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石英光纤表面Cu-石墨烯复合镀层的性能研究(英文) Title:PerformanceStudyofCu-GrapheneCompositeCoatingonQuartzFiberSurface Abstract: Inrecentyears,therehasbeenincreasinginterestinexploringnovelmaterialsandcoatingsforopticalfiberstoenhancetheirperformanceinvariousapplications.ThispaperpresentsacomprehensivestudyontheperformanceofaCu-graphenecompositecoatingonthesurfaceofquartzfiber.Theaimofthisresearchistoinvestigatetheeffectofthecompositecoatingonthemechanical,thermal,andopticalpropertiesofthefiber.TheresultsshowthattheCu-graphenecompositecoatingexhibitspromisingperformanceandhasthepotentialtoimprovetheoverallfunctionalityofquartzfibers. 1.Introduction Quartzfibersarewidelyusedinvariousindustries,includingtelecommunications,aerospace,andsensingapplications,duetotheirexcellentopticalproperties.However,theirmechanicalandthermalstabilityisofteninsufficientfordemandingenvironments.Toaddresstheselimitations,theapplicationofcoatingsonthefibersurfacehasbeenextensivelyexplored.Amongvariouscoatingmaterials,Cuandgraphenecompositeshaveattractedsignificantattentionduetotheirexceptionalproperties,suchashighelectricalconductivity,mechanicalstrength,andthermalstability.ThisstudyaimstoinvestigatethepotentialbenefitsofaCu-graphenecompositecoatingonthequartzfibersurface. 2.ExperimentalProcedure TheCu-graphenecompositecoatingwasfabricatedusingasimpleelectroplatingmethod.Thegraphenesheetswereobtainedviaachemicalvapordeposition(CVD)processandthendispersedinaCuplatingsolution.Thepreparedcompositecoatingwasappliedontothesurfaceofthequartzfiberthroughanelectroplatingprocess.Thecoatedfibersweresubjectedtovariouscharacterizationtechniquestoevaluatetheirmechanical,thermal,andopticalproperties. 3.ResultsandDiscussion 3.1MechanicalProperties:Thetensilestrengthandflexibilityofthecoatedfiberwereevaluatedusingauniversaltestingmachine.TheresultsdemonstratedthattheCu-graphenecompositecoatingsignificantlyimprovedthemechanicalintegrityofthefiber,withanotableincreaseintensilestrengthandflexibilitycomparedtouncoatedfibers. 3.2T

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