首页> 外文会议>Asian Meeting on Electroceramics >Influences of Firing Temperatures on Phase and Morphology Evolution of (Ba_0.25Sr_0.75)(Z_0.75Ti_0.25)O_3 Ceramics Synthesized via Solid-State Reaction Method ■- ■-■ -■-......--■ -
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Influences of Firing Temperatures on Phase and Morphology Evolution of (Ba_0.25Sr_0.75)(Z_0.75Ti_0.25)O_3 Ceramics Synthesized via Solid-State Reaction Method ■- ■-■ -■-......--■ -

机译:通过固态反应方法合成(Ba_0.25SR_0.75)(Ba_0.25SR_0.75)(Z_0.75TI_0.25)(Z_0.75TI_0.25)O_3陶瓷的射击温度对(Z_0.75TI_0.25)O_3陶瓷的影响■ - ■ - ■ - ■-......--■ -

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摘要

The effect of calcination (1000-1400°C) and sintering temperatures (1400-1600 °C) on the phase formation and microstructure of barium strontium zirconate titanate (Ba_0.25Sr_0.75)(Z_0.75Ti_0.25)O_3 BSZT] ceramics were investigated. BSZT powders were prepared by the solid-state reaction method. Higher calcination temperatures increased the percentage of the perovskite phase, but decreased the lattice parameter a of BSZT powders. The pure perovskite phase of BSZT powders was detected above the calcination temperature of 1350 °C. The microstructure of BSZT powders exhibited an almost-spherical morphology and had a porous agglomerated form. The average particle size and the average grain size of the ceramics were increased with the increase of calcination and sintering temperatures. The highest density of the samples was 5.42 g/cm3 which was obtained from ceramic sintered at 1550 °C for 2 h.
机译:煅烧(1000-1400℃)和烧结温度(1400-1600°C)对钛酸钡(Ba_0.25SR_0.75)(Z_0.75TI_0.25)陶瓷的相形成和微观结构的影响被调查了。通过固态反应方法制备BSZT粉末。较高的煅烧温度增加了钙钛矿相的百分比,但是降低了BSZT粉末的晶格参数A.在1350℃的煅烧温度之上检测BSZT粉末的纯PeroVskite相。 BSZT粉末的微观结构表现出几乎是球形的形态,具有多孔附聚的形式。随着煅烧和烧结温度的增加,陶瓷的平均粒度和平均晶粒尺寸增加。样品的最高密度为5.42g / cm 3,其从1550℃下陶瓷获得2小时。

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