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首页> 外文期刊>Journal of Advanced Ceramics >Effects of core/shell volumetric ratio on the dielectric-temperature behavior of BaTiOSubscript3/Subscript
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Effects of core/shell volumetric ratio on the dielectric-temperature behavior of BaTiOSubscript3/Subscript

机译:核/壳体积比对BaTiO 3 介电温度行为的影响

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Two sets of (Mg,Y)-doped BaTiO3 samples were prepared to investigate the effects of the core/shell volumetric ratio on the dielectric-temperature behavior of BaTiO3: one set with samples of the same grain size but different core sizes and the other with samples of the same core size but different shell thicknesses. The microstructural variation of the samples was characterized and their dielectric properties were measured. For both sets of samples, the temperature stability of the dielectric properties was generally improved with a reduction of the volumetric shell ratio regardless of the grain and core sizes. There existed, however, a limit of the reduction; for the studied range, shell thickness of one third of the core radius appeared to be an optimum thickness for the given amounts of dopants. It was concluded that the volumetric shell ratio should be optimized so as not to exceed a specific limit, for our case two thirds of the grain volume, to secure temperature stability of the dielectric properties of BaTiO3.
机译:制备了两组(Mg,Y)掺杂的BaTiO3样品,以研究核/壳体积比对BaTiO3介电温度行为的影响:一组样品具有相同的晶粒尺寸但不同的芯尺寸使用相同核芯尺寸但壳厚度不同的样品。表征了样品的微观结构变化并测量了它们的介电性能。对于两组样品,介电性能的温度稳定性通常都随着壳体积的减小而得到改善,而与晶粒和芯的尺寸无关。但是,减少量是有限的。对于所研究的范围,对于给定数量的掺杂剂,芯半径的三分之一的壳厚度似乎是最佳厚度。得出的结论是,应优化壳的体积比,以确保不超过特定限制(对于我们的情况而言是三分之二的晶粒体积),以确保BaTiO3介电性能的温度稳定性。

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