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Evolution of crystallite size, lattice parameter and internal strain in Al precipitates during high energy ball milling of partly amorphous Al87Ni8La5 alloy

机译:部分非晶al87Ni8La5合金高能球磨过程中al析出物微晶尺寸,晶格参数和内应变的演变

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摘要

The effects of plastic deformation by ball milling on the structure of a partly amorphous Al87Ni8La5 alloy were investigated by X ray diffractometry. Lattice parameter, crystallite size and lattice strain of the fcc Al precipitates were determined by Rietveld refinement, double Voigt approach and Williamson Hall plot. The changes in lattice parameter of fcc Al nano precipitates during ball milling are ascribed to the uptake of Ni. The crystallite size decreases as a function of the milling time from about 100 nm in the as atomized state to about 14 nm after 1440 min of ball milling time. A model based on shear deformation of precipitates in the amorphous phase is used to describe quantitatively the decrease in crystallite size and in lattice parameter
机译:通过X射线衍射法研究了球磨塑性变形对部分非晶态Al87Ni8La5合金组织的影响。通过Rietveld精炼,双Voigt方法和Williamson Hall图确定了fcc Al沉淀的晶格参数,微晶尺寸和晶格应变。球磨过程中fcc Al纳米沉淀的晶格参数变化归因于Ni的吸收。球磨时间的1440分钟后,微晶尺寸随球磨时间而变,从处于雾化状态的约100 nm降至约14 nm。基于非晶相中析出物的剪切变形的模型用于定量描述微晶尺寸和晶格参数的减小

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    Dittrich M.; Schumacher G;

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  • 年度 2014
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