首页> 外文期刊>Applied Physics. A, Materials Science & Processing >Preparation and characterization of CaTiO_3-(Li_(1/2)Nd_(1/4)Sm_(1/4))TiO_3 microwave ceramics by a sol-gel combustion process
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Preparation and characterization of CaTiO_3-(Li_(1/2)Nd_(1/4)Sm_(1/4))TiO_3 microwave ceramics by a sol-gel combustion process

机译:溶胶凝胶燃烧法制备CaTiO_3-(Li_(1/2)Nd_(1/4)Sm_(1/4)TiO_3微波陶瓷的制备和表征

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摘要

A novel sol-gel combustion process was adopted to synthesize reactive ceramic powder with composition of 0.25CaTiO_3-0.75(Li_(1/2)Nd_(1/4)Sm_(1/4))TiO_3, and microwave dielectric ceramics were prepared at different sintering temperatures using the synthesized powder. The combustion behavior of citrate gel and the sintering feature of the synthesized powder were evaluated by using differential thermal analysis-thermogravimetric analysis and thermo-mechanical analysis techniques, respectively. The citrate gel exhibits a self-propagating behavior after being ignited in air at room temperature. The as-burnt powder is so highly reactive that it can be transformed into single-phase perovskite at 900 ℃ and it can be sintered at 1100℃. The effects of sintering temperature on the density, microstructure, and dielectric properties of the sintered ceramics were investigated. The maximum values of density, dielectric constant, and Q x f were achieved after sintering at 1200℃. At 1200℃, very dense ceramics with uniform grains and good dielectric properties with a dielectric constant of 123.8, a Q xf value of 5110 (at 3.7 GHz), and a τ_f value of +12.5 ppm/℃ were achieved via the sol-gel combustion route.
机译:采用新颖的溶胶-凝胶燃烧法合成了组成为0.25CaTiO_3-0.75(Li_(1/2)Nd_(1/4)Sm_(1/4)TiO_3的反应性陶瓷粉末,并制备了微波介电陶瓷。使用合成粉末的不同烧结温度。分别采用差热分析-热重分析和热机械分析技术对柠檬酸盐凝胶的燃烧行为和合成粉末的烧结性能进行了评估。柠檬酸盐凝胶在室温下在空气中点燃后表现出自蔓延的行为。烧成的粉末具有很高的反应活性,可以在900℃转变为单相钙钛矿,并且可以在1100℃烧结。研究了烧结温度对烧结陶瓷密度,微观结构和介电性能的影响。在1200℃烧结后达到密度,介电常数和Q x f的最大值。在1200℃时,通过溶胶-凝胶获得了非常致密的陶瓷,具有均匀的晶粒和良好的介电性能,介电常数为123.8,Q xf值为5110(在3.7 GHz下),τ_f值为+12.5 ppm /℃燃烧路线。

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