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Large strain response in acceptor- and donor-doped Bi0.5Na0.5TiO3-based lead-free ceramics

机译:受体和施主掺杂的Bi0.5Na0.5TiO3基无铅陶瓷中的大应变响应

摘要

Effects of Fe and La addition on the dielectric, ferroelectric, and piezoelectric properties of Bi0.5Na0.5 TiO3-Bi0.5Li0.5TiO3-BaTiO3-Mn ceramics were investigated. Similar to the doping effect in lead-based piezoelectric materials, here the Fe-doped ceramic created a hard effect with an improved mechanical quality factor (Q(m)) similar to 160, coercive field (E-c) similar to 2.9 kV/mm, decreased dielectric constant (epsilon(T)(33)/epsilon(0)) similar to 803; and loss (tan delta) similar to 0.024 while the La-doped one indicated a soft feature with improved piezoelectric constant (d(33)) similar to 184 pC/N, epsilon(T)(33)/epsilon(0) similar to 983; tan delta similar to 0.033, and decreased E-c similar to 2.46 kV/mm. In addition, the temperature dependence of the ferroelectric hysteresis loops and strain response under unipolar electric field was also studied. Around the depolarization temperature T-d, large strain value was obtained with the normalized d(33)* up to similar to 1,000 pC/N, which was suggested originated from the development of the short-range order or non-polar phases in the ferroelectric matrix. All these would provide a new way to realize high piezoelectric response for practical application in different temperature scale.
机译:研究了铁和镧的添加对Bi0.5Na0.5 TiO3-Bi0.5Li0.5TiO3-BaTiO3-Mn陶瓷介电,铁电和压电性能的影响。与铅基压电材料中的掺杂效应相似,此处的铁掺杂陶瓷产生了硬效应,其机械品质因数(Q(m))接近160,矫顽场(Ec)接近2.9 kV / mm,降低的介电常数(epsilon(T)(33)/ epsilon(0))类似于803;损耗(tan delta)近似于0.024,而La掺杂的则显示出一种软特性,其压电常数(d(33))类似于184 pC / N,ε(T)(33)/ epsilon(0)类似于983; tanδ接近0.033,E-c降低约2.46 kV / mm。此外,还研究了铁电磁滞回线的温度依赖性和单极电场下的应变响应。在去极化温度Td附近,通过归一化的d(33)*可以得到高达1000 pC / N的大应变值,这可能是由于铁电基体中短程有序相或非极性相的发展。所有这些将为在不同温度范围内的实际应用提供一种实现高压电响应的新方法。

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