Thermal insulation coating, preparation method thereof and thermal insulation coating layer
A technology of thermal insulation coating and content, applied in the fields of thermal insulation coating, thermal insulation coating and its preparation, can solve the problems of destroying the overall structure of the furnace lining, crystallization, pulverization, slag removal, and shortening the service life of high temperature resistant furnaces.
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[0039] The present invention also provides a method for preparing the thermal insulation coating described in the above technical solution, comprising the following steps:
[0040] Inorganic fibers, organic fibers, low thermal conductivity fillers, refractory fillers, binders and water are mixed to obtain thermal insulation coatings.
[0041] In the preparation method provided by the present invention, the thermal insulation coating provided by the present invention can be obtained by directly mixing the inorganic fibers, organic fibers, low thermal conductivity fillers, refractory fillers, binders and water in proportion.
[0042] The thermal insulation coating and the preparation method provided by the present invention significantly improve the performance of the coating in a high temperature environment by optimizing the composition of the thermal insulation coating, especially selecting specific inorganic fibers, organic fibers and fillers; the thermal insulation coating ...
Embodiment 1
[0073] The mass composition of thermal insulation coating: aluminum silicate fiber 15%, pulp fiber 1%, hollow glass microsphere 20%, kaolin 7%, silica sol 20%, cellulose 2%, tap water 35%; mix the above raw materials in proportion Evenly, the thermal insulation coating can be obtained.
[0074] The thermal insulation coating prepared in this embodiment is detected, and the results are as follows: the wet bulk density is 1100kg / m 3 ;The bulk density after drying at room temperature is 500kg / m 3 ; Compressive strength 1.25MPa; Heating line shrinkage (1000℃×24h) 1.83%; Thermal conductivity, the hot surface is 0.79W / m.k at 200℃, 0.114W / m.k at 600℃, and 0.132W / m.k at 800℃ m.k, hot surface 1000 ℃ is 0.152W / m.k.
Embodiment 2
[0076] The mass composition of thermal insulation coatings: calcium magnesium silicate fiber 10%, pulp fiber 1.5%, floating beads 15%, Zhangzhou mud 15%, silica sol 25%, cellulose 1.5%, tap water 32%; mix the above raw materials in proportion Evenly, the thermal insulation coating can be obtained.
[0077] The thermal insulation coating prepared in this embodiment is detected, and the results are as follows: wet bulk density 1150kg / m 3 ;The bulk density after drying at room temperature is 550kg / m 3 ; Compressive strength 1.6MPa; heating wire shrinkage (1000℃×24h) 1.7%; thermal conductivity, the hot surface is 0.76W / m.k at 200℃, 0.115W / m.k at 600℃, and 0.135W / m.k at 800℃ m.k, hot surface 1000 ℃ is 0.151W / m.k.
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