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首页> 外文期刊>International Journal of Fracture >A modeling approach for the complete ductile-brittle transition region: cohesive zone in combination with a non-local Gurson-moiel
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A modeling approach for the complete ductile-brittle transition region: cohesive zone in combination with a non-local Gurson-moiel

机译:完整的延性-脆性过渡区域的建模方法:结合非局部Gurson-moiel的粘性区

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摘要

The present study deals with the simulation of crack propagation in the ductile-brittle transition region on the macro-scale. In contrast to most studies in the literature, not only the ductile softening by void growth and coalescence is incorporated but also the particular material degradation by cleavage. A non-local Gurson-type model is employed together with a cohesive zone to simulate both failure mechanisms simultaneously. This consistent formulation of a boundary value problem allows arbitrary high mesh resolutions. The results show that the model captures qualitative effects of corresponding experiments such as the cleavage initiation in front of a stretch zone, the forma- tion of secondary cracks and possible crack arrest. The influence of the temperature on the predicted toughness is reproduced in the whole ductile-brittle transi- tion region without introducing temperature-dependent fit parameters. A comparison with experimental data shows that the shift of the ductile-brittle transition tem- perature associated with a lower crack-tip constraint can be predicted quantitatively.
机译:本研究在宏观尺度上研究了在韧性-脆性过渡区中裂纹扩展的模拟。与文献中的大多数研究相反,不仅结合了由于空洞生长和聚结而产生的韧性软化,而且还包括了由于裂解引起的特定材料降解。将非局部Gurson型模型与内聚区一起使用以同时模拟两种破坏机制。边界值问题的这种一致表述允许任意高的网格分辨率。结果表明,该模型捕获了相应实验的定性效果,例如在拉伸区前面的劈裂开始,次级裂纹的形成和可能的裂纹止裂。温度对预测韧性的影响在整个韧性-脆性转变区域内得以再现,而没有引入温度相关的拟合参数。与实验数据的比较表明,与较低的裂纹尖端约束相关的韧性-脆性转变温度的变化可以定量预测。

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