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ACTUATORS, PIEZOELECTRIC CERAMICS AND FUNCTIONALLY GRADIENT MATERIALS

机译:执行器,压电陶瓷和功能梯度材料

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Piezoelectric ceramic actuators and materials play a key role in the development of advanced precision engineering. The breakthroughs in this field are closely related to the development of various types of piezoelectric ceramic actuators and related materials. The likelihood that the range of applications and demand for actuators will grow quickly has stimulated intensive researches on piezoelectric ceramics. Functionally gradient materials (FGMs) are new classes of composites characterized by compositional and/or microstructural gradation over macroscopic/microscopic distances. This constitutional gradation can be tailored to meet specific needs while providing the best utilization of composite components. Furthermore, FGMs technology is also a novel interfacial technology to solve the problems associated with the sharp interface between two dissimilar materials. In recent years significant advances in the development of FGMs have been achieved. In this paper, we first briefly review the recent progress of ceramic actuators and developments of piezoelectric materials, and then focus on summarizing typical applications of functional gradients in piezoelectric and ferroelectric materials.
机译:压电陶瓷执行器和材料在高级精密工程的发展中起着关键作用。该领域的突破与各种类型的压电陶瓷致动器及相关材料的开发紧密相关。致动器的应用范围和需求迅速增长的可能性刺激了对压电陶瓷的深入研究。功能梯度材料(FGM)是新型复合材料,其特征是在宏观/微观距离上具有组成和/或微观结构渐变。可以调整此层次结构以满足特定需求,同时提供对复合组件的最佳利用。此外,FGMs技术还是一种新颖的界面技术,可以解决与两种异种材料之间的尖锐界面有关的问题。近年来,女性生殖器切割的发展已取得重大进展。在本文中,我们首先简要回顾一下陶瓷致动器的最新进展以及压电材料的发展,然后重点总结了功能梯度在压电和铁电材料中的典型应用。

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