石墨烯增强铝基纳米复合材料(graphene reinforced alumina nanocomposites)

石墨烯增强铝基纳米复合材料(graphene reinforced alumina nanocomposites)

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时间:2018-07-17

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1、石墨烯增强铝基纳米复合材料(Graphenereinforcedaluminananocomposites)Graphenenanometersaretwo-dimensionalmaterialsofthethicknessofasingleatomiclayermadeupofsp2hybridcarbonatoms,showingaseriesofunusualphysicalproperties.In2004,Novoselovandother[1]usedtapestrippingmethodtoprepare

2、graphenenano-chipsamplesandcharacterizetheirmicrostructureandphysicalproperties.Graphenenanopiecebecauseofitsspecialtwo-dimensionalstructure,causedtheacademiccirclesstudyphysics,chemistryandmaterialsthegreatinterestofscholars,thebasicresearchandengineeringapplica

3、tionresearchongraphenebecomearesearchhotspotinrecentyears[2].Grapheneisthemosttenacious,conductiveandheat-conductingmaterialfoundtodate.Tomakegraphenemeetengineeringapplicationstateassoonaspossible,theEuropeanUnionin2012tostartthegrapheneflagshiptechnologyproject

4、[3],theUnitedStatesalsovigorouslyinputs,andintheapplicationofgrapheneasasupercapacitorandhasmadebreakthroughprogress[3].Thewetchemicalreductionmethodiseasytorealizethebulkpreparationofgraphenenanoparticles,andtheobtainedgraphenehasbetterhydrophilicandsingledisper

5、sibility,whichistheidealcompositematerialnano-filler[4].Duetothehighstrengthofgraphene,itstensilestrengthcanreachupto1060GPaandhowtouseittoimprovethestrengthofcompositematerialsbecomesaresearchhotspot.Therehavebeenreportsofgraphenenanoparticlesenhancedwith[5]andt

6、heceramicmaterial,[6].Thetensilestrengthofthegraphenenano-chipwith0.7%qualityfractioninpolyvinylalcoholincreasedby76%.ThebendingstrengthofAl2O3ceramicmatrixwith0.78%ofthevolumefractionwasincreasedby30.75%whilethefracturestrengthincreasedby27.20%[6].Butnoreportsof

7、graphene-enhancedmetalmatrixcompositeshavebeenreported.Aluminumalloyhaslowdensity,highstrengthandgoodductility.Ithasbeenwidelyusedinaviation,aerospaceandotherfields.Asastructuralmaterial,howtoimprovethestrengthofaluminumalloyhasbeenthemaindirectionofitsresearcher

8、s.Now,usechangealloysmeltingmethod,controlcomponents,adjustmentmethodssuchasheattreatmentandthedeformationprocessinfurtherimprovingofaluminiumalloyperformancei

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