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Development of aluminium-based composites reinforced with steel and graphite particles: structural, mechanical and wear characterization

机译:钢和石墨颗粒增强的铝基复合材料的开发:结构,机械和磨损特性

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Apparent limitations in toughness and ductility of ceramic reinforced aluminium matrix composites have prompted considerations of metallic reinforcements. In the present study, the structural characteristics, mechanical and wear behaviour of stir cast Al-Mg-Si alloy-based composites reinforced with different weight percent of steel-, steel-graphite hybrid mix-, and SiC-particles were investigated. The results show that the hardness of the composites increased approximately by 11% with increase in steel particles from 4 to 8wt.%. For the same range of steel concentration, the ultimate tensile strength also increased with increase in steel wt.%. These strength values were all higher than that of 8wt.% reinforced SiC by a margin of 3.2–24%. The specific strength and fracture toughness equally followed the same trend with respect to steel concentration with strain to fracture, the exception where slight decrease (less than 4%) is observed. For these properties, the values were superior to the SiC reinforced composite and ascribed to improved grain refinement and interface bonding, and the inherent ductility of the steel particles. For the 8wt.% hybrid reinforced composite compositions containing steel and graphite, all the mechanical properties decreased slightly with increase in graphite content and trailed the composite reinforced with 8wt.% steel. However, the wear rates were lowest for the hybrid reinforcement mix of steel and graphite, followed by those containing only steel; while that reinforced with SiC had the highest wear susceptibility. Nonetheless, abrasive wear was the dominant wear mechanism observed in all the composites.
机译:陶瓷增强铝基复合材料的韧性和延展性的明显局限性促使人们考虑了金属增强材料。在本研究中,研究了不同重量百分比的钢-,钢-石墨杂化混合物-和SiC-颗粒增强的Al-Mg-Si合金铸造铝合金复合材料的结构特性,力学性能和磨损行为。结果表明,随着钢颗粒从4wt。%增加到8wt。%,复合材料的硬度大约增加了11%。对于相同的钢浓度范围,极限抗拉强度也随钢重量%的增加而增加。这些强度值都比8wt。%增强SiC的强度值高3.2-24%。关于钢浓度和断裂应变,比强度和断裂韧性同样遵循相同的趋势,但是观察到轻微降低(小于4%)。对于这些性能,该值优于SiC增强复合材料,并且归因于改善的晶粒细化和界面结合以及钢颗粒的固有延展性。对于包含钢和石墨的8wt。%杂化增强复合材料组合物,所有机械性能均随石墨含量的增加而略有下降,并且落后于使用8wt。%的钢增强的复合材料。但是,钢和石墨的混合增强混合物的磨损率最低,其次是仅包含钢的混合物。 SiC增强的磨损敏感性最高。尽管如此,在所有复合材料中观察到的主要磨损机理是磨料磨损。

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