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一种用于橡胶填料的改性多孔钢渣及其制备方法 Title:ModifiedPorousSteelSlagasaRubberFilleranditsPreparationMethods Abstract: Theuseofsteelslaginrubbercompositesasafillermaterialhasgainedsignificantattentionduetoitsuniqueproperties.However,theincorporationofsteelslagintorubbercompositesstillfaceschallengesduetoitsinherentlimitations.Thispaperaimstoexplorethemodificationtechniquesforsteelslag,leadingtothedevelopmentofmodifiedporoussteelslagasanidealrubberfiller.Thepreparationmethods,structuralcharacteristics,andpropertiesofthemodifiedporoussteelslaginrubbercompositeswillbediscussed.Thisstudyprovidesvaluableinsightsintothepotentialapplicationofmodifiedporoussteelslagasasustainableandcost-effectivefillermaterialfortherubberindustry. 1.Introduction 1.1Background 1.2Objectives 1.3Scope 2.SteelSlagasaRubberFiller 2.1PropertiesofSteelSlag 2.2ChallengesinIncorporatingSteelSlagasaRubberFiller 3.ModificationTechniquesforSteelSlag 3.1SurfaceModification 3.1.1ChemicalModification 3.1.2PhysicalModification 3.2PorosityEnhancement 3.2.1GasFoamingTechnique 3.2.2TemplateMethod 3.3CharacterizationofModifiedPorousSteelSlag 4.PreparationMethodsofModifiedPorousSteelSlag 4.1PyrolysisTechnique 4.2ThermalActivationTechnique 4.3CarbonizationTechnique 4.4SyntheticTechnique 4.5DiscussiononProsandConsofDifferentPreparationMethods 5.StructuralCharacteristicsofModifiedPorousSteelSlag 5.1SurfaceMorphology 5.2SurfaceChemistry 5.3PoreSizeandDistribution 6.PropertiesofModifiedPorousSteelSlaginRubberComposites 6.1MechanicalProperties 6.2ThermalStability 6.3AgingResistance 6.4ElectricalConductivity 7.ApplicationsandFuturePerspectives 7.1RubberIndustry 7.2EnvironmentalBenefits 7.3ChallengesandPotentialSolutions 7.4FutureResearchDirections 8.Conclusion References Note:Thispaperstructureservesasaroughguideline.Youcanaddormodifythesectionsasneededtocoverthetopiccomprehensively.