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On the validity of plane state assumptions in the bending of bimorph piezoelectric cantilevers

机译:关于平面态假设在双压电晶片压电悬臂梁弯曲中的有效性

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摘要

We assess the accuracy of plane state assumptions in modeling the bending of bimorph piezoelectric cantilevers. Reference solutions are obtained by means of fully three-dimensional simulations. We solve a model, compliant with the standard theoretical background, able to deal with large deflections, and aimed at estimating the electrical energy harvesting potential. We show that the two assumptions of plane stress and plane strain yield very different results in terms of strain and therefore lead to substantially different estimates of electrical power. The plane stress state is the best approximation of narrow cantilevers, while the plane strain is suited for wide ones. The validity ranges are defined for each of the two, in terms of the generated electrical power. More specifically, the plane stress assumption better approximates the reference solution in the range with W the width and H the total thickness of the solid. Other aspects are affected by the modeling approach, such as the estimation of maximum deformation and, to a minor extent, of resonance frequencies.
机译:我们在建模双压电晶片压电悬臂梁弯曲时评估平面状态假设的准确性。参考解决方案是通过完全三维模拟获得的。我们解决了一个模型,该模型符合标准的理论背景,能够应对较大的挠度,并且旨在估算电能收集的潜力。我们表明,关于平面应力和平面应变的两个假设在应变方面产生了截然不同的结果,因此导致了对电功率的明显不同。平面应力状态是窄悬臂的最佳近似,而平面应变则适用于宽悬臂。根据所产生的电功率,为两者中的每一个定义了有效范围。更具体地说,平面应力假设在W为宽度,H为固体总厚度的范围内更好地近似了参考解。建模方法会影响其他方面,例如最大变形的估计,以及在较小程度上的共振频率。

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