A platform for research: civil engineering, architecture and urbanism
Energy-saving corrosion-resistant ceramic recognition coating and preparation method thereof
The invention discloses an energy-saving corrosion-resistant ceramic recognition coating and a preparation method thereof. The energy-saving corrosion-resistant ceramic recognition coating comprises the following components: an adhesive and ceramic aggregate, the ceramic aggregate comprises aluminum oxide, zirconium silicate and zirconium oxide, and the aluminum oxide comprises micron-scale aluminum oxide and nano-scale aluminum oxide; a curing agent is composed of zinc oxide and lime; a defoaming agent, 3-aminopropyltriethoxysilane, graphene, N, N-dimethylformamide and an antibacterial agent. A nano antibacterial material is added to the outermost surface of the ceramic, so that the ceramic has a good antibacterial effect, nano calcium carbonate is introduced into an antibacterial layer to serve as a porous carrier of a nano antibacterial agent, the adhesive force of the nano antibacterial agent can be remarkably improved, and the antibacterial performance is more durable and efficient; through the reaction of the hybridized nano aluminum oxide and the adhesive, the bonding strength of the graphene oxide and the coating matrix is improved, cracks of the graphene oxide and the coating matrix are reduced, and the corrosion resistance of the coating is effectively improved.
本发明公开了一种节能耐腐蚀陶瓷识别涂层及其制备方法,包含以下组分:黏结剂、陶瓷骨料;所述陶瓷骨料包括氧化铝、硅酸锆和氧化锆,所述氧化铝包括微米级氧化铝和纳米级氧化铝;固化剂,所述固化剂由氧化锌和石灰组成;消泡剂、3‑氨丙基三乙氧基硅烷、石墨烯、N,N‑二甲基甲酰胺、抗菌剂;将纳米抗菌材料添加到陶瓷最表面,使其具有良好抗菌效果,在抗菌层引入纳米碳酸钙作为纳米抗菌剂多孔状载体,可显著提高纳米抗菌剂的附着力,使得抗菌性能更加持久且高效;通过杂化的纳米氧化铝和黏结剂反应,从而提高氧化石墨烯和涂层基质的结合强度,减少了氧化石墨烯和涂层基质的裂缝,从而有效地提高了涂层耐腐蚀性。
Energy-saving corrosion-resistant ceramic recognition coating and preparation method thereof
The invention discloses an energy-saving corrosion-resistant ceramic recognition coating and a preparation method thereof. The energy-saving corrosion-resistant ceramic recognition coating comprises the following components: an adhesive and ceramic aggregate, the ceramic aggregate comprises aluminum oxide, zirconium silicate and zirconium oxide, and the aluminum oxide comprises micron-scale aluminum oxide and nano-scale aluminum oxide; a curing agent is composed of zinc oxide and lime; a defoaming agent, 3-aminopropyltriethoxysilane, graphene, N, N-dimethylformamide and an antibacterial agent. A nano antibacterial material is added to the outermost surface of the ceramic, so that the ceramic has a good antibacterial effect, nano calcium carbonate is introduced into an antibacterial layer to serve as a porous carrier of a nano antibacterial agent, the adhesive force of the nano antibacterial agent can be remarkably improved, and the antibacterial performance is more durable and efficient; through the reaction of the hybridized nano aluminum oxide and the adhesive, the bonding strength of the graphene oxide and the coating matrix is improved, cracks of the graphene oxide and the coating matrix are reduced, and the corrosion resistance of the coating is effectively improved.
本发明公开了一种节能耐腐蚀陶瓷识别涂层及其制备方法,包含以下组分:黏结剂、陶瓷骨料;所述陶瓷骨料包括氧化铝、硅酸锆和氧化锆,所述氧化铝包括微米级氧化铝和纳米级氧化铝;固化剂,所述固化剂由氧化锌和石灰组成;消泡剂、3‑氨丙基三乙氧基硅烷、石墨烯、N,N‑二甲基甲酰胺、抗菌剂;将纳米抗菌材料添加到陶瓷最表面,使其具有良好抗菌效果,在抗菌层引入纳米碳酸钙作为纳米抗菌剂多孔状载体,可显著提高纳米抗菌剂的附着力,使得抗菌性能更加持久且高效;通过杂化的纳米氧化铝和黏结剂反应,从而提高氧化石墨烯和涂层基质的结合强度,减少了氧化石墨烯和涂层基质的裂缝,从而有效地提高了涂层耐腐蚀性。
Energy-saving corrosion-resistant ceramic recognition coating and preparation method thereof
一种节能耐腐蚀陶瓷识别涂层及其制备方法
CAO LONGZE (author) / SUN LIHUI (author) / ZHAO LIYUN (author)
2021-05-11
Patent
Electronic Resource
Chinese
IPC:
C04B
Kalk
,
LIME
Wear-resistant and corrosion-resistant carbide ceramic coating and preparation method thereof
European Patent Office | 2021
|European Patent Office | 2023
|High-radiation wear-resistant energy-saving coating and preparation method thereof
European Patent Office | 2015
|European Patent Office | 2021
|Corrosion resistant ceramic and preparation method thereof
European Patent Office | 2015
|