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一種基于半自動(dòng)CAD的環(huán)面蝸輪滾刀制造方法(英文)ASemi-AutomaticCAD-BasedMethodforManufacturingToroidalWormGearMillingCuttersAbstractThedesignandmanufacturingoftoroidalwormgearmillingcuttersiscomplexandtime-consuming.Thispaperpresentsasemi-automaticCAD-basedmethodforefficientlyandaccuratelycreatingtoroidalwormgearmillingcutters.Thismethodinvolvesgeneratingaccurate3Dmodelsofthecutterusingcomputer-aideddesignsoftware,CNCmachining,andsimulationandverificationofthetoolpaths.Themethodhasbeenimplementedandvalidatedinthefabricationofreal-worldtoroidalwormgearmillingcutters.Theresultsdemonstratethattheproposedmethodiseffectiveinimprovingtheproductionefficiencyandprecisionoftoroidalwormgearmillingcutters.Keywords:Toroidalwormgearmillingcutters,Semi-automaticCAD-basedmethod,Computer-aideddesignsoftware(CAD),CNCmachining,Simulation,Verification.IntroductionToroidalwormgearmillingcuttersarewidelyusedinmanyindustries,suchasaerospace,automotive,androbotics.Theyareefficientandprecisetoolsthatcanproducecomplexgearshapeswithhighaccuracy.However,thedesignandmanufacturingoftoroidalwormgearmillingcuttersarecomplexandtime-consuming.Conventionalmethodsformakingtoroidalwormgearmillingcuttersinvolvemanualmethodssuchasgrindingandshaping,whichrequireahighlevelofskillandexperience.Thesemethodsaretime-consumingandcanleadtoerrorsduetothemanualnatureoftheprocess.Moreover,theydonotadequatelyaddresstheever-increasingdemandforhigherefficiencyinthemanufacturingprocess.Inrecentyears,computer-aideddesign(CAD)andcomputer-aidedmanufacturing(CAM)technologieshavebeenincreasinglyusedinthemanufacturingoftoroidalwormgearmillingcutters.However,currentmethodsrelyheavilyonmanualinterventionduringthedesignandmanufacturingprocess,whichlimitstheefficiencyandaccuracyoftheprocess.Toaddressthesechallenges,thispaperpresentsasemi-automaticCAD-basedmethodformanufacturingtoroidalwormgearmillingcutters.Themainobjectiveoftheproposedmethodistoimprovetheefficiencyandaccuracyofthemanufacturingprocess.MethodologyThesemi-automaticCAD-basedmethodformanufacturingtoroidalwormgearmillingcuttersinvolvesthefollowingsteps:Step1:3DModelGenerationThefirststepintheproposedmethodisthegenerationofanaccurate3Dmodelofthetoroidalwormgearmillingcutterusingcomputer-aideddesignsoftware.The3Dmodelshouldincludeallthenecessaryinformation,suchasthecuttergeometry,numberofteeth,module,andhelixangle.Step2:CNCMachiningThesecondstepistoprogramtheCNCmachinetocreatethetoroidalwormgearmillingcutter.Thisinvolvesimportingthe3DmodelintoCAMsoftware,generatingthetoolpaths,andthensendingthetoolpathstotheCNCmachineformanufacturing.Step3:SimulationThethirdstepistosimulatethetoolpathsgeneratedinstep2.Thisinvolvesimportingthetoolpathsintosimulationsoftware,visualizingthetoolpaths,andthenverifyingthetoolpathsforanyerrorsorcollisions.Step4:VerificationThefinalstepistoverifythetoroidalwormgearmillingcutteraftermanufacturing.Thisinvolvesinspectingthecutterforanydefectsorerrors,andthenmakinganynecessaryadjustmentsormodifications.ResultsTheproposedsemi-automaticCAD-basedmethodhasbeenimplementedandvalidatedinthefabricationofreal-worldtoroidalwormgearmillingcutters.Theresultsdemonstratethattheproposedmethodiseffectiveinimprovingtheproductionefficiencyandprecisionoftoroidalwormgearmillingcutters.Inparticular,themethodhasthefollowingadvantagesoverconventionalmethods:1.Itreducestheneedformanualintervention,therebyimprovingtheefficiencyandaccuracyofthemanufacturingprocess.2.Themethodisscalable,whichmeansitcanbeeasilyappliedtodifferenttypesoftoroidalwormgearmillingcutters.3.Themethodisflexible,whichmeansitcanbeeasilyadaptedtothespecificneedsofdifferentmanufacturingprocesses.ConclusionThispaperhaspresentedasemi-automaticCAD-basedmethodformanufacturingtoroidalwormgearmillingcutters.Theproposedmethodinvolvesusingcomputer-aideddesignsoftware,CNCmachining,andsimulationandverificationofthetoolpathstoincreasetheefficiencyandaccuracyofthemanufacturingprocess.Theresultsofthemethodhavebeenvalidatedinthefabricationofreal-worldtoroidalwormgear

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