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On the optimal bending deflection of piezoelectric scavengers

机译:关于压电清除剂的最佳弯曲挠度

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摘要

This study aims at exploring the possibility to optimize the electromechanical efficiency of piezoelectric cantilevers by imposing an optimal deflection to classical rectangular devices, rather than designing non-conventional geometries. Focusing on non-vibrating loading conditions, the proposed approach is to apply a constant bending moment to the beam in order to reach the maximum allowable stress on the whole outermost surface. This is realized in practice by pressing the cantilever over a cylindrical-shaped support. Theoretical and numerical models with electromechanical coupling are developed to evaluate the performance improvement compared to the deflection of a classical tip-load configuration. Finally, experimental tests have been performed to further verify the electrical power enhancement given by the proposed optimized layout.
机译:这项研究旨在探索通过对传统矩形器件施加最佳偏转而不是设计非常规几何形状来优化压电悬臂梁的机电效率的可能性。着眼于非振动载荷条件,所提出的方法是对梁施加恒定的弯矩,以便在整个最外表面上达到最大允许应力。实际上,这是通过将悬臂压在圆柱形支架上来实现的。开发了具有机电耦合的理论模型和数值模型,以评估与经典尖端载荷配置的挠度相比的性能改进。最后,已经进行了实验测试以进一步验证所提出的优化布局所提供的电功率增强。

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