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A Comparison of Mechanical Properties and Hydrogen Embrittlement Resistance of Austempered vs Quenched and Tempered 4340 Steel

机译:奥氏体淬火和回火4340钢的力学性能和抗氢脆性的比较

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摘要

This study was conducted to compare the hydrogen embrittlement (HE) resistance of austempered 4340 steel with quenched and tempered (Q&T) 4340 steel with an identical yield strength (YS) of 1340 MPa (194 ksi). A baseline comparison showed that the austempered steel with a lower bainite microstructure exhibited higher hardness, tensile strengths, Charpy V-notch (CVN) impact toughness, and ductility at both low 233 K (?40 F) and ambient temperatures, as compared to the Q&T steel with a martensite microstructure. After machining and just prior to testing, subsized CVN specimens and notched bend specimens were immersed in hydrochloric acid-water baths. The HE resistance was higher for the austempered steel than the Q&T steel. No differences in room-temperature CVN energy resulted from hydrogen charging of the austempered and Q&T steels vs their unexposed counterparts. However, in the notched bend specimens, the hydrogen charging caused significant peak load decreases (40 pct) for the Q&T steel, while the austempered steel exhibited only small (6 pct) decreases in peak load. Intergranular (IG) fracture occurred solely in the charged Q&T bend samples, which is further evidence of their embrittlement.
机译:进行这项研究是为了比较奥氏体4340钢与淬火和回火(Q&T)4340钢的屈服强度(YS)为1340 MPa(194 ksi)时的耐氢脆性。基线比较表明,与低碳钢相比,低贝氏体组织的奥氏体钢在较低的233 K(?40 F)和环境温度下均具有较高的硬度,抗张强度,夏比V型缺口(CVN)冲击韧性和延展性。具有马氏体组织的Q&T钢。加工后和即将进行测试之前,将小尺寸的CVN标本和缺口弯曲标本浸入盐酸-水浴中。奥氏体钢的HE电阻高于Q&T钢。奥氏体钢和Q&T钢与未暴露的钢相比,充氢不会导致室温CVN能量的差异。然而,在有缺口的弯曲试样中,氢充入导致Q&T钢的峰值载荷显着下降(40 pct),而奥氏体钢仅表现出很小的(6 pct)峰值载荷下降。粒间(IG)断裂仅发生在带电的Q&T弯曲样品中,这进一步证明了它们的脆性。

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