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首页> 外文期刊>Journal of intelligent material systems and structures >Modeling and experimental validation of unimorph piezoelectric cymbal design in energy harvesting
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Modeling and experimental validation of unimorph piezoelectric cymbal design in energy harvesting

机译:能量收集中单压电晶片ym设计的建模与实验验证

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This article presents a unimorph lead zirconate titanate cymbal structure as an energy harvester. The unimorph lead zir-conate titanate cymbal harvester was designed to be able to sustain higher mechanical loads by replacing the lead zirconate titanate monolayer with the lead zirconate titanate/steel composite between the metal end caps. Theoretical analysis was first carried out to predict energy-harvesting performance of the new cymbal design. A parametric study was also performed on two key geometric parameters to reveal trends that affect energy-generating performance for the cymbal structure. The dominant parameters that affect the performance are thickness of the metal end cap, the ratio of the radius of the apex to the radius of the cavity, and the thickness ratio of the lead zirconate titanate to the steel substrate. A specimen was then fabricated and tested on a load-frame to validate analytically predicted energy-scavenging performance. The specimen was tested under a I -Hz cyclic load of up to 1940 N. The measured open-circuit output voltages for two different load inputs were close to the analytical results. The experimental results also indicate that the unimorph cymbal harvester can generate a power of 121.2 μW at 3.3 MΩ resistive load under I -Hz cyclic load of 1940 N.
机译:本文介绍了一种单晶锆钛酸钛c片结构,它是一种能量收集器。单晶锆钛酸钛c吊钩收割机的设计使其能够通过在金属端盖之间用锆钛酸铅/钢复合材料代替锆钛酸铅单层来承受更高的机械负荷。首先进行理论分析以预测新c设计的能量收集性能。还对两个关键的几何参数进行了参数研究,以揭示影响affect结构能量产生性能的趋势。影响性能的主要参数是金属端盖的厚度,顶点的半径与腔体的半径之比以及锆钛酸铅与钢基材的厚度比。然后制造了一个样品,并在负载框架上进行了测试,以验证分析预测的能量清除性能。样品在高达1940 N的I -Hz循环负载下进行了测试。两个不同负载输入的实测开路输出电压接近分析结果。实验结果还表明,在1940 N的I -Hz循环负载下,单晶c收集器在3.3MΩ的电阻负载下可以产生121.2μW的功率。

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