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Processing and Properties of CNTs/ADC12 Nanocomposite

机译:CNT / ADC12纳米复合材料的加工和性能

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摘要

Carbon nanotubes (CNTs)-reinforced ADC12 nanocomposite was successfully fabricated via casting. The CNTs-Al master alloy was prepared by hot extrusion, and the CNTs were dispersed into the matrix by a high-intensity ultrasonic treatment during the casting process to yield 0.5, 1.0, 1.5 wt.% of the CNTs/ADC12 composite. The key step in arriving at homogeneous distribution of CNTs was preparation of the CNTs-Al master alloy and the introduction of a high-intensity ultrasonic treatment method. The cavitation bubbles that adhered to the aggregated CNTs closed rapidly and released large amounts of energy, which had an impact via the cavitation effect, which made the aggregated CNTs dissociate and disperse homogeneously into the melt. Under the conditions of ultrasonic power of 2.1kW and ultrasonic time of 10min, the mean diameter of -Al was 53.2m, which was 58.9% lower than that of the matrix. The microhardness and the ultimate tensile strength (UTS) of nanocomposite with 1.0 wt.% CNTs addition increased by 29.3 and 27%, respectively, as compared with the matrix. CNTs can be dispersed in the matrix homogeneously. It was observed by scanning electron microscope (SEM) that CNTs as a load-bearing element were embedded in the matrix independently, enhancing the mechanical properties. This suggested that the improvement of mechanical properties could be attributed to the size and degree of CNTs clustering, the load transfer from the matrix to the CNTs and the grain refinement of the nanocomposite.
机译:通过铸造成功制造碳纳米管(CNT) - 抗原ADC12纳米复合材料。通过热挤出制备CNTS-Al主合金,通过在浇铸过程中通过高强度超声处理将CNT分散到基质中,得到0.5,1.0,1.5重量%的CNT / ADC12复合材料。到达CNT均匀分布的关键步骤是制备CNTS-AL主合金,并引入高强度超声处理方法。粘附到聚集的CNT的空化气泡快速闭合并释放大量能量,这通过空化效果产生了冲击,这使得聚集的CNT分离并分散到熔体中。在超声波的情况下为2.1kW的超声波和10分钟的超声波时间,-Al的平均直径为53.2米,比基质的平均直径为58.9%。与基质相比,纳米复合材料的微硬度和纳米复合材料的极硬抗拉强度(UTS)分别增加29.3和27%。 CNT可以均匀地分散在基质中。通过扫描电子显微镜(SEM)观察到作为承载元件的CNT独立地嵌入基质中的CNT,增强了机械性能。这表明机械性能的改善可以归因于CNT聚类的尺寸和程度,从基质到CNT和纳米复合材料的晶粒细化的负载转移。

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