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Interlaminar shear stresses in laminated composite plates under thermal and mechanical loading

机译:热和机械载荷作用下层压复合板的层间剪切应力

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摘要

The combined effects of thermal and mechanical loadings on the distribution of interlaminar shear stresses in composite laminated thin and moderately thick composite plates are investigated numerically using the commercially available software package MSC NASTRAN/PATRAN. The validity of the present finite element analysis is demonstrated by comparing the interlaminar shear stresses evaluated using the experimental measurement. Various parametric studies are also performed to investigate the effect of stacking sequences, length to thickness ratio, and boundary conditions on the interlaminar shear stresses with identical mechanical and thermal loadings. It is observed that the effect of thermal environment on the interlaminar shear stresses in carbon-epoxy fiber-reinforced composite laminated plates are much higher in asymmetric cross-ply laminate and anti-symmetric laminate compared to symmetric cross-ply laminate and unidirectional laminate under identical loadings and boundary conditions.
机译:使用商用软件包MSC NASTRAN / PATRAN,以数值方式研究了热负荷和机械负荷对复合层压薄中厚板中层间剪切应力分布的综合影响。通过比较使用实验测量评估的层间剪切应力,可以证明本有限元分析的有效性。还进行了各种参数研究,以研究在相同的机械载荷和热载荷下,堆垛顺序,长度与厚度之比以及边界条件对层间剪切应力的影响。可以看出,在相同的条件下,与对称的交叉层板和单向的层板相比,热环境对碳-环氧纤维增强复合材料层板的层间剪切应力的影响要大得多。载荷和边界条件。

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