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High strength building material
The invention discloses a high strength building material which is mainly used in occasions such as dams, hydropower station buildings and the like and is prepared from concrete, coal ash, perlite powder, silicon carbide ceramic powder, glass sands, spider silk fiber and epoxy resin in a certain proportion. The building material is prepared from the following materials in percentage by weight: 30% of concrete, 10% of coal ash, 10% of perlite powder, 5% of silicon carbide ceramic powder, 10% of glass sands, 10% of spider silk fiber and 25% of epoxy resin. By adding high strength and high toughness materials such as the perlite powder, the silicon carbide ceramic powder and the spider silk fiber and combining a conventional material, the materials can be combined together to achieve various performances such as high strength, high toughness and high corrosion resistance. The material is very suitable for being used on buildings with special demands.
High strength building material
The invention discloses a high strength building material which is mainly used in occasions such as dams, hydropower station buildings and the like and is prepared from concrete, coal ash, perlite powder, silicon carbide ceramic powder, glass sands, spider silk fiber and epoxy resin in a certain proportion. The building material is prepared from the following materials in percentage by weight: 30% of concrete, 10% of coal ash, 10% of perlite powder, 5% of silicon carbide ceramic powder, 10% of glass sands, 10% of spider silk fiber and 25% of epoxy resin. By adding high strength and high toughness materials such as the perlite powder, the silicon carbide ceramic powder and the spider silk fiber and combining a conventional material, the materials can be combined together to achieve various performances such as high strength, high toughness and high corrosion resistance. The material is very suitable for being used on buildings with special demands.
High strength building material
LI WENXIA (author) / ZHU ZHONGYE (author) / WANG YONGGUI (author) / ZHU KAI (author) / XIE XIAOJIE (author)
2015-09-02
Patent
Electronic Resource
English
IPC:
C04B
Kalk
,
LIME
European Patent Office | 2021
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