scraper 28 returns to its original position through the back and forth movement of the sliding frame 25.
[0032] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent replacements and improvements made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A fireproof glass laminating device comprising a frame column (1), characterized in that: The side wall of the frame column (1) is fixedly connected to a first support plate (2), the top of the first support plate (2) is fixedly connected to a workbench (3), the bottom of the workbench (3) is fixedly connected to an electric push rod (11), the output end of the electric push rod (11) is fixedly connected to a connecting block (10), the top of the connecting block (10) is fixedly connected to a second connecting column (9), the outer wall of the second connecting column (9) is rotatably connected to a connecting rod (8), one end of the connecting rod (8) is rotatably connected to a connecting column (7), and the bottom end of the connecting column (7) is fixedly connected to a sliding plate (5), a slide rail (6) is provided at the bottom of the sliding plate (5), a connecting plate (4) is fixedly connected to the top of the sliding plate (5), a support rod (12) is fixedly connected to the top of the connecting plate (4), one end of the supporting rod (12) is rotatably connected to a rotating block (13), one end of the rotating block (13) is rotatably connected to a swing plate (14), one end of the swing plate (14) is rotatably connected to a connecting rod (16), and the connecting rod (16) is fixedly connected to an extrusion plate (17), and a pressing assembly is provided inside the frame column (1), and the pressing assembly is used to laminate the glass.
2. The fireproof glass laminating device according to claim 1, characterized in that: The pressing assembly comprises a device cover (29) and a cylinder (31), wherein the device cover (29) is fixedly connected to the inside of the frame column (1), the cylinder (31) is fixedly connected to the top of the device cover (29), and the output end of the cylinder (31) is fixedly connected to a lower pressing plate (30).
3. The fireproof glass laminating device according to claim 1, characterized in that: A sliding column (18) is fixedly connected inside the extrusion plate (17), and a fixing plate (15) is fixedly connected to the side wall of the workbench (3).
4. The fireproof glass laminating device according to claim 3, characterized in that: A fixed block (19) is fixedly connected to the top of the fixed plate (15), and the sliding column (18) is slidably connected inside the fixed block (19).
5. The fireproof glass laminating device according to claim 1, characterized in that: The side wall of the first support plate (2) is fixedly connected to a second support plate (22), the bottom of the second support plate (22) is fixedly connected to a motor (21), the output end of the motor (21) is fixedly connected to a turntable (23), and the bottom of the motor (21) is fixedly connected to a support block (20).
6. The fireproof glass laminating device according to claim 5, characterized in that: The top of the rotating disk (23) is rotatably connected to a push plate (24), and one end of the push plate (24) is rotatably connected to a sliding frame (25).
7. The fireproof glass laminating device according to claim 6, characterized in that: The outer wall of the sliding frame (25) is fixedly connected with a push column (27), and one end of the push column (27) is fixedly connected with a scraper (28).
8. The fireproof glass laminating device according to claim 7, characterized in that: The top of the second support plate (22) is fixedly connected to a second slide rail (26), and the sliding frame (25) is slidably connected to the outer wall of the second slide rail (26).