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首页> 外文期刊>Engineering Fracture Mechanics >Prediction of cleavage crack propagation path in a nuclear pressure vessel steel
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Prediction of cleavage crack propagation path in a nuclear pressure vessel steel

机译:核压容器钢中裂解裂纹传播路径的预测

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摘要

A propagation criterion based on maximum principal stress is proposed to predict the cleavage crack propagation in a nuclear vessel steel. Experiments are performed on three specimen geo-metries: standard Compact Tensile, precracked ring (mixed mode) and Extended Compact Tensile. Their crack paths are respectively directionally stable and straight, directionally stable and curved, directionally unstable and deflected. Numerical computations are performed by eXtended Finite Element Method. The propagation criterion, combined with a deterministic direction criterion based on the maximum hoop stress provides good predictions for directionally stable crack paths whereas predicting directionally unstable crack paths requires a probabilistic direction criterion.
机译:提出了一种基于最大主应力的传播标准,以预测核血管钢中的切割裂纹繁殖。 实验是在三个标本地理造币座上进行的:标准紧凑型拉伸,预粘的环(混合模式)和延伸的紧凑型拉伸。 它们的裂纹路径分别定向稳定,方向,方向稳定,弯曲,方向不稳定和偏转。 通过扩展有限元方法执行数值计算。 基于最大箍应力的传播标准与确定性方向标准组合提供了对定向稳定的裂纹路径的良好预测,而预测方向不稳定的裂纹路径需要概率的方向标准。

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