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A pathway to produce strong and tough martensitic stainless steels resistance spot welds

机译:一种生产强硬马氏体不锈钢抵抗点焊的途径

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摘要

Martensitic stainless steel (MSS) resistance spot welds are prone to quasi-cleavage interfacial failure with very low energy absorption capability due to formation of hard and brittle carbon and chromium rich martensite in the fusion zone (FZ). In this work, a new pathway is proposed to enhance strength/toughness of the MSS resistance spot welds based on modification of the FZ composition/microstructure via introducing a nickel interlayer. This altered the FZ microstructure from dual phase microstructure of martensite and A-ferrite to austenitic microstructure with finely dispersed ultra-fine chromium rich carbides. Formation of a tough predominately austenitic microstructure in the FZ enabled achieving a pullout failure with an unprecedented level of energy absorption.
机译:马氏体不锈钢(MSS)电阻点焊接易于含有非常低的能量吸收能力,由于在融合区(FZ)中的硬质碳和铬的马氏体的形成而具有非常低的能量吸收能力。 在这项工作中,提出了一种新的途径,以基于通过引入镍层间的FZ组成/微观结构的改性来提高MSS电阻点焊的强度/韧性。 这改变了马氏体双相微观结构的FZ微观结构,与富含富含富含富含富含富含碳化物的奥氏体微观结构。 在FZ中形成艰难的主要奥氏体微观结构,实现了具有前所未有的能量吸收水平的拉出失效。

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