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Effects of ultrasonic vibration on microstructure and mechanical properties of nano-sized SiC particles reinforced Al-5Cu composites

机译:超声振动对纳米SiC颗粒增强Al-5CU复合材料的微观结构和力学性能的影响

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摘要

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 1 min, large particles aggregates are broken up into small aggregates due to effects of cavitation and the acoustic streaming. After UV for 5 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 1 wt% nano-sized SiCp/A1-5Cu composites treated by UV for 5 min are 270 MPa, 173 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.
机译:已经成功地应用了超声波振动(UV)处理以改善纳米尺寸SiC颗粒(SICP)增强的Al-5Cu合金基质复合材料的颗粒分布,其通过组合的干高能球铣削和挤压铸造方法制备。当应用UV处理时,纳米SICP的分布得到了大大提高。在UV 1分钟后,由于空化和声学流的效果,大颗粒聚集体被分解为小聚集体。在UV 5分钟后,将所有颗粒聚集物分散,并且颗粒均匀地分布在复合材料中。与Al-5Cu基质合金相比,通过UV处理的1wt%纳米大小SiCP / A1-5Cu复合材料的最终拉伸强度,屈服强度和伸长率为5分钟为270MPa,173MPa和13.3%分别增加了7.6%,6.8%和29%。 UV后的机械性能的改善归因于纳米颗粒的均匀分布,铝基基金的晶粒细化和复合材料中的孔隙率的降低。

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