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Interface Segregation and Nitrogen Measurement in Fe-Mn-N Steel by Atom Probe Tomography

机译:原子探测断层扫描的Fe-Mn-N钢中的界面隔离和氮气测量

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Improved understanding of the interactions between solutes and the austenite/ferrite interface can benefit modeling of ferrite growth during austenite decomposition, as the transformation kinetic is significantly affected by solutes that influence interface mobility. Solute-interface interactions dominate solute segregation at the interface in binary systems, but in multi-component alloys, solute-solute interactions may also affect segregation. In this study, interface segregation in Fe-Mn-N is examined and compared with Fe-Mn-C, to reveal the extent to which C affects the segregation of Mn. Atom probe tomography (APT) is well-suited to analyze solute concentrations across the interface, as this technique combines high spatial resolution and compositional sensitivity. Measurements of Mn show that segregation is only observed for Fe-Mn-C. This demonstrates that Mn segregation is primarily driven by an affinity for C, which also segregates to the interface. However, the measurement of N in steels by APT may be affected by a variety of experimental factors. Therefore, in verifying the Fe-Mn-N result, systematic examination is conducted on the influence of pulsing method (voltage versus laser), sample preparation (ion milling versus electropolishing), and vacuum storage on the measured N concentration. Both laser pulsing and focused ion beam sample preparation are observed to decrease the apparent N concentration.
机译:改善了对溶质和奥氏体/铁氧体界面之间的相互作用的理解可以在奥氏体分解期间益处铁氧体生长建模,因为转化动力学受影响界面移动性的溶质的显着影响。溶质 - 界面相互作用在二元系统中的界面处占据溶质隔离,但在多组分合金中,溶质溶质相互作用也可能影响偏析。在该研究中,检查Fe-Mn-N中的界面偏析并与Fe-Mn-C进行比较,以揭示C对Mn的偏析的程度。原子探测断层扫描(APT)非常适合于在界面上分析溶质浓度,因为该技术结合了高空间分辨率和组成敏感性。 Mn的测量表明,仅针对Fe-Mn-C观察到偏析。这表明Mn偏析主要由对C的亲和力驱动,这也是对界面进行隔离的。然而,APT的钢中N的测量可能受到各种实验因素的影响。因此,在验证Fe-Mn-N结果时,对脉冲方法(电压与激光),样品制备(离子研磨与电解)和真空储存的影响进行系统检查,并在测量的N浓度上进行真空储存。观察到激光脉冲和聚焦离子束样品制剂以降低表观n浓度。

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