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Two Step Ductile to Brittle Transition Behavior on Ferrite + Pearlite Structure Steel Sheet

机译:铁素体+珠光体组织钢板的两步韧性至脆性转变行为

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Although a few studies on the fracture behavior of dual phase (DP) steels have been conducted, the mechanism of impact fracture in DP steels has not yet been clarified. In this study, the ductile to brittle . transition behavior in ferrite + pearlite DP steel sheets was evaluated using the Charpy impact test with a sub-size specimen. The absorbed energy of DP steel decreased with decreasing temperature and the transition curve had a clear "middle shelf" existing between upper and lower shelves. The fracture surface at the middle shelf was flat and contained few dimples, similar to that at the lower shelf. Ferrite grains just below the fracture surface obviously received plastic strain with fracture on the middle shelf. This result indicated that the fracture mode on the middle shelf was quasi-cleavage fracture (QCF). Furthermore, on the lower shelf, ferrite grains received very small plastic strain with fracture. The two step ductile to brittle transition in this study corresponded to the fracture mode that changed from microvoid coalescence fracture to QCF and from QCF to cleavage fracture.
机译:尽管已经对双相(DP)钢的断裂行为进行了一些研究,但尚未弄清DP钢中冲击断裂的机理。在这项研究中,韧性变脆。铁氧体+珠光体DP钢板的转变行为使用夏比冲击试验和小尺寸试样进行了评估。 DP钢的吸收能随温度降低而降低,过渡曲线在上下层架之间存在清晰的“中间层架”。中层架子的骨折表面平坦,几乎没有酒窝,类似于下层架子。断裂面以下的铁素体晶粒明显受到塑性应变,中间架子断裂。该结果表明,中层架的断裂模式为准劈裂断裂(QCF)。此外,在较低的架子上,铁素体晶粒受到很小的塑性应变并产生破裂。在本研究中,从韧性过渡到脆性的两步转变对应于从微孔合并裂缝转变为QCF,从QCF转变为分裂裂缝的裂缝模式。

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