High-strength high-temperature-resistant fireproof thermal insulation material

A technology of heat insulation materials and fireproof materials, which is applied in the field of high-strength high-temperature resistant fireproof heat insulation materials and fireproof heat insulation materials. Heat insulation effect, prevent cracking, and increase the effect of thermal contact area

Active Publication Date: 2022-03-29
深圳市元亨高新科技高分子材料开发有限公司
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, since the silicate chemical bond (-Si-O-, 108kj / mole) is decomposed at 1160°C, it is difficult for the fireproof material mainly made of Portland cement to survive the high-temperature combustion of 1100°C for more than 5 hours.
[0004] Considering the traditional Portland cement-based fireproof coating, polymer resin is used to strengthen the bonding force between Portland cement powder and the polymer resin pre-coated on the surface of the steel structure, and there will be crack penetration heat in the high-temperature combustion environment of the fireproof material. And lead to the problem of cracking and peeling of polymer resin, thus losing the function of providing long-term fire protection for steel structures

Method used

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  • High-strength high-temperature-resistant fireproof thermal insulation material
  • High-strength high-temperature-resistant fireproof thermal insulation material
  • High-strength high-temperature-resistant fireproof thermal insulation material

Examples

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Effect test

Embodiment 1

[0046] This embodiment specifically provides a high-strength high-temperature resistant fireproof and heat-insulating material, including liquid aluminum dihydrogen phosphate, ZrO 2 nanotube doped ZrO 2 Granular powder, magnesium silicate, water, mass ratio such as figure 1 Shown are 0.4:1.3 (wherein ZrO 2 Nanotube: ZrO 2 Granular powder = 0.3:1 mass ratio): 3.9:0.4.

Embodiment 2

[0048] This embodiment specifically provides a high-strength high-temperature resistant fireproof and heat-insulating material, including liquid aluminum dihydrogen phosphate, ZrO 2 nanotube doped ZrO 2 The mass ratio of granular powder and magnesium silicate is 0.8:1.3 (of which ZrO 2 Nanotube: ZrO 2 Granular powder = 0.3:1 mass ratio): 3.9.

Embodiment 3

[0050] This embodiment specifically provides a high-strength high-temperature resistant fireproof and heat-insulating material, including liquid aluminum dihydrogen phosphate, ZrO 2 nanotube doped ZrO 2 Granular powder, 1:1 mass ratio of magnesium silicate and calcium silicate, water, the mass ratio is 0.4:1.3 (wherein ZrO 2 Nanotube: ZrO 2 Granular powder = 0.3:1 mass ratio): 3.9:0.4.

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Abstract

The invention provides a high-strength high-temperature-resistant fireproof thermal insulation material which comprises a component A and a component B which are not mixed with each other or a component A and a component B which are not mixed with each other and water, the component A is an inorganic liquid high-temperature-resistant fireproof material, and the component B is an inorganic powdery high-temperature-resistant fireproof material, the inorganic powdery high-temperature-resistant fireproof material of the component B comprises high-temperature-resistant modified silicate powder, and at least one of super-high-temperature-resistant fireproof powder and heat-insulating cooling powder. And a reinforced protection effect at the highest temperature of 2300 DEG C for more than 5 hours is formed, so that a structural material is protected from unacceptable deformation influence caused by high temperature.

Description

technical field [0001] The invention relates to a fire-proof and heat-insulating material, in particular to a high-strength, high-temperature-resistant fire-proof and heat-insulating material, which belongs to the field of fire-proof materials. Background technique [0002] Generally, fire-proof and heat-insulating materials, especially concrete reinforcement materials (such as steel bars) in building components are pursued to burn continuously for more than 5 hours in a high-temperature environment above 1100°C, and it is required that the fireproof material itself will not decompose at 1100°C-1800°C. It makes the building structure composed of concrete reinforcement materials not collapse in the burning environment in the high temperature range of 1100°C-1800°C for more than 5 hours. [0003] As a traditional reinforcing material to protect structures, Portland cement can effectively provide fire protection for steel structures due to the high temperature resistance of sil...

Claims

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Application Information

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IPC IPC(8): C04B35/16C04B35/18C04B35/20C04B35/22C04B35/447C04B35/48C04B35/583C04B35/66E04C1/41B28B1/14B28B19/00
CPCC04B35/66C04B35/16C04B35/20C04B35/22C04B35/48C04B35/583C04B35/447C04B35/18E04C1/41B28B19/0015B28B1/14C04B2235/3427C04B2235/447C04B2235/5284C04B2235/5236C04B2235/524C04B2235/5454C04B2235/9607Y02B80/10
Inventor 林胜荣黄培润汤雪佳
Owner 深圳市元亨高新科技高分子材料开发有限公司
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