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X-ray Powder Diffraction Studies of Mechanically Milled Cobalt

机译:机械研磨钴的X射线粉末衍射研究

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The allotropic phase transformation of cobalt powder prepared by high-energy ball milling was investigated as a function of milling time. Measurement of crystallite size and microstrain in the powder systems milled for different times were conducted by X-ray diffractometry. The X-ray diffraction (XRD) peaks were analyzed using the Pearson VII profile function in conjunction with Rietveld method. X-ray diffraction line broadening revealed that allotropic transformation between face-centred-cubic phase (fcc) and hexagonal close-packed phase (hcp) in cobalt is grain size dependent and also on the accumulation of structure defects. The results showed that the phase formation of cobalt depends on the mill intensity that influences of both the grain size and the accumulation of structure defects. However, this theory alone is not adequate to explain the effects in this work. It was found that the total surface energy (Ω) theory satisfactorily explains the phase transformation behavior of cobalt. The smaller value of surface energy (Ω) of the fcc crystal than the hcp phase when size decreases may alter the qualitative aspects of the phase formation.
机译:通过高能球磨机制备的钴粉的同种异性相变,作为研磨时间的函数。通过X射线衍射法进行用于不同时间的粉末系统中的微晶尺寸和微晶的测量。使用Pearson VII谱功能与RIETVELD方法结合使用PEARSON VII轮廓功能来分析X射线衍射(XRD)峰值。 X射线衍射线展现显示,钴中面朝立立方相(FCC)和六边形封闭相(HCP)之间的同种异性转化是依赖性的晶粒尺寸,也是结构缺陷的积累。结果表明,钴的相形成取决于磨粒尺寸和结构缺陷积累的轧机强度。然而,单独的这种理论不足以解释这项工作中的效果。发现总表面能(ω)理论令人满意地解释了钴的相变行为。当尺寸减小时FCC晶体的表面能(ω)的表面能(ω)的较小值可以改变相形成的定性方面。

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