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Enhanced Electromechanical properties of ferroelectric Bi1/2Na1/2TiO3 −7BaTiO3/relaxorBi1/2Na1/2TiO3 −25SrTiO3composites

机译:铁电Bi1 / 2Na1 / 2TiO3 -7BaTiO3 / relaxorBi1 / 2Na1 / 2TiO3 -25SrTiO3复合材料的增强的机电性能

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摘要

Ceramic-ceramic composites are an established approach to tuning properties of piezoelectric materials [1], [2]. The aim of this work is the investigation of the ferroelectric properties of a composite of ergodic relaxor BNT-25ST (matrix) and non-ergodic relaxor BNT-7BT (seed), in the hopes that such a composite will provide enhancement of unipolar strain, while minimizing the hysteresis behaviour, two parameters important for actuator applications. Our results show that the electromechanical behavior of layered and mixed composites as a function of composition parallel each other, however for both unipolar and bipolar fields, the maximum polarisation and strain is obtained with mixed composites. Maximum unipolar strain enhancement was observed in the 10% mixed composite and it is predicted that higher enhancement could be obtained with an even lower amount of seed.
机译:陶瓷陶瓷复合材料是一种调节压电材料性能的成熟方法[1],[2]。这项工作的目的是研究遍历松弛剂BNT-25ST(基质)和非遍历松弛剂BNT-7BT(种子)的复合材料的铁电性能,希望这种复合材料能够增强单极应变,在最大程度地减少磁滞性能的同时,这两个参数对于执行器应用很重要。我们的结果表明,层状和混合复合材料的机电行为是彼此平行的函数,但是对于单极性和双极性场,混合材料都可获得最大的极化和应变。在10%混合复合材料中观察到最大的单极应变增强,并且可以预料,即使种子数量更少,也可以获得更高的增强。

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