Multifunctional ceramic material and preparation process thereof
A ceramic material and multi-functional technology, which is applied in the field of multi-functional ceramic materials and its preparation, can solve the problems of low tensile strength, poor plasticity and toughness, etc., and achieve the effects of reducing damage, good water absorption and shock resistance, and powerful functions
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Embodiment 1
[0032] A multifunctional ceramic material of the present invention, its composition and mass fraction are: 9-15 parts of silicon carbide, 5-10 parts of lutetium oxide, 3-8 parts of aluminum oxide, 5-7 parts of acetate, 4-9 parts of kaolin , 3-10 parts of strontium aluminate, 2-6 parts of water glass, 5-7 parts of graphene, 4-8 parts of kaolin, 6-9 parts of ceramic fiber, 4-8 parts of borax, 6-9 parts of molybdenum dioxide, 3-10 parts of feldspar, 7-9 parts of ferrous sulfate, 3-8 parts of strontium aluminate, 2-6 parts of gypsum, 6-10 parts of boron nitride, 1-5 parts of active catalyst, 1-3 parts of epoxy resin 8-13 parts of aluminum silicate fiber, 11-13 parts of cordierite, 9-14 parts of zirconia, 7-15 parts of alumina, 5-8 parts of clay, and 1-3 parts of flint.
[0033] The α-phase silicon carbide content in the silicon carbide is 99 parts, and the oxygen content is less than 1 part; the microscopic appearance of the silicon carbide is spherical particles, d50=4.5±0.8 μm. ...
Embodiment 2
[0036] A multifunctional ceramic material, its composition and mass fraction are: 10 parts of silicon carbide, 8 parts of lutetium oxide, 6 parts of aluminum oxide, 6 parts of acetate, 6 parts of kaolin, 6 parts of strontium aluminate, 4 parts of water glass, 6 parts of graphene, 5 parts of kaolin, 7 parts of ceramic fiber, 5 parts of borax, 7 parts of molybdenum dioxide, 5 parts of feldspar, 8 parts of ferrous sulfate, 7 parts of strontium aluminate, 5 parts of gypsum, 7 parts of boron nitride , 3 parts of active catalyst, 2 parts of epoxy resin, 10 parts of aluminum silicate fiber, 12 parts of cordierite, 12 parts of zirconia, 10 parts of alumina, 6 parts of clay, and 2 parts of flint.
[0037] The α-phase silicon carbide content in the silicon carbide is 99 parts, and the oxygen content is less than 1 part; the microscopic appearance of the silicon carbide is spherical particles, d50=4.5±0.8 μm.
[0038] The purity of the lutetium oxide is 99.99%, and its microscopic appear...
Embodiment 3
[0040] A multifunctional ceramic material, its composition and mass fraction are: 9 parts of silicon carbide, 5 parts of lutetium oxide, 8 parts of aluminum oxide, 5 parts of acetate, 9 parts of kaolin, 3 parts of strontium aluminate, 2 parts of water glass, 5 parts of graphene, 4 parts of kaolin, 6 parts of ceramic fiber, 4 parts of borax, 6 parts of molybdenum dioxide, 3 parts of feldspar, 7 parts of ferrous sulfate, 3 parts of strontium aluminate, 2 parts of gypsum, 6 parts of boron nitride , 1 part of active catalyst, 1 part of epoxy resin, 8 parts of aluminum silicate fiber, 11 parts of cordierite, 9 parts of zirconia, 7 parts of alumina, 5 parts of clay, and 1 part of flint.
[0041] The α-phase silicon carbide content in the silicon carbide is 99 parts, and the oxygen content is less than 1 part; the microscopic appearance of the silicon carbide is spherical particles, d50=4.5±0.8 μm.
[0042] The purity of the lutetium oxide is 99.99%, and its microscopic appearance is i...
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