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An Atom Probe Study of kappa-carbide Precipitation in Austenitic Lightweight Steel and the Effect of Phosphorus

机译:奥氏体轻质钢κ碳化物沉淀的原子探测研究及磷的影响

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The influence of phosphorus on kappa-carbide precipitation and alloy partitioning in an austenitic Fe-30Mn-9Al-1Si-0.9C-0.5Mo cast steel was studied utilizing a combination of transmission electron microscopy, 3D atom probe tomography, X-ray diffraction, and first-principles atomistic modeling. Increasing the amount of phosphorus from 0.006 to 0.043 wt pct P increased the kinetics of the initial ordering reaction. Specimens from the high-phosphorus steel showed some degree of short-range ordering of Fe-Al-C that took place during the quench. It was shown that phosphorus increases both the size and volume fraction of kappa-carbide during aging. However, the distribution of phosphorus appears to be homogeneous, and thus long-range diffusion of phosphorus was not responsible for the observed increase in hardening. It is shown that phosphorus encourages the initial short-range ordering into the E2(1) structure of kappa-carbide and also accelerates spinodal decomposition associated with carbon and aluminum diffusions. (C) The Minerals, Metals & Materials Society and ASM International 2017
机译:进行了研究利用透射电子显微镜的组合上卡帕碳化物析出和合金分区磷在奥氏体的Fe-30MN-9AL-1SI-0.9C-0.5Mo钢铸钢的影响,三维原子探针断层扫描,X射线衍射,和第一原理原子建模。增加磷的量从0.006至0.043重%P增加了初始排序反应的动力学。从高磷钢试样表现出一定程度的Fe-Al-C的短程有序的淬火过程中发生的。结果表明,磷的增加既老化期间卡帕碳化物的尺寸和体积分数。然而,磷出现的分布是均匀的,和磷从而远距离扩散是不负责硬化观察到的增加。结果表明,磷鼓励初始短程有序入E2(1)卡帕碳化物的结构,并且也加速与碳和铝扩散相关联的旋节分解。 (c)2017年矿物质,金属和材料协会和ASM国际

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