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Broadband Electromechanical Spectroscopy: A Method for Measuring the Dynamic Electromechanical Response of Ferroelectrics

机译:宽带机电光谱:一种测量铁电气动态机电响应的方法

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To gain a better understanding of the dynamic response of thermo-electro-mechanically coupled materials, in particular stiffness and mechanical damping, an experimental apparatus and method called Broadband Electromechanical Spectroscopy (BES) has been developed. The motivation for creating BES was to study the behavior of ferroelectric materials (and other electro-active materials) over wide ranges of frequencies of simultaneously-applied electric fields and mechanical stresses under accurate temperature control. By precisely controlling electric fields and mechanical loading, the effect of microstructural changes, in particular domain switching in ferroelectrics, on the material's dynamic mechanical response is measured. Experiments show large increases in mechanical damping during domain switching that can be tuned by appropriate electrical loading. Results obtained using the new capabilities brought by BES can be used to better understand the damping associated with domain wall motion to be able to create ceramic materials with both high stiffness and high damping - an elusive combination of properties in typical engineering materials. The design and use of the apparatus along with results obtained from tests on a particular ferroelectric, viz. lead zirconate titanate, are presented.
机译:为了更好地理解热电机耦合材料的动态响应,特别是刚度和机械阻尼,已经开发了一种称为宽带机电光谱(BES)的实验装置和方法。创建的动机是在精确温度控制下研究同时施加的电场和机械应力的宽范围内的铁电材料(和其他电活性材料)的行为。通过精确地控制电场和机械负载,测量了微观结构变化,特别是域切换在铁电解中的效果,在材料的动态机械响应上。实验显示在可以通过适当的电荷调谐的域切换过程中机械阻尼的大幅增加。使用BES带来的新能力获得的结果可用于更好地理解与畴壁运动相关的阻尼,以便能够用高刚度和高阻尼产生陶瓷材料 - 典型工程材料中的性能难以实现。装置的设计和用途以及从特定铁电,ZiZ的测试获得的结果。铅锆钛酸铅。

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