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Fireproof flame-retardant polymer light building external wall thermal insulation composite board and preparation process thereof
The invention discloses a fireproof flame-retardant polymer light building external wall insulation composite board, and particularly relates to the technical field of building external wall insulation boards. Raw materials used in the method comprise, by weight, 10-15 parts of an inorganic material, 20-40 parts of ordinary Portland cement, 1-10 parts of a heat absorbent, 2-10 parts of a waste material, 10-20 parts of silicon-based nanometer powder, 20-30 parts of graphene foaming granules, 1-5 parts of an interface treating agent, 1-5 parts of an additive and 20-40 parts of water. An organic and inorganic composite modification method is adopted, the advantages of inorganic fire prevention and organic heat preservation are integrated, and on the premise that the fireproof performance, heat preservation performance and processing performance of the board are met, the board has the advantages of being low in density, low in water absorption rate, low in heat conductivity coefficient, high in tensile strength and capable of achieving A-level fire prevention and non-combustible; and meanwhile, the plate is a green A-grade fireproof thermal insulation plate with high production efficiency and low price, and meets the requirements of high performance and environmental protection in the building industry.
本发明公开了防火阻燃高分子轻质建筑外墙保温复合板,具体涉及建筑外墙保温板技术领域,所使用原料(按重量份数计)包括无机材料10‑15份、普通硅酸盐水泥20‑40份、吸热剂1‑10份、废旧材料2‑10份、硅基纳米粉料10‑20份、石墨烯发泡颗粒剂20‑30份、界面处理剂1‑5份、添加剂1‑5份、水20‑40份。本发明采用有机、无机复合改性方法,综合无机防火、有机保温的各自优势,在满足板材防火性能、保温性能和加工性能的前提下,具有低密度、低吸水率、低导热系数、高拉伸强度、A级防火不燃的优势,同时是生产效率高、价格实惠的绿色A级防火保温板材,满足建筑行业的高性能、环保需求。
Fireproof flame-retardant polymer light building external wall thermal insulation composite board and preparation process thereof
The invention discloses a fireproof flame-retardant polymer light building external wall insulation composite board, and particularly relates to the technical field of building external wall insulation boards. Raw materials used in the method comprise, by weight, 10-15 parts of an inorganic material, 20-40 parts of ordinary Portland cement, 1-10 parts of a heat absorbent, 2-10 parts of a waste material, 10-20 parts of silicon-based nanometer powder, 20-30 parts of graphene foaming granules, 1-5 parts of an interface treating agent, 1-5 parts of an additive and 20-40 parts of water. An organic and inorganic composite modification method is adopted, the advantages of inorganic fire prevention and organic heat preservation are integrated, and on the premise that the fireproof performance, heat preservation performance and processing performance of the board are met, the board has the advantages of being low in density, low in water absorption rate, low in heat conductivity coefficient, high in tensile strength and capable of achieving A-level fire prevention and non-combustible; and meanwhile, the plate is a green A-grade fireproof thermal insulation plate with high production efficiency and low price, and meets the requirements of high performance and environmental protection in the building industry.
本发明公开了防火阻燃高分子轻质建筑外墙保温复合板,具体涉及建筑外墙保温板技术领域,所使用原料(按重量份数计)包括无机材料10‑15份、普通硅酸盐水泥20‑40份、吸热剂1‑10份、废旧材料2‑10份、硅基纳米粉料10‑20份、石墨烯发泡颗粒剂20‑30份、界面处理剂1‑5份、添加剂1‑5份、水20‑40份。本发明采用有机、无机复合改性方法,综合无机防火、有机保温的各自优势,在满足板材防火性能、保温性能和加工性能的前提下,具有低密度、低吸水率、低导热系数、高拉伸强度、A级防火不燃的优势,同时是生产效率高、价格实惠的绿色A级防火保温板材,满足建筑行业的高性能、环保需求。
Fireproof flame-retardant polymer light building external wall thermal insulation composite board and preparation process thereof
防火阻燃高分子轻质建筑外墙保温复合板及其制备工艺
HOU YAHE (author) / WANG YONG (author) / REN JIANSHUANG (author)
2022-03-11
Patent
Electronic Resource
Chinese
IPC:
C04B
Kalk
,
LIME
/
B28B
Formgeben von Ton oder anderen keramischen Stoffzusammensetzungen, Schlacke oder von Mischungen, die zementartiges Material enthalten, z.B. Putzmörtel
,
SHAPING CLAY OR OTHER CERAMIC COMPOSITIONS, SLAG OR MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
/
E04B
Allgemeine Baukonstruktionen
,
GENERAL BUILDING CONSTRUCTIONS
/
E04C
STRUCTURAL ELEMENTS
,
Bauelemente
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