




已閱讀5頁,還剩3頁未讀, 繼續(xù)免費(fèi)閱讀
版權(quán)說明: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)
文檔簡介
ThecompanySeverstalcompletedthesuccessfulintroductionofnewin-lineplate-straighteningmachines(PSMs)onits2800and5000millsinAugust20031,2,3.Themaindesignfeaturesofthemachinesareasfollows:eachmachineisequippedwithhydraulichold-downmechanisms(toimprovethedynamicsandaccuracyofthemachineadjustmentsandmorereliablymaintainaconstantgap);themachineshavemechanismstoindividuallyadjusteachworkrollerwiththeaidofhydrauliccylinders(thisbroadenstherangeofstraighteningregimesthatcanberealizedbyprovidingameasureofcontroloverthechangeinthecurvatureoftheplate);eachworkrollerisprovidedwithitsownadjustabledrive(toeliminaterigidkinematicconstraintsbetweenthespindles);thesystemofrollersofthePSMisenclosedincassettes(tofacilitaterepairsandreducerollerreplacementcosts);thePSMhasasystemthatcanbeusedtoadjustthemachinefromanine-rollerstraighteningschemetoafive-rollerschemeinwhichthedistancebetweentherollersisdoubled(thisisdonetowidentherangeofplatethick-nessesthatthemachinecanaccomodate).Thus,thenewstraighteningmachineisasophisticatedmulti-functionsystemofmechanismsthatincludesawiderangeofhydraulicallyandelectricallydrivencomponentscontrolledbydigitalandanalogsignals.TheentirecomplexofPSMmechanismscanbedividedintotwofunctionalgroups:themaingroup,whichincludesthemechanismsthatpartici-patedirectlyinthestraighteningoperation(thehold-downmechanisms,themechanismsthatindividuallyadjusttherollers,themechanismsthatadjustthecomponentsfordifferentstraighteningregimes,themechanismthatmovesthetoprollerofthefeeder,andthemaindrive);theauxiliarygroup(whichincludesthecassettereplacementmechanism,thespindle-lock-ingmechanism,andtheequipmentthatcoolsthesystemofrollers).AlthoughthePSMhasalargenumberofmechanisms,theuseofmodernhydraulicandelectricdriveshasmadeitpossibletoalmostcompletelyautomatethemainandauxiliaryoperationsperformedonthePSMandtheunitsthatoperatewithit.Describedbelowarethefeaturesandtheautomaticcontrolsystemsforthemostimportantmechanismsoftheplate-straighteningmachine.Theoperatingregimesofthosemechanismsarealsodiscussed.Thehydraulichold-downmechanisms(HHMs)ofthesheet-straighteningmachinefunctionintwomainregimes:theadjustmentregime;theregimeinwhichthespecifiedpositionsaremaintained.Therearecertainrequirementsforthecontrolsystemandcertainefficiencycriteriaforeachregime.Intheadjustmentregime,thecontrolsystemforthehydraulichold-downmechanismsmustdothefollowing:synchronizethemovementsofthehydrauliccylindersandkeeptheangulardeeflectionwithinprescribedlimits;maximizespeedinadjustingthemachineforanewplatesize;maintainahighdegreeofaccuracyinpositioningthemechanisms;Metallurgist,Vol.48,Nos.78,2004AUTOMATINGTHECONTROLOFMODERNEQUIPMENTFORSTRAIGHTENINGFLAT-ROLLEDPRODUCTSYu.N.Belobrov,V.G.Smirnov,A.I.Titarenko,V.A.Perekhodchenko,andI.L.SinelnikovUDC621.982NovokramatorskMachinePlantAO.TranslatedfromMetallurg,No.8,pp.5156,August,2004.406Thecontrolsystemhasthefollowingrequirementswhenoperatinginthemaintenanceregime:stabilizethecoordinatesofthetopcassetteandthetoprollerofthefeederwithahighdegreeofaccuracy;minimizethetimeneededtoreturntheequipmenttotheprescribedcoordinateswhendeviationsoccur(suchasduetotheforceexertedbyaplatebeingstraightened).Needforsynchronization.Experienceinoperatingtheplate-straighteningmachineinplateshopNo.3atSeverstalhasshownthatthemostproblematicfactorinadjustingthemachineisthenonuniformityoftheforcesappliedtothehydrauliccylinders.ThisnonuniformityisduetotheasymmetricdistributionofthemassesofthemovingpartsofthePSM(inpar-ticular,theeffectoftheweightofthespindleassembly).Displacementofthe“hydrauliczeropoint”relativetothe“electri-calzeropoint”intheservovalvesisalsoacontributingfactor.*Thelatterreasonismoresignificant,thesmallerthevolumeofthehydrauliccylinder.Thus,theHHMofthetoprollerofthefeederisthemostsensitivetodriftofthezeropoint.Therearealsootherfactorsthataffectthedynamism,simultaneousness,andsynchronismoftheoperationofthehold-downmechanisms:differentiationofthefrictionalforcesonpartsofthehydrauliccylindersduetodifferentcombinationsofdevia-tionsinthedimensionsofthematedparts,despitethenarrowtolerances;differencesinthe“springing”characteristicsandtheindicescharacterizingtheinertiaofthehydraulicsupplychan-nels(duetodifferencesinthelengthsofthepipesleadingfromtheservovalvestothehydrauliccylinders).Thus,sincethePSMisnotequippedwithdevicestomechanicallysynchronizetheoperationofthecylinders,thetransmissionofsignalsofthesameamplitudetotheinputsoftheservovalvesinevitablyresultsinaspeeddifferencethatcanseriouslydamagethemechanisms.Tominimizeandeliminatetheeffectsoftheabove-mentionedfactors,wedevelopedanalgorithmforelectricalsyn-chronizationofthehold-downmechanisms.TheHHMofthetopcassette,composedoffourhold-downcylindersandfourbalancingcylinders,isdesignedtoensuremobileadjustmentofthemachinetosettherequiredsizeofstraighteninggap(inaccordancewiththethicknessoftheplate)andmaintainthatgapwithaspecifiedaccuracyinthepresenceandabsenceofaloadonthehousingsfromthestraighteningforce.Thehydraulicsystemofthehold-downmechanismisdesignedinsuchawaythatonlyonechamberofthehydrauliccylindersisusedastheworkingchamber.Thesecondchamberisalwaysconnectedtothedischargechannel.Thetopcassetteisloweredwhenthebalancingforcesareovercomebythehold-downcylinders.Thecassetteisraisedonlybytheactionofthebalancingcylinders.Thisarrangementhasmadeitpossibletoeliminategapsinthepositioningoftheequipment.407Fig.1.Blockdiagramofthecontrolsystemofthehydrauliccylinder.*Thehydrauliczeropointisthepositionthattheslidevalveoccupieswhenitcoversthedeliveryanddischargemains.Theelectricalzeropointisthecontrolsignalthatshouldmovethevalvetothehydrauliczeropoint.Thesepointsshouldide-allycoincide,butinactualservovalveswithzerooverlapthereisalwaysacertainamountofdisplacementthatresultsinleakageofthehydraulicfluid.TheHHMofthetoprollerofthefeederconsistsoftwohydrauliccylinders.Hydraulicfluidisfedintotheplungerchamberwhentherolleristobeloweredandisfedintotherodchamberwhenitistoberaised.ControlPrinciples.Individualcircuitshavebeenprovided(Fig.1)tocontrolthehydrauliccylindersofthehold-downmechanisms.Thecontrolsignal(Xctl)senttotheinputoftheservovalveisformedbyaproportional-integral(PI)con-troller(toimprovethesensitivityofthesystem,wechosetousevalveswith“zero”overlap).Thesignalsenttotheinputofthecontroller(theerrorsignalXerr)isformedasthedifferencebetweenthecontrol-pointsignalforposition(Xcpt)andthefeedbacksignal(Xf.b).Thelattersignalisreceivedfromthelineardisplacementgage(G)ofthegivenhydrauliccylinder.ThegagesoftheHHMforthetopcassettearebuiltintothebalancinghydrauliccylinders(HCs).Thecylindersareinstalledinsuchawaythattheirmovementscanbeconsideredtobeequaltothedisplacementsofthecorrespondingcylin-derrods,withallowanceforcertaincoefficients.ThegagesintheHHMforthetoprollerofthefeederareincorporateddirectlyintothehold-downcylinders.Theintegralpartofthecontrollerisactivatedonlyduringthefinaladjustmentstageandduringstabilizationoftheprescribedcoordinate.Whenthedisplacementsexceedacertainthresholdvalue,thefunctionsofthePIcontrolleraretakenoverbyaproportional(P)controllerwiththetransferfunctionW(s)=k.Thus,Xctl(t)=kXerr(t).Whentherearesignificantdifferencesbetweenthedisplacementsoftheworkingrollers,thedifference(error)betweenthecontrolpointandthefeedbacksignalfromthelineardisplacementgagereachesvaluesgreatenoughsothattheoutputsignalwhichcontrolstheoperationoftheservovalvereachesthesaturationzone.Inthiscase,furtherregu-lationofthedisplacementrateand,thussynchronizationofthemovementsofthecylindersbecomesimpossibleaslongastheerrorexceedsthevalueatwhichXctlisgreaterthantheboundaryvalueforthesaturationzone(Xsat).Thelimit-ingerrorthelargesterrorforwhichXctldoesnotreachsaturationisinverselyproportionaltothegainofthecon-trollerk:XerrXsat/k.SolvingthegivenproblembydecreasingkleadstoalossofspeedintheadjustmentofthePSMandadecreaseincontrolaccuracyduringthestraighteningoperation.Thus,tokeepthecontrolsignalfromreachingthesaturationzonewhentherearesubstantialdisplacements,thesystemwasdesignedsothattheinputofthecontrollerisfednottheactualrequiredvalue(Xrq)butanincrement(DX)ofamagnitudesuchthattheconditionkDXXsatissatisfied.ThecontrolpointisincreasedbytheamountDXafterthepositionofthecylinderhasbeenchangedbytheamountcorrespondingtotheincre-menthavingthelargestlagrelativetothecylindersdirectionofmotion.Theadjustmentofthecontrolpointiscontinueduntilthedifferencebetweentherequiredvalueandtheactualpositionofthemechanismbecomeslessthantheincrement:XrqXf.bDX.ThentheinputofthecontrollerisfedthevalueXcpt,whichisequaltotherequiredadjustment:Xcpt=Xrq.Theadjustmentisthuscompleted.Useoftheprincipleofasteppedincreaseinthecontrolpointmakesitpossiblesynchronizethemovementsofthecylindersandsetthecontrolpointwithahighdegreeofaccuracyforalmostanyidealrepetitionfactor.MechanismsforIndividualAdjustmentoftheWorkingRollers.Theplate-straighteningmachineisdesignedsothateachworkingrollercanbemovedvertically,whichisdonebymeansofahydrauliccylinderactinginconcertwithaV-beltdrive.Thecylindersaresuppliedwithpowerfromservovalvesoperatedwithproportionalcontrol.Alineardisplacementgageisbuiltintoeachcylindertoobtainafeedbacksignalonthepositionoftheroller.Sincethesegagesareactuallytransmitinginformationonthepositionofthecylinderrodsratherthantheworkingrollersthemselves,thefollowingconversionisperformedtoobtaintherollerscoordinates:Xrol=kredXf.b,wherekredisthegearratioofthedrive;Xf.bisthepositionofthecylinderrodmeasuredbythelineardisplacementtrans-ducers.Thus,apositionfeedbackcircuitisprovidedtocontrolthepositionofeachworkingroller.Figure1presentsadia-gramofoneofthecircuits.ThecontrolsignalsaregeneratedbymeansofthePIcontrollere,whichhasmadeitpossibletoachieveahighdegreeofaccuracyinadjustingthesystemwithoutsacrificingspeed.408Theindividualdriveoftherollers.Theabove-describeddesignisbasedontheuseofindividualacdriveswithmotorsofdifferentpowersfedfromfrequencyconverters.Eachindividualdriveoffersthefollowingadvantagesoveragroupdrive:greaterreliabilitythankstotheabsenceofadditionalloadsonthecomponentsofthemechanismsduetodiffer-encesbetweenthelinearvelocitiesoftheworkingrollersandthespeedoftheplate;thepossibilitythatthemachinecouldcontinuetooperateifoneorevenseveraldrivesmalfunction;inthiscase,thecorrespondingrollerswouldberemovedfromthestraighteningzone;thepossibilitythatthelinearvelocitiesoftherollerscouldbeindividuallycorrectedinaccordancewiththeactualspeedoftheplate;suchacorrectioncouldbemadeeitherasapreliminarymeasure(onthebasisofmeasuredandcalculatedvalues)orduringthestraighteningoperation(onthebasisofthedataobtainedfromthefrequencycon-verters,whichemployartificialintelligence).Themaindriveofthestraighteningmachinerotatesninestraighteningrollersandtwohousingrollers.Thisdrivemustbehighlyreliableinoperation,sincethefactthatthePSMisinstalledinthemilllinemeansthatsizableproductionlossescanbeincurredifthedrivefailstoworkproperlyevenforashortperiodoftime.Therequirementsthatmustbesatisfiedbythedrivearedeterminedbytheoperationalanddesignfeaturesofthemachineasawhole:theplatebeingstraightenedmustcreatearigidkinematiccouplingbetweenthestraighteningrollers,therollersofthehousing,andtheadjacentsectionsoftherollerconveyors;theplateshouldundergoelongationduringthestraighteningoperationasaresultofplasticdeformation,withtheincrementsinlengthbeingdifferentoneachworkingrollerduetothedifferentiationofthebendingradii;thissit-uationleadstoanonuniformincreaseinthespeedoftheplateasitmovestowardtheendofthePSM;itmustbepossibletouseworkingrollersofdifferentdiameters(thisbeingdone,forexample,duetononuniformwearorregrinding);theloadsontherollersshouldbedifferentiatedinaccordancewiththechosenstraighteningregime;reversestraighteningshouldbepossible.Inlightoftheabovefactorsandtheactualoperatingregimesoftheplate-straighteningmachinebeingdiscussedhere,thefollowingrequirementscanbeestablishedfortheelectricdrive:regulationofspeedwithinbroadlimits,includingstartupofthemotorsunderload;operationinthereverseregime;arigidcharacteristicw=(M);highdegreeofaccuracyinmaintainingtheprescribedspeed;fullysynchronousoperation.Theelementbase.Thedriveoftherollerswasbuiltwiththeuseofasynchronousthree-phasemotor
溫馨提示
- 1. 本站所有資源如無特殊說明,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)頁內(nèi)容里面會(huì)有圖紙預(yù)覽,若沒有圖紙預(yù)覽就沒有圖紙。
- 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
- 長江大學(xué)《專業(yè)外語環(huán)境》2023-2024學(xué)年第一學(xué)期期末試卷
- 重慶第二師范學(xué)院《表演基礎(chǔ)訓(xùn)練(武術(shù)表演)》2023-2024學(xué)年第一學(xué)期期末試卷
- 華東師范大學(xué)《對(duì)外漢語詞匯學(xué)》2023-2024學(xué)年第一學(xué)期期末試卷
- 國培計(jì)劃信息教育2.0教師科研能力提升計(jì)劃
- 車輛股份銷售代理與傭金分成合同
- 藝術(shù)展覽館門衛(wèi)展覽品安全與觀眾引導(dǎo)合同
- 汽車環(huán)保指標(biāo)抵押貸款服務(wù)樣本
- 天水師范學(xué)院《西醫(yī)臨床技能訓(xùn)練》2023-2024學(xué)年第一學(xué)期期末試卷
- 餐飲業(yè)品牌加盟與合作合同
- 城市公共停車場建設(shè)運(yùn)營合同
- 京東新銳之星測(cè)評(píng)題
- 二型呼吸衰竭病人護(hù)理查房課件
- 護(hù)理授課比賽加分點(diǎn)
- 腫瘤康復(fù)項(xiàng)目創(chuàng)業(yè)計(jì)劃書
- 煙氣余熱回收工程施工組織設(shè)計(jì)
- GB/T 13296-2023鍋爐、熱交換器用不銹鋼無縫鋼管
- 內(nèi)校記錄完整
- 休克搶救流程圖
- 防突細(xì)則解讀
- 門急診服務(wù)流程圖
- 2024屆湖北省鄂東南聯(lián)盟化學(xué)高一第一學(xué)期期末檢測(cè)試題含解析
評(píng)論
0/150
提交評(píng)論