Multifunctional integrated concrete insulation board body structure
By introducing protective and reinforcing components into the concrete insulation board, the problems of insufficient flame retardancy, moisture resistance, and radiation resistance in the existing technology are solved, and the high-efficiency heat preservation, flame retardancy, moisture resistance, and compressive strength of the multifunctional integrated concrete insulation board are realized, thereby improving the overall stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- TONGLIAO WEIDE NEW MATERIAL TECH CO LTD
- Filing Date
- 2025-04-29
- Publication Date
- 2026-05-01
AI Technical Summary
Existing integrated concrete insulation boards have shortcomings in terms of flame retardancy, moisture resistance, and radiation resistance, and their single function limits their application in the construction field.
The protective components include a combination of foamed concrete, polyurethane insulation board, concrete front substrate, polymer board and stainless steel woven mesh, which enhance the flame retardancy, moisture resistance and radiation resistance of the insulation board, and are reinforced by reinforcement components to improve overall stability.
It achieves multi-functional integration, possesses strong thermal insulation effect, Class B flame retardant performance, moisture-proof performance and pressure resistance, and enhances overall stability and wear resistance.
Smart Images

Figure CN224186966U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of concrete insulation board technology, specifically a multifunctional integrated concrete insulation board structure. Background Technology
[0002] Integrated concrete insulation boards are building panels that combine insulation materials with concrete structures. They are multifunctional and typically consist of an insulation layer and a concrete finishing layer, molded together using an interface adhesive or cement mortar. They are widely used in building exterior walls, roof insulation systems, and integrated insulation and finishing projects. However, current integrated concrete insulation boards still have the following shortcomings:
[0003] For example, patent document CN216587086U discloses a concrete insulation board. This concrete insulation board can block heat transfer through insulation holes in different directions and heat radiation insulation layers inside the holes, achieving a good and durable heat insulation effect. However, it does not have good flame retardant, moisture-proof, and radiation-resistant properties, and its function is limited, which has certain limitations in practical use. Utility Model Content
[0004] The purpose of this utility model is to provide a multifunctional integrated concrete insulation panel structure to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a multifunctional integrated concrete insulation board structure, comprising a built-in insulation board and a protective component. The built-in insulation board is an integrated structure. The protective component is disposed on the surface of the built-in insulation board and includes foamed concrete, a polyurethane insulation board, a concrete front substrate, a polymer board, a stainless steel woven mesh, and a concrete rear substrate. The foamed concrete is disposed on the front side of the built-in insulation board, and a polyurethane insulation board is installed on the front side of the foamed concrete. The rear surface of the polyurethane insulation board is tightly connected to the front surface of the foamed concrete, and a concrete front substrate is disposed on the front side of the polyurethane insulation board. A polymer board is installed on the rear surface of the built-in insulation board, and a stainless steel woven mesh is disposed on the rear side of the polymer board.
[0006] Furthermore, a concrete back substrate is provided on the rear side of the stainless steel woven mesh, and the concrete back substrate, stainless steel woven mesh, and polymer plate are arranged sequentially from right rear to front.
[0007] Furthermore, the polymer plate is an integrated structure, and the rear surface of the polymer plate is tightly connected to the front surface of the concrete back substrate.
[0008] Furthermore, both the front concrete substrate and the rear concrete substrate are integrally cast structures, and the front concrete substrate and the rear concrete substrate are symmetrically arranged in front of and behind the built-in insulation board.
[0009] Furthermore, the outer sides of the concrete front substrate and the concrete rear substrate are provided with reinforcement components for reinforcement, and the reinforcement components include a fixed base plate, a reinforcement frame and a reinforcement support plate.
[0010] Furthermore, the fixed base plate is disposed at the bottom of the front concrete base plate and the rear concrete base plate, and the outer ends of the front concrete base plate and the rear concrete base plate are engaged with a reinforcing frame, and a reinforcing support plate is installed at the inner end of the lower side of the reinforcing frame.
[0011] Furthermore, the reinforcement component also includes a limiting groove, a reinforcement limiting plate, a pouring connection groove, pouring concrete, and a ceramic sand coating. The inner sides of the front and rear ends of the reinforcement frame are provided with limiting grooves, the inner side of which is slidably connected to the reinforcement limiting plate, and the outer surface of the reinforcement limiting plate is provided with a ceramic sand coating.
[0012] Furthermore, the foamed concrete, polyurethane insulation board, concrete front substrate, polymer board, stainless steel woven mesh and concrete rear substrate are all provided with casting connection grooves, and the inner side of the casting connection groove is provided with casting concrete.
[0013] This utility model provides a multifunctional integrated concrete insulation panel structure, which has the following beneficial effects:
[0014] 1. This utility model integrates a protective component, comprising foamed concrete, polyurethane insulation board, a front concrete substrate, a polymer board, a stainless steel woven mesh, and a rear concrete substrate. In use, the built-in insulation board provides strong insulation; the foamed concrete, by adjusting the aggregate ratio, maintains its porous structure while enhancing radiation blocking ability, thus strengthening the overall shielding capability; the polyurethane insulation board achieves Class B flame retardancy through molecular structure modification, enhancing the overall flame retardant effect; the front concrete substrate reinforces the front of the board; the polymer board itself has moisture-proof and water-proof properties, and its surface coating treatment gives it anti-mildew and anti-corrosion characteristics; the stainless steel woven mesh enhances the internal hardness of the board and improves its compressive strength; and the rear concrete substrate reinforces the rear. This allows the device to integrate multiple layers of boards, achieving multiple functions such as flame retardancy and moisture resistance.
[0015] 2. This utility model incorporates a reinforcement component, which includes a fixed base plate, a reinforcement frame, and a reinforcement support plate. The component also includes a limiting groove, a reinforcement limiting plate, a pouring connection groove, poured concrete, and a ceramic sand coating. In use, the fixed base plate is positioned at the bottom of the entire device, and two sets of reinforcement frames are secured to the outer ends of the concrete rear substrate and the concrete front substrate. External reinforcement is achieved through the reinforcement frames. The two sets of reinforcement frames are connected and reinforced through the sliding connection between the reinforcement limiting plate and the inner side of the limiting groove. Poured concrete into the pouring connection groove reinforces the internal structure. The ceramic sand coating prevents wear on the outer surface, thus reinforcing both the internal and external aspects of the device and enhancing its overall stability. Attached Figure Description
[0016] Figure 1 This is a three-dimensional structural diagram of a multifunctional integrated concrete insulation board structure according to the present invention.
[0017] Figure 2 This is a three-dimensional structural diagram of a protective component of a multifunctional integrated concrete insulation board structure according to this utility model.
[0018] Figure 3 This is a three-dimensional structural diagram of a reinforcement component for a multifunctional integrated concrete insulation board structure according to this utility model.
[0019] In the diagram: 1. Built-in insulation board; 2. Protective components; 201. Foamed concrete; 202. Polyurethane insulation board; 203. Concrete front substrate; 204. Polymer board; 205. Stainless steel woven mesh; 206. Concrete rear substrate; 3. Reinforcing components; 301. Fixed base plate; 302. Reinforcing frame; 303. Reinforcing support plate; 304. Limiting groove; 305. Reinforcing limiting plate; 306. Pouring connection groove; 307. Pouring concrete; 308. Ceramic sand coating. Detailed Implementation
[0020] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model.
[0021] like Figures 1 to 3As shown, a multifunctional integrated concrete insulation board structure includes a built-in insulation board 1 and a protective component 2. The built-in insulation board 1 is an integrated structure. The protective component 2 is disposed on the surface of the built-in insulation board 1 and includes foamed concrete 201, polyurethane insulation board 202, a concrete front substrate 203, a polymer board 204, a stainless steel woven mesh 205, and a concrete rear substrate 206. The foamed concrete 201 is disposed on the front side of the built-in insulation board 1, and the polyurethane insulation board 202 is installed on the front side of the foamed concrete 201. The rear surface of the polyurethane insulation board 202 is tightly connected to the front surface of the foamed concrete 201, and a concrete front substrate is disposed on the front side of the polyurethane insulation board 202. The back surface of the built-in insulation board 1 is fitted with a polymer board 204, and a stainless steel woven mesh 205 is provided behind the polymer board 204. A concrete back substrate 206 is provided behind the stainless steel woven mesh 205. The concrete back substrate 206, stainless steel woven mesh 205, and polymer board 204 are arranged sequentially from right rear to front. The polymer board 204 is an integrated structure, and the back surface of the polymer board 204 is tightly connected to the front surface of the concrete back substrate 206. The concrete front substrate 203 and the concrete back substrate 206 are both integrally cast structures, and the concrete front substrate 203 and the concrete back substrate 206 are symmetrically arranged in front of and behind the built-in insulation board 1.
[0022] The specific operation is as follows: When in use, the built-in insulation board 1 has a strong heat preservation effect. The foamed concrete 201 improves the radiation blocking ability while maintaining the porous structure by adjusting the aggregate ratio, thus strengthening the overall shielding ability. The polyurethane insulation board 202 achieves B1 flame retardancy through molecular structure improvement, enhancing the overall flame retardant effect. The concrete front substrate 203 reinforces the front side of the board. The polymer board 204 itself has moisture-proof and water-proof functions, and the surface coating treatment makes it also have anti-mildew and anti-corrosion properties. The stainless steel woven mesh 205 can enhance the hardness of the board body and improve the compressive strength. The concrete rear substrate 206 can reinforce the rear side.
[0023] Please refer to Figures 2 to 3A reinforcement component 3 for reinforcement is provided on the outer side of the concrete front substrate 203 and the concrete rear substrate 206. The reinforcement component 3 includes a fixed base plate 301, a reinforcement frame 302, and a reinforcement support plate 303. The fixed base plate 301 is disposed at the bottom of the concrete front substrate 203 and the concrete rear substrate 206. The reinforcement frame 302 is engaged and connected to the outer sides of both ends of the concrete front substrate 203 and the concrete rear substrate 206. The reinforcement support plate 303 is installed on the lower inner end of the reinforcement frame 302. The reinforcement component 3 also includes a limiting groove 304, a reinforcement limiting plate 305, and a casting connection. The reinforcement frame 302 has a groove 306, a concrete pouring 307, and a ceramic sand coating 308. The inner sides of the front and rear ends of the reinforcement frame 302 are provided with a limiting groove 304. The inner side of the limiting groove 304 is slidably connected to a reinforcement limiting plate 305. The outer surface of the reinforcement limiting plate 305 is provided with a ceramic sand coating 308. The surfaces of the foam concrete 201, polyurethane insulation board 202, concrete front substrate 203, polymer board 204, stainless steel woven mesh 205, and concrete rear substrate 206 are all provided with a pouring connection groove 306. The inner side of the pouring connection groove 306 is provided with a concrete pouring 307.
[0024] The specific operation is as follows: When in use, the fixed base plate 301 is set at the bottom of the whole device, and the two sets of reinforcing frames 302 are clamped at both ends of the concrete rear base plate 206 and the concrete front base plate 203. External reinforcement is carried out by the reinforcing frames 302. The two sets of reinforcing frames 302 are connected and reinforced by the sliding connection between the reinforcing limiting plate 305 and the inner side of the limiting slide groove 304. The pouring concrete 307 is poured into the pouring connection groove 306 to reinforce the internal structure. The ceramic sand coating 308 can prevent the outer surface from being worn.
[0025] In summary, as Figures 1 to 3As shown, in use, the multifunctional integrated concrete insulation panel structure is first fixed with a base plate 301 at the bottom of the entire device, and two sets of reinforcing frames 302 are clamped to the outer ends of the concrete rear base plate 206 and the concrete front base plate 203. External reinforcement is achieved through the reinforcing frames 302. The two sets of reinforcing frames 302 are connected and reinforced through a sliding connection between the reinforcing limiting plate 305 and the inner side of the limiting groove 304. Concrete 307 is then poured into the pouring connection groove 306 to reinforce the internal structure. A ceramic sand coating 308 prevents wear on the outer surface. During the use of this device, the internal... The insulation board 1 has a strong thermal insulation effect. The foamed concrete 201 improves the radiation blocking ability while maintaining the porous structure by adjusting the aggregate ratio, thus strengthening the overall shielding ability. The polyurethane insulation board 202 achieves B1 flame retardancy through molecular structure modification, enhancing the overall flame retardant effect. The concrete front substrate 203 reinforces the front side of the board. The polymer board 204 itself has moisture-proof and water-proof functions, and the surface coating treatment makes it also have anti-mildew and anti-corrosion properties. The stainless steel woven mesh 205 can enhance the internal hardness of the board and improve the compressive strength. The concrete rear substrate 206 can reinforce the rear side.
[0026] The embodiments of this utility model are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the utility model to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described in order to better illustrate the principles and practical applications of this utility model, and to enable those skilled in the art to understand this utility model and design various embodiments with various modifications suitable for a particular purpose.
Claims
1. A multifunctional integrated concrete insulation panel structure, comprising an internal insulation panel (1) and a protective component (2), characterized in that: The built-in insulation board (1) is an integrated structure. The protective component (2) is disposed on the surface of the built-in insulation board (1). The protective component (2) includes foamed concrete (201), polyurethane insulation board (202), concrete front substrate (203), polymer board (204), stainless steel woven mesh (205) and concrete rear substrate (206). The foamed concrete (201) is disposed on the front side of the built-in insulation board (1). The polyurethane insulation board (202) is installed on the front side of the foamed concrete (201). The rear surface of the polyurethane insulation board (202) is tightly connected to the front surface of the foamed concrete (201). The concrete front substrate (203) is disposed on the front side of the polyurethane insulation board (202). The polymer board (204) is installed on the rear surface of the built-in insulation board (1). The stainless steel woven mesh (205) is disposed on the rear side of the polymer board (204).
2. The multifunctional integrated concrete insulation panel structure according to claim 1, characterized in that, A concrete back substrate (206) is provided on the rear side of the stainless steel woven mesh (205), and the concrete back substrate (206), stainless steel woven mesh (205), and polymer plate (204) are arranged in sequence from right rear to front.
3. The multifunctional integrated concrete insulation panel structure according to claim 1, characterized in that, The polymer plate (204) is an integrated structure, and the rear surface of the polymer plate (204) is tightly connected to the front surface of the concrete back substrate (206).
4. The multifunctional integrated concrete insulation panel structure according to claim 1, characterized in that, The concrete front substrate (203) and the concrete rear substrate (206) are both integral casting structures, and the concrete front substrate (203) and the concrete rear substrate (206) are symmetrically arranged in front of and behind the built-in insulation board (1).
5. The multi-functional integrated concrete insulating panel body structure according to claim 1, wherein The front concrete base plate (203) and the rear concrete base plate (206) are provided with reinforcement components (3) for reinforcement, and the reinforcement components (3) include a fixed base plate (301), a reinforcement frame (302) and a reinforcement support plate (303).
6. The multifunctional integrated concrete insulation panel structure according to claim 5, characterized in that, The fixed base plate (301) is disposed at the bottom of the concrete front base plate (203) and the concrete rear base plate (206), and the outer sides of both ends of the concrete front base plate (203) and the concrete rear base plate (206) are engaged with a reinforcing frame (302), and a reinforcing support plate (303) is installed on the inner side of the lower side of the reinforcing frame (302).
7. The multi-functional integrated concrete insulating panel body structure according to claim 5, characterized in that, The reinforcement component (3) also includes a limiting groove (304), a reinforcement limiting plate (305), a pouring connection groove (306), a pouring concrete (307), and a ceramic sand coating (308). The front and rear ends of the reinforcement frame (302) are provided with a limiting groove (304). The inner side of the limiting groove (304) is slidably connected to the reinforcement limiting plate (305), and the outer surface of the reinforcement limiting plate (305) is provided with a ceramic sand coating (308).
8. The multi-functional integrated concrete insulating panel body structure according to claim 1, characterized in that, The foamed concrete (201), polyurethane insulation board (202), concrete front substrate (203), polymer board (204), stainless steel woven mesh (205) and concrete rear substrate (206) are all provided with casting connection grooves (306), and the inner side of the casting connection grooves (306) is provided with casting concrete (307).
Citation Information
Patent Citations
Concrete insulation board
CN216587086U