氟化碳基体中多面六角形析出物生长与粗化动力学[j]。实验观察

K.E. Rajab , R.D. Doherty
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引用次数: 41

摘要

本文报道了一系列Al-Ag合金在不同时效温度和过饱和条件下的析出动力学。对于每种沉淀反应的大多数,可以看到一个大而恒定的长径比,以及扩散控制生长所期望的增厚和延长率。长径比随平均沉淀间距增大而增大。对结果的解释是,在反应开始时,由于生长边缘的密度低,增稠受到抑制。增稠抑制引起长径比的增加,直到在非平行{111}基体习惯面上生长的沉淀相互相交。相交后,生长边缘产生,并且似乎已经变得足够多,允许扩散限制增厚。然而,在406°C和225°C时的粗化观察表明,在粗化反应的驱动力非常低的情况下,尽管有残余沉淀相交,但增稠反应再次受到抑制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Kinetics of growth and coarsening of faceted hexagonal precipitates in an f.c.c. matrix—I. Experimental observations

Observations are reported on the precipitation kinetics of a range of Al-Ag alloys under different conditions of aging temperature and supersaturation. For most of each precipitation reaction a large and constant aspect ratio is seen together with the thickening and lengthening rates expected for diffusion-controlled growth. The aspect ratios increase with mean precipitate spacing. The interpretation of the results is that at the start of the reaction thickening is inhibited due to a low density of growth ledges. The thickening inhibition causes an increase in the aspect ratio, continuing until the precipitates, growing on nonparallel {111} matrix habit planes, intersect each other. After intersection, growth ledges are generated and appear to have become sufficiently numerous to allow diffusion limited thickening. However observations of coarsening at both 406°C and at 225°C suggests that the thickening reaction is again inhibited, despite residual precipitate intersections, under the very low driving forces of the coarsening reaction.

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