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Atom probe tomography data analysis procedure for precipitate and cluster identification in a Ti-Mo steel

机译:用于Ti-Mo钢中沉淀物和团簇鉴定的原子探针层析成像数据分析程序

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摘要

An atom probe tomography data analysis procedure for identification of particles in a Ti-Mo steel is presented. This procedure has been used to characterise both carbide precipitates (larger particles) and solute clusters (smaller particles), as reported in an accompanying Mater. Sci. Eng. A paper [1]. Particles were identified using the maximum separation method (cluster-finding algorithm) after resolving peak overlaps at several locations in the mass spectrum. The cluster-finding algorithm was applied to the data in a two-stage process to properly identify particles having a bimodal size distribution. Furthermore, possible misidentification of matrix atoms (mainly Fe) due to the local magnification effect (from the difference in field evaporation potential between the matrix and precipitates) has been resolved using an atomic density approach, comparing that measured experimentally using APT to the theoretical density of both the matrix and particles.
机译:介绍了用于Ti-Mo钢中颗粒识别的原子探针层析成像数据分析程序。如随附的Mater中所述,该程序已用于表征碳化物沉淀(较大的颗粒)和溶质团簇(较小的颗粒)。科学。论文[1]。解决质谱图中多个位置的峰重叠后,使用最大分离方法(簇查找算法)识别颗粒。在两个阶段的过程中将聚类查找算法应用于数据,以正确识别具有双峰尺寸分布的粒子。此外,使用原子密度方法解决了由于局部放大效应(由基体和沉淀物之间的场蒸发电势之差)引起的基体原子(主要是铁)的可能误识别,并将使用APT实验测得的结果与理论密度进行了比较基质和颗粒。

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