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Effects of mechanical alloying on an A16061 -CNT composite fabricated by semi-solid powder processing

机译:机械合金化对半固态粉末加工A16061 -CNT复合材料的影响

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摘要

For powder-based metal composite manufacturing, mechanical alloying has been widely used to disperse the clustered carbon nanotubes (CNTs) in the metal matrix. However, the effects of mechanical alloying time and CNT dispersion on the microstructure and mechanical properties of the metal-CNT composite have not been fully investigated. In this study, aluminum alloy 6061 (A16061 )-CNT composites were synthesized by semi-solid powder processing from powders that had been mechanically alloyed for different durations. The powder morphology, microstructure, hardness, flexural strength, fracture surface, and composition of the A16061 -CNT composites were analyzed. The results showed that the multi-walled CNT agglomerates were first crushed into thin layers and then dispersed during the mechanical alloying procedure. The CNTs on the surfaces of A16061 particles at various mechanical alloying times showed that the CNT length decreased quickly to about 1.2 μm after 1 h of mechanical alloying and below 1 μm after 3 h from the original length of over 5 μm. The grains of the A16061-CNT composites deformed severely during the mechanical alloying process. The hardness improved as the mechanical alloying time increased. However, the bend test and fracture surface indicated reduction of the composite ductility with increasing mechanical alloying time. Compositional analysts also showed formation of aluminum carbide (Al_4C_3) due to the CNT addition. In addition, a modified shear lag model was used to predict the strength of A16061-CNT at different mechanical alloying times.
机译:对于粉末基金属复合材料的制造,机械合金化已广泛用于将簇状碳纳米管(CNT)分散在金属基质中。然而,尚未充分研究机械合金化时间和CNT分散对金属-CNT复合材料的微观结构和力学性能的影响。在这项研究中,铝合金6061(A16061)-CNT复合材料是通过半固态粉末加工从经过不同时间机械合金化的粉末中合成的。分析了A16061 -CNT复合材料的粉末形貌,显微组织,硬度,抗弯强度,断裂表面和组成。结果表明,在机械合金化过程中,多壁CNT团聚体首先被粉碎成薄层,然后分散。在不同的机械合金化时间下,A16061颗粒表面的CNT显示,CNT的长度从机械合金化1小时后迅速降低至约1.2μm,而在3 h后从原来的5μm以上的长度迅速降至1μm以下。在机械合金化过程中,A16061-CNT复合材料的晶粒严重变形。硬度随着机械合金化时间的增加而提高。但是,弯曲试验和断裂表面表明,随着机械合金化时间的增加,复合材料的延展性降低。成分分析人员还表明,由于添加了CNT,形成了碳化铝(Al_4C_3)。另外,使用改进的剪切滞后模型来预测在不同机械合金化时间下A16061-CNT的强度。

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