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Continuum damage mechanics based approach to the fatigue life prediction of cast aluminium alloy with considering the effect of porosity

机译:考虑孔隙率影响的基于连续损伤力学的铸造铝合金疲劳寿命预测方法

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摘要

A damage mechanics based approach is applied for the study of fatigue behaviour of high pressure die cast ADC12 aluminium alloy. A damage coupled elastoplastic constitutive model is presented according to the concept of effective stress and the hypothesis of strain equivalence. An elastic fatigue damage model taking into account the pore-induced stress concentration is developed to investigate fatigue damage evolution of the specimens subjected to cyclic loading. The predicted lives for the specimens with different sizes of pores are consistent with the experimental data. The pore-induced fatigue damage and the variation of fatigue life along with the size of pores are also investigated.
机译:基于损伤力学的方法被用于研究高压压铸ADC12铝合金的疲劳行为。根据有效应力的概念和应变当量的假设,提出了一种损伤耦合弹塑性本构模型。建立了考虑孔引起应力集中的弹性疲劳损伤模型,以研究承受循环载荷的试样的疲劳损伤演变。具有不同孔径的样品的预期寿命与实验数据一致。还研究了孔引起的疲劳损伤以及疲劳寿命随孔尺寸的变化。

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