首页> 外文会议>Symposium Proceedings vol.888; Symposium on Materials and Devices for Smart Systems II; 20051128-1201; Boston,MA(US) >The Optimal Design and Analysis of Piezoelectric Cantilever Beams for Power Generation Devices
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The Optimal Design and Analysis of Piezoelectric Cantilever Beams for Power Generation Devices

机译:发电装置压电悬臂梁的优化设计与分析

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摘要

With the rapid development of wireless remote sensor systems, battery is becoming the limiting factor in the lifetime of the device and miniaturization. As a way to eliminate battery in the system, the conversion of ambient vibration energy has been addressed. The piezoelectric cantilever beam with a proof mass was exploited for energy conversion since it can generate large strain and power density. The design of cantilever beams was optimized through numerical analysis and FEM simulation at higher acceleration condition. The investigated parameters influencing the output energy of piezoelectric bimorph cantilevers include dimensions of cantilever beam and proof mass. The resonant frequency and robustness of cantilever structure were also considered for enhancing power conversion efficiency and implementing devices at high acceleration condition. The power density generated by the optimized piezoelectric device was high enough (> 1200 μW/cm~3) to operate microsensor systems. However, high stress near clamping area of cantilever beam could lead to the fracture at high acceleration condition.
机译:随着无线遥感器系统的迅速发展,电池已成为限制设备寿命和小型化的限制因素。作为消除系统中电池的一种方法,环境振动能量的转换已得到解决。具有质量的压电悬臂梁被利用来进行能量转换,因为它可以产生大的应变和功率密度。通过数值分析和有限元模拟在较高加速度条件下优化了悬臂梁的设计。研究的影响压电双压电晶片悬臂输出能量的参数包括悬臂梁的尺寸和屈服质量。还考虑了悬臂结构的谐振频率和鲁棒性,以提高功率转换效率并在高加速条件下实现器件。经过优化的压电器件产生的功率密度足够高(> 1200μW/ cm〜3)以操作微传感器系统。然而,悬臂梁夹紧区域附近的高应力可能导致高加速条件下的断裂。

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