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Energy harvesting from mechanical vibrations using multiple magnetostrictive/piezoelectric composite transducers

机译:使用多个磁致伸缩/压电复合换能器从机械振动中收集能量

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This paper describes an energy harvester employing multiple Terfenol-D/Pb(Mg_(1/3)Nb_(2/3))O_3-PbTiO _3/Terfenol-D laminate magnetoelectric transducers to convert ambient mechanical vibration into electrical energy. The harvester uses four magnets arranged on the free end of a cantilever beam. The multiple transducers are placed in the air gap between the magnets. The optimal initial positions of the transducers at the static equilibrium are analyzed. And the output characteristics of the harvester employing various numbers of transducers are experimentally studied. Experimental results indicate that the harvester employing multiple transducers can provide higher power and power density. The harvester employing four transducers produces a maximum output power of 7.13 mW, which is 3.95 times higher than that of the harvester employing a single transducer, and the harvester employing two transducers produces a maximum output power of 4.07 mW, which is 1.83 times higher than that of the harvester employing a single transducer.
机译:本文介绍了一种采用多个Terfenol-D / Pb(Mg_(1/3)Nb_(2/3))O_3-PbTiO _3 / Terfenol-D层压磁电换能器将环境机械振动转换为电能的能量收集器。收割机使用四个布置在悬臂梁自由端的磁体。多个换能器放置在磁体之间的气隙中。分析了换能器在静态平衡时的最佳初始位置。并对采用各种换能器的收割机的输出特性进行了实验研究。实验结果表明,采用多个换能器的收割机可以提供更高的功率和功率密度。使用四个换能器的收割机产生的最大输出功率为7.13 mW,是使用单个换能器的收割机的最大输出功率的3.95倍,而使用两个换能器的收割机的最大输出功率为4.07 mW,比使用单个换能器的收割机产生的最大输出功率高。使用单个换能器的收割机。

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