Metal ceramic material
A cermet and nano-titanium dioxide technology, applied in the field of cermet materials, can solve the problems of general performance, high temperature resistance, corrosion resistance, mechanical strength not meeting requirements, etc., and achieve good anti-penetration performance, good comprehensive mechanical performance, good The effect of strength and hardness
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Embodiment 1
[0014] A cermet material is disclosed in Example 1, comprising: 45 parts by mass of kaolin, 10 parts of barium titanate, 15 parts of nano-titanium dioxide, 5 parts of nano-molybdenum carbide, 1 part of titanium nitride, 2 parts of aluminum oxide 6 parts of lithium, 2 parts of magnesium oxide, 2 parts of calcium hydrogen phosphate, 5 parts of glass fiber, and 1 part of sodium borohydride.
Embodiment 2
[0016] A cermet material is disclosed in Example 2, which includes: 55 parts of kaolin, 12 parts of barium titanate, 18 parts of nano-titanium dioxide, 7 parts of nano-molybdenum carbide, 3 parts of titanium nitride, 5 parts of aluminum oxide in terms of parts by mass. 6.5 parts of lithium, 5 parts of magnesium oxide, 3 parts of calcium hydrogen phosphate, 8 parts of glass fiber, and 2.5 parts of sodium borohydride.
Embodiment 3
[0018] A cermet material is disclosed in Example 3, comprising: 60 parts of kaolin, 15 parts of barium titanate, 20 parts of nano-titanium dioxide, 9 parts of nano-molybdenum carbide, 5 parts of titanium nitride, 8 parts of aluminum oxide in terms of parts by mass. 7 parts of lithium, 8 parts of magnesium oxide, 5 parts of calcium hydrogen phosphate, 10 parts of glass fiber, and 4 parts of sodium borohydride.
[0019] In the above embodiments 1-3, the particle size of the nano-titanium dioxide is 1-100 nm. The particle size of the nanometer molybdenum carbide is 50-100nm.
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Abstract
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