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Modelling of the Charpy Impact Test in the DBTT Mange

机译:DBTT Mange中夏比冲击试验的建模

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The finite element method was used in order to compute the energy balance and the stress-strain distribution in the Charpy V-notch specimen, Inertial effects were taken into account by a fully dynamic computation. It was shown that inertial oscillations are damped by viscoplasticity ahead the notch and vanish rapidly. 3D modelling is needed since large scale yielding and ductile crack growth occur. The ductile crack front is curved, which is important to account for in order to correctly describe the stress distribution in the specimen. Ductile crack growth in Charpy specimen was predicted by the GTN (Gurson-Tvergaard-Needleman) model. The GTN model allows a good failure prediction with strain rate and temperature independent damage parameters.
机译:使用有限元方法以计算夏比V-intch样本中的能量平衡和应力 - 应变分布,通过完全动态计算考虑了惯性效应。结果表明,惯性振荡被缺陷塑料抑制在凹口前并迅速消失。由于发生大规模屈服和延展性裂纹增长,因此需要3D建模。延展性裂纹前沿是弯曲的,这对于为了正确描述样品中的应力分布而言是重要的。 GTN(Gurson-Tvergaard-Conderleman)模型预测了夏皮标本中的延展性裂纹生长。 GTN模型允许具有应变速率和温度无关的损伤参数的良好故障预测。

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