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Investigation of graphene-reinforced magnesium metal matrix composites processed through a solvent-based powder metallurgy route

机译:通过溶剂基粉末冶金工艺加工的石墨烯增强镁金属基复合材料的研究

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In the present investigation, AZ31 alloy is homogeneously reinforced with 0.2, 0.3, 0.4 and 0.5 wt% of reduced graphene oxide (r-GO) nanosheets for the first time through a series of methodologies involving solvent processing, mechanicalalloying, cold pressing and finally sintering under argon atmosphere at 560$$C. Scanning Electron Microscopy (SEM) assisted with energy-dispersive X-ray analysis revealed that this inventive fabrication route is useful to easily disperse r-GO into the matrix material and thereby attain methodical homogeneity with a uniform particle size. The attained results show that amongst the others, addition of 0.4 wt% r-GO have obviously improved the hardness up to 64.6 HV and also yielded a better inhibition efficiency of 84% on corrosion. Any further increase of r-GO content resulted for significant decrease in the wear rate up to the level of 2.6 mm$^3$ Nm$^{a??1}$.
机译:在本研究中,AZ31合金首次通过包括溶剂加工,机械合金化,冷压和最终烧结在内的一系列方法用0.2、0.3、0.4和0.5 wt%的还原氧化石墨烯(r-GO)纳米片进行了均匀增强。在氩气氛下,温度为560°C。借助能量色散X射线分析的扫描电子显微镜(SEM)表明,本发明的制造路线可用于容易地将r-GO分散到基质材料中,从而获得具有均匀粒径的方法均匀性。所得结果表明,除其他外,添加0.4重量%的r-GO明显提高了硬度至64.6HV,并且还产生了更好的84%的腐蚀抑制率。 r-GO含量的任何进一步增加都会导致磨损率显着降低,直至2.6 mm $ ^ 3 $ Nm $ ^ {a ?? 1} $。

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