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首页> 外文期刊>Advances in Mechanical Engineering >Linear Analytical Solutions of Mechanical Sensitivity in Large Deflection of Unsymmetrically Layered Piezoelectric Plate under Pretension
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Linear Analytical Solutions of Mechanical Sensitivity in Large Deflection of Unsymmetrically Layered Piezoelectric Plate under Pretension

机译:预应力作用下非对称层状压电板大挠度机械灵敏度的线性解析解

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摘要

Linear analytical study on the mechanical sensitivity in large deflection of unsymmetrically layered and laterally loaded piezoelectric plate under pretension is conducted. von Karman plate theory for large deflection is utilized but extended to the case of an unsymmetrically layered plate embedded with a piezoelectric layer. The governing equations thus obtained are simplified by omitting the arising nonlinear terms, yielding a Bessel or modified Bessel equation for the lateral slope. Depending on the relative magnitude of the piezoelectric effect, for both cases, analytical solutions of various geometrical responses are developed and formulated via Bessel and modified Bessel functions. The associated ultimate radial stresses are further derived following lamina constitutive law to evaluate the mechanical sensitivity of the considered plate. For a nearly monolithic plate under a very low applied voltage, the results are in good agreement with those for a single-layered case due to pure mechanical load available in literature, and thus the present approach is checked. For a two-layered unsymmetric plate made of typical silicon-based materials, a sound piezoelectric effect is illustrated particularly in a low pretension condition.
机译:对不对称层状和侧向加载的压电板在预应力下大挠度的机械灵敏度进行了线性分析研究。冯·卡曼(von Karman)板理论利用了大挠度,但将其扩展到嵌有压电层的非对称分层板的情况。这样的控制方程式可以通过省略出现的非线性项来简化,从而得出横向斜率的贝塞尔方程或修正的贝塞尔方程。在两种情况下,根据压电效应的相对大小,可以通过Bessel和修改后的Bessel函数开发和制定各种几何响应的解析解。根据层本构定律进一步推导相关的极限径向应力,以评估所考虑板的机械灵敏度。对于在非常低的施加电压下的接近整体的板,由于文献中提供的纯机械负载,结果与单层情况的结果非常吻合,因此对本方法进行了检验。对于由典型的硅基材料制成的两层不对称板,特别是在低预紧条件下,显示出了良好的压电效应。

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