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Comparison of Hole Expansion Properties of Quench Partitioned, Quench Tempered and Austempered Steels

机译:淬火和分配,淬火和钢化钢孔膨胀性能的比较

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摘要

Quenching & Partitioning (Q&P) is receiving increased attention as a novel Advanced High Strength Steel (AHSS) processing route as promising tensile properties of the "third generation" have been reported. The current contribution reports hole expansion ratios (HER) of Q&P steels and compares the values with HERs obtained for "conventional" AHSS processing routes such as austempering and Quench & Tempering (Q&T). Intercritically annealed C-Mn-Al-Si-P and fully austenitized C-Mn-Si microstructures were studied. Optimum combinations of tensile strength and HER were obtained for fully austenitized C-Mn-Si Q&P samples. Higher HER values were obtained for Q&P than for Q&T steels for similar tempering/partitioning temperatures. Austempering following intercritical annealing results in higher HER than Q&P at similar tensile strength levels. In contrast, Q&P following full austenitization results in higher hole expansion than austempering even at higher strength levels.
机译:淬火和分区(Q&P)作为新的先进高强度钢(AHS)加工途径接受了增加的关注,作为“第三代”的承诺拉伸性能。目前贡献报告Q&P钢的孔膨胀比(她),并将其与“常规”AHSS处理路线(如奥斯特普淬火和淬火和淬火(Q&T)的值进行比较。研究了间歇退火的C-Mn-Al-Si-P和完全奥氏体化的C-Mn-Si微结构。获得全奥氏体化C-MN-Si Q&P样品的最佳组合和她的拉伸强度组合。对于类似的回火/分区温度的Q&T钢,获得了Q&P的Q&P越高。在跨临界退火之后的奥斯特术在类似拉伸强度水平的Q&P中导致较高。相比之下,即使在更高的强度水平下,Q&P也会导致完全奥氏体化的较高孔膨胀。

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