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首页> 外文期刊>Fullerenes, nanotubes, and carbon nanostructures >Synergistic strengthening effect of alumina anchored graphene nanosheets hybrid structure in aluminum matrix composites
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Synergistic strengthening effect of alumina anchored graphene nanosheets hybrid structure in aluminum matrix composites

机译:铝基复合材料中氧化铝锚定石墨烯纳米晶杂交结构的协同强化效应

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The microstructure design of graphene based reinforcement is an effective route to obtain graphene/aluminum composites with good mechanical properties. In this study, alumina anchored on graphene nanosheets hybrid (Al2O3@GNS) was in situ synthesized by a sodium chloride template-assisted high-temperature calcination strategy. Al2O3@GNS was used as a reinforcement to fabricate aluminum matrix composites (Al2O3@GNS/Al) by flake powder metallurgy (FPM) route. It was found that Al2O3@GNS was homogenously distributed and a relatively obvious synergistic strengthening effect was acquired by employing Al2O3@GNS as reinforcement of the composites. similar to 1.0vol%-Al2O3@GNS/Al composite obtained the maximum tensile strength of 359MPa, an similar to 131.6% improvement superior to pure Al. The strengthening efficiency of Al2O3@GNS is higher than those reinforced by individual GNS, Al2O3 or its simple mixture. An elongation of 11.2% was achieved in the similar to 1.0vol%-Al2O3@GNS/Al composite, exhibiting a favorable strength-ductility synergy. The synergistic strengthening effect was attributed to the formation of an interlocked network of Al2O3@GNS, which was beneficial to improve the load transfer efficiency from the matrix to reinforcement in the composites.
机译:石墨烯增强的微观结构设计是获得具有良好机械性能的石墨烯/铝复合材料的有效途径。在本研究中,通过氯化钠模板辅助的高温煅烧策略合成,锚固在石墨烯纳米蛋白酶杂交(Al2O3 @ GNS)上。使用剥落粉末冶金(FPM)途径制造铝基基复合材料(Al2O3 @ GNS / Al)的加强件。结果发现,通过使用Al2O3 @ GNS作为复合材料的增强,获得了均匀分布的Al2O3 @ GNS和相对明显的协同强化效果。类似于1.0VOL%-AL2O3@gns/al复合材料获得的最大拉伸强度为359mpa,同样为优于纯Al的131.6%。 Al2O3 @ GNS的强化效率高于单个GNS,Al2O3或其简单混合物增强的效率。在类似于1.0VOL% -A12O3@gnsal复合材料的情况下实现11.2%的伸长率,表现出有利的强度 - 延展性协同作用。协同强化效应归因于形成Al2O3 @ GNS的互锁网络,这有利于将来自基质的负载转移效率提高到复合材料中的增强物。

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