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In situ electrochemical nanoindentation: A technique for local examination of hydrogen embrittlement

机译:原位电化学纳米压痕:氢脆的局部检查技术

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Nanoindentation combined with AFM (NI-AFM) has been used to study the effect of electrochemically in situ charged hydrogen on the deformation of small volumes of nickel and copper single crystals. Hydrogen reduces the unstable elastic plastic transition load (pop-in) in nickel, but does not have any effect on copper. It has been shown that the activation energy for the onset of plasticity (dislocation nucleation) is reduced by dissolved hydrogen. This is because hydrogen reduces shear modulus and stacking fault energy in nickel, whereby the former results in hydrogen-enhanced decohesion (HEDE) and the latter in the hydrogen-enhanced plasticity (HELP) mechanism.
机译:纳米压痕与AFM(NI-AFM)结合已用于研究电化学原位带电的氢对少量镍和铜单晶变形的影响。氢减少了镍中不稳定的弹性塑性转变负荷(弹入),但对铜没有任何影响。已经表明,通过溶解的氢降低了开始可塑性(位错成核)的活化能。这是因为氢会降低镍中的剪切模量和堆垛层错能,从而前者会导致氢增强脱粘(HEDE),而后者会导致氢增强可塑性(HELP)机理。

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