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Low-temperature synthesis of superfine barium strontium titanate powder by the citrate method

机译:柠檬酸盐法低温合成钛酸钡锶超细粉

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摘要

Ba_(0.6)Sr_(0.4)TiO_3 powder was synthesized by a citrate method. The phase development was examined with respect to calcining temperature and heating rate during the calcining process. The results reveal a crucial role of the heating rate to the formation of a pure perovskite phase at low calcining temperatures. It was found that keeping relatively low heating rates ≤0.7 °C/min during the calcining process after 300 °C was favorable to a sufficient decomposition of (Ba,Sr)2Ti_2O_5·CO_3 intermediate phase at low temperatures and consequently led to the formation of a pure perovskite phase at 550 °C. Ba_(0.6)Sr_(0.4)TiO_3 powder calcined at the temperature under the heating rate of 0.7 °C/min showed a superfine and uniform particle morphology and high sintering reactivity. As a result, the ceramic specimens prepared from the powder attained reasonable relative densities (94-95%) at sintering temperatures of 1250-1270 °C.
机译:采用柠檬酸盐法合成了Ba_(0.6)Sr_(0.4)TiO_3粉末。关于煅烧过程中煅烧温度和加热速率的相发展进行了检查。结果揭示了在低煅烧温度下加热速率对形成纯钙钛矿相的关键作用。发现在300°C后的煅烧过程中保持相对较低的升温速率≤0.7°C / min有利于(Ba,Sr)2Ti_2O_5·CO_3中间相在低温下的充分分解,从而导致形成550°C的纯钙钛矿相。在0.7°C / min的加热速率下煅烧的Ba_(0.6)Sr_(0.4)TiO_3粉末显示出超细且均匀的颗粒形态和高烧结反应性。结果,由粉末制备的陶瓷样品在1250-1270℃的烧结温度下获得了合理的相对密度(94-95%)。

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