JFE Steel Corporation, Steel Research Laboratory, 1 Kawasaki-cho, Cho-ku, Chiba 260-0835, Japan.
JFE Steel Corporation, Steel Research Laboratory, 1-1, Minamiwatarida-cho, Kawasaki-ku, Kawasaki, 210-0855, Japan.
Sci Rep. 2016 Jul 19;6:29825. doi: 10.1038/srep29825.
In multiphase steels, control of the carbon contents in the respective phases is the most important factor in alloy design for achieving high strength and high ductility. However, it is unusually difficult to determine the carbon contents in multiphase structures with high accuracy by electron probe microanalysis (EPMA) due to the unavoidable effect of hydrocarbon contamination during measurements. We have investigated new methods for suppressing hydrocarbon contamination during field emission (FE) EPMA measurements as well as a conventional liquid nitrogen trap. Plasma cleaner inside the specimen chamber results in a improvement of carbon-content determination by point analysis, increasing precision tenfold from the previous 0.1 mass%C to 0.01 mass%C. Stage heating at about 100 °C dramatically suppresses contamination growth during continuous point measurement and mapping. By the combination of above two techniques, we successfully visualized the two-dimensional carbon distribution in a dual-phase steel. It was also noted that the carbon concentrations at the ferrite/martensite interfaces were not the same across all interfaces, and local variation was observed. The developed technique is expected to be a powerful tool for understanding the mechanisms of mechanical properties and microstructural evolution, thereby contributing to the design of new steel products with superior properties.
在多相钢中,控制各相中的碳含量是实现高强度和高延展性的合金设计的最重要因素。然而,由于在测量过程中不可避免地存在碳氢化合物污染的影响,用电子探针微分析(EPMA)通常难以高精度地确定多相结构中的碳含量。我们研究了在现场发射(FE)EPMA 测量过程中抑制碳氢化合物污染的新方法,以及传统的液氮阱。在试样室内使用等离子体清洁器可改善点分析中的碳含量测定,将以前的 0.1%质量 C 的精度提高了十倍,达到 0.01%质量 C。在约 100°C 的阶段加热可显著抑制连续点测量和绘图过程中的污染增长。通过这两种技术的结合,我们成功地可视化了双相钢中的二维碳分布。还注意到,铁素体/马氏体界面处的碳浓度并非在所有界面上都相同,并且观察到了局部变化。所开发的技术有望成为理解力学性能和微观结构演变机制的有力工具,从而有助于设计具有优异性能的新型钢材。