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Development of Fe3C, SiC and Al4C3 compounds during mechanical alloying

机译:机械合金化过程中Fe3 C,SiC和Al4 C3 化合物的发展

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摘要

Mechanical alloying process, as a solid-state technique, is a very useful method for fabrication of high melting point compounds like metal carbides and nitrides, which additionally have nanocrystalline structure with improved properties. In this work the development of several carbides including iron, aluminium and silicon carbides by the mechanical alloying process and the effect of subsequent heat treatment were investigated. Mixtures of elemental powders of Fe–C, Si–C and Al–C were mechanically alloyed, nominally at room temperature using a laboratory planetary ball mill. Structural changes of samples were studied by X-ray diffraction (XRD) and scanning electron microscopy (SEM). The results showed that the aluminium carbide (Al4C3) could not be synthesized by mechanical alloying process alone, even after long milling times. A suitable subsequent heat treatment was required to allow Al–C reaction to take place kinetically. In contrast mechanical alloying of Fe–C as well as Si–C systems directly led to the formation of Fe3C and SiC carbides after sufficient milling time. In all cases the end product had a nanosized structure.
机译:机械合金化工艺作为一种固态技术,是制造高熔点化合物(如金属碳化物和氮化物)的一种非常有用的方法,这些化合物还具有具有改善性能的纳米晶体结构。在这项工作中,研究了通过机械合金化工艺开发出包括铁,铝和碳化硅在内的几种碳化物的方法,以及后续热处理的效果。 Fe-C,Si-C和Al-C元素粉末的混合物采用实验室行星式球磨机进行机械合金化,通常在室温下进行。通过X射线衍射(XRD)和扫描电子显微镜(SEM)研究了样品的结构变化。结果表明,即使经过长时间的铣削,碳化铝(Al4 C3 )也不能仅通过机械合金化工艺合成。需要进行适当的后续热处理,以使Al–C反应动力学发生。相反,经过足够的铣削时间后,Fe–C和Si–C系统的机械合金化直接导致了Fe3 C和SiC碳化物的形成。在所有情况下,最终产品均具有纳米尺寸的结构。

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  • 来源
    《Journal of Materials Science》 |2007年第15期|5911-5914|共4页
  • 作者单位

    Department of Materials Engineering Isfahan University of Technology Isfahan 84154-83111 Iran;

    Department of Materials Engineering Isfahan University of Technology Isfahan 84154-83111 Iran;

    Department of Materials Engineering Isfahan University of Technology Isfahan 84154-83111 Iran;

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