ASTM D8226-2018 Standard Test Method for Measurement of Effects of Automotive Engine Oils on Fuel Economy of Passenger Cars and Light-Duty Trucks in Sequence VI.pdf
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1、Designation: D8226 18Standard Test Method forMeasurement of Effects of Automotive Engine Oils on FuelEconomy of Passenger Cars and Light-Duty Trucks inSequence VIF Spark Ignition Engine1,2This standard is issued under the fixed designation D8226; the number immediately following the designation indi
2、cates 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 f
3、or use by laboratories that make use of ASTM TestMonitoring Center (TMC)3services (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 previ
4、ouslycalibrated by the TMC. In general, the Test Purchaser decides if a calibrated test stand is to be used.Organizations such as the American Chemistry Council require that a laboratory utilize the TMCservices as part of their test registration process. In addition, the American Petroleum Institute
5、 (API)and the Gear Lubricant Review Committee of the Lubricant Review Institute (SAE International)require that a laboratory use the TMC services in seeking qualification of oils against theirspecifications.The advantage of using the TMC services to calibrate test stands is that the test laboratory
6、(andhence the 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 proce
7、ss.Laboratories that choose not to use the TMC services may simply disregard these portions.ASTM International policy is to encourage the development of test procedures based on genericequipment. It is recognized that there are occasions where critical/sole-source equipment has beenapproved by the t
8、echnical committee (surveillance panel/task force) and is required by the testprocedure. The technical committee that oversees the test procedure is encouraged to clearly identifyif the part is considered critical in the test procedure. If a part is deemed to be critical, ASTMencourages alternative
9、suppliers to be given the opportunity for consideration of supplying the criticalpart/component providing they meet the approval process set forth by the technical committee.An alternative supplier can start the process by initiating contact with the technical committee(current chairs shown on ASTM
10、TMC website). The supplier should advise on the details of the partthat is intended to be supplied. The technical committee will review the request and determinefeasibility of an alternative supplier for the requested replacement critical part. In the event that areplacement critical part has been i
11、dentified and proven equivalent the sole-source supplier footnoteshall be removed from the test procedure.1. Scope1.1 This test method covers an engine test procedure for themeasurement of the effects of automotive engine oils on the1This test method is under the jurisdiction of ASTM Committee D02 o
12、nPetroleum Products, Liquid Fuels, and Lubricants and is the direct responsibility ofSubcommittee D02.B0.10 on Standards Acceleration.Current edition approved Oct. 1, 2018. Published December 2018. DOI:10.1520/D8226-18.2The multi-cylinder engine test sequences were originally developed by anASTM Com
13、mittee D02 group. Subsequently, the procedures were published in anASTM special technical publication. The Sequence VIB was published as ResearchReport RR:D02-1469, dated April 8, 1999.3Until the next revision of this test method, the ASTM Test Monitoring Centerwill update changes in the test method
14、 by means of information letters. Informationletters may be obtained from the ASTM Test Monitoring Center, 6555 Penn Ave.,Pittsburgh, PA 15206-4489. Attention: Administrator. This edition incorporatesrevisions in all information Letters through No. 15-1.Copyright ASTM International, 100 Barr Harbor
15、Drive, PO Box C700, West Conshohocken, PA 19428-2959. United StatesThis international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for theDevelopment of International Standards, Guides and Recommendations
16、 issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.1fuel economy of passenger cars and light-duty trucks withgross vehicle weight 3856 kg or less. The tests are conductedusing a specified spark-ignition engine with a displacement of3.6 L (General Motors)4on a dynamom
17、eter test stand. Itapplies to multi viscosity oils used in these applications.1.2 The values stated in SI units are to be regarded asstandard. No other units of measurement are included in thisstandard.1.2.1 ExceptionsWhere there is no direct equivalent suchas the units for screw threads, National P
18、ipe threads/diameters,tubing size, and single source supply equipment specifications.Additionally, Brake Fuel Consumption (BSFC) is measured inkilograms per kilowatt-hour.1.3 This test method is arranged as follows:SectionIntroductionScope 1Referenced Documents 2Terminology 3Summary of Test Method 4
19、Significance and Use 5Apparatus 6General 6.1Test Engine Configuration 6.2Laboratory Ambient Conditions 6.3Engine Speed and Torque Control 6.4Dynamometer 6.4.1Dynamometer Torque 6.4.2Engine Cooling System 6.5External Oil System 6.6Fuel System 6.7Fuel Flow Measurement 6.7.2Fuel Temperature and Pressur
20、e Control to the Fuel Flow Meter 6.7.3Fuel Temperature and Pressure Control to Engine Fuel Rail 6.7.4Fuel Supply Pumps 6.7.5Fuel Filtering 6.7.6Engine Intake Air Supply 6.8Intake Air Humidity 6.8.1Intake Air Filtration 6.8.2Intake Air Pressure Relief 6.8.3Temperature Measurement 6.9Thermocouple Loca
21、tion 6.9.5AFR Determination 6.10Exhaust and Exhaust Back Pressure Systems 6.11Exhaust Manifolds 6.11.1Laboratory Exhaust System 6.11.2Exhaust Back Pressure 6.11.3Pressure Measurement and Pressure Sensor Locations 6.12Engine Oil 6.12.2Fuel to Fuel Flow meter 6.12.3Fuel to Engine Fuel Rail 6.12.4Exhau
22、st Back Pressure 6.12.5Intake Air 6.12.6Intake Manifold Vacuum/Absolute Pressure 6.12.7Coolant Flow Differential Pressure 6.12.8Crankcase Pressure 6.12.9Engine Hardware and Related Apparatus 6.13Test Engine Configuration 6.13.1ECU (Power Control Module) 6.13.2Thermostat Block-Off Adapter Plate 6.13.
23、3Wiring Harness 6.13.4Oil Pan 6.13.5Engine Water Pump Adapter Plate 6.13.6Thermostat Block-Off Plate 6.13.7Oil Filter Adapter Plate 6.13.8Modified Throttle Body Assembly 6.13.9Fuel Rail 6.13.10SectionMiscellaneous Apparatus Related to Engine Operation 6.14Reagents and Materials 7Engine Oil 7.1Test F
24、uel 7.2Engine Coolant 7.3Cleaning Materials 7.4Preparation of Apparatus 8Test Stand Preparation 8.2Engine Preparation 9Cleaning of Engine Parts 9.3Engine Assembly Procedure 9.4General Assembly Instructions 9.4.1Bolt Torque Specifications 9.4.2Sealing Compounds 9.4.3Harmonic Balancer 9.4.5Thermostat
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