Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
Steamed non-fired foamed ceramic insulation board for building
The invention discloses a steamed non-fired foamed ceramic insulation board for a building. The steamed non-fired foamed ceramic insulation board comprises a non-fired foamed ceramic insulation boardmatrix formed by adopting a foaming process. The non-fired foamed ceramic insulation board matrix comprises the following raw materials in parts by weight: 10-25 parts of ceramic powder, 35 to 55 parts of cement, 2-5 parts of a nanoscale inorganic porous material, 4-8 parts of polypropylene chopped fibers, 5 to 10 parts of water-soluble polyester resin and 5 to 10 parts of water-soluble acrylic resin, with the balance being water. According to the invention, the cement can undergo a polymerization reaction with the ceramic powder, and the water-soluble polyester resin and the water-soluble acrylic resin undergo a cross-linking reaction in the foaming process of polymerization of the ceramic powder and the cement, so the compactness and the mechanical strength of the non-fired foamed ceramic insulation board substrate are improved; on the premise of having excellent heat preservation and fireproof performance, the board is low in manufacturing cost and light in weight; and meanwhile, high-temperature sintering is not needed in the preparation process of the board, so energy consumption is greatly reduced, and the board conforms to the technical development direction of energy conservation and low-carbon management of building materials.
本发明公开了一种蒸气免烧建筑用发泡陶瓷保温板,包括采用发泡工艺成型得到的免烧发泡陶瓷保温板基体,免烧发泡陶瓷保温板基体包括如下重量份数原料:陶瓷粉10‑25份;水泥35‑55份;纳米级无机多孔材料2‑5份;聚丙烯短切纤维4‑8份;水溶性聚酯树脂5‑10份;水溶性丙烯酸树脂5‑10份;水余量;水泥可与陶瓷粉发生聚合反应,水溶性聚酯树脂和水溶性丙烯酸树脂在陶瓷粉与水泥进行聚合的发泡过程中发生交联反应,提高免烧发泡陶瓷保温板基体的致密性和机械强度;本发明在具有优异保温、防火性能的前提下,制造成本低,重量轻,同时其制备过程不需要进行高温烧结,极大地节约了能源消耗,符合建筑建材节能、低碳管理的技术发展方向。
Steamed non-fired foamed ceramic insulation board for building
The invention discloses a steamed non-fired foamed ceramic insulation board for a building. The steamed non-fired foamed ceramic insulation board comprises a non-fired foamed ceramic insulation boardmatrix formed by adopting a foaming process. The non-fired foamed ceramic insulation board matrix comprises the following raw materials in parts by weight: 10-25 parts of ceramic powder, 35 to 55 parts of cement, 2-5 parts of a nanoscale inorganic porous material, 4-8 parts of polypropylene chopped fibers, 5 to 10 parts of water-soluble polyester resin and 5 to 10 parts of water-soluble acrylic resin, with the balance being water. According to the invention, the cement can undergo a polymerization reaction with the ceramic powder, and the water-soluble polyester resin and the water-soluble acrylic resin undergo a cross-linking reaction in the foaming process of polymerization of the ceramic powder and the cement, so the compactness and the mechanical strength of the non-fired foamed ceramic insulation board substrate are improved; on the premise of having excellent heat preservation and fireproof performance, the board is low in manufacturing cost and light in weight; and meanwhile, high-temperature sintering is not needed in the preparation process of the board, so energy consumption is greatly reduced, and the board conforms to the technical development direction of energy conservation and low-carbon management of building materials.
本发明公开了一种蒸气免烧建筑用发泡陶瓷保温板,包括采用发泡工艺成型得到的免烧发泡陶瓷保温板基体,免烧发泡陶瓷保温板基体包括如下重量份数原料:陶瓷粉10‑25份;水泥35‑55份;纳米级无机多孔材料2‑5份;聚丙烯短切纤维4‑8份;水溶性聚酯树脂5‑10份;水溶性丙烯酸树脂5‑10份;水余量;水泥可与陶瓷粉发生聚合反应,水溶性聚酯树脂和水溶性丙烯酸树脂在陶瓷粉与水泥进行聚合的发泡过程中发生交联反应,提高免烧发泡陶瓷保温板基体的致密性和机械强度;本发明在具有优异保温、防火性能的前提下,制造成本低,重量轻,同时其制备过程不需要进行高温烧结,极大地节约了能源消耗,符合建筑建材节能、低碳管理的技术发展方向。
Steamed non-fired foamed ceramic insulation board for building
一种蒸气免烧建筑用发泡陶瓷保温板
CHEN ZHONGYIN (Autor:in)
01.12.2020
Patent
Elektronische Ressource
Chinesisch
IPC:
C04B
Kalk
,
LIME
Europäisches Patentamt | 2023
|Foamed ceramic insulation board and preparation method thereof
Europäisches Patentamt | 2020
|Foamed ceramic heat insulation board and preparation method thereof
Europäisches Patentamt | 2016
|