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Effect of bainite fraction on hydrogen embrittlement of bainite/martensite steel

机译:贝氏体分数对贝氏体/马氏体钢氢脆的影响

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摘要

The paper quantifies how the fraction of bainite in dual-phase (bainite/martensite) steel affects its resistance to hydrogen embrittlement (HE). For this purpose, three steels that had different amounts (0, 0.9, and 1.8 wt%) of nickel were used. Heat treatment was conducted to vary the volume fraction of bainite while maintaining same strength level. Hydrogen charging was achieved using an electrochemical method, and the notch fracture strength was measured using a slow strain-rate test. The steel that had 1.8% Ni had the highest bainite fraction and showed excellent resistance to HE. This resistance was attributed to hydrogen trapping at irreversible trapping sites, which were regarded to be the cementite/ferrite interfaces with interfacial dislocations. They were more pronounced in bainite than in martensite because of higher cementite fraction in bainite than in martensite. To increase HE resistance of high-strength steels, the number of fine cementite particles in the bainite should be increased to provide irreversible trapping sites for migrating hydrogen during plastic deformation.
机译:纸张量化了双相(贝氏体/马氏体)钢中贝氏体的级分是如何影响其对氢脆化(HE)的抗性。为此目的,使用具有不同量(0,0.9和1.8wt%)镍的三种钢。进行热处理以改变贝氏体的体积分数,同时保持相同的强度水平。使用电化学方法实现氢气充电,使用慢菌速率测试测量凹口断裂强度。 1.8%Ni的钢具有最高的贝氏体分数,并且对他表示出色。这种阻力归因于不可逆捕获位点的氢捕获,其被认为是具有界面位错的渗碳酸盐/铁氧体界面。由于贝氏体在马氏体中,它们比在马氏体上更明显,而不是在马氏体上比在马氏体上更加明显。为了增加高强度钢的抗性,应增加贝氏体中的细渗碳颗粒的数量,以提供塑性变形期间迁移氢的不可逆捕获部位。

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