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Theoretical modeling of boundary conditions in microfabricated beams

机译:微制梁边界条件的理论建模

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The authors report detailed modeling of step-up boundary conditions in surface micromachined beams and investigate their effects on the onset of buckling in doubly supported beams. Both cantilever and doubly supported beams are considered. Finite element analysis is used to accurately model the mechanical behavior of the step-up boundary conditions. An extended beam model which uses equivalent torsional and axial stiffnesses in conjunction with a simply supported boundary condition is developed to account for the finite stiffness of a step-up boundary condition. The finite element results are used to calculate the values of the equivalent stiffnesses of the extended beam model for practical geometries of step-up boundary conditions. The extended beam model is used to calculate buckling loads for doubly supported beams. Equivalent stiffness values for torsional and axial springs are for geometries of practical importance to microelectromechanical systems.
机译:作者报告了表面微机械梁中升压边界条件的详细建模,并研究了对双支撑梁中屈曲的弯曲开始的影响。考虑悬臂和双支撑梁。有限元分析用于准确地模拟升压边界条件的机械行为。使用与简单支持的边界条件结合使用等效扭转和轴刚度的扩展光束模型,以解释升压边界条件的有限刚度。有限元结果用于计算升压边界条件的实际几何形状的扩展光束模型的等效刚度的值。扩展光束模型用于计算用于双支撑梁的屈曲负载。扭转和轴向弹簧的等效刚度值用于对微机电系统的实际重要性的几何形状。

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