杂化AA6061/SIC/碳化椰壳微纳复合材料拉伸性能的对比研究

Nwigbo M.N., Lasisi U.E., Ukaru Y.N.
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摘要

本研究以碳化硅颗粒、SiCp和碳化椰壳(CCSP)为增强剂合成了一种杂化铝6061基复合材料,并测定了不同尺寸和重量分数的SiCp和CCSP增强剂组合对复合材料强度性能和显微组织的影响。采用搅拌铸造法制备了混杂铝基复合材料。制备了由3、6、9、12和15%质量分数的CCSp和SiCp组成的复合材料样品,SiC的平均粒径为38μm和42.3nm, CCSp的平均粒径为63μm和50.01nm,并对其强度进行了表征。复合材料的显微组织表现为增强颗粒在基体中分布均匀,浇注后增强颗粒与基体结合良好。结果表明,添加CCSp和SiCp增强剂可提高合金的抗拉强度和硬度。提出了预测纳米复合材料抗拉强度的数学模型,并与物理实验结果和其他作者的研究结果进行了对比验证。所提出的模型与实验数据非常吻合。在增强强度为15wt时,纳米颗粒增强复合材料的抗拉强度值提高幅度最大,分别为未增强基体和微复合材料的53.4%和8.5%。%内在/国立细胞科学中心。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative Study of Tensile Properties of Hybrid AA6061/SIC/Carbonized Coconut Shell Micro and Nano Composites
This study synthesized a hybrid aluminium 6061 matrix composite with particulates of silicon carbide, SiCp and carbonized coconut shell (CCSP as reinforcements), and determined the effect of combining SiCp and CCSp reinforcements of different sizes and weight fractions on the strength properties and microstructure of the developed composite. The hybrid aluminium matrix composites were developed using the stir casting method. Several samples of the composites consisting of AA6061 alloy with 3, 6, 9, 12 and 15% by wt. each of CCSp and SiCp with average particle sizes of 38μm and 42.3nm for SiC, and 63μm and 50.01nm for CCSp were produced and characterized for strength. The microstructures of the developed composite materials revealed uniform distribution of reinforcement particles in the base matrix and excellent bonding between the base matrix and reinforcements after casting. The results obtained showed that addition of CCSp and SiCp reinforcement to the alloy increased the tensile strength and hardness. Also, a mathematical model was proposed for predictive tensile strength of nano-composite and validated by comparison with results of the physical experiment and those of other authors. The proposed model is in excellent agreement with experimental data. The nano-particulates reinforced composite presented maximum improvement in ultimate tensile strength value (53.4% and 8.5% of that for the unreinforced matrix and micro-composite respectively) at reinforcement level of 15wt.% nSiC/nCCS.
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