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MECHANICAL PROPERTIES OF A356-CNT CAST NANO COMPOSITE PRODUCED BY A SPECIAL COMPOCASTING ROUTE

机译:特殊复合路线生产的A356-CNT铸造纳米复合材料的力学性能

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A356 aluminum alloys reinforced with carbon nano-tubes (CNTs) were produced by stir casting and compocasting routes and their microstructural characteristics and mechanical properties in ambient and high temperature were examined. In order to alleviate the problems associated with poor wettability, agglomeration and gravity segregation of CNTs in the melt, CNTs were introduced into the melts by injection of CNT deposited aluminum particles instead of raw CNTs. The slurries were subsequently cast at temperatures corresponding to fully liquid as well as 0.15 and 0.30 solid fractions. The results showed that addition of CNTs to A356 matrix could significantly increase the mechanical properties. Yield strength and ultimate tensile strength of the composite samples were significantly improved compared with the corresponding monolithic samples. While the monolithic sample kept about 60% of its strength at 300°C, the semi-solid composite samples kept more than 90% of their strength at this temperature.
机译:通过搅拌铸造和复合铸造工艺生产了用碳纳米管(CNTs)增强的A356铝合金,并研究了它们在室温和高温下的显微组织特征和力学性能。为了减轻与熔体中的CNT的差的润湿性,附聚和重力偏析相关的问题,通过注入CNT沉积的铝颗粒而不是原始的CNT将CNT引入熔体中。随后将浆料在对应于完全液体以及0.15和0.30固体分数的温度下浇铸。结果表明,将碳纳米管添加到A356基质中可以显着提高机械性能。与相应的整体式样品相比,复合材料样品的屈服强度和极限拉伸强度得到了显着提高。整体样品在300°C时保持其强度的60%左右,而半固体复合材料样品在此温度下保持其强度的90%以上。

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