ASTM D4425-1997(2002) Standard Test Method for Oil Separation From Lubricating Grease by Centrifuging (Koppers Method)《离心法从润滑脂中分离油的标准试验方法(科佩斯法)》.pdf
《ASTM D4425-1997(2002) Standard Test Method for Oil Separation From Lubricating Grease by Centrifuging (Koppers Method)《离心法从润滑脂中分离油的标准试验方法(科佩斯法)》.pdf》由会员分享,可在线阅读,更多相关《ASTM D4425-1997(2002) Standard Test Method for Oil Separation From Lubricating Grease by Centrifuging (Koppers Method)《离心法从润滑脂中分离油的标准试验方法(科佩斯法)》.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D 4425 97 (Reapproved 2002)An American National StandardStandard Test Method forOil Separation from Lubricating Grease by Centrifuging(Koppers Method)1This standard is issued under the fixed designation D 4425; the number immediately following the designation indicates the year oforigin
2、al 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. Scope1.1 This test method describes a procedure for determiningthe tenden
3、cy of lubricating grease to separate oil when sub-jected to high centrifugal forces.1.2 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
4、 determine the applica-bility of regulatory limitations prior to use.1.3 The values stated in SI units are to be regarded as thestandard.2. Referenced Documents2.1 ASTM Standards:D 217 Test Methods for Cone Penetration of LubricatingGrease23. Terminology3.1 Definitions:3.1.1 lubricating grease, na s
5、emi-fluid to solid product ofa thickener in a liquid lubricant.3.1.1.1 DiscussionThe dispersion of the thickener forms atwo-phase system and immobilizes the liquid lubricant bysurface tension and other physical forces. Other ingredients arecommonly included to impart special properties. D 2173.1.2 t
6、hickener, nin lubricating grease, a substance com-posed of finely-divided particles dispersed in a liquid to formthe productss structure.3.1.2.1 DiscussionThickeners can be fibers (such as vari-ous metallic soaps) or plates or spheres (such as certainnon-soap thickeners), which are insoluble or, at
7、most, only veryslightly soluble in the liquid lubricant. The general require-ments are that the solid particles be extremely small, uniformlydispersed, and capable of forming a relatively stable, gel-likestructure with the liquid lubricant.3.2 Symbols:a = distance from top of grease surface to tube
8、mouth(mm).b = height of liquid column in an inverted test tube(mm).d = test tube inside diameter (mm).H = accumulated test time at a given reading (h).K36 = resistance to centrifugal separation (V/H).r = measured at the maximum radius of rotation (mm).rpm = rotational speed (r/min).V = volume of sep
9、arated oil, as a percentage of theoriginal grease volume (%).Vg= grease volume in a test tube (cm3).Vo= volume of separated oil (cm3).Vt= test tube total volume (cm3).A = angle of rotor, between the test tube axis and axis ofrotation (degrees).v = rotational speed (rad/s).G = relative centrifugal ac
10、celeration.The relative effect of centrifugal forces, when related to thegravitational standard acceleration (9.81 m/s2), is noted withthe symbol G. It can be calculated as follows:G 5 1.02 3 10243 r 3v2, (1)orG 5 1.12 3 10263 r 3 rpm2(2)4. Summary of Test Method4.1 Pairs of centrifuge tubes are cha
11、rged with greasesamples and are placed in the centrifuge. The grease samplesare subjected to a centrifugal force equivalent to a G value of36 000, at 50C 6 1C, for specific periods of time. Theresistance of the grease to separate the oil is then defined as aratio of the percent of oil separated to t
12、he total number of hoursof testing.5. Significance and Use5.1 This test method is useful in evaluating the degree towhich a grease would separate into fluid and solid componentswhen subjected to high centrifugal forces. Flexible shaftcouplings, universal joints, and rolling element thrust bearings1T
13、his test method is under the jurisdiction of Committee D02 on PetroleumProducts and is the direct responsibility of Subcommittee D02.G on LubricatingGrease.Current edition approved June 10, 1997. Published October 1997. Originallypublished as D 4425 84. Last previous edition D 4425 90.2Annual Book o
14、f ASTM Standards, Vol 05.01.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.are examples of machinery which subject lubricating greases tolarge and prolonged centrifugal forces. This test method hasbeen found to give results that cor
15、relate well with results fromactual service. The test method may be run at other conditionswith agreement between parties but the precision noted in thistest method will no longer apply.36. Apparatus6.1 High-Speed Centrifuge capable of developing a G valueof 36 000. Mount the unit on a flat level su
16、rface to allowunrestricted air flow to the motor. This is essential for longmotor life. The centrifuge should be equipped with:6.1.1 Fixed Angle Rotor, multiple place, which can sustaina G value of 36 000.6.1.2 Thermometer, preferably of a dial type, installed sothat the temperature in the vicinity
17、(5 to 15 mm) of the rotorcan be measured. (For Sorvall centrifuge, see Fig. 1.)6.1.3 Air Choke, installed at the air inlet of the centrifugechamber (for Sorvall centrifuge, see Fig. 2), and used to controlthe temperature if the unit lacks an automatic temperaturecontrol. Some designs require outlet
18、choking as well.6.1.4 Centrifuge Tubes made of transparent material, ca-pable of withstanding a G value of 36 000 for 100 h minimum(Note 1).NOTE 1Polypropylene tubes were found to be the most durable.6.2 Balance, having a capacity of about 100 g with aminimum sensitivity of 0.1 g.7. Sampling7.1 The
19、sample presented for analysis should be largeenough to make possible the selection of a representativeportion for testing. Each run will require approximately 0.5 gfor each cubic centimetre of tube capacity . Examine for anyindication of non-homogeneity such as oil separation, phasechanges, or gross
20、 contamination. If any abnormal conditionsare found, obtain a new sample.7.2 The sample temperature at time of loading is to bebetween 15C and 35C.8. Preparation of Apparatus8.1 Inspect the centrifuge unit paying particular attention tothe cleanliness of the rotor which will be unbalanced by anysurf
21、ace deposits.8.2 Examine the required number of tubes to be used for thetest, rejecting any with surface scratches or imperfections.9. Procedure9.1 For each grease, two centrifuge tubes are required. Newtubes must be used for each test and they must be handled withcare to avoid scratches.9.1.1 Deter
22、mine the total volume, V, in cubic centimetres, ofeach tube by filling with water and then pouring into agraduated cylinder and measuring.9.1.2 Measure the inside diameter, d, in millimetres with avernier caliper.9.2 Take grease samples from the container without includ-ing any free oil found on the
23、 grease surface.9.3 Charge each tube with approximately 0.5 g of grease foreach cubic centimeter of tube capacity (example:7gofgreasein a tube of 14 cm3) taking care that the difference in mass ofeach does not exceed 0.3 g to minimize centrifuge imbalance.9.4 Place the tubes in diametrically opposit
24、e compartmentsif all rotor compartments are not used. Always use evennumbers of tubes.9.5 The centrifuge lid must always be closed when the rotoris turning. The rotor should never be touched while rotating.9.6 Operate the centrifuge at a G value of 1000 for 3 min toeliminate any trapped air bubbles
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