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首页> 外文期刊>Journal of Electronic Materials >0.4% Electrostrain at Low Field in Lead-Free Bi-Based Relaxor Piezoceramics by La Doping
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0.4% Electrostrain at Low Field in Lead-Free Bi-Based Relaxor Piezoceramics by La Doping

机译:通过LA掺杂的无铅双松弛剂压电陶瓷中的低场0.4%电气遥置

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摘要

This work investigates the effects of lanthanum doping on the crystal structure, surface morphology, dielectric properties, ferroelectric properties, piezoelectric properties, and electromechanical strain properties of lead-free (Bi0.47Na0.47Ba0.06)(1-x)La(x)TiO(3)piezoelectric ceramics. All specimens were fabricated by a traditional solid-state reaction method. The results of crystal structure and dielectric properties categorize all specimens as relaxor materials. The results of dielectric properties and ferroelectric properties confirm the nonergodic-to-ergodic transformation as a function of La content. At the phase transition point, the material shows a high electric field-induced strain of 0.4% under an applied electric field of 5 kV/mm. The large electromechanical strain response at low applied field in the 0.02 mol La specimen may contribute to the two synergistic effects. First, the electric field induced the reversible ergodic-ferroelectric phase transition, which can generate the large strain. Second, the nonergodic and ergodic phases coexist at the phase transformation point, which can reduce the driving field by facilitating the growth of ferroelectric domains.
机译:本作品研究了镧掺杂对晶体结构的影响,表面形貌,介电性能,铁电性能,压电性能,以及无铅的机电应变性能(BI0.47NA0.47ba0.06)(1-x)la(x )TiO(3)压电陶瓷。所有标本通过传统的固态反应方法制造。晶体结构和介电性能的结果将所有标本分类为松弛剂材料。介电性能和铁电性能的结果证实了作为La含量的函数的非合格性 - 遍历转化。在相变点,该材料在5kV / mm的施加电场下显示出0.4%的高电场诱导的应变。 0.02mol La样品中低施加的田间的大机电应变响应可能有助于两个协同效应。首先,电场诱导可逆的ergodic-铁电相转变,其可以产生大菌株。其次,非精体和遍历相在相变点处共存,这可以通过促进铁电域的生长来减少驱动场。

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