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INFLUENCE OF CONSTRAINT ON THE MICROMECHANICS OF FRACTURE OF AL2024

机译:约束条件对AL2024断裂微观力学的影响

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A clear understanding of the fracture behaviour of materials is of great importance in assessing the safety of cracked components. Despite this fact, there is considerable uncertainty in the effect of plastic constraint in the fracture of metallic materials. It is rare that good fracture predictions can be obtained, particularly in the case of combined in and out-of-plane constraint. Hence, the purpose of this paper is to explore this combined effect in one of the most frequently used materials in the aerospace industry: Aluminium alloy 2024. To this end, a numerical simulation is performed which includes the interaction between voids which form in the early stages of the loading and a pre-existing crack. It is shown that good predictions can be obtained for different levels of in and out-of-plane constraint using a local fracture criterion. This is confirmed by comparing the finite element predictions and the results of experimental studies.
机译:清楚了解材料的断裂行为对评估破裂部件的安全性非常重要。尽管如此,塑性约束在金属材料断裂中的作用还是存在很大的不确定性。很少能获得良好的断裂预测,特别是在平面内和平面外约束组合的情况下。因此,本文的目的是探讨在航空航天工业中最常用的一种材料:铝合金2024中的综合作用。为此,进行了数值模拟,其中包括了早期形成的空隙之间的相互作用。加载阶段和预先存在的裂缝。结果表明,使用局部断裂准则可以针对不同水平的平面内和平面外约束获得良好的预测。通过比较有限元预测和实验研究的结果可以证实这一点。

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