Kareem Ansar, Qudeiri Jaber Abu, Abdudeen Asarudheen, Ahammed Thanveer, Ziout Aiman
Mechanical Engineering Department, College of Engineering, United Arab Emirates University, Al Ain 15551, UAE.
Materials (Basel). 2021 Jan 1;14(1):175. doi: 10.3390/ma14010175.
In recent years, many alloys as well as composites of aluminium were developed for enhanced material performance. AA 6061 is an aluminium alloy that has extensive applications due to its superior material characteristics. It is a popular choice of matrix for aluminium matrix composite (AMC) fabrication. This study provides a review on AA 6061 aluminium alloy matrix composites produced through the stir-casting process. It focusses on conventional stir-casting fabrication, process parameters, various reinforcements used, and the mechanical properties of the AA 6061 composites. Several research studies indicated that the stir-casting method is widely used and suitable for fabricating AA 6061 composites with reinforcements such as SiC, BC, AlO, TiC, as well as other inorganic, organic, hybrid, and nanomaterials. The majority of the studies showed that an increase in the reinforcement content enhanced the mechanical and tribological properties of the composites. Furthermore, hybrid composites showed better material properties than single reinforcement composites. The usage of industrial and agricultural residues in hybrid composites is also reported. Future studies could focus on the fabrication of AA 6061 nanocomposites through stir casting and their material characterisation, since they have great potential as advanced materials.
近年来,人们开发了许多铝合金以及铝基复合材料,以提高材料性能。AA 6061是一种铝合金,因其优异的材料特性而有着广泛的应用。它是制造铝基复合材料(AMC)时常用的基体选择。本研究对通过搅拌铸造工艺生产的AA 6061铝合金基复合材料进行了综述。它聚焦于传统搅拌铸造制造、工艺参数、使用的各种增强材料以及AA 6061复合材料的力学性能。多项研究表明,搅拌铸造法被广泛使用,适用于制造含有碳化硅、硼化碳、氧化铝、碳化钛等增强材料以及其他无机、有机、混合和纳米材料的AA 6061复合材料。大多数研究表明,增强材料含量的增加提高了复合材料的力学和摩擦学性能。此外,混合复合材料比单一增强复合材料表现出更好的材料性能。还报道了在混合复合材料中使用工农业废料的情况。未来的研究可以集中在通过搅拌铸造制备AA 6061纳米复合材料及其材料表征,因为它们作为先进材料具有巨大潜力。