High-heat-stability copper cadmium titanate X8R ceramic material
A technology of high thermal stability and ceramic materials, applied in the field of copper cadmium titanate X8R ceramic materials, can solve the problems of not meeting market demand, low temperature stability, and difficulty in wide application, etc., and achieve high yield, good uniformity, Practical effect
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Embodiment 1
[0024] 1. Preparation of ceramic powder
[0025] According to CdCu 3 Ti 4 o 12 The stoichiometric ratio of 3.1159g Cd(NO 3 ) 2 4H 2 O, 7.3212g Cu(NO 3 ) 2 ·3H 2 O was added to a mixed solvent of 10 mL of absolute ethanol and deionized water to prepare solution A, and 13.8 mL of Ti(C 4 h 9 O) 4 Add it to 53.2mL of absolute ethanol to prepare solution B; mix solution A and solution B, and add 2mL of glacial acetic acid, the concentration of butyl titanate in the resulting mixed solution is 0.5mol / L, and the volume fraction of glacial acetic acid is 2.5 %, the volume fraction of deionized water is 10%, heated at 45°C and stirred evenly to obtain a sol, and continued to stir until the sol turned into a gel. After the gel was aged for 12 hours, it was dried at 100°C for 48 hours. Obtain xerogel; after grinding the xerogel, calcined at 650°C for 10 hours to obtain CdCu 3 Ti 4 o 12 Ceramic powder.
[0026] 2. Preparation of ceramic blocks
[0027] To CdCu 3 Ti 4 o 12...
Embodiment 2
[0029] In this embodiment, according to CdCu 3 Ti 4 o 12 The stoichiometric ratio of 3.1159g Cd(NO 3 ) 2 4H 2 O, 7.3212gCu(NO 3 ) 2 ·3H 2 O was added to a mixed solvent of 10 mL of absolute ethanol and deionized water to prepare solution A, and 13.8 mL of Ti(C 4 h 9 O) 4 Add it to 51.2mL of absolute ethanol to prepare solution B; mix solution A and solution B, and add 4mL of glacial acetic acid, the concentration of butyl titanate in the resulting mixed solution is 0.5mol / L, and the volume fraction of glacial acetic acid is 5.0 %, the volume fraction of deionized water is 10%, and the other steps are the same as in Example 1 to obtain the high thermal stability copper cadmium titanate X8R ceramic material.
Embodiment 3
[0031] In this embodiment, according to CdCu 3 Ti 4 o 12 The stoichiometric ratio of 3.1159g Cd(NO 3 ) 2 4H 2 O, 7.3212gCu(NO 3 ) 2 ·3H 2 O was added to the mixed solvent of 10mL absolute ethanol and deionized water to prepare solution A, and 13.8mL Ti(C 4 h 9 O) 4 Add it to 47.2mL of absolute ethanol to prepare solution B; mix solution A and solution B, and add 8mL of glacial acetic acid, the concentration of butyl titanate in the resulting mixed solution is 0.5mol / L, and the volume fraction of glacial acetic acid is 10 %, the volume fraction of deionized water is 10%, and the other steps are the same as in Example 1 to obtain the high thermal stability copper cadmium titanate X8R ceramic material.
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Abstract
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