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Investigation of properites of PIN-PMN-PT single crystal and its high performance application for a piezoelectric energy harvester

机译:PIN-PMN-PT单晶的性能研究及其在压电能量采集器中的高性能应用

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The relaxor-based ferroelectric single crystal Pb(In1/2Nb1/2)O3-Pb(Mg1/3Nb2/3)O3-PbTiO3 (PIMNT) were grown successfully by the vertical Bridgman techique using the [0 0 1]-oriented seed, then the test behavior of dielectric and piezoelectric under hydrostatic pressure were performed by measuring the capacitance, dissipation and resonance frequency, antiresonance frequency of the [0 0 1]-oriented PIMNT, respectively. In order to research the application of ferroelectric single crystal on piezoelectric energy harvester. We employ the piezoelectric bimorph model and change the piezoelectric material from PZT-5H to PIMNT, and we find that the maximum output power density increased when the piezoelectric material change from PZT-5H to PIMNT, we note that the ferroelectric material, such as PIM-PMN-PT, can substantially decrease the resonant frequency of the system compare with that of the PZT-5H. In addition, we investgated the relationship between efficiency and input frequency for different piezoelectric layer. These findings can provide gudiance to design Piezoelectric Energy Harvester.
机译:弛豫基铁电单晶Pb(In 1/2 Nb 1/2 )O 3 -Pb(Mg 1 / 3 Nb 2/3 )O 3 -PbTiO 3 (PIMNT)通过垂直Bridgman技术使用[ [0 0 1]取向的晶种,然后分别通过测量[0 0 1]取向的PIMNT的电容,耗散和共振频率,反共振频率来进行介电和压电在静水压力下的测试行为。为了研究铁电单晶在压电能量收集器中的应用。我们采用压电双压电晶片模型,并将压电材料从PZT-5H更改为PIMNT,我们发现当压电材料从PZT-5H更改为PIMNT时,最大输出功率密度增加,我们注意到铁电材料,例如PIM -PMN-PT与PZT-5H相比,可以大大降低系统的谐振频率。另外,我们研究了不同压电层的效率和输入频率之间的关系。这些发现可以为设计压电能量收集器提供指导。

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