Oriented heat-absorbing film material and method for applying the same
A technology of heat-absorbing film and crystal, applied in the direction of climate sustainability, coating, surface pretreatment, etc., can solve the problems of high scouring strength and wear of heat-absorbing body, so as to increase heat absorption, reduce adsorption force, and reduce flying. The effect of the amount of ash spillage
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Embodiment 1
[0032] A directional heat-absorbing film material is specifically made by the following method:
[0033] Step S1, the weight percentage is: 20% crystalline manganese oxide, 25% tantalum carbide, 10% hafnium carbide, 20% fluorophlogite, 25% crystalline iron oxide, and grind to 100-250 mesh;
[0034] Step S2, heat the powder after step S1 in a resistance furnace at 950-1200°C for 6-8 hours to obtain a solid material of directional heat-absorbing and energy-saving membrane material, and then add 25% of the total weight of the solid material to pure water, 15% SL8306 inorganic high temperature resistant liquid glue, then stir in a mixer for 7-10 hours until it is evenly mixed.
Embodiment 2
[0036]A directional heat-absorbing film material, which is made by the following method:
[0037] Step S1, the weight percentage is: 30% crystalline manganese oxide, 20% tantalum carbide, 10% hafnium carbide, 15% fluorophlogite, 25% crystalline iron oxide, and grind to 100-250 mesh;
[0038] Step S2, heat the powder after step S1 in a resistance furnace at 950-1200°C for 6-8 hours to obtain a solid material of directional heat-absorbing and energy-saving membrane material, and then add 20% of the total weight of the solid material to pure water, 20% SL8306 Inorganic High Temperature Resistant Liquid Adhesive, then stir in a blender for 7-10 hours until it is evenly mixed.
Embodiment 3
[0040] A directional heat-absorbing film material, which is made by the following method:
[0041] Step S1. Grinding to 100-250 mesh by weight percentage: 45% crystalline manganese oxide, 8% tantalum carbide, 7% hafnium carbide, 10% fluorophlogite, and 30% crystalline iron oxide;
[0042] Step S2, heat the powder after step S1 in a resistance furnace at 950-1200°C for 6-8 hours to obtain a solid material of directional heat-absorbing and energy-saving membrane material, and then add 25% of the total weight of the solid material to pure water, 18% SL8306 Inorganic High Temperature Resistant Liquid Adhesive, then stir in a blender for 7-10 hours until it is evenly mixed.
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