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CONVEYORBELTTECHNIQUE
DESIGNANDCALCULATION
Index
1Introduction
1.1Foreword
1.2Developmentchronology,developmentaims
1.3Dunlop-Enerkatestrig
2BeltConveyors
2.1Basicsketch,concept,description
3.DriveSystems
3.1Pulleyarrangement,conveyingsystems
3.2Singlepulleyheaddrive,Dualpulleyheaddrive,Headandtaildrive,
generalcriteria
3.3Drivecomponents
Pulleymotor,Gearedmotor,Motor-gears-Couplings
4Couplings
4.1Couplingtypes,fixedcoupling,flexiblecoupling,fluidcoupling,
hydrodynamiccoupling
4.2Start-upprocedure
4.3Runbackprevention(holdback)
5.DrivePulley
5.1Forcetransmission,Eytelweinlimitations,slip,creep
5.2Frictionfactor出,angleofwrapa
6.Take-up(tension)Systems
6.1General,fixedtake-up,gravityweighttake-up,regulatedtake-up
tension
7DetectionDevices
7.1Belttensiondetection,off-trackdetection,beltslipdetection,
longitudinalslittingsafetydevice
8CleaningDevices
8.1General,groundrules
8.2Cablescraper,transversescraper,fanscraperstaggeredscraper,
rotaryscraper(vertical)
8.3Rotaryscraper(horizontal)rappingroller,beltturnover,highpres-
surewatercleaning
9Load
9.1General,bulkloads,pieceloads,bulkdensity,angleofrepose/sur-
charge,lumpsize,classification
9.2Temperature,moisture,chemicalcharacteristics,pHvalue,angleof
inclination
10ConveyorBelt
10.1General,beltconstruction
10.2Carcase,plymaterial
10.3Covers,coverqualities(DIN/ISO)
10.4Specialqualities,coverthicknessratio
10.5Angleofinclinationvalues,coverthicknessvalues
10.6DUNLOPcoverqualities,specifications
10.7BasicMaterials
10.8Beltspecification,DUNLOPbelttypes
Index
11Design
11.1Maindata,beltspeed,standardvalues,recommendedvalues
11.2Beltwidths,standardwidths,minimumbeltwidth,idlerarrange-
ment,idlerspacing
11.3Idlerspacing(recommendedvalues)idlerrotation,idlerrolldiame-
ter,standardidlerrolllengthsL
11.4Photograph
11.5Crosssectionalareaofload,comparisonvariouscrosssections
11.6Conveyorcapacity,loadstreamvolume,loadstreammass,degree
offilling,reductionfactor
11.7Powerrequirement,electricmotortypelist
11.8Adjustmentfactors
11.9Belttypes
11.10Pulleydiameters,standarddiameters
11.11Pulleyrotation,pulleyloading
11.12Averagesurfacepressure,transmissioncapability,start-uptorque
11.13Troughingtransition,pulleylift
11.14Convexverticalcurvevalues
11.15Concaveverticalcurve,curveco-ordinates
11.16Beltturnover,turnoverlength,values
11.17Horizontalcurve,values
12BasisofCalculation
12.1Resistancetomotion,mainresistance,secondaryresistance,slope
resistance,specialresistances
12.2PeripheralforceFu(working),summation
12.3FactorC(allowanceforsecondaryresistance)
12.4Fictitiousfrictionfactorf
12.5Massofrotatingidlerparts.Massofbelt
12.6Massofmaterialload.PeripheralforceFA(start-up)frictioncut-off
material/belt
12.7Start-upfactorKA,accelerationaA,take-offtime,acceleration
distance
12.8PeripheralforceFB(braking),delay,over-rundistance,brakingtor-
queofmotorMM,drivepoweratpulleyPT,motorpowerPM
12.9Degreeofefficiency內(nèi)nominalmotorpower(DIN)drivesystem
12.10Distributionofdrivepowerwithheadandtaildrive,distributionof
drivepowerwithdualpulleyheaddrive
12.11Factorxforvariousdriveconditions
12.12Distributionofdrivepowerwithdualpulleyheadandtaildrive
12.13Belttensions.andT2.Belttensioncorrection,fixedtake-up
12.14Correctionofbelttensionsmoveabletake-up
12.15Correctionofbelttensionsforminimumbelttensions
12.16Sequentialcalculationtoascertainbelttensions.toT4,force
distribution,individualresistances
12.17Sequentialcalculationforsinglepulleyheaddrive
12.18Sequentialcalculationfortaildriveandtaildrivebraking
12.19Sequentialcalculationforheadandtaildriveanddualpulleyhead
drive
12.20Sectionloadings
12.21Nominalbeltstrength,safetyfactor
12.22Selectionofbelttype(criteria)
12.23Selectionofbelttype(criteriacontinuation)
12.24Selectionofbelttype(criteriacontinuation)
12.25Beltreferencetoascertainabelttype
12.26Determinationoffallenergyattheloadingpoint
12.27Influenceofstressesonbeltselection
12.28Photograph
12.29Determinationoftroughingcapabilities
12.30Determinationofcoverthicknesses
12.31Determinationoftake-uptravel,values
n
Index
3
3JCalculationExample
32Dutydata,shortcalculation
(
3PeripheralforceFjandmotorperformancePM
Individualresistances,sequentialcalculation
3./3
35Sequentialcalculationforvarioustake-upsystems
36Beltsafety,pre-tension,take-uptravel
37Pulleydiameter,troughingtransition
38Convexandconcaveverticalcurve
39Controlofadditionalstresses
31Computercalculations
Photograph
4
1SliderBedBeltConveyors
4.42Supportingsurface,beltwidths,beltspeeds
4Conveyingcapacity,resistancetomotion
Frictionalresistance,frictioncoefficient|x(belt/supportingsurface)
4./3G
4Sloperesistance,specialresistances
46SpecialResistances(continued)
4.57Drivepower,belttension,peripheralforceFA
SafetyFactorS,nominalbeltstrengthKN
5
5JBucket日evatorBelts
sConveyingcapacity,bucketcontents,bucketshape
DegreeofFilling,speed
s,2
s3Loading,discharging
4
5Bucketspacing,beltwidth,mainresistance
Loadingresistance,secondaryresistance,peripheralforceFUz
5,56motorpower
57Start-upfactor,determinationofbelttype
)
58DeterminationofbelttensionsT-andT2
SafetyfactorS,frictioncoefficient出(belt/drivepulley)
59
10BeltstressT〕(loaddependent)pulleydiameter,numberofplies
5S.11Individualresistances,peripheralforceFj
s12Valuesfordegreeoffilling,bulkdensity,speed
s13Bucketshapesanddimensions
Bucketattachment,makingendlessjoint
III
Index
ATheoreticalVolumeStream
A.1Flatcarryingidlers,2rolltroughingidlers
A.23rolltroughingidlers
A.3Deeptroughing,garlandidlers
A.4Boxsectionbelt
A.5Steepconveyingbelts
A.6Corrugatededgebeltswithoutcleats
BMassesofRotatingIdlerRollers
B.1Standardidlers
B.2Cushionidlers,discidlers
CConveyorBeltThicknessesandweights
C.1BelttypesSUPERFORT,STARFLEX,DUNLOFLEX,TRIOFLEX,
FERROFLEX
C.2SteepinclinebeltsCHEVRON,HIGH-CHEVRON,MULTIPROF
C.3Sliderbedbelts,DUNLOPLASTbelts
C.4SteelcordbeltsSILVERCORD
rubbercleats
DSecondaryResistances
D.1Inertialandfrictionalresistanceattheloadingpoint
Frictionalresistancefromskirtplates(loadingpoint)
Frictionalresistancefrombeltcleaners
D.2Beltbending(flexing)resistance,pulleybearingresistance
ESpecialResistances
E.1Resistanceduetoidlertilt
Frictionalresistancefromskirtplatesbeyondtheloadingpoint
Resistanceduetosidewaysloaddischarge
Resistancefromtrippers
E.2Resistancetobeltsealingstripbeyondtheloadingpoint
Resistancefrommotionofbunkerdrag-outbelts
FDriveFactorsc1andc2
F.1Drivefactorsandc2value
GSafetyFactorS
G.1Beltsafety(definition)time/strengthbehaviour,reductions
G.2SafetyfactorsSforsteadyandnon-steadystateworkingandfor
temporarylocalisedpeakstresses
HStress-StrainCurve
H.1Elongationcharacteristics(hysteresiscurve)
H.2Stress-straincurve(diagram)
1AdditionalStresses
1.1Beltsafety,elasticmodulus
I.2ValuesforSmjn/elongationvaluekD
I.3Troughingtransition:safetyandelongation
I.4Troughingtransitionwithraisedpulley
1.5Concaveverticalcurves
I.6Convexverticalcurves
1.7Horizontalcurve
I.8Beltturnover
JRollDiameter
J.1Standardrolls,coiledroll,doublecoiledroll,'S'formcoiledroll,roll
onovalcore
J.2Diameterofstandardrolls(table)
IV
Index
K
1PulleyDiameters
K2PulleydiametersforDUNLOP-ENERKAbelttypes
.3PulleydiametersforDUNLOPLASTPVGandPVCbelts
KPulleydiametersforsteelcordbeltsSILVERCORD
.
K
CrownedPulleys
.L1
Dimensions,taper
L
ArrangementofRubberSupportingIdlerDiscs
MJ
Installationinstructions,measurements
M
ChemicalResistance
N1
M2Resistanceofthecarcase
M3Resistanceofthecovers
MResistanceofthecovers(continued)
SteepInclineInstallations
O1
2Hintsfortheimprovementofinstallationcomponents
OHintsfortheimprovementofinstallationcomponents(continued)
.
OEndlessSplicing
.1
P2Methods,hotvulcanising
PWarmvulcanization,coldvulcanisation,mechanicalfasteners
P
1MaterialCharacteristics
Q2Materialcharacteristics
Materialcharacteristics(continued)
Q3
.4Materialcharacteristics(continued)
Q5Materialcharacteristics(continued)
.6Materialcharacteristics(continued)
QMaterialcharacteristics(continued)
.
Q
.
Q
.Q
V
Dunlop-EnerkaBeltingDunlop-EnerkaFranceSari
P.O.Box86Z.l.desEbisoires
CenturionWay78370Plaisir
Farington,LeylandFrance
Preston,LancashirePR52EYTel.+33(0)130555419
UnitedKingdomFax+33(0)130540238
Tel.+44(0)1772433751Telex695608
Fax+44(0)1772623967
Telex627080
Dunlop-CCTs.a.Dunlop-Enerkab.v.
BoulevarddesCombattants64VisokovoPtnijProezd,1
7500Toumai127577,Moskow
BelgiumRussia
Tel.+32(0)69254811Tel.+70959018857
Fax+32(0)69226270Fax+70959012921
Telex57187
Dunlop-Enerkab.v.Dunlop-CCTs.a.
Postbus14Ovnatanyanastr.4
9200AADrachten340017,Donjetsk
TheNetherlandsTheUkraine
Tel.+31(0)512585555Tel.+380622955038
Fax+31(0)512585490Fax+380622323977
Telex46116
Dunlop-EnerkaGmbHDunlop-EnerkaS.L.
Friedrich-Bergius-Strasse10Pol.Ind.LesComes
41516GrevenbroichC/ltalia,Parc,70Nave3
Germany08700Igualada
Tel.+49(0)2181270100Barcelona
Fax+49(0)2181270130Spain
Tel.+34(9)38055446
Fax+34(9)38054269
Allinformationcontainedinthismanualhasbeenassembledwithgreatcare.Itrepresentsup-to-dateknowledgeandtechniquesandisbasedonourlongexperienceofthe
industry.Wewouldhoweveradviseyouthatmodificationsmaybenecessarytocaterfornewtechnicaldevelopments.Allinformation,guidevalues,commentsetc.aregiven
forguidancepurposesonlyandtheultimateresponsibilityfortheuseofthisinformationinconveyordesignandanysubsequentliabilityrestswiththeenduser,particularly
wherethesuitabilityofourproductsforcertainapplicationsisconcerned.Thedataandvaluesgivenarebasedonaveragevalues.
Introduction
ForewordConveyorbeltshavebeenusedfordecadestotransportbulkandunitloads.
Theyhaveprovedtheirwortheverywherebecausebeltconveyorinstallations
canbeadaptedtomeetnearlyalllocalconditions.Theyarework-safeand
economical.
Thedemandforeverincreasingcapacitiesandeverlongerconveyinglengths
hasacceleratedthedevelopmentofthebeltconveyortechnique,newmate-
rialsarebeingdeveloped,newconveyingsystemsarebeingplannedand
testedespeciallythosehavingregardtotheenvironmental.
Theconveyorbeltplaysthemajorpartinthewholesystemandhastoover-
comethemanyandvariedstresses.Inadditiontothiseveryconveying
problemisdifferentandneedscarefulplanningandselectionoftherightele-
mentsinordertoachievetheoptimumconveyingcapacityinaneconomical
way.
Thereareanumberofpracticalrules,valuesandexperienceswhichcanbe
usefulduringtheplanningstage.Thismanualaimstobeofassistanceto
operators,engineersandprojectpeopleandprovidesasubstantialamountof
elementarydata.Inadditionthereareanumberofinstructionsandhints
offeredtoenableaccuratecalculationsorchecksoninstallationcomponents
thatimpingeontherunningofthebelt.
Infuturetherew川bemoreandmoreuseofthecomputerforcalculations
anddimensioningofbeltconveyors.Withthisoftenthecorrelationofthe
valuationcriteriawillnolongerberecognizable.Thismanualshouldalsohelp
tounderstandthebackgroundtoacalculation,theselectioncriteriaforan
optimumbelttypeandtorecognizeaspecialoperatingcase.
AllnewstandardsDIN,EN,orISO,havebeentakenintoconsiderationas
wellastheresultsofindividualresearchstudies.Thedevelopmentscontinue
andwearegratefulforallhintsandpracticalexperiences.
July1994
Introduction
ChronologicalUntilthemid1970'sconveyorbeltdevelopmentandtechnologywasconcen-
Developmenttratedonthesearchforappropriatematerialsforthebeltandthesolvingof
driveproblems.Inthefirstinstancetransmissionoftractionplayedapart.As
thedemandgrewforconveyorsoflargercapacityandlongerlength,addition-
alrequirementseffectingthebelthadtobeconsideredandresearchedsuch
asgreaterworkload,elongation,slitresistanceandendlesssplicejointing.
from1870Trialswithplaincottonbelts.
upto1914Firstrubberconveyorbeltsdevelopedfromdrivebelts.
1921FoundingoftheEnerkafactory.Manufactureofdrivebelts
andlaterconveyorbelts.
1923/1924Firstuseofbeltsunderground,notasuccessduetodrive
problems.
1926FirstbeltswithrobustBalatareinforcedcovers.
from1928UseofbeltswithMacocottonplies.
from1933DevelopmentofRayon/cottonbeltsandpurerayonbelts.
Transitionfromnaturalrubbertosyntheticrubberforprotec-
tionofcarcase.
from1939Increaseduseofrayonandsyntheticrubber.
1941/1942UseofPVCbeltsaboveground.
1942Steelcordbeltsusedforthefirsttimeformajorlonghaul
installationsintheUnitedStates.
from1945Furtherdevelopmentofrayonbelts.
Introductionofmixedmaterialfabricsincludessyntheticweft.
1954/1955Developmentofhightensilestrengthbeltse.g.pliesfrom
rayon,polyamideandpolyester.Coverrubberswithvarious
surfacedesigns.Steepinclinebeltingwithprofilesandcleats.
from1955DevelopmentanduseofsteelcordbeltinginEurope.
from1970UseofAramideasreinforcingmaterialforthecarcase
from1980Developmentofnewconveyorsystemse.g.thetube
conveyor,hammockconveyor.
Thisbriefhistoryillustratesthemoreimportantstagesinconveyorbeltdeve-
lopment.Thesearchfornewmaterialsbecamenecessarybecauseofthe
everincreasingdemandstooptimiseinstallationconstructionsuchaspulley
diameters,verticalandhorizontalcurvesetc.andthedemandsofnew
conveyingsystems.
DevelopmentGoals?Optimisingconveyorbeltreinforcingmaterialsi.e.exploittotheir
maximumstrengthlimitstoobtainoptimumworkinglifeeconomy.
?Optimumdimensioningofinstallationcomponentse.g.pulleydiameters,
idlers,bearingsandshafts,troughingtransitions,driveandtake-upsystems.
?Adaptationofcoverqualitytoeachdutyi.e.coverqualitytoprovide
optimumsolutionatthemosteconomicalcost.
?Manufactureofconveyorbeltsandinstallationconstructionwiththe
environmentinmind.
1.2
Introduction
DUNLOP-ENERKAToassistinfuturedevelopmentofnewbelttypesandsplicejoiningtechni-
BeltTestingRigques,Dunlop-Enerkahavedevelopedandinstalledanewtypeofbelttesting
rig.Theprincipalintentionofthetestingmethodsistosimulateactualopera-
tingconditionsencounteredbyabeltinservice.
Withthisrigitispossibletosimulatechangingstresses,bendingchanges,
applymaximumpre-tension,usevariouspulleydiameters,observebeltslipto
capacitylimitsetc.Analysingthetestdatacanenableoptimumusetobe
madeofconveyorbeltmaterialsandbeltconveyorstherebyprovidingmore
economicaloperations.
1.3
BeltConveyor
ConstructionAninstallationconsistsofadrivesystem,atake-upsystem,additionalcom-
ponentsandtheprincipalitem,theconveyorbelt.Inadditiontotheconven-
tionalconveyorthereareotherconveyorsystemdevelopmentsinwhichthe
beltistheconveyingelement.
BasicSketch
ComponentsMotor18BeltRunCounter
MotorCoupling19OffTrackControl
Brake20BeltSteeringIdler
DriveTransmission21PullWire
AntiRunback22EmergencySwitch
DriveCoupling23ConveyorBelt
PulleyBearings24BrushRoller
DrivePulley25Scraper
TailPulley26Plough
DeflectionorSnubPulley27DeckingPlate
ImpactIdlerGarland28Cowl(HeadGuard)
12CarryingSideIdler29BaffleBar
13ReturnSideIdler30DeliveryChute
14GuideRoller31ChuteLining
15CounterWeightTake-up32SkirtBoard
16ScrewTake-up33UpperBeltLocation
17Take-upWeight34LowerBeltLocation
ExplanationBeltconveyor-fixedposition
Flatconveying
Mobileconveyor
Withwheels
Troughedconveying
Withoutwheels
2.1
DriveSystems
DriveSystemsAdrivesystemconsistsofallcomponentsthatprovidefordriving,start-up
andbrakingforces.Thetransmissionoftractionpowerfromthedrivepulley
isdependentuponthefollowingfactors:
?Angleofwrapathebeltmakesonthedrivepulley
?Frictioncoefficient秣betweenbeltanddrivepulley
?PreTensionTv.
PulleyArrangement
andBeltPath
ConveyorSystemsTheabovesketchesofdrivesystemsandbeltpathsareoftheclassicaland
mostfrequentlyusedtypes.Additionallythereareanumberofnewproven
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