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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Characterization of the elemental distribution of superalloy composite powders by micro beam X-ray fluorescence and laser-induced breakdown spectroscopy
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Characterization of the elemental distribution of superalloy composite powders by micro beam X-ray fluorescence and laser-induced breakdown spectroscopy

机译:微束X射线荧光和激光诱导击穿光谱法的高温合金复合粉末元素分布的表征

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摘要

During the mechanical mixing of many types of powders, mechanical alloying will occur between powders of different components and particle sizes, accompanied by a series of complex physical and chemical changes. In this study, micro beam X-ray fluorescence (mu-XRF) and laser-induced breakdown spectroscopy (LIBS) were used to analyze the surface composition distribution and depth profile of cobalt and superalloy composite powders mixed for different ball-milling times. In addition, the variation of the content of the metal composite powders from the surface to the interior was determined. X-ray diffraction, scanning electron microscopy combined with energy-dispersive X-ray spectroscopy, and inductively coupled plasma atomic emission spectrometry were also used to characterize the morphology, structure, and the average content of the composite metal powders. The effects of the ball-milling time on the morphology, composition distribution, and microstructure of the composite metal powder were studied. Increasing ball-milling time led to improvement of the dispersion of cobalt powder in the superalloy composite. Fine cobalt particles were gradually attached to the surface of large superalloy particles by the mechanical alloying process. The cobalt contents determined by mu-XRF were clearly higher than the designed values owing to cobalt enrichment on the surface of the powder particles. Depth distribution analysis by LIBS also indicated the occurrence of cobalt segregation in the outer layer of composite particles with an enrichment thickness of normally less than 10 mu m.
机译:在许多类型的粉末的机械混合过程中,在不同组分和颗粒尺寸的粉末之间发生机械合金化,伴随着一系列复杂的物理和化学变化。在该研究中,使用微光束X射线荧光(MU-XRF)和激光诱导的击穿光谱(LIB)来分析钴和超合金复合粉末的表面成分分布和深度分布,用于不同的球磨时间。此外,确定了金属复合粉末从表面到内部的含量的变化。 X射线衍射,扫描电子显微镜与能量分散X射线光谱相结合,并且电感耦合等离子体原子发射光谱法也用于表征复合金属粉末的形态,结构和平均含量。研究了球磨时间对复合金属粉末的形态,组成分布和微观结构的影响。增加球磨时间导致改善超合金复合材料中钴粉的分散。通过机械合金化方法逐渐将细钴颗粒逐渐附着在大型超合金颗粒的表面上。由于粉末颗粒表面上的富含钴富集,MU-XRF测定的钴含量明显高于设计的值。 Libs的深度分布分析还表明,复合颗粒外层中的钴偏析的发生,其富含浓度通常小于10μm。

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