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Carbon Nanotube Reinforced Metal Matrix Nanocomposites Via Equal Channel Angular Pressing

机译:碳纳米管增强金属基质纳米复合材料通过等沟角压制

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Carbon nanotubes (CNTs) have been the subject of intensive study for applications in the fields of nanotechnologies in recent years due to their superior mechanical, electric, optical and electronic properties. Because of their exceptionally small diameters (≈ several nm) as well as their high Young's modulus (≈ 1 TPa), tensile strength (≈ 200 GPa) and high elongation (10-30%) in addition to a high chemical stability, CNTs are attractive reinforcement materials for light weight and high strength metal matrix composites. In this study, bottom-up type powder processing and top-down type SPD (severe plastic deformation) approaches were combined in order to achieve full density of CNT/metal matrix composites with superior mechanical properties by improved particle bonding and least grain growth, which were considered as a bottle neck of the bottom-up method using the conventional powder metallurgy of compaction and sintering. ECAP (equal channel angular pressing), the most promising method in SPD, was used for the CNT/Cu powder consolidation. The powder ECAP processing with 1, 2, 4 and 8 route C passes was conducted at room temperature. It was found by mechanical testing of the consolidated CNT/Cu that high mechanical strength could be achieved effectively as a result of the Cu matrix strengthening and improved particle bonding during ECAP. The ECAP processing of powders is a viable method to achieve fully density CNT-Cu nanocomposites.
机译:由于其优越的机械,电动,光学和电子性能,碳纳米管(CNT)是近年来纳米技术领域应用的密集研究的主题。由于它们具有极小的直径(≈几个Nm)以及它们的高杨氏模量(≈1tpa),除了高化学稳定性之外,拉伸强度(≈100gpa)和高伸长率(10-30%),CNT是具有轻质和高强度金属基复合材料的有吸引力的加强材料。在该研究中,组合了自下而上型粉末处理和自上而下的SPD(严重塑性变形)方法,以通过改善颗粒键合和最低晶粒生长来实现具有优异的机械性能的CNT /金属基质复合材料的全密度被认为是使用传统的粉末冶金的自下而上方法的瓶颈。 ECAP(等通道角压)是SPD中最有前途的方法,用于CNT / Cu粉末固结。用1,2,4和8路线C通过的粉末ECAP处理在室温下进行。通过在ECAP期间的Cu基质强化和改进的颗粒键合的结果,通过机械测试发现高机械强度可以有效地实现高机械强度。粉末的ECAP处理是实现全密度CNT-Cu纳米复合材料的可行方法。

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