ASTM D2878-2010(2016) Standard Test Method for Estimating Apparent Vapor Pressures and Molecular Weights of Lubricating Oils《估算润滑油的表面蒸气压力和分子量的标准试验方法》.pdf
《ASTM D2878-2010(2016) Standard Test Method for Estimating Apparent Vapor Pressures and Molecular Weights of Lubricating Oils《估算润滑油的表面蒸气压力和分子量的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM D2878-2010(2016) Standard Test Method for Estimating Apparent Vapor Pressures and Molecular Weights of Lubricating Oils《估算润滑油的表面蒸气压力和分子量的标准试验方法》.pdf(6页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D2878 10 (Reapproved 2016)Standard Test Method forEstimating Apparent Vapor Pressures and MolecularWeights of Lubricating Oils1This standard is issued under the fixed designation D2878; the number immediately following the designation indicates the year oforiginal adoption or, in the ca
2、se 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. Scope1.1 This test method covers a calculation procedure forconverting data obtained by Test Method
3、 D972 to apparentvapor pressures and molecular weights. It has been demon-strated to be applicable to petroleum-based and synthetic esterlubricating oils,2at temperatures of 395 K to 535 K (250 F to500 F). However, its applicability to lubricating greases hasnot been established.NOTE 1Most lubricant
4、s boil over a fairly wide temperature range, afact recognized in discussion of their vapor pressures. For example, theapparent vapor pressure over the range 0 % to 0.1 % evaporated may beas much as 100 times that over the range 4.9 % to 5.0 % evaporated.1.2 The values stated in SI units are to be re
5、garded as thestandard. In cases in which materials, products, or equipmentare available in inch-pound units only, SI units are omitted.1.3 WARNINGMercury has been designated by manyregulatory agencies as a hazardous material that can causecentral nervous system, kidney and liver damage. Mercury, ori
6、ts vapor, may be hazardous to health and corrosive tomaterials. Caution should be taken when handling mercury andmercury containing products. See the applicable product Ma-terial Safety Data Sheet (MSDS) for details and EPAswebsitehttp:/www.epa.gov/mercury/faq.htmfor addi-tional information. Users s
7、hould be aware that selling mercuryor mercury containing products into your state or country maybe prohibited by law.1.4 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-priat
8、e safety and health practices and determine the applica-bility or regulatory limitations prior to use. For specificwarning statements, see 6.2, 7.1, 8.2, and Annex A2.2. Referenced Documents2.1 ASTM Standards:3A240/A240M Specification for Chromium and Chromium-Nickel Stainless Steel Plate, Sheet, an
9、d Strip for PressureVessels and for General ApplicationsD92 Test Method for Flash and Fire Points by ClevelandOpen Cup TesterD972 Test Method for Evaporation Loss of LubricatingGreases and OilsD2503 Test Method for Relative Molecular Mass (MolecularWeight) of Hydrocarbons by Thermoelectric Measure-m
10、ent of Vapor PressureD2595 Test Method for Evaporation Loss of LubricatingGreases Over Wide-Temperature RangeD2883 Test Method for Reaction Threshold Temperature ofLiquid and Solid MaterialsE659 Test Method for Autoignition Temperature of Chemi-cals3. Terminology3.1 Definitions of Terms Specific to
11、This Standard:3.1.1 apparent vapor pressure (p), nthe time-averagedvalue of the vapor pressure from the start to the end of theevaporation test.3.1.1.1 DiscussionWhile this may include some effects ofdifferences in nonideality of the vapor, heat of vaporization,surface tension, and viscosity between
12、 the m-terphenyl and thelubricating oil, these factors have been demonstrated to benegligible. Unless stated, this average shall cover the range 0 to5 6 1%.3.1.2 cell constant (k), nthe ratio of the amount ofm-terphenyl or lubricating oil carried off per unit volume of gasto that predicted by Dalton
13、s law.k 5 22.41 PW/VpM (1)where:k = call constant1This test method is under the jurisdiction of Committee D02 on PetroleumProducts, Liquid Fuels, and Lubricants and is the direct responsibility of Subcom-mittee D02.L0.07 on Engineering Sciences of High Performance Fluids and Solids(Formally D02.1100
14、).Current edition approved Jan. 1, 2016. Published February 2016. Originallyapproved in 1970. Last previous edition approved in 2010 as D2878 10. DOI:10.1520/D2878-10R16.2Coburn, J. F., “Lubricant Vapor Pressure Derived from Evaporation Loss,”Transactions, American Society of Lubricating Engineers,
15、ASLTA, Vol 12 , 1969,pp. 129134.3For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.Copyright ASTM International,
16、 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States1P = ambient atmospheric pressure, torrW = mass of lubricant evaporated, gV = volume of gas passed through all litres at 273 K and101.3 kPa (760 torr)p = apparent vapor pressure, torrM = mole average molecular weight
17、 of lubricant vapor,g/moleT = test temperature, KIt has been empirically determined that for m-terphenyl in airk 5 0.1266 2 12.60/ T 2 273! (2)and that the cell constant is independent of the composi-tion of the lubricant.3.1.3 Test Method D972 is normally run with air, whichmay cause changes in eas
18、ily oxidized fluids. In such cases, useof common reactive gas nitrogen and recalibration to obtain aslightly different cell constant (k) is mandatory.4. Summary of Test Method4.1 The test is run at the selected temperature for a sufficienttime to give the selected amount of evaporation, which is 5 %
19、6 1 % unless otherwise specified. This evaporation rate iscompared with a standard value for pure m-terphenyl to yieldthe apparent vapor pressure and molecular weight of thelubricating oil as defined in Section 3.5. Significance and Use5.1 The vapor pressure of a substance as determined bymeasuremen
20、t of evaporation reflects a property of the bulksample. Little weight is given by the procedure to the presenceof low concentrations of volatile impurities.5.2 Vapor pressure, per se, is a thermodynamic property thatis dependent only upon composition and temperature for stablesystems. In the present
21、 method, composition changes occurduring the course of the test so that the contribution of minoramounts of volatile impurities is minimized.6. Apparatus6.1 Evaporation Cell, as described in Annex A1.6.2 Air Supply System, capable of supplying to the cell therequired flow of air free of entrained pa
22、rticles (WarningCompressed gas under high pressure. Use with extreme cautionin the presence of combustible material, since the autoignitiontemperatures of most organic compounds in air are drasticallyreduced at elevated pressures. See Annex A2.1.). A 410 mm(16 in.) length of 1 in. diameter pipe pack
23、ed with glass woolhas been found satisfactory for filtering the air.6.3 Oil Bath, as described in Annex A1.NOTE 2Other constant-temperature baths may be used if the exit airpassing over the grease sample is at the test temperature (60.5 K (1 F).6.4 Temperature Measuring DevicesResistancethermometers
24、, thermocouples, or liquid-in-glass thermometerscalibrated to accuracy within 60.5 C (61.0 F) may be used.The use of mercury-in-glass thermometers of equal accuracy ispermitted, although it is discouraged.6.5 Flowmeter4A rotameter calibrated to deliver air at arate of 2.583 g min 6 0.02 g min betwee
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