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Electric field induced piezoelectric response in ferroelectric materials near the paraelectric ferroelectric transition

机译:顺电铁电转变附近的铁电材料中电场感应的压电响应

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In many ferroelectric materials, the piezoelectricity can be induced by an applied electric field and the material will return to piezoelectric inactive state when the field is reduced to zero. Based on thermodynamic theory, the effect of temperature and applied electric field on the electromechanical response is analyzed for materials with a first order and continuous ferroelectric-paraelectric phase transitions. It is concluded that near the critical point of a first transition, a giant piezoelectric constant and a high electromechanical coupling factor can be achieved. Experimental results on a series of (BaSr)TiO/sub 3/ samples show that an exceptionally high induced piezoelectric constant can be obtained for the material with a first order transition.
机译:在许多铁电材料中,可通过施加电场来感应压电性,并且当电场减小到零时,材料将返回压电非活动状态。基于热力学理论,分析了温度和施加电场对具有一阶和连续铁电-顺电相变的材料的机电响应的影响。结论是,在第一次过渡的临界点附近,可以实现巨大的压电常数和高机电耦合系数。在一系列(BaSr)TiO / sub 3 /样品上的实验结果表明,对于具有一阶跃迁的材料,可以获得非常高的感应压电常数。

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