High-strength explosion-proof cooking bench glass panel
By using a double-layer glass structure and interlocking design, combined with an explosion-proof layer, a flame-retardant layer, and a reinforcing layer, the problems of glass panels being easily broken and flammable are solved, resulting in high-strength and heat-resistant glass panels.
Patent Information
- Application Number
- CN202520314842.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-26
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-02-26
AI Technical Summary
Existing glass panels are easily damaged by impacts during use, are flammable, and lack sufficient strength and heat resistance.
It adopts a double-layer glass structure, with each glass layer having an explosion-proof layer, a flame-retardant layer, and a reinforcing layer. The connection stability and strength are improved by fitting a convex ring with an annular groove, combined with a buffer block and a sealing ring.
It enhances the impact resistance of the glass panel, prevents cracking and burning, improves overall strength and heat resistance, and enhances the stability and sealing of the connection.
Smart Images

Figure CN223909599U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of glass panels, in particular to a high-strength explosion-proof cooktop glass panel. BACKGROUND
[0002] There are two kinds of panels on the market, namely tempered glass and stainless steel panel. Since glass has the advantages of beauty, strong grease resistance, easy cleaning and affordable price, more users will choose to use glass panel as the panel of gas stove.
[0003] During use, the cookware containing heavy objects is easy to knock against the glass panel, causing the glass panel to break and then leading to large-area explosion of the glass panel. Therefore, a high-strength explosion-proof glass panel for cooktop is urgently needed. CONTENT OF THE INVENTION
[0004] The application provides a high-strength explosion-proof cooktop glass panel.
[0005] The high-strength explosion-proof cooktop glass panel provided by the application adopts the following technical scheme:
[0006] The high-strength explosion-proof cooktop glass panel comprises a first glass plate and a second glass plate, the first glass plate is connected with the second glass plate, and a containing cavity is formed, a first reinforcing structure and a second reinforcing structure are arranged in the containing cavity, the first reinforcing structure is connected to one side of the first glass plate close to the second glass plate, the second reinforcing structure is connected to one side of the second glass plate close to the first glass plate, a gap is formed between the first reinforcing structure and the second reinforcing structure, a plurality of buffer blocks are distributed in the gap, one end of the buffer block is connected to the first reinforcing structure, and the other end of the buffer block is connected to the second reinforcing structure; the first reinforcing structure comprises a first explosion-proof layer, a first fire-retardant layer and a first reinforcing layer arranged in the direction from the first glass plate to the second glass plate, and the second reinforcing structure comprises a second explosion-proof layer, a second fire-retardant layer and a second reinforcing layer arranged in the direction from the second glass plate to the first glass plate.
[0007] Preferably, the first glass plate comprises a first main plate body and a first side plate body, the first side plate body is annularly arranged at the edge of the first main plate body and protrudes relative to the first main plate body, and an annular groove is arranged at one end of the first side plate body away from the first main plate body;
[0008] The second glass plate comprises a second main plate body and a second side plate body, the second side plate body is located at one side of the second main plate body close to the first main plate body, annularly arranged at the edge of the second main plate body and protrudes relative to the second main plate body, and a convex ring is arranged at one end of the second side plate body away from the second main plate body; and the convex ring is embedded in the annular groove.
[0009] Preferably, the first explosion-proof layer is a concave structure matched with the first main plate body and the first side plate body, the first fireproof layer and the first reinforcing layer are arranged in the concave part of the first explosion-proof layer; the second explosion-proof layer is a concave structure matched with the second main plate body and the second side plate body, the second fireproof layer and the second reinforcing layer are arranged in the concave part of the second explosion-proof layer.
[0010] Preferably, the convex ring is arranged at the middle part of the second side plate body, a first sealing ring is bonded to the end face of the first main plate body close to the convex ring; a second sealing ring and a third sealing ring are bonded to the end face of the second side plate body close to the first main plate body, the second sealing ring is located on the inner side of the convex ring, and the third sealing ring is located on the outer side of the convex ring.
[0011] Preferably, a plurality of corner pads are further included, and the plurality of corner pads are sleeved at the top corners of the first glass plate and the second glass plate.
[0012] In summary, the present application includes at least one of the following beneficial technical effects:
[0013] 1. The present application improves the overall strength of the glass panel by setting the first explosion-proof layer and the second explosion-proof layer, so that the first glass plate and the second glass plate are not easy to burst due to impact, sets the first fireproof layer and the second fireproof layer to prevent the glass panel from burning due to high temperature of the stove, and sets the first reinforcing layer and the second reinforcing layer to further strengthen the overall strength of the glass panel.
[0014] 2. By setting the fitting of the convex ring and the annular groove, the stability of the connecting structure between the first glass plate and the second glass plate is increased, the first sealing ring, the second sealing ring and the second sealing ring are set to improve the sealing performance of the connecting structure between the convex ring and the annular groove.
[0015] 3. By setting the buffer block, the buffer block is used to provide buffer when the first glass plate or the second glass plate is impacted, so as to reduce the impact force and protect the first glass plate or the second glass plate which is not directly impacted. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 is the overall structure schematic diagram of the preferred embodiment of the present application.
[0017] Figure 2 is Figure 1 is the cross-sectional view along A-A.
[0018] Figure 3 is the structure schematic diagram of the first glass plate in the preferred embodiment of the present application.
[0019] Figure 4 is the structure schematic diagram of the second glass plate in the preferred embodiment of the present application.
[0020] Explanation of reference signs: 1, first glass plate; 101, first main plate body; 102, first side plate body; 103, annular groove; 2, second glass plate; 201, second main plate body; 202, second side plate body; 203, convex ring; 3, first reinforcing structure; 31, first explosion-proof layer; 32, first fire-retardant layer; 33, first reinforcing layer; 4, second reinforcing structure; 41, second explosion-proof layer; 42, second fire-retardant layer; 43, second reinforcing layer; 5, buffer block; 6, first sealing ring; 7, second sealing ring; 8, third sealing ring; 9, corner pad. DETAILED DESCRIPTION
[0021] The application will be further described in detail below with reference to the accompanying drawings.
[0022] The application provides a high-strength explosion-proof cooktop glass panel, as shown in Figures 1 to 4 which comprises a first glass plate 1 and a second glass plate 2.
[0023] As shown in Figures 2 to 4As shown, the first glass plate 1 comprises a first main plate body 101 and a first side plate body 102, the first main plate body 101 is in a rectangular structure or a polygonal structure, the first side plate body 102 is annularly arranged at the edge of the first main plate body 101 and protrudes relative to the first main plate body 101, one end of the first side plate body 102 away from the first main plate body 101 is provided with an annular groove 103, the annular groove 103 is located in the middle of the first side plate body 102, the second glass plate 2 comprises a second main plate body 201 and a second side plate body 202, the second main plate body 201 is in a rectangular structure or a polygonal structure and corresponds to the first main plate body 101, the second side plate body 202 is located at one side of the second main plate body 201 close to the first main plate body 101 and is annularly arranged at the edge of the second main plate body 201 and protrudes relative to the second main plate body 201, one end of the second side plate body 202 away from the second main plate body 201 is provided with a convex ring 203 corresponding to the annular groove 103, the convex ring 203 is located in the middle of the second side plate body 202, the convex ring 203 is located in the middle of the second side plate body 202, one end face of the convex ring 203 close to the first main plate body 101 is bonded with a first sealing ring 6, one end face of the second side plate body 202 close to the first main plate body 101 is bonded with a second sealing ring 7 and a third sealing ring 8, the second sealing ring 7 is located inside the convex ring 203, the third sealing ring 8 is located outside the convex ring 203, the first sealing ring 6, the second sealing ring 7 and the third sealing ring 8 have the same thickness, the convex ring 203 is embedded in the annular groove 103, and the first sealing ring 6, the second sealing ring 7 and the third sealing ring 8 are all smeared with adhesive and embedded in the annular groove 103, the first side plate body 102 and the second side plate body 202 are sealingly connected through the first sealing ring 6, the second sealing ring 7 and the third sealing ring 8, the embedded connection of the convex ring 203 and the annular groove 103 increases the stability of the connecting structure between the first glass plate 1 and the second glass plate 2, and the first sealing ring 6, the second sealing ring 7 and the second sealing ring 7 are arranged to improve the sealing performance of the connecting structure between the convex ring 203 and the annular groove 103.
[0024] The first main plate body 101, the first side plate body 102, the second main plate body 201 and the second side plate body 202 enclose a containing cavity, and the first reinforcing structure 3 and the second reinforcing structure 4 are arranged in the containing cavity. The first reinforcing structure 3 comprises a first explosion-proof layer 31, a first fire-retardant layer 32 and a first reinforcing layer 33 arranged in the direction from the first glass plate 1 to the second glass plate 2, the first explosion-proof layer 31 is a concave structure matched with the first main plate body 101 and the first side plate body 102, the first fire-retardant layer 32 and the first reinforcing layer 33 are arranged in the concave part of the first explosion-proof layer 31, specifically, the first explosion-proof layer 31 is a first explosion-proof film, the first explosion-proof film is bonded to the inner wall of the first main plate body 101 and the first side plate body 102, the first fire-retardant layer 32 is a first fire-retardant glue layer, and the first reinforcing layer 33 is a first PVC film; the second reinforcing structure 4 comprises a second explosion-proof layer 41, a second fire-retardant layer 42 and a second reinforcing layer 43 arranged in the direction from the second glass plate 2 to the first glass plate 1, the second explosion-proof layer 41 is a concave structure matched with the second main plate body 201 and the second side plate body 202, the second fire-retardant layer 42 and the second reinforcing layer 43 are arranged in the concave part of the second explosion-proof layer 41, specifically, the second explosion-proof layer 41 is a second explosion-proof film, the second explosion-proof film is bonded to the inner wall of the second main plate body 201 and the second side plate body 202, the second fire-retardant layer 42 is a second fire-retardant glue layer, and the second reinforcing layer 43 is a second PVC film, the first explosion-proof layer 31 and the second explosion-proof layer 41 are arranged to improve the overall strength of the glass panel, so that the first glass plate 1 and the second glass plate 2 are not easy to burst due to impact, the first fire-retardant layer 32 and the second fire-retardant layer 42 are arranged to prevent the glass panel from burning due to high temperature of the stove, and the first reinforcing layer 33 and the second reinforcing layer 43 are arranged to further strengthen the overall strength of the glass panel.
[0025] A gap is formed between the first reinforcing structure 3 and the second reinforcing structure 4, and a plurality of buffer blocks 5 are distributed in the gap, one end of the buffer block 5 is connected to the first reinforcing structure 3, and the other end is connected to the second reinforcing structure 4, specifically, a gap is formed between the first reinforcing layer 33 and the second reinforcing layer 43, the buffer block 5 is made of elastic material, the buffer block 5 is used to provide buffer when the first glass plate 1 or the second glass plate 2 is impacted, to reduce the impact force, and to protect the first glass plate 1 or the second glass plate 2 not directly impacted from being affected by the impact force.
[0026] The corner pads 9 are arranged on the top corners of the first glass plate 1 and the second glass plate 2, the number of the corner pads 9 corresponds to the number of the top corners of the first glass plate 1, and the corner pads 9 are used to protect the top corners of the first glass plate 1 and the second glass plate 2 from being impacted.
[0027] The above are preferred embodiments of the present application, which do not limit the protection scope of the present application, therefore: any equivalent changes made on the structure, shape and principle of the present application should be covered within the protection scope of the present application.
Claims
1. A high-strength explosion-proof cooktop glass panel, characterized in that: comprising a first glass plate (1) and a second glass plate (2), the first glass plate (1) is connected with the second glass plate (2) and forms a containing cavity, a first reinforcing structure (3) and a second reinforcing structure (4) are arranged in the containing cavity, the first reinforcing structure (3) is connected on the side of the first glass plate (1) close to the second glass plate (2), the second reinforcing structure (4) is connected on the side of the second glass plate (2) close to the first glass plate (1), a gap is formed between the first reinforcing structure (3) and the second reinforcing structure (4), a plurality of buffer blocks (5) are distributed in the gap, one end of the buffer block (5) is connected on the first reinforcing structure (3), and the other end is connected on the second reinforcing structure (4); the first reinforcing structure (3) comprises a first explosion-proof layer (31), a first fire-retardant layer (32) and a first reinforcing layer (33) arranged in the direction from the first glass plate (1) to the second glass plate (2), and the second reinforcing structure comprises a second explosion-proof layer (41), a second fire-retardant layer (42) and a second reinforcing layer (43) arranged in the direction from the second glass plate (2) to the first glass plate (1).
2. The high-strength explosion-proof cooktop glass panel according to claim 1, characterized in that: the first glass plate (1) comprises a first main plate body (101) and a first side plate body (102), the first side plate body (102) is annularly arranged on the edge of the first main plate body (101) and protrudes relative to the first main plate body (101), and an annular groove (103) is arranged on the end of the first side plate body (102) away from the first main plate body (101); the second glass plate (2) comprises a second main plate body (201) and a second side plate body (202), the second side plate body (202) is arranged on the side of the second main plate body (201) close to the first main plate body (101) and annularly arranged on the edge of the second main plate body (201) and protrudes relative to the second main plate body (201), and a convex ring (203) is arranged on the end of the second side plate body (202) away from the second main plate body (201); the convex ring (203) is embedded in the annular groove (103).
3. The high-strength explosion-proof cooktop glass panel according to claim 2, characterized in that: the first explosion-proof layer (31) is a concave structure matched with the first main plate body (101) and the first side plate body (102), the first fire-retardant layer (32) and the first reinforcing layer (33) are arranged in the concave part of the first explosion-proof layer (31); the second explosion-proof layer (41) is a concave structure matched with the second main plate body (201) and the second side plate body (202), the second fire-retardant layer (42) and the second reinforcing layer (43) are arranged in the concave part of the second explosion-proof layer (41).
4. The high-strength explosion-proof cooktop glass panel according to claim 2, characterized in that: The convex ring (203) is arranged at the middle part of the second side plate body (202), and a first sealing ring is attached to one end surface of the first main plate body (101) close to the convex ring (203); The second side plate body (202) is attached with a second sealing ring and a third sealing ring on the end surface close to the first main plate body (101), the second sealing ring is located on the inner side of the convex ring (203), and the third sealing ring is located on the outer side of the convex ring (203).
5. The high-strength explosion-proof cooktop glass panel according to claim 1, characterized in that: Further comprising a plurality of corner pads (9), a plurality of the corner pads (9) are sleeved at the top corners of the first glass plate (1) and the second glass plate (2).