Thermal insulation wall board

By introducing internal and external reinforcement layers and aluminum alloy arc block structure into the insulation wall panel, the impact force is dispersed, and the problem of easy deformation and cracking of the board is solved, improving stability and service life.

CN223189852UActive Publication Date: 2025-08-05JIANGSU AOBA INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422215068.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-10
Publication Date
2025-08-05
Estimated Expiration
2034-09-10

AI Technical Summary

Technical Problem

Existing insulation wall panels are susceptible to external impacts, resulting in deformation and cracking, resulting in overall replacement and increasing costs.

Method used

The inner reinforcement layer and outer reinforcement layer structure are adopted between the inner and outer insulation layers. The outer reinforcement layer is hollow structure, and the inner and outer reinforcement layer and arc block are made of aluminum alloy, which disperses the impact force and combines the reinforcement plate and the reinforcement frame to improve stability.

Benefits of technology

It effectively reduces the risk of deformation and cracking of insulation wall panels, extends service life, and reduces the frequency of overall replacement.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223189852U_ABST
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Abstract

The utility model relates to the technical field of boards, and discloses a thermal insulation wall board which comprises an inner thermal insulation layer, outer thermal insulation layers are arranged on the left side and the right side outside the inner thermal insulation layer, an inner reinforcing layer is arranged between the outer thermal insulation layers, an outer reinforcing layer is connected to the outer side of the outer thermal insulation layer on the right side, and the interior of the outer reinforcing layer is of a hollow structure. A plurality of first reinforcing plates distributed at equal intervals are connected to the interior of the inner heat preservation layer in a penetrating mode, the left sides of the first reinforcing plates penetrate out of the outer heat preservation layer on the left side, the right sides of the first reinforcing plates are connected with the outer reinforcing layer, and the arc-shaped blocks on the left side and the right side make contact with each other; a reinforcing frame is connected to the edge between the two outer thermal insulation layers; according to the utility model, the risk of deformation and cracking of the thermal insulation wall board is effectively reduced, the whole thermal insulation wall board is prevented from being replaced as much as possible after the thermal insulation board is deformed and cracked, and the service life of the thermal insulation wall board is well prolonged.
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Description

Technical Field

[0001] The utility model relates to the technical field of panels, in particular to a thermal insulation wall panel. Background Art

[0002] Thermal insulation wall panels are wall panels that are pasted on walls for insulation. The material of thermal insulation wall panels is usually rock wool board, ceramic insulation board and other materials with good thermal insulation performance. They are flat rectangular building material panels made of standard size and are widely used in the construction industry. They can be used as components of walls, ceilings or floors. The construction process of thermal insulation wall panels is usually wall masonry, interface agent treatment, wall mortar leveling, thermal insulation board pasting, anchor bolt installation and other steps. When installing thermal insulation wall panels, they are usually installed through the above-mentioned pasting and anchoring steps. However, since thermal insulation wall panels are usually located on the outside of the wall, they are more susceptible to direct external impact. Existing thermal insulation wall panels are prone to deformation and cracking when subjected to external impact. Existing thermal insulation wall panels are usually arranged in one piece. When the thermal insulation panel is deformed, it will affect the appearance. Therefore, after the thermal insulation wall panel is deformed and cracked, it is usually necessary to replace the entire thermal insulation wall panel, which increases the cost. Utility Model Content

[0003] The purpose of the present invention is to provide an insulating wall panel in response to the above-mentioned problems and shortcomings, which effectively reduces the risk of deformation and cracking of the insulating wall panel, avoids the need to replace the entire insulating wall panel after deformation and cracking of the insulating wall panel, and effectively extends the service life of the insulating wall panel.

[0004] A thermal insulation wall panel, comprising an inner thermal insulation layer, wherein outer thermal insulation layers are provided on both the left and right sides of the inner thermal insulation layer;

[0005] An inner reinforcement layer is provided between the outer insulation layer and the inner insulation layer. The outer side of the outer insulation layer on the right side is connected to the outer reinforcement layer. The interior of the outer reinforcement layer is a hollow structure. The front and back sides of the inner wall of the outer reinforcement layer are connected with a number of evenly distributed arc blocks. The interior of the inner insulation layer is connected with a number of evenly distributed reinforcement plates 1. The left side of the reinforcement plate 1 passes through the outer insulation layer on the left side, and the right side of the reinforcement plate 1 is connected to the outer reinforcement layer.

[0006] A further preferred solution is that the arc-shaped blocks on the left and right sides contact each other.

[0007] A further preferred solution is that a reinforcement frame is connected to the edges between the two outer insulation layers, and the inner insulation layer and the inner reinforcement layer are both connected to the inner wall of the reinforcement frame.

[0008] A further preferred solution is that a plurality of the reinforcement plates 1 are connected to the left and right ends with reinforcement plates 2, and the right side of the reinforcement plates 2 is connected to the outer reinforcement layer.

[0009] A further preferred solution is that a plurality of mounting grooves are opened on the right side of the reinforcing plate, and a plurality of rivets are installed inside the mounting grooves and pass through the left side thereof.

[0010] A further preferred solution is that a plurality of inserting blocks are connected to the left side of the outer reinforcement layer and are respectively inserted into a plurality of the installation slots. Beneficial effects

[0011] Because the outer reinforcement layer has a hollow structure, several evenly distributed arc blocks are connected to the front and back of the inner wall of the outer reinforcement layer. The arc blocks on the left and right sides are in contact with each other. The outer reinforcement layer and the arc blocks are both made of aluminum alloy. When the insulation wall panel is subjected to external impact, the outer reinforcement layer is the first to be impacted. At this time, the arc blocks on the right side of the outer reinforcement layer are the first to be impacted. The arc blocks on the left side that are in contact with the arc blocks on the right side can disperse the external impact to a certain extent, effectively dispersing the impact force, thereby effectively reducing the risk of deformation and cracking of the insulation wall panel.

[0012] By setting up the external reinforcement layer, in combination with the internal reinforcement layer, reinforcement plate one and reinforcement plate two to reinforce the insulation wall panels, the risk of deformation and cracking of the insulation wall panels is further reduced, thereby minimizing the need to replace the entire insulation wall panels after deformation and cracking of the insulation panels, thereby effectively extending the service life of the insulation wall panels. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 This is a schematic diagram of the overall three-dimensional structure of the utility model;

[0014] Figure 2 This is a schematic diagram of the overall main cross-sectional structure of the utility model;

[0015] Figure 3 For this utility model Figure 2 A is a schematic diagram of the locally enlarged structure.

[0016] Markings in the figure: outer insulation layer 101, inner insulation layer 102, inner reinforcement layer 103, reinforcement frame 104, reinforcement plate 1 105, rivet 106, outer reinforcement layer 107, arc block 108, installation slot 109, insert block 110, reinforcement plate 2 111. DETAILED DESCRIPTION

[0017] like Figures 1 to 3 As shown, the present application is a thermal insulation wall panel, comprising an inner thermal insulation layer 102, with outer thermal insulation layers 101 being provided on both the left and right sides of the inner thermal insulation layer 102;

[0018] An inner reinforcement layer 103 is provided between the outer insulation layer 101 and the inner insulation layer 102. An outer reinforcement layer 107 is connected to the outer side of the outer insulation layer 101 on the right side. The inner part of the outer reinforcement layer 107 is a hollow structure. The front and back sides of the inner wall of the outer reinforcement layer 107 are connected to a number of evenly distributed arc blocks 108. A number of evenly distributed reinforcement plates 105 are connected through the inner part of the inner insulation layer 102. The left side of the reinforcement plate 105 passes through the outer insulation layer 101 on the left side, and the right side of the reinforcement plate 105 is connected to the outer reinforcement layer 107.

[0019] When the thermal insulation wall panel is used, the material of the outer thermal insulation layer 101 can be selected from ceramic thermal insulation board, which has the advantages of being fireproof, non-combustible and non-water-absorbent. The outer thermal insulation layer 101 is located on the outside and can play a good fireproof and waterproof effect to a certain extent, which can effectively improve the fireproof performance of the thermal insulation wall panel. The material of the inner thermal insulation layer 102 can be selected from extruded polystyrene board, which has a good thermal insulation effect, high strength and moisture resistance. The arrangement of the outer thermal insulation layer 101 and the inner thermal insulation layer 102 can achieve a good thermal insulation effect.

[0020] A reinforcement frame 104 is connected to the edge between the two outer insulation layers 101, and the inner insulation layer 102 and the inner reinforcement layer 103 are both connected to the inner wall of the reinforcement frame 104;

[0021] Since an inner reinforcement layer 103 is provided between the outer insulation layer 101 and the inner insulation layer 102, the material of the inner reinforcement layer 103 is an aluminum alloy mesh structure, and the material of the reinforcement frame 104 can be selected from aluminum alloy, the provision of the reinforcement frame 104 can improve the stability of the inner reinforcement layer 103, and glass glue is poured inside the inner reinforcement layer 103. The glass glue can bond the outer insulation layer 101 and the inner insulation layer 102. At the same time, the provision of the inner reinforcement layer 103 can effectively improve the connection strength between the outer insulation layer 101 and the inner insulation layer 102, thereby effectively improving the stability of the insulation wall board;

[0022] The left and right ends of the plurality of reinforcing plates 105 are connected to reinforcing plates 2 111 , and the right side of the reinforcing plates 2 111 is connected to the outer reinforcing layer 107 ;

[0023] Since the inner insulation layer 102 is connected with a number of equally spaced reinforcement plates 105, the left and right ends of the several reinforcement plates 105 are connected with reinforcement plates 2 111, and the right side of the reinforcement plates 2 111 is connected to the outer reinforcement layer 107, the materials of the reinforcement plates 105 and 111 are both aluminum alloy. Figure 1 As shown, the reinforcing plate 105 and the reinforcing plate 2 111 form a well shape to support the insulation wall panel as a whole. The reinforcing plate 105 and the reinforcing plate 2 111 can further improve the stability of the insulation wall panel;

[0024] Several mounting slots 109 are formed on the right side of the reinforcement plate 105. Several rivets 106 are installed inside the mounting slots 109 and extend through the left side. Several inserts 110 are connected to the left side of the outer reinforcement layer 107 and are inserted into the mounting slots 109. The arc-shaped blocks 108 on the left and right sides are in contact with each other.

[0025] When the user needs to install the thermal insulation wall panel, since the right side of the reinforcement plate 105 has a plurality of installation grooves 109, after the wall is built, treated with an interface agent, and the wall is mortared and leveled, a polyether glue or other glue specially used for sticking thermal insulation wall panels can be applied to the wall surface, and the left side of the outer thermal insulation layer 101 on the left side is bonded to the wall. A plurality of rivets 106 are respectively installed in the plurality of installation grooves 109, and the thermal insulation wall panels are anchored by the rivets 106, which facilitates subsequent installation.

[0026] After the user completes the anchoring, apply glue such as polyether glue on the right side of the reinforcement plate 105, the right side of the reinforcement plate 2 111, the right side of the outer insulation layer 101 on the right side, and the inner wall of the installation groove 109, and adhere the outer reinforcement layer 107 to the right side of the outer insulation layer 101 on the right side. The plug 110 connected to the left side of the outer reinforcement layer 107 can be inserted into the adjacent installation groove 109. At this time, the outer reinforcement layer 107 can be adhered to the right side of the outer insulation layer 101. At the same time, the outer reinforcement layer 107 can also be connected to the reinforcement plate 105 and the reinforcement plate 2 111. At this time, the outer reinforcement layer 107 can be located at the rightmost side of the insulation wall panel, thereby completing the installation of the insulation wall panel.

[0027] Since the interior of the outer reinforcement layer 107 is a hollow structure, a number of evenly distributed arc blocks 108 are connected to the front and back of the inner wall of the outer reinforcement layer 107. The arc blocks 108 on the left and right sides are in contact with each other. The outer reinforcement layer 107 and the arc blocks 108 are made of aluminum alloy. When the insulation wall panel is impacted from the outside, the outer reinforcement layer 107 is impacted first. At this time, the arc block 108 on the right side of the outer reinforcement layer 107 is impacted first, and the left arc block 108 in contact with the right arc block 108 is impacted first. The arc-shaped blocks 108 on the side can disperse the external impact to a certain extent, effectively disperse the impact force, thereby effectively reducing the risk of deformation and cracking of the insulation wall panels. Combined with the reinforcement of the insulation wall panels by the inner reinforcement layer 103, reinforcement plate 1 105 and reinforcement plate 2 111, the risk of deformation and cracking of the insulation wall panels is further reduced, thereby avoiding the need to replace the entire insulation wall panels after deformation and cracking of the insulation panels, thereby effectively extending the service life of the insulation wall panels.

Claims

1. A thermal insulation wall panel, comprising an inner thermal insulation layer (102), wherein outer thermal insulation layers (101) are provided on both the left and right sides of the inner thermal insulation layer (102), characterized in that: An inner reinforcement layer (103) is provided between the outer insulation layer (101) and the inner insulation layer (102); the outer side of the outer insulation layer (101) on the right side is connected to the outer reinforcement layer (107); the inner side of the outer reinforcement layer (107) is a hollow structure; the front and rear sides of the inner wall of the outer reinforcement layer (107) are connected to a plurality of evenly distributed arc blocks (108); the inner side of the inner insulation layer (102) is penetrated by a plurality of evenly distributed reinforcement plates (105); the left side of the reinforcement plate (105) penetrates the outer insulation layer (101) on the left side; the right side of the reinforcement plate (105) is connected to the outer reinforcement layer (107).

2. The thermal insulation wall panel according to claim 1, characterized in that: The arc-shaped blocks (108) on the left and right sides are in contact with each other.

3. The thermal insulation wall panel according to claim 1, characterized in that: A reinforcement frame (104) is connected to the edges between the two outer thermal insulation layers (101), and the inner thermal insulation layer (102) and the inner reinforcement layer (103) are both connected to the inner wall of the reinforcement frame (104).

4. The thermal insulation wall panel according to claim 1, characterized in that: The left and right ends of the plurality of reinforcing plates 1 (105) are connected to reinforcing plates 2 (111), and the right side of the reinforcing plates 2 (111) is connected to the outer reinforcing layer (107).

5. The thermal insulation wall panel according to claim 1, characterized in that: The right side of the reinforcing plate 1 (105) is provided with a plurality of mounting grooves (109), and the mounting grooves (109) are internally provided with a plurality of rivets (106) penetrating from the left side thereof.

6. The thermal insulation wall panel according to claim 5, characterized in that: The left side of the outer reinforcement layer (107) is connected to a plurality of inserting blocks (110) which are respectively inserted into a plurality of the installation slots (109).