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

机译:马氏体体积分数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 volume fractions has been investigated, with particular focus on fatigue life, cyclic hardening/softening behaviour and microstructural evolution. DP steels with martensite volume fractions between 13% and 88% were produced and their monotonic and cyclic deformation behaviours evaluated. The LCF life has been examined in depth and compared with published literature. It has been concluded that, once normalised for plastic strain amplitude, the fatigue life was found to be significantly reduced by an increase in the martensite volume fraction. All alloys were observed to show some initial cyclic hardening followed by cyclic softening. Clear sub-cell formation occurred in ferrite grains irrespective of the martensite volume fraction, and it is suggested that this cell formation and martensite softening are responsible for the cyclic softening behaviour.
机译:已经研究了具有不同马氏体体积分数的双相(DP)钢的低周疲劳(LCF)行为,特别关注疲劳寿命,循环硬化/软化行为和微观组织演变。生产出马氏体体积分数在13%至88%之间的DP钢,并评估了其单调和循环变形行为。 LCF的寿命已得到深入研究,并与已发表的文献进行了比较。得出的结论是,一旦对塑性应变幅度进行了标准化,就会发现马氏体体积分数的增加会显着降低疲劳寿命。观察到所有合金均表现出一些初始的循环硬化,然后出现循环软化。无论马氏体的体积分数如何,在铁素体晶粒中均会出现清晰的亚晶胞形成,这表明这种晶胞的形成和马氏体的软化是循环软化行为的原因。

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