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Fabrication characteristics and mechanical behaviour of rice husk ash – Alumina reinforced Al-Mg-Si alloy matrix hybrid composites

机译:稻壳灰-氧化铝增强的Al-Mg-Si合金基杂化复合材料的制备及力学性能

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The fabrication characteristics and mechanical behaviour of Al-Mg-Si alloy matrix composites reinforced with alumina (Al2O3) and rice husk ash (RHA, an agro-waste) was investigated. This was aimed at assessing the viability of developing high performance Al matrix composites at reduced cost. Al2O3particulates added with 0, 2, 3, and 4 wt% RHA were utilized to prepare 10 wt% of the reinforcing phase with Al-Mg-Si alloy as matrix using two-step stir casting method. Density measurement, estimated percent porosity, tensile testing, micro-hardness measurement, optical microscopy, and SEM examination were used to characterize the composites produced. The results show that the less dense Al-Mg-Si/RHA/Al2O3hybrid composites have estimated percent porosity levels as low as the single Al2O3reinforced grade (< 2.3% porosity). The hardness of the hybrid composites decreases slightly with increase in RHA content with a maximum reduction of less than 11% observed for the Al-4 wt% RHA-6wt% Al2O3composition (in comparison with the Al-10 wt% Al2O3single reinforced composition). Tensile strength reductions of 8% and 13%, and specific strengths which were 3.56% and 7.7% lower were respectively observed for the 3 wt% and 4 wt% RHA containing hybrid composites. The specific strength, percent elongation and fracture toughness of the 2 wt% RHA containing hybrid composite was however, higher than that of the single Al2O3reinforced and other hybrid composite compositions worked on. RHA thus has great promise to serve as a complementing reinforcement for the development of low cost-high performance aluminum hybrid composites.
机译:研究了氧化铝(Al2O3)和稻壳灰(RHA,一种农业废料)增强的Al-Mg-Si合金基复合材料的制备特性和力学性能。目的是评估以降低的成本开发高性能Al基复合材料的可行性。利用两步搅拌铸造法,利用添加有0、2、3和4重量%RHA的Al 2 O 3颗粒以Al-Mg-Si合金为基质制备10重量%的增强相。使用密度测量,估计的孔隙率百分比,拉伸测试,显微硬度测量,光学显微镜和SEM检查来表征所生产的复合材料。结果表明,密度较小的Al-Mg-Si / RHA / Al2O3混合复合材料的孔隙率百分比估计值可低至单个Al2O3增强等级(<2.3%孔隙率)。杂化复合材料的硬度随RHA含量的增加而略有降低,对于Al-4 wt%RHA-6wt%Al2O3组合物(与Al-10 wt%Al2O3单增强组合物相比),最大降低值小于11%。对于含3wt%和4wt%的RHA的混合复合材料,分别观察到抗张强度降低了8%和13%,比强度分别降低了3.56%和7.7%。然而,含2wt%RHA的杂化复合材料的比强度,百分伸长率和断裂韧性高于单一的Al 2 O 3增强的和其他杂化复合材料组合物的比强度,伸长率和断裂韧性。因此,RHA有望成为低成本,高性能铝杂化复合材料开发的补充补强材料。

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