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Effect of grain size on hydrogen embrittlement in stable austenitic high-Mn TWIP and high-N stainless steels

机译:晶粒尺寸对稳定奥氏体高Mn TWIP和高N不锈钢中氢脆性的影响

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摘要

Two stable austenitic steels, 20Cr-11Ni-5Mn-0.3N (wt%) stainless steel (STS) and 18Mn-1.5Al-0.6C (wt%) twinning-induced plasticity steel (TWIP), were investigated to understand the effect of grain size on hydrogen embrittlement (HE). Grain refinement promoted HE in the STS but suppressed HE in the TWIP. These opposite effects occurred because the steel composition affected deformation mechanism. Cr-N pair enhanced short-range ordering (SRO) in STS, which promoted planar slip and delayed mechanical twinning. In contrast, TWIP exhibited mechanical twinning which was more active in coarser grains. Final dislocation density after tensile deformation was increased by grain refinement in STS, but was decreased in TWIP. The damaging effects of hydrogen on strain energy at interfaces and on interfacial bonding strength were controlled by dislocation density; therefore, increase in dislocation density led to increase in susceptibility to HE. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:研究了两种稳定的奥氏体钢20Cr-11Ni-5Mn-0.3N(wt%)不锈钢(STS)和18Mn-1.5Al-0.6C(wt%)孪生诱导塑性钢(TWIP),以了解其影响。氢脆(HE)的晶粒尺寸。晶粒细化促进了STS中的HE,但抑制了TWIP中的HE。由于钢成分影响变形机理,因此产生了相反的效果。 Cr-N对增强了STS中的短程有序性(SRO),从而促进了平面滑移并延迟了机械孪晶。相反,TWIP表现出机械孪晶,在较粗的晶粒中更活跃。拉伸变形后的最终位错密度在STS中通过晶粒细化而增加,但在TWIP中降低。氢对位错密度的控制对界面处的应变能和界面结合强度的破坏作用。因此,位错密度的增加导致对HE的敏感性增加。 (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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