ASTM D7110-2005a Standard Test Method for Determining the Viscosity-Temperature Relationship of Used and Soot-Containing Engine Oils at Low Temperatures《低温下测定已用机油和含烟机油的粘性-温度关系的试验方法.pdf
《ASTM D7110-2005a Standard Test Method for Determining the Viscosity-Temperature Relationship of Used and Soot-Containing Engine Oils at Low Temperatures《低温下测定已用机油和含烟机油的粘性-温度关系的试验方法.pdf》由会员分享,可在线阅读,更多相关《ASTM D7110-2005a Standard Test Method for Determining the Viscosity-Temperature Relationship of Used and Soot-Containing Engine Oils at Low Temperatures《低温下测定已用机油和含烟机油的粘性-温度关系的试验方法.pdf(7页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D 7110 05aAn American National StandardStandard Test Method forDetermining the Viscosity-Temperature Relationship of Usedand Soot-Containing Engine Oils at Low Temperatures1This standard is issued under the fixed designation D 7110; the number immediately following the designation indic
2、ates 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 (e) indicates an editorial change since the last revision or reapproval.1. Scope*1.1 This test method covers how to measure th
3、e apparentviscosity of used and soot-containing engine oils at lowtemperatures.1.2 A shear rate of approximately 0.2 s-1is produced atshear stresses below 200 Pa. Apparent viscosity is measuredcontinuously as the sample is cooled at a rate of 3C per hourover the range of 5 to 40C.1.3 The measurement
4、s resulting from this test method areviscosity, the maximum rate of viscosity increase (GelationIndex) and the temperature at which the Gelation Index occurs.1.4 Applicability to petroleum products other than engineoils has not been determined in preparing this test method.1.5 The values stated in S
5、I units are to be regarded asstandard. No other units of measurement are included in thisstandard.1.6 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health
6、 practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2D 341 Viscosity-Temperature Charts for Liquid PetroleumProductsD 3829 Test Method for Predicting the Borderline PumpingTemperature of Engine OilD 4684 Test Method for Determi
7、nation of Yield Stress andApparent Viscosity of Engine Oils at Low TemperatureD 4057 Practice for Manual Sampling of Petroleum andPetroleum Products3. Terminology3.1 Definitions:3.1.1 apparent viscosity, nthe viscosity obtained by use ofthis test method.3.1.1.1 DiscussionSee 3.1.6 for definition of
8、viscosity andunits.3.1.2 Newtonian oil, nan oil that, at a given temperature,exhibits a constant viscosity at all shear rates or shear stresses.3.1.3 non-Newtonian oil, nan oil that, at a given tempera-ture, exhibits a viscosity that varies with shear stress or shearrate.3.1.4 shear rate, nvelocity
9、gradient perpendicular to thedirection of flow.3.1.4.1 DiscussionThe SI unit for shear rate is the recip-rocal second (1/s; also s-1).3.1.5 shear stress, nforce per unit area in the direction offlow.3.1.5.1 DiscussionThe SI unit for shear stress is thepascal (Pa).3.1.6 viscosity, nthat property of a
10、 fluid which resistsflow.3.1.6.1 DiscussionViscosity is defined as the ratio of theapplied shear stress (force causing flow) and the shear rate(resultant velocity of flow per unit distance from a stationarysurface wet by the fluid). Mathematically expressed:viscosity 5 shear stress/shear rate or, sy
11、mbolically, h5t/G (1)in which the symbols in the second portion of Eq 1 aredefined by 3.1.4 and 3.1.5. The SI unit for viscosity used hereinis millipascal seconds (mPas).3.2 Definitions of Terms Specific to This Standard:3.2.1 air-binding oils, nthose engine oils whose border-line pumping temperatur
12、es are determined by a combination ofgelation and viscous flow.3.2.2 borderline pumping temperature, nthat temperatureat which an engine oil may have such poor flow characteristicsthat the engine oil pump may not be capable of supplyingsufficient lubricant to the engine.3.2.3 calibration oil, nNewto
13、nian oils developed andused to calibrate the viscometer drive module over the viscos-ity range required for this test method.1This test method is under the jurisdiction of ASTM Committee D02 onPetroleum Products and Lubricants and is the direct responsibility of SubcommitteeD02.07 on Flow Properties
14、.Current edition approved May 1, 2005. Published May 2005. Originallyapproved in 2005. Last previous edition approved in 2005 as D 711005.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume
15、information, refer to the standards Document Summary page onthe ASTM website.1*A Summary of Changes section appears at the end of this standard.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.3.2.3.1 DiscussionThese calibration oils a
16、re speciallyblended to give sufficient sensitivity and range for the specialviscometer head used.3.2.4 computer-programmed automated analysis, nuse oftechniques for acquiring analog data, converting these todigital values and using this information to automaticallyrecord and analyze torque output fr
17、om the viscometer drivemodule and to render this information into tabular data andplotted relationships.3.2.4.1 analog-to-digital (A-D) converter, na device forconverting continuously produced electrical signals into dis-crete numerical values capable of being analyzed by computertechnology.3.2.5 cr
18、itical pumpability temperature, nthe temperatureat which an oil reaches a viscosity believed to be critical tolimiting pumpability of the oil (see 3.2.6).3.2.6 critical pumpability viscosity, nthat apparent viscos-ity believed to cause pumpability problems in an engine.3.2.7 flow-limited oils, nthos
19、e oils whose borderlinepumping temperatures are determined by viscous flow.3.2.8 gelation, na rheological condition of an oil charac-terized by a marked increase in flow resistance over and abovethe normal exponential increase of viscosity with decreasingtemperature, particularly at lower shear stre
20、sses and tempera-tures.3.2.8.1 DiscussionGelation has been attributed to a pro-cess of nucleation and crystallization of oil components and theconsequent formation of a gel-like mass.33.2.9 Gelation Index, nthe maximum value of the incre-mental ratio:log log h1!2log log h2!/log T12 log T2!# (2)in wh
21、ich h is dynamic viscosity and T is temperature inKelvin over the temperature range scanned when the incremen-tal decrease in temperature is 1K.3.2.9.1 DiscussionThe technique of deriving GelationIndex was first developed and practiced4by collecting infor-mation from a strip-chart recording and appl
22、ying the empiricalMacCoull-Walther-Wright equation. For further information,see Appendix 1 of Viscosity-Temperature Charts D 341.3.2.10 Gelation Index reference oils, nnon-Newtonianoils chosen to give certain levels of Gelation Index as a checkon instrument performance.3.2.11 Gelation Index Temperat
23、ure, nthe temperature indegrees Celsius at which the Gelation Index occurs.3.2.12 pre-treatment sample heating bath, na water or airbath to heat the samples for 1.5 h at 90 6 2C before testing.3.2.13 programmable liquid cold bath, na liquid bathhaving a temperature controller capable of being progra
24、mmedto run the calibration and the analysis portions of the testmethod.3.2.14 temperature controller, na programmable devicewhich, when properly programmed, ramps the temperatureupward or downward at a chosen rate or series of steps whilesimultaneously controlling temperature excursions.3.2.14.1 cal
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