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首页> 外文期刊>Acta Mechanica >Optimal design of a multilayered piezoelectric transducer based on a special unit cell homogenization method
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Optimal design of a multilayered piezoelectric transducer based on a special unit cell homogenization method

机译:基于特殊晶胞均质化方法的多层压电换能器的优化设计

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摘要

Piezoelectric transducers with high directional-dependent response are of interest in several applications because of their ability to sense and actuate along specific directions where they can distinguish individual principal strain components. This paper presents an improved unidirectional sensor obtained using a multi-laminate piezocomposite that maximizes the electromechanical coupling factor or the piezoelectric strain constant in one direction with respect to the other directions. Furthermore, multi-laminate structures provide significant design potential by the variation of the orientation and stacking sequence of fibers to obtain the desired properties. The effective properties depend on the number of layers, the fibers orientation as well as the thickness of each layer, and they are estimated by the variational asymptotic method for unit cell homogenization. A design that guarantees maximum directional dependence in terms of piezoelectric strain constant is determined by a global optimization technique using a genetic algorithm. Layered transducers composed of several orthotropic passive layers and a single active layer are considered.
机译:具有高的方向相关响应的压电换能器在某些应用中受到关注,因为它们具有沿特定方向进行感应和驱动的能力,可以区分各个主要应变分量。本文提出了一种使用多层压电复合材料获得的改进的单向传感器,该传感器可将一个方向上相对于另一方向的机电耦合系数或压电应变常数最大化。此外,多层结构通过改变纤维的取向和堆叠顺序来获得所需的性能,从而提供了显着的设计潜力。有效属性取决于层数,纤维方向以及每一层的厚度,并且它们是通过变分渐近方法进行估计的,用于单位细胞均质化。通过使用遗传算法的全局优化技术,可以确定保证最大的压电应变常数方向相关性的设计。考虑了由几个正交各向异性无源层和一个有源层组成的分层换能器。

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