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Reflective insulation flexible imitation stone and preparation method thereof

A stone imitation, flexible technology, applied in the direction of architecture, building structure, covering/lining, etc., can solve the problems of non-environmental protection, high price, poor decoration, etc., to increase flexibility, enhance flexibility, and block heat transfer Effect

Inactive Publication Date: 2016-10-26
山西亮龙涂料有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] Existing infrared heat-reflective coatings mainly reflect the mid-infrared and near-infrared rays of sunlight, also known as passive cooling coatings. Resources, improve safety, but this type of reflective coating has the disadvantages of not being environmentally friendly, single color, poor decoration and expensive
[0005] In order to solve the above-mentioned defects existing in the prior art, a flexible imitation stone material with good sunlight reflection effect, low thermal conductivity and high simulation degree is provided.

Method used

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  • Reflective insulation flexible imitation stone and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0038] Such as figure 1 The multifunctional flexible imitation stone material shown includes a main material layer 1 at the bottom, a decorative layer 2 in the middle, and a glazed layer 3 on the surface, wherein an interface agent is sprayed between the decorative layer 2 and the main material layer 1, and the glazed surface Layer 3 is coated on the decorative layer 2, the main material layer 1 includes a substrate, the bottom of the substrate is provided with a fiber layer 5, and a mesh cloth 4 is provided in the middle; the decorative layer 2 is a quartz sand layer mixed with infrared reflective pigments at high temperature ; The glaze layer 3 is composed of silicone resin, additives, functional fillers and pigments.

[0039] The thickness of the main material layer 1 is 10mm, wherein the thickness of the fiber layer 5 at the bottom is 0.5mm, and the mesh cloth 4 in the middle is 1.0mm, wherein the fiber layer is polypropylene fiber (also can be polyester, nylon, viscose fi...

Embodiment 2

[0045] Such as figure 1The multifunctional flexible imitation stone material shown includes a main material layer 1 at the bottom, a decorative layer 2 in the middle, and a glazed layer 3 on the surface, wherein an interface agent is sprayed between the decorative layer 2 and the main material layer 1, and the glazed surface Layer 3 is coated on the decorative layer 2, the main material layer 1 includes a substrate, the bottom of the substrate is provided with a fiber layer 5, and a mesh cloth 4 is provided in the middle; the decorative layer 2 is a quartz sand layer mixed with infrared reflective pigments at high temperature ; The glaze layer 3 is composed of fluorine-modified resin, additives, functional fillers and pigments.

[0046] The thickness of the main material layer 1 is 10mm, wherein the thickness of the fiber layer 5 at the bottom is 0.5mm, and the mesh cloth 4 in the middle is 1.0mm, wherein the fiber layer is polyethylene (also can be polyester, nylon, viscose f...

Embodiment 3

[0052] Such as figure 1 The multifunctional flexible imitation stone material shown includes a main material layer 1 at the bottom, a decorative layer 2 in the middle, and a glazed layer 3 on the surface, wherein an interface agent is sprayed between the decorative layer 2 and the main material layer 1, and the glazed surface Layer 3 is coated on the decorative layer 2, the main material layer 1 includes a substrate, the bottom of the substrate is provided with a fiber layer 5, and a mesh cloth 4 is provided in the middle; the decorative layer 2 is a quartz sand layer mixed with infrared reflective pigments at high temperature ; The glaze layer 3 is composed of fluorine-modified resin, additives, functional fillers and pigments.

[0053] The thickness of the main material layer 1 is 10mm, wherein the thickness of the fiber layer 5 at the bottom is 0.5mm, and the mesh cloth 4 in the middle is 1.0mm, wherein the fiber layer is viscose fiber (also can be polyester, nylon, acrylic...

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Abstract

The invention discloses reflective insulation flexible imitation stone and a preparation method thereof, belongs to the technical field of building materials and relates to imitation stone. The reflective insulation flexible imitation stone comprises a bottom main material layer, a middle decoration layer and a surface glaze layer. An adhesion agent layer is sprayed between the decoration layer and the main material layer, and the decoration layer is coated with the glaze layer. The main material layer comprises a base body, a fiber layer is arranged on the bottom of the base body, and gridding cloth is arranged in the middle of the base body. The decoration layer is a quartz sand layer subjected to mixing with an infrared reflection pigment at a high temperature. The glaze layer is formed by mixing resin, an assistant, functional padding and a pigment. The reflective insulation flexible imitation stone has a very high reflective insulation function, high in flexibility and crack resistance, high in hardness and cleanliness and easy to cut and install.

Description

technical field [0001] The invention belongs to the technical field of building materials, and relates to imitation stone, in particular to a flexible imitation stone with reflection and heat insulation function and a preparation method thereof. Background technique [0002] As a decorative material, natural stone has the characteristics of natural color and texture, and is more and more popular among people. It is widely used in the decoration of building facades and residential lobbies. However, natural stone not only has the disadvantages of being heavy and difficult to cut and install; it is also radioactive when used as an interior decoration material, and has low sunlight reflection efficiency and high surface temperature when used as an outdoor decoration material. [0003] Under the irradiation of sunlight, heat continuously accumulates on the surface of the irradiated object, which will cause the surface temperature to rise continuously. Once the temperature is too ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E04F13/075C04B28/00
CPCE04F13/0875C04B28/00E04F13/0873C04B18/08C04B18/16C04B14/22C04B14/20C04B24/383C04B16/0633C04B24/40C04B2103/304C04B24/02C04B2103/50
Inventor 闫光红高锋强李世清
Owner 山西亮龙涂料有限公司
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