ASTM D2596-2010 Standard Test Method for Measurement of Extreme-Pressure Properties of Lubricating Grease (Four-Ball Method)《润滑脂的极端压力特性测定的标准试验方法(四球法)》.pdf
《ASTM D2596-2010 Standard Test Method for Measurement of Extreme-Pressure Properties of Lubricating Grease (Four-Ball Method)《润滑脂的极端压力特性测定的标准试验方法(四球法)》.pdf》由会员分享,可在线阅读,更多相关《ASTM D2596-2010 Standard Test Method for Measurement of Extreme-Pressure Properties of Lubricating Grease (Four-Ball Method)《润滑脂的极端压力特性测定的标准试验方法(四球法)》.pdf(6页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D2596 10Standard Test Method forMeasurement of Extreme-Pressure Properties of LubricatingGrease (Four-Ball Method)1This standard is issued under the fixed designation D2596; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revisi
2、on, 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.This standard has been approved for use by agencies of the Department of Defense.1. Scope*1.1 This test method cov
3、ers the determination of the load-carrying properties of lubricating greases. Two determinationsare made:1.1.1 Load-Wear Index (formerly called Mean-Hertz Load),and1.1.2 Weld Point, by means of the Four-Ball Extreme-Pressure (EP) Tester.1.2 The values stated in SI units are to be regarded as thestan
4、dard. The values in parentheses are for information only.1.3 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 practices and determine the applica-bili
5、ty of regulatory limitations prior to use.2. Referenced Documents2.1 American National Standard:2B3.12 Metal Balls3. Terminology3.1 Definitions:3.1.1 compensation line, na line of plot on log-log paperwhere the coordinates are scar diameter in millimetres andapplied load in kilograms-force (or Newto
6、ns) obtained underdynamic conditions.3.1.1.1 DiscussionShown in Fig. 1 as line ABE.3.1.2 compensation scar diameterthe average diameter, inmillimetres, of the wear scar on the stationary balls caused bythe rotating ball under an applied load in the presence of alubricant, but without causing either
7、seizure or welding.3.1.3 corrected load, nthe load in kilograms-force (orNewtons) obtained by multiplying the applied load by the ratioof the Hertz scar diameter to the measured scar diameter at thatload.3.1.3.1 DiscussionIn this test method, the corrected loadis calculated for each run.3.1.4 hertz
8、line, na line of plot on log-log paper where thecoordinates are scar diameter in millimetres and applied load inkilograms-force (or Newtons) obtained under static conditions.3.1.4.1 DiscussionShown in Fig. 1 as a hertz line.3.1.5 hertz scar diameter, nthe average diameter, inmillimetres, of an inden
9、tation caused by the deformation of theballs under static load (prior to test). It may be calculated fromthe equation:Dh5 8.73 3 102P!1/3(1)where:Dh= Hertz diameter of the contact area in millimetres, andP = static applied load in kilograms-force.1This test method is under the jurisdiction of ASTM C
10、ommittee D02 onPetroleum Products and Lubricants and is the direct responsibility of SubcommitteeD02.G0.04 on Functional Tests - Tribology.Current edition approved May 1, 2010. Published June 2010. Originallyapproved in 1967. Last previous edition approved in 2008 as D259697(2008).DOI: 10.1520/D2596
11、-10.2Available from American National Standards Institute (ANSI), 25 W. 43rd St.,4th Floor, New York, NY 10036, http:/www.ansi.org.FIG. 1 Schematic Plot of Scar Diameter Versus Applied Load1*A Summary of Changes section appears at the end of this standard.Copyright ASTM International, 100 Barr Harbo
12、r Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.3.1.6 immediate seizure region, nthat region of the scar-load curve characterized by seizure or welding at the startup orby large wear scars.3.1.6.1 DiscussionUnder conditions of this test method,the immediate seizure region is sh
13、own by line CD. Also, initialdeflection of indicating pen on the optional friction-measuringdevice is larger than with nonseizure loads.3.1.7 incipient seizure or initial seizure region, nthatregion at which, with an applied load, there is a momentarybreakdown of the lubricating film.3.1.7.1 Discuss
14、ionThis breakdown is noted by a suddenincrease in the measured scar diameter, shown in Fig. 1 as lineBC, and a momentary deflection of the indicating pen of theoptional friction-measuring device.3.1.8 last nonseizure load, nthe last load at which themeasured scar diameter is not more than 5 % greate
15、r than thecompenation value at that load.3.1.8.1 DiscussionShown in Fig. 1 as Point B.3.1.9 load-wear index (or the load-carrying property of alubricant), nan index of the ability of a lubricant to preventwear at applied loads.3.1.9.1 DiscussionUnder the conditions of this test, spe-cific loadings i
16、n kilograms-force (or Newtons) having intervalsof approximately 0.1 logarithmic units, are applied to the threestationary balls for ten runs prior to welding. The load wearindex is the average of the corrected loads determined for theten applied loads immediately preceding the weld point.3.1.10 weld
17、 point, nthe lowest applied load at whichsliding surfaces seize and then weld.3.1.10.1 DiscussionUnder the conditions of this test, thelowest applied load in kilograms-force (or Newtons) at whichthe rotating ball seizes and then welds to the three stationaryballs, indicating the extreme-pressure lev
18、el of the lubricatinggrease has been exceeded. See Fig. 1, Point D.3.1.10.2 DiscussionSome lubricating greases do not al-low true welding, and extreme scoring of the three stationaryballs results. In such cases, the applied load which produces amaximum scar diameter of 4 mm is reported as the weld p
19、oint.4. Summary of Test Method4.1 The tester is operated with one steel ball under loadrotating against three steel balls held stationary in the form ofa cradle. The rotating speed is 1770 6 60 rpm. Lubricatinggreases are brought to 27 6 8C (80 6 15F) and thensubjected to a series of tests of 10-s d
20、uration at increasing loadsuntil welding occurs.5. Significance and Use5.1 This test method, used for specification purposes, dif-ferentiates between lubricating greases having low, medium,and high level of extreme-pressure properties. The results donot necessarily correlate with results from servic
21、e.35.2 It is noted that lubricating greases that have as their fluidcomponent a silicone, halogenated silicone, or a mixturecomprising silicone fluid and petroleum oil, are not applicableto this method of test.6. Apparatus6.1 Four-Ball Extreme-Pressure Lubricant Tester,4illus-trated in Fig. 2.NOTE 1
22、It is important to distinguish between the Four-Ball EP Testerand the Four-Ball Wear Tester. The Four-Ball Wear Tester can be usedunder a variety of test conditions at loads up to 490 N (50 kgf). TheFour-Ball EP Tester is designed for testing under more severe conditionsand lacks the sensitivity nec
23、essary for the Four-Ball Wear Test.6.2 Microscope,4equipped with calibrated measuring scaleand readable to an accuracy of 0.01 mm.6.3 Timer, graduated in tenths of a second.NOTE 2Optional equipment with Four-Ball apparatus consists of afriction-measuring device electrically driven and conveniently g
24、raduatedin 10-s markings.7. Materials7.1 Cleaning FluidsFor preparing balls and apparatus forthe test should be those capable of removing metal preservativecoating from the balls, eliminating carryover effects from onetest to the next. The cleaning fluid selected should be non-film-forming and not c
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