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A variational model for free-edge interlaminar stress analysis in general symmetric and thin-ply composite laminates

机译:普通对称薄复合材料层合板自由边缘层间应力分析的变分模型

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AbstractA variational model is developed to exactly determine both stress and displacement fields at free edges of general symmetric composite laminate strips under thermomechanical loads. By partitioning the total stresses in a composite with free edges into unperturbed (without free edge) and perturbation stresses and using the minimum complementary energy principle, the optimal stress and displacement fields are derived that exactly satisfy equilibrium, compatibility, boundary and continuity conditions. The paper extends the theory of stress-based variational stress transfer so that the effects of both applied traction and displacement loads can be considered. It has been also shown how the displacement field can be determined for a stress-based variational approach. The results are compared to refined finite element results. The superiority of the developed method over finite element method, both in terms of accuracy and computational efficiency, is discussed. The method is also applicable to thin-ply laminates and is computationally efficient.
机译: 摘要 开发了一种变分模型,以精确确定在热机械载荷下一般对称复合层板的自由边缘处的应力场和位移场。通过将具有自由边缘的复合材料中的总应力划分为无扰动(无自由边缘)和摄动应力,并使用最小互补能原理,得出了完全满足平衡,相容性,边界和连续性条件的最佳应力和位移场。本文扩展了基于应力的变化应力传递理论,从而可以考虑施加的牵引力和位移载荷的影响。还显示了如何为基于应力的变分方法确定位移场。将结果与改进的有限元结果进行比较。在准确性和计算效率方面,都讨论了所开发方法相对于有限元方法的优越性。该方法也适用于薄层板,并且计算效率高。

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