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Microstructural and mechanical analysis of carbon nanotube reinforced magnesium alloy powder composites

机译:碳纳米管增强镁合金粉末复合材料的组织和力学分析

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摘要

Carbon nanotube (CNT) is an effective reinforcement used to improve the mechanical and thermal responses of metal matrix composites. It is, however, obvious that segregation of CNTs due to their strong van der Waals forces will produce material defects, decreasing the material properties. An advanced powder metallurgy process that disperses un-bundled nanotubes has been developed, and it is applied to fabricate a Mg matrix composite reinforced with CNTs in the present study. When approximately 1 vol.% CNTs were added, the extruded pure Mg and AZ31B alloy composites displayed an extremely large increase of the tensile yield stress of 25-40%, compared to Mg materials containing no CNT. HR-TEM verified the presence of MgO thin layers of 2-4 nm thickness, originating in the oxide surface films of the raw Mg and its alloy powders. These layers exist at the interface between α-Mg and the un-bundled nanotubes. The oxide layer showed a homogeneous mixture containing both α-Mg and CNT. This mixture resulted in an effective tensile loading transfer at the interface, which significantly improved the tensile strength (TS) and yield stress (YS) of the Mg composites. However, the elongation was less than 5%, and the composites exhibited a very poor ductility. This was because the MgO layers at the interface between α-Mg and CNT were very ductile.
机译:碳纳米管(CNT)是一种有效的增强材料,用于改善金属基复合材料的机械和热响应。但是,很明显,由于其强大的范德华力,CNT的分离会产生材料缺陷,从而降低材料性能。已经开发出了一种先进的粉末冶金工艺,该工艺可以分散未成束的纳米管,并且在本研究中将其用于制造碳纳米管增强的镁基复合材料。当添加约1vol。%的CNT时,与不含CNT的Mg材料相比,挤出的纯Mg和AZ31B合金复合材料的拉伸屈服应力极大地增加了25-40%。 HR-TEM验证了存在的2-4 nm厚度的MgO薄层,其起源于原始Mg及其合金粉末的氧化物表面膜。这些层存在于α-Mg与非束缚纳米管之间的界面处。氧化物层显示出包含α-Mg和CNT的均匀混合物。这种混合物在界面处产生了有效的拉伸载荷转移,从而显着提高了Mg复合材料的拉伸强度(TS)和屈服应力(YS)。然而,伸长率小于5%,并且复合材料表现出非常差的延展性。这是因为在α-Mg和CNT之间的界面处的MgO层非常易延展。

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