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Effect of martensite morphology on low cycle fatigue behaviour of dual phase steels: Experimental and microstructural investigation

机译:马氏体形态对双相钢低周疲劳行为的影响:实验和微观结构研究

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摘要

The low cycle fatigue (LCF) behaviour of a dual phase (DP) steel with different martensite morphologies has been investigated in the present work. DP steels with coarse martensite morphologies show inferior LCF life in comparison with fine martensite morphologies for all martensite volume fractions examined. It is suggested that this is be due to the development of larger local plastic strain concentrations in the ferrite with a coarser microstructure, compared to the finer microstructural morphology. Fatigue cracks were observed to initiate inside ferrite grains, and to preferentially propagate through the softer ferrite phase. The average sub-cell size was finer in samples with higher martensite volume fractions, but the sub-cell size was almost unaffected by the martensite morphology.
机译:在本工作中,已经研究了具有不同马氏体形态的双相(DP)钢的低循环疲劳(LCF)行为。对于所有检查的马氏体体积分数,具有粗马氏体形态的DP钢与较精细马氏体形态相比,其LCF寿命较差。有人认为,这是由于与较细的组织形态相比,具有较粗的组织的铁素体中出现了较大的局部塑性应变浓度。观察到疲劳裂纹在铁素体晶粒内部产生,并优先通过较软的铁素体相传播。在马氏体体积分数较高的样品中,平均亚晶胞尺寸更细,但亚晶胞尺寸几乎不受马氏体形态的影响。

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