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Modification of fatigue strain-life equation for sheet metals considering anisotropy due to crystallographic texture

机译:考虑晶体织构各向异性的钣金疲劳应变寿命方程的修正

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The fatigue behaviour of cold rolled and annealed sheet metals are influenced by the anisotropy of mechanical properties due to crystallographic texture. However, the existing fatigue strain-life models are primarily meant for isotropic material behaviour. In the present work, the Coffin-Manson equation for strain-life is modified to include the effect of anisotropy using phenomenological plasticity models. It is observed that the variation of strain hardening exponent is critical to model the strain-life behaviour. Variation of strain hardening exponent with orientation is modelled using existing anisotropic yield criteria. The prediction of fatigue life using the proposed model correlates well with the experimental results of A16061-T6 along different orientations. The proposed model can be used to predict the fatigue properties along any orientation from the fatigue data along one orientation and monotonic mechanical properties along longitudinal, transverse and diagonal directions.
机译:冷轧和退火金属板的疲劳行为受晶体结构的机械性能各向异性影响。但是,现有的疲劳应变寿命模型主要用于各向同性材料性能。在目前的工作中,使用现象学可塑性模型修改了Coffin-Manson应变寿命方程,以包括各向异性的影响。可以看出,应变硬化指数的变化对于模拟应变寿命行为至关重要。使用现有的各向异性屈服准则对应变硬化指数随方向的变化进行建模。使用该模型对疲劳寿命的预测与A16061-T6沿不同方向的实验结果密切相关。所提出的模型可用于从沿一个方向的疲劳数据和沿纵向,横向和对角线方向的单调机械性能预测沿任何方向的疲劳性能。

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