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首页> 外文期刊>International journal of non-linear mechanics >Thermal buckling and postbuckling of laminated composite beams with temperature-dependent properties
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Thermal buckling and postbuckling of laminated composite beams with temperature-dependent properties

机译:具有温度相关特性的层合组合梁的热屈曲和后屈曲

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摘要

The thermal buckling and postbuckling analysis of laminated composite beams with temperaturedependent material properties is presented. The governing equations are based on the first-order shear deformation beam theory (FSDT) and the geometrical nonlinearity is modeled using Green's strain tensor in conjunction with the von Karman assumptions. The differential quadrature method (DQM) as an accurate, simple and computationally efficient numerical tool is adopted to discretize the governing equations and the related boundary conditions. A direct iterative method is employed to obtain the critical temperature (bifurcation point) as well as the nonlinear equilibrium path (the postbuckling behavior) of symmetrically laminated beams. The applicability, rapid rate of convergence and high accuracy of the method are established via different examples and by comparing the results with those of existing in literature. Then, the effects of temperature dependence of the material properties, boundary conditions, length-to-thickness ratios, number of layers and ply angle on the thermal buckling and postbuckling characteristic of symmetrically laminated beams are investigated.
机译:提出了具有温度相关材料特性的层合复合梁的热屈曲和后屈曲分析。控制方程基于一阶剪切变形梁理论(FSDT),并且使用格林的应变张量结合von Karman假设对几何非线性进行建模。微分求积法(DQM)是一种精确,简单且计算效率高的数值工具,用于离散控制方程和相关的边界条件。采用直接迭代方法获得对称层压梁的临界温度(分叉点)以及非线性平衡路径(屈曲后的行为)。通过不同的实例,并与文献中已有的结果进行比较,确定了该方法的适用性,快速收敛速度和高精度。然后,研究了材料特性,边界条件,长度/厚度比,层数和层角的温度依赖性对对称层压梁的热屈曲和后屈曲特性的影响。

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