AGMA 07FTM15-2007 Experience with a Disc Rig Micropitting Test《带盘型钻机微点蚀测试的试验》.pdf
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1、07FTM15Experience with a Disc Rig Micropitting Testby: Dr. M.G. Talks, QinetiQ Ltd., and W. Bennett, DefenceEquipment and Support MoDTECHNICAL PAPERAmerican Gear Manufacturers AssociationExperience with a Disc Rig Micropitting TestDr. Miles G. Talks, QinetiQ, Ltd., and W. Bennett, Defence Equipment
2、andSupport, MoDThe 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.AbstractThe experimental work carried out was aimed at developing a test method that was able to consistently
3、produce micropitting damage and could discriminate between a good oil (i.e., one that rarely producesmicropitting in service) and a poor oil (i.e., one that does produce micropitting in service). The small-scale3-Disc test rig that was used for this work employs 3 discs to apply the test load to a 1
4、2mm-diameter testroller.Thistestgeometryallowsalargenumberofstresscycles(typically600,000to800,000cycles/h)tobegenerated at the contact track on the roller.Thedisc rigcontrolsystemallows testparameters suchas entrainmentvelocity,contactstress andslide/rollratio at the disc/roller contacts to be accu
5、rately and independently controlled. This enables the effect of keyparameters to be studied in isolation, which is something that cannot be easily achieved using conventionalgear test rigs.Theearlyworkcarriedoutusingthediscrigwasaimedatproducingmicropittingdamagebyoperatingtherigat contact condition
6、s similar to those used in the FZG micropitting gear test method. These early testsconfirmedthatthedamageproducedtotherollertrackexhibitscharacteristicsthataretypicalofmicropittingdamage,andshowedthattheseverityofthemicropittingproducedwasaffectedbytheamountofrunning-incarried out on the roller prio
7、r to applying the full test load.A test procedure has been developed which provides a good level of repeatability and which allowsdiscriminationbetweenoilswhichproducemicropittinginserviceandthosewhichdonot.Inaddition,astudyof the effect of slide/roll ratio (SRR) has shown that the severity of micro
8、pitting damage increases as SRRincreased,whereasat0%SRRnomicropittingoccurredand,atnegativeSRRs,microcrackingoccurredbutnot micropitting. This is the way that SRR seems to affect micropitting in gears.Copyright 2007American Gear Manufacturers Association500 Montgomery Street, Suite 350Alexandria, Vi
9、rginia, 22314October, 2007ISBN: 978-1-55589-919-61Experience with a Disc Rig Micropitting TestAuthors: Dr. Miles G. Talks (QinetiQ Ltd, UK) and Mr. W. Bennett (Defence Equipment60%SRR; 1.7GPa contact pressure; 0.45 mm Ra discs;and 90C oil temperature. In all of the five tests, asmallamountofmicropit
10、tingwasproducedafterthefirsthourof testing,about halfof theroller trackwas7micropitted after 10 hours and virtually all of thetrack was micropitted after 20 hours and 30 hours.The mean track profile losses obtained during thetests areshowninFigure6. Infour ofthefivetests,theprofilelosswasbetween8.6a
11、nd10.5mm. Inthefifth test, the profile loss was a little higher (14 mm)after the same test period.Figure 6. Profile losses for the fiverepeatability tests carried out using Oil ADiscussionAchievement of the initial objectivesEstablishmicropittingasthedominantdamagetypeFor allof thetests carriedout u
12、singa positivevalueof SRR, where roller track damage occurred it tooktheformofaxialmicrocracks(i.e.,cracksorientatedacross the track). These were typically up toabout50 mm long in the early stages of thetest, but thesesubsequently developed and joined up to form mi-cropits that were typically about
13、50 mm wide and300 mm long. Examination of the sectioned rollertrack using optical microscopy (after coating thetrack with electroless nickel to stabilize it and pre-ventthelossofloosemicrocrackedsurfacematerialduring sectioning and polishing) revealed micro-crackswhichpropagatedatashallowangleof(typ
14、i-cally20to30degrees)tothesurfacebeforebranch-ing towards the surface (Figure 7). Thesecharacteristics are typical of the micropitting pro-cess(7), (8)and indicate that the damage that wasproduced during this study is, indeed, micropitting.In addition, the appearance of the micropitted sur-face (e.g
15、., as shown in Figure 5) is very similar totypical micropitting damage produced in the FVAtestandothergear-basedmicropittingtests.7,8Figure 7. A typical section of the micropittingdamage to the roller track(NB: The coloured area is the electroless nickelcoating which was applied to stabilize the sur
16、face)Achieve an acceptable level of repeatabilityThe results of the five repeatability tests showedthat the level of the micropitting damage producedafter 30hours of testingwas consistent andrepeat-ableintermsofappearanceandprofileloss. Infourof the five tests, the profile loss results were verycons
17、istent. The mean profile losses after 30 hoursof testing for each of these tests was within 10% ofthe average mean profile loss for the four tests. Inthe fifth test, the mean profile loss after 30 hourswas 40% higher than the average for the other fourtests. Theseresults indicatethat thetest methodi
18、scapableof generatingmicropittingresults that havean acceptable level of repeatability.Achieve adequate discrimination between the tworeference oilsTheresultsofthisstudyhaveshownthattheseveri-ty of the micropitting produced in the disc rig test isaffected by many factors. These include contactstress
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