手指关节功能康复仪的设计(全套含CAD图纸)
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上传时间:2018-03-21
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手指
关节
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康复
痊愈
设计
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NUMERICALCONTROLTECHNOLOGYNUMERICALCONTROLNUMERICALCONTROLNCISAFORMOFPROGRAMMABLEAUTOMATIONINWHICHTHEPROCESSINGEQUIPMENTISCONTROLLEDBYMEANSOFNUMBERS,LETTERS,ANDOTHERSYMBOLSTHENUMBERS,LETTERS,ANDSYMBOLSARECODEDINANAPPROPRIATEFORMATTODEFINEAPROGRAMOFINSTRUCTIONSFORAPARTICULARWORKPARTORJOBWHENTHEJOBCHANGES,THEPROGRAMOFINSTRUCTIONSISCHANGEDTHECAPABILITYTOCHANGETHEPROGRAMISWHATMAKESNCSUITABLEFORLOWANDMEDIUMVOLUMEPRODUCTIONITISMUCHEASIERTOWRITEPROGRAMSTHANTOMAKEMAJORALTERATIONSOFTHEPROCESSINGEQUIPMENTTHEREARETWOBASICTYPESOFNUMERICALLYCONTROLLEDMACHINETOOLSPOINTTOPOINTANDCONTINUOUSPATHALSOCALLEDCONTOURINGPOINTTOPOINTMACHINESUSEUNSYNCHRONIZEDMOTORS,WITHTHERESULTTHATTHEPOSITIONOFTHEMACHININGHEADCANBEASSUREDONLYUPONCOMPLETIONOFAMOVEMENT,ORWHILEONLYONEMOTORISRUNNINGMACHINESOFTHISTYPEAREPRINCIPALLYUSEDFORSTRAIGHTLINECUTSORFORDRILLINGORBORINGTHENCSYSTEMCONSISTSOFTHEFOLLOWINGCOMPONENTSDATAINPUT,THETAPEREADERWITHTHECONTROLUNIT,FEEDBACKDEVICES,ANDTHEMETALCUTTINGMACHINETOOLOROTHERTYPEOFNCEQUIPMENTDATAINPUT,ALSOCALLED“MANTOCONTROLLINK”,MAYBEPROVIDEDTOTHEMACHINETOOLMANUALLY,ORENTIRELYBYAUTOMATICMEANSMANUALMETHODSWHENUSEDASTHESOLESOURCEOFINPUTDATAARERESTRICTEDTOARELATIVELYSMALLNUMBEROFINPUTSEXAMPLESOFMANUALLYOPERATEDDEVICESAREKEYBOARDDIALS,PUSHBUTTONS,SWITCHES,ORTHUMBWHEELSELECTORSTHESEARELOCATEDONACONSOLENEARTHEMACHINEDIALSALEANALOGDEVICESUSUALLYCONNECTEDTOASYNCHROTYPERESOLVERORPOTENTIOMETERINMOSTCASES,PUSHBUTTONS,SWITCHES,ANDOTHERSIMILARTYPESOFSELECTORSAYEDIGITALINPUTDEVICESMANUALINPUTREQUIRESTHATTHEOPERATORSETTHECONTROLSFOREACHOPERATIONITISASLOWANDTEDIOUSPROCESSANDISSELDOMJUSTIFIEDEXCEPTINELEMENTARYMACHININGAPPLICATIONSORINSPECIALCASESINPRACTICALLYALLCASES,INFORMATIONISAUTOMATICALLYSUPPLIEDTOTHECONTROLUNITANDTHEMACHINETOOLBYCARDS,PUNCHEDTAPES,ORBYMAGNETICTAPEEIGHTCHANNELPUNCHEDPAPERTAPEISTHEMOSTCOMMONLYUSEDFORMOFDATAINPUTFORCONVENTIONALNCSYSTEMSTHECODEDINSTRUCTIONSONTHETAPECONSISTOFSECTIONSOFPUNCHEDHOLESCALLEDBLOCKSEACHBLOCKREPRESENTSAMACHINEFUNCTION,AMACHININGOPERATION,ORACOMBINATIONOFTHETWOTHEENTIRENCPROGRAMONATAPEISMADEUPOFANACCUMULATIONOFTHESESUCCESSIVEDATABLOCKSPROGRAMSRESULTINGINLONGTAPESALLWOUNDONREELSLIKEMOTIONPICTUREFILMPROGRAMSONRELATIVELYSHORTTAPESMAYBECONTINUOUSLYREPEATEDBYJOININGTHETWOENDSOFTHETAPETOFORMALOOPONCEINSTALLED,THETAPEISUSEDAGAINANDAGAINWITHOUTFURTHERHANDLINGINTHISCASE,THEOPERATORSIMPLYLOADSANDUNLOADSTHEPARTSPUNCHEDTAPESALEPREPAREDONTYPEWRITERSWITHSPECIALTAPEPUNCHINGATTACHMENTSORINTAPEPUNCHINGUNITSCONNECTEDDIRECTLYTOACOMPUTERSYSTEMTAPEPRODUCTIONISRARELYERRORFREEERRORSMAYBEINITIALLYCAUSEDBYTHEPARTPROGRAMMER,INCARDPUNCHINGORCOMPILATION,ORASARESULTOFPHYSICALDAMAGETOTHETAPEDURINGHANDLING,ETCSEVERALTRIALRUNSAREOFTENNECESSARYTOREMOVEALLERRORSANDPRODUCEANACCEPTABLEWORKINGTAPEWHILETHEDATAONTHETAPEISFEDAUTOMATICALLY,THEACTUALPROGRAMMINGSTEPSALEDONEMANUALLYBEFORETHECODEDTAPEMAYBEPREPARED,THEPROGRAMMER,OFTENWORKINGWITHAPLANNERORAPROCESSENGINEER,MUSTSELECTTHEAPPROPRIATENCMACHINETOOL,DETERMINETHEKINDOFMATERIALTOBEMACHINED,CALCULATETHESPEEDSANDFEEDS,ANDDECIDEUPONTHETYPEOFTOOLINGNEEDEDTHEDIMENSIONSONTHEPARTPRINTARECLOSELYEXAMINEDTODETERMINEASUITABLEZEROREFERENCEPOINTFROMWHICHTOSTARTTHEPROGRAMAPROGRAMMANUSCRIPTISTHENWRITTENWHICHGIVESCODEDNUMERICALINSTRUCTIONSDESCRIBINGTHESEQUENCEOFOPERATIONSTHATTHEMACHINETOOLISREQUIREDTOFOLLOWTOCUTTHEPARTTOTHEDRAWINGSPECIFICATIONSTHECONTROLUNITRECEIVESANDSTORESALLCODEDDATAUNTILACOMPLETEBLOCKOFINFORMATIONHASBEENACCUMULATEDITTHENINTERPRETSTHECODEDINSTRUCTIONANDDIRECTSTHEMACHINETOOLTHROUGHTHEREQUIREDMOTIONSTHEFUNCTIONOFTHECONTROLUNITMAYBEBETTERUNDERSTOODBYCOMPARINGITTOTHEACTIONOFADIALTELEPHONE,WHERE,ASEACHDIGITISDIALED,ITISSTOREDWHENTHEENTIRENUMBERHASBEENDIALED,THEEQUIPMENTBECOMESACTIVATEDANDTHECALLISCOMPLETEDSILICONPHOTODIODES,LOCATEDINTHETAPEREADERHEADONTHECONTROLUNIT,DETECTLIGHTASITPASSESTHROUGHTHEHOLESINTHEMOVINGTAPETHELIGHTBEAMSARECONVERTEDTOELECTRICALENERGY,WHICHISAMPLIFIEDTOFURTHERSTRENGTHENTHESIGNALTHESIGNALSARETHENSENTTOREGISTERSINTHECONTROLUNIT,WHEREACTUATIONSIGNALSARERELAYEDTOTHEMACHINETOOLDRIVESSOMEPHOTOELECTRICDEVICESARECAPABLEOFREADINGATRATESUPTO1000CHARACTERSPERSECONDHIGHREADINGRATESARENECESSARYTOMAINTAINCONTINUOUSMACHINETOOLMOTION;OTHERWISEDWELLMARKSMAYBEGENERATEDBYTHECUTTERONTHEPARTDURINGCONTOURINGOPERATIONSTHEREADINGDEVICEMUSTBECAPABLEOFREADINGDATABLOCKSATARATEFASTERTHANTHECONTROLSYSTEMCANPROCESSTHEDATAAFEEDBACKDEVICEISASAFEGUARDUSEDONSOMENCINSTALLATIONSTOCONSTANTLYCOMPENSATEFORERRORSBETWEENTHECOMMANDEDPOSITIONANDTHEACTUALLOCATIONOFTHEMOVINGSLIDESOFTHEMACHINETOOLANNCMACHINEEQUIPPEDWITHTHISKINDOFADIRECTFEEDBACKCHECKINGDEVICEHASWHATISKNOWNASACLOSEDLOOPSYSTEMPOSITIONINGCONTROLISACCOMPLISHEDBYASENSORWHICH,DURINGTHEACTUALOPERATION,RECORDSTHEPOSITIONOFTHESLIDESANDRELAYSTHISINFORMATIONBACKTOTHECONTROLUNITSIGNALSTHUSRECEIVEDALECOMPAREDTOINPUTSIGNALSONTHETAPE,ANDANYDISCREPANCYBETWEENTHEMISAUTOMATICALLYRECTIFIEDINANALTERNATIVESYSTEM,CALLEDANOPENLOOPSYSTEM,THEMACHINEISPOSITIONEDSOLELYBYSTEPPINGMOTORDRIVESINRESPONSETOCOMMANDSBYACONTROLLERSTHEREARETHREEBASICTYPESOFNCMOTIONS,ASFOLLOWSPOINTTOPOINTORPOSITIONALCONTROLINPOINTTOPOINTCONTROLTHEMACHINETOOLELEMENTSTOOLS,TABLE,ETCAREMOVEDTOPROGRAMMEDLOCATIONSANDTHEMACHININGOPERATIONSPERFORMEDAFTERTHEMOTIONSARECOMPLETEDTHEPATHORSPEEDOFMOVEMENTBETWEENLOCATIONSISUNIMPORTANTONLYTHECOORDINATESOFTHEENDPOINTSOFTHEMOTIONSAREACCURATELYCONTROLLEDTHISTYPEOFCONTROLISSUITABLEFORDRILLPRESSESANDSOMEBORINGMACHINES,WHEREDRILLING,TAPPING,ORBORINGOPERATIONSMUSTBEPERFORMEDATVARIOUSLOCATIONSONTHEWORKPIECESTRAIGHTLINEORLINEARCONTROLSTRAIGHTLINECONTROLSYSTEMSAREABLETOMOVETHECUTTINGTOOLPARALLELTOONEOFTHEMAJORAXESOFTHEMACHINETOOLATACONTROLLEDRATESUITABLEFORMACHININGITISNORMALLYONLYPOSSIBLETOMOVEINONEDIRECTIONATATIME,SOANGULARCUTSONTHEWORKPIECEARENOTPOSSIBLE,CONSEQUENTLY,FORMILLINGMACHINES,ONLYRECTANGULARCONFIGURATIONSCANBEMACHINEDORFORLATHESONLYSURFACESPARALLELORPERPENDICULARTOTHESPINDLEAXISCANBEMACHINEDTHISTYPEOFCONTROLLEDMOTIONISOFTENREFERREDTOASLINEARCONTROLORAHALFAXISOFCONTROLMACHINESWITHTHISFORMOFCONTROLAREALSOCAPABLEOFPOINTTOPOINTCONTROLCONTINUOUSPATHORCONTOURINGCONTROLINCONTINUOUSPATHCONTROLTHEMOTIONSOFTWOORMOREOFTHEMACHINEAXESARECONTROLLEDSIMULTANEOUSLY,SOTHATTHEPOSITIONANDVELOCITYOFTHECANBETOOLARECHANGEDCONTINUOUSLYINTHISWAYCURVESANDSURFACESCANBEMACHINEDATACONTROLLEDFEEDRATEITISTHEFUNCTIONOFTHEINTERPOLATORINTHECONTROLLERTODETERMINETHEINCREMENTSOFTHEINDIVIDUALCONTROLLEDAXESOFTHEMACHINESNECESSARYTOPRODUCETHEDESIREDMOTIONTHISTYPEOFCONTROLISREFERREDTOASCONTINUOUSCONTROLORAFULLAXISOFCONTROLSOMETERMINOLOGYCONCERNINGCONTROLLEDMOTIONSFORNCMACHINESHASBEENINTRODUCEDFOREXAMPLE,SOMEMACHINESAREREFERREDTOASFOURORFIVEOREVENSIXAXISMACHINESFORAVERTICALMILLINGMACHINETHREEAXESOFCONTROLAREFAIRLYOBVIOUS,THESEBEINGTHEUSUALX,Y,ZCOORDINATEDIRECTIONSAFOURTHORFIFTHAXISOFCONTROLWOULDIMPLYSOMEFORMOFROTARYTABLETOINDEXTHEWORKPIECEORPOSSIBLYTOPROVIDEANGULARMOTIONOFTHEWORKHEADTHUS,INNCTERMINOLOGYANAXISOFCONTROLISANYCONTROLLEDMOTIONOFTHEMACHINEELEMENTSSPINDLES,TABLES,ETCAFURTHERCOMPLICATIONISUSEOFTHETERMHALFAXISOFCONTROLFOREXAMPLE,MANYMILLINGMACHINESAREREFERREDTOAS25AXISMACHINETHISMEANSTHATCONTINUOUSCONTROLISPOSSIBLEFORTWOMOTIONSAXESANDONLYLINEARCONTROLISPOSSIBLEFORTHETHIRDAXISAPPLIEDTOVERTICALMILLINGMACHINES,25AXISCONTROLMEANSCONTOURINGINTHEX,YPLANEANDLINEARMOTIONONLYINTHEZDIRECTIONWITHTHESEMACHINESTHREEDIMENSIONALOBJECTSHAVETOBEMACHINEDWITHWATERLINESAROUNDTHESURFACEATDIFFERENTHEIGHTSWITHANALTERNATIVETERMINOLOGYTHESAMEMACHINECOULDBECALLEDA2CLMACHINECFORCONTINUOUS,LFORLINEARCONTROLTHUS,AMILLINGMACHINEWITHCONTINUOUSCONTROLINTHEX,Y,ZDIRECTIONSCOULDBETERMEDBEATHREEAXISMACHINEORA3CMACHINE,SIMILARLY,LATHESAREUSUALLYTWOAXISOR2CMACHINESTHEDEGREEOFWORKPRECISIONDEPENDSALMOSTENTIRELYUPONTHEACCURACYOFTHELEADSCREWANDTHERIGIDITYOFTHEMACHINESTRUCTUREWITHTHISSYSTEMTHEREISNOSELFCORRECTINGACTIONORFEEDBACKOFINFORMATIONTOTHECONTROLUNITINTHEEVENTOFANUNEXPECTEDMALFUNCTION,THECONTROLUNITCONTINUESTOPUTOUTPULSESOFELECTRICALCURRENTIF,FOREXAMPLE,THETABLEONANCMILLINGMACHINEWERESUDDENLYTOBECOMEOVERLOADED,NORESPONSEWOULDBESENTBACKTOTHECONTROLLERBECAUSESTEPPINGMOTORSARENOTSENSITIVETOLOADVARIATIONS,MANYNCSYSTEMSAREDESIGNEDTOPERMITTHEMOTORSTOSTALLWHENTHERESISTINGTORQUEEXCEEDSTHEMOTORTORQUEOTHERSYSTEMSAREINUSE,HOWEVER,WHICHINSPITEOFTHEPOSSIBILITYOFDAMAGETOTHEMACHINESTRUCTUREORTOTHEMECHANICALSYSTEM,ALEDESIGNEDWITHSPECIALHIGHTORQUESTEPPINGMOTORSINTHISCASE,THEMOTORSHAVESUFFICIENTCAPACITYTO“OVERPOWERTHESYSTEMINTHEEVENTOFALMOSTANYCONTINGENCYTHEORIGINALNCUSEDTHECLOSEDLOOPSYSTEMOFTHETWOSYSTEMS,CLOSEDANDOPENLOOP,CLOSEDLOOPISMOREACCURATEAND,ASACONSEQUENCE,ISGENERALLYMOREEXPENSIVEINITIALLY,OPENLOOPSYSTEMSWEREUSEDALMOSTENTIRELYFORLIGHTDUTYAPPLICATIONSBECAUSEOFINHERENTPOWERLIMITATIONSPREVIOUSLYASSOCIATEDWITHCONVENTIONALELECTRICSTEPPINGMOTORSRECENTADVANCESINTHEDEVELOPMENTOFELECTROHYDRAULICSTEPPINGMOTORSHAVELEDTOINCREASINGLYHEAVIERMACHINELOADAPPLICATIONSNCTECHNOLOGYDEVELOPMENTTRENDSSUMMARYHAVEINTRODUCEDNUMERICALCONTROLTECHNOLOGYANDTHEDEVELOPMENTTRENDOFTHEEQUIPMENTANDTHECURRENTSITUATIONSOFTHETECHNICALDEVELOPMENTOFNUMERICALCONTROLEQUIPMENTANDINDUSTRIALIZATIONOFOURCOUNTRYOFOURTIMESBRIEFLY,HAVEDISCUSSEDUNDERTHENEWENVIRONMENTFURTHERDEEPENEDINOURCOUNTRYSACCESSIONTOTHEWTOANDOPENINGTOTHEOUTSIDEWORLDONTHISBASIS,DEVELOPTECHNOLOGYOFNUMERICALCONTROLOFOURCOUNTRYANDTHEIMPORTANCEOFTHEINFORMATIONBASEDLEVELOFMANUFACTURINGINDUSTRYOFOURCOUNTRYANDINTERNATIONALCOMPETITIVENESSEQUIPS,IMPROVES,ANDHASPUTFORWARDTECHNOLOGYOFNUMERICALCONTROLOFOURCOUNTRYANDSOMEVIEWSEQUIPPEDOFDEVELOPINGFROMTWOASPECTSOFSTRATEGYANDTACTICSTHEENGINEERINGLEVELOFEQUIPMENTINDUSTRYANDMODERNIZEDINTENSITYAREDETERMININGTHELEVELOFTHEWHOLENATIONALECONOMYANDMODERNIZEDINTENSITY,NUMERICALCONTROLTECHNOLOGYANDEQUIP,DEVELOPNEWDEVELOPINGNEWHIGHTECHINDUSTRYANDMOSTADVANCEDINDUSTRYTOCANMAKETECHNOLOGYANDBASICEQUIPMENTMOSTNATIONALDEFENSEINDUSTRYINDUSTRIES,SUCHASINFORMATIONTECHNOLOGYANDTHEIRINDUSTRY,BIOTECHNOLOGY,INDUSTRY,AVIATION,SPACEFLIGHT,ETCMARXHASEVERSAID“THEDIFFERENCESOFDIFFERENTECONOMICTIMES,DONOTLIEINWHATISPRODUCED,LIEINHOWPRODUCE,WITHWHATMEANSOFLABORPRODUCE“MANUFACTURINGTECHNOLOGYANDEQUIPPINGTHEMOSTBASICMEANSOFPRODUCTIONTHATARETHATTHEMANKINDPRODUCEDTHEACTIVITY,ANDNUMERICALCONTROLTECHNOLOGYTOEQUIPMOSTCENTRALTECHNOLOGYNOWADAYSTHEMANUFACTURINGINDUSTRYALLAROUNDTHEWORLDADOPTSTHETECHNOLOGYOFNUMERICALCONTROLEXTENSIVELYINORDERTOIMPROVEMANUFACTURINGCAPACITYANDLEVEL,IMPROVETHEADAPTIVECAPACITYANDCOMPETITIVEPOWERTOTHECHANGEABLEMARKETOFTHETRENDSINADDITIONEVERYINDUSTRIALLYDEVELOPEDCOUNTRYINTHEWORLDALSOCLASSIFIESTHETECHNOLOGYANDNUMERICALCONTROLEQUIPMENTOFNUMERICALCONTROLASTHESTRATEGICMATERIALSOFTHECOUNTRY,NOTMERELYTAKETHEGREATMEASURETODEVELOPONESOWNNUMERICALCONTROLTECHNOLOGYANDINDUSTRY,ANDIMPLEMENTBLOCKADINGANDRESTRICTIVEPOLICYTOOURCOUNTRYIN“HIGHGRADE,PRECISIONANDADVANCED“KEYTECHNOLOGYANDEQUIPMENTOFNUMERICALCONTROLINAWORD,DEVELOPTAKINGTECHNOLOGYOFNUMERICALCONTROLASTHECOREADVANCEDMANUFACTURINGTECHNOLOGYBECOMEWORLDALLDEVELOPEDCOUNTRYACCELERATEECONOMICDEVELOPMENTALREADYINAMORECOSTEFFECTIVEMANNER,IMPORTANTROUTETOIMPROVETHECOMPREHENSIVENATIONALSTRENGTHANDNATIONALPOSITIONNUMERICALCONTROLTECHNOLOGYTOGOONTECHNOLOGYTHATCONTROLWITHDIGITALINFORMATIONTOMECHANICALMOVEMENTANDWORKINGCOURSE,NUMERICALCONTROLEQUIPMENTWHETHERREPRESENTEDBYTECHNOLOGYOFNUMERICALCONTROLNEWTECHNOLOGYMAKEINDUSTRYANDNEWDEVELOPINGINFILTRATIONELECTROMECHANICSINTEGRATEDPRODUCTTHATFORMOFMANUFACTURINGINDUSTRYTOTRADITION,IEWHATISCALLEDDIWWWMAPENGNET马棚网GITIZATIONEQUIP,ITSTECHNOLOGICALRANGECOVERSALOTOFFIELDS1MECHANICALMANUFACTURINGTECHNOLOGY2INFORMATIONPROCESSING,PROCESSING,TRANSMISSIONTECHNOLOGY3AUTOMATICCONTROLTECHNOLOGY4SERVODRIVETECHNOLOGY5TRANSDUCERTECHNOLOGY6SOFTWAREENGINEERING,ETC1DEVELOPMENTTRENDOFANUMERICALCONTROLTECHNOLOGYTHEAPPLICATIONOFTHETECHNOLOGYOFNUMERICALCONTROLHASNOTONLYBROUGHTTHEREVOLUTIONARYCHANGETOTRADITIONALMANUFACTURINGINDUSTRY,MAKETHEMANUFACTURINGINDUSTRYBECOMETHEINDUSTRIALIZEDSYMBOL,ANDWITHTHECONSTANTDEVELOPMENTOFTHETECHNOLOGYOFNUMERICALCONTROLANDENLARGEMENTOFAPPLICATION,THEDEVELOPMENTOFHESOMEIMPORTANTTRADESIT,CAR,LIGHTINDUSTRY,MEDICALTREATMENT,ETCTOTHENATIONALECONOMYANDTHEPEOPLESLIVELIHOODPLAYSAMOREANDMOREIMPORTANTROLE,BECAUSETHESETRADENECESSARYDIGITIZATIONTHATEQUIPPEDHASALREADYBEENTHEMAINTRENDOFMODERNDEVELOPMENTACCORDINGTOTHETECHNOLOGYOFNUMERICALCONTROLANDEQUIPMENTDEVELOPMENTTRENDINTHEWORLDATPRESENT,ITSMAINRESEARCHFOCUSHASTHEFOLLOWINGSEVERALRESPECT1411AHIGHSPEED,HIGHFINISHMACHININGTECHNOLOGYANDNEWTRENDEQUIPPEDEFFICIENCY,QUALITYARESUBJECTSOFTHEADVANCEDMANUFACTURINGTECHNOLOGYATAHIGHSPEED,HIGHFINISHMACHININGTECHNOLOGYCANRAISETHEEFFICIENCYGREATLY,QUALITYANDGRADETORAISEPRODUCT,SHORTENPRODUCTIONCYCLEANDIMPROVETHECOMPETITIVEPOWEROFMARKETJAPANCARRYTECHNOLOGICALRESEARCHASSOCIATIONCLASSIFYTHEIRASONEOFTHE5LOUDMODERNMANUFACTURINGTECHNOLOGIESFIRSTFORTHISREASON,LEARNCIRPTOCONFIRMITASTHECENTREINTHE21STCENTURYTOSTUDYONEOFTHEDIRECTIONSININTERNATIONALPRODUCTIONENGINEERINGINTHEFIELDOFCARINDUSTRY,PRODUCE40SECONDWHENBEATSUCHASPRODUCTIONOF300,000/VEHICLEPERYEAR,ANDMANYVARIETYPROCESSITISCARTHATEQUIPONEOFTHEKEYPROBLEMSTHATMUSTBESOLVEDINTHEFIELDSOFAVIATIONANDAEROSPACEINDUSTRY,ITSPROCESSINGSSPAREPARTSAREMOSTLYTHETHINWALLANDTHINMUSCLE,RIGIDITYVERYBAD,MATERIALALUMINUMORALUMINUMALLOY,INHIGHTOCUTPACEANDCUTSTRENGTHVERYUNDERTHELITTLESITUATIONONLY,COULDPROCESSTHESEMUSCLES,WALLSADOPTLARGESCALEWHOLEALUMINIUMALLOYBLANKMETHODOF“PAYEMPTY“MAKETHEWINGRECENTLY,LARGESCALEPARTSSUCHASTHEFUSELAGE,ETCCOMETOSUBSTITUTEALOTOFPARTSTOASSEMBLETHROUGHNUMEROUSRIVET,SCREWANDOTHERCONNECTIONWAYS,MAKETHEINTENSITY,RIGIDITYANDDEPENDABILITYOFTHECOMPONENTIMPROVEDALLTHESEREQUIREMENTFORPROCESSINGANDEQUIPPINGANDPROPOSINGHIGHSPEED,HIGHANDPRECISEANDHIGHFLEXIBILITYACCORDINGTOEMO2001EXHIBITIONSITUATION,THEHIGHSPEEDMACHININGCENTERENTERSFORTHEPACETOCANREACH80M/MIN,EVENHIGHAIRTRANSPORTCOMPETENTPACECANREACH100M/MINABOUTALOTOFCARFACTORIESINTHEWORLDATPRESENT,INCLUDINGSHANGHAIGENERALMOTORSCORPORATIONOFOURCOUNTRY,ADOPT,SUBSTITUTEANDMAKETHELATHEUPWITHHIGHSPEEDMACHININGCENTERPRODUCTIONLINEPARTTHATMAKEUPALREADYHYPERMACHLATHEOFCOMPANY,CINCINNATIOFUSA,ENTER,GIVEPACETOBEMOSTLOUDTOREACH60M/MIN,ITIS100M/MINTOBEFAST,ACCELERATIONREACH2G,THEROTATIONALSPEEDOFTHEMAINSHAFTHASALREADYREACHED60000R/MINPROCESSINGATHINWALLOFPLANEPARTS,SPEND30MINONLY,ANDSAMEPARTGENERALATAHIGHSPEEDMILLINGMACHINEPROCESSANDTAKE3H,PROCESSANDNEED8HWITHORDINARYMILLINGMACHINETHEPACESANDACCELERATIONOFMAINSHAFTOFDUALMAINSHAFTLATHESOFGERMANYDMGCOMPANYREACH12SEPARATELY000R/MMAND1GINMACHININGACCURACY,INTHEPAST10YEARS,ORDINARYPROGRESSIONHASACCUSEDOFTHEMACHININGACCURACYOFTHELATHETOALREADYIMPROVEFROM10MTO5M,ACCURATEGRADESOFMACHININGCENTERFROM35M,RAISETO115M,ANDULTRAPRECISIONMACHININGACCURACYBEGIN,ENTERGETTINGNANOMETERALREADYINMACHININGACCURACY,THEPAST10YEARS,ORDINARYPROGRESSIONACCUSEOFMACHININGACCURACYOFLATHERAISETO5M,FROM35MACCURATEGRADESOFMACHININGCENTERFROM10MALREADY,IMPROVETO115M,ANDTHEULTRAPRECISIONMACHININGACCURACYHASALREADYBEGUNTOENTERNANOMETER001MLYINDEPENDABILITY,MTBFVALUEOFTHEFOREIGNNUMERICALCONTROLDEVICEHASALREADYREACHEDABOVE6000H,MTBFVALUEOFTHESERVOSYSTEMREACHESABOVE30000H,DEMONSTRATEVERYHIGHDEPENDABILITYFORREALIZEATAHIGHSPEED,HIGHFINISHMACHINING,RELATEDTOITFUNCTIONPARTIFELECTRICMAINSHAFT,STRAIGHTLINEELECTRICALMACHINERYGETFASTDEVELOPMENT,THEAPPLICATIONISFURTHEREXPANDED125AXLESLINKANDPROCESSANDCOMPOUNDANDPROCESSTHELATHETODEVELOPFASTADOPT5AXLELINK,TOTHREEDIMENSIONALCURVEDSURFACEPROCESSINGOFPART,CANCUTWITHTHEBESTGEOMETIRCFORMOFTHECUTTER,NOTONLYHIGHLYPOLISHED,BUTALSOEFFICIENCYISIMPROVEDBYALARGEMARGINITISGENERALLYACKNOWLEDGED,A5AXLEGEARBEDSOFEFFICIENCYCANEQUAL23AXLEGEARBEDS,USECUBICNITROGENBORONWAITULTRAHARDMATERIALMILLINGCUTTERGOONATAHIGHSPEEDMILLING,SHARPENING,QUENCHINGHARDSTEELATTHEPART,5AXLELINK,PROCESSCONSTANT3AXLELINK,PROCESS,GIVEPLAYTOHIGHBENEFITBUTGOOVERBECAUSE5AXLESLINKTHENUMERICALCONTROLSYSTEM,COMPLICATEDREASONOFHOSTCOMPUTERSTRUCTURE,PRICEITSLINKNUMERICALCONTROLTOBELATHESEVERALTIMESHIGHERTHAN3AXLE,INADDITIONPROGRAMMINGTECHNOLOGICALDIFFICULTYRELATIVELYHEAVY,HAVERESTRICTED5AXLEGEARBEDSOFDEVELOPMENTATPRESENTBECAUSEOFELECTRICAPPEARANCEOFMAINSHAFT,MAKE,REALIZE5AXLECOMPOUNDMAINSHAFTHAIRSTRUCTUREPROCESSEDTOLINKGREATLYSIMPLIFY,ITMAKEDIFFICULTYANDCOSTREDUCEBYALARGEMARGIN,NUMERICALCONTROLPRICEDISPARITYOFSYSTEMSSHRINKSOPROMOTECOMPOUNDMAINSHAFTHEADTYPE5AXLEGEARBEDANDCOMPOUNDDEVELOPMENTTOPROCESSLATHEPROCESSTHELATHEINCLUDING5ATEMO2001EXHIBITION,NEWJAPANESE5OFWORKERMACHINEPROCESSLATHEADOPTCOMPOUNDMAINSHAFTHAIR,CANREALIZE4PROCESSINGANDARBITRARYPROCESSINGOFANGLEOFVERTICALPLANE,MAKE5PROCESSAND5AXLESAREPROCESSEDANDCANBEREALIZEDATTHESAMELATHE,CANALSOREALIZETHEINCLINEDPLANEANDPOURTHEPROCESSINGOFTHEHOLEOFAWLSCOMPANY,DMGOFGERMANY,EXHIBITDMUVOUTIONSERIESMACHININGCENTER,CANPUT,INSERT,DOWN5PROCESSAND5AXESLINKANDPROCESSINONE,CANBECONTROLLEDBYCNCSYSTEMORCAD/CAMCONTROLSDIRECTLYORINDIRECTLY13INTELLECTUALIZATIONS,OPENSTYLE,THENETWORKTURNSINTOFORTHECONTEMPORARYNUMERICALCONTROLSYSTEMDEVELOPMENTMAINLYHASTENSTHE21STCENTURYNUMERICALCONTROLEQUIPMENTSWILLBEHASCERTAININTELLECTUALIZEDTHESYSTEM,THEINTELLECTUALIZEDCONTENTINCLUDINGINNUMERICALCONTROLSYSTEMEACHASPECTINORDERTOPURSUETHEPROCESSINGEFFICIENCYANDTHEPROCESSINGQUALITYASPECTINTELLECTUALIZATION,LIKEPROCESSINGPROCESSADAPTIVECONTROL,CRAFTPARAMETERAUTOMATICPRODUCTIONINORDERTOENHANCETHEACTUATIONPERFORMANCEANDTHEUSECONNECTIONCONVENIENTINTELLECTUALIZATION,LIKETHEFEEDFORWARDCONTROL,THEELECTRICALMACHINERYPARAMETERAUTOADAPTEDOPERATION,THEAUTOMATICDIAGNOSISLOADAUTOMATICDESIGNATIONMODEL,ISAUTOMATICENTIREGRADESSIMPLIFICATIONPROGRAMMING,SIMPLIFICATIONOPERATIONASPECTINTELLECTUALIZATION,LIKEINTELLECTUALIZEDAUTOMATICPROGRAMMING,INTELLECTUALIZEDMANMACHINECONTACTSURFACEANDSOONALSOHASTHEINTELLIGENCETODIAGNOSE,THEINTELLIGENTMONITORINGASPECTCONTENT,THECONVENIENCESYSTEMDIAGNOSISANDTHESERVICEANDSOONINORDERTOSOLVETHETRADITIONALNUMERICALCONTROLSYSTEMSEALANDTHENUMERICALCONTROLAPPLICATIONSOFTWAREINDUSTRYPRODUCTIONEXISTENCEQUESTIONATPRESENTMANYCOUNTRIESCONDUCTTHERESEARCHTOTHEOPENSTYLENUMERICALCONTROLSYSTEM,LIKEUSSNGCTHENEXTGENERATIONWORKSTATION/MACHINECONTROL,EUROPEANECONOMICCOMMUNITYSOSACAOPENSYSTEMARCHITECTUREFORC
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