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On the numerical simulation of fatigue driven delamination with interface elements

机译:界面单元疲劳驱动分层的数值模拟

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摘要

This paper investigates robustness and efficiency of a method for the numerical simulation of fatigue driven delamination growth in laminated composites. The method is based on the fatigue degradation of a bilinear interface element and the paper studies the dependence of the predicted behaviour on the interface element size. DELTA l, and the number of cycles per increment, DELTA N. It is concluded that the value of DELTA N must be small enough to ensure that at least two increments are required to advance the crack by DELTA l. It is also shown that DELTA l must be sufficiently small so that at least two interface elements lie in the cohesive zone ahead of the crack tip. The paper also proposes extensions of the model to include a non-zero minimum cyclic load value and an improved algorithm for mixed-mode fatigue driven delamination growth.
机译:本文研究了一种疲劳强度驱动的分层复合材料中的疲劳驱动分层增长数值模拟方法的有效性。该方法基于双线性界面单元的疲劳退化,并且本文研究了预测行为对界面单元尺寸的依赖性。得出结论:DELTA N的值必须足够小,以确保至少需要两个增量才能使裂纹前进DELTA 1。还表明,Δ1必须足够小,以使至少两个界面元件位于裂纹尖端之前的内聚区域中。本文还提出了该模型的扩展,以包括一个非零的最小循环载荷值和一种改进的混合模式疲劳驱动分层增长算法。

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