Delectric material of calcium based oxide of modified copper titanate, and application
A copper calcium titanate-based, dielectric material technology, applied in the direction of inorganic insulators, ceramics, etc., can solve the problems of unfavorable practical application, large dielectric loss of CCTO materials, etc., and achieve the reduction of dielectric constant, the reduction of dielectric constant, the increase of Effect of Die Resistance Value
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Embodiment 1
[0028] Example 1: Zr element is replaced by Cu, and the chemical expression of the apparent composition is CaCu 2.95 Zr 0.05 Ti 4 o 12 modified CCTO ceramics.
[0029] The specific preparation method is as follows. Analytical purity carbonate CaCO 3 (99.0%), oxide CuO (99.0%), TiO 2 (99.8%) and ZrO 2 (99.8%) as raw materials, ceramic samples were prepared by traditional solid-state reaction process. First, the chemical expression of CaCu in terms of apparent composition 2.95 Zr 0.05 Ti 4 o 12 The metering ratio of weighing and mixing raw materials, after ball milling, drying and briquetting, is pre-calcined at 650°C for 8 hours to make it fully chemically reacted. Crush and ball-mill the calcined block, and make the dried powder into a thin disc with a diameter of 15mm and a thickness of about 1.5mm under the pressure of 180MPa. Finally, the ceramic samples were obtained by sintering for 10 h at the highest temperature of 1050° C. in air.
Embodiment 2
[0030] Example 2: The composition of the modified CCTO ceramics is the same as in Example 1. The specific method is generally as described in Example 1, except that the sintering time during material preparation is 20 h.
Embodiment 3
[0031] Example 3: Cu site substitution of La element, apparent composition chemical expression is CaCu 2.90 La 0.10 / 3 Ti 4 o 12 modified CCTO ceramics. The specific preparation method is as described in Example 1, except that in Example 1, the Cu site substitution element is Zr, and the raw material used is ZrO 2 , while the Cu site substitution element in this embodiment is La, and the raw material used is La 2 o 3 (99.95%), according to the apparent composition chemical expression CaCu 2.90 La 0.10 / 3 Ti 4 o 12 The stoichiometric ratio was batched. The sintering conditions are the same as those in Example 1, both being 10h.
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