AGMA 92FTM6-1992 Comparison of Carburized Gear Materials in Pitting《发生点蚀的渗碳齿轮材料的比较》.pdf
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1、92 FTM6Comparison of Carburized GearMaterials in Pittingby: Louis Faure, C.M.D., FranceJ.L.Vasseur and C. Lefleche, CETIM, FranceAmerican Gear Manufacturers AssociationTECHNICAL PAPERComparison of Carburized Gear Materials in PittingLouis Faure, Technical Director, C.M.D., FranceJ.L. Vasseur and C.
2、Lefleche, CETIM Senlis, FranceThestatementsandopinionscontainedhereinarethoseof theauthorandshouldnotbe construedasanofficial actionoropinion of the AmericanGear ManufacturersAssociation.Copyright 1992American Gear Manufacturers Association1500 King Street, Suite 201Alexandria, Virginia, 22314Octobe
3、r, 1992ISBN: 1-55589=586-7iCOMPARISON OF CARBURIZED GEAR MATERIALS IN PITTINGLouis FAURE - Technical Director - C.M.D. - FRANCE3.L. VASSEUR - C. LEFLECHE - CETIM Senlis - FRANCEABSTRACT:This paper compares the pitting resistance of five different steels commonly used for casecarburized gears. The co
4、mparison is based on the test results obtained on the CETIM gear benches.A presentation of the test bench capabilities and of the first results obtained was given in 1988 inNew-Orleans at the Fall Technical Meeting. Since then new tests have been performed on severalcarburized steels and numerous re
5、sults are now available.The paper first describes how the tests were set up and how the test results were interpreted foreach steel, representative curves of pitting performances were drawn. The comparison is based onthe appearance of these curves and all the deviations encountered are discussed in
6、details.Introduction The torque measurement is made by strain gaugesFor more than ten years CETIM has been conduc- fitted on the “U“ joint tube. The power supply of theting experimental studies to determine the pitting gauge bridge and the torque signal are providedresistance of case carburized gear
7、s. First there is a through a rotating transmitter fitted on the free shaftshort discussion about the test benches and gears used end of the loop goarbox. A schematic view of thein these studies. Then details are given on the method bench is given on figure I and the main characteristicsused to iden
8、tify the typical surface aspects which are in the table 1.taken as references for pitting resistance evaluation.Next, the results of the test on the teeth of gearsfrom five different materials are compared. The mate-rials are :- 20 MnCr5 (20MC5)- XC 18- 16 NC 6 Torque application- 17 CrNiMo6 Gear to
9、 be rmotor- 8NCD6 tested “ _ FLoop gearboxThe Iirst one is a chromium manganese steel common- /ly used in Germany for case hardening. The fourth one _ - DO motoris a chromium nickel and Molybdenumsteel which is _ -_ _also very common in Germany for gear carburizing. -EThe secnd ne is a carbn steel n
10、t aliyed and it !st_re d -_r_r_im_RrOtnastmi_tgte _can be carburized. The two others are steels for case -Ehardening often used in France. The chemical compo-sition of these steels is given in appendix I.ucer1. Test benchesTo perform tests for pitting endurance, CETIMbuilt g test benches. These test
11、 benches have closedpower circulation and the load application is eilber t_v _ “Ujoint shaftmechanical or hydraulic means. A static torque isintroduced in either direction on one of the two shaftsplacing the gears under load. The IDEFIX #00 testbench described below is made-up of two industrialgearb
12、oxes. One is located near the drive motor, is Fig. 1 : IDEFIX t_00 Test benchlargely dimensioned and is used to close the loop. Theother one is at the other end and houses the gear tobe tested.The two gearboxes are connected together on one sideby a “U“ joint and on the other side by a torqueintrodu
13、ction device (rotating jack or torsional bar).tThe point obtained on the endurance curve for thecorresponding pressure is an industrial use limitIDEFIX 401 TEST BENCH for the gear when we can tolerate the presence ofCHARACTERISTICS micro pitting on the teeth flanks. We stopped the testwhen we ascert
14、ained there was general spalling on theSPEED(R.P.M.) VARIABLEFROM0 TO 3000 whole width of one or more teeth.By comparing the number of cycles obtained with theSTATICTORQIJE VARIABLEBYROTATIVE number of cycles recorded at the end of the firstCYLINDER(INROTATION) two phases defined previously, we can
15、have a goodFROM0 TO400 m.dan idea of how rapidly the surface degrades for a givenCEtCrERDISTANCE 200 mm level of pressure. Figure 2 below provides a generaldescription of the gear teeth flanks after microTYPEOF BEARING SPHERICALANDCYLINDRICAL pitting appears.ROLLERSTYPELUBRICATION BY INJECTIONONEACH
16、SIDEOFTHEGEAROILTEMPERATIlllE IN SERVICEREGULATIONBETWEEN60 AND900 C Grmd,ng lchet_an I verttcal ridgesighly cold* rolledTable 1 h tal ridges )Pitch dlaeened2) Test gears 14toSmmlI Typical mlcroplttlng Choice of the module : B.,e d,_The aim of the tests is to determine the onset ofsurface degradatio
17、ns. The value of the module hasbeen chosen to avoid tooth breakage (a safety factor W_EEL0,for bending resistance of more than 1.5 is used).Face width :The face width was chosen to withstand a toothload, which can reach 3000to 3500N/ram2 at themaximum torque of the test bench.Case depth :The case de
18、pth has been chosen to avoid case Fig. 2 : condition of wheel on secondary shaft aftercrushing in operation (_, 1 mm for m=10 mm, 1,22.10 cycles(torque mdaN)1.5 mm for m=12 ram).We record 3 distinctive zones :20MC5 XC18 16NC6 I7CrNiMoS the upper part where we see grinding traces and16NC6 m = 12 18NC
19、D6(m=_0) fhat corresponds to the zone where we performedNumbersof ZI = 20 Zl = ZZ Zl = m Zi _ ZZ a tip relief. The contact pattern of the flank isteeth Z2 = 21 = 16 = 16 =20 decreasing when we go towards the tip of thetooth where it is minimum,Addendum xl = x2 xl = x2 xl = x2 xl _ x2modification = 0
20、 = 0.333 = 0.333 = 0coefhclent the part situated near the pitch line, approximate-ly at mid height of the flank which is the zoneFace width 15 16 17 15 cold-rolled under superficial pressure,b minimum(ram)the lower part which has an unpolished appea-Modulem 10 12 12 10 rance contains micro pitting t
21、o a height of appro-mately # to 5 ram.Center distance 205 200 200 200aCase depth 1 2.5 1.5 1 #) Determination of pressure limit values for_mm_ endurance of case hardened steels : _6_L.This value is the pressure under which there isTable 2 : Characteristics of test wheels used practically no risk of
22、tooth degradation. According toISO Standard 6336, this value is 1500 N/mm2for casecarburized steel. We used this value.3) Criteria and method used for the tests follow-up ISO 6336 standard has also limited the maximum pres-During the daily tooth examinations, we noted the sure at 1.6x1500 N/ram2 = 2
23、#00 N/ram2. We also usednumber of cycles at which we saw the first appea- this value. The ISO Standard has defined two differentrance of micro pitting. For each specific load level, curves:the point obtained will be correlated with the corres- - the lowest corresponds to a lower level of pressurepon
24、ding value of the endurance curve to determine which garantees the operation of the gear withoutthe limit pressure for a gear without micro pitting.“ apparent pitting on the active flank. This curveWhile continuing the test, we recorded the number of reaches the value of 0_m_ for 5x10 V“ cycles,cycl
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