ASTM D6121-2015 2481 Standard Test Method for Evaluation of Load-Carrying Capacity of Lubricants Under Conditions of Low Speed and High Torque Used for Final Hypoid Drive Axles《评估最.pdf
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1、Designation: D6121 15Standard Test Method forEvaluation of Load-Carrying Capacity of Lubricants UnderConditions of Low Speed and High Torque Used for FinalHypoid Drive Axles1This standard is issued under the fixed designation D6121; the number immediately following the designation indicates the year
2、 oforiginal adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.INTRODUCTIONThis test method is written for use by laboratories that
3、 use the portions of the test method that refertoASTM Test Monitoring Center (TMC) services (see AnnexA1). Laboratories that choose not to usethe TMC services may simply disregard these portions.The TMC provides reference oils, and engineering and statistical services to laboratories that desireto p
4、roduce test results that are statistically similar to those produced by laboratories previouslycalibrated by the TMC.In general, the Test Purchaser decides if a calibrated test stand is to be used. Organizations such astheAmerican Chemistry Council require that a laboratory utilize the TMC services
5、as part of their testregistration process. In addition, the American Petroleum Institute and the Gear Lubricant ReviewCommittee of the Lubricant Review Institute (SAE International) require that a laboratory use theTMC services in seeking qualification of oils against their specifications.NOTE 1The
6、advantage of using the TMC services to calibrate test stands is that the test laboratory (and hence theTest Purchaser) has an assurance that the test stand was operating at the proper level of test severity. It should also beborne in mind that results obtained in a non calibrated test stand may not
7、be the same as those obtained in a test standparticipating in the ASTM TMC services process.1. Scope*1.1 This test method is commonly referred to as the L-37test.2This test method covers a test procedure for evaluatingthe load-carrying, wear, and extreme pressure properties of agear lubricant in a h
8、ypoid axle under conditions of low-speed,high-torque operation.1.2 This test method also provides for the running of the lowaxle temperature (Canadian) L-37 test. The procedure for thelow axle temperature (Canadian) L-37 test is identical to thestandard L-37 test with the exceptions of the items spe
9、cificallylisted in Annex A9. The procedure modifications listed inAnnex A9 refer to the corresponding section of the standardL-37 test method.1.3 The values stated in inch-pound units are to be regardedas standard. The values given in parentheses are mathematicalconversions to SI units that are prov
10、ided for information onlyand are not considered standard.1.3.1 ExceptionsIn Table A12.1, the values stated in SIunits are to be regarded as standard. Also, no SI unit isprovided where there is not a direct SI equivalent.1.4 This standard does not purport to address all of thesafety concerns, if any,
11、 associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use. Specific warninginformation is given in Sections 4 and 7.1This test method is under the jurisd
12、iction of ASTM Committee D02 onPetroleum Products, Liquid Fuels, and Lubricants and is the direct responsibility ofSubcommittee D02.B0.03 on Automotive Gear Lubricants sheared-off particles either re-main affixed to the harder of the mating surfaces or act as wearparticles between the surfaces.ASTM
13、Distress Rating Manual No. 213.1.3 broken gear tooth, na gear tooth where a portion ofthe tooth face is missing and the missing material includessome part of the top land, toe, heel, or coast side of the tooth.3.1.3.1 DiscussionThis condition is distinct from andmore extensive than “chipping,” which
14、 is defined in 3.1.5.3.1.4 burnish, non ring and pinion gears, an alteration ofthe original manufactured surface to a dull or brightly polishedcondition. ASTM Distress Rating Manual No. 213.1.5 chipping, non ring and pinion gears, a conditioncaused in the manufacturing process in which a small irreg
15、ularcavity is present only at the face/crown edge interface. Theedge-chipping phenomenon occurs when sufficient fatiguecycles accumulate after tooth surface wear relieves the com-pressive residual stress on the tooth profile side of theprofile-to-topland interface. Chipping within 1 mm of theface/cr
16、own edge interface is to be called chipping, notpitting/spalling. ASTM Distress Rating Manual No. 213.1.6 corrosion, nin final drive axles, a general alterationof the finished surfaces of bearings or gears by discoloration,accompanied by roughening not attributable to mechanicalaction. ASTM Distress
17、 Rating Manual No. 213.1.7 deposits, nin final drive axles, material of pasty,gummy, or brittle nature adhering to or collecting around anyof the working parts.ASTM Distress Rating Manual No. 213.1.8 discoloration, non ring and pinion gears, any al-teration in the normal color of finished steel surf
18、aces.ASTM Distress Rating Manual No. 213.1.9 pitting, non ring and pinion gears, small irregularcavities in the tooth surface, resulting from the breaking out ofsmall areas of surface metal.ASTM Distress Rating Manual No. 213.1.10 ridging, non ring and pinion gears, an alteration ofthe tooth surface
19、 to give a series of parallel raised and polishedridges running diagonally in the direction of sliding motion,either partially or completely across the tooth surfaces of gears.ASTM Distress Rating Manual No. 213.1.11 rippling, non ring and pinion gears, an alterationof the tooth surface to give an a
20、ppearance of a more or lessregular pattern resembling ripples on water or fish scales.ASTM Distress Rating Manual No. 213.1.12 scoring, non ring and pinion gears, the rapidremoval of metal from the tooth surfaces caused by the tearingout of small contacting particles that have welded together asa re
21、sult of metal-to-metal contact. The scored surface ischaracterized by a matte or dull finish.ASTM Distress Rating Manual No. 213.1.13 scratching, non ring and pinion gears, an altera-tion of the tooth surface in the form of irregular scratches, ofrandom length, across the tooth surface in the direct
22、ion ofsliding of the surfaces.ASTM Distress Rating Manual No. 213.1.14 spalling, non ring and pinion gears, the breakingout of flakes of irregular area of the tooth surface, a conditionmore extensive than pitting.ASTM Distress Rating Manual No. 213.1.15 surface fatigue, non ring and pinion gears, th
23、efailure of the ring gear and pinion material as a result ofrepeated surface or subsurface stresses that are beyond theendurance limit of the material. It is characterized by theremoval of metal and the formation of cavities.AGMA National Standard3.1.16 wear, non ring and pinion gears, the removal o
24、fmetal, without evidence of surface fatigue or adhesive wear,resulting in partial or complete elimination of tool or grindingmarks or development of a discernible shoulder ridge at thebottom of the contact area near the root or at the toe or heel endof pinion tooth contact area (abrasive wear).ASTM
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