Zirconium oxide composite ceramic and preparation method thereof
A technology of composite ceramics and zirconia, which is applied in the fields of high hardness zirconia composite ceramics and its preparation, zirconia composite ceramics and its preparation, and high strength and toughness. It can solve the problems of high toughness and high strength that are difficult to match and reduce microscopic defects. , Excellent strength and toughness
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Embodiment 1
[0054] According to mass ratio, nano TiO 2 Powder: Nano B 2 o 3 Powder = 1.20:1, with nano-TiO 2 Powder (TiO 2 The particle size is 50nm) and nano B 2 o 3 Powder (B 2 o 3 The particle size is 50nm);
[0055] Then press the assigned B 2 o 3 Powder and TiO 2 The ratio of the total powder mass to the carbohydrate mass is 1:8 to prepare sucrose powder (the particle size of sucrose powder is 200nm, and the mass percentage of C element is about 42.1%);
[0056] Then the TiO 2 powder, B 2 o 3 Powder and sucrose powder were ground and mixed, heated to 200°C under an argon atmosphere, kept for 3 hours, and carbon-coated pretreatment was performed to obtain carbon-coated modified (TiO 2 +B 2 o 3 ) mixed powder. 75.0wt.% ZrO with 50nm nanometer particle size 2 With 25wt.% modification (TiO 2 +B 2 o 3 ) The mixed powder is weighed and mixed according to the mass ratio, put into a zirconia ball mill jar, and use absolute ethanol as a solvent, and ball mill for 12 hours...
Embodiment 2
[0059] According to mass ratio, nano TiO 2 Powder: Nano B 2 o 3 Powder = 1.30:1, with nano-TiO 2 Powder (TiO 2 The particle size is 300nm) and nano B 2 o 3 Powder (B 2 o 3 The particle size is 300nm);
[0060] Then press the assigned B 2 o 3 Powder and TiO 2 The ratio of the total powder mass to the carbohydrate mass is 1:9 to prepare sucrose powder (the particle size of sucrose powder is 500nm);
[0061] Then the TiO 2 powder, B 2 o 3 Powder and sucrose powder were ground and mixed, heated to 350°C under an argon atmosphere, kept for 4 hours, and carbon-coated pretreatment was carried out to obtain carbon-coated modified (TiO 2 +B 2 o 3 ) mixed powder. 80.0wt.% ZrO with 100nm nanometer particle size 2 With 20.0wt.% modification (TiO 2 +B 2 o 3 ) The mixed powder is weighed and mixed according to the mass ratio, put into a zirconia ball mill jar, and use absolute ethanol as a solvent, and ball mill for 24 hours. Dry the slurry obtained by ball milling, pa...
Embodiment 3
[0064] According to mass ratio, nano TiO 2 Powder: Nano B 2 o 3 Powder = 1.30:1, with nano-TiO 2 Powder (TiO 2 The particle size is 500nm) and nano B 2 o 3 Powder (B 2 o 3 The particle size is 500nm);
[0065] Then press the assigned B 2 o 3 Powder and TiO 2 The ratio of the total powder mass to the carbohydrate mass is 1:10 to prepare glucose powder (the particle size of glucose powder is 700nm);
[0066] Then the TiO 2 powder, B 2 o 3 Powder and glucose powder were ground and mixed, heated to 500°C under an argon atmosphere, kept for 5 hours, and carbon-coated pretreatment was performed to obtain carbon-coated modified (TiO 2 +B 2 o 3 ) mixed powder. 90.0wt.% ZrO with a particle size of 300nm2 With 10.0wt.% modification (TiO 2 +B 2 o 3 ) The mixed powder is weighed and mixed according to the mass ratio, put into a zirconia ball mill jar, and use absolute ethanol as a solvent, and ball mill for 24 hours. Dry the slurry obtained by ball milling, pass throu...
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