机械外文文献.docx
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机械外文文献.docx
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机械外文文献
机械外文文献
AComparisonofDriveStartingMechanismsfor
AggregateBeltConveyors
Abstract
Thepurposeofthispaperistodescribethetorque/speedcharacteristics,during
startingconditions,ofthemostcommondrivesusedonbeltconveyorstoday.RequirementsofaBeltConveyorDrive
Abeltconveyorisconsideredtobeaconstanttorquedevice.Inotherwords,the
requireddrivingtorqueisapproximatelyconstantatvaryingspeeds(seefigurel).otherapplications,suchasapumpdrive,havevariabletorquerequirements(see
figure2).
However,toincreasethespeedofaconveyoradditionaltorquemustbeaddeduntil
thedesiredspeedisobtained.Newton’sSecondLawofMotiongovernsthis
relationship.
Fma,,
Themoststraightforwardexamplewouldbeaconstantaccelerationtorque(seefigure3).Inrealitytheaccelerationtorqueisrarelyconstant.However,static
calculationmodelsasoutlinedintheConveyorEquipmentManufacturersAssociationhandbook(CEMA)makethisassumption.Whenusingstaticmodelstheaverageaccelerationtorqueisestimatedovertheentireaccelerationtimeandassumedtobelinear.Dynamicmodels,whicharebeyondthescopeofthispaper,allowacceleration
torquevaluestovaryinmagnitudeduringtheacceleration(ordeceleration)Period.
Itshouldbenotedthat,givenaconstantload,alargeraccelerationtorqueresultsina
fasteraccelerationtimeandalsohigherPeakbelttensions.Conversely,asmaller
accelerationtorqueresultsinalongerstarttimeandsmallerPeakbelttensions.Across-The-LineACMotorStart
Technicallythisisthesimplesttypeofdriveusedonabeltconveyor.InthisdrivetypeanACsquirrelcageinductionmotorisstartedbysimplythrowingthecontactorandenergizingthemotor.Theresultingoutputtorque,assumingthatratedvoltageis
maintained,isstrictlyafunctionofthemotordesign.NEMAhasProvideddesignstandardsthatdefinetheoutputtorquecharacteristicsofthemostcommonlyused3Phasemotorsuptoapproximately250hp(figure4).Insizeslargerthan250hpmanufacturersgenerallyusetheNEMAdesigncodesinarelativemanner(i.e.,NEMA
ChasagreaterlockedrotortorquethanaNEMABmotor).
ThemostcriticallocationsontheACmotorspeed/torquecurvehavebeennamedfordefinitionpurposes.Thesecommonnamesareprovidedinfigure5.
Themostrigorousmethodofdeterminingaverageaccelerationtorque,forstatic
calculations,istobreakthecurveintoseveralverticalsections,thensumthe
individualareasunderthecurveandfinallydividebythenumberofsections.
Themorecommonwayistoapplythefollowingsimplifiedequation:
Thesestaticapproximationmethodsworkformostbeltconveyorsbutcangetthedesignerintotroublefromtimetotime,especiallyonlongand/orsteepand/orfast
conveyors.Oneitemthatneedstobeexaminedisbreakawaytorque.Justbecausethedriveprovidesenoughaveragetorquetoacceleratetheloaddoesn’tmeanthatit
providesenoughtorquetobreakitawayfromzerospeedandgetitmoving.CEMAdefinesbreakawaytorqueastwicethetorquerequiredtoovercomethetotalfrictionplusthetorquerequiredtolifttheloadvertically.Lockedrotortorque(LRT)needstobegreaterthanbreakawaytorque!
AgoodstaticProgrammakesthischeck.
Inadditiontoexaminingtheeffectthataveragetorquehasontheconveyorcomponentsthebeltdesignerneedstodeterminetheeffectofpeaktorque.Itisnotuncommonforthebreakdowntorque(BDT)ofaNEMACmotortobegreaterthan2.5timesfullloadtorque(FLT).GenerallythebeltingandPulleymanufacturersallowatransientoverloadof1.5timesfullloadoperatingload.Anacross-the-linestartcaneasilycausetensionstoexceedthesemaximums.Thesehigherthannormalloadscanbedesignedintotheconveyoriftheyareknownupfront.
Consideringonlyaveragestartingtorquecancausetheconveyordesignertoundersizethetake-upweight.Itisnotuncommonforconveyorswithacross-the-linestarterstoexperienceintermittentdriveslip.ThisgenerallyhappenswhenPeaktorque(BDT)isinputbythedriveandthetake-uphasbeensizedforaveragetorquebutnotpeaktorque.Theresultcanbedevastating.Whenthedrivepulleyslipsduringthiscondition,thetensionontheTlandT2sides(highandlow)ofthedrivePulleytriestoequalize.Thiscansubjectalowtensionbendortake-uppulley,justbehindthedrive
pulley,totensionsthatapproachTltension.ThesePulleysarerarely,ifever,designed
forthisloadconditionandtheresultislowtensionPulleyfailure.Thisconditioniseasilydemonstratedwithdynamicanalysis.
AnothercommonProblemwithacross-the-linestartsiscausedbyvoltagedipsduringstarting.Ifthepowerdistributionsystemisnotstiffenoughtohandlethehugeinrushcurrentsofanacross-the-1inestart,thestartingtorqueofthemotorscanbereducedto
aPointthattheconveyorwillnotstart.Thisisduetothefactthattheoutputtorqueof
anACsquirrelcageinductionmotorisreducedbythesquareoftheappliedvoltage.Inotherwords,avoltagedropof10%wouldequatetoatorquereductionof19%.ReducedVoltageStarting
ThereducedvoltagestartingofanACsquirrelcageinductionmotorisdonefortwobasicreasons:
1.ToreducetheinrushcurrentthatnaturallyoccurswhenamotorisStarted
across-the-1ine.Atypicalcurrent/speedgraphisshowninfigure6.Itisnot
uncommonfortheinrushcurrenttobe6timesormorethanitisatfullload
torque.Asstatedabovehighinrushcurrentscausethevoltageinapower
distributionsystemtosag.Thecostofelectricalpowerdistributionequipment
canbecomeveryhighifitneedstobedesignedtohandlethehighinrush
currents.
2.ToreducePeakmotortorqueduringstartingconditions,whichsubsequently
increasesaccelerationtime.ByreducingthePeaktorquestheconveyor
componentscanbedesignedforlowertensionloads.Thisprimarilyincludes
belting,Pulleysandexternalsupportstructure.Thiscanresultinsignificantcost
savings.
TwocommontypesofreducedvoltagestartersaretheCurrentLimitingandtheConstantTorquedevices.
Graphsareincludedabove(figures7through8)thatdepictthesamemotor/conveyorapplicationwithanAcross-The-Line,alimitdCurren,andaconstantTorquestart.
Afterstudyingthegraphsitbecomesapparentthatthebestuseofthelimitedtorquestartistoprotectthepowerdistributionsystemfromhighinrushcurrents.TheconstanttorquestartreducesthehightorquePeaksandProtectstheconveyor’s
mechanicalcomponents.InbothcasestheStarttimeisincreasedbecausetheoverallmagnitudeofacceleratingtorqueisreduced.However,neithermethodwillmakeit
easiertostarta“hard-to-startconveyor.”Correctingahardstartingconveyorisnota
reasontouseareducedvoltagestarter!
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