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Finite element analysis of ply-by-ply and equivalent stress concentrations in composite plates with multiple holes under tensile and shear loading

机译:拉伸和剪切载荷下具有多个孔的复合板的逐层和等效应力集中的有限元分析

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The finite element method is employed to analyze the stress concentration effects of multiple holes in laminated composite plates. The analysis considers the composites both as homogeneous orthotropic plates producing an equivalent property solution, and as laminates consisting of laminae of various orientations, each having its own stress concentration. Theoretical verification of special cases of the analyses are described. Finite element results for [0/±45/0]_(2s) and [0/+45/90]_(2s) laminates loaded in tension or shear are presented. The results are condensed into 'design curves' to allow the designer to estimate stress concentrations. These curves allow comparison of stress concentrations on a lamina or laminate basis, for tension or shear, and for the number, size and relative position of holes. It is concluded that the presence of multiple holes tends to increase stress concentration over that which it would be if there were only one hole. Certain sizes and locations of holes also tend to increase stress concentration.
机译:采用有限元方法分析了复合材料层合板中多个孔的应力集中效应。分析认为复合材料既是均质的正交各向异性板,可产生同等的性能,又是由各种方向的薄片组成的层压板,每个薄片都有自己的应力集中。描述了特殊情况下的理论验证。给出了[0 /±45/0] _(2s)和[0 / + 45/90] _(2s)层压板在拉伸或剪切作用下的有限元结果。将结果浓缩为“设计曲线”,以使设计人员可以估计应力集中。这些曲线允许比较叶片或层压板的应力集中,张力或剪切力以及孔的数量,大小和相对位置。可以得出结论,与只有一个孔的情况相比,存在多个孔会增加应力集中。孔的某些尺寸和位置也倾向于增加应力集中。

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