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Characteristics of vibration energy harvesting using giant magnetostrictive cantilevers with resonant tuning

机译:利用超磁致伸缩悬臂和共振调谐收集振动能量的特性

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This work deals with the dynamic bending and energy harvesting characteristics of giant magnetostrictive cantilevers with resonant tuning both numerically and experimentally. The giant magnetostrictive cantilever is fabricated using a thin Terfenol-D layer, SUS layer, movable proof mass, etc, and, is designed to automatically adjust its own resonant frequency to match the external vibration frequency in real time. Three-dimensional finite element analysis was conducted, and the resonant frequency, induced voltage and stress in the magnetostrictive cantilevers were predicted. The resonant frequency and induced voltage were also measured, and comparison was made between simulation and experiment. The time-varying behavior and self-tuning ability are discussed in detail.
机译:这项工作在数值上和实验上通过共振调谐来处理巨型磁致伸缩悬臂的动态弯曲和能量收集特性。巨大的磁致伸缩悬臂采用薄的Terfenol-D层,SUS层,可移动的质量块等制成,并设计为自动调整其自身的共振频率以实时匹配外部振动频率。进行了三维有限元分析,并预测了磁致伸缩悬臂梁的共振频率,感应电压和应力。还测量了谐振频率和感应电压,并与仿真和实验进行了比较。详细讨论了时变行为和自整定能力。

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