Outer wall outer heat-preservation system with gel glass bead heat-preservation plate

A technology for external thermal insulation and thermal insulation boards for external walls, applied in the field of building wall systems, can solve the problem that the thermal insulation layer is no longer applicable, and achieve the effects of smooth surface, high flame retardant grade and light weight

Inactive Publication Date: 2018-10-02
谢思松
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] However, with the development of the building materials industry, higher requirements are put forward for the weather resistance, wind load resistance, impact resistance, freeze-thaw resistance and water resistance of the insulation layer in the external wall insulation system. The formula of the above insulation layer no longer applicable

Method used

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  • Outer wall outer heat-preservation system with gel glass bead heat-preservation plate
  • Outer wall outer heat-preservation system with gel glass bead heat-preservation plate
  • Outer wall outer heat-preservation system with gel glass bead heat-preservation plate

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Effect test

preparation example Construction

[0032] The preparation process of acrylic acid emulsion film former is as follows:

[0033] (1) Pre-emulsification: Add 100 parts of water, 3 parts of emulsifier, and 5 parts of acrylamide into the reaction bottle, add 5 parts of styrene, 10 parts of butyl acrylate, and 10 parts of acrylic acid under stirring conditions to prepare non-layered white pre-emulsion;

[0034] (2) Polymerization: Add 100 parts of water, 1 part of initiator, 10 parts of pre-emulsion and 5 parts of ammonium persulfate aqueous solution into the reaction bottle, heat up to 65°C, keep warm for 1 hour, and neutralize with ammonia water to pH=7.5~8 in between.

Embodiment 1

[0036] A preparation method of a gel glass bead insulation board, comprising the steps of:

[0037] (1) Preparation of active silica gel binder: Weigh 80 parts of diatomite slurry, 30 parts of cement clinker powder, 10 parts of calcium formate, 5 parts of polyborosiloxane and 1 part of KH-550 for high-speed mixing , wait for it to mix evenly, set aside;

[0038] (2) Preparation of modified powder curing agent: a, 20 parts of powder curing agent, 50 parts of high-strength Portland cement, 1 part of active silica gel binder, 2 parts of nano-airgel, and 0.2 parts of polypropylene fiber Parts are uniformly mixed; b, the mixture in a is blended with 20 parts of anti-seepage water bonding material to form a modified powder curing agent;

[0039] (3) Material preparation: 100 parts of expanded perlite, 10 parts of inorganic silicon gel, 5 parts of cement-based binder, 20 parts of modified powder curing agent, 15 parts of nano-airgel and 5 parts of anti-seepage bonding material ;

...

Embodiment 2

[0042] A preparation method of a gel glass bead insulation board, comprising the steps of:

[0043] (1) Preparation of active silica gel binder: Weigh 85 parts of diatomite slurry, 30 parts of cement clinker powder, 12 parts of calcium formate, 5 parts of polyborosiloxane and 1 part of KH-550 for high-speed mixing , wait for it to mix evenly, set aside;

[0044] (2) Preparation of modified powder curing agent: a, 20 parts of powder curing agent, 50 parts of high-strength Portland cement, 1.2 parts of active silica gel binder, 2.2 parts of nano-airgel, and 0.3 parts of polypropylene fiber Parts are uniformly mixed; b, the mixture in a is blended with 20 parts of anti-seepage water bonding material to form a modified powder curing agent;

[0045] (3) Material preparation: 105 parts of expanded perlite, 12 parts of inorganic silica gel, 5 parts of cement-based binder, 22 parts of modified powder curing agent, 15 parts of nano-airgel and 6 parts of anti-seepage bonding material ...

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Abstract

The invention discloses an outer wall outer heat-preservation system with a gel glass bead heat-preservation plate. The outer wall outer heat-preservation system is applied to the field of building wall bodies and is a renewal product of an existing outer wall heat-preservation system. According to the key points of the technical scheme, the outer wall outer heat-preservation system comprises a bonding layer, a heat-preservation layer, a plastering layer and a facing layer which are sequentially arranged on a base layer wall body; the bonding layer is formed by coating of bonding mortar; the gel glass bead heat-preservation plate serves as the heat-preservation layer; the plastering layer is formed by coating of plastering mortar and internally provided with an alkali-resistant glass fibergrid cloth; and the facing layer is formed by laying flexible facing bricks. The outer wall outer heat-preservation system prepared from all the layers has the advantages of excellent appearance quality, high wind-load resistance, high impact resistance, high freeze-thaw resistance, heat preservation, heat insulation, fire prevention and waterproofness.

Description

technical field [0001] The invention relates to a building wall system, in particular to an external thermal insulation system for an external wall of a gel glass bead thermal insulation board. Background technique [0002] In recent years, energy saving and environmental protection have become a common topic all over the world. With the implementation of my country's new building energy-saving standards, the building has developed from a low-level solution for people's living to a high-level green ecological building. In the heat consumption of buildings, the heat consumption of exterior walls accounts for about 30%. Therefore, how to reduce the K value of exterior walls is one of the main ways to reduce energy consumption of buildings. Therefore, exterior wall insulation technology has emerged as the times require. [0003] Among the many thermal insulation technologies, the one that can significantly reduce the K value is the external thermal insulation technology of ext...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E04B1/76E04F13/075C04B28/04
CPCC04B28/04E04B1/76E04B1/762E04F13/0875E04F2290/04C04B14/185C04B14/06C04B14/302C04B2103/65C04B2103/0068C04B16/0633C04B14/08C04B24/04C04B24/42Y02A30/244
Inventor 谢思松邵明松张克强
Owner 谢思松
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