ASTM D6709-2010 6250 Standard Test Method for Evaluation of Automotive Engine Oils in the Sequence VIII Spark-Ignition Engine (CLR Oil Test Engine)《顺序VIII火花点火式发动机中的汽车发动机油评估的标准试验方法(.pdf
《ASTM D6709-2010 6250 Standard Test Method for Evaluation of Automotive Engine Oils in the Sequence VIII Spark-Ignition Engine (CLR Oil Test Engine)《顺序VIII火花点火式发动机中的汽车发动机油评估的标准试验方法(.pdf》由会员分享,可在线阅读,更多相关《ASTM D6709-2010 6250 Standard Test Method for Evaluation of Automotive Engine Oils in the Sequence VIII Spark-Ignition Engine (CLR Oil Test Engine)《顺序VIII火花点火式发动机中的汽车发动机油评估的标准试验方法(.pdf(39页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D6709 10Standard Test Method forEvaluation of Automotive Engine Oils in the Sequence VIIISpark-Ignition Engine (CLR Oil Test Engine)1This standard is issued under the fixed designation D6709; the number immediately following the designation indicates the year oforiginal adoption or, in
2、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 can be used by any properly equipped laboratory without outside ass
3、istance.However, the ASTM Test Monitoring Center (TMC)2offers a very valuable service to the testlaboratory; the Center provides reference oils and an assessment of the test results obtained on thoseoils by the laboratory (see Appendix X1). By this means, the laboratory will know whether their useof
4、 the test method gives results statistically similar to those obtained by other laboratories.Furthermore, various agencies require that a laboratory utilize the TMC services in seekingqualification of oils against specifications. For example, the American Petroleum Institute (API)imposes such a requ
5、irement, in connection with several engine lubricating oil specifications.Accordingly, this test method is written for use by laboratories that utilize the TMC services.Laboratories that choose not to use those services may simply ignore those portions of the test methodthat refer to the TMC.This te
6、st method may be modified by means of Information Letters issued by the TMC. In addition,the TMC may issue supplementary memoranda related to the test method (see Annex A3).1. Scope1.1 This test method covers the evaluation of automotiveengine oils (SAE grades 5W, 10W, 20, 30, 40, and 50, andmultivi
7、scosity grades) intended for use in spark-ignition gaso-line engines. The test procedure is conducted using a carbu-reted, spark-ignition Cooperative Lubrication Research (CLR)Oil Test Engine (also referred to as the Sequence VIII testengine in this test method) run on unleaded fuel. An oil isevalua
8、ted for its ability to protect the engine and the oil fromdeterioration under high-temperature and severe service con-ditions. The test method can also be used to evaluate theviscosity stability of multiviscosity-graded oils. Companiontest methods used to evaluate engine oil performance forspecifica
9、tion requirements are discussed in the latest revisionof Specification D4485.1.2 Correlation of test results with those obtained in auto-motive service has not been established. Furthermore, theresults obtained in this test are not necessarily indicative ofresults that will be obtained in a full-sca
10、le automotive spark-ignition or compression-ignition engine, or in an engineoperated under conditions different from those of the test. Thetest can be used to compare one oil with another.1.3 The values stated in SI units are to be regarded asstandard. No other units of measurement are included in t
11、hisstandard.1.3.1 ExceptionsThe values stated in inch-pounds forcertain tube measurements, screw thread specifications, andsole source supply equipment are to be regarded as standard.1.4 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is there
12、sponsibility 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 precau-tionary statements are provided throughout this test method.1.5 This test method is arranged as follows:Subject Sec
13、tionIntroductionScope 1Referenced Documents 2Terminology 3Summary of Test Method 4Before Test Starts 4.1Power Section Installation 4.21This test method is under the jurisdiction of ASTM Committee D02 onPetroleum Products and Lubricants and is the direct responsibility of SubcommitteeD02.B0.01 on Pas
14、senger Car Engine Oils.Current edition approved May 1, 2010. Published August 2010. Originallyapproved in 2001. Last previous edition approved in 2009 as D670909a. DOI:10.1520/D6709-10.2Until the next revision of this test method, the ASTM Test Monitoring Centerwill update changes in this test metho
15、d by means of Information Letters. Informa-tion Letters may be obtained from the ASTM Test Monitoring Center, 6555 PennAvenue, Pittsburgh, PA 15202-4489, Attention: Administrator. This edition incor-porates revisions in all Information Letters through No. 09-1.1Copyright ASTM International, 100 Barr
16、 Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.Engine Operation (Break-in) 4.3Engine Operation (Test/Samples) 4.4Stripped Viscosity 4.5Test Completion (BWL) 4.6Significance and Use 5Evaluation of Automotive oils 5.1Stay in Grade Capabilities 5.2Correlation of Results 5.3
17、Use 5.4Apparatus 6Test Engineering, Inc. 6.1Fabricated or Specially Prepared Items 6.2Instruments and Controls 6.3Procurement of Parts 6.4Reagents and Materials 7Reagents 7.1Cleaning Materials 7.2Expendable Power Section-Related Items 7.3Power Section Coolant 7.4Reference Oils 7.5Test Fuel 7.6Test O
18、il Sample Requirements 8Selection 8.1Inspection 8.2Quantity 8.3Preparation of Apparatus 9Test Stand Preparation 9.1Conditioning Test Run on Power Section 9.2General Power Section Rebuild Instructions 9.3Reconditioning of Power Section After Each Test 9.4Calibration 10Power Section and Test Stand Cal
19、ibration 10.1Instrumentation Calibration 10.2Calibration of AFR Measurement Equipment 10.3Calibration of Torque Wrenches 10.4Engine Operating Procedure 11Run-In and Flush 11.1Test Operating Conditions 11.2Air-Fuel Ratio and Spark Advance 11.3Air, Off-Gas and Blowby Measurement 11.4Unscheduled Shutdo
20、wns 11.5Oil Sampling and Oil Addition 11.6Periodic Measurements 11.7Final Oil Drain and Oil Consumption Computation 11.8Operational Validity Criteria 11.9Test Completion 11.10Determination of Test Results 12Oil Analysis 12.1Test Bearing Weight Loss Determination 12.2Report 13Precision and Bias 14Pre
21、cision 14.1Bias 14.2Use of ASTM Rounding 15Keywords 16ANNEXESMeasurement of Connecting Rod Bearing Clearance andJournal TaperAnnex A1Measurement of Main Bearing Clearance Annex A2The ASTM Test Monitoring Center Calibration Program Annex A3Measurement of Piston-to-Sleeve Clearance Annex A4Control Cha
22、rt Technique for a Laboratorys SeverityAdjustment (SA)Annex A5Recommended New Liner Honing Procedure Annex A6Sequence VIII Oil Priming Procedure Annex A7Alternative Crankcase Breather Configuration Annex A8Connecting Rod Bearing Cleaning Procedure Annex A9Electronic Ignition Conversion Annex A10Syst
23、em Response Procedure Annex A11Air-Fuel Ratio Measurement Annex A12Lead Decontamination Procedure Annex A13Stay-in-Grade Oil Analysis Procedure Annex A14Crankshaft Rear Seal Conditioning Annex A15Report Forms and Data Dictionary Annex A16Test Fuel Specification Annex A17APPENDIXESRole of the ASTM Te
24、st Monitoring Center and the CalibrationProgramAppendix X1Suggested Method for Salvaging Camshaft Bearing Journals Appendix X2Data Log Sheets Appendix X32. Referenced Documents2.1 ASTM Standards:3D86 Test Method for Distillation of Petroleum Products atAtmospheric PressureD130 Test Method for Corros
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