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Effects of preparation process on the properties of PMN based electrostrictive materials

机译:制备过程对PMN基电致致密材料性能的影响

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In this study, the effects of preparation process on the properties of lead magnesium niobate (PMN) based electrostictive materials, such as phase structure, microstructure and electrical property, are investigated and discussed. The results of experiment show the powder samples, fabricated by a modified two-step synthesis method with alkaline-earth metal dopants introduced in the preparation of common electrical materials, has pure perovskite phase in XRD patterns without pyrochlore structure. From SEM figures, it can be seen the sinter temperature has certain influences on grain size and morphology. Especially, the sinter temperature is elevated over 124°C that the grain overgrows and grain boundaries become ambiguous. Moreover, the additive dopant can suppress the grain growth and reduce the grain size, which benefits to lowering sintering temperature and improves the density of materials. The induced strain curve measured by the optic fiber method shows the PMN based electrostrictive materials has a large strain, ∼0.8×10−3 under a 2000V/mm bias field.
机译:在该研究中,研究并讨论了制备方法对铌酸铌酸铌酸铌酸铌(PMN)的静电材料的性质,并讨论。实验结果表明,由改性的两步合成方法制造的粉末样品与在普通电气材料的制备中引入的碱土金属掺杂剂制成,在没有纤维结构的XRD图案中具有纯钙钛矿相。从SEM图中,可以看出,烧结温度对晶粒尺寸和形态有一定的影响。特别是,烧结温度升高超过124°C,晶粒过度缩放和晶界变得模糊。此外,添加剂掺杂剂可以抑制晶粒生长并降低晶粒尺寸,这有利于降低烧结温度并提高材料的密度。通过光纤方法测量的诱导应变曲线表示PMN基电致致致致致致致致致致致致隙材料在2000V / mm偏置场下具有大应变,〜0.8×10 -3 / sup>。

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