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From metal chips to composite: Effect of age-hardening on mechanical and wear properties of Al2O3 reinforced AA7075 composites

机译:从金属芯片到复合材料:AL2O3增强AA7075复合材料的机械和磨损性能的变硬性能

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摘要

Aluminum metal matrix composites were used in various fields such as aircraft, underwater, automobile, aerospace. Several fabrication techniques were used for the production of these composites. Among the various methods, the powder metallurgy route provides dimensional accuracy and high production rates. In this paper, metal matrix composites that include 7075 aluminum alloy chips and Al2O3 particles were produced by using a hot pressing. The effect of reinforcement amount and T6 heat treatment on the mechanical and wear properties of the composites were investigated. Al2O3 particles were added by weight of 5, 10 and 15 % and the composites were produced by hot pressing. T6 heat treatment consisted of a solution treatment at 480°C for 2 h and artificially aging process at 120°C for 24 h. Wear resistance of the composites was determined by a ball-on-disc dry sliding wear test. Brinell Hardness of the composites tended to increase with the increasing Al2O3 reinforcement up to 10 wt.% and with T6 treating. Particle reinforcement improved the wear resistance up to 10 wt.% Al2O3. In addition, volumetric material loss tended to decrease after the aging process.
机译:铝金属基质复合材料用于各种领域,如飞机,水下,汽车,航空航天。使用几种制造技术用于生产这些复合材料。在各种方法中,粉末冶金路径提供尺寸精度和高生产率。在本文中,通过使用热压制备包括7075铝合金芯片和Al2O3颗粒的金属基质复合材料。研究了加固量和T6热处理对复合材料的机械和磨损性能的影响。加入5,10和15%的颗粒加入5,10和15%,并通过热压制备复合材料。 T6热处理由480℃的溶液处理包括2小时,在120℃下在120℃下进行24小时。复合材料的耐磨性由球形盘干燥滑动磨损试验确定。复合材料的Brinell硬度随着增加的Al 2 O 3增强率倾向于10重量%和T6治疗而增加。颗粒增强改善耐磨性高达10重量%。%Al 2 O 3。此外,在老化过程后,体积材料损失趋于降低。

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