AGMA 08FTM10-2008 The Effect of Superfinishing on Gear Micropitting Part II《超精加工对齿轮微点蚀的影响 第II部分》.pdf
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1、08FTM10AGMA Technical PaperThe Effect ofSuperfinishing on GearMicropitting, Part IIBy L. Winkelmann, O. El-Saeedand M. Bell, REM Chemicals, Inc.The Effect of Superfinishing on Gear Micropitting, Part IILane Winkelmann, Omer El-Saeed and Matthew Bell, REM Chemicals, Inc.The statements and opinions co
2、ntained herein are those of the author and should not be construed as anofficial action or opinion of the American Gear Manufacturers Association.AbstractOne of the most common failure mechanism of highly stressed case carburized gears is micropitting (graystaining). 1,2,3 The standard FZG gear test
3、 (FVA Work Sheet 54) is generally used to determine themicropitting load capacity of gear lubricants. In recent years, FZG gear testing has also demonstrated itsusefulness for evaluating the effect of superfinishing on increasing the micropitting load capacity of gears.Suchstudies,however,canonlybea
4、ffordedbymajorcorporationsorresearchconsortiumswherebythedatais typically kept confidential. Results from the Technical University of Munich were previously presented inPart 1 of this paper.4 Part II will present the results of Ruhr University Bochum. Both research groupsconcluded that superfinishin
5、g is one of the most powerful technologies for significantly increasing the loadcarrying capacity of gear flanks.Copyright 2008American Gear Manufacturers Association500 Montgomery Street, Suite 350Alexandria, Virginia, 22314October, 2008ISBN: 978-1-55589-940-03The Effect of Superfinishing on Gear M
6、icropitting Part IILane Winkelmann, Omer El-Saeed and Matt Bell, REM Chemicals, Inc.IntroductionIt shouldbenotedfrom theoutset that the datapre-sented in Part I and Part II of this paper was gener-atedbyindependentlaboratories. Superfinishingofthegearswastheauthorssolecontributiontothesestudies. The
7、authorsprovidednoinputontheselec-tion of the testing facilities, procedures or parame-ters. Theconclusions listedat theendof this paperwere solely those of the testing laboratory.Part I of this paper discussed the FZG Brief Test ofGray Staining (BTGS), which was designed toquickly induce micropittin
8、g. It is an economical testin terms of cost and time to determine how lubri-cants, lubricant temperature, coatings and surfacefinishes influence micropitting. The BTGS, showedthat superfinishing significantly reduces micropit-tingincomparisontobaselinegears.4 Thisfindingstresses the importance of su
9、rface finish for resist-ing the formation of micropitting.Part II of this paper discusses the results of a moreintensive micropitting testing performed accordingto FVA-Information-sheet 54/I-IV. The mineral oilused for lubrication was an ISO viscosity class 200which contains a special additive (the
10、nature of theadditiveisunknowntotheauthors)toreducethemi-cropitting carrying capacity. Baseline tests with anon-modified standard-FZG-C-gear were carriedouttodemonstratethemicropittingpropertiesoftheoil. The test gears were standard-FZG-C-gearswhichhadthesurfacemodifiedby superfinishingtoa low Rough
11、ness Average (Ra). The pitch line ve-locityduringalltestingwassetto8.3m/sandthelu-bricant was injected at 60C.A brief summary of the test procedure taken fromFVA-Information-sheet 54/I-IV is given below:The micropitting test may be used to determinequantitatively the influence of lubricants (especia
12、llyadditives), the lubricant temperature and other in-fluential factors on micropitting. The micropittingtest differentiates between oils and thus facilitatesthe choice of a lubricant with sufficient micropittingload capacity.The operating conditions (circumferential speedandlubricanttemperature)may
13、besuitablyadaptedfor testing lubricants for a large variety of applica-tions in the micropitting test. To differentiatebetween the various test options, which are carriedout according to the same test sequence, but withdifferent test conditions, they are designatedsimilarly to the FZG-scuffing test
14、by test gear type/circumferential speed/and lubricant (inlet tempera-tureinaccordancewith theselected test conditions(e.g., standard test: GT-Cl8.3190; GT =micropitting test).The micropitting test consists of two parts. It com-prises a load stage test followed by an endurancetest. In the load stage
15、test, the ability of the gear-lubricant tribological system to resist micropitting isdetermined under specified operating conditions(lubricant temperature. circumferential speed) intheform of a failureload stage. The endurancetestprovidesinformationontheprogressofthedamageafter higher numbers of loa
16、d cycles.(FVA 54.1-IVTest procedure for the investigation of the micropit-ting capacity of gear lubricants).5ExperimentalGear designThe gears used were the standard FZG-C typegearsformicropittingtesting. Table1givesthegen-eral data for these gears.Baseline GearsBaseline gears were unmodified from th
17、especifications given in the FVA Information Sheet54.Superfinished gearsAsetofgearsconformingtothespecificationsgivenin FVA Information sheet 54 were finished usingchemically accelerated vibratory finishing asdescribed in detail elsewhere.6, 7,This processutilizes high density non-abrasive media toe
18、nhance the performance of components that aresubjected to metal-to-metal contact or bendingfatigue. The Isotropic Superfinish (ISF) processgeneratesauniquesurfacewhencomparedtoeventhe finest honing and lapping in that it has no direc-tionality with a final surface roughness of 0.25 mmRaor less. This
19、 ISFsurface will be referred to assuperfinished throughout this paper.4Table 1. Specifications are given for FZG C-type gears for use in micropitting testing ac-cording to FVA Information Sheet 54 5Material 16 MnCr5 (DIN 17210)HeattreatmentS Case carburized to 750 HV1in the area of the tooth flankS
20、Case depth: 0.8 1.0 mm(after grinding)S Core strength: 1000 1250N/mm2S The zone close to the sur-face has no residual auste-nite content visible in the mi-croscope (7.5 mm6 945.1 167 1093.9 168 1244.9 169 1395.4 1610 1547.3 16Endurance test8 1244.9 80ffm20 mm10 1547.3 8010 1547.3 8010 1547.3 8010 15
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