Heat preservation and insulation type laminated glass
By setting up butt protrusions and insulation grooves in the laminated glass, and filling them with sealing mechanisms and inert gas, the problem of insufficient insulation performance of laminated glass is solved, achieving better insulation effect and structural stability.
Patent Information
- Application Number
- CN202421962118.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-14
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-08-14
AI Technical Summary
The insulation performance of laminated glass is low, and the insulation performance of vacuum layer of vacuum glass is better, but the insulation performance of laminated glass causes heat conduction loss, affecting the use effect.
The surfaces of the two glass sheets are provided with butt protrusions and insulation grooves, and bonded and inserted through the first adhesive colloid, and the insulation grooves are filled with inert gas in combination with the sealing mechanism to achieve sealing of the glass sheets.
It improves the thermal insulation performance of laminated glass, maintains the structural integrity of laminated glass, and reduces heat conduction losses and enhances the use effect.
Smart Images

Figure CN223131558U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of laminated glass, in particular to a heat-insulating laminated glass. Background Art
[0002] Laminated glass, also known as laminated glass or laminated safety glass, is a composite glass product made of two or more layers of glass with a layer of adhesive polymer (usually polyvinyl alcohol or polyvinyl acrylate) in between. This interlayer plays a role in bonding and supporting, enabling the glass to maintain its overall structure when impacted, preventing the glass from shattering, and when the glass does shatter, the interlayer can stick the fragments together, thus reducing the risk of flying fragments.
[0003] Compared with vacuum glass, the heat-insulating and sound-insulating performance of laminated glass may be lower. Vacuum glass makes better use of the heat-insulating and sound-insulating performance of the vacuum layer, which can effectively reduce heat transfer, while the interlayer material of laminated glass will cause a certain amount of conductive heat loss, thus affecting its use effect. Therefore, a new type of heat-insulating laminated glass is needed to solve the above problems. Content of the Utility Model
[0004] The utility model specifically adopts the following technical solutions to achieve the above purposes:
[0005] A heat-insulating laminated glass, comprising: two glass sheets and a plurality of first adhesive colloids. A plurality of docking protrusions are arranged on the surfaces of the two glass sheets, and a plurality of the docking protrusions are bonded by some of the first adhesive colloids. The two glass sheets are bonded by some of the other first adhesive colloids. Heat-insulating grooves are arranged on the surfaces of the two glass sheets, and a plurality of the docking protrusions are respectively slidably inserted into the inner walls of the plurality of heat-insulating grooves. A sealing mechanism is further included, and the sealing mechanism is used to seal both ends of the two glass sheets.
[0006] Further, a plurality of the docking protrusions include a plurality of T-shaped heads respectively arranged on the surfaces of the two glass sheets. One ends of the plurality of T-shaped heads are all provided with docking heads, and the plurality of docking heads are respectively slidably inserted into the inner walls of the plurality of heat-insulating grooves.
[0007] Further, the sealing mechanism includes two second adhesive colloids and sealing glass bodies. One ends of the two sealing glass bodies are respectively bonded to the surfaces of the two glass sheets by the two second adhesive colloids.
[0008] Further, pulling grooves are arranged on the surfaces of the two sealing glass bodies.
[0009] Further, rubber bodies are fixedly installed on the inner walls of the two pulling grooves.
[0010] The beneficial effects of the present utility model are as follows:
[0011] 1. In the production of the laminated glass of the present utility model, after the user applies the first adhesive colloid on the surfaces of the two glass sheets and several of the said docking protrusions, the several docking protrusions are docked. During this process, the two glass sheets will also complete docking. Finally, inert gas is introduced into the interiors of the several heat preservation grooves, and the two ends of the two glass sheets are sealed through the sealing mechanism, and thus the assembly can be completed. With such a setting, there is the first adhesive colloid between the two glass sheets of the laminated glass, making the device have the characteristics of laminated glass. At the same time, the heat preservation grooves can play the function of improving its heat preservation and heat insulation effects, fully reflecting the practicality of the device. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 is the three-dimensional structural schematic diagram of the present utility model;
[0013] Figure 2 is the partial three-dimensional structural schematic diagram of the present utility model;
[0014] Figure 3 is the front view of a part of the structure of the present utility model;
[0015] Figure 4 is the semi-sectional view of another part of the structure of the present utility model.
[0016] Reference numerals: 1, glass sheet; 2, first adhesive colloid; 3, docking protrusion; 301, T-shaped head; 302, docking head; 4, heat preservation groove; 5, sealing mechanism; 501, second adhesive colloid; 502, sealing glass body; 6, pulling groove; 7, rubber body. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0017] For the purpose of making the objectives, technical solutions and advantages of the embodiments of the present utility model clearer, the technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model.
[0018] This application provides a heat-insulating laminated glass, which is mainly used to solve the problem that compared with vacuum glass, the heat-insulating performance of laminated glass may be lower. The vacuum glass utilizes the better heat-insulating performance of the vacuum layer to effectively reduce heat transfer, while the interlayer material of the laminated glass will cause a certain amount of conductive heat loss, thus affecting its use effect, and provides the following technical solutions, which will be described in detail below in combination with Figures 1 - 4 make a detailed description:
[0019] A heat-insulating laminated glass, comprising: two glass sheets 1 and a plurality of first adhesive colloids 2. A plurality of docking protrusions 3 are provided on the surfaces of the two glass sheets 1. After the user applies the plurality of first adhesive colloids 2 on the surfaces of the two glass sheets 1 and the plurality of docking protrusions 3 respectively, and docks the plurality of docking protrusions 3 in pairs, the adhesion of the two glass sheets 1 can be achieved. At this time, a plurality of heat-insulating grooves 4 respectively formed on the surfaces of the two glass sheets 1 are arranged at both ends. The user can inject inert gas into them, and seal the two ends of the two glass sheets 1 through the sealing mechanism 5 to complete the assembly. The main components of the plurality of connecting protrusions are: a plurality of T-shaped heads 301 respectively provided on the surfaces of the two glass sheets 1. During assembly, while the user docks the plurality of T-shaped heads 301 together, a plurality of docking heads 302 respectively fixedly installed at one end of the plurality of T-shaped heads 301 respectively slide and insert into the inner walls of the plurality of heat-insulating grooves 4 to complete the installation. The main components of the sealing mechanism 5 are: the sealing mechanism 5 includes two second adhesive colloids 501 and a sealing glass body 502. The user can bond the two sealing glass bodies 502 to the two ends of the two glass sheets 1 through the two second adhesive colloids 501 to complete the sealing of the two glass sheets 1.
[0020] When producing this laminated glass, after the user applies the first adhesive colloid 2 on the surfaces of the two glass sheets 1 and the plurality of docking protrusions 3, and docks the plurality of docking protrusions 3, in this process, the two glass sheets 1 will also complete docking. Finally, inert gas is introduced into the plurality of heat-insulating grooves 4, and the two ends of the two glass sheets 1 are sealed through the sealing mechanism 5 to complete the assembly. With such a setting, there is the first adhesive colloid 2 between the two glass sheets 1 of this laminated glass, making the device have the characteristics of laminated glass. At the same time, the heat-insulating grooves 4 can play a role in improving its heat-insulating effect, fully reflecting the practicability of the device.
[0021] As Figure 4 shown, in some embodiments, in order to further optimize the solution, pull grooves 6 for assisting in pulling the sealing glass bodies 502 are provided on the surfaces of the two sealing glass bodies 502, and rubber bodies 7 for preventing scratches on the user's hands are fixedly installed on the inner walls of the two pull grooves 6.
[0022] The above description of the disclosed embodiments enables those skilled in the art to implement or use the present invention. Various modifications to these embodiments will be obvious to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention will not be limited to these embodiments shown herein, but will be accorded the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A heat-insulating laminated glass, characterized in that, Comprising: Two glass sheets (1), a plurality of first adhesive colloids (2). A plurality of docking protrusions (3) are provided on the surfaces of the two glass sheets (1). A plurality of the docking protrusions (3) are bonded by some of the first adhesive colloids (2). The two glass sheets (1) are bonded by some of the other first adhesive colloids (2). Heat preservation grooves (4) are provided on the surfaces of the two glass sheets (1). A plurality of the docking protrusions (3) are respectively slidably inserted into the inner walls of the plurality of heat preservation grooves (4). A sealing mechanism (5) is further included, and the sealing mechanism (5) is used to seal the two ends of the two glass sheets (1).
2. The insulating and heat-insulating laminated glass according to claim 1, wherein A plurality of the docking protrusions (3) include a plurality of T-shaped heads (301) respectively provided on the surfaces of the two glass sheets (1). One ends of the plurality of T-shaped heads (301) are all provided with docking heads (302), and the plurality of docking heads (302) are respectively slidably inserted into the inner walls of the plurality of heat preservation grooves (4).
3. The insulating and heat-insulating laminated glass according to claim 1, characterized in that, The sealing mechanism (5) includes two second adhesive colloids (501) and a sealing glass body (502). One ends of the two sealing glass bodies (502) are respectively bonded to the surfaces of the two glass sheets (1) by the two second adhesive colloids (501).
4. The insulating and heat-insulating laminated glass according to claim 3, characterized in that, Grooves (6) are provided on the surfaces of the two sealing glass bodies (502).
5. The heat-insulating laminated glass according to claim 4, characterized in that, Rubber bodies (7) are fixedly installed on the inner walls of the two grooves (6).