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首页> 外文期刊>Journal of Engineering Mechanics >Free-Edge Interlaminar Stress Analysis of Composite Laminates Using Interface Modeling
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Free-Edge Interlaminar Stress Analysis of Composite Laminates Using Interface Modeling

机译:使用界面建模的复合材料层板自由边缘层间应力分析

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Interlaminar stresses near free edges in composite laminates were analyzed by considering interface modeling. Previous regular analytical solutions for free edge stress are not rigorous in their linear elastic modeling with dissimilar interfaces between homogeneous plies of laminated composites. Singular stress is not practical in reality at the free edge because it nearly never occurs in real situations. Until now, the analytical nonsingular approximate solutions have been accepted even though they cannot show the rigorous singular behavior at the free edges; this shortcoming is corrected within linear elasticity dissimilar interface modeling. In this study, a regular analytical solution is provided, which is rigorous within the linear elastic model featuring smoothly varying material properties through the thickness of the laminates. This interface modeling provides not only nonsingular stresses but concentrated finite interlaminar stresses using the principle of complementary virtual work and the stresses that satisfy the traction-free conditions not only at the free edges but also at the top and bottom surfaces of laminates are obtained. Significant reductions in stresses at the free edge were observed compared with the results without interface modeling. Various stress analyses were performed and the results demonstrate the usefulness of the proposed interface modeling.
机译:通过考虑界面建模来分析复合材料层压板自由边缘附近的层间应力。以前关于自由边缘应力的常规解析解决方案在其线性弹性建模中并不严格,因为层压复合材料的均质层之间的界面不同。奇异应力在自由边缘处实际上是不切实际的,因为它在实际情况下几乎不会发生。到目前为止,解析非奇异近似解已经被接受,即使它们不能在自由边缘显示出严格的奇异行为。此缺点已在线性弹性异种界面建模中得到纠正。在这项研究中,提供了一种常规的分析解决方案,该解决方案在线性弹性模型中非常严格,其特征在于可以通过层压板的厚度平滑地改变材料的性能。该界面建模不仅利用互补虚拟功的原理提供了非奇异应力,而且还提供了集中的有限层间应力,并且不仅在自由边缘而且在层压板的顶面和底面都获得了满足无牵引条件的应力。与没有界面建模的结果相比,观察到自由边缘处的应力显着降低。进行了各种应力分析,结果证明了提出的界面建模的有用性。

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