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Effect of Graphene Nanoplate and Silicon Carbide Nanoparticle Reinforcement on Mechanical and Tribological Properties of Spark Plasma Sintered Magnesium Matrix Composites 被引量:2

Effect of Graphene Nanoplate and Silicon Carbide Nanoparticle Reinforcement on Mechanical and Tribological Properties of Spark Plasma Sintered Magnesium Matrix Composites
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摘要 Processing of magnesium (Mg) matrix composites reinforced with low reinforcement content (up to 4-5 vol.%) of graphene nanoplates (GNPs) and silicon carbide (SIC) nanoparticles using bait milling and spark plasma sintering (SPS) is reported. Near full densification was observed for all the composite compositions at the sintering temperature of 450 ~C (soaking time of 5 min and applied pressure of 50 MPa). Detailed analysis of the microstructure and mechanical and tribological (under dry sliding contact with alumina counter-face) properties with reinforcement content in Mg-GNP and Mg-SiC is presented. Mg-GNP and Mg-SiC composites reinforced with about 2 vol.% of reinforcement content exhibited significant improvement in microhardness and wear resistance as compared with Mg compacts. Processing of magnesium (Mg) matrix composites reinforced with low reinforcement content (up to 4-5 vol.%) of graphene nanoplates (GNPs) and silicon carbide (SIC) nanoparticles using bait milling and spark plasma sintering (SPS) is reported. Near full densification was observed for all the composite compositions at the sintering temperature of 450 ~C (soaking time of 5 min and applied pressure of 50 MPa). Detailed analysis of the microstructure and mechanical and tribological (under dry sliding contact with alumina counter-face) properties with reinforcement content in Mg-GNP and Mg-SiC is presented. Mg-GNP and Mg-SiC composites reinforced with about 2 vol.% of reinforcement content exhibited significant improvement in microhardness and wear resistance as compared with Mg compacts.
出处 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2014年第11期1059-1070,共12页 材料科学技术(英文版)
关键词 Microstructure and properties WEAR TRIBOLOGY Magnesium matrix composites Microstructure and properties Wear Tribology Magnesium matrix composites
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