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Progressive Failure Analysis of Composites Based on Peridynamics and Refined Zigzag Theory

机译:基于周动力学和精细曲折理论的复合材料渐进破坏分析

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This study investigates the progressive failure analysis of composites by utilizing the Peridynamic Differential Operator (PDDO) for the solution of the equilibrium equations of Refined Zigzag Theory (RZT) without employing a stiffness degradation factor. In the derivation of equilibrium equations of RZT, the material property matrix is considered as spatially varying unlike the common assumption of its uniform variation. The PD representation of these equations enables the modeling of progressive failure during the deformation through the removal of PD interactions (bonds). The stiffness degradation is natural, and it is achieved by removing the PD bonds. The numerical results concern first the verification of the solution method by comparison against an analytical solution and subsequently its demonstration by considering a symmetric cross-ply laminate with a through-the-thickness crack under tension.
机译:本研究通过利用周向微分算子(PDDO)求解精制之字形理论(RZT)平衡方程而不采用刚度退化因子的方法来研究复合材料的渐进式破坏分析。在推导RZT平衡方程时,材料特性矩阵被认为是空间变化的,这与其均匀变化的一般假设不同。这些方程的PD表示能够通过消除PD相互作用(键)来对变形过程中的渐进破坏进行建模。刚度下降是自然的,并且可以通过去除PD键来实现。数值结果首先涉及通过与分析解决方案进行比较来验证解决方法,然后通过考虑在张力下具有贯穿厚度的对称交叉层状层压材料来验证其解决方法。

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