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Comparative Composite Fatigue Damage Models for Life Prediction of Laminated Composite Structures

机译:层压复合结构寿命预测的比较复合疲劳模型

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Two approaches have been compared in this paper for the failure prediction of composite laminate. The first approach is based on a progressive damage model, with the application of LaRC04 as the damage initiation criterion and softening curves to describe damage evolution. Failure strain is calculated elementwise based on a mesh characteristic length in order to ensure its energy dissipation independence of the mesh size. The fatigue damage is evaluated based on stress states and S-N curves, which will be added to the damage calculated from the static balance analysis. The second approach is a hybrid continuum damage and discrete crack representation of the composite matrix failure. While the fatigue damage is computed the same way as in the first approach,, a phantom pair element technique is applied to explicitly characterize the matrix cracking induced displacement discontinuities but the fiber failure is still simulated via a continuum damage approach. Also, the delamination in the second approach is modeled through the element stiffness degradation.
机译:在本文中比较了两种方法,用于复合层压板的故障预测。第一种方法是基于逐行损伤模型,随着危险起始标准和软化曲线的应用,旨在描述损伤的损伤。基于网格特征长度,以确保其能量耗散的网眼尺寸的能量耗散独立性来计算失效应变。基于应力状态和S-N曲线评估疲劳损坏,这将被添加到从静态平衡分析计算的损坏。第二种方法是复合矩阵失效的杂交连续损伤和离散裂缝表示。虽然疲劳损坏与在第一方法中相同的方式,但是应用幻像对元件技术以明确地表征矩阵裂化诱导的位移不连续性,但仍然通过连续损伤方法模拟纤维失败。而且,通过元素刚度降解建模第二种方法中的分层。

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