Silica gel repair mortar composite material layer
By using a multi-layer structure design for the silicone gel repair mortar composite material layer, the problem of easy cracking of building insulation layers is solved, achieving good thermal insulation performance and structural stability, adapting to building deformation, and enhancing the interlayer connection strength and aesthetics.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 顾红霞
- Filing Date
- 2025-02-26
- Publication Date
- 2026-05-05
AI Technical Summary
Existing building insulation layers are prone to cracking in hot summer and cold winter regions, and have poor connectivity, affecting thermal insulation performance and structural stability.
The silicone gel repair mortar composite material layer includes a multi-layer structure design, using a hollow keel with a diamond array frame structure and a silicone gel layer, combined with silica particles and a fireproof adhesive layer to enhance adhesion and connection strength, and the silicone gel layer is connected by a through pipe to prevent cracking.
It improves the thermal insulation performance and structural stability of buildings, resists erosion from severe weather, adapts to building deformation, reduces the risk of cracking, and enhances the interlayer connection strength and aesthetics.
Smart Images

Figure CN224200070U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of building wall technology, and in particular to a silicone gel repair mortar composite material layer. Background Technology
[0002] In energy-saving building projects in hot-summer and cold-winter regions, insulation layers are required to meet thermal insulation needs. For example, expanded polystyrene boards, extruded polystyrene boards, or traditional building insulation mortar are used as insulation layers. For instance, application number CN201320815009.9 discloses an aerogel composite aluminum silicate fiber insulation and decorative integrated board, comprising a first insulation layer, an adhesive layer, a second insulation layer, and a decorative layer distributed sequentially from the base layer to the surface layer. These layers are bonded together, resulting in poor interlayer connectivity and a tendency to crack during building use. Utility Model Content
[0003] To address the aforementioned problems, this invention proposes a silicone gel repair mortar composite material layer, which more precisely solves the problems described above.
[0004] This utility model is achieved through the following technical solution:
[0005] This utility model proposes a silicone gel repair mortar composite material layer, comprising a composite material layer body, the composite material layer body including a mortar layer, a first connecting keel layer, a second connecting keel layer, a first silicone gel layer, a second silicone gel layer, a first waterproof layer, a second waterproof layer, a first outer decorative layer, and a second outer decorative layer. A first silicone gel layer is disposed on one side of the first connecting keel layer, and a second silicone gel layer is disposed on the other side of the first connecting keel layer. A first waterproof layer is disposed on the outer surface of the first silicone gel layer, and a first outer decorative layer is coated on the outer surface of the first waterproof layer. A second waterproof layer is disposed on the outer surface of the second silicone gel layer, and a second outer decorative layer is coated on the outer surface of the second waterproof layer. A first connecting keel layer is disposed between the mortar layer and the first silicone gel layer, and a second connecting keel layer is disposed between the mortar layer and the second silicone gel layer.
[0006] The first connecting keel layer and the second connecting keel layer are mainly hollow keels with a rhomboid array frame structure. Two-thirds of the hollow keel is embedded in the mortar layer, and one-third of the hollow keel is embedded in the first silicone gel layer and the second silicone gel layer.
[0007] A through-tube is inserted between the perforated holes of the first connecting keel layer and the second connecting keel layer, and the two ends of the through-tube are respectively connected to the first silicone gel layer and the second silicone gel layer.
[0008] Silica particles are uniformly adhered to the outer surfaces of the first and second silica gel layers, and the silica particles are semi-embedded under the surfaces of the first and second silica gel layers.
[0009] A fire-retardant adhesive layer is provided between the silica particles on the surface of the first waterproof layer and the first silicone gel layer, and a fire-retardant adhesive layer is provided between the silica particles on the surface of the second waterproof layer and the second silicone gel layer.
[0010] The beneficial effects of this utility model are:
[0011] 1. In this utility model, by setting a first silicone gel layer, the composite material layer body has good thermal insulation performance, which can be used for exterior wall insulation and roof insulation of buildings. At the same time, it can effectively resist the erosion of harsh weather and environment and maintain its performance stability. In addition, it has a certain degree of elasticity, which can adapt to the slight deformation of the building. It also has good adhesion to various materials, reducing the cracking of the structural layer. At the same time, a first connecting keel layer is set between the mortar layer and the first silicone gel layer, and a second connecting keel layer is set between the mortar layer and the second silicone gel layer, which increases the bonding area between the mortar layer and the first silicone gel layer and the second silicone gel layer, and improves the connection strength between the mortar layer and the first silicone gel layer and the second silicone gel layer structure, effectively preventing structural layer cracking.
[0012] 2. In this utility model, a through pipe is inserted between the hollow holes of the first connecting keel layer and the second connecting keel layer, thereby forming a structure in which the first silicone gel layer and the second silicone gel layer sandwich the mortar layer, further preventing the structural layer of the composite material layer body from cracking; silica particles are uniformly adhered to the outer surface of the first silicone gel layer and the second silicone gel layer, increasing the bonding area between the first silicone gel layer and the first waterproof layer, and between the second silicone gel layer and the second waterproof layer, improving the interlayer structural connection strength, and effectively preventing cracking. Attached Figure Description
[0013] Figure 1 This is an exploded view of the structure of this utility model;
[0014] Figure 2 This is a three-dimensional structural diagram of the present invention;
[0015] Figure 3 This is a schematic diagram of the structure of the first connecting keel layer of the clock of this utility model;
[0016] Figure 4 This is a side sectional view of the structure of this utility model.
[0017] In the diagram: 1. Composite material layer body; 101. Mortar layer; 102. First connecting keel layer; 1021. Second connecting keel layer; 1022. Hollow keel; 1023. Through pipe; 103. First silicone gel layer; 1031. Second silicone gel layer; 1032. Silica particles; 104. First waterproof layer; 1041. Second waterproof layer; 105. First exterior decorative layer; 1051. Second exterior decorative layer. Detailed Implementation
[0018] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0019] Example 1
[0020] A silicone gel repair mortar composite material layer includes a composite material layer body 1. The composite material layer body 1 includes a mortar layer 101, a first connecting keel layer 102, a second connecting keel layer 1021, a first silicone gel layer 103, a second silicone gel layer 1031, a first waterproof layer 104, a second waterproof layer 1041, a first exterior decorative layer 105, and a second exterior decorative layer 1051. The first silicone gel layer 103 is provided on one side of the first connecting keel layer 102, and the second silicone gel layer 1031 is provided on the other side of the first connecting keel layer 102. The first silicone gel layer 103 and the second silicone gel layer 1031 give the composite material layer body 1 good thermal insulation performance, which can be used for exterior wall insulation and roof insulation of buildings. It effectively resists the erosion of harsh weather and environment, maintaining the stability of its performance; in addition, it has a certain degree of elasticity, which can adapt to the slight deformation of the building, and has good adhesion to a variety of materials, greatly reducing the cracking of the structural layer. A first waterproof layer 104 is provided on the outer surface of the first silicone gel layer 103, and a first external decorative layer 105 is coated on the outer surface of the first waterproof layer 104. A second waterproof layer 1041 is provided on the outer surface of the second silicone gel layer 1031, and a second external decorative layer 1051 is coated on the outer surface of the second waterproof layer 1041. The second waterproof layers 1041 and 1042 are used to improve the waterproof performance of the composite material layer body 1, and the first external decorative layer 105 and the second external decorative layer 1051 make the composite material layer body 1 more aesthetically pleasing.
[0021] Combination Figure 1 and Figure 3As shown, a first connecting keel layer 102 is provided between the mortar layer 101 and the first silicone gel layer 103, and a second connecting keel layer 1021 is provided between the mortar layer 101 and the second silicone gel layer 1031. The main body of the first connecting keel layer 102 and the second connecting keel layer 1021 is a hollow keel 1022 with a rhomboid array frame structure. Two-thirds of the hollow keel 1022 is embedded in the mortar layer 101, and one-third of the hollow keel 1022 is embedded in the first silicone gel layer 103 and the second silicone gel layer 1031. The first connecting keel layer 102 and the second connecting keel layer 1021 are used to increase the bonding area between the mortar layer 101 and the first silicone gel layer 103 and the second silicone gel layer 1031, and to increase the connection strength between the structure of the mortar layer 101 and the first silicone gel layer 103 and the second silicone gel layer 1031, thereby effectively preventing structural layer cracking.
[0022] The technical solutions in the above-described embodiments of this application have at least the following technical effects or advantages: By setting the first silicone gel layer 103, the composite material layer body 1 has good thermal insulation performance, which can be used for exterior wall insulation and roof insulation of buildings. At the same time, it can effectively resist the erosion of harsh weather and environment and maintain its performance stability. In addition, it has a certain elasticity, which can adapt to the slight deformation of the building. It also has good adhesion to various materials, reducing the cracking of the structural layer. At the same time, a first connecting keel layer 102 is provided between the mortar layer 101 and the first silicone gel layer 103, and a second connecting keel layer 1021 is provided between the mortar layer 101 and the second silicone gel layer 1031, which increases the bonding area between the mortar layer 101 and the first silicone gel layer 103 and the second silicone gel layer 1031, and increases the connection strength between the mortar layer 101 and the first silicone gel layer 103 and the second silicone gel layer 1031, effectively preventing structural layer cracking.
[0023] Example 2
[0024] Combination Figure 1 , Figure 3 and Figure 4As shown, a through-tube 1023 is inserted between the perforations of the first connecting keel layer 102 and the second connecting keel layer 1021. The two ends of the through-tube 1023 are connected to the first silicone gel layer 103 and the second silicone gel layer 1031, respectively. The through-tube 1023 is used to connect the silicone gel material between the first silicone gel layer 103 and the second silicone gel layer 1031, thereby forming a structure in which the first silicone gel layer 103 and the second silicone gel layer 1031 sandwich the mortar layer 101, further preventing cracking of the structural layers of the composite material layer body 1. The outer surfaces of the first silicone gel layer 103 and the second silicone gel layer 1031 are uniformly adhered with… Silica particles 1032 are semi-embedded under the surfaces of the first silicone gel layer 103 and the second silicone gel layer 1031. A fire-retardant adhesive layer is provided between the first waterproof layer 104 and the silica particles 1032 on the surface of the first silicone gel layer 103, and a fire-retardant adhesive layer is provided between the second waterproof layer 1041 and the silica particles 1032 on the surface of the second silicone gel layer 1031. This increases the bonding area between the first silicone gel layer 103 and the first waterproof layer 104, and between the second silicone gel layer 1031 and the second waterproof layer 1041, thereby improving the interlayer structural connection strength and effectively preventing cracking.
[0025] The technical solutions in the above embodiments of this application have at least the following technical effects or advantages: A through pipe 1023 is inserted between the hollow holes of the first connecting keel layer 102 and the second connecting keel layer 1021, thereby forming a structure in which the first silicone gel layer 103 and the second silicone gel layer 1031 sandwich the mortar layer 101, further preventing the structural layer of the composite material layer body 1 from cracking; Silica particles 1032 are uniformly adhered to the outer surfaces of the first silicone gel layer 103 and the second silicone gel layer 1031, increasing the bonding area between the first silicone gel layer 103 and the first waterproof layer 104, and between the second silicone gel layer 1031 and the second waterproof layer 1041, improving the interlayer structural connection strength, and effectively preventing cracking.
[0026] Of course, there may be other implementations of this utility model. Based on this implementation, other implementations obtained by those skilled in the art without any creative effort are all within the scope of protection of this utility model.
Claims
1. A silica gel repair mortar composite material layer, comprising a composite material layer body (1), characterized in that, The composite material layer body (1) includes a mortar layer (101), a first connecting keel layer (102), a second connecting keel layer (1021), a first silicone gel layer (103), a second silicone gel layer (1031), a first waterproof layer (104), a second waterproof layer (1041), a first outer decorative layer (105), and a second outer decorative layer (1051). A first silicone gel layer (103) is provided on one side of the first connecting keel layer (102), and a second silicone gel layer (1031) is provided on the other side of the first connecting keel layer (102). A first waterproof layer (104) is provided on the outer surface of a silicone gel layer (103), a first outer decorative layer (105) is coated on the outer surface of the first waterproof layer (104), a second waterproof layer (1041) is provided on the outer surface of a second silicone gel layer (1031), a second outer decorative layer (1051) is coated on the outer surface of the second waterproof layer (1041), a first connecting keel layer (102) is provided between the mortar layer (101) and the first silicone gel layer (103), and a second connecting keel layer (1021) is provided between the mortar layer (101) and the second silicone gel layer (1031).
2. The silica gel repair mortar composite material layer according to claim 1, characterized in that, The first connecting keel layer (102) and the second connecting keel layer (1021) are mainly hollow keels (1022) with a rhomboid array frame structure. Two-thirds of the hollow keel (1022) is embedded in the mortar layer (101), and one-third of the hollow keel (1022) is embedded in the first silicone gel layer (103) and the second silicone gel layer (1031).
3. The silica gel repair mortar composite material layer according to claim 1, characterized in that, A through tube (1023) is inserted between the hollow holes of the first connecting keel layer (102) and the second connecting keel layer (1021), and the two ends of the through tube (1023) are respectively connected to the first silicone gel layer (103) and the second silicone gel layer (1031).
4. The silicone gel repair mortar composite material layer according to claim 1, characterized in that, Silica particles (1032) are uniformly adhered to the outer surfaces of the first silica gel layer (103) and the second silica gel layer (1031), and the silica particles (1032) are semi-embedded under the surfaces of the first silica gel layer (103) and the second silica gel layer (1031).
5. The silica gel repair mortar composite material layer according to claim 1, characterized in that, A fire-retardant adhesive layer is provided between the silica particles (1032) on the surface of the first waterproof layer (104) and the first silicone gel layer (103), and a fire-retardant adhesive layer is provided between the silica particles (1032) on the surface of the second waterproof layer (1041) and the second silicone gel layer (1031).
Citation Information
Patent Citations
Aerogel composite aluminium silicate fibre heat insulation decorative integrated board
CN203742108U