Shock-resistant laminated glass convenient to replace

By utilizing the technical problems raised in the patent, the technical problems that have not been effectively solved in the existing technology are solved, the safe and convenient application of rapid glass is achieved, the technical problems that have not been effectively solved in the existing technology are solved, the rapid glass replacement is achieved and the safety is improved.

CN223370305UActive Publication Date: 2025-09-23JIANGSU XINYUEHUA ENERGY SAVING GLASS TECH CO LTD
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Patent Information

Application Number
CN202422788141.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-15
Publication Date
2025-09-23
Estimated Expiration
2034-11-15

AI Technical Summary

Technical Problem

Existing earthquake-resistant laminated glass needs to be manually carried and clamped during exhibition. Improper clamping force can easily cause the glass to break, making it impossible to quickly install the exhibition and posing a safety hazard.

Method used

A laminated glass structure consisting of a support unit, a replacement unit, and a component unit was designed. A motor was used to drive the threaded rod and slider mechanism. The connection plate and baffle were hinged to achieve rapid ejection and stabilization of the glass. Combined with the design of PVB film and aluminum spacers, the safety and convenience of glass replacement were improved.

Benefits of technology

It achieves fast, safe and convenient replacement of glass, reduces the risk of manual operation and improves safety during the exhibition process.

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Abstract

The utility model discloses shock-resistant laminated glass convenient for replacing glass, which comprises a supporting unit, a glass clamping unit, a glass clamping unit, a glass clamping unit, a glass clamping unit, a glass clamping unit, a glass clamping unit and a glass clamping unit, the replacement unit comprises a motor fixedly connected to the right side face of the device block, the left end face of an output rod of the motor penetrates through the right side face of the device block, extends to the inner wall of the device block and is fixedly connected with a threaded rod, the surface of the threaded rod is rotationally connected with the inner wall of the device block, and the surface of the threaded rod is sleeved with a sliding block in a threaded mode; the side face of the sliding block is slidably connected with the inner wall of the device block. The motor is started to enable the threaded rod to rotate, the push plate moves leftwards to rapidly push the whole glass leftwards, meanwhile, the sliding block moves leftwards, the connecting plate and the sliding block are hinged, the connecting block and the baffle are hinged, the baffle turns over with the inner wall of the fixing block as the axis, and the whole glass is rapidly pushed leftwards. And the operation is quick and labor-saving, and the safety of glass replacement is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of laminated glass, in particular to a shock-resistant laminated glass which is convenient for replacing glass. Background Art

[0002] Laminated glass, also known as laminated glass, is a composite glass product made 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 processing, the glass and the interlayer are permanently bonded together. It is widely used in buildings to block wind and allow light to pass through. At the same time, laminated glass is a high-safety and sound-insulating glass widely used in homes, hotels or various public places.

[0003] A Chinese patent discloses a shock-resistant laminated glass with publication number CN208684779U, which includes a laminated glass body and a U-shaped mounting groove. The two side ends of the laminated glass body are arranged in the U-shaped mounting groove through the mounting groove. The top and bottom of the mounting groove are provided with baffles. The baffles are integrally formed with the U-shaped mounting groove. Through the mutual cooperation between the clamping strip, the clamping protrusion and the arc-shaped spring piece, it can play a buffering role and gradually reduce the shaking amplitude of the laminated glass body, thereby avoiding cracking and breakage. The structure is simple, the effect is obvious, and the practicality is strong.

[0004] When the earthquake-resistant laminated glass is displayed, it needs to be manually carried and clamped by a clamping assembly. If the clamping force is not well controlled, the glass may easily break, making it impossible to quickly install and display the laminated glass, thereby improving the safety of placing and replacing the glass. Utility Model Content

[0005] The purpose of this section is to summarize some aspects of the embodiments of the present invention and briefly introduce some preferred embodiments. Some simplifications or omissions may be made in this section and in the abstract and title of the utility model to avoid obscuring the purpose of this section, the abstract and the title of the utility model, and such simplifications or omissions shall not be used to limit the scope of the present invention.

[0006] In view of the above problems existing in the existing earthquake-resistant laminated glass that is easy to replace the glass, the present utility model is proposed.

[0007] Therefore, the purpose of the present invention is to provide a shock-resistant laminated glass that is easy to replace the glass. It is suitable for solving the problem that when exhibiting glass materials, it is necessary to manually carry them and clamp them with a clamping assembly. If the clamping force is not well controlled, it is easy to cause the glass to break, making it impossible to quickly install and exhibit the laminated glass, thereby improving the safety of glass placement.

[0008] In order to solve the above technical problems, the present invention provides the following technical solutions: a shock-resistant laminated glass that is easy to replace glass, comprising:

[0009] The supporting unit includes a device block, and a placement rack is fixedly provided on the top surface of the device block;

[0010] The replacement unit includes a motor fixedly connected to the right side of the device block, the left end surface of the motor output rod penetrates the right side of the device block and extends to the inner wall of the device block and is fixedly connected to a threaded rod, the surface of the threaded rod is rotatably connected to the inner wall of the device block, the surface of the threaded rod is threadedly sleeved with a slider, the side surface of the slider is slidably connected to the inner wall of the device block, the inner wall of the slider is hingedly provided with a connecting plate, the top inner wall of the connecting plate is hingedly provided with a connecting block, the right side of the connecting block is fixedly provided with a baffle, the right side of the baffle contacts the left side of the placement rack, the left side of the placement rack is fixedly provided with a fixed block, the inner wall of the fixed block is hinged with the bottom surface of the baffle, the right end surface of the threaded rod is threadedly sleeved with a movable plate, the side surface of the movable plate is slidably connected to the inner wall of the device block, the left side of the movable plate is fixedly provided with a push plate, the side surface of the push plate is slidably connected to the inner wall of the placement rack, and the replacement unit also includes a stabilizing component;

[0011] The component unit comprises a glass body, and the side surface of the glass body is clamped with the inner wall of the placement frame.

[0012] As a preferred solution of the shock-resistant laminated glass that is easy to replace glass described in the utility model, the component unit also includes a PVB film, the front and rear end surfaces of the two rear glass bodies are fixedly connected to the front and rear end surfaces of the PVB film respectively, and the front and rear end surfaces of the two front glass bodies are fixedly provided with aluminum spacers, and the inner walls of the aluminum spacers are fixedly provided with molecular sieves.

[0013] As a preferred solution of the shock-resistant laminated glass for easy glass replacement described in the utility model, the stabilizing assembly includes a two-way telescopic rod fixedly connected to the inner wall of the placement frame, and the front sides of the front and rear end output rods of the two-way telescopic rod are fixedly provided with stabilizing blocks, the back sides of the stabilizing blocks and the inner wall of the two-way telescopic rod are fixedly provided with springs, and the back sides of the stabilizing blocks are abutted against the front sides of the glass body.

[0014] As a preferred solution of the earthquake-resistant laminated glass for easy glass replacement described in the utility model, two support frames are fixedly provided on the bottom surfaces of the left and right ends of the device block respectively, and reinforcing plates are fixedly provided on the top surfaces of the support frames and the sides of the device block.

[0015] As a preferred solution of the earthquake-resistant laminated glass for easy glass replacement described in the utility model, the inner wall of the aluminum spacer is provided with a through opening, and the inner walls of the two front glass bodies are provided with a hollow layer.

[0016] As a preferred solution of the earthquake-resistant laminated glass for easy glass replacement described in the utility model, the push plate is composed of a fixed rod and a long plate, and the size of the long plate corresponds to the size of the inner wall of the placement rack.

[0017] The beneficial effects of the utility model are as follows: when the glass is placed inside the placement rack as a whole, the motor is started to rotate the threaded rod, so that the push plate moves to the left to quickly push the glass as a whole to the left. At the same time, the slider moves to the left. Through the hinge connection between the connecting plate and the slider and the hinge connection between the connecting block and the baffle, the baffle is flipped along the inner wall of the fixed block as the axis, and the glass as a whole is quickly pushed to the left for timely replacement. The operation is quick and labor-saving, and the safety of glass replacement is improved. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative work. Among them:

[0019] Figure 1 This is a schematic diagram of the overall structure of a shock-resistant laminated glass that is easy to replace glass, proposed by the utility model;

[0020] Figure 2 This is a schematic diagram of the structure of a replacement unit for earthquake-resistant laminated glass that is convenient for replacing glass, as proposed by the present invention;

[0021] Figure 3 This is a schematic diagram of the structural unit of a shock-resistant laminated glass that is easy to replace glass, as proposed by the utility model.

[0022] Description of the drawings: 100, support unit; 101, device block; 102, support frame; 103, placement frame; 200, component unit; 201, glass body; 202, PVB film; 203, aluminum spacer; 204, molecular sieve; 300, replacement unit; 301, motor; 302, threaded rod; 303, slider; 304, connecting plate; 305, connecting block; 306, baffle; 307, fixed block; 308, movable plate; 309, push plate; 310, stabilizing assembly; 3101, two-way telescopic rod; 3102, spring; 3103, stabilizing block. DETAILED DESCRIPTION

[0023] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, the specific implementation methods of the present invention are described in detail below with reference to the accompanying drawings.

[0024] In the following description, many specific details are set forth to facilitate a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Those skilled in the art may make similar generalizations without violating the connotation of the present invention. Therefore, the present invention is not limited to the specific embodiments disclosed below.

[0025] Secondly, the term "one embodiment" or "embodiment" herein refers to a specific feature, structure, or characteristic that may be included in at least one implementation of the present invention. The phrase "in one embodiment" appearing in various places throughout this specification does not necessarily refer to the same embodiment, nor does it refer to a separate or selective embodiment that is mutually exclusive with other embodiments.

[0026] Furthermore, the present invention is described in detail with reference to schematic diagrams. For ease of illustration, when describing embodiments of the present invention, cross-sectional views of device structures may be partially enlarged and not to scale. Furthermore, the schematic diagrams are merely illustrative and should not limit the scope of protection of the present invention. Furthermore, in actual production, three-dimensional dimensions, including length, width, and depth, should be included.

[0027] Example

[0028] Reference Figure 1-Figure 3 , which is an embodiment of the present invention, provides a shock-resistant laminated glass that is easy to replace glass, including a supporting unit 100, a replacement unit 300 and a component unit 200.

[0029] The support unit 100 includes a device block 101, a placement rack 103 is fixedly provided on the top surface of the device block 101, two support racks 102 are fixedly provided on the bottom surfaces of the left and right ends of the device block 101, and reinforcement plates are fixedly provided on the top surfaces of the support racks 102 and the sides of the device block 101;

[0030] The replacement unit 300 includes a motor 301 fixedly connected to the right side of the device block 101, the left end face of the output rod of the motor 301 passes through the right side of the device block 101 and extends to the inner wall of the device block 101 and is fixedly connected to a threaded rod 302, the surface of the threaded rod 302 is rotatably connected to the inner wall of the device block 101, a slider 303 is threadedly sleeved on the surface of the threaded rod 302, the side of the slider 303 is slidably connected to the inner wall of the device block 101, the inner wall of the slider 303 is hingedly provided with a connecting plate 304, the inner wall of the top of the connecting plate 304 is hingedly provided with a connecting block 305, the right side of the connecting block 305 is fixedly provided with a baffle 306, the right side of the baffle 306 is in contact with the left side of the placement rack 103, the left side of the placement rack 103 is fixedly provided with a fixed block 307, the inner wall of the fixed block 307 is hinged to the bottom surface of the baffle 306 Then, a movable plate 308 is threadedly sleeved on the right end surface of the threaded rod 302, and the side surface of the movable plate 308 is slidably connected to the inner wall of the device block 101. A push plate 309 is fixedly provided on the left side of the movable plate 308, and the side surface of the push plate 309 is slidably connected to the inner wall of the placement rack 103. The replacement unit 300 also includes a stabilizing component 310, which includes a two-way telescopic rod 3101 fixedly connected to the inner wall of the placement rack 103, and the front of the output rods at the front and rear ends of the two-way telescopic rod 3101 are fixedly provided with stabilizing blocks 3103. The back of the stabilizing block 3103 and the inner wall of the two-way telescopic rod 3101 are fixedly provided with a spring 3102. The back of the stabilizing block 3103 and the front of the glass body 201 are against each other. The push plate 309 is composed of a fixed rod and a long plate. The size of the long plate corresponds to the size of the inner wall of the placement rack 103.

[0031] The component unit 200 includes a glass body 201, the side of the glass body 201 is clamped to the inner wall of the placement frame 103, and the component unit 200 also includes a PVB film 202. The front and rear end faces of the two rear glass bodies 201 are fixedly connected to the front and rear end faces of the PVB film 202 respectively, and the front and rear end faces of the two front glass bodies 201 are fixedly provided with aluminum spacers 203, and the inner walls of the aluminum spacers 203 are fixedly provided with molecular sieves 204. The inner walls of the aluminum spacers 203 are opened with through openings, and the inner walls of the two front glass bodies 201 are provided with hollow layers.

[0032] During use, the glass is placed on the inner wall of the left end of the placement rack 103, and the push plate 309 is used to assist in stabilizing the right end of the glass. The motor 301 is started to rotate the threaded rod 302, so that the slider 303 moves to the right. Through the hinge connection between the slider 303 and the connecting plate 304, and the hinge action of the connecting plate 304 and the connecting block 305, the baffle 306 rotates along the fixed block 307 as the axis, quickly squeezing the glass as a whole to move to the right. At the same time, the push plate 309 moves to the right, so that the entire glass as a whole moves quickly into the placement rack 103, and the output rods of the two bidirectional telescopic rods 3101 are released, so that the two springs 3102 contract quickly, and the two stabilizing blocks 3103 quickly stabilize the front and rear ends of the glass as a whole.

[0033] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present invention may be modified or replaced by equivalents without departing from the spirit and scope of the technical solutions of the present invention, and all of these should be included in the scope of the claims of the present invention.

Claims

1. A shock-resistant laminated glass that is easy to replace glass, characterized in that: include: A support unit (100) comprises a device block (101), wherein a placement rack (103) is fixedly provided on the top surface of the device block (101); The replacement unit (300) comprises a motor (301) fixedly connected to the right side of the device block (101); the left end face of the output rod of the motor (301) penetrates the right side of the device block (101) and extends to the inner wall of the device block (101) and is fixedly connected with a threaded rod (302); the surface of the threaded rod (302) is rotatably connected to the inner wall of the device block (101); a slider (303) is threadedly sleeved on the surface of the threaded rod (302); the side of the slider (303) is slidably connected to the inner wall of the device block (101); the inner wall of the slider (303) is hingedly provided with a connecting plate (304); the inner wall of the top end of the connecting plate (304) is hingedly provided with a connecting block (305); the connecting block (305) A baffle (306) is fixedly provided on the right side, and the right side of the baffle (306) contacts the left side of the placement rack (103). A fixed block (307) is fixedly provided on the left side of the placement rack (103). The inner wall of the fixed block (307) is hinged to the bottom surface of the baffle (306). A movable plate (308) is threadedly sleeved on the right end surface of the threaded rod (302). The side of the movable plate (308) is slidably connected to the inner wall of the device block (101). A push plate (309) is fixedly provided on the left side of the movable plate (308). The side of the push plate (309) is slidably connected to the inner wall of the placement rack (103). The replacement unit (300) further includes a stabilizing component (310). The component unit (200) comprises a glass body (201), the side surface of the glass body (201) being snap-fitted to the inner wall of the placement frame (103).

2. The earthquake-resistant laminated glass that is easy to replace glass according to claim 1, characterized in that: The component unit (200) further comprises a PVB film (202); the front and rear end surfaces of the two rear glass bodies (201) are fixedly connected to the front and rear end surfaces of the PVB film (202), respectively; the front and rear end surfaces of the two front glass bodies (201) are fixedly provided with aluminum spacers (203); and the inner walls of the aluminum spacers (203) are fixedly provided with molecular sieves (204).

3. The earthquake-resistant laminated glass that is easy to replace glass according to claim 1, characterized in that: The stabilizing assembly (310) comprises a bidirectional telescopic rod (3101) fixedly connected to the inner wall of the placement frame (103); stabilizing blocks (3103) are fixedly provided on the front of the front and rear output rods of the bidirectional telescopic rod (3101); springs (3102) are fixedly provided on the back of the stabilizing block (3103) and the inner wall of the bidirectional telescopic rod (3101); and the back of the stabilizing block (3103) abuts against the front of the glass body (201).

4. The earthquake-resistant laminated glass that is easy to replace glass according to claim 1, characterized in that: Two support frames (102) are fixedly provided on the bottom surfaces of the left and right ends of the device block (101), respectively. Reinforcement plates are fixedly provided on the top surfaces of the support frames (102) and the sides of the device block (101).

5. The earthquake-resistant laminated glass that is easy to replace glass according to claim 2, characterized in that: The inner wall of the aluminum spacer (203) is provided with a through opening, and the inner walls of the two front glass bodies (201) are provided with a hollow layer.

6. The earthquake-resistant laminated glass that is easy to replace glass according to claim 1, characterized in that: The push plate (309) is composed of a fixed rod and a long plate, and the size of the long plate corresponds to the size of the inner wall of the placement rack (103).

Citation Information

Patent Citations

  • Antidetonation type doubling glass

    CN208684779U