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首页> 外文期刊>Journal of nano research >Synthesis of Nono-Crystalline Aluminum Carbide Using Thermal Treatment of Mechanically Activated Al and Graphite Mixture
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Synthesis of Nono-Crystalline Aluminum Carbide Using Thermal Treatment of Mechanically Activated Al and Graphite Mixture

机译:机械活化铝和石墨混合物的热处理合成诺诺晶碳化铝

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摘要

In this work, Nono-crystalline aluminum carbide particles were synthesized using both mechanical and thermal treatments. Frist, Al and graphite powders had been milled in a planetary ball mill. Then, milled mixtures have been annealed isothermally after the mechanical activation. The effects of two processes on the synthesized products were separately studied using X-ray diffraction (XRD), scanning electron microscopy (SEM) and simultaneous thermal analysis (STA) methods. Further, the grain size, lattice strain and dislocation density values were calculated according to XRD data. The results showed that mechanical alloying process can create an ultra-fine microstructure. The grain size was mostly reduced after 40 h milling as well as the heat treatment at 550 °c and 2 h. in fact, the high rate of plastic deformation of aluminum particle during milling process lead to rising the internal energy of particles, and finally, nanocrystals of Alsub4/subCsub3/sub formed with the size of 14 nm. However, thermal analysis indicated that the mechanical activation of aluminum and the presence of carbon can play key roles in synthesis of aluminum carbide. Key words: Mechanical alloying, annealing, Al and graphite powders, Solid state reaction, Nono-crystalline aluminum carbide.
机译:在这项工作中,使用机械和热处理方法合成了Nono结晶碳化铝颗粒。第一,铝和石墨粉末已在行星式球磨机中进行了研磨。然后,在机械活化之后,将研磨的混合物等温退火。使用X射线衍射(XRD),扫描电子显微镜(SEM)和同时热分析(STA)方法分别研究了两种工艺对合成产物的影响。此外,根据XRD数据计算出晶粒尺寸,晶格应变和位错密度值。结果表明,机械合金化过程可以产生超细的组织。研磨40 h以及在550°c和2 h的热处理后,晶粒尺寸大部分减小。事实上,铝粉在研磨过程中的高塑性变形速率导致其内部能量的升高,最后,Al 4 C 3 的纳米晶体形成了尺寸为14 nm。然而,热分析表明铝的机械活化和碳的存在可以在碳化铝的合成中起关键作用。关键词:机械合金化,退火,Al和石墨粉,固相反应,Nono结晶碳化铝。

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