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首页> 外文期刊>International Journal of Microstructure and Materials Properties >Structure investigations of the ground FeAl(Cr)-Cr_3C_2-Cr_7C_3-TiC composite powder prepared through the SHS process
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Structure investigations of the ground FeAl(Cr)-Cr_3C_2-Cr_7C_3-TiC composite powder prepared through the SHS process

机译:SHS法制备的FeAl(Cr)-Cr_3C_2-Cr_7C_3-TiC复合粉的结构研究

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摘要

The studied composite powder of high corrosion resistance was prepared using the Self-propagating High-temperature Synthesis (SHS) process. The as-prepared material was crushed and was subjected to a milling process by high-energy attritory mill for two and ten hours. The powder morphology was analysed through the Scanning Electron Microscopy (SEM) method. The structure investigations were performed using the SEM and XRD methods. The presence of Cr_7C_3, FeCr and FeO phases, besides the most desired FeAl(Cr), Cr_3C_2 and TiC ones, was noted. It was found that the FeAl(Cr) phase is of the ordered B2-type structure and the ordering degree diminishes with the increase of milling time. The crystallite size of this phase, both in the as-prepared state and after the milling process, is in the nanoscale. The crystallite size of the FeO phase diminishes to 75 nm in the sample ground for 10 h, whereas those of the other phases are above 100 nm for the as-prepared and ground samples.
机译:采用自蔓延高温合成(SHS)工艺制备了高耐腐蚀性的复合粉体。将所制备的材料压碎,并通过高能磨机进行研磨过程两个小时和十小时。通过扫描电子显微镜(SEM)方法分析粉末的形态。使用SEM和XRD方法进行结构研究。注意到除了最需要的FeAl(Cr),Cr_3C_2和TiC以外,还存在Cr_7C_3,FeCr和FeO相。结果表明,FeAl(Cr)相为有序的B2型结构,随着研磨时间的增加,有序度逐渐降低。在制备状态和研磨过程之后,该相的微晶尺寸均为纳米级。 FeO相的微晶尺寸在样品研磨10小时后减小到75 nm,而其他相的微晶尺寸对于制备和研磨的样品均大于100 nm。

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