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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >Stochastic Finite Element Buckling Analysis of Laminated Plates With Circular Cutout Under Uniaxial Compression
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Stochastic Finite Element Buckling Analysis of Laminated Plates With Circular Cutout Under Uniaxial Compression

机译:单轴压缩下圆形切口层压板的随机有限元屈曲分析

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A generalized stochastic buckling analysis of laminated composite plates, with and without centrally located circular cutouts having random material properties, is presented under uniaxial compressive loading. In this analysis, the layerwise plate model is used to solve both prebuckling and buckling problems. The stochastic analysis is done based on mean centered first-order perturbation technique. The mean buckling strength of composite plates is validated with results available in the literature. It has been observed that the present analysis can predict buckling load accurately even for plates with large cutouts. Micromechanics based approach is used to study the effect of variation in microlevel constituents on the effective macrolevel properties like elastic moduli. Consequently, the effect of uncertainty in these material properties on the buckling strength of the laminated plates is studied. Parametric studies are carried out to see the effect of hole size, layups, and boundary conditions on the mean and variance of plate buckling strength.
机译:在单轴压缩载荷下,对具有和不具有具有随机材料特性的位于中心的圆形切口的层压复合材料板进行了广义随机屈曲分析。在此分析中,使用分层板模型来解决预屈曲和屈曲问题。随机分析是基于均值中心的一阶微扰技术进行的。复合板的平均屈曲强度已通过文献中的结果得到验证。已经观察到,即使对于具有大切口的板,本分析也可以准确地预测屈曲载荷。基于微力学的方法用于研究微尺度成分变化对有效宏观尺度特性(如弹性模量)的影响。因此,研究了这些材料特性的不确定性对层压板的屈曲强度的影响。进行了参数研究,以了解孔尺寸,叠层和边界条件对板屈曲强度平均值和方差的影响。

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