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The effects of substrate layer thickness on piezoelectric vibration energy harvesting with a bimorph type cantilever

机译:衬底层厚度对双压电晶片型悬臂压电振动能量收集的影响

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In this research four piezoelectric bimorph type cantilevers for energy harvesting were manufactured, measured and analyzed to study the effects of substrate layer thickness on energy harvesting efficiency and durability under different accelerations. The cantilevers had the same dimensions of the piezoelectric ceramic components, but had different thicknesses of the steel substrate (no steel, 30 µm, 50 µm and 75 µm). The cantilevers were tuned to the same resonance frequency with different sizes of tip mass (2.13 g, 3.84 g, 4.17 g and 5.08 g). The energy harvester voltage outputs were then measured across an electrical load near to the resonance frequency (∼40 Hz) with sinusoidal vibrations under different accelerations. The stress exhibited by the four cantilevers was compared and analyzed and their durability was tested with accelerations up to 2.5 g-forces.
机译:在这项研究中,制造,测量和分析了四个压电双压电晶片型悬臂,以研究衬底层厚度对不同加速度下能量收集效率和耐久性的影响。悬臂具有与压电陶瓷组件相同的尺寸,但具有不同厚度的钢基板(无钢,30微米,50微米和75微米)。将悬臂调至相同的共振频率,并具有不同大小的尖端质量(2.13μg,3.84μg,4.17μg和5.08μg)。然后,在不同的加速度下,通过正弦振动在接近共振频率(〜40 frequencyHz)的电负载上测量能量收集器的电压输出。比较和分析了四个悬臂所表现出的应力,并通过高达2.5μg的加速度测试了其耐久性。

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