AGMA 11FTM21-2011 Gearbox Bearing Service Life - A Matter of Mastering Many Design Parameters.pdf
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1、11FTM21AGMA Technical PaperGearbox BearingService Life - A Matterof Mastering ManyDesign ParametersBy H. Wendeberg, SKFGearbox Bearing Service Life - A Matter of Mastering ManyDesign ParametersHans Wendeberg, SKFThe statements and opinions contained herein are those of the author and should not be c
2、onstrued as anofficial action or opinion of the American Gear Manufacturers Association.AbstractThe service life of a gearbox is determined by many factors. The bearings in the gearbox play a major rolesincetheythemselvesdeliveranimportantfunctionandinadditioninteractwiththeshafts,thecasingandtheoil
3、. Without a doubt, the sizing of the bearings is of great importance for the gearbox reliability. Since morethan 50 years the bearing dynamic carrying capacity has been used to determine a suitable size needed todeliverasufficientfatiguelifebutdespitetheadvancedcalculationmethodsdeveloped,themethods
4、donotfully predictservicelife. Producers ofhigh quality bearing haveintroduced highperformance class bearingsandlackingbetterwaystoexpresstheimprovedperformance,thisisonlyrepresentedbyincreaseddynamiccarrying capacity.The availability of high-strength shaft materials in combination with bearings wit
5、h high carrying capacityallows slimmer shafts to be used. The modulus of elasticity remains the same, so seat design for bearingsand gears must be given close attention.This paper will cover the following:- Sizing of bearings based on dynamic carrying capacity and how this relates to service life- H
6、owthedesignoftheinterfacebetweenbearingandshaftsshouldbeadaptedtomodernshaftmaterials- How the design of the interface between bearing and gearbox casing influences service life of thegearbox- Influence of modern electric motor speed controls in bearing type selectionCopyright 2011American Gear Manu
7、facturers Association1001 N. Fairfax Street, 5thFloorAlexandria, Virginia 22314October 2011ISBN: 978-1-61481-020-93 11FTM21Gearbox Bearing Service Life - A Matter of Mastering Many Design ParametersHans Wendeberg, SKFIntroductionThe service life of a gearbox is determined by many factors. The bearin
8、gs in the gearbox play a major rolesince they deliver the important function of transmitting rotational movement, in addition interacting with theshafts,thecasingandtheoil. Withoutadoubt,thesizingofthebearingsisofgreatimportanceforthegearboxreliability. For more than 50 years, the bearing dynamic ca
9、rrying capacity has been used todetermine asuit-ablesizeneededtodeliverasufficient fatiguelife;butdespitetheadvancedcalculationmethodsdevelopedinfatigue, subsurface fatigue is not the only mechanism involved in the determination of the service life of thebearings. Producersofhighqualitybearingshavei
10、ntroducedhighperformanceclassbearingsbutstilllackingrepresentative ways to express the improved performance regarding fatigue life; currently, this is onlyrepresentedbyincreaseddynamiccarryingcapacityandpossiblyanotherscaleforthelifemodificationfactor.The availability of high-strength shaft material
11、s in combination with bearings with high carrying capacityallowsslimmershaftstobeused. Themodulusofelasticityremainsthesame,soseatdesignforbearingsandgears must be given close attention. The possibilities of the modern electric motor speed controls put newdemands on the design of the interfaces betw
12、een bearings and casings. This also influences what types ofbearings can be used.This paper covers the following:S Sizing of bearings based on dynamic carrying capacity and how this relates to service life.S Howthedesignoftheinterfacebetweenbearingandshaftsshouldbeadaptedtomodernshaftmaterials.S How
13、 the design of the interface between bearing and gearbox casing influences service life of thegearbox.S Influence of modern electric motor speed controls in bearing type selection.Sizing of rolling element bearings based on dynamic carrying capacityFor modern high quality bearings, the classic basic
14、 rating life can deviatesignificantly fromthe actualservicelife ina givenapplication. Generally speaking,service lifein aparticular applicationdepends notonly onloadin relation to bearing size, but also on a variety of influencing factors including lubrication, the degree ofcontamination, misalignme
15、nt, proper installation and environmental conditions.The first method accepted by ISO for determining a suitable bearing size is the classic Lundberg andPalmgren equation L10=(C/P)P, making it possible to determine a suitable dynamic C-value (which in turndefines the bearing size) needed to satisfy
16、a need for a fatigue life L10.Inthesixties,theinfluenceofthematerialpropertiesandlubricantfilmthicknesswasintroduced,representedby the a23-factor. (See Figure 1.)(1)L10= a23CPPa23is a function of and the materialAs an attempt to take some of those factors into account when determining a suitable bea
17、ring size, the DINISO281:1990/AMD2:2000containsamodificationfactoraSLFtothebasicratinglifeL10=(C/P)P. Themethodmakesprovisionforbearingmanufacturersto recommenda calculationmethodology forthis lifemodificationfactor to be applied to a bearing based on operating conditions. Some life modification fac
18、tors applies theconcept of a fatigue load limit Puanalogous to that used when dimensioning other machine components.Furthermore, the life modification factor makes use of the lubrication conditions and a factor cforcontamination level to reflect the applications operating conditions.4 11FTM21Figure
19、1. Life adjustment factor a23for oil film influenceBasic conditionsThe life modification factor considers bearing load level, oil film thickness and the stress-raising influence ofindentations in raceways and rollers from oil contaminants.Theinfluenceoftheoilfilmthicknessisstrong,andisrepresentedbyt
20、hevalue. isthe ratioof theactualoperating viscosity to the rated viscosity for adequate lubrication 1.The influence of indentations from oil contaminants is very important, and complex to model. The c-value(contamination factor) acts as an inverted stress concentration factor defined as a value betw
21、een 0 and 1,where 0 represents “severe contamination” and 1 represents “extreme cleanliness”. The DIN ISO 281Addendum 4:2003 describes a method to obtain an c-factor for a given application. SKF has developed astandardized method to estimate the c-value using load level, oil film thickness, size and
22、 type ofcontamination particles, mounting practice, filter effectiveness, and seal effectiveness into account, 2, 3.(2)L10m= aSKFCPPaSKF , c, Pu, PInthelatestdecade,SKFandotherbearingproducershaveintroducedhigh performanceclass bearingsthatare given higher dynamic carrying capacity figures and in SK
23、Fs case another scale for the life modificationfactor aSKFto adapt the L10mcalculations to the new technological developments in material andmanufacturing. (Figure 2)Therefore,thedevelopmentfromthepurelysub-surfacefatiguetheory“ActaPolytechnica”from LundbergSeparate “high-performance scale”Limitatio
24、ns of the classical and modified sizing modelsThedifferentissuesoftheL10modelsfordeterminingbearingsizearewellgroundedinmathematicalmodelsand practical testing, but limited in the use of only one failure mechanism, i.e., fatigue of the raceways or therolling elements to deliver a suitable service li
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