Microwave dielectric ceramic material with low intrinsic sintering temperature and preparation method thereof
A technology for microwave dielectric ceramics and ceramic materials, which is applied in the field of low inherent sintering temperature microwave dielectric ceramic materials and their preparation, can solve the problems of limited sintering temperature, limited degree of sintering temperature reduction, and difficulty in obtaining, and achieves Q× The effect of high f value, low sintering temperature and excellent microwave performance
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Embodiment 1
[0012] 1) Li with a purity ≥ 99% 2 CO 3 , MgO, TiO 2 As the main raw material, according to the molecular formula Mg(Li 2 / 3 Ti 4 / 3 )O 4 Calcination to synthesize the main powder;
[0013] 2) Then add alcohol and zirconium balls to the weighed main powder according to the weight ratio of main powder: alcohol: zirconium balls is 1: 1: 2, mix for 4 hours by wet grinding method, and grind it at 140°C Drying, briquetting, and then raising the compressed block-shaped raw material from room temperature to 950°C at a heating rate of 5°C / min and keeping it at this temperature for 6 hours to make a sintered block, and crushing to obtain the main crystal phase powder;
[0014] 3) Mole ratio Mg(Li 2 / 3 Ti 4 / 3 )O 4 :TiO 2 =0.985:0.015 Add TiO to the main crystal phase powder obtained in step (2) 2 Get the powder, then add alcohol and zirconium balls according to the weight ratio of powder: alcohol: zirconium balls is 1: 1: 2, put them into a nylon jar and ball mill for 4 hours, ta...
Embodiment 2
[0016] 1) Li with a purity ≥ 99% 2 CO 3 , MgO, TiO 2 As the main raw material, according to the molecular formula Mg(Li 2 / 3 Ti 4 / 3 )O 4 Calcination to synthesize the main powder;
[0017] 2) Then add alcohol and zirconium balls to the weighed main powder according to the weight ratio of main powder: alcohol: zirconium balls is 1: 1: 2, mix for 4 hours by wet grinding method, and grind it at 140°C Drying, briquetting, and then pressing into a block, and then raising the pressed block raw material from room temperature to 950°C at a heating rate of 5°C / min and keeping it at this temperature for 6 hours to make a sintered block, and crushing to obtain the main crystal Phase powder;
[0018] 3) Mole ratio Mg(Li 2 / 3 Ti 4 / 3 )O 4 :TiO 2 =0.975:0.025 Add TiO to the main crystal phase powder obtained in step (2) 2 Get the powder, then add alcohol and zirconium balls according to the weight ratio of powder: alcohol: zirconium balls is 1: 1: 2, put them into a nylon jar and ba...
Embodiment 3
[0020] 1) Li with a purity ≥ 99% 2 CO 3 , MgO, TiO 2 As the main raw material, according to the molecular formula Mg(Li 2 / 3 Ti 4 / 3 )O 4 Calcination to synthesize the main powder;
[0021] 2) Then add alcohol and zirconium balls to the prepared main powder according to the weight ratio of main powder: alcohol: zirconium balls is 1:1:2, mix for 4 hours by wet grinding method, grind and bake at 140°C Drying, briquetting, and then raising the pressed block raw material from room temperature to 950°C at a heating rate of 5°C / min and keeping it at this temperature for 6 hours to make a sintered block, and crushing to obtain the main crystal phase powder;
[0022] 3) Mole ratio Mg(Li 2 / 3 Ti 4 / 3 )O 4 :TiO 2 =0.95:0.05 Add TiO to the main crystal phase powder obtained in step (2) 2 Get the powder, then add alcohol and zirconium balls according to the weight ratio of powder: alcohol: zirconium balls is 1: 1: 2, put them into a nylon jar and ball mill for 4 hours, take them out...
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Abstract
Description
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Application Information
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