ASTM D6121-2014 red 7959 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.pdf
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1、Designation: D6121 13D6121 14Standard 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
2、the year 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.1. Scope*1.1 This test method is commonly referred to as the
3、 L-37 test.2 This test method covers a test procedure for evaluating theload-carrying, wear, and extreme pressure properties of a gear lubricant in a hypoid axle under conditions of low-speed,high-torque operation.1.2 This test method also provides for the running of the low axle temperature (Canadi
4、an) L-37 test. The procedure for the lowaxle temperature (Canadian) L-37 test is identical to the standard L-37 test with the exceptions of the items specifically listed inAnnex A6. The procedure modifications listed in Annex A6 refer to the corresponding section of the standard L-37 test method.1.3
5、 The values stated in inch-pound units are to be regarded as standard. The values given in parentheses are mathematicalconversions to SI units that are provided for information only and are not considered standard.1.3.1 ExceptionsIn TableA9.1, the values stated in SI units are to be regarded as stan
6、dard.Also, no SI unit is provided wherethere is not a direct SI equivalent.1.4 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibilityof the user of this standard to establish appropriate safety and health practices and determin
7、e the applicability of regulatorylimitations prior to use. Specific warning information is given in Sections 4 and 7.2. Referenced Documents2.1 ASTM Standards:3D235 Specification for Mineral Spirits (Petroleum Spirits) (Hydrocarbon Dry Cleaning Solvent)E29 Practice for Using Significant Digits in Te
8、st Data to Determine Conformance with Specifications2.2 Military Specification:4MIL-PRF-2105E Lubricating Oil, Gear, Multipurpose2.3 AGMA National Standard:5Nomenclature of Gear Tooth Failure Modes2.4 SAE Standard:6SAE J308 Information Report on Axle and Manual Transmission LubricantsSAE J2360 Lubri
9、cating Oil, Gear Multipurpose (Metric) Military Use3. Terminology3.1 Definitions of Terms Specific to This Standard:1 This test method is under the jurisdiction ofASTM Committee D02 on Petroleum Products, Liquid Fuels, and Lubricants and is the direct responsibility of SubcommitteeD02.B0.03 on Autom
10、otive Gear Lubricants sheared-off particles either remain affixed to theharder of the mating surfaces or act as wear particles between the surfaces.ASTM Distress Rating Manual No. 213.1.3 broken gear tooth, na gear tooth where a portion of the tooth face is missing and the missing material includes
11、somepart of the top land, toe, heel, or coast side of the tooth.3.1.3.1 DiscussionThis condition is distinct from and more extensive than “chipping,” which is defined in 3.1.5.3.1.4 burnish, non ring and pinion gears, an alteration of the original manufactured surface to a dull or brightly polishedc
12、ondition. ASTM Distress Rating Manual No. 213.1.5 chipping, non ring and pinion gears, a condition caused in the manufacturing process in which a small irregular cavityis present only at the face/crown edge interface. The edge-chipping phenomenon occurs when sufficient fatigue cycles accumulateafter
13、 tooth surface wear relieves the compressive residual stress on the tooth profile side of the profile-to-topland interface.Chipping within 1 mm of the face/crown edge interface is to be called chipping, not pitting/spalling. ASTM Distress RatingManual No. 213.1.6 corrosion, nin final drive axles, a
14、general alteration of the finished surfaces of bearings or gears by discoloration,accompanied by roughening not attributable to mechanical action. ASTM Distress Rating Manual No. 213.1.7 deposits, nin final drive axles, material of pasty, gummy, or brittle nature adhering to or collecting around any
15、 of theworking parts.ASTM Distress Rating Manual No. 213.1.8 discoloration, non ring and pinion gears, any alteration in the normal color of finished steel surfaces.ASTM Distress Rating Manual No. 213.1.9 pitting, non ring and pinion gears, small irregular cavities in the tooth surface, resulting fr
16、om the breaking out of smallareas of surface metal.ASTM Distress Rating Manual No. 213.1.10 ridging, non ring and pinion gears, an alteration of the tooth surface to give a series of parallel raised and polishedridges running diagonally in the direction of sliding motion, either partially or complet
17、ely across the tooth surfaces of gears.ASTM Distress Rating Manual No. 213.1.11 rippling, non ring and pinion gears, an alteration of the tooth surface to give an appearance of a more or less regularpattern resembling ripples on water or fish scales.ASTM Distress Rating Manual No. 213.1.12 scoring,
18、non ring and pinion gears, the rapid removal of metal from the tooth surfaces caused by the tearing out ofsmall contacting particles that have welded together as a result of metal-to-metal contact. The scored surface is characterized bya matte or dull finish.ASTM Distress Rating Manual No. 213.1.13
19、scratching, non ring and pinion gears, an alteration of the tooth surface in the form of irregular scratches, of randomlength, across the tooth surface in the direction of sliding of the surfaces.ASTM Distress Rating Manual No. 213.1.14 spalling, non ring and pinion gears, the breaking out of flakes
20、 of irregular area of the tooth surface, a condition moreextensive than pitting.ASTM Distress Rating Manual No. 213.1.15 surface fatigue, non ring and pinion gears, the failure of the ring gear and pinion material as a result of repeatedsurface or subsurface stresses that are beyond the endurance li
21、mit of the material. It is characterized by the removal of metal andthe formation of cavities.AGMA National Standard3.1.16 wear, non ring and pinion gears, the removal of metal, without evidence of surface fatigue or adhesive wear, resultingin partial or complete elimination of tool or grinding mark
22、s or development of a discernible shoulder ridge at the bottom of the7 Formerly known as CRC Manual 21. Available from the ASTM website, www.astm.org, (TMCMNL21).D6121 142contact area near the root or at the toe or heel end of pinion tooth contact area (abrasive wear).ASTM Distress Rating Manual No.
23、 214. Summary of Test Method4.1 Prior to each test run, inspect the test unit (final axle assembly) and measure and record confirming manufacturingspecifications.4.2 Begin the test when the axle assembly is installed on the test stand and charged with test lubricant.4.3 Gear Conditioning PhaseRun th
24、e charged test unit for 100 min at 440 wheel r/min and 395 lbf-ft (535 Nm) torque perwheel, maintaining an axle sump temperature of 297F (147 C). (WarningHigh-speed rotating equipment, electrical shock,high-temperature surfaces.)4.4 Gear Test PhaseNext, run the test unit for 24 h at the operating co
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