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Dynamic Response in Magnetic Force Control Using a Laminate Composite of Magnetostrictive and Piezoelectric Materials

机译:使用磁致伸缩和压电材料的层压复合材料控制磁力的动态响应

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摘要

We investigate the dynamic response of a magnetic force control device composed of a laminate composite of magnetostrictive/piezoelectric material. The device exploits the inverse magnetostrictive effect of a magnetostrictive material so that the variation in the magnetization of the material, and hence the magnetic force in a magnetic circuit, can be controlled with a voltage to the piezoelectric material. Here, we compare the voltage-induced frequency responses of the admittance and flux (magnetic force) between the new device and a conventional electromagnet in order to identify the factors that degrade the response of the device. A finite-element calculation of the modal shape of the composite supports the observed correlation between the vibration of the composite and the flux in the gap in dynamic response.
机译:我们研究了由磁致伸缩/压电材料的层压复合材料组成的磁力控制装置的动态响应。该装置利用了磁致伸缩材料的逆磁致伸缩效应,从而可以利用施加到压电材料上的电压来控制材料的磁化强度变化,从而控制磁路中的磁力。在这里,我们比较了新设备和常规电磁体之间的导纳和磁通量(磁力)的电压感应频率响应,以确定导致设备响应降低的因素。复合材料的模态形状的有限元计算支持了观察到的复合材料的振动与动态响应中间隙中的通量之间的相关性。

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