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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Topology Optimization of Piezoelectric Materials and Application to the Cantilever Beams for Vibration Energy Harvesting
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Topology Optimization of Piezoelectric Materials and Application to the Cantilever Beams for Vibration Energy Harvesting

机译:压电材料的拓扑优化及其在悬臂梁振动能量收集中的应用

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摘要

A new design analysis method based on FEM and a topology optimization for piezoelectric materials was developed for the unimorph cantilevered energy harvesters which can produce the maximum electric power outputs. The optimum topology of a piezoelectric material layer on the harvesting beam has been calculated by considering natural frequencies of beams, electromechanical couplings of piezoelectric materials, tip masses and MMA (method of moving asymptotes). The piezoelectric coefficients such as elasticity, capacitance and piezoelectric coupling were interpolated by element density variables in the topology optimization. The optimum design method was verified by vibration tests and measuring voltage outputs of the harvester and a good correlation between two results has been obtained. The effects of beam geometric parameters and several piezoelectric materials (PZT, PVDF, PMN-PT and piezoelectric fiber composites) on power generation were also investigated. The beam with PMN-PT generated the largest voltage and the next largest is PZT, MFC and PVDF, respectively.
机译:针对单晶悬臂式能量采集器,开发了一种基于有限元和压电材料拓扑优化的新设计分析方法,该方法可以产生最大的电力输出。通过考虑梁的固有频率,压电材料的机电耦合,尖端质量和MMA(移动渐近线方法),已计算出收获梁上压电材料层的最佳拓扑。在拓扑优化中,通过元素密度变量对诸如弹性,电容和压电耦合等压电系数进行插值。通过振动测试和测量收割机的电压输出,验证了最佳设计方法,并且两个结果之间具有良好的相关性。还研究了束几何参数和几种压电材料(PZT,PVDF,PMN-PT和压电纤维复合材料)对发电的影响。带有PMN-PT的光束产生的电压最高,其次是PZT,MFC和PVDF。

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