ASTM D7452-2017 red 3125 Standard Test Method for Evaluation of the Load Carrying Properties of Lubricants Used for Final Drive Axles Under Conditions of High Speed and Shock Loadi.pdf
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1、Designation: D7452 16D7452 17Standard Test Method forEvaluation of the Load Carrying Properties of LubricantsUsed for Final Drive Axles, Under Conditions of High Speedand Shock Loading1This standard is issued under the fixed designation D7452; the number immediately following the designation indicat
2、es 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.INTRODUCTIONPortions of this test method are written for
3、use by laboratories that make use of ASTM TestMonitoring Center (TMC)2 services (see Annex A1 Annex A4).The TMC provides reference oils, and engineering and statistical services to laboratories that desireto produce test results that are statistically similar to those produced by laboratories previo
4、uslycalibrated by the TMC.In general, the Test Purchaser decides if a calibrated test stand is to be used. Organizations such asthe American Chemistry Council require that a laboratory use the TMC services as part of their testregistration process. In addition, the American Petroleum Institute and t
5、he 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.The advantage of using the TMC services to calibrate test stands is that the test laboratory (andhence t
6、he Test Purchaser) has an assurance that the test stand was operating at the proper level of testseverity. It should also be borne in mind that results obtained in a non-calibrated test stand may notbe the same as those obtained in a test stand participating in the ASTM TMC services process.Laborato
7、ries that choose not to use the TMC services may simply disregard these portions.1. Scope*1.1 This test method covers the determination of the anti-scoring properties of final drive axle lubricating oils when subjectedto high-speed and shock conditions. This test method is commonly referred to as th
8、e L-42 test.21.2 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.1.2.1 ExceptionsSI units are provided for all parameters except where
9、there is no direct equivalent such as the units for screwthreads, National Pipe Threads/diameters, tubing size, and single source equipment suppliers.1.3 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
10、 standard to establish appropriate safety and health practices and determine the applicability of regulatorylimitations prior to use. Specific warning information is given in Sections 4 and 7.1.4 This international standard was developed in accordance with internationally recognized principles on st
11、andardizationestablished in the Decision on Principles for the Development of International Standards, Guides and Recommendations issuedby the World Trade Organization Technical Barriers to Trade (TBT) Committee.1 This test method is under the jurisdiction ofASTM Committee D02 on Petroleum Products,
12、 Liquid Fuels, and Lubricants and is the direct responsibility of SubcommitteeD02.B0.03 on Automotive Gear Lubricants percent output adjustable.6.6.4 Axle CoolingUse three spray nozzles to distribute water over the cover plate and axle housing as shown in Fig. A6.2.Actuate the water control valve by
13、 the temperature PID control system.6.6.4.1 Depending on how the system is plumbed, use spray nozzles in any combination of the following part numbers: StraightMale NPT (Part No. 3/8GG-SS22), 90 Male NPT (Part No. 3/8GGA-SS22), Straight Female NPT (Part No. 3/8G-SS22), and 90Female NPT (Part No. 3/8
14、GA-SS22).8,96.6.4.2 Use a single control valve to control the cooling water supply. The control shall be a 12 in. (12.7 mm) two-way, C lineartrim, air to close, Research Control valve. Use a single PID loop to maintain the axle lubricant temperature control for both theStandard and Canadian version
15、test. A separate PID loop control for each version is not permitted. See Annex A5.6.6.4.3 Use only38 in. or 12 in. (9.5 mm or 12.7 mm) line material to the spray nozzles.6.6.4.4 Use a minimum supply water pressure of 25 psig (172 kPa) to the control valve.6.6.4.5 Use an axle containment box as shown
16、 in Fig. A6.10. The purpose is to contain water.6.6.4.6 Use a locating pin or stop block as an indexing device to ensure that all subsequent axle installations are consistentlyinstalled perpendicular with the axle housing cover to engine and transmission drive-shaft centerline.6.7 Torque MeterInclud
17、e in the test equipment a torque meter installed in the drive shaft (see Figs. A6.3-A6.5) to measurethe torque applied to the pinion. Install a Himmelstein inline torque meter Model numbers MCRT28061T(1-4) orMCRT2661TN(1-4)9,10 without a foot mount and a range of 10 000 lb-in. (1130 Nm) shall be ins
18、talled to measure pinion torque.Additional suffix letters only indicate allowable options.6.8 Signal ConditioningUse a Himmelstein Models 701 or 711 strain gage conditioner for signal conditioning. Set the lowpass cut-off frequency at 10 Hz.6.9 Digital Data Acquisition SystemSystem requires capabili
19、ty of measuring a minimum of five channels at samplingfrequencies outlined in Section 10.6.9.1 Do not use hardware or software filtering for the pinion torque channel during data acquisition periods of the test.6.10 DynamometersTwo axle dynamometers (Midwest Dynamatic, Model 3232)9,11 with suitable
20、control equipment capableof maintaining specified test conditions.6.11 Engine Speed ControlSystem requires a device to maintain steady state conditions and also provide adjustable throttleacceleration and deceleration rates to attain specified shock loading torques.6.11.1 Throttle Controller SystemU
21、se a Foxboro/Jordan Controller, Model AD7530.9,12 Use a power transformer from AcmeElectric Corp. PN T-1-81058 or equivalent, primary volts 120X240, secondary volts (120 V primary by 240 V secondary), 16/32(13 mm) center tap, 0.500 kVA (0.5 kW) in conjunction with the Foxboro/Jordan Controller.6.12
22、Connecting ShaftsUse connecting shafts of equal length 61 in. (25.4 mm) and less than 30 in. (762 mm) long fromflange face to flange face. Use a tubing diameter of 3.5 in. 6 0.2 in. (88.9 mm 6 5.1 mm) OD, with a wall thickness of 0.095 in.6 0.005 in. (2.41 mm 6 0.13 mm) if tubing is required to fabr
23、icate the shafts. Ensure the shafts are dynamically (spin) balancedand strong enough to handle torques up to 2100 lbf-ft (2847 Nm). Use an operating angle of 0 6 0.5.6.13 Power TrainThe power train consists of a gasoline powered V-8 GM performance Ramjet 5.7 L marine engine coupledwith a five speed
24、manual transmission capable of supplying specified shock loading torques.The engine and transmission operatingangle shall be 0 6 0.5.6.13.1 All recommended replacement parts are available through local General Motors dealers.Alist of these replacement partsare shown in Table 1. Do not make modificat
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