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Susceptibility of different crystal orientations and grain boundaries of polycrystalline Ni to hydrogen blister formation

机译:多晶镍的不同晶体取向和晶界对氢气泡形成的敏感性

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The effects of crystallographic orientations, grain boundaries (GBs) and the possible contribution of dislocations to the diffusion of hydrogen were studied. Our experimental results show that the (001) crystal orientation has the minimum number of hydrogen induced blisters compared to other crystal orientations. We observed formation of blisters along the slip traces after plastic deformation and along special GBs. It shows that the interaction between dissolved hydrogen and lattice defects (e.g. dislocations and GBs) could cause void formation and ultimately induce intergranular and/or transgranular cracks in nickel. In this work we analyzed hundreds of GBs mostly with a misorientation of less than 60 degrees. It was observed that the random GBs with a misorientation between 30 and 40 degrees have the fastest hydrogen diffusion rate and are very sensitive to hydrogen segregation. In contrast, random GBs with a misorientation below 25 degrees, low angle GBs and the coincidence site lattice (CSL) GBs are much less prone to blister formation. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:研究了晶体取向,晶界(GBs)和位错对氢扩散的可能贡献的影响。我们的实验结果表明,与其他晶体取向相比,(001)晶体取向具有最少数量的氢致气泡。我们观察到塑性变形后沿滑痕和特殊GBs形成气泡。它表明溶解的氢和晶格缺陷(例如位错和GBs)之间的相互作用可能导致形成空隙并最终导致镍中的晶间和/或跨晶裂纹。在这项工作中,我们分析了数百个GB,大多数GB的取向都小于60度。观察到,取向错误在30至40度之间的随机GB具有最快的氢扩散速率,并且对氢的离解非常敏感。相反,取向错误低于25度的随机GB,低角度GB和重合点阵(CSL)GB则更不容易形成气泡。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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