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外文翻译--可持续夹具及固定装置的高精度安装的方法论 英文版.pdf

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外文翻译--可持续夹具及固定装置的高精度安装的方法论 英文版.pdf

G.Seligeretal.eds.,AdvancesinSustainableManufacturingProceedingsofthe8thGlobalConference149onSustainableManufacturing,DOI10.1007/9783642201837_22,©SpringerVerlagBerlinHeidelberg2011MethodologyforHighAccuracyInstallationofSustainableJigsandFixturesJ.Jamshidi,P.G.MaropoulosDepartmentofMechanicalEngineering,UniversityofBath,UKAbstractTheabilitytoaccuratelymeasurethecomponentsofjigsandfixturesduringtheirinstallationdeterminesthestateoftheirprecision,especiallyforlargesizeproductsandapplications.Thismatteriscrucialinmasscustomisationwheresmallbatchesofproductsandcomponentswithhighvarietyindesignaremanufactured.Productqualityshouldbeinharmonywithrapidchangeoverphilosophyascompromisingqualityforspeedisnotforgivableforsensitivecomponentsandassembliessuchasthoseseenintheaerospaceindustry.Itisnecessaryfortheinstallationofthejigsandfixturestobehighlyaccurateinordertominimisetheuseoftolerancebudgetduetovariationsinjigsandfixturepositioning.Majoroverheadcostsforjigsandfixturesparticularlyintheaerospaceindustryledtothedevelopmentoftheconceptofflexibleandreconfigurablejigsandfixtures.Reusabilityofreconfigurablejigsandfixturesmakesthemattractiveforsustainablesolutionsastheircomponentscanbereusedforseveralvariantofaproductorassembly.Themaindrawbacksofthistypeofjigsandfixtureshavebeentheirpooraccuracyandreliability.Inthispaperaccuratepositioningofthekeycomponentsofsustainablejigsandfixturesisinvestigated.Thefactorsaffectingtheperformanceofthejigsandfixturesarereviewedfromtheinstallationstage.Thepaperintroducesamethodologyforminimisinguncertaintiesinpositioningoftheholdsandclampsforflexiblejigsandfixtures.KeywordsSustainableJig,Jiginstallation,CalibrationUncertainty,JigMonitoring,Metrology,ReusableJig1INTRODUCTIONFactorssuchasqualityandreliabilityhavelongconvertedtoimplicitcharacteristicsofthenewproducts.Recentmarkettrendshaveforcedmanufacturingindustriestomovetowardsmasscustomisationintheirproductsandservicerange.Increasedvariationinthedesignofnewproductsisfollowedbyasecondwaveofvariationwithhigheramplitudeatsubassembliesandcomponentlevel.Stateoftheartmanufacturingsystemsandtechnologieshaveprovidedmoreflexibility,enablingdesignerstothinkmorefreely.Forinstancenewlargevolumemeasurementsystems,developedinthepastfewyears,arecapableofmeasuringseveraldecametredistances.Suchtechnologiesfacilitatetheverificationoflargesizecomponentsthatusedtobemanufacturedfromseveralassembledcomponents.Themanufacturingoflargesizeproductsrequiresspecialistjigsandfixturesinorderfortheircomponentstobeheldinthedesiredorientationduringbuildandassembly.Thisrequiresmajoroverheadcostthatcanonlybejustifiedbymassproductioninsomecasesorotherwisethecostoffinishedproductscanbeveryhigh.Thisissuecontradictswiththemarkettrendswherecustomersareconstantlylookingforhighervaluefortheirmoney.Inatypicalproductthevariationintheproductcreatesamoresustainablebusinessasitcanfulfiltheneedsofarelativelylargermarket.Flexibleandreconfigurablejigsandfixturethatcanbeformedindifferentshapestosupportdifferentvariationofproductsisakeysolutionfortheabovechallenges.Theconceptofflexiblejigexistedforseveralyearsintheresearchdomain1.However,theyarenotfullyutilisedtoagreatextentinrealproductionfacilitiesespeciallyforlargesizeproductmanufacturers,suchasaerospace.Thisisduetothechallengesrelatedtotheirinitialinstallation,poorcalibration,andrepeatabilitythatoftenexceedthetolerancerequirement.Themanufacturingofthesejigsandfixturesfromhighqualitykeycomponentsaswellastheirintegrationwithlargevolumemetrologysystemscanreducetheabovelimitations.Thispapercoversmetrologyissuesrelatedtotheinstallationandcalibrationofflexiblejigsandfixturesaswellastheirmonitoringduringservice.2RELATEDWORK2.1ManufacturingandassemblyoflargescalepartsTypicallypriortoprecisionmanufacturingofmechanicalpartsitisessentialtomovetherawmaterialtothemachinebench,proceedwithroughcuttingthenfinealignmentandclamping.Atthisstagethepartisreadyformachiningofitshighprecisionkeyfeatures.However,thisisnotalwayspossibleforlargesizeand/orheavycomponents.Largescaleproductsrefertothosewithcomponentsthatarenoteconomicallypossibletohandleormovearoundinthefactoryforfabricationandassemblypurposes2.Themanufacturingandassemblyprocessesofthesepartsencompassmovementofthemachinesandsystemstothedesiredlocationandorientationwithrespecttotheseparts.Suchpartsarenormallyheldintheirpositionsusinglargesizejigsandfixtures.Ifthesepartsareproducedinsmallbatchsizesthatisthecaseforaerospaceindustries,highoverheadcostperproductwilloccur.Therehavebeenmanyattemptstodesignandmanufacturejigsandfixturessothattheycanholdanumberofvariantsofcomponents3,4.However,thisapproachisnotfeasibleforpartswithsensitiveorkeyfeaturesduetotheirhighaccuracyrequirements.J.Jamshidi,P.G.Maropoulos150Adjustable,reconfigurablejigsandfixturesproducelowerrepeatabilityovertimecomparedtofixedones.Fixedjigshavepermanenttopologyachievedthroughtheirpermanentjointsthatareweldedorriveted.Mechanicalfailureofthesejigsandfixturesforexampleduetofatigueandplasticdeformationisamaincauseofterminatingtheirserviceandsendingthemforrecycling.Withsmallbatchmanufacturingrequirementsitisnowcommontoretireaconformingjigastheirservicelifedependsonthelifeofproducts.Inotherwordssoonaftertheceaseofmanufacturingapartsvariant,theassociatedjigsandfixturesbecomeredundant.Evenifthejigsarestillinworkingorder,theyhavetobescrappedandsentforrecycling.Thismethodbringstheburdenofhighenergyconsumptionforrecycling.Evenforthefixedjigsandfixturesthedriftinthelargesizepartsandjigcanaffecttheaccuracyofalargesizeassembly5.Severalmethodsforanalysingjigrigidityhavebeendeveloped6toevaluatetheimpactofvibrationonlargesizejigs.Inanycaseamoresustainablemanufacturingcanonlybeachievedbyalternativesolutions.Figure1TypicalcomponentsoflargescalejigimagecourtesyofElectroimpacthttp//www.electroimpact.com/G150TFIX/gallery.aspExtensiveleadtimetomanufactureisanothermajordrawbackforfixedjigsandfixtures.Thesejigsshouldbeorderedwellinadvanceofanymanufacturingprocesses.Thiscancreateadditionalcomplexityinproductionplanningandproducttimetomarket.Regardlessoftheirtype,largescalejigshaveanumberofcommonelementsincludingonemainframe,oneoranumberofinnerframes,potentiallyoneoranumberofmovingmechanisms,andsmallercomponentssuchasclamps,bushings,pickupsandadjustablescrewsFigure1.2.2FlexiblejigsandfixturesTheconceptofflexiblejigsandfixturesisdevelopedforincreasedsustainability,rapidchangeoveraswellaslowcost.Itisnowpossibletouseofftheshelfmodulesandclampsforjigsandfixturesdesignandassembly.Dependingontherequirementonlyahandfulofspecialisedcomponentsforthejigsandfixturesmightbeneededtobecustomdesignedandmanufactured.Inthisconceptthemajorityofbulkcomponents,jointsattheattachmentsareusedinforaspecificapplication.Oncetheproductdesignvariantisfullymanufactureditisthenpossibletodisassembletheabovecomponentsandreassembletheminanewtopologytosuitethenextdesignvariant.Thiscyclecanberepeatedoveralargenumberoftimesresultinginreducedoverheadcostforjigsandfixtures.Needlesstomentiontheotherfactorssuchasdisassemblytime,resettingtime,operatorstimeshouldbeconsideredforevaluatingtherealcostbenefitofusingthistypeofjigsandfixtures.Thisapproachbestreducesthecostofjigsandfixturesfortheassemblyandcomponentrangesthatarefairlycloseindesign.Dependingonthelevelofvariationsinthecomponentsandthetypeofworkrequiredoneachadifferentpercentageoftheflexiblejigsneedtoberearranged.Thismatteriscrucialtobeconsideredatdesignstageinordertoincreasethebenefitofusingthistypeofjigsandfixtures.Forexample,whenpossible,thelocationand3Dpositioningofpickupsandclampsondifferentvariantsofthecomponentoreventotallydifferentpartsshouldbeincloseproximitytoincreasecompatibilityandinterchangeabilityofsubsystemsofjigsandfixtures.Havingacollectionofthekeycomponentsofthejigscanguaranteetheavailabilityofthedesiredjigsinashorttime.Inadditiontothisthestorageofthejigsrequiredlessspaceasitispossibletodismantleallthemodulesthataretypicallyintheformofscaffoldingandplacethemnexttoeachother.FlexiblejigsarecurrentlyutilisedinsomeoftheautomotivecompaniesFigure2astheiraccuracylevelissufficientforthissector.DespitetheabovebenefitsthereareClampMainframeInnerframeComponentAdjustableholdsMovingmechanismsMethodologyforHighAccuracyInstallationofSustainableJigsandFixtures151notmanyflexiblejigsinoperationinlargesizemanufacturingfacilitiessuchasaerospacefactories.Accuracyanduncertaintyofpositioningpins,repeatabilityoftheclampsanddriftofthejigstructureareallcontributingtothefactthatthesejigscannotmeetthetolerancerequirementsofthepowergenerationandaerospaceindustries.Thesejigshavehighpotentialsforutilisationintheaboveindustriesoncetheiraccuracyproblemsareresolved.Figure2FixturewithreconfigurablecomponentsforautomotiveindustryimagecourtesyofWittehttp//www.horstwitte.de/en/Therehasbeenanumberofnewdevelopmentsinlargevolumemetrologysystemsandtechnologies.Modernlaserbasedmetrologysystemsandtechnologiesarenowcapableofmeasuringlargesizeproductsuptoseveraldecametreswithacceptableaccuracy.Thesesystemscanbeusedtoaccuratelypositionmountingsofthekeycomponentsofthejigduringitsinstallationandinitialsetup.Theinstallationofjigsandfixturestypicallystartsformitsbaseormainframethenlargecomponentsandgraduallytothesmallercomponentssuchaspickupsandclamps.Metrologysystemscanbeusedfortheinstallationofflexiblejigmainframeanditsinnerframestoguaranteethecorrectpositioningofeachandeverycomponent.Table1showsafewoftheselargescalemeasurementsystems.Fortechnologicalreviewofthesesystemssee7.Lasertrackersystemscapableofmeasuringreferencepoints,areamongthemostsuitablemeasurementsystemsforthispurpose.TheinstrumenttracksaSphericallyMountedRetroreflectorSMRtargetthepositionofwhichcanberegisteredinthreedimensionalspace.SMRcanbecontacteddirectlywiththetargetobjecttoprovidegeometricalpositionalinformationorcanbeusedwithinamechanicallyrepeatableSMRnestknownasLasertrackertargetorinshorttargetfromthispointon.Lasertrackerslikeanyothermeasurementinstrumenthavealevelofuncertaintythatneedtobeaccountedforduringthejiginstallationprocess.Alsothelineofsightissuesbetweenthelasertrackeranditstargetpointshouldbeconsideredandifnecessarymultipletrackerpositionsshouldbeused.Inrealmeasurementactivitytheresultmustbeaccompaniedwithastatementofuncertainty.Suchstatementcharacterisesthedispersionofthevaluesthatarereasonablyattributedtothemeasurand8.Thisissueisthesamefortheinstallationandlaterverificationofanyjigorfixture.Thisknowledgeclarifiesthejigcapabilityofagivenpositioningandassemblytask.Inotherworditindicatesifajigcanmeetthetolerancerequirementsforitsrelatedprocesses.2.3ComparisonofjigphilosophiesTherearealargenumberofdifferentshapeanddesignjigsandfixturesindifferentcompaniesforvariousmanufacturingandassemblyapplications.Someofthesejigsandfixturesarereadilyavailableinstandardforms,whilesomearedesignedandmanufacturedspecifictoparticularpartsandtasks.Thelattercanbeveryexpensivebasedonthecomplexityandscaleoftheproducts9.Regardlessofcostandpurposeamanufacturingorassemblyprocesscanbeperformedusingwithnojig,withfixedframejigs,orwithreconfigurableorflexiblejigs.Table2providesacomparisonofthesemethodswiththeirtypicalapplications.Fixedframejigsaretypicallyforheavydutyapplications.Theyaremoresuitableforapplicationswithalargenumberofproductsthatcanrelaxtheoverheadcostofthejig.Thereareseveraladvantagesintheapplicationofflexiblejigsandfixturesforthemanufacturingandassemblyoflargeandcomplexproducts.Inparticularforresearchanddevelopmentwork,aswellasforcaseswherelowvolumeproductsaremanufacturedflexiblejigandfixturecanbeverybeneficial.Inadditiontotimeandmoneysavingbenefitsthepossibilityofhavingaflexiblejiggivesmorefreedomtothedesign,manufacturingandassemblyprocessesduetothelowdirectandrecurrentcostofchangingtheoveralltopologyofthejig.ReconfigurabilityandreusabilityofflexiblejigisamainClampMainframeInnerframeComponentJ.Jamshidi,P.G.Maropoulos152advantageforthistypeofjigcomparedtoconventionaljigs.Thisisparticularlyimportantasitisinlinewiththeindustrydirectionintermsofgreenmanufacturingbyrecyclingcomponentsfromausedsystem,reducingprojectcostswithregardstoexpensesfortoolingofassociateditems.Table1Examplesoflargevolume/portablemeasurementinstrumentsforjigverificationMeasurementtypeInstrumentAuxiliarycomponentsContactNoncontactImageSMRprobe9LaserTrackerTprobe9LaserRadarSphericaltargets9Targets9PhotogrammetryLightprojection9Laserbasedscanninghead9ArticulatedArmCMMContactprobe93FLEXIBLEJIGINSTALLATIONTheissuesandconcernsthatneedtobeconsideredinthejiginstallationprocedurearedescribedinthissection.Theinstallationofthejigcomponentsintherightpositioncanbeachallengingespeciallywhenthepositioningtolerancesaretights.Flexiblejigsshouldalsobemonitoredinordertoexploitandcomparetheirrigiditywiththatoftheconventionalones.Stagebystagemeasurementinstructionforthejiginstallationbasedontheresultsofaninitialjigsetupinthesimulationsoftwareenvironmentandpracticalexperimentofalargesizejigwithdimensionsof5mx4mx3misgiveninagenericdescription.Thisisregardlessofwhetherthejigisinfirsttimeinstallationoritisachangeofanexistingjigtopologyintoanewshape,forholdingadifferentcomponent.Dependingonthecomplexityatypicallargesizejighasbetweenthreetofivelevelsofframes.Apartfromthebaselevelwithnormallyonemainframe,ateachleveltherecanbeoneorseveralframes.Theseframesareinterrelatedwithreferencetothejigdatuminordertofacilitatethepositioningandfunctionalityrequired.Inanautomated,fixedplatform,roboticsystemscarryoutseveraltaskssuchaspartpositioning,machiningandassembly.Therobotworkingdatumthereforeislinkedwiththeworkingframeofthejig.Carefulconsiderationofjigdatumingstrategyanditssubsequentinstallationcansecureachievingthedesiredtolerance.3.1MeasurementassistedflexiblejiginstallationThereareseveralstagesfortheinstallationofflexiblejigsthatcanbecarriedoutinfirstsimulationandthenrealworld.Theuseofsimulationexercisecanreducethenumberofpotentialerrorsandreworkduringthisprocess.Theprocessofmeasurementassistedinstallationissimilartotrackingobjectstopositionthatiscommonforlargesizeassemblies.Inthisapproachthecomponentsofthejigareroughlypositioned,within1mmtolerancefromthetargetposition,atfirst.Thenwhenallofthejigcomponentsareattachedintotheirdesignatedpositions,within0.1mmto0.15mmtolerance,theyaretightenedusingtheappropriatetorque.Thetypicalstagesofmetrologyassistedflexiblejiginstallationaregivenbelow1.settinginitialreferenceframesinthefactory2.measurementofinitialreferenceframe3.installationofbaseormainframeinitsposition4.installationofinnerframesoffline5.installationofholdingandpositioningbrackets6.installationofclamps,bushingsandpickupsintheirroughpositiononinnerframesandmainframe7.installationofinnerframeonthebaseframe8.fineadjustmentandfasteningofkeylocatingcomponents9.verificationofreferenceframesandclamps10.inservicemonitoringofkeypositionsonthejigThesestagesarerelatedtothecompleteinstallationofthejigfromthescratch.Needlesstomentionthatincaseofslight

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