首页> 外文期刊>Proceedings of the institution of mechanical engineers >Wear and mechanical properties of surface hybrid metal matrix composites on Al-Si aluminum alloys fabricated by friction stir processing
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Wear and mechanical properties of surface hybrid metal matrix composites on Al-Si aluminum alloys fabricated by friction stir processing

机译:搅拌摩擦加工Al-Si铝合金表面杂化金属基复合材料的磨损和力学性能

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Aluminum-base surface hybrid composites have been fabricated by mixtures of SiO2 and Al2O3 particles on an Al-Si cast aluminum alloy using friction stir processing with the aim of achieving higher wear properties in the Al piston alloy via surface hybrid composites fabrication. The distribution of particles in the stir zone was evaluated via scanning electron microscope. Microstructures of the composites revealed that the reinforcing particles were uniformly distributed in the stir zone. Furthermore, the mechanical properties of each composite were determined using hardness tests indicating that increase in the relative content of SiO2 resulting in a decrease in the average hardness of the stir zone. Additionally, the wear resistance of the surface hybrid composites was investigated under normal load, sliding speed, and distances of 20 N, 1 m/s, and 4000 m, respectively. It was found that the wear mass loss of the 20% SiO2-80% Al2O3 hybrid composites (which was about 4.2 mg) was improved when compared with that of the A356 base alloy (nearly 19 mg). Moreover, by increasing the relative content of SiO2 particles from 0% to 100% in the hybrid composites, the friction coefficient of the composites rose from 0.55 to 0.73. It can be concluded by adding Al2O3 and SiO2 particles in the Al matrix, wear mass loss can be decreased by about five times compared with that of the base metal, in which the Al2O3 particle increases the hardness and SiO2 particles acts as lubricating agent, and the combination of these leads to better wear properties. The best combination of the hybrid particles in order to achieve the best wear properties for the hybrid composites is 20% Al2O3 and 80% SiO2.
机译:铝基表面杂化复合材料是通过摩擦搅拌工艺在Al-Si铸造铝合金上混合SiO2和Al2O3颗粒而制造的,目的是通过表面杂化复合材料的制造在Al活塞合金中获得更高的耐磨性。通过扫描电子显微镜评价搅拌区中的颗粒分布。复合材料的微观结构表明,增强颗粒在搅拌区均匀分布。此外,使用硬度测试确定每种复合材料的机械性能,这些测试表明SiO2相对含量的增加导致搅拌区的平均硬度降低。此外,还研究了表面杂化复合材料在正常载荷,滑动速度和距离分别为20 N,1 m / s和4000 m时的耐磨性。结果发现,与A356基合金(近19 mg)相比,含20%SiO2-80%Al2O3杂化复合材料(约4.2 mg)的磨损质量损失得到改善。此外,通过将杂化复合材料中SiO 2颗粒的相对含量从0%增加到100%,复合材料的摩擦系数从0.55增加到0.73。可以通过在Al基体中添加Al2O3和SiO2颗粒得出结论,与Al2O3颗粒增加硬度且SiO2颗粒充当润滑剂的贱金属相比,磨损质量损失可降低约五倍。这些因素的结合会带来更好的磨损性能。为了获得杂化复合材料的最佳磨损性能,杂化颗粒的最佳组合是20%Al2O3和80%SiO2。

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