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A Reduced-order Model for Microbeam-based Magnetic Actuators

机译:基于微束的磁致动器的降阶模型

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A reduced-order model for microbeam-based magnetic actuators has been presented based on using the linear mode shapes of a microbeam as basis functions. In comparison with previous models, the present model accounts for the micro-magnetic-core reluctance and the coupling between the beam deflection and magnetic force. The integration for magnetic force is calculated by dividing the microbeam into several segments, and the nonlinear equation set has been developed based on the magnetic circuit principle. The model has been validated by comparing its results with experimental results available in the literature and finite-element solutions. The model also shows that using the linear mode shapes of a microbeam as basis functions has enough accuracy for small deflection. The number of integration segments M has almost no effect to the calculation results because the microbeam deflection curve is nearly a straight line in small deflection situation.
机译:基于微束的线性模式形状作为基础函数,提出了基于微束的磁致动器的降阶模型。与以前的模型相比,本模型考虑了微磁芯磁阻以及电子束偏转与磁力之间的耦合。通过将微束分成几个部分来计算磁力的积分,并基于磁路原理开发了非线性方程组。该模型已通过将其结果与文献和有限元解决方案中提供的实验结果进行比较而得到验证。该模型还显示,使用微束的线性模式形状作为基本函数,对于小挠度具有足够的精度。积分段数M对计算结果几乎没有影响,因为微束偏转曲线在小偏转情况下几乎是一条直线。

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