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Impact of Vanadium Addition on API X100 Steel

机译:钒对API X100钢的影响

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Laboratory heats of an API X100 steel (Mn–Mo–Nb) with two levels of vanadium (0.004% and 0.063%) were melted and control rolled simulating a coiled plate production process. Extensive microstructural analyses were performed, including optical, EBSD and TEM. Texture analyses of the two alloys were also compared. Mechanical properties were determined for various rolling and pipe axis orientations. Only minor differences in microstructure and texture properties were observed between the two alloys. Yet the 0.063% V alloy had from 8 to 14% higher yield and tensile strengths in all directions, while the toughness and ductility measurements were similar for both alloys. Higher strength of the V added pipeline steel was partially due to its smaller grain size and larger fraction of subgrain boundaries. Some, but perhaps not all, of the strength differences could be related to the observed smaller precipitate size of the higher vanadium steel. The vanadium addition was necessary in this alloy to ensure meeting the required strength properties of X100 steel.
机译:将具有两种钒含量(0.004%和0.063%)的API X100钢(Mn-Mo-Nb)的实验室热量熔化并模拟轧制卷板生产过程进行控制轧制。进行了广泛的微观结构分析,包括光学,EBSD和TEM。还比较了两种合金的织构分析。确定了各种轧制和管轴方向的机械性能。两种合金之间仅观察到微观结构和织构性质的细微差异。然而,0.063%V合金在所有方向上的屈服强度和抗拉强度都提高了8%至14%,而两种合金的韧性和延展性测量结果相似。添加V的管线钢的较高强度部分是由于其较小的晶粒尺寸和较大的亚晶界份额。一些(但不是全部)强度差异可能与所观察到的较高钒钢的较小析出物尺寸有关。为了确保满足X100钢所需的强度性能,在这种合金中必须添加钒。

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