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Solute-dislocation interactions: modelling and experiments in hydrogenated nickel and nickel base alloys

机译:溶质-位错相互作用:氢化镍和镍基合金的建模和实验

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摘要

The dynamic interaction between diffusing hydrogen and mobile dislocations in nickel and binary nickel-16 wt.% chromium is analysed in terms of the solute drag phenomenon. Static strain ageing experiments are used to measure the saturated dislocation pinning force as a function of the hydrogen concentration. Hydrogen-dislocation interactions cause a shielding of the pair interactions between edge dislocations. The influence of this screening effect is analytically evaluated on the line tension of curved dislocations, and we assess its consequences on the critical force for the expansion of a dislocation loop and on the dissociation mechanism. These results are used to interpret experimental results on the plastic flow of hydrogen-charged nickel single crystals oriented for easy glide. This study illustrates the mechanisms of H-dislocation interactions and their consequences on the different contributions of hydrogen to the flow stress of nickel.
机译:根据溶质拖曳现象分析了扩散氢与镍和16wt。%二元镍中二价镍中的移动位错之间的动态相互作用。静态应变时效实验用于测量饱和位错钉扎力随氢浓度的变化。氢位错相互作用导致边缘位错之间的成对相互作用被屏蔽。通过分析评估了这种屏蔽作用对弯曲位错线张力的影响,我们评估了其对位错环扩展的临界力和解离机理的影响。这些结果用于解释取向易于滑行的带氢镍单晶塑性流动的实验结果。这项研究说明了H位错相互作用的机理及其对氢对镍流动应力的不同贡献的后果。

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