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Nonlinear electro-dynamic analysis of micro-actuators: Effect of material nonlinearity

机译:微执行器的非线性电动力学分析:材料非线性的影响

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This paper presents a nonlinear dynamic analysis of a micro-actuator made of nonlinear elasticity materials. The theoretical formulations are based on Bernoulli-Euler beam theory and include the effects of mid-plane stretching due to large deformation and material non-linearity. By employing Linstedt-Poincare perturbation method, the nonlinear governing equation is transformed into a set of linear differential equations which are then solved using Galerkin's method. Numerical results show that the linear constitutive relationship used in previous studies is valid for small deformation only whereas for large deformation, the nonlinear elasticity constitutive relationship must be used for accurate analysis. The effects of initial gap and beam length on the nonlinear electro-dynamic behavior of the micro-actuator are also discussed.
机译:本文介绍了由非线性弹性材料制成的微执行器的非线性动力学分析。理论公式基于伯努利-欧拉梁理论,并包括由于大变形和材料非线性而引起的中平面拉伸的影响。通过使用Linstedt-Poincare摄动法,将非线性控制方程转换为一组线性微分方程,然后使用Galerkin方法对其进行求解。数值结果表明,先前研究中使用的线性本构关系仅对小变形有效,而对于大变形,必须使用非线性弹性本构关系进行精确分析。还讨论了初始间隙和射束长度对微执行器非线性电动行为的影响。

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