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Numerical tool with mean-stress correction for fatigue life estimation of composite plates

机译:复合板疲劳寿命估计的均衡矫正数值工具

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摘要

In this paper a numerical fatigue assessment method is presented for the cyclic life estimate of composite plates via continuous strength and stiffness degradation calculation combined with mean stress correction and multiaxial fatigue failure criterion check. The most value-adding features of this methodology are the simultaneous monitoring of mean stress dependent strength and stiffness degradation over successive cycles using empirical interaction type degradation rules. The procedure has also been coded in a form of a complex automated workflow where the actual stress state for each ply is evaluated by appropriate Finite Element assessment and the residual strength and the ply-based stiffness analysis combined with failure check is executed in an external Python routine. The practical use of the automated workflow is presented via the virtual analysis of load- and strain-controlled tension-tension type fatigue tests of unidirectional specimens as well as a cross-ply open-hole test piece. Based on the results the expected damage mechanism is discussed.
机译:本文通过连续强度和刚度降解计算提出了一种数值疲劳评估方法,用于通过连续强度和刚度降解计算与平均应力校正和多轴疲劳失效标准检查进行复合板的循环寿命估计。该方法的最大值添加特征是使用经验交互型降解规则同时监测连续循环的平均应力依赖性强度和刚度降解。该过程还以复杂的自动化工作流程的形式编码,其中通过适当的有限元评估评估每个层的实际应力状态,并且在外部Python中执行与失效检查的剩余强度和基于帘布利的刚度分析进行评估常规。自动化工作流程的实际用途是通过装载和应变控制的张力张力型疲劳试验的虚拟分析来呈现单向样品的疲劳试验以及交叉层开孔试卷。基于结果,讨论了预期的损坏机制。

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