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Effects of carbon and chromium on microstructure evolution and mechanical properties of friction stir weldment in medium-carbon steel

机译:碳和铬对中碳钢搅拌摩擦焊组织演变及力学性能的影响

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摘要

The carbon and chromium contents significantly affected the microstructure evolution in the stir zones of medium-carbon steels during the friction stir welding (FSW). The stir zone of the 0.2%C-4%Cr steel has a high strength over 1.5 GPa with a good elongation of 30.3%, while the stir zones of the 0.4%C-2%Cr and 0.4%C-4%Cr steels had ultrahigh tensile strengths over 2 GPa with low elongation. Auto-tempered martensite is the main reason for the excellent balance of strength and ductility in the stir zone of 0.2%C-4%Cr steel.
机译:碳和铬含量显着影响摩擦搅拌焊接(FSW)过程中中碳钢搅拌区的组织演变。 0.2%C-4%Cr钢的搅拌区具有超过1.5 GPa的高强度和30.3%的良好伸长率,而0.4%C-2%Cr和0.4%C-4%Cr的搅拌区具有超过2 GPa的超高拉伸强度和低伸长率。自回火马氏体是0.2%C-4%Cr钢搅拌区中强度和延展性极好的平衡的主要原因。

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