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Coupled longitudinal-transverse behaviour of a geometrically imperfect microbeam

机译:几何不完美的微束的纵向耦合行为

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摘要

Based on the modified couple stress theory, the coupled longitudinal-transverse nonlinear behaviour of an imperfect microbeam is investigated numerically. The equations governing the longitudinal and transverse motions are obtained using Hamilton's principle for the system with an initial geometric imperfection. The Galerkin scheme is employed to discretize the two partial differential equations of motion, yielding a set of second-order nonlinear ordinary differential equations with coupled terms. This set is cast into new set of first-order nonlinear ordinary differential equations and solved by means of the pseudo-arclength continuation technique. The nonlinear resonant response of the system along with bifurcations are presented via frequency-response curves. Moreover, the effect of different system parameter on the frequency-response curves is highlighted.
机译:基于改进的耦合应力理论,对不完善的微束的纵向-横向非线性耦合行为进行了数值研究。使用汉密尔顿原理,对于具有初始几何缺陷的系统,可以得到控制纵向和横向运动的方程。采用Galerkin方案离散化运动的两个偏微分方程,产生一组带有耦合项的二阶非线性常微分方程。该组被转化为一组新的一阶非线性常微分方程,并通过伪弧长延续技术进行求解。通过频率响应曲线来表示系统的非线性谐振响应以及分叉。此外,突出了不同系统参数对频率响应曲线的影响。

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