AGMA 06FTM07-2006 Improvement of Standardized Test Methods for Evaluating the Lubricant Influence on Micropitting and Pitting Resistance of Case Carburized Gears《评估润滑剂对层渗碳齿轮上微点蚀和抗点.pdf
《AGMA 06FTM07-2006 Improvement of Standardized Test Methods for Evaluating the Lubricant Influence on Micropitting and Pitting Resistance of Case Carburized Gears《评估润滑剂对层渗碳齿轮上微点蚀和抗点.pdf》由会员分享,可在线阅读,更多相关《AGMA 06FTM07-2006 Improvement of Standardized Test Methods for Evaluating the Lubricant Influence on Micropitting and Pitting Resistance of Case Carburized Gears《评估润滑剂对层渗碳齿轮上微点蚀和抗点.pdf(13页珍藏版)》请在麦多课文档分享上搜索。
1、06FTM07Improvement of Standardized Test Methodsfor Evaluating the Lubricant Influence onMicropitting and Pitting Resistance of CaseCarburized Gearsby: B.-R. Hhn, P. Oster, T. Radev, G. Steinberger,and T. Tobie, Gear Research Institute (FZG)TECHNICAL PAPERAmerican Gear Manufacturers AssociationImprov
2、ement of Standardized Test Methods forEvaluating the Lubricant Influence on Micropittingand Pitting Resistance of Case Carburized GearsProf. Dr.-Ing. B.-R. Hhn, Dr.-Ing. P. Oster, Dr.-Ing. T. Radev, Dipl.-Ing. G.Steinberger, Dr.-Ing. T. Tobie, Gear Research Centre (FZG)The statements and opinions co
3、ntained herein are those of the author and should not be construed as anofficial action or opinion of the American Gear Manufacturers Association.AbstractMicropitting and pitting are typical fatigue failures, which occur on the flanks of highly stressed, casecarburized gears. Both failure modes are
4、strongly influenced by the lubricating conditions and lubricantproperties. Standardized test methods with defined test conditions are available to evaluate the lubricantperformance regarding micropitting and pitting.TheFVA-FZGmicropittingtestiswellestablishedasthestandardtestmethodforevaluatingthemi
5、cropittingload capacity of gear lubricants, but requires relatively high costs and is quite time consuming. Therefore anefficient and consistent short test method was developed to classify candidate lubricants in terms of theirmicropitting load capacity analogous to the FVA-FZG micropitting test and
6、 to supplement the existing test.The results of the standardized short test method correlate well with the ones of the FVA-FZG micropittingtest.Regarding pitting the standard FVA-FZG pitting test is a well known and widely used test method that hasproved itself to be suitable to discriminate the pit
7、ting load capacity of gear lubricants. In order to improve thepractice relevance ofthe testgears and testresults,to reduce the influence of undesired phenomena and toincrease the reliability of the results an advanced pitting test procedure was developed. This new testprocedure is based on the exist
8、ing pitting test but uses superfinished test gears with adequate flankmodifications. The more suitable test gears will improve the reproducibility of the test results and ensure aclosercorrelationoftheresultstopracticalgearapplications.Thetestalsooffersthepossibilitytobeextendedby additional testing
9、 at a 2nd load stage and is seen as an improvement of the existing pitting test method.The paper describes the new developed test procedures and shows basic examples of test results.Furthermore it discusses the correlation and classification to the existing test methods.Copyright 2006American Gear M
10、anufacturers Association500 Montgomery Street, Suite 350Alexandria, Virginia, 22314October, 2006ISBN: 1-55589-889-01IMPROVEMENT OF STANDARDIZED TEST METHODS FOR EVALUATINGTHE LUBRICANT INFLUENCE ON MICROPITTING ANDPITTING RESISTANCE OF CASE CARBURIZED GEARSProfessor Dr.-Ing. B.-R. Hhn, Dr.-Ing. P. O
11、ster, Dr.-Ing. T. Radev,Dipl.-Ing. G. Steinberger, and Dr.-Ing. T. Tobie, Gear Research Centre (FZG)NomenclatureA start of line of contact -B lowest point of single toothcontact-C pitch point -D highest point of singletooth contact-E end of line of contact -Caamount of tip relief mmCbamount of lengt
12、hwisecrowningmmCfamount of root relief mmGF micro-pitted flank area %GT standard micropitting test(FVA 54/7)-GFT micropitting load capacity -GFKT micropitting short test(DGMK 575)-KS load stage (micropittingtest)-LC50pitting lifetime, 50% failureprobability-MS load (torque) stage (pittingtest)-NPinu
13、mber of load cycles onpinion-N4number of load cycles-en-durance limit-Ramean value of tooth flankroughnessmmSKS failure load stage (micro-pitting test)-T1torque on pinion NmZLplubricant performance fac-tor (pitting)-ZLp50Tlubricant performance fac-torfromtest-a centre distance mmffmmean profile devi
14、ation mmpCHertzian contact pressurein CN/mm2HPdauer, 50%permissible contact stress(endurance limit for 50%failure probability)N/mm2HPstat, 50%permissible contact stress(static limit for 50% failureprobability)N/mm2HP50T, 50%permissible contact stressbased on test result ofFZG pitting test for 50mio.
15、 load cyclesN/mm2Hmod. contact stress acc.to 12N/mm21 IntroductionPittingandmicropittingaretypicalfatiguefailuresofhigh power transmitting, case carburized gears.Both failure modes are strongly related to lubricantinfluences as type of base oil, oil viscosity, type ofadditives and additive content.
16、Since the chemicalinteractionofbaseoilandadditiveswiththematerialof the tooth flank is normally not predictable, ade-quate test methods to evaluate the lubricant influ-ence on the different gear failure modes are re-quired.Some important aspects for such test methodsare:- test method as simple as po
17、ssible- high reliability of test results- good correlation to gears in practice- time-saving and cost-effectiveIn continuous work covering several research pro-jects standardized test methods were developed todetermine the actual lubricant performance regard-ingthedifferentgearfailuremodes.Thesestan
18、dardFZG test methods are based on the use of the FZGback-to-backgeartestrigandareperformedunderdefined test conditions using specified test gears.FVA-FZG micropitting test and FVA-FZG pittingtest are well known and widely used standard testmethodsforevaluatingthemicropittingrespectivelypittingresist
19、anceoflubricantsingeardrives.Never-thelesstherewasademandfromthegearandlubri-cant industry for further supplement and improve-ment of these existing test methods.22 Micropitting TestMicropitting on gears is a surface fatigue damagethat is strongly influenced by the conditions of thetribologicalsyste
20、m consistingof thetooth flank sur-faceandthelubricant.Micropittingismostfrequent-ly observed on gear flankswith ahigh surfacehard-ness and normally starts in flank areas with highnegativespecificsliding.Thedamagepatternofmi-cropitting is characterized by a large number of mi-croscopic cracks. Small
21、pits originating from thesecracks can result in a removal of surface materialand create local flank wear (Fig. 1).Consequently progressing micropitting can causeincreasing changes of the involute profile in form ofprofile deviations. In this case the dynamical addi-tional forces and the gear noise c
22、an increase andthe occurrence of pitting may be influenced.E5mmDCBAload cycles5mmFigure 1. Changes of the involute profile of agear tooth caused by progressing profiledeviations due to micropitting and correlation tothe tooth flankTheFVA-FZGmicropittingtestacc.to3iswelles-tablished as a standard tes
23、t method for evaluatingthe micropitting load capacity of gear lubricants.Thetestprovidesaquantitativeevaluationof thein-fluence of lubricant (especially additives) on the oc-currence of micropitting, differentiates oils accord-ing to their micropitting load capacity and enablesthechoiceofalubricantw
24、ithasufficientmicropittingresistance.Theresultsofthetestcanbeintroducedinto a micropitting capacity rating method for gears6, 10, 11.The FZG micropitting test consists of a load stagetest with incremental increasing of the contactstress followed by an endurance test. In the loadstagetest theability
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