首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Correlation between milling parameters and microstructure characteristics of nanocrystalline copper powder prepared via a high energy planetary ball mill
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Correlation between milling parameters and microstructure characteristics of nanocrystalline copper powder prepared via a high energy planetary ball mill

机译:高能行星式球磨机制备纳米晶铜粉的研磨参数与微观结构特征的相关性

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摘要

The microstructure evolution of Cu-nanostructured powders versus the ball milling conditions was investigated by whole peak profile powder pattern modeling method. This method allows defining in some approach the characteristics of as-milled Cu powder microstructure in terms of crystallite size, type and density of dislocations and twin faults density. It is shown that the change of microstructure characteristics of as-milled Cu powder versus the ball milling conditions (under constant time of the ball milling) depend on only some energy parameters of the milling, for example, average size of crystallite is uniquely defined by energy of the shock, whereas the portion of edge and screw components of dislocation structures depend on a ratio between normal and tangential components of shock.
机译:通过全峰轮廓粉末图案建模方法研究了铜纳米结构粉末相对于球磨条件的显微组织演变。该方法允许以某种方法根据晶粒大小,位错类型和位错密度以及双断层密度来定义研磨后的铜粉微观结构的特征。结果表明,研磨后的铜粉的微观结构特征随球磨条件的变化(在恒定的球磨时间下)仅取决于球磨的某些能量参数,例如,微晶的平均尺寸由冲击能量,而位错结构的边缘和螺钉部分的比例取决于冲击的法向分量和切向分量之间的比率。

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