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首页> 外文期刊>International journal of hydrogen energy >On hydrogen-induced plastic flow localization during void growth and coalescence
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On hydrogen-induced plastic flow localization during void growth and coalescence

机译:空穴生长和聚结过程中氢诱导的塑性流局部化

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Hydrogen-enhanced localized plasticity (HELP) is recognized as a viable mechanism of hydrogen embrittlement. A possible way by which the HELP mechanism can bring about macroscopic material failure is through hydrogen-induced accelerated void growth and coalescence. Assuming a periodic array of spherical voids loaded axisymmetrically, we investigate the hydrogen effect on the occurrence of plastic flow localization upon void growth and its dependence on macroscopic stress triaxiality. Under a macroscopic stress triaxiality equal to 1 and prior to void coalescence, the finite element calculation results obtained with material data relevant to A533B steel indicate that a hydrogen-induced localized shear band forms at an angle of about 45° from the axis of symmetry. At triaxiality equal to 3, void coalescence takes place by accelerated hydrogen-induced localization of plasticity mainly in the ligament between the voids. Lastly, we discuss the numerical results within the context of experimental observations on void growth and coalescence in the presence of hydrogen.
机译:氢增强的局部可塑性(HELP)被认为是氢脆的可行机制。 HELP机理可能导致宏观材料失效的一种可能方法是通过氢诱导的加速空隙生长和聚结。假定轴对称加载的球形空隙的周期性阵列,我们研究了氢对空隙生长后塑性流局部化的发生及其对宏观应力三轴性的依赖性的氢效应。在等于1的宏观应力三轴度下并且在空隙聚结之前,利用与A533B钢有关的材料数据获得的有限元计算结果表明,氢致局部剪切带与对称轴成约45°角。在等于3的三轴度下,空隙的聚结主要通过在空隙之间的韧带中由氢引起的可塑性加速定位而发生。最后,我们在有氢存在的空隙生长和聚结的实验观察范围内讨论了数值结果。

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