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Dispersion of Carbon Nanotubes in AA6061 Aluminium Alloy Powder by the High Energy Ball Milling Process

机译:高能球磨法在碳纳米管在AA6061铝合金粉末中的分散

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摘要

Multi-wall carbon nanotubes (MWCNT), up to 2% in weight, were dispersed into AA6061 aluminium alloy by high-energy ball milling (HEBM) process, for further consolidation into extruded metal-matrix composites (MMC) bars. Three distinct routes were employed: the simple one step loading of materials inside the milling vials, an ultrasonically assisted dispersion of MWCNT and alloy powder into acetone prior to the milling, and the gradual introduction of MWCNT into the vials, during the milling process. Mixed powders obtained were evaluated in terms of the MWCNT integrity after HEBM, and the dispersion level obtained for several milling times. It was found that MWCNT remain relatively undamaged even for milling times up to 10 h, being embedded into the ductile alloy particles through the breaking/welding process during HEBM. However, shorter milling times result in poor dispersion of MWCNT in the milled powders. This tendency can be improved by using pre-milling mixture procedures, as the ultrasonically assisted wet dispersion of nanotubes and alloy powder.
机译:通过高能球磨(HEBM)工艺将重量最高达2%的多壁碳纳米管(MWCNT)分散到AA6061铝合金中,以进一步固结为挤出的金属基复合材料(MMC)棒材。采用了三种不同的途径:在研磨瓶中简单地一步装载材料,在研磨之前将MWCNT和合金粉末超声辅助分散到丙酮中,以及在研磨过程中将MWCNT逐步引入小瓶中。根据在HEBM之后的MWCNT完整性,以及几次研磨时间获得的分散水平,评估获得的混合粉末。已经发现,即使在长达10小时的铣削时间内,MWCNT仍相对不受损坏,在HEBM期间通过断裂/焊接过程被嵌入到可延展合金颗粒中。但是,较短的研磨时间会导致MWCNT在研磨粉末中的分散性较差。这种趋势可以通过使用预研磨的混合程序来改善,例如超声辅助的纳米管和合金粉末的湿法分散。

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