Wall thermal insulation layer with reinforcing effect
Through the design of multi-layer composite structure and high-strength fiber reinforced layer, the problems of insufficient strength and poor durability of wall insulation materials are solved, and the high strength, durability and environmental protection of insulation layers are achieved, and it is suitable for building energy conservation and green building fields.
Patent Information
- Application Number
- CN202422749597.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-12
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2034-11-12
AI Technical Summary
The existing wall insulation materials are insufficient in strength, poor durability and environmental pollution problems, making it difficult to meet the needs of building energy conservation and green development.
It adopts a multi-layer composite structure, including high-efficiency insulation core material and high-strength fiber reinforced layer, and uses vacuum microbead composite board, aerogel, carbon fiber mesh cloth and polymer waterproof materials. It is closely combined with adhesive to form a waterproof and breathable outer protective layer, which enhances the overall strength and impact resistance of the insulation layer, and has good durability and environmental protection performance.
It significantly improves the strength and durability of the insulation layer, extends service life, reduces environmental pollution, meets the requirements of green buildings, and reduces building energy consumption.
Smart Images

Figure CN223305193U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of building energy conservation, in particular to a wall insulation layer with a strengthening effect. Background Art
[0002] With the increasing demand for energy-saving buildings, wall insulation technology has been widely used as an important means to improve building energy efficiency. Currently, common wall insulation layers on the market mostly use materials such as polystyrene foam boards and rock wool boards, which are fixed to the wall surface or middle layer by gluing or anchoring to achieve thermal insulation. These existing technical solutions have improved the thermal insulation performance of the wall to a certain extent, but still have the following disadvantages:
[0003] 1. Insufficient strength: Some insulation materials have limited strength and are prone to deformation and falling off under extreme weather or external forces, affecting the insulation effect and building safety.
[0004] 2. Poor durability: When exposed to outdoor environment for a long time, the insulation layer is easily eroded by ultraviolet rays and rain, resulting in performance degradation and shortened service life.
[0005] 3. Safety needs to be improved: Some insulation materials have environmental pollution problems during production and waste disposal, which is not in line with the current development trend of green buildings. Utility Model Content
[0006] The purpose of the present invention is to provide a wall insulation layer with a strengthening effect, so as to solve the problems raised in the above background technology.
[0007] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: a wall insulation layer with a reinforcing effect, comprising a waterproof and breathable outer protective layer, a high-efficiency thermal insulation core material and a high-strength fiber reinforcement layer, the high-efficiency thermal insulation core material comprising a vacuum microbead composite board and aerogel, high-strength fiber reinforcement layers are provided on both sides of the outside of the high-efficiency thermal insulation core material, the high-strength fiber reinforcement layers comprising carbon fiber mesh cloth and an adhesive, the waterproof and breathable outer protective layer comprising a polymer waterproof material and a microporous breathable layer, and a microporous breathable layer is provided inside the polymer waterproof material.
[0008] Preferably, the adhesive is provided on both sides of the carbon fiber mesh cloth.
[0009] Preferably, the waterproof and breathable outer protective layer is provided on the outermost layer of the high-efficiency thermal insulation core material, and the high-efficiency thermal insulation core material, the high-strength fiber reinforcement layer and the waterproof and breathable outer protective layer are bonded together by an adhesive.
[0010] Preferably, the aerogel is arranged on both sides of the vacuum microbead composite plate.
[0011] In summary, this application has the following beneficial technical effects:
[0012] 1. The utility model adopts a multi-layer composite structure and a high-strength fiber reinforcement layer, which makes the insulation layer more resistant to wind pressure and impact, ensuring stability in long-term use and significantly improving strength.
[0013] 2. The utility model adopts a combination of high-efficiency thermal insulation core material and waterproof and breathable outer protective layer, which effectively resists erosion from harsh external environment, prolongs the service life of the thermal insulation layer, and significantly enhances durability.
[0014] 3. The use of environmentally friendly insulation materials reduces the impact on the environment. At the same time, the efficient insulation performance helps to reduce building energy consumption and is in line with the concept of green building. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 This is the main view of the utility model;
[0016] Figure 2 This is a schematic diagram of the cross-sectional structure of the waterproof and breathable outer protective layer of the present invention;
[0017] Figure 3 This is a schematic diagram of the cross-sectional structure of the high-efficiency thermal insulation core material of the present utility model;
[0018] Figure 4 This is a schematic diagram of the cross-sectional structure of the high-strength fiber reinforced layer of the present invention.
[0019] In the figure: 1. Waterproof and breathable outer protective layer; 101. Polymer waterproof material; 102. Microporous breathable layer; 2. High-efficiency thermal insulation core material; 201. Vacuum microbead composite board; 202. Aerogel; 3. High-strength fiber reinforcement layer; 301. Carbon fiber mesh cloth; 302. Adhesive. DETAILED DESCRIPTION
[0020] The following is combined with Figure 1-4 , further details of this application are given.
[0021] A wall insulation layer with a strengthening effect, comprising a waterproof and breathable outer protective layer 1, a high-efficiency thermal insulation core material 2 and a high-strength fiber reinforcement layer 3, the high-efficiency thermal insulation core material 2 comprises a vacuum micro-bead composite board 201 and an aerogel 202, the vacuum micro-bead composite board 201 and the aerogel 202 are both lightweight, high thermal resistance inorganic thermal insulation materials, as core materials, while ensuring good thermal insulation effect, reducing the burden on the wall and improving energy efficiency, the high-efficiency thermal insulation core material 2 is provided with a high-strength fiber reinforcement layer 3 on both sides of the outside, the high-strength fiber reinforcement layer 3 comprises a carbon fiber mesh cloth 301 and an adhesive 302, the high-strength The fiber reinforcement layer 3 is located on both sides of the thermal insulation core material. The carbon fiber mesh cloth 301 is tightly bonded to the high-efficiency thermal insulation core material 2 through a special adhesive 302, which significantly improves the overall strength and impact resistance of the thermal insulation layer. The waterproof and breathable outer protective layer 1 includes a polymer waterproof material 101 and a microporous breathable layer 102. The microporous breathable layer 102 is arranged inside the polymer waterproof material 101. The polymer waterproof material 101 is combined with the microporous breathable layer 102. Through the microporous breathable technology, it can effectively prevent rainwater from penetrating, and maintain air circulation inside the thermal insulation layer, avoid water vapor condensation, and extend the service life of the thermal insulation layer.
[0022] Reference Figure 4 The adhesive 302 is provided on both sides of the carbon fiber mesh cloth 301. The adhesive 302 is made of an adhesive material specially used for construction so as to bond the carbon fiber mesh cloth 301 to other structures.
[0023] Reference Figure 1 The waterproof and breathable outer protective layer 1 is arranged on the outermost layer of the high-efficiency thermal insulation core material 2. The high-efficiency thermal insulation core material 2, the high-strength fiber reinforced layer 3 and the waterproof and breathable outer protective layer 1 are bonded by an adhesive 302. The waterproof and breathable outer protective layer 1 is the outermost layer, which can protect the inner layer structure. The adhesive 302 uses a special adhesive material, which can make the high-efficiency thermal insulation core material 2, the high-strength fiber reinforced layer 3 and the waterproof and breathable outer protective layer 1 tightly combined.
[0024] Reference Figure 3 Aerogel 202 is arranged on both sides of the vacuum microbead composite board 201. Aerogel 202 is a lightweight, high thermal resistance inorganic insulation material. While ensuring good insulation effect, it reduces the burden on the wall and improves energy efficiency.
[0025] The standard parts used in this utility model can all be purchased from the market, and special-shaped parts can be customized according to the description in the specification and the drawings. The specific connection methods of each part adopt conventional means such as mature bolts, rivets, welding, etc. in the existing technology. The machinery, parts and equipment all adopt conventional models in the existing technology, and the circuit connection adopts the conventional connection method in the existing technology, which will not be described in detail here.
[0026] The implementation principle of a wall insulation layer with a reinforcement effect in an embodiment of the present application is as follows: the insulation layer adopts a multi-layer composite design, including a high-strength fiber reinforcement layer 3, a high-efficiency thermal insulation core material 2 and a waterproof and breathable outer protective layer 1. The high-strength fiber reinforcement layer 3 is located on both sides of the high-efficiency thermal insulation core material 2, and adopts a carbon fiber mesh cloth 301. It is tightly combined with the high-efficiency thermal insulation core material 2 through a special adhesive 302, which significantly improves the overall strength and impact resistance of the insulation layer. The vacuum microbead composite board 201 is a lightweight, high-thermal resistance inorganic insulation material. As a core material, it can reduce the burden on the wall and improve energy efficiency while ensuring a good thermal insulation effect. The waterproof and breathable outer protective layer 1 adopts a polymer waterproof material 101, combined with the microporous breathable technology of the microporous breathable layer 102, which can effectively prevent rainwater from penetrating, and maintain air circulation inside the insulation layer, avoid water vapor condensation, and extend the service life of the insulation layer.
[0027] The above describes an exemplary implementation of the wall insulation layer with a reinforcing effect provided by the present disclosure with reference to a preferred embodiment. However, it can be understood by those skilled in the art that, without departing from the concept of the present disclosure, various variations and modifications can be made to the above-mentioned specific embodiments, and various technical features and structures proposed in the present disclosure can be combined in various ways without exceeding the scope of protection of the present disclosure, which is determined by the appended claims.
Claims
1. A wall insulation layer with a strengthening effect, comprising a waterproof and breathable outer protective layer (1), a high-efficiency thermal insulation core material (2) and a high-strength fiber reinforcement layer (3), characterized in that: The high-efficiency thermal insulation core material (2) comprises a vacuum microbead composite board (201) and an aerogel (202); high-strength fiber reinforcement layers (3) are provided on both sides of the exterior of the high-efficiency thermal insulation core material (2); the high-strength fiber reinforcement layers (3) comprise a carbon fiber mesh cloth (301) and an adhesive (302); the waterproof and breathable outer protective layer (1) comprises a polymer waterproof material (101) and a microporous breathable layer (102); and the microporous breathable layer (102) is provided inside the polymer waterproof material (101).
2. The wall insulation layer with a strengthening effect according to claim 1, characterized in that: The adhesive (302) is arranged on both sides of the carbon fiber mesh cloth (301).
3. The wall insulation layer with a strengthening effect according to claim 1, characterized in that: The waterproof and breathable outer protective layer (1) is arranged on the outermost layer of the high-efficiency thermal insulation core material (2), and the high-efficiency thermal insulation core material (2), the high-strength fiber reinforcement layer (3) and the waterproof and breathable outer protective layer (1) are bonded together by an adhesive (302).
4. The wall insulation layer with a strengthening effect according to claim 1, characterized in that: The aerogel (202) is arranged on both sides of the vacuum microbead composite plate (201).
Citation Information
Cited By
Thermal insulation and waterproof integrated structural coiled material and preparation method thereof
CN121316369A