Heating material as well as preparation and application thereof
A technology of heating materials and raw materials, applied in the field of heating materials and its preparation, can solve the problems of circuit aging, short circuit leakage, convenient portability, energy saving, environmental protection, heat energy conversion rate, high and low carbon economical new materials, etc.
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Embodiment 1
[0037] A method for preparing a heating material, comprising the steps of:
[0038] The amount of raw materials is as follows: 40g of graphene thermal conductivity powder, 20g of jade powder, 20g of ceramic powder, 45g of magnesium oxide powder, 35g of nano-titanium dioxide powder, 50g of aluminum nitride powder, 40g of alumina powder, silicon dioxide 35g of powder, 10g of hydroxypropyl methylcellulose, 35g of sulfuric acid (without any treatment after purchase), 15g of high-temperature ceramic glue.
[0039] (1) Dispersing, filtering and mixing the raw materials to obtain a heat-generating material slurry, and then heating at 250° C. for 1 hour to obtain primary raw materials;
[0040] (2) After centrifuging and vacuum mixing the obtained primary raw materials, they are dried and shaped to obtain secondary raw materials; the temperature of vacuum mixing is 170° C., and the time of vacuum mixing is 60 minutes;
[0041] (3) Dissolve palladium in dilute sulfuric acid (55% by ma...
Embodiment 2
[0047] A method for preparing a heating material, the difference between the preparation method and Example 1 is: the amount of the raw materials is replaced as follows: 45g of graphene heat conducting powder, 15g of jade powder, 25g of ceramic powder, magnesium oxide powder 50g, 40g of nano titanium dioxide powder, 50g of aluminum nitride powder, 50g of alumina powder, 40g of silica powder, 10g of hydroxypropyl methyl fiber, 40g of sulfuric acid (without any treatment after purchase), high temperature ceramic glue 20g.
[0048] Under normal temperature conditions, the heating temperature of the test heating material reaches 520°C, and the heating temperature loss is about 4% in a cold environment of minus 30°C.
Embodiment 3
[0050]A preparation method of a heating material, the difference between the preparation method and Example 1 is: the amount of the raw materials is replaced as follows: 40g of graphene heat conducting powder, 20g of jade powder, 20g of ceramic powder, magnesium oxide powder 45g, 30g of nano-titanium dioxide powder, 45g of aluminum nitride powder, 45g of alumina powder, 30g of silica powder, 10g of hydroxypropyl methylcellulose, 30g of sulfuric acid (without any treatment after purchase), high-temperature ceramic glue 15g.
[0051] Under normal temperature conditions, the heating temperature of the test heating material reaches 520°C, and the heating temperature loss is about 4% in a cold environment of minus 30°C.
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