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A multi-axial fatigue model for fiber-reinforced composite laminates based on Puck's criterion

机译:基于Puck准则的纤维增强复合材料层压板的多轴疲劳模型

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A new multi-axial fatigue model for fiber-reinforced composite laminates based on Puck's criterion is proposed in this article. In the fatigue model, fatigue master curves from the ATM are used to determine the uniaxial ply fatigue strengths and the multi-axial fatigue failure is then determined by Puck's criterion with the fatigue strengths at the ply level. The fatigue master curves from ATM are generated with limited uniaxial fatigue tests and can be applied to fatigue loading conditions with various frequencies and stress ratios. Both uniaxial and multi-axial S-N curves can be derived from thefatigue model. Fatigue failure envelopes are also generated from the model to better interpret the multi-axial fatigue failure in multi-axial stress spaces. The proposed multi-axial fatigue model is based on ply-level predictions, but it can beextended to laminate-level predictions with the CLT or numerical methods such as the FEM. Multi-axial fatigue failures caused by either local or global multi-axiality can be predicted by the model. Both uniaxial and biaxial fatigue experimentswere carried out to provide test data for establishing and validating the proposed fatigue model. The application oftheproposed multi-axial fatigue model is demonstrated with predictions of S-N curves and fatigue failure envelopes of unidirectional laminates and multi-directional laminates with typical lay-up configurations. The predictions from the proposed fatigue model are also compared with various experimental results and reasonably good agreement is observed.
机译:本文提出了一种新的基于Puck准则的纤维增强复合材料层压板多轴疲劳模型。在疲劳模型中,使用ATM的疲劳主曲线确定单轴帘布层的疲劳强度,然后根据Puck准则在层板水平上确定疲劳强度,从而确定多轴疲劳破坏。 ATM的疲劳主曲线是通过有限的单轴疲劳测试生成的,可以应用于具有各种频率和应力比的疲劳载荷条件。单轴S-N曲线和多轴S-N曲线均可从疲劳模型导出。还可以从模型中生成疲劳破坏包络,以更好地解释多轴应力空间中的多轴疲劳破坏。提出的多轴疲劳模型基于层级预测,但是可以通过CLT或数值方法(例如FEM)扩展到层级预测。该模型可以预测由局部或整体多轴性引起的多轴疲劳失效。进行了单轴和双轴疲劳实验,为建立和验证所提出的疲劳模型提供了测试数据。提出的多轴疲劳模型的应用通过对单向层合板和具有典型铺层构型的多向层合板的S-N曲线和疲劳破坏包络线的预测得到证明。还将所提出的疲劳模型的预测结果与各种实验结果进行比较,并观察到了合理的良好一致性。

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