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Modeling and design of Galfenol unimorph energy harvester

机译:Galfenol unimorph能量采集器的建模和设计

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Magnetostrictive iron-gallium alloys, known as Galfenol, are a recent class of smart materials with potential in energy harvesting applications. Unimorph energy harvesters consisting of a Galfenol beam bonded to a passive substrate are simple and effective, but advanced models are lacking for these smart devices. This study presents a finite element model for Galfenol unimorph harvester systems. Experiments considering various design parameters such as pick up coil size, load resistance, beam thickness ratio, and bias magnetic field strength are conducted to guide and validate the modeling effort. If the free length of the Galfenol unimorph beam is considered as the effective length, the maximum average power density, peak power density, and open-circuit voltage amplitude achieved in experiments are 13.97 mW/cm~3, 35.51 mW/cm~3, and 0.66 V, respectively. By only considering the length of Galfenol surrounded by the pickup coil, the maximum average power density and peak power density are 23.66 mW/cm~3 and 60.14 mW/cm~3, respectively.
机译:磁致伸缩铁镓合金,称为Galfenol,是一类新型的智能材料,在能量收集应用中具有潜力。由结合到无源基板上的Galfenol光束组成的Unimorph能量收集器既简单又有效,但这些智能设备缺少先进的模型。这项研究提出了Galfenol unimorph收割机系统的有限元模型。进行了考虑各种设计参数(例如拾取线圈尺寸,负载电阻,束厚度比和偏置磁场强度)的实验,以指导和验证建模工作。如果将Galfenol单压电晶片束的自由长度视为有效长度,则实验中获得的最大平均功率密度,峰值功率密度和开路电压幅度分别为13.97 mW / cm〜3、35.51 mW / cm〜3,和0.66 V分别。仅考虑由拾波线圈围绕的加芬酚的长度,最大平均功率密度和峰值功率密度分别为23.66 mW / cm〜3和60.14 mW / cm〜3。

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