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附录附录1英文原文COMBINETOOLMACHINEASLIPPERYPEDESTALTHERESEARCHOFTHEDYNAMICSTATECHARACTERISTIC【SUMMARY】THISTEXTMAKEUSEOFPOWERKEYTOMATCHDIAGRAMANDAPPEARANCESPACEANALYTICALTHEMETHODHURTLEANDEXERCISEASTEADYSEXPROBLEMTOCARRYONANALYSISANDSTUDYTOWARDSCOMBININGTOOLMACHINESLIPPEDESTALOFEXLY,THELIQUIDWHICHBUILDSUPASLIPPERYPEDESTALPRESSESTODRIVESYSTEMAFROMADJUSTTOCARRYONTHEBACKTOPRESSTOADJUSTSOONDYNAMICSTATEMATHEMATICSMODELOFSYSTEMPASSACALCULATORNUMERALTOIMITATEREALLY,HURTLEANDEXERCISENOTSTEADYREASONANDMAINIMPACTFACTORBEFOREANALYZINGASLIPPERYPEDESTALACREATIONFROMINGET,IFREASONABLYDESIGNALIQUIDTOPRESSANURNWITHFROMADJUSTTOCARRYONTHEBACKTOPRESSTOADJUSTSTRUCTURESIZEOFPRESSTHEVALVE,CANMAKETHEDYNAMICSTATECHARACTERISTICOFSLIPPERYPEDESTALSHOWNAZHAOIMPROVEMENTONE,PREFACECOMBINEATOOLMACHINEWORKIN,THEVARIETIESWHICHSLIPASIZEOFSPORTSPEEDANDDIRECTIONANDTHELOADBEARALLINFLUENCEDEGREEDIFFERENTLYITWORKFUNCTIONESPECIALLYINTHEWORKENTERTHEPROCESSSLIPPERYTHEONTHESTAGELOADOFSUDDENLYDISAPPEARCAUSABLEOFEXHURTLEANDLOADOFTHEPERIODVARIETYCAUSEOFTHESPORTGRAVAMENBESTEADY,ALLISPROCESSEDTHESURFACEQUALITYOFPIECETHEINFLUENCE,SEVERITYHOURWILLCAUSETHEKNIFEBREAKREQUESTACCORDINGTOTOOLMACHINEFACTORYINDALIAN,THEAUTHORADOPTSPOWERKEYTOMATCHDIAGRAMANDTHEANALYTICALMETHODESTABLISHMENTOFTHEAPPEARANCESPACETOCOMBINETHENEWLIQUIDTHATTHETOOLMACHINESLIPSAPEDESTALTOPRESSTODRIVESYSTEMAFROMADJUSTTOCARRYONTHEBACKTOPRESSTOADJUSTSOONDYNAMICSTATEMATHEMATICSMODELOFSYSTEMPASSACALCULATORNUMERALTOIMITATEREALLYANDSTUDYANALYTICALSLIPPERYTHEPEDESTALPRODUCEAGOHURTLEANDEXERCISENOTSTEADYREASONANDMAINIMPACTFACTOR,INORDERTOIMPROVEMENTSLIPPERYTHEDYNAMICSTATECHARACTERISTICOFPEDESTALTWO,DYNAMICSTATEMATHEMATICSMODELTHELIQUIDWHICHCOMBINESTOOLMACHINETOSLIPAPEDESTALPRESSESTODRIVESYSTEMAFROMADJUSTTOCARRYONTHEBACKTOPRESSTOADJUSTSOONTHEWORKPRINCIPLEDIAGRAMOFSYSTEM,SUCHASDIAGRAMI,TOSHOWTHATSYSTEMISTHEWORKCIRCULATIONWHICHUSESTOCOMPLETE“THEWORKENTERASTOPABACKQUICKLY“WHENSLIPPERYPEDESTALWORKENTER,34CHANGETOBEPLACEDINDIAGRAMTOSHOWARIGHTTOWARDTHEVALVE,THEOILPUMPOFPROVIDEHYDRAULICPNEUMATICDINTUNDERTHEFUNCTIONWHICHOVERFLOWSVALVELOOKLIKEGROUNDTOKEEPHENGSETTLE,THEOILSLIQUIDFLOWSTHROUGHTOCHANGETOWARDTHEVALVEANDADJUSTSOONVALVEJUNIORSINTOTHEOILURNOFHAVENOAPOLECHAMBER,PUSHSLIPPERYTHESETBELEFTSHIFTINTHEMEANTIME,OILURNTHEPRESSUREOILTHATIFTHEREISPOLECHAMBER,EJECTTHROUGHFROMADJUSTTOCARRYONTHEBACKTOPRESSVALVEANDCHANGETOFLOWTORETURNTOFUELTANKTOWARDTHEVALVEINTHISPROCESS,TWOONEWAYVALVESWITHOVERFLOWEDTOFLOWVALVEANDALWAYSDONTCHANGEORIGINALWORKAPPEARANCEOBJECTTHATSYSTEMSOOFCOMPLICATIONSNOTLINESYSTEM,FORTHESAKEOFEASYTOSTUDYITSDYNAMICSTATECHARACTERISTIC,BUILDUPAREASONABLESIMPLEDYNAMICSTATEMATHEMATICSMODELWHICHONLYEMPHASIZESTOCONSIDERMAINIMPACTFACTORISPARTICULARLYIMPORTANT12KNOWFROMTHETHEORIESTHEANALYSISWITHEXPERIMENTTHERESEARCHTHATSYSTEMOFPROCESSTIMEBESOONTHATTHEPROCESSWHICHISFARLARGERTHANTOADJUSTVALVEISSOONHORARY,OILURNHAVENOTHEPOLECHAMBEREFFECTIVELYACCEPTSTOPRESSAREAVERYGREATLY,ADJUSTSOONVALVEEXPORTDISCHARGEOFSUPERADJUSTAREFLECTIONINAMOMENTISSLIPPERYPEDESTALSPORTSPEEDOFTHEVARIETYBEPIMPING2FOROPENNINGWIDELYANDGOINGDEEPINTODYNAMICSTATECHARACTERISTICOFSTUDYTHESYSTEM,MAKERESEARCHWORKCANONTHEMICROCOMPUTERAVAILABLYCARRYON,THISTEXTTOORIGINALMODEL2DOFURTHERSIMPLIFICATION,ONTHESUPPOSITIONTHATADJUSTSOONTHEVALVEOUTPUTSINTHEWHOLETRANSITIONPROCESSOFSYSTEMHENGSETTLEOFDISCHARGE,TREATITASTOFLOWASOURCESO,THESTRUCTURESKETCHPLANOFTHEDYNAMICSTATEMODELOFSYSTEMSUCHASFIGURE2SHOW,ITFROMOILURN,SLIPPERYSET,CARRYONTHEBACKTOPRESSVALVEANDUNITECONNECTORSROADSETCTOCONSTITUTEFROMTHEDIAOTHISTEXTINUSEOFSIGNASFOLLOWSS1FLOWASOURCE,THENADJUSTSOONVALVEEXPORTDISCHARGESELTHESLIPPERYSETGLIDEFRICTIONSELTHESLIPPERYSETGLIDEFRICTIONC5,C6THEETCEFFECTLIQUIDOFTUBEROADPERMITR5,R7TAKECAREOFANETCOFROADEFFECTLIQUIDZUV3,THEV4OILURNHASNOPOLECHAMBERANDHASAPOLECHAMBERTHECONTENTSTOACCUMULATEP3,THEPRESSUREWHICHHAVENOPOLECHAMBERANDHAVEAPOLECHAMBEROFTHEP4OILURNFTHESLIPPERYSETBEARALOAD,VSLIPAPEDESTALSPORTSPEEDTHETHISLITERARYGRACEHARDWORKINGRATEKEYMATCHESDIAGRAMANDAPPEARANCESPACETOFOLDAMETHODESTABLISHMENTSPORTMATHEMATICSMODELOFTHESYSTEMFORCENTPOWERKEYSMATCHINGDIAGRAMISANEFFECTTOFLOWDIAGRAM,ITISTHEENERGYWHICHPRESSESSYSTEMTODELIVERAWAY,TAKEACTUALSTRUCTUREASFOUNDATION,THEFUNCTIONWHICHUSESCONCENTRATIONPARAMETERTHEOFSUBSYSTEMRELATESTOANABSTRACTEARTHSSURFACETOSHOWFORTHEZUADOLLARRANDPERMITSSEXDOLLARCANDSENSITIVEFACULTYDOLLARIOFTHREEKINDSOFFUNCTIONDOLLARADOPTTHISKINDOFMETHODSETSUPAMOLDPHYSICALCONCEPTCLEAR,COMBINETHEAPPEARANCESPACEANALYSISMETHODCANCOMPARETOACCURATELYDESCRIBEWITHANALYSISLINESYSTEM,THATMETHODISINTHEHOURTHEAREASTUDYCOMPLICATIONSTHELINESYSTEMDYNAMICSTATECHARACTERISTICNOTOFAKINDOFVALIDOFMETHODACCORDINGTOFROMADJUSTTOCARRYONTHEBACKTOPRESSTOADJUSTSOONTHEMAINCHARACTERISTICOFEACHCOMPONENTOFSYSTEMANDSETUPMOLDRULE1,GETFIGURE3SHOWOFTHEPOWERKEYOFSYSTEMMATCHDIAGRAMEACHHALFARROWHEADONTHEKEYINDIAGRAMMEANSTHATTHEPOWERFLYTO,2WHICHCONSTITUTEPOWERCHANGETHEQUANTITYBEADINTTOCHANGETOMEASUREHYDRAULICPNEUMATICPORFUNCTIONDINTFANDFLOWTOCHANGETOMEASUREDISCHARGEQORSPEEDVOCRUNODEMEANSINTHESYSTEMTOBELONGTOMERGEACONJUNCTION,EACHDINTOFKEYCHANGESTOMEASUREEQUALITYBUTFLOWSTOCHANGETOMEASUREITWITHISZERO1CRUNODESMEANINTHESYSTEMTOBELONGTOESTABLISHACONJUNCTION,EACHKEYISUPPERCLASSTOCHANGETOMEASUREEQUALITYBUTDINTTOCHANGETOMEASUREITWITHISZEROTFMEANSADIFFERENTENERGYFORMTHETRANSFORMATIONMACHINEOF,THETFBOTTOMMARKOFTHELETTEROFALPHABETMEANTHATTHEDINTCHANGESTOMEASUREORFLOWSTOCHANGETOMEASUREOFCONVERSIONSPECIFICVALUETHESHORTANDHORIZONTALGANGOFKEYMEANSTHATKEYASCENDTWOCHANGETHECAUSEANDEFFECTBETWEENQUANTITIESRELATETOTHEWHOLEARROWHEADSESMEANACONTROLRELATIONPERMITTHEDINTOFSEXDOLLARANDSENSITIVEFACULTYDOLLARTOCHANGETOMEASUREINTHREEKINDSOFFUNCTIONDOLLARANDFLOWTOCHANGETOMEASUREITHAVEINTEGRALCALCULUSORDIFFERENTIALCALCULUSRELATION,THEREFORE,ACCORDINGTOFIGURE3CANDEDUCETOSUBMITTOHAVENINECOMPLICATIONSTHATTHEAPPEARANCESCHANGETOMEASURENOTTHELINEAPPEARANCESQUAREDISTANCETHISTEXTTOSLIPPERYPEDESTALTHERESEARCHOFTHEDYNAMICSTATECHARACTERISTICFROMSLIPPERYPEDESTALOFEXHURTLEANDEXERCISESTEADYSEXBOTHSIDETOCOMMENCE,USEFOURRANKSCERTAINLYTREADLONGRUNGEKUTTAMETHODATIBMPCMICROCOMPUTERUPCARRYONNUMERALTOIMITATEREALLY,IMITATEATRUERESULTTODISTINGUISHSUCHASFIGURE4WITHFIGURE5SHOWTHREE,SLIPTOHURTLEBEFORETHEPEDESTALSLIPPERYBEFORETHEPEDESTALHURTLEPHENOMENONISWHATFUNCTIONATSLIPTHELOADOFONTHESTAGESUDDENLYDISAPPEAREDIFDRILLEDTODEEPLYWORKCIRCUMSTANCECAUSEINTHISPROCESS,THEVARIETYWHICHSLIPSTWOCHAMBERPRESSUREP3SANDP4OFTHELOADF,SPORTSPEEDV,OILURNOFPEDESTALCANFROMTHEFIGURE4IMITATETRUERESULTSEEWHENTHESLIPPERYPEDESTALEVENLYANDSOONEXERCISESUNDERTHEFUNCTIONOFTHELOAD,THEOILURNHASNOPOLECHAMBEROILLIQUIDPRESSUREHIGHERITCAMETOGETHERAGREATDEALOFENERGYINTHEOILLIQUIDWHILELOADINGTOSUDDENLYDISAPPEAR,THATCHAMBERISHYDRAULICPNEUMATICTOIMMEDIATELYANDQUICKLYLOWER,THEOILLIQUIDTURNSINTOTHEPROCESSOFLOWPRESSURETAITOWARDSYSTEMTORELEASEALOTOFENERGIESFROMTHEHIGHPRESSURETAIANDCAUSESLIPPERYPEDESTALTHEHIGHSPEEDPOUNDSATFORWARDHOWEVER,SLIPAPEDESTALOFEXHURTLETOMAKEANOILURNTOHAVEAPOLECHAMBERTHEOILLIQUIDISPRESSTOCAUSETOCARRYONTHEBACKTOPRESSTOGOUP,THUSTHEDEPLETIONDROPONEPARTOFENERGIESINTHESYSTEM,TOSLIPPERYPEDESTALOFFRONTBLUNTCERTAINLYREPRESSAFUNCTIONSHOULDSEE,INTHESYSTEMSTUDY,FROMADJUSTTOCARRYONTHEBACKENTRANCEPRESSUREOFPRESSTHEVALVEANDBESUBJECTEDTOANOILURNTWOCHAMBERSHYDRAULICPNEUMATICCOMPREHENSIVEFUNCTIONBELOADADISAPPEAREDMOMENT,FROMADJUSTTOCARRYONTHEBACKTHEPRESSUREOFPRESSTHEVALVEQUICKLYRISES,ANDSTABILIZETHENUMBERWHICHSTARTSTOCARRYONTHEBACKTOPRESSATTHEBEGINNINGINTHEGAOUPFROMTHEDIAGRAMITISTHUSCLEARTHAT,FROMADJUSTTOCARRYONTHEBACKTOPRESSTOADJUSTSOONTHESYSTEMISINATWINKLINGLOADTODISAPPEAROILURNCARRYTHERANGETHATTHEPRESSUREGOUPONOILURNSBACKBIGINTRADITIONALLYADJUSTSOONSYSTEM,SO,ITSOILURNENERGYWHICHHAVETHEOILLIQUIDINTHEPOLECHAMBERABSORPTIONMANYRESULT,SLIPAPEDESTALOFEXBLUNTTHEQUANTITYADJUSTSSYSTEMTOSOONWANTTHANTHETRADITIONSMALLBECLOSETO20ITISTHUSCLEARTHATADOPTIONFROMADJUSTTOCARRYONTHEBACKACHUANGTOADJUSTSOONSYSTEMCONDUCTANDACTIONSTODRIVETHESLIPPERYPEDESTALOFSYSTEMTOHAVEGOODCHARACTERISTICINTHEASPECTSOFHURTLINGBEFOREREPRESS,AMONGTHEMFROMADJUSTTOCARRYONTHEBACKTOPRESSVALVETOHAVEVERYYOURWORKTOUSEFOUR,SLIPTHEEXERCISEOFPEDESTALSTEADYWHILEREGARDINGASALOADPERIODOFUSEDFORTHESLIPPERYONTHESTAGEVARIETYIFTHEXIANPARESTOPROCESSACIRCUMSTANCE,THESPORTSPEEDWHICHSLIPSAPEDESTALWANTSTOPRODUCECERTAIN。MOTIONINORDERTOPROCESSTHEREQUESTOFQUALITYATASSURANCE,HAVETOPOSSIBLYLETUPITSSPEEDMOTIONSCOPESETOUTFROMTHECONVENIENCEDISCUSSEDAPROBLEM,SUPPOSEALOADBYTHESINEWAVEREGULATIONVARIETY,GETTHUSOFNUMERALIMITATEATRUERESULTSUCHASFIGURE5SHOWBESHOWEDFROMTHISTHATSYSTEMANDTRADITIONALLYADJUSTSOONSYSTEMTOHAVESAMEVARIETYREGULATIONWITHVERYCLOSEOFNUMBERTHEREASONISTHATTHEVARIETYRANGEOFLOADISNTBIG,OILURNTWOCHAMBERPRESSURESALSOMOREANDGREATLYDIDNTCHANGE,ENDCAUSEFROMADJUSTTOCARRYONTHEBACKAFUNCTIONOFPRESSTHEVALVENOTENOUGHOBVIOUSFIVE,IMPROVEMEASURESTUDYRESULTENUNCIATION,WITHFROMADJUSTTOCARRYONTHEBACKTOPRESSTOADJUSTSOONSYSTEMFORDRIVETHESLIPPERYSETOFSYSTEM,ITSDYNAMICSTATECHARACTERISTICSURPASSESTOTRADITIONALLYADJUSTSOONSYSTEMWANTTOREDUCETHEEXBLUNTQUANTITYOFSLIPPERYPEDESTAL,MUSTBELOADTHEDISAPPEAREDMOMENTQUICKLYRAISESANOILURNHAVEAPOLECHAMBEROFCARRYONTHEBACKPRESSUREWANTTORAISETHEEXERCISEOFSLIPPERYPEDESTALSTEADYTONEEDTOINCREASESYSTEMOFRIGID,THEMAINMEASURELIESINTHEPHYSICALVOLUMEWHICHLETSUPANOILLIQUIDKNOWFROMTHESTRUCTUREOFTHESYSTEM,THEOILURNHASAPOLECHAMBERTOHAVEWITHTHEROWPIPELINEONEVERYBIGCAPACITYANDSHOWSUCHASTHEFIGURE6ASITOFTHEEXISTENCEDELAYWITHSHUAIREDUCEFROMADJUSTTOCARRYONTHEBACKAFUNCTIONOFPRESSTHEVALVE,ALSOLOWEREDSYSTEMONTHEOTHERHANDOFRIGID,ITLIMITTEDTOHURTLECHARACTERISTICANDEXERCISETHEFURTHERIMPROVEMENTOFSTEADYAGOTHEREFORE,THEIMPROVEMENTSLIPPERYPEDESTALDYNAMICSTATECHARACTERISTICCANCARRYONFROMTWOPATHSNAMELYCHANGEANOILURNCAPACITYANDCHANGEFROMADJUSTTOCARRYONTHEBACKTOPRESSVALVESTRUCTURESIZETHECOMPARISONPASSEDONETRUECALCULATIONANDRESULTOFTHEIMITATEOFPARAMETEROFTHESYSTEMSTRUCTURECANGETWHENOILURNHAVEPOLECHAMBERANDROWPIPELINETHECAPACITYV4TOGETHERHASNOPOLECHAMBERWITHENTERPIPELINETHECAPACITYV3OFRATIOFROMORIGINALOF55CHANGETO1,SUCHASTHEFIGURE6BSSHOW,INTHEMEANTIME,FROMADJUSTTOCARRYONTHEBACKTOPRESSTHEVALVEVALVEXINBOTTOMTOCARRYDIAMETERISINCREASEBYTHEORIGINAL10MMSFORTHE13MMS,DAMPINGTRIANGLESLOTSIDELONGLETUPA07MMSFROMTHEORIGINALLMM,CANMAKESLIPPERYPEDESTALOFEXHURTLEQUANTITYTOLETUP30,TRANSFERTHEPROCESSOBVIOUSLYSHORTENSFORTIMEANDSLIPTHEEXERCISEOFPEDESTALSTEADYTOGETTOVERYGREATLYIMPROVESIX,CONCLUSIONIMITATEATRUERESEARCHTHROUGHTHEORIESANALYSISANDCALCULATOR,FROMADJUSTTOCARRYONTHEBACKTOPRESSTOADJUSTSOONSYSTEMBECOMBINEADRIVEOFTHETOOLMACHINESLIPPERYPEDESTALSYSTEMTOHAVEMUCHOFEXPANSIONUSEVALUETHEMAINFACTORWHICHINFLUENCESASLIPPERYPEDESTALDYNAMICSTATECHARACTERISTICISOILURNINTERNALSTRUCTUREWITHFROMADJUSTTOCARRYONTHEBACKTOPRESSVALVEOFSIZEIFASTOITSCARRYONAREASONABLEDESIGN,THEDYNAMICSTATECHARACTERISTICCANMAKETOSLIPAPEDESTALISSHOWNZHAOGROUNDANIMPROVEMENTALSOEXPLAINEDADOPTIONPOWERINMAKETOSLIPAPEDESTALISSHOWNZHAOGROUNDANIMPROVEMENTALSOEXPLAINEDADOPTIONPOWERINCOMPLICATIONSNOTLINEISCONVENIENCEVALIDOFIN1946THEFIRSTELECTRONICACCOUNTINGMACHINEWASBORNINTHEWORLD,THISINDICATEDTHEHUMANITYCREATEDHASBEENPOSSIBLETOSTRENGTHENANDPARTIALLYTOREPLACETHEMENTALLABORTHETOOLITWITHTHEHUMANITYTHESEWHICHINTHEAGRICULTURE,THEINDUSTRYSOCIETYCREATEDONLYISSTRENGTHENSTHEPHYSICALLABORTHETOOLTOCOMPARE,GOTUPTHEQUANTITIVELEAP,ENTEREDTHEINFORMATIONSOCIETYFORTHEHUMANITYTOLAYTHEFOUNDATIONAFTER6YEARS,IN1952,COMPUTERTECHNOLOGYAPPLIEDTOTHEENGINEBED,THEFIRSTNUMERICALCONTROLENGINEBEDWEREBORNINUSFROMTHISTIMEON,THETRADITIONALENGINEBEDHASHADTHEARCHERYTARGETCHANGESINCENEARLYHALFCENTURY,THENUMERICALCONTROLSYSTEMHASEXPERIENCEDTWOSTAGESANDSIXGENERATIONOFDEVELOPMENTTHEEARLYCOMPUTEROPERATINGSPEEDISLOW,WASNOTBIGTOTHENSCIENCECOMPUTATIONANDTHEDATAPROCESSINGINFLUENCE,BUTCOULDNOTADAPTTHEENGINEBEDREALTIMECONTROLREQUESTTHEPEOPLECANNOTBUTUSENUMERALLOGICCIRCUIT“TOBUILD“TOBECOMEANENGINEBEDSPECIALPURPOSECOMPUTERTOTAKETHENUMERICALCONTROLSYSTEM,ISCALLEDTHEHARDWARECONNECTIONNUMERICALCONTROLHARDWIREDNC,JIANCHENGWEINUMERICALCONTROLNCALONGWITHTHEPRIMARYDEVICEDEVELOPMENT,THISSTAGEHASHADBEENTHROUGHREPEATEDLYTHREEGENERATIONS,NAMELY1952FIRSTGENERATIONOFELECTRONTUBE1959SECONDGENERATIONOFTRANSISTOR1965THIRDGENERATIONSMALLSCALEINTEGRATIONELECTRICCIRCUITIN1970,THEGENERALMINICOMPUTERALREADYAPPEAREDANDTHEMASSPRODUCTIONTHEREUPONTRANSPLANTSITTAKESTHENUMERICALCONTROLSYSTEMTHECOREPART,FROMTHISTIMEONENTEREDTHECOMPUTERNUMERICALCONTROLCNCTHESTAGE“WHICHSHOULDHAVECOMPUTERINFRONTOFTHEGENERAL“TWOCHARACTERSTOABBREVIATEIN1971,AMERICANINTELCORPORATIONINTHEWORLDFIRSTTIMETHECOMPUTERTWOMOSTCORESPARTLOGICUNITSANDTHECONTROLLER,USEDTHELARGESCALEINTEGRATEDCIRCUITTECHNOLOGYINTEGRATIONONTOGETHERTHECHIP,CALLEDITTHEMICROPROCESSORMICROPROCESSOR,ALSOMIGHTBECALLEDTHECENTRALPROCESSINGELEMENTTOBECALLEDCPUTHEMICROPROCESSORISAPPLIEDTO1974INTHENUMERICALCONTROLSYSTEMTHISISBECAUSEMINICOMPUTERFUNCTIONTOOSTRONG,CONTROLLEDANENGINEBEDABILITYTOHAVEWEALTHILYTHEREFOREONCEUSESINCONTROLLINGTHEMULTITAIWANENGINEBEDATTHATTIME,CALLEDITGROUPCONTROL,WASINFERIORTOUSEDTHEMICROPROCESSORECONOMYTOBEREASONABLEMOREOVERTHENSMALLMACHINERELIABILITYWASNOTIDEALTHEEARLYMICROPROCESSORSPEEDANDTHEFUNCTIONALTHOUGHINSUFFICIENTLYAREALSOHIGH,BUTMAYSOLVETHROUGHTHEMULTIPROCESSORSTRUCTUREBECAUSETHEMICROPROCESSORISTHEGENERALPURPOSECALCULATORCOREPART,THEREFORESTILLWASCALLEDTHECOMPUTERNUMERICALCONTROLIN1990,PCMACHINEPERSONALCOMPUTER,DOMESTICCUSTOMHADCALLEDMICROCOMPUTERTHEPERFORMANCEHASDEVELOPEDTOTHEVERYHIGHSTAGE,MAYSATISFIEDLYTAKETHENUMERICALCONTROLSYSTEMCOREPARTTHEREQUESTTHENUMERICALCONTROLSYSTEMHENCEFORTHENTEREDBASEDONTHEPCSTAGEINBRIEF,THECOMPUTERNUMERICALCONTROLSTAGEHASALSOEXPERIENCEDTHREEGENERATIONSNAMELY1970FOURTHGENERATIONOFMINICOMPUTER1974FIVEDYNASTIESMICROPROCESSORAND1990SIXTHGENERATIONOVERSEASWASCALLEDPCBASEDBASEDONPCONTOTHISPATHUSESPCMACHINETOTAKEATLEASTITSFRONTENDMACHINE,PROCESSESTHEMANMACHINECONTACTSURFACE,THEPROGRAMMING,THEASSOCIATIONQUESTIONANDSOONNETCORRESPONDENCE,UNDERTAKESTHENUMERICALCONTROLDUTYBYTHEORIGINALSYSTEMPCMACHINEHASTHEFRIENDLYMANMACHINECONTACTSURFACE,WILLPOPULARIZETOALLNUMERICALCONTROLSSYSTEMTHELONGDISTANCECOMMUNICATION,THELONGDISTANCEDIAGNOSISANDTHESERVICEWILLBEMORECOMMONALONGWITHTHEARTIFICIALINTELLIGENCEINTHECOMPUTERDOMAINUNCEASINGSEEPAGEANDTHEDEVELOPMENT,THENUMERICALCONTROLSYSTEMINTELLECTUALIZEDDEGREEUNCEASINGLYWILLENHANCEAPPLIESTHEADAPTIVECONTROLTECHNOLOGYTHENUMERICALCONTROLSYSTEMCANEXAMINEINTHEPROCESSSOMEIMPORTANTINFORMATION,ANDTHEAUTOMATICCONTROLSYSTEMRELATEDPARAMETER,ACHIEVESTHEIMPROVEMENTSYSTEMRUNNINGSTATUSTHEGOALINTRODUCESTHEEXPERTSYSTEMINSTRUCTIONPROCESSINGTHESKILLEDWORKERANDEXPERTSEXPERIENCE,THEPROCESSINGGENERALRULEANDTHESPECIALRULESTOREINTHESYSTEM,TAKETHECRAFTPARAMETERDATABASEASTHESTRUT,THEESTABLISHMENTHASTHEARTIFICIALINTELLIGENCETHEEXPERTSYSTEMINTRODUCESTHEBREAKDOWNTODIAGNOSETHEEXPERTSYSTEMINTELLECTUALIZEDNUMERALSERVODRIVEMAYTHROUGHTHEAUTOMATICDIAGNOSISLOAD,BUTTHEAUTOMATICCONTROLPARAMETER,CAUSESTHEACTUATIONSYSTEMTOOBTAINTHEBESTMOVEMENTSECOND,ENGINEBEDNUMERICALCONTROLTRANSFORMATIONNECESSITYFROMONMICROSCOPICLOOKEDBELOWTHAT,THENUMERICALCONTROLENGINEBEDHASTHEPROMINENTSUPERIORITYCOMPAREDTOTHETRADITIONALENGINEBED,MOREOVERTHESESUPERIORITYCOMEFROMTHECOMPUTERMIGHTWHICHTHENUMERICALCONTROLSYSTEMCONTAINSMAYPROCESSTHETRADITIONALENGINEBEDCANNOTPROCESSTHECURVE,THECURVEDSURFACEANDSOONTHECOMPLEXCOMPONENTSBECAUSETHECOMPUTERHASTHEEXCELLENTOPERATIONABILITY,MAYTHEINSTANTACCURATELYCALCULATEEACHCOORDINATEAXISINSTANTTOBESUPPOSEDTHEMOVEMENTPHYSIOLOGICALLOADOFEXERCISE,THEREFOREMAYTURNROUNDTHESYNTHESISCOMPLEXCURVEORTHECURVEDSURFACEMAYREALIZETHEPROCESSINGAUTOMATION,MOREOVERISTHEFLEXIBLEAUTOMATION,THUSTHEEFFICIENCYMAYENHANCE37TIMESCOMPAREDTOTHETRADITIONALENGINEBEDBECAUSETHECOMPUTERHASTHEMEMORYANDTHEMEMORYPROPERTY,MAYTHEPROCEDUREWHICHINPUTSREMEMBERANDSAVE,THENTHEORDERWHICHSTIPULATEDACCORDINGTOTHEPROCEDUREAUTOMATICCARRIESOUT,THUSREALIZATIONAUTOMATIONTHENUMERICALCONTROLENGINEBEDSOLONGASREPLACESAPROCEDURE,MAYREALIZEANOTHERWORKPIECEPROCESSINGAUTOMATION,THUSCAUSESTHESINGLEUNITANDTHESMALLBATCHOFPRODUCTIONCANAUTOMATE,THEREFOREISCALLEDHASREALIZED“FLEXIBLEAUTOMATION“FROMONMACROSCOPICLOOKEDTHAT,THEINDUSTRYDEVELOPEDCOUNTRYARMEDFORCES,THEAIRPLANEWEAPONINDUSTRY,INTHEENDOFTHE70S,ATTHEBEGINNINGOFTHE80SSTARTEDTHELARGESCALEAPPLICATIONNUMERICALCONTROLENGINEBEDITSESSENCEIS,USESTHEINFORMATIONTECHNOLOGYTOTHETRADITIONALINDUSTRYINCLUDINGTHEARMEDFORCES,AIRPLANEWEAPONINDUSTRYCARRIESONTHETECHNOLOGICALTRANSFORMATIONSEXCEPTTHATUSESOUTSIDETHENUMERICALCONTROLENGINEBED,FMC,FMSINTHEMANUFACTUREPROCESS,BUTALSOINCLUDESINTHEPRODUCTDEVELOPMENTCARRIESOUTCAD,CAE,CAM,THEHYPOTHESIZEDMANUFACTUREASWELLASCARRIESOUTMISINTHEPRODUCTIONMANAGEMENTMANAGEMENTINFORMATIONSYSTEM,CIMSANDSOONASWELLASINCREASESTHEINFORMATIONTECHNOLOGYINITSPRODUCTIONPRODUCT,INCLUDINGARTIFICIALINTELLIGENCEANDSOONCONTENTBECAUSEUSESTHEINFORMATIONTECHNOLOGYTOTHECOUNTRYFOREIGNTROOPS,THEAIRPLANEWEAPONINDUSTRYCARRIESONTHETHOROUGHTRANSFORMATIONTOCALLITBECOMINGANINFORMATIONBASEDSOCIETY,FINALLYCAUSESTHEMTHEPRODUCTINTHEINTERNATIONALMILITARYGOODSANDINTHEGOODSFORCIVILIANUSEMARKETTHECOMPETITIVEPOWERGREATLYISTHEENHANCEMENTBUTWEINTHEINFORMATIONTECHNOLOGYTRANSFORMATIONTRADITIONINDUSTRYASPECTCOMPAREDTOTHEDEVELOPEDCOUNTRYTOFALLBEHINDAPPROXIMATELYFOR20YEARSLIKEINOURCOUNTRYENGINEBEDCAPACITY,NUMERICALCONTROLENGINEBEDPROPORTIONNUMERICALCONTROLRATETO1995ONLYTHEN19,BUTJAPANHASREACHED208IN1994,THEREFOREEVERYYEARHASTHEMASSIVEMECHANICALANDELECTRICALPRODUCTSIMPORTTHISALSOONFROMONMACROSCOPICEXPLAINEDTHEENGINEBEDNUMERICALCONTROLTRANSFORMATIONNECESSITYINUS,JAPANANDGERMANYANDSOONTHEDEVELOPEDCOUNTRY,THEIRENGINEBEDTRANSFORMSTOOKTHENEWECONOMICALGROWTHPROFESSION,THRIVESABUNDANTLY,ISOCCUPYINGTHEGOLDENAGEASARESULTOFTHEENGINEBEDASWELLASTHETECHNICALUNCEASINGPROGRESS,THEENGINEBEDTRANSFORMATIONIS“THEETERNAL“TOPICOURUNCEASINGPROGRESS,THEENGINEBEDTRANSFORMATIONIS“THEETERNAL“TOPICOURUNCEASINGPROGRESS,THEENGINEBEDTRANSFORMATIONIS“THEETERNAL“TOPICOURGERMANY,HAVETHEBROADMARKETWITHTHENUMERICALCONTROLTECHNOLOGICALTRANSFORMATIONSENGINEBEDANDTHEPRODUCTIONLINE,HASFORMEDTHEENGINEBEDANDTHEPRODUCTIONLINENUMERICALCONTROLTRANSFORMATIONNEWPROFESSIONINUS,THEENGINEBEDTRANSFORMATIONINDUSTRYISCALLEDTHEENGINEBEDREGENERATIONREMANUFACTURIN

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