首页> 外文会议>International Conference on Processing amp; Manufacturing of Advanced Materials Pt.3; Jul 7-11, 2003; Leganes, Madrid, Spain >Synthesis of TiC/Ni cermets via mechanically activated self-propagating high-temperature synthesis
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Synthesis of TiC/Ni cermets via mechanically activated self-propagating high-temperature synthesis

机译:机械活化的自蔓延高温合成法合成TiC / Ni金属陶瓷

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Stoichiometric mixtures of Ti and C were milled in a high-energy vibratory mill for varying times and the results carefully characterized via X-ray diffraction and TEM. Cermets of Stoichiometric TiC and 20 w% Ni were combustion synthesized from non-milled and milled reactant powders, resulting in porous solids composed of roughly spherical TiC particles surrounded by a layer of Ni. Time resolved infrared analysis shows that the kinetics of the reaction performed with milled reactant powders are drastically enhanced over non-milled reactants. This result may be attributed to the microstructure and uniformity of the milled reactant mixtures. It is also demonstrated that mechanical milling of Ti and C powders strongly affects the TiC grain size in the products, most likely due to a reduction in TiC crystal growth as a consequence of the increase in the reaction kinetics.
机译:Ti和C的化学计量混合物在高能振动磨中研磨不同的时间,并通过X射线衍射和TEM仔细表征结果。由未研磨和研磨的反应物粉末燃烧合成化学计量的TiC和20 w%的镍金属陶瓷,得到的多孔固体由被Ni层包围的大致球形TiC颗粒组成。时间分辨的红外分析表明,与未研磨的反应物相比,用研磨的反应物粉末进行的反应动力学得到了显着提高。该结果可以归因于研磨的反应物混合物的微观结构和均匀性。还证明了机械研磨Ti和C粉末会极大地影响产品中的TiC晶粒尺寸,这很可能是由于反应动力学增加导致TiC晶体生长减少所致。

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