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Thermal postbuckling behavior of size-dependent functionally graded Timoshenko microbeams

机译:尺寸相关的功能梯度Timoshenko微束的热屈曲行为

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摘要

The thermal postbuckling characteristics of microbeams made of functionally graded materials (FGMs) undergoing thermal loads are investigated based on the modified strain gradient theory (MSGT). The volume fraction of the ceramic and metal phases of FGM microbeams is expressed by using a power low function. The non-classical beam model presented herein is capable of interpreting size effects through introducing material length scale parameters and encompasses the modified couple stress theory (MCST) and classical theory (CT). Based on the non-linear Timoshenko beam theory and the principle of virtual work, the stability equations and associated boundary conditions are derived and are then solved through the generalized differential quadrature (GDQ) method in conjunction with a direct approach without linearization. The influences of the material gradient index, length scale parameter, and boundary conditions on the thermal postbuckling behavior of FGM microbeams are comprehensively investigated. Also, this study compares the results obtained from the MSGT with those from CT. The effect of geometrical imperfection on the buckling deformation of microbeams in prebuckled and postbuckled states is discussed.
机译:基于改进的应变梯度理论(MSGT),研究了功能梯度材料(FGM)制成的微梁承受热载荷的热后屈曲特性。 FGM微束的陶瓷和金属相的体积分数通过使用低功率函数表示。本文介绍的非经典梁模型能够通过引入材料长度比例参数来解释尺寸效应,并且涵盖了改进的耦合应力理论(MCST)和经典理论(CT)。基于非线性Timoshenko梁理论和虚功原理,推导了稳定性方程和相关的边界条件,然后通过广义微分正交(GDQ)方法与直接方法(无需线性化)相结合进行求解。全面研究了材料梯度指数,长度尺度参数和边界条件对FGM微梁热后屈曲行为的影响。此外,本研究还比较了从MSGT和CT获得的结果。讨论了几何缺陷对预屈曲和后屈曲状态下微梁屈曲变形的影响。

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