首页> 外文期刊>Proceedings of the Royal Society. Mathematical, physical and engineering sciences >Effect of aluminium on hydrogen-induced fracture behaviour in austenitic Fe-Mn-C steel
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Effect of aluminium on hydrogen-induced fracture behaviour in austenitic Fe-Mn-C steel

机译:铝对奥氏体Fe-Mn-C钢中氢致断裂行为的影响

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It is known empirically that the addition of aluminium as a solute in high-Mn austenitic steels dramatically improves their resistance to hydrogen-induced embrittlement. A variety of experimental techniques, including the characterization of trapping sites and high-resolution observation of fracture facets, have been used to reveal the mechanism by which aluminium induces this effect. It is found that transgranular fracture is promoted by the segregation of hydrogen to mechanical twin interfaces and to any ε-martensite that is induced during deformation. Because aluminium increases the stacking fault energy of austenite, the tendency for mechanical twinning is reduced, and the formation of deformationinduced martensite eliminated. These two effects contribute to the resistance of the aluminium-alloyed steel to hydrogen embrittlement.
机译:从经验上知道,在高锰奥氏体钢中添加铝作为溶质可以显着提高其抗氢脆性的能力。多种实验技术,包括圈闭位点的表征和高分辨率的断裂面观察,已被用来揭示铝诱导这种效应的机理。已发现,氢的偏析促进了跨晶断裂,使氢偏向机械孪生界面和变形过程中诱发的任何ε-马氏体。因为铝增加了奥氏体的堆垛层错能,所以减少了机械孪晶的趋势,并且消除了形变引起的马氏体的形成。这两个作用有助于铝合金钢抗氢脆性。

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