Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7703463 | Ultrasonics Sonochemistry | 2018 | 18 Pages |
Abstract
Ultrasonic vibration (UV) treatment has been successfully applied to improve the particles distribution of nano-sized SiC particles (SiCp) reinforced Al-5Cu alloy matrix composites which were prepared by combined processes of dry high energy ball milling and squeeze casting. When UV treatment is applied, the distribution of nano-sized SiCp has been greatly improved. After UV for 1â¯min, large particles aggregates are broken up into small aggregates due to effects of cavitation and the acoustic streaming. After UV for 5â¯min, all the particles aggregates are dispersed and the particles are uniformly distributed in the composites. Compared with the Al-5Cu matrix alloy, the ultimate tensile strength, yield strength and elongation of the 1â¯wt% nano-sized SiCp/Al-5Cu composites treated by UV for 5â¯min are 270â¯MPa, 173â¯MPa and 13.3%, which are increased by 7.6%, 6.8% and 29%, respectively. The improvements of mechanical properties after UV are attributed to the uniform distribution of nano particles, grain refinement of aluminum matrix alloy and reduction of porosity in the composites.
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Physical Sciences and Engineering
Chemistry
Chemistry (General)
Authors
Jianyu Li, Shulin Lü, Shusen Wu, Qi Gao,