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首页> 外文期刊>Procedia CIRP >An Improved Fatigue Failure Model for Multidirectional Fiber-reinforced Composite Laminates under any Stress Ratios of Cyclic Loading
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An Improved Fatigue Failure Model for Multidirectional Fiber-reinforced Composite Laminates under any Stress Ratios of Cyclic Loading

机译:任意循环载荷应力比下多方向纤维增强复合材料层压板的疲劳改进模型

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摘要

This paper improves an existing model to predicting the fatigue life and material property degradation of arbitrarily oriented composite laminates under different stress ratios. Residual strain energy density is used to model fatigue behavior via a VUMAT subroutine in FEM package. The effects of strength and stiffness reduction are considered to obtain higher predictive accuracy than that derived with the stress-based method. Hashin failure criteria are employed to identify damage onset in the fiber, matrix, and in-plane shear of layers. Based on developed model, a sensitivity analysis is conducted to evaluate geometrical effects on the fatigue life of composite structures.
机译:本文对现有模型进行了改进,以预测在不同应力比下任意取向复合材料层压板的疲劳寿命和材料性能下降。残余应变能密度通过FEM软件包中的VUMAT子例程用于建模疲劳行为。强度和刚度降低的影响被认为比基于应力的方法获得的预测准确性更高。 Hashin破坏准则用于识别纤维,基质和层内平面内剪切的破坏起点。基于开发的模型,进行了敏感性分析,以评估几何形状对复合结构疲劳寿命的影响。

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