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Hydrogen embrittlement susceptibility of tempered 9%Cr-1% Mo steel

机译:回火9%Cr-1%Mo钢的氢脆敏感性

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The influence of the subsurface hydrogen activity on the hydrogen embrittlement (HE) susceptibility of a tempered 9%Cr-1%Mo ferritic-martensitic steel (T91) has been studied by constant extension rate tests (CERT) performed under cathodic charging during straining at 20 ℃. Changes in the hydrogen activity on the surface were obtained by varying the cathodic current density imposed during a tensile test completed to fracture. The broken samples were observed by scanning electron microscopy (SEM). The results show a strong dependence of the extent of the brittle zone with the subsurface hydrogen activity. This effect could be attributed to an enhancement of the apparent diffusion coefficient of hydrogen when increasing H activity. Increasing H activity could enhance both the trapping rate on pre-existing and strain-induced traps and H dragging by moving traps such as dislocations.
机译:通过恒定拉伸速率试验(CERT)研究了在20℃下应变下阴极充电时表面下氢活度对回火的9%Cr-1%Mo铁素体-马氏体钢(T91)的氢脆性(HE)敏感性的影响。 20℃。通过改变在完成断裂的拉伸试验过程中施加的阴极电流密度,可以得到表面氢活性的变化。通过扫描电子显微镜(SEM)观察破碎的样品。结果表明,脆性区的范围与地下氢活度密切相关。这种影响可以归因于当增加H活性时氢的表观扩散系数的增加。氢活度的增加既可以提高对既存的和应变诱发的陷阱的俘获率,又可以通过移动诸如位错的陷阱来拖曳氢。

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