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首页> 外文期刊>Bulletin of Materials Science >Investigation of graphene-reinforced magnesium metal matrix composites processed through a solvent-based powder metallurgy route
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Investigation of graphene-reinforced magnesium metal matrix composites processed through a solvent-based powder metallurgy route

机译:通过溶剂型粉末冶金途径处理石墨烯增强镁金属基复合材料的研究

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摘要

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, mechanical alloying, cold pressing and finally sintering under argon atmosphere at 560 degrees 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 2.6Nm(-1).
机译:在本研究中,首次通过涉及溶剂加工,机械合金化,冷压和最后的一系列方法,首次使用0.2,0.3,0.4和0.5wt%的石墨烯氧化物(R-Go)纳米烯均匀加强石墨烯(R-Go)纳米液的均匀加强。 烧结在氩气氛下在560℃下烧结。扫描电子显微镜(SEM)辅助能量分散X射线分析显示,该发明制造途径可用于容易地分散到基质材料中,从而通过均匀地获得有条理的均匀性 粒度。 达到的结果表明,在其他结果中,添加0.4重量%的R-GA明显改善了64.6HV的硬度,并且还产生了84%的腐蚀性的更好的抑制效率。 R-GO含量的任何进一步增加导致磨损率的显着降低,高达2.6nm(-1)。

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