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Sustainable Vibration Energy Harvesting Based on Zr-Doped PMN-PT Piezoelectric Single Crystal Cantilevers

机译:Zr掺杂PMN-PT压电单晶悬臂的可持续振动能量收集

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In this paper, we present the results of a preliminary study on the piezoelectric energy harvesting performance of a Zr-doped PbMg1/3Nb2/3O3-PbTiO3 (PMN-PZT) single crystal beam. A novel piezoelectric beam cantilever structure is used to demonstrate the feasibility of generating AC voltage during a state of vibration. The energy-harvesting capability of a PMN-PZT beam is calculated and tested. The frequency response of the cantilever device shows that the first mode resonance frequency of the excitation model exists in the neighborhood of several hundreds of hertz, which is similar to the calculated value. These tests show that several significantly open AC voltages and sub-mW power are achieved. To test the possibility of a small scale power source for a ubiquitous sensor network service, energy conversion and the testing of storage experiment are also carried out.
机译:在本文中,我们提出了对Zr掺杂PbMg1 / 3Nb2 / 3O3-PbTiO3(PMN-PZT)单晶束的压电能量收集性能的初步研究结果。一种新颖的压电梁悬臂结构被用来证明在振动状态下产生交流电压的可行性。计算并测试了PMN-PZT光束的能量收集能力。悬臂装置的频率响应表明,激励模型的第一模式共振频率在数百赫兹附近,与计算值相似。这些测试表明可以实现几个明显的交流电压和低于mW的功率。为了测试无处不在的传感器网络服务使用小型电源的可能性,还进行了能量转换和存储实验的测试。

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