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Effect of intercritical annealing time on hydrogen embrittlement of warm- rolled medium Mn steel

机译:临界退火时间对热轧中锰钢氢脆的影响

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摘要

The susceptibility to hydrogen embrittlement (HE) of warm-rolled medium Mn steel (0.2C-5Mn-0.65i-3Al) with different microstructure characteristics obtained by changing intercritical annealing time at 750 degrees C was investigated by carrying out slow strain rate test and hydrogen thermal analysis on electrochemically hydrogen charged samples. The results show that the increase in intercritical annealing time leads to an increase of the susceptibility to HE regardless of the decrease of both strength and diffusible hydrogen content. Unlike that of typical ductile fracture characteristic of uncharged sample, the hydrogen-charged sample shows a mixed fracture characteristic of ductile intragranular and brittle interface decohesion fracture mode in the crack initiation region. The susceptibility to HE was correlated mainly to the mechanical stability of retained austenite. These results suggest that suitable intercritical annealing treatment should be performed to ensure safety service of components made of this kind steel besides obtaining excellent combination of strength and ductility.
机译:通过进行慢应变速率测试,研究了通过改变750℃的临界退火时间而获得的具有不同组织特性的热轧中锰钢(0.2C-5Mn-0.65i-3Al)对氢脆(HE)的敏感性。氢对电化学氢样品的热分析。结果表明,无论强度和扩散氢含量均下降,临界退火时间的增加都会导致对HE的敏感性增加。与不带电样品的典型延性断裂特征不同,充氢样品在裂纹萌生区域显示出延性颗粒内和脆性界面脱粘断裂模式的混合断裂特征。对HE的敏感性主要与残余奥氏体的机械稳定性相关。这些结果表明,除了获得强度和延展性的优异结合之外,还应该进行适当的临界退火处理以确保这种钢制成的组件的安全性。

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