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In-Situ Synthesis of Alumina Reinforced (Fe,Cr)_3Al Intermetallic Matrix Nanocomposite

机译:氧化铝增强(Fe,Cr)_3Al金属间化合物基纳米复合材料的原位合成

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摘要

In this study, a mixture of chromium oxide, elemental iron, and aluminum powders was subjected to high energy ball milling to produce Al_2O_3 reinforced (Fe,Cr)_3Al matrix nanocomposite. The structural changes of powder particles during milling were investigated by X-ray diffractometry. Cross-sectional microstructure of powder particles after different milling times was observed by scanning electron microscopy using back scatter mode. The change in morphology of powder particles was followed by scanning electron microscopy observations. The transmission electron microscopy was used to confirm the development of nano-sized structure in the final product. The changes in phase composition, structure and morphology of powder particles suggested that during milling, Al gradually reacts with Cr_2O_3 leading to the formation of metallic Cr and Al_2O_3 phases and concurrently, the reduced Cr and remaining Al diffuse into the Fe lattice and as a result, a Fe(Al,Cr) solid solution forms. This structure was transformed to (Fe,Cr)_3Al intermetallic compound at longer milling times.
机译:在这项研究中,对氧化铬,元素铁和铝粉的混合物进行高能球磨,以生产Al_2O_3增强的(Fe,Cr)_3Al基纳米复合材料。用X射线衍射法研究了粉末在研磨过程中的结构变化。通过使用反向散射模式的扫描电子显微镜观察在不同研磨时间之后的粉末颗粒的横截面微观结构。粉末颗粒形态的变化随后是扫描电子显微镜观察。透射电子显微镜用于确认最终产品中纳米结构的发展。粉末颗粒的相组成,结构和形态的变化表明,在研磨过程中,Al逐渐与Cr_2O_3反应,导致形成金属Cr和Al_2O_3相,同时还原的Cr和残留的Al扩散到Fe晶格中,从而,形成Fe(Al,Cr)固溶体。该结构在更长的铣削时间下转变为(Fe,Cr)_3Al金属间化合物。

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