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Quantitative analysis of tensile deformation behavior by In-Situ neutron diffraction for Ferrite-Martensite type dual-phase steels

机译:铁素体-马氏体型双相钢的原位中子衍射定量分析其拉伸变形行为

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摘要

The yielding and work-hardening behavior of ferrite- martensite type dual-phase (DP) alloys were clearly analyzed using the in-situ neutron diffraction technique. We successfully established a new method to estimate the stress and strain partitioning between ferrite and martensite phase during loading. Although these phases exhibit the same lattice structure with similar lattice parameters, their lattice strains on (110), (200) and (211) are obviously different from each other under an applied stress. The misfit strains between those phases were clearly accompanied with the phase-scaled internal stress (phase stress). Thus, the martensite phase yielded by higher applied stress than macro-yield stress, which resulted in high work-hardening rate of the DP steel. We also demonstrated that ferrite phase fraction influenced work-hardening behavior.
机译:使用原位中子衍射技术清楚地分析了铁素体-马氏体型双相(DP)合金的屈服和加工硬化行为。我们成功建立了一种新的方法来估算加载过程中铁素体和马氏体相之间的应力和应变分配。尽管这些相具有相同的晶格结构和相似的晶格参数,但它们在(110),(200)和(211)上的晶格应变在施加应力的情况下显然彼此不同。这些相之间的失配应变显然伴随有相标度的内部应力(相应力)。因此,马氏体相通过比大屈服应力更高的施加应力而屈服,这导致了DP钢的高加工硬化率。我们还证明了铁素体相分数会影响加工硬化行为。

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