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Multiscale analysis of hydrogen-induced softening in f.c.c. nickel single crystals oriented for multiple-slips: elastic screening effect

机译:氢在f.c.c中的多尺度分析多滑镍单晶:弹性屏蔽效果

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摘要

Hydrogen-deformation interactions and their role in plasticity are well accepted as key features in understanding hydrogen embrittlement. In order to understand the nature of the hydrogen-induced softening process in f.c.c. metals, a substantial effort was made in this study to determine the effect of hydrogen on the tensile stress-strain behavior of nickel single crystal oriented for multiple-slips. It was clearly established that the hydrogen softening process was the result of a shielding of the elastic interactions at different scales. Hydrogen-induced softening was then formalized by a screening factor S of 0.8 ± 0.05 for 7 wppm of hydrogen, which can be incorporated into standard dislocation theory processes. The amplitude of softening suggests that the shielding process is mainly responsible for the stress softening through the formation of vacancy clusters, rather than a direct impact of hydrogen. This effect is expected to be of major importance when revisiting the impact of hydrogen on the processes causing damage to the structural alloys used in engineering.
机译:氢变形相互作用及其在可塑性中的作用已被广泛接受为理解氢脆的关键特征。为了了解氢在f.c.c中引起的软化过程的性质。在研究中,人们做出了巨大的努力来确定氢对取向为多滑的镍单晶的拉伸应力-应变行为的影响。显然已经确定,氢软化过程是在不同尺度下屏蔽弹性相互作用的结果。氢诱导的软化然后通过针对7 wppm的氢的0.8±0.05的筛选系数S来形式化,可以将其纳入标准的位错理论过程中。软化的幅度表明,屏蔽过程主要是通过空位簇的形成而不是氢的直接冲击来引起应力软化。当重新探究氢对工艺造成的影响,而这种工艺对工程中使用的结构合金造成损害时,预计这种作用将是至关重要的。

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