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Analytical Solution for Bending of Laminated Composites with Matrix Cracks

机译:具有基体裂纹的层合复合材料弯曲的解析解

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An analytical, closed form solution is developed for balanced (not necessarily symmetric) laminates subjected to flexural deformation. The analytical solution provides spatial distribution of displacements and curvature, from which in-plane and intralaminar strains and stresses are obtained through differentiation and constitutive equations. The deformation is shown to consist of a homogeneous deformation plus perturbations near the crack tip. A methodology is proposed to separate the perturbation from the homogeneous deformation, to eliminate ill-conditioning of the eigenvalue/eigenvector problems that occurs otherwise. It is shown that, while the homogeneous deformation provides a macroscopic measure of damage in terms of reduced flexural stiffness of the laminate, the perturbation solution provides a detailed account of the intralaminar shear induced near the crack, which is used to calculate the extent of shear lag and the maximum intralaminar shear stress. The intact portion of the laminate is modeled without lumping it into a single equivalent lamina. Furthermore, laminas can be subdivided into multiple sub-laminates to increase the accuracy of the representation of intralaminar/interlaminar shear, which is shown to improve the predicted value of maximum interlaminar shear stress, which in turn is important for the prediction of matrix-crack induced delamination. (C) 2015 Elsevier Ltd. All rights reserved.
机译:开发了一种解析的,封闭形式的解决方案,用于承受挠曲变形的平衡(不一定对称)层压板。解析解提供了位移和曲率的空间分布,通过微分和本构方程可从中获得平面内和层内应变和应力。变形显示为均匀变形加上裂纹尖端附近的扰动。提出了一种将扰动与均匀变形分开的方法,以消除否则会发生的特征值/特征向量问题的不良情况。结果表明,虽然均匀变形从减小的层合挠曲刚度的角度提供了破坏的宏观度量,但扰动解提供了裂纹附近引起的层内剪切的详细信息,该层用于计算剪切程度滞后和最大层内剪切应力。对层压板的完整部分进行建模,而不必将其合并为单个等效的薄片。此外,层板可细分为多个子层板,以提高层内/层间剪切的表示精度,这表明可提高最大层间剪切应力的预测值,这反过来对于预测基体裂纹非常重要引起分层。 (C)2015 Elsevier Ltd.保留所有权利。

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