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新型热压WC-Fe基金刚石钻头胎体性能研究 Title:PerformanceStudyofWC-Fe-basedDiamondDrillBodyforNewHot-pressingTechnology Abstract: Thedevelopmentofnewhot-pressingtechnologyhassignificantlyimprovedtheperformanceofWC-Fe-baseddiamonddrillbodies.ThisresearchfocusesonevaluatingthephysicalandmechanicalpropertiesofWC-Fe-baseddiamonddrillbodiesfabricatedusingthenewhot-pressingtechnique.Theaimistoassesstheviabilityandpotentialbenefitsofthistechnologyfordrillingapplications.Thestudyinvolvesacomprehensiveexaminationofthepropertiessuchasdensity,hardness,wearresistance,andthermalstability.TheresultsindicatethattheWC-Fe-baseddiamonddrillbodyexhibitssuperiorperformancecharacteristics,promisingsignificantadvancementsinthefield. 1.Introduction(approx.200words) Thedemandforhigh-performancedrillingtoolshasincreasedexponentiallyinvariousindustries,includingmining,geothermalexploration,andoilandgas.Diamonddrillbodiesarewidelyusedduetotheirexceptionalabrasionresistanceandwearperformance.Conventionalfabricationmethods,however,oftenleadtosuboptimalproperties,limitingthedrillbody'soverallefficiency.Theemergenceofthenewhot-pressingtechnologypresentsapromisingsolutiontothischallenge,enablingtheproductionofsuperiorWC-Fe-baseddiamonddrillbodies. 2.ExperimentalProcedure(approx.300words) TheexperimentalprocedureinvolvesthefabricationofWC-Fe-baseddiamonddrillbodiesusingthenewhot-pressingtechnique.Theprocessparameters,includingtemperature,pressure,andtime,werecarefullycontrolledtooptimizethediamonddistributionandenhancethedrillbody'sproperties.Afterfabrication,thedrillbodiesunderwentseveralteststoevaluatetheirphysicalandmechanicalcharacteristics.Thesetestsincludedensitydetermination,hardnessmeasurementsusingVickersmicrohardnesstesting,wearresistanceassessmentusingatribometer,andthermalstabilityanalysisviathermalgravimetricanalysis(TGA).Theobtaineddatawerecomparedagainstconventionaldiamonddrillbodiestoassesstheperformanceimprovementsachievedthroughthenewhot-pressingtechnology. 3.ResultsandDiscussion(approx.500words) T