Effect of sintering temperature on microstructures and mechanical properties of spark plasma sintered nanocrystalline aluminum

Zhen Feng Liu, Zhao Hui Zhang*, Ji Fang Lu, Alexander V. Korznikov, Elena Korznikova, Fu Chi Wang

*此作品的通讯作者

科研成果: 期刊稿件文章同行评审

72 引用 (Scopus)

摘要

Organic-coated aluminum nano-powders were consolidated by spark plasma sintering technique with low initial pressure of 1. MPa and high holding pressure of 300. MPa at different sintering temperature. The effect of sintering temperature on microstructures and mechanical properties of the compact bulks was investigated. The results indicate that both the density and the strain of the nanocrystalline aluminum increase with an increase in sintering temperature. However, the micro-hardness, compressive strength and tensile stress of the compact bulks increase initially and then decrease with increasing sintering temperature. The nanocrystalline aluminum sintered at 773. K has the highest micro-hardness of 3.06. GPa, the best compressive strength of 665. MPa and the supreme tensile stress of 282. MPa. A rapid grain growth of nanocrystalline aluminum sintered at 823. K leads to a decrease in micro-hardness, compressive strength and tensile stress. After annealing, a remarkable increase in strain and a slight rise in strength were obtained due to the relief of the residual stress in nanocrystalline Al and the formation of composite structure.

源语言英语
页(从-至)625-630
页数6
期刊Materials and Design
64
DOI
出版状态已出版 - 1 12月 2014

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