首页> 外文期刊>Proceedings of the institution of mechanical engineers >Nonlinear forced vibration analysis of higher order shear-deformable functionally graded microbeam resting on nonlinear elastic foundation based on modified couple stress theory
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Nonlinear forced vibration analysis of higher order shear-deformable functionally graded microbeam resting on nonlinear elastic foundation based on modified couple stress theory

机译:基于改进耦合应力理论的非线性弹性基础上高阶剪切可变形功能渐变微沟的非线性强制振动分析

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摘要

Geometrically nonlinear forced vibration analysis of higher order shear-deformable functionally graded microbeam is presented, where the beam is supported on a three-parameter Winkler-Pasternak-type nonlinear elastic foundation and subjected to a harmonically varying distributed load. The modified couple stress theory of elasticity is employed in the formulation to address the size-dependent effect. Hamilton's principle is used to derive the displacement-based governing equations considering Reddy's third-order shear deformation theory. Ritz method is followed to convert the governing equations to nonlinear algebraic form in the frequency domain by approximating the displacement fields. A mixed algorithm for nonlinear equations based on the iterative substitution method with successive relaxation and Broyden's method is successfully employed to solve the stable regions of the frequency-response curves. The results are presented for hinged and clamped beams, and the effects of different parameters such as size-dependent thickness, load amplitude, foundation parameters, and gradation-profile parameter are studied. The effect of thermal loading due to uniform temperature rise is also studied considering temperature-dependent material properties.
机译:提出了高阶剪切可变形功能梯度微波的几何非线性强制振动分析,其中光束支撑在三参数Winkler-Pasternak型非线性弹性基础上,并经受谐振分布式负载。在制剂中使用改性耦合的弹性应力理论以解决大小依赖性效应。汉密尔顿的原则用于得出考虑Reddy的三阶剪切变形理论的基于位移的管理方程。遵循RITZ方法以通过近似位移场将控制方程转换为频域中的非线性代数形式。成功采用了一种基于迭代替代方法的非线性方程的混合算法和泡顿方法,以解决频率响应曲线的稳定区域。研究了结果,用于铰接和夹紧梁,并研究了不同参数的效果,如尺寸依赖性厚度,负载幅度,基础参数和灰度分布参数。考虑到温度依赖性材料特性,还研究了由于温度升高引起的热负荷的影响。

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