AGMA 09FTM01-2009 Influence of the Residual Stresses Induced by Hard Finishing Processes on the Running Behavior of Gears《在齿轮转动时由硬齿面精加工产生的残余应力的影响》.pdf
《AGMA 09FTM01-2009 Influence of the Residual Stresses Induced by Hard Finishing Processes on the Running Behavior of Gears《在齿轮转动时由硬齿面精加工产生的残余应力的影响》.pdf》由会员分享,可在线阅读,更多相关《AGMA 09FTM01-2009 Influence of the Residual Stresses Induced by Hard Finishing Processes on the Running Behavior of Gears《在齿轮转动时由硬齿面精加工产生的残余应力的影响》.pdf(11页珍藏版)》请在麦多课文档分享上搜索。
1、09FTM01AGMA Technical PaperInfluence of theResidual StressesInduced by HardFinishing Processes onthe Running Behaviorof GearsBy Dr. V. Vasiliou, C. Gorgels, andDr.F.Klocke,RWTHAachenUniversityInfluence of the Residual Stresses Induced by Hard FinishingProcesses on the Running Behavior of GearsDr.Vas
2、iliosVasiliou,ChristofGorgelsandDr.FritzKlocke,RWTHAachenUniversityThe statements and opinions contained herein are those of the author and should not be construed as anofficial action or opinion of the American Gear Manufacturers Association.AbstractLow noise and high load carrying capacity are two
3、 important characteristics of competitive powertransmissions.Thechallengeinthedevelopment,designandmanufacturingofthesepowertransmissionsisto meet these requirements economically. One of the ways to meet both of these requirements is through aprocess known as hard finishing. There are various types
4、of hard finishing and it is important to know whichprocess produces which requirement.Theaimofthisresearchprojectistoinduceresidualstressesintheedgeoftheworkpiecesbydifferenthardfinishing processes and to analyze their influence on the durability of the gears. The tested gears aremanufactured by pro
5、file grinding, gear honing and generating grinding. The gear deviations and the finishquality have to be comparable. Through this the influence of the residual stresses on the durability can beanalyzed independent from the geometrical conditions. The presentation will show the results of the loadcar
6、rying capacity tests depending on the values of the residual stresses.Copyright 2009American Gear Manufacturers Association500 Montgomery Street, Suite 350Alexandria, Virginia, 22314September 2009ISBN: 978-1-55589-954-73Influence of the Residual Stresses Induced by Hard Finishing Processes on theRun
7、ning Behavior of GearsDr. Vasilios Vasiliou, Christof Gorgels and Dr. Fritz Klocke, RWTH Aachen UniversityMotivation and objectiveNoise behavior and load carrying capacity areimportant demands on power transmissions. Thechallenges in development, design and manufac-turing of power transmissions are
8、to meet theserequirements economically and efficiently. Theselection of a capable hard finishing process for aspecificgeardependsonthedesignofthetransmis-sion. Therefore it is important to know whichrequirements can be met by which hard finishingprocess.To achieve high durability, high surface quali
9、ty, lowgear deviations, high gear quality and high residualcompressive stresses are required. So far theinfluenceofgeardeviationsandfinishquality ontheload-carrying capacity of gears have beenanalyzed. However, theinfluenceofmanufacturinginduced residual stresses is yet unknown. Further-more there i
10、s a lack of knowledge regarding howhightheresidualstressescausedbymanufacturinghavetobetoinfluencetheloadcarrying capacity ofgears in a positive way.The aim of the research project described in thispaper is to analyze the influence of residualstresses induced by different hard finishingprocesses on
11、the durability of gears. The testingpinions arehardfinishedby gearhoningandgener-ating grinding. Both processes are set up tocomparable finish quality. Hereby the influence ofthe residual stresses on the durability can beanalyzed independent from the geometrical condi-tions. In this paper the change
12、s in residual stressand surface roughness during the test aredescribed.ApproachFigure 1 shows theapproach of the project. At firstresidual stress measurements are carried out atindustrially manufactured gears in a round-robintest. The intent is to determine the spread of theresidual stresses on gear
13、s manufactured by thesame hard finishing method. At the same timedifferences between the level of residual stressesresultingfromdifferenthardfinishingprocessescanbe determined. The hard finishing methods usedare generating gear grinding and gear honing.WZLFigure 1. Approach4To analyze the changes in
14、 residual stress andsurface structure of differently hard finished gearsduringtheloadcycles, testingpinions aremanufac-tured by using generating gear grinding and gearhoning, parallel to the industrial round-robin test.Thetesting pinions are mountedin aback-to-backgear test rig. At the beginning and
15、 after a definednumber of load cycles the surface is analyzed bymeans of residual stress, roughness and hardnessmeasurements. The testing gears used areexclusively manufactured by profile grinding.Round-robin test to determine residualstresses due to hard finishingDue to different workpiece material
16、s, toolspecifications and process parameters, differentresidual stresses are measured for workpiecesmanufactured by the same hard finishing process.Therefore the following questions result: How higharetheresidualstresses andthescatter ofindustri-al produced gears? Does a specific hard finishingproce
17、ss lead to a certain residual stress level?Furthermore it has to be answered whether theresidual stress generated in a testing pinion iscomparable to residual stress generated in gearsmanufactured in industry and whether the residualstresses of the testing pinion are representative forthe industrial
18、 manufactured gears.To answer these questions residual stresses aremeasured using X-ray diffraction at the testingpinions and at the industrial manufactured gears.These automotive gears are hard finished by gearhoning or generating gear grinding. The toolsconsist of corundum (aluminium oxide) and ar
19、eceramic bound. All in all, 25 gears are analyzed.The residual stresses are measured on the toothflank at the position of the pitch circle at a depth ofaB=4.5mm.Theresults arepresented inFigure 2. In this figurethe residual stresses are shown in the profiledirection (above) and flank direction (bott
20、om). Theresidual stresses induced by generating geargrinding are shown on the left side. Those inducedby gearhoningarepresentedontherightside. Thehelical striped show the residual stresses of thetestingpinionmanufacturedunderlaboratorycondi-tions.In all for both directions, profile and flank, onlyre
21、sidual compressive stresses are determined.Furthermore the residual compressive stresses inthe profile direction are higher than in the flank di-rection. The difference between the maximum andminimum residual compressive stress measuredfor ground gears is P= 237 MPa in profile direc-tion and F= 254
22、MPa in flank direction. Forhoned gears the difference is P= 274 MPa inprofile direction and F= 163 MPa in flank direc-tion. Noticeable is that the scatter for honed gearsin the flank direction is smaller.WZLFigure 2. Measurement of residual stresses in round-robin test5The scatter of gears which wer
23、e produced in thesame batch is significantly smaller. This is shownby analyzing gears produced in two differentbatches. The difference between maximum andminimum residual stresses in the profile directionwithin a batch is P1/2= 70 MPa for generatedgroundgears. Intheflankdirectionthedifferenceiswithi
24、n the fist batch F1= 143 MPa and within thesecond batch F2= 91 MPa. For the honedbatches the difference is within the fist batchF1= 47 MPa and within the second batchF2= 64 MPa in the flank direction. In the profiledirection the difference is within the fist batchP1= 52 MPa and within the second bat
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