Control of piezoelectric energy harvesting characteristics via the materials properties or geometry modification

Seok-Jin Yoon, Hyung-chan Kim, Dae-Yong Jeon, Hyun-Jai Kim
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Abstract

Piezoelectric energy harvesting has been attractive for powering the wireless sensor node in Ubiquitous Sensor Networks. The piezoelectric energy harvesting characteristics can be controlled by changing the material properties or material geometry. For example, by changing the material property, the electromechanical coupling coefficient, large electric power can be generated even with the same mechanical energy. Instead of ceramic material, we used the PMN-PT single crystal for the cantilever type energy harvester and characterized the energy harvesting properties of PMN-PT single crystals for different electric boundary conditions. Piezoelectric materials are featured as a small current and high voltage generator. In this presentation, we will show one example to increase the current by making the multi-layer ceramics.
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通过改变材料特性或几何形状来控制压电能量收集特性
在泛在传感器网络中,压电能量收集技术在为无线传感器节点供电方面具有很大的吸引力。压电能量收集特性可以通过改变材料特性或材料几何形状来控制。例如,通过改变材料性质,机电耦合系数,即使具有相同的机械能,也可以产生较大的电力。我们采用PMN-PT单晶代替陶瓷材料作为悬臂式能量收集器,并对不同电边界条件下PMN-PT单晶的能量收集特性进行了表征。压电材料具有小电流、高电压的特点。在本报告中,我们将展示一个通过制作多层陶瓷来增加电流的例子。
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