ASTM D5483-2005(2015) Standard Test Method for Oxidation Induction Time of Lubricating Greases by Pressure Differential Scanning Calorimetry《用压差扫描热量测定法测试润滑脂的氧化反应时间的标准试验方法》.pdf
《ASTM D5483-2005(2015) Standard Test Method for Oxidation Induction Time of Lubricating Greases by Pressure Differential Scanning Calorimetry《用压差扫描热量测定法测试润滑脂的氧化反应时间的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM D5483-2005(2015) Standard Test Method for Oxidation Induction Time of Lubricating Greases by Pressure Differential Scanning Calorimetry《用压差扫描热量测定法测试润滑脂的氧化反应时间的标准试验方法》.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D5483 05 (Reapproved 2015)Standard Test Method forOxidation Induction Time of Lubricating Greases byPressure Differential Scanning Calorimetry1This standard is issued under the fixed designation D5483; the number immediately following the designation indicates the year oforiginal adopti
2、on 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.1. Scope1.1 This test method covers the determination of oxidationinduction time of lu
3、bricating greases subjected to oxygen at3.5 MPa (500 psig) and temperatures between 155 C and210 C.1.2 The values stated in SI units are to be regarded asstandard. The values given in parentheses are for informationonly.1.3 This standard does not purport to address all of thesafety concerns, if any,
4、 associated with its use. It is theresponsibility 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.2. Referenced Documents2.1 ASTM Standards:2E473 Terminology Relating to Thermal Analysis and Rh
5、e-ology3. Terminology3.1 Definitions of Terms Specific to This Standard:3.1.1 extrapolated onset time, na time determined on athermal curve, as the intersection of the extrapolated baselineand a line tangent to the oxidation exotherm constructed at itsmaximum rate.3.1.2 oxidation induction time (OIT
6、), n the period of timefrom the first exposure to an oxidizing atmosphere until theextrapolated onset time.3.1.3 pressure differential scanning calorimeter, (PDSC),na differential scanning calorimeter, as defined in Terminol-ogy E473, that is capable of maintaining the test sample at acontrolled, el
7、evated pressure.3.1.4 thermal curve, na graph of sample heat flow versustime.4. Summary of Test Method4.1 A small quantity of grease is weighed into a sample panand placed in a test cell. The cell is heated to a specifiedtemperature and then pressurized with oxygen. The cell is heldat a regulated te
8、mperature and pressure until an exothermicreaction occurs. The extrapolated onset time is measured andreported as the oxidation induction time for the grease underthe specified test temperature.4.2 A kinetic equation incorporated with this test methodcan estimate oxidation induction times at other t
9、emperatures.5. Significance and Use5.1 Oxidation induction time, as determined under theconditions of this test method, can be used as an indication ofoxidation stability.3This test method can be used for researchand development, quality control and specification purposes.However, no correlation has
10、 been determined between theresults of this test method and service performance.6. Apparatus6.1 Pressure Differential Scanning Calorimeter (PDSC),equipped with the following items (see Fig. 1).4NOTE 1At the time that the round robin data for this test method wasgenerated, only TA Instruments4manufac
11、tured equipment that met therequirements of 5.1. Subsequently, other companies have manufacturedequipment meeting these requirements. Their use is permitted providedtheir performance is consistent with the repeatability and reproducibilitydescribed in Section 10.6.1.1 Sample Enclosure, with capabili
12、ty to 3.5 MPa(500 psig) at 210 C and pressure gauge graduated at intervalsof 200 kPa (28.6 psi) or less.1This test method is under the jurisdiction of ASTM Committee D02 onPetroleum Products, Liquid Fuels, and Lubricants and is the direct responsibility ofSubcommittee D02.09.0E on Oxidation of Greas
13、es.Current edition approved Oct. 1, 2015. Published December 2015. Originallyapproved in 1993. Last previous edition approved in 2010 as D5483 05 (2010).DOI: 10.1520/D5483-05R15.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org.
14、For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.3Rhee, In-Sik, “Development of a New Oxidation Stability Test Method forGreases Using a Pressure Differential Scanning Calorimeter (PDSC),” NLGISpokesman, Vol 55, No. 4, July 1991, pp
15、. 123132.4The sole source of supply of the apparatus known to the committee at this timeis TA Instruments, Inc., 109 Lukens Drive, New Castle, DE 19720. If you are awareof alternative suppliers, please provide this information to ASTM InternationalHeadquarters. Your comments will receive careful con
16、sideration at a meeting of theresponsible technical committee,1which you may attend.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States16.2 Thermal Analyzer.6.3 Aluminum Sample Solid Fat Index (SFI), pan (see Note2).6.4 Oxidation Stabilit
17、y Software.6.5 Calibration Software.6.6 Flowmeter, with a capacity of at least 200 mL min.6.7 Sample Encapsulation Press.NOTE 2It has been found that grease samples can be prepared withmore consistent surface areas using SFI pans as compared to flat bottompans, resulting in better reproducibility.NO
18、TE 3See Fig. 1 for a diagram of a typical test unit.7. Reagents and Materials7.1 Oxygen, extra dry, of not less than 99.5 % purity byvolume. (WarningOxidizer. Gas under pressure. In additionto other precautions, use stainless steel or copper tubing whichis compatible with oxygen, and pressure gauges
19、 which aredesignated for use with oxygen.)7.2 Indium, of not less than 99.9 % purity by mass.8. Calibration8.1 Sample Temperature Calibration:8.1.1 Weigh approximately 10 mg of indium into an alumi-num sample pan, insert a lid and crimp the lid to the pan usingthe encapsulation press. Place the crim
20、ped pan onto the sampleplatform in the pressure cell. Seal an empty pan in the samemanner and place it on the reference platform. Set the cellcover in place and close the cell.8.1.2 Open the oxygen cylinder valve slightly and set apressure of 3.5 MPa 6 0.2 MPa (500 psig 6 25 psig) on thecell inlet l
21、ine with the pressure regulator. Partially open theinlet valve on the cell and allow the pressure to slowly build upin the cell. This should require approximately 2 min. Using theoutlet valve, adjust the oxygen purge rate through the flowme-ter to 100 mL min 6 10 mL min. The open position of theseva
22、lves should remain fixed during the test.8.1.3 Set the thermal analyzer to heat from ambient tem-perature (approximately 22 C) to 180 C) at a programmedrate of 10 C min. After completion of the run, measure themelting temperature of the indium. If the melting temperaturediffers from 157.4 C 6 0.2 C
23、(see Note 4), correct thedifference by using either the hardware or software calibrationprocedure described in the manufacturers instruction manual.If the hardware calibration procedure is used, the temperaturecorrection should be performed under 3.5 MPa (500 psig)oxygen pressure with a 100 mL min p
24、urge rate. A typicalmelting calibration curve is shown in Fig. 2.NOTE 4The melting temperature of indium is 156.6 C at atmosphericpressure, but has been found to be elevated to 157.4 C under theconditions of this test method, 3.5 MPa (500 psig) of oxygen.58.2 Temperature Controller Calibration:8.2.1
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