A platform for research: civil engineering, architecture and urbanism
HIGH-TEMPERATURE-RESISTANT NANO COMPOSITE COATING AND PREPARATION METHOD THEREFOR
The present disclosure provides a high-temperature nano-composite coating and a preparation method thereof, and a small bag flexible packaging coating. The high-temperature nano-composite coating provided by the present disclosure controls the fiber length. Moreover, high-temperature reinforcing filler and high-temperature expansion filler are introduced, to make the coating have ultra-high strength at high temperature without cracks caused by shrinkage at high-temperature. In addition, nanopowder, high-temperature skeleton filler and other additives are introduced to make the coating be uniform and stable and reach a slurry state similar to toothpaste. There is no precipitation and stratification during the placement process. Small packaging can be realized to facilitate construction and operation. Besides, the coating has a good bonding to furnace lining, and will not fall off from the furnace lining, thereby prolonging the service life of the furnace lining.
HIGH-TEMPERATURE-RESISTANT NANO COMPOSITE COATING AND PREPARATION METHOD THEREFOR
The present disclosure provides a high-temperature nano-composite coating and a preparation method thereof, and a small bag flexible packaging coating. The high-temperature nano-composite coating provided by the present disclosure controls the fiber length. Moreover, high-temperature reinforcing filler and high-temperature expansion filler are introduced, to make the coating have ultra-high strength at high temperature without cracks caused by shrinkage at high-temperature. In addition, nanopowder, high-temperature skeleton filler and other additives are introduced to make the coating be uniform and stable and reach a slurry state similar to toothpaste. There is no precipitation and stratification during the placement process. Small packaging can be realized to facilitate construction and operation. Besides, the coating has a good bonding to furnace lining, and will not fall off from the furnace lining, thereby prolonging the service life of the furnace lining.
HIGH-TEMPERATURE-RESISTANT NANO COMPOSITE COATING AND PREPARATION METHOD THEREFOR
HOCHTEMPERATURBESTÄNDIGE NANO-KOMPOSIT-BESCHICHTUNG UND HERSTELLUNGSVERFAHREN DAFÜR
REVÊTEMENT NANOCOMPOSITE RÉSISTANT AUX TEMPÉRATURES ÉLEVÉES ET PROCÉDÉ DE PRÉPARATION S'Y RAPPORTANT
LU CHENGHONG (author) / XU MEIHUA (author) / ZHENG WEIJIN (author) / YUE YAOHUI (author) / REN DELI (author) / LU MING (author)
2024-04-17
Patent
Electronic Resource
English
IPC:
C04B
Kalk
,
LIME
/
C08K
Verwendung von anorganischen oder nichtmakromolekularen organischen Stoffen als Zusatzstoffe
,
USE OF INORGANIC OR NON-MACROMOLECULAR ORGANIC SUBSTANCES AS COMPOUNDING INGREDIENTS
/
C09D
Überzugsmittel, z.B. Anstrichstoffe, Firnisse oder Lacke
,
COATING COMPOSITIONS, e.g. PAINTS, VARNISHES OR LACQUERS
European Patent Office | 2020
|High-temperature-resistant anti-ablation composite coating and preparation method thereof
European Patent Office | 2022
|High-temperature-resistant antioxidant composite coating and preparation process thereof
European Patent Office | 2021
|European Patent Office | 2015
|Preparation method of high-temperature-resistant coating for ceramic-based composite material
European Patent Office | 2020
|