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Phase Analysis of Mechanically Alloyed In-situ Copper-Tungsten Carbide Composite

机译:机械合金地原位铜 - 碳化钨复合材料的相分析

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An in-situ composite of copper and tungsten carbide powder was prepared by mechanical alloying of elemental powder. The sample has been milled in a high-energy ball mill for 20 h at different milling speed i.e. 100, 200, 300 and 400 rpm in an argon atmosphere. Investigations in terms of microstructural features and phase constitution of in-situ composites powder were performed by X-ray diffraction (XRD) and scanning electron microscopy (SEM). At higher milling speed, W_2C is found to be precipitated with a small amount of WC was formed. Crystallite size of copper is reducing while internal strain is increasing with increasing milling speed.
机译:通过元素粉末机械合金化制备铜和碳化钨粉的原位复合。在氩气氛中以不同的铣削速度在高能量球磨机中铣削20小时,在氩气氛中以不同的铣削速度研磨20小时。通过X射线衍射(XRD)和扫描电子显微镜(SEM)进行微观结构特征和原位复合材料粉末的微观复合材料粉末的研究。在较高的铣削速度下,发现W_2C被形成少量WC沉淀。铜的微晶尺寸在降低时,随着铣削速度的增加而增加。

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