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A critical review of reduced one-dimensional beam models of piezoelectric composite beams

机译:压电复合材料梁简化一维梁模型的综述

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Simplified one-dimensional models for composite beams with piezoelectric layers, which are intrinsically three-dimensional structures, are important for many applications, including piezoelectric energy harvesters. To reduce the dimensionality of the system, assumptions on the stress/strain state in the transverse direction are typically made. The most common are those of null transverse stress, used for narrow beams, null transverse deformation, used for wide beams, and continuous interface strain, suited for thin piezoelectric layers (we call this assumption thin film continuous). We show that the models based on these assumptions are often used uncritically for beam geometries for which large errors may result. In particular, null transverse stress fails even for narrow beams if the thickness is much smaller than the beam width. We give clear geometric criteria that, for any geometry, allow the selection of the most accurate model among the three. We also develop a single, unified beam equation encompassing the three models and compare the analytical results from this equation with finite element simulations over a wide range of beam lengths, widths, and layer thicknesses. The selection criteria and the unified beam equation form a valuable tool for fast and accurate design of composite piezoelectric beams.
机译:具有压电层的复合梁的简化一维模型本质上是三维结构,对于许多应用(包括压电能量收集器)都很重要。为了减小系统的尺寸,通常对横向上的应力/应变状态进行假设。最常见的是对窄梁使用的零横向应力,对宽梁使用的零横向变形和对薄压电层适用的连续界面应变(我们称此薄膜为连续薄膜)。我们表明,基于这些假设的模型通常不严格地用于可能导致较大误差的光束几何形状。特别是,如果厚度远小于梁的宽度,则即使对于窄梁,零横向应力也不会失效。我们给出了明确的几何标准,对于任何几何,都可以在这三个模型之间选择最准确的模型。我们还开发了一个包含三个模型的统一梁方程,并将该方程的分析结果与有限的梁长度,宽度和层厚模拟进行了比较。选择标准和统一的梁方程式为快速准确地设计复合压电梁提供了宝贵的工具。

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