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Development of a high strength and ductile Nb-bearing dual phase steel by cold-rolling and intercritical annealing of the ferrite-martensite microstructures

机译:通过铁素体-马氏体组织的冷轧和临界退火对高强度和韧性的含铌双相钢进行开发

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摘要

Dual phase (DP) steels containing different amounts of Nb microalloying element were produced by cold-rolling followed by intercritical annealing of a ferrite-martensite duplex starting structure. The effects of Nb contents (0.00, 0.06, 0.12 and 0.18 wt%) and intercritical annealing time on the microstructural evolutions and mechanical properties were studied. Results from microscopic images showed that increasing Nb content increased the volume fraction of martensite and decreased the average grain size of ferrite. Tensile results illustrated an excellent strength-elongation balance in terms of energy absorption (160 J cm~(-3)) and toughness (229 MPa). The lowest grain size of about 1.40 ± 0.37 μm was achieved in the DP steel containing 0.12 wt% Nb whose strength was about 123% higher than that of the as-received ferritic-pearlitic steel (e.g. 540 MPa), without loss of ductility. The variations of strength, elongation and fracture mechanism of the specimens with Nb contents and intercritical annealing time were correlated to the microstructural features.
机译:含有不同数量的Nb微合金元素的双相(DP)钢是通过冷轧,然后对铁素体-马氏体双相起始结构进行临界退火而生产的。研究了Nb含量(0.00、0.06、0.12和0.18 wt%)和临界退火时间对显微组织演变和力学性能的影响。显微图像的结果表明,增加Nb含量会增加马氏体的体积分数,并降低铁素体的平均晶粒尺寸。拉伸结果表明,在能量吸收(160 J cm〜(-3))和韧性(229 MPa)方面具有优异的强度-伸长率平衡。在含0.12 wt%Nb的DP钢中,其最低晶粒尺寸约为1.40±0.37μm,其强度比所接收的铁素体-珠光体钢(例如540 MPa)高123%,而又不会降低延展性。 Nb含量和临界退火时间对试样强度,伸长率和断裂机理的变化与显微组织特征有关。

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