全文預(yù)覽已結(jié)束
下載本文檔
版權(quán)說(shuō)明:本文檔由用戶提供并上傳,收益歸屬內(nèi)容提供方,若內(nèi)容存在侵權(quán),請(qǐng)進(jìn)行舉報(bào)或認(rèn)領(lǐng)
文檔簡(jiǎn)介
ISSN1068-798X,RussianEngineeringResearch,2008,Vol.28,No.1,pp.7478.AllertonPress,Inc.,2008.OriginalRussianTextR.G.Kudoyarov,E.M.Durko,D.V.Ivanov,2007,publishedinSTIN,2007,No.10,pp.1621.74Thedevelopmentofmanufacturingentailsimprov-ingproductperformanceanddependssignificantlyonthecapabilitiesandqualityofthemachine-toolemployed.Inthiscontext,itispromisingtousemecha-tronicmachine-toolsystems,inwhichmanufacturingconsistsofcontrollableprocesses.Inmachiningblanks,inpractice,itisnecessarytotakeaccountofprocessesoccurringinmachine-tooldrives,thestateofthesup-portingsystem,andphysicalphenomenaaccompany-ingthecuttingprocess.Inordertoimprovemanufacturingefficiency,meth-odsofdesigningmechatronicmachinetoolsmustberefined.Modulardesignprinciplesarewidelyusedtodayincreatingmachinetools.Atechnologicalmoduleisastructuralunitrequiredtoperformshapingoperations1.Atechnologicalorproductionmoduleismoregenerallyacomponentofautomatedsystemsorpro-ductionlines.Astructuralmoduleisacommonunit(subsystem,element)ofthemachinetool,whichmaybeusedautonomouslyorincombinationwithothermodules.Insystemsanalysis,amoduleisunderstoodasagroupofelementsofthesystemdescribedbyinputsandoutputsandcharacterizedbyacertainintegrity2.Theuseofthisconceptallowsthemechatronicmachine-toolsystemtoberegardedasconsistingofanumberofsubsystemsinfunctionalandstructuraldesign.Amechatronicmachine-toolmoduleconsistsofamechatronicdevicethatisfunctionallyandstructur-allyindependentandperformscontrollableexecutivemotioninmanufacturing.Thebasicfunctionofthemechatronicmachine-toolmoduleinthemachine-toolsystemistoensuretherequiredmachiningconditionsorparametersoftheexecutivemotioninordertocreateparticulartechno-logicalconditionsandtoundertakediagnosticsandmonitoring.Thedefinitionofamechatronicmachine-toolmodulepresentedhereisconsistentwiththecon-ceptofakinematicgroupofamachinetool3andtakesaccountofthecapabilitiesofmodernelectricdrivesandcontroldevices.Thekinematicgroupensuringcomplexexecutivemotionmaybeformedbymeansoftwoormoresimplemodulesorrepresentedasacombinedmodule,withinwhichthecomponentsofthemotionarematchedbyacontrolsystem.Inthisrespect,themechatronicmachine-toolsys-tem(ormechatronicmachinetool)isasetofmecha-tronicmachine-toolmodulesordevicesforperformingcertainfunctionsinthemanufacturingprocess,takingaccountoftherealconditions.Acertainsequencemayexpedientlybeadoptedinthedevelopmentofmechatronicmachine-toolsystemsandmodules(Fig.1).Thetechnicalspecification(TS)inthedesignofamachinetool(orcorrespondingmechatronicmodule)mustprovideasetofinformationonthepartstobemachinedandthemanufacturingrequirements.Takingaccountofthenecessaryeffi-ciencyandreliabilityofthetechnologicalprocess(TP),therequiredmachine-toolcharacteristics(MC)areestablished.Reliabilityofthetechnologicalprocessisassumedtomeanguaranteedprovisionoftherequiredmachiningparameters.Inautomateddesign(AD)ofthetechnologicalpro-cess(operation),thegoalistorefinethemanufacturingpathofarepresentativepartanddeveloptheoperationstobeperformedbythemachinetoolunderdesign.Resultsobtainedindevelopingprospectivecontrollablemanufacturingprocessesforanalogouspartsmustbetakenintoaccounthere.Itisexpedienttodevelopthetechnologicaldocu-mentationbymeansofmoderncomputer-assisteddesignsystemsfortechnologicalprocessesandappro-priatesoftware(SolidWorks,SmarTeam,Stalker,Tekh-noPro,ADEM,PowerMill,etc.).Inestablishingthebasictechnologicalprinciples,thetypicaloperatingconditionsofthemachinetoolinthemanufactureofspecifiedpartsmustbedetermined.Modelingofthedrives,thesupportingsystem,andthecomponentsofthemachinetoolcallsforthedevel-opmentandinvestigationofsimulational,structural,anddynamicmodels,inordertodeterminetheexpecteddeviationsintherelativepositionofthetoolandblankduringproductiveandeconomicalmachine-tooloperations.DesignofMechatronicMachine-ToolEquipmentR.G.Kudoyarov,E.M.Durko,andD.V.IvanovDOI:10.3103/S1068798X08010176RUSSIANENGINEERINGRESEARCHVol.28No.12008DESIGNOFMECHATRONICMACHINE-TOOLEQUIPMENT75Onthebasisofthemodelingresults,methodsofimprovingthemachinetoolscharacteristicsaredevel-oped.Methodsofcompensatingimprecisionofthemachinetoolaredetermined;itsoperationalalgorithmsandstructurearerefined;andblockdiagramsoftheloopsintheadaptiveorsmartcontrolsystemaredevel-oped.Preliminaryautomateddesignofthemechatronicmachinetool,takingaccountofthemodelingresults,permitstheselectionofthemechatronicmodulesfromthoseavailableandthedesignofnewmodulesorthemachinetoolasawhole.Thesedevelopmentsarefor-malizedinregulatorydocumentationforeachstageofthedesign(engineeringpreparationsandthedraft,engineering,andworkingdesigns).Onthebasisofthedataobtained,themachinetoolcharacteristicsarecal-culatedandcomparedwiththespecifications.Thiscre-atesthebasisforrefiningthemachinetoolstructure,organizingthetechnologicalpreparationsforproduc-tion(TPP),andmanufacturingandtestingaprototypemachinetool.Ininvestigatingthecharacteristics,themodelsarerefined,andmethodsofimprovingthemachinetoolsabilitytoguaranteetherequiredoperationalparametersinautomatedproductionaredetermined.Whethertherequiredcharacteristicsareensuredwilllargelydependonthestructureofthemachinetool.Thefunctionalsubsystemsofthemechatronicsystemmaybedividedintofourlevels,inaccordancewiththeclassificationin4,5.Thesubsystemsateachpreviouslevelaresystemswithrespecttothesubsystemsofthesubsequentlevel(Fig.2).SubsystemsoflevelIensuretherequiredexecutivemotionandconsistofmechatronicmachine-toolmod-ules,includingbasicandauxiliarymodulesandsimpleandcombinedmodules.ThesubsystemsoflevelIIdependontheparametersoftheexecutivemotions.Analysisofthefunctionsperformedinautomatedman-ufacturingindicatesthatthesubsystemsatlevelIIareresponsibleforthestarting,stopping,andreversingofthedrivesandforensuringtherequiredspeed,displace-ment,andtrajectoryoftheexecutivemotion.ThesubsystemsoflevelIIIensuretherequiredoper-ationalandauxiliarymotion.SubsystemsoflevelIVareassociatedwiththetypesofregulatoryactions,cat-egorizedasthoseperformedinaccordancewiththeprogram,adaptiveactions,andintellectualactions.Inmechatronicmachinetools,thesubsystemsoflevelsIIIandIV,producingsmoothadaptivechangeintheaccel-erationandvelocity,areofparticularimportance.Intheanalysisofmachiningprocedures,amethodofshapingthepartmustbeestablished,aswellasthesetofexecutivemotionsandtheparticulartechnologi-caltransitions.Thesetransitions,intheformoftheoperationalalgorithmofthemechatronicmachine-toolmodule,maybeidentifiedonthebasisofoptimizationofthecuttingprocessandthemachine-tooldynamics.Forexample,itisexpedienttoadjustthecuttingspeedinthecourseofmachining,takingaccountofthecut-tingtemperature,inordertoensurehigherproductivityandaccuracyofrelativemotionofthetoolandblankandlowermachiningcost,asshownin6.Theappropriatefunctionalsubsystemsmustbecho-sentoimplementtherequiredtechnologicaltransitionsandoperationalalgorithmsofthemechatronicmachine-toolmodule4,5.Thechosensubsystemsdeterminethesensorsrequired.Onthebasisofthesedata,theblockdiagramandstructureofthenewmod-uleareselectedordeveloped.ThedesignofthesupplymoduleforamultipurposemachinetoolisillustratedinFig.3.Takingaccountofthepossibleoperationalpatternsofthemoduleandthenecessaryfunctionalsubsystems,structuralvariantsaredeveloped.TSADofTP,establishingPreliminaryADDotheMCRefinementoftheTPP,manufacturing,DotheMCobtainedManufactureInformationonthepartDeterminingthetypicalDevelopmentofSimulationofdrives,InvestigationofMCYesNoformachine-tooldesignbasictechnologicalprinciplesofmachinetoolobtainedcorrespondtothespecifications?YesNomachine-toolstructureandthecontrolalgorithmstestsofprototypecorrespondtothespecifications?ofmass-producedmachinetooltobemanufacturedandtheMC,takingaccountofmanufacturingrequirementsoperatingconditionsofthemachinetoolanditstechnicalcharacteristicsmethodsofimprovingtheMCsupportingstructure,componentsFig.1.Sequenceadoptedindevelopingmechatronicmachinetools.76RUSSIANENGINEERINGRESEARCHVol.28No.12008KUDOYAROVetal.Inthefirststage,theparametersofthemechatronicmachine-toolmodulearedeterminedsoastoensuretherequiredtotalrigidity7.Thenarefinedmodelofthesupplydriveisformed,theexpectedoperationalchar-acteristicsofthemodulearedetermined,anditsdesigniscorrected.Notethat,withdifferentmachiningconditionsinthesamemachinetool,partsofdifferentqualitymaybeobtained.Ifthespecifiedrequirementsonthequalityarenotmetforthemachiningsysteminitiallyselected,itischanged,orelsethetypeanddesignofthemoduledriveischanged,withsubsequentverification.Animportantmeansofimprovingmachiningiscor-rectionofthecontrolprogramonthebasisofsimula-tiondata,takingaccountoftherequiredreliabilityofthemodule.Indevelopingthemodelofthesupplydrive,thefol-lowingfactorsmustbetakenintoaccount:theregula-toryactiontoensuresmoothermotion;thevariationintheforcesinthecourseofoperation;andthemethodsemployedtoincreasethevibrationalstability.Notealsothat,atthebeginningofmotion,thefrictionalforcedoesnotincreaseinstantaneouslytothesteadyvalue;thereisatransientprocesswithoverregulation8.Thisaffectsthedynamiccharacteristicsofthedrive,espe-ciallywithasmalltractionalforce.Inthecalculationschemeofthesupplydrive(Fig.4),threepointmassesaretakenintoaccount:m1isthearmatureoftheelectricmotor,togetherwithpartofthedrivescrew;m2istheotherpartofthescrew;m3istheexecutiveorgan(table)thatistobemoved.AlsoinFig.4,K1andh1arethetorsionalrigidityanddamp-ingcoefficientofthearmatureandpartofthedrivescrew;K2,h2andK4,h4aretheaxialrigidityanddamp-ingcoefficientsofsectionsofthedrivescrew;K3,h3andK5,h5arethesamequantitiesfortherollerbear-ings;K6andh6arethesamequantitiesforthescrewnutjunction;K7andh7aretherigidityanddampingcoefficientforthefrictionalprocessesintheguidepieces.Thetopologicalequationsforsectionsofthemodeltaketheform(1)MAMe1Md1Mi10;=Me1Md1Me2Md2Mi2+0=Fe3Fd3FdaFfrPxFi3,=Informationonthepart,MaingoalBasicStructureofMMSCompositionCompositionCompositionofCompositionofCompositionofTargetVariationSetTypesofrequirementsontheTPandproductandfunctionsofMMScharacteristicsofMMSsubsystemsoffunctionalsubsystemsIIIIIIIVofMMSthesubsystemsensuringthemotionparametersthesubsystemsensuringparticularfeaturesofthemotionparametersthesubsystemsensuringthecontrolfunctionsfunctionsofcontrolofmotionparametersmechatronicmodulesandconsistencyofthemotionparametersFig.2.Relationbetweenthesubsystemsofthemechatronicmachine-toolsystem(MMS):IIVlevels;TP,technologicalprocess.InitialdataDevelopmentandselectionDrawingsoftheparts,DatabaseofoperationalCalculationofSelectionofthetypesDatabaseofelectricmotors,SimulationEvaluationofdriveAgreementwithNoYesRefinementofstructuraloptionsmachiningsystems,cuttingconditions,productionrequirementssystemsandalgorithmsofmechatronicmachine-toolmodulesandtheirfunctionalsubsystemstheforcesinthedriveofcomponentsandthedesignmechanisms,bearings,andguidepiecesofdesignofdrivecharacteristicsandmachiningparametersthespecifications?Fig.3.Automateddesignofamechatronicsupplymodule.RUSSIANENGINEERINGRESEARCHVol.28No.12008DESIGNOFMECHATRONICMACHINE-TOOLEQUIPMENT77whereMAusthetorqueatthemotorarmature;Me1,Md1,Mi1areelastic,dissipative,andinertialtorquesatthedrivescrew;Me2,Md2,andMi2arethesametorquesonthenutinthescrewtransmission;Fe3,Fd3,Fi3aretheelastic,dissipative,andinertialforcesontheexecutiveorgan;Fda,Ffrarethedampingandfrictionalforcesintheguidepieces;Pxistheaxialcomponentofthecut-tingforce.OnthebasisofEq.(1),wemaywritethemoregen-eraltopologicalequationwhered0isthediameterofthecircumferenceofthecentersoftheballsinthescrewtransmission;theplussigncorrespondstoaccelerationoftheexecutiveorgan,andtheminussigntodeceleration.Themodelofthesupplydriveisdevelopedasagen-eralizedstructuralsystem,whichmaybeimplementedandinvestigatedusingSimulinksoftwareintheMAT-LABsystem.Wenowconsidertheresultsofsimulatingthedriveofthemechatronicsupplymoduleofamultipurpose250Vmachinetool(producedbySterlitamakmachine-toolplant).Sinceautomaticreversalofthemotionbythedrivemayaccompanycontourmachiningofthepart,itisofgreatinteresttodeterminetheoperatingconditionsofthedriveforfastandsmoothreversingoftablemotioninthemodule.Itisfoundthatthetransientprocessdependsmainlyonthecharacterandtimeofvariationofthecontrolsig-nal,thetablemass,thedragforce,andthedampingofdrivecomponents.ThevariationintablevelocityvasafunctionofthestartingtimetsisshowninFig.5.Thepositioningaccuracyoftheexecutiveorganmayexpedientlybeincreasedbyregulationoftheacceleration,takingaccountofthechangeinvelocity.Theresultsobtainedprovidethebasisforrecommenda-tionsregardingtheimprovementinstructureofthemechatronicsupplymoduleofthe250Vmachinetoolandcontrolofitsoperation.2MAMi1Mi2()/d0Fi3FdaFfrPx0,=Refinementofthemethodofanalysisofthemachinetoolstructuretakesaccountoftheresultsin3,9.AutomatedcalculationofthesystemcomponentsisbasedonBorlandDelphi6.0softwarepermittingcom-putationoftheprecisionandpliabilityofvariouscon-figurationsoflathesandmultipurposemachinetools.Calculationofgeneralizedcharacteristicspermitsanal-ysisofthemachine-toolconfiguration.
溫馨提示
- 1. 本站所有資源如無(wú)特殊說(shuō)明,都需要本地電腦安裝OFFICE2007和PDF閱讀器。圖紙軟件為CAD,CAXA,PROE,UG,SolidWorks等.壓縮文件請(qǐng)下載最新的WinRAR軟件解壓。
- 2. 本站的文檔不包含任何第三方提供的附件圖紙等,如果需要附件,請(qǐng)聯(lián)系上傳者。文件的所有權(quán)益歸上傳用戶所有。
- 3. 本站RAR壓縮包中若帶圖紙,網(wǎng)頁(yè)內(nèi)容里面會(huì)有圖紙預(yù)覽,若沒(méi)有圖紙預(yù)覽就沒(méi)有圖紙。
- 4. 未經(jīng)權(quán)益所有人同意不得將文件中的內(nèi)容挪作商業(yè)或盈利用途。
- 5. 人人文庫(kù)網(wǎng)僅提供信息存儲(chǔ)空間,僅對(duì)用戶上傳內(nèi)容的表現(xiàn)方式做保護(hù)處理,對(duì)用戶上傳分享的文檔內(nèi)容本身不做任何修改或編輯,并不能對(duì)任何下載內(nèi)容負(fù)責(zé)。
- 6. 下載文件中如有侵權(quán)或不適當(dāng)內(nèi)容,請(qǐng)與我們聯(lián)系,我們立即糾正。
- 7. 本站不保證下載資源的準(zhǔn)確性、安全性和完整性, 同時(shí)也不承擔(dān)用戶因使用這些下載資源對(duì)自己和他人造成任何形式的傷害或損失。
最新文檔
- 道口崗前安全培訓(xùn)會(huì)課件
- 2024+共識(shí)聲明:成人心臟手術(shù)患者快速拔管建議解讀
- 達(dá)州大灘消防安全培訓(xùn)課件
- 邊溝開(kāi)挖安全教育培訓(xùn)課件
- 數(shù)據(jù)中心ups單機(jī)并機(jī)試題及答案
- 車隊(duì)防疫安全培訓(xùn)課件
- 車隊(duì)安全培訓(xùn)計(jì)劃方案課件
- 分公司副經(jīng)理內(nèi)部競(jìng)聘經(jīng)營(yíng)管理類筆試題
- 車間級(jí)崗前安全培訓(xùn)流程課件
- 酒店客房預(yù)訂與收益最大化策略制度
- 2026屆云南省昆明市西山區(qū)民中數(shù)學(xué)高一上期末考試模擬試題含解析
- 2025年大學(xué)第一學(xué)年(食品營(yíng)養(yǎng)與健康)營(yíng)養(yǎng)學(xué)基礎(chǔ)測(cè)試題及答案
- 2025-2030烏干達(dá)基于咖啡的種植行業(yè)市場(chǎng)現(xiàn)狀供需分析及投資評(píng)估規(guī)劃分析研究報(bào)告
- 2026年共青團(tuán)中央所屬單位招聘66人備考題庫(kù)及答案詳解一套
- 人民警察法培訓(xùn)課件
- 2026年哈爾濱職業(yè)技術(shù)學(xué)院?jiǎn)握新殬I(yè)適應(yīng)性考試題庫(kù)參考答案詳解
- 2025云南昆明巫家壩建設(shè)發(fā)展有限責(zé)任公司及下屬公司第四季度社會(huì)招聘31人歷年真題匯編帶答案解析
- 輸尿管切開(kāi)取石課件
- 小貓絕育協(xié)議書
- 66kV及以下架空電力線路設(shè)計(jì)標(biāo)準(zhǔn)
- 2025年浙江乍浦經(jīng)濟(jì)開(kāi)發(fā)區(qū)(嘉興港區(qū))區(qū)屬國(guó)有公司公開(kāi)招聘28人筆試考試備考試題及答案解析
評(píng)論
0/150
提交評(píng)論