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Microstructural and mechanical behavior of multi-walled carbon nanotubes reinforced Al-Mg-Si alloy composites in aging treatment

机译:多壁碳纳米管增强Al-Mg-Si合金复合材料时效处理的微观组织和力学行为

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摘要

Microstructural and mechanical behavior of heat treatable Al-Mg-Si (6XXX series) alloy composites reinforced with multi-wall carbon nanotubes (MWCNTs) fabricated by powder metallurgy process were investigated by SEM-EDS, XRD, tensile test and Vicker's hardness test. As-extruded P/M 6063 alloy composites with CNT reinforcements indicated a small increment of mechanical strength compared to the monolithic 6063 alloy with no CNT before T6 heat treatment. When T6 heat treatment was applied to the specimens, the 6063 composite with CNTs showed a noticeable decrease of yield stress (YS) improvement, Compared to the monolithic Al alloy. It means that Mg2Si precipitates hardening effect by the artificial aging treatment was insufficient for the composite containing CNTs. This was mainly because Mg alloying elements were diffused around CNTs and consumed to form Al2MgC2 compounds, and resulted in the incomplete matrix strengthening behavior by Mg2Si precipitation after the aging treatment.
机译:通过SEM-EDS,XRD,拉伸试验和维氏硬度试验研究了粉末冶金法制备的多壁碳纳米管(MWCNTs)增强的可热处理Al-Mg-Si(6XXX系列)合金复合材料的组织和力学性能。与T6热处理前没有CNT的整体式6063合金相比,具有CNT增强的挤压P / M 6063合金复合材料的机械强度增加很小。当对样品进行T6热处理时,与整体式铝合金相比,具有CNT的6063复合材料的屈服应力(YS)改善明显降低。这意味着对于包含CNT的复合物,通过人工时效处理的Mg 2 Si析出物的硬化效果不足。这主要是由于Mg合金元素散布在CNT周围并被消耗而形成Al2MgC2化合物,并且由于时效处理后Mg2Si的析出导致基体强化行为不完全。

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