Process for preparing barium strontium titanate and cordierite glass ceramic composite medium material
A technology of barium strontium titanate and glass ceramics is applied in the field of radio frequency, which can solve the problems of inapplicability and low dielectric constant, and achieve the effects of widening the range, improving stability and reducing radio frequency loss.
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Embodiment 1
[0020] Example 1: Making Φ80mm×3mm Ba 0.7 Sr 0.3 TiO 3 Target material, of which cordierite (2MgO·2Al 2 o 3 ·5SiO2 2 ) glass ceramics is 5% (by weight).
[0021] Process steps:
[0022] 1. Prepare Ba according to the above chemical molar ratio 0.7 Sr 0.3 TiO 3 Medium material particle diameter of ultrafine powder ≤ 1 micron.
[0023] 2. Magnesium oxide (MgO), aluminum oxide (Al 2 o 3 ), silicon dioxide (SiO 2 ) powder and the above-mentioned total weight 3% crystal nucleating agent titanium dioxide (TiO 2 ) uniformly mixed and ground to make ultra-fine powder with a particle diameter of ≤1 micron, after molding and sintering at a high temperature of 1200°C for 2 hours, the synthesized cordierite glass-ceramic medium is re-grinded to make a particle diameter of ≤1 micron The superfine powder is molded again, sintered at 1200°C for 2 hours, pulverized and ground to make a superfine powder with a particle diameter of ≤1 micron.
[0024] 3. Add 5% cordierite glass-ce...
Embodiment 2
[0026] Example 2: Making Φ80mm×3mm Ba 0.7 Sr 0.3 TiO 3 Target material, of which cordierite (2MgO·2Al 2 o 3 ·5SiO2 2 ) glass ceramics is 10% (by weight).
[0027] Process steps:
[0028] The procedure of Example 1 was repeated, wherein the proportion of cordierite glass-ceramic was 10% (by weight).
Embodiment 3
[0029] Example 3: Making Φ80mm×3mm Ba 0.7 Sr 0.3 TiO 3 Target material, of which cordierite (2MgO·2Al 2 o 3 ·5SiO2 2 ) glass ceramics is 30% (by weight).
[0030] Process steps:
[0031] The steps of Example 1 were repeated, wherein the proportion of cordierite glass-ceramic was 30% (by weight).
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