ASTM D7603-2010 2500 Standard Test Method for Determination of Storage Stability and Compatibility in Automotive Gear Oils《测定机动车齿轮油的储存稳定性和相容性的标准试验方法》.pdf
《ASTM D7603-2010 2500 Standard Test Method for Determination of Storage Stability and Compatibility in Automotive Gear Oils《测定机动车齿轮油的储存稳定性和相容性的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM D7603-2010 2500 Standard Test Method for Determination of Storage Stability and Compatibility in Automotive Gear Oils《测定机动车齿轮油的储存稳定性和相容性的标准试验方法》.pdf(7页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D7603 10Standard Test Method forDetermination of Storage Stability and Compatibility inAutomotive Gear Oils1This standard is issued under the fixed designation D7603; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the
2、 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 storagestability characteristics and the compatibility of automo
3、tivegear lubricants when blended with reference lubricants. Thepurpose of the test is to determine if performance-enhancingadditives separate out under defined conditions.1.2 The values stated in SI units are to be regarded asstandard. No other units of measurement are included in thisstandard.1.3 T
4、his 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-bility of regulatory limitations prior to use.2. Referenced Docume
5、nts2.1 ASTM Standards:2D235 Specification for Mineral Spirits (Petroleum Spirits)(Hydrocarbon Dry Cleaning Solvent)D1193 Specification for Reagent WaterD4175 Terminology Relating to Petroleum, PetroleumProducts, and LubricantsD5760 Specification for Performance of Manual Transmis-sion Gear Lubricant
6、sE542 Practice for Calibration of Laboratory VolumetricApparatusE1272 Specification for Laboratory Glass Graduated Cylin-ders2.2 SAE Standards:3J2360 Lubricating Oil, Gear Multipurpose (Metric) MilitaryUse2.3 Federal Test Method Standard:4FED-STD-791/3440.1 Storage Solubility Characteristics ofUnive
7、rsal Gear LubricantsFED-STD-791/3440.2 Compatibility Characteristics ofUniversal Gear Lubricants3. Terminology3.1 Definitions:3.1.1 calibrate, vto determine the indication or output ofa measuring device (for example, thermometer, manometer,engine) with respect to that of a standard.3.1.2 candidate o
8、il, nan oil that is intended to have theperformance characteristics necessary to satisfy a specificationand is to be tested against that specification. D41753.1.3 reference oil, nan oil of known performance char-acteristics, used as a basis for comparison.3.1.3.1 DiscussionReference oils are used to
9、 calibratetesting facilities, to compare the performance of other oils, orto evaluate other materials (such as seals) that interact withoils. D41753.1.4 test oil, nany oil subjected to evaluation in anestablished procedure. D41754. Summary of Test Method4.1 Separation of the performance-enhancing ad
10、ditives in atest oil during storage is determined by heating it to 120 C,storing at room temperature for 30 days, and making aqualitative observation as to whether any material has sepa-rated out.4.1.1 An optional, non-mandatory test method is also de-scribed in Appendix X1 and Appendix X2 for quant
11、ifying thepercent of the additive which separated out during storage ofthe test oil.4.2 The compatibility of a test oil is determined by blendingit with different reference oils, heating to 120 C, storing atroom temperature for 30 days, and making a qualitativeobservation as to whether any material
12、has separated out.1This test method is under the jurisdiction of ASTM Committee D02 onPetroleum Products and Lubricants and is the direct responsibility of SubcommitteeD02.B0.03 on Automotive Gear Lubricants see 8.1.6.2 and 8.2.9.5).Store the tubes in the desiccator until required.8.1.3 Preparation
13、of the Test Oil:8.1.3.1 Thoroughly shake the test oil prior to sampling.8.1.3.2 Using a clean, dry, graduated cylinder (see 6.7.1),pour 220 mL of the test oil into a clean, dry beaker (400 mL)and heat in an oven controlled at 120 C 6 1 C for 20 min 61 min.8.1.3.3 Remove the beaker from the oven and
14、allow to coolto 25 C 6 3 C. Fill each centrifuge tube with test oil to themark at 100 mL. Stopper the tubes.8.1.4 Storing the Test OilStore the centrifuge tubes for 30days 6 1 day. Place the tubes in an upright position in adarkened area (such as a drawer or cupboard) in a room whosetemperature is c
15、ontrolled at 25 C 6 3 C.8.1.5 CentrifugingTransfer the tubes to the centrifuge,taking care not to disturb any material that may have separatedfrom the oil. Operate the centrifuge for 30 min 6 1 min at aspeed to give a rcf of 407 at the tips of the tubes (see 6.2).8.1.6 After centrifuging, remove the
16、 tubes from the centri-fuge and check each tube visually to determine if solid or liquidmaterial has separated out.8.1.6.1 If there is no visual evidence of separated material inthe centrifuge tubes, stop the storage stability procedure, recordthat the storage stability test resulted in zero residue
17、, and reportas detailed in 9.1.1.8.1.6.2 If solid or liquid material has separated out, recordthat the storage stability test resulted in residue, and report asdetailed in 9.1.2. If it is desired to quantify the amount ofresidue, proceed as directed inAppendix X1 andAppendix X2.8.2 Compatibility Tes
18、tingIn general, when a mixture of atest oil and reference oil is stored, residue can originatebecause of incompatibility between the test oil and referenceoil, or from a storage stability problem associated with the testand reference oils themselves, or both. In the specific case ofthe reference oil
19、s SSCT Fluid (6-pack), the situation is simpli-fied because they do not normally produce storage stabilityresidues.NOTE 1In principle, therefore, any residue observed in the compat-ibility test involving these reference oils arises either from incompatibilitybetween the test oil and the reference oi
20、l or from storage stabilityproblems from the test oil alone. In practice, however, there is a possibilitythat the reference oil(s) alone may produce residue during storage. Forinstance, the reference oil(s) may have deteriorated during storage, or havebecome contaminated, or the test may have been c
21、arried out incorrectly.To cover such eventualities, the procedure requires that in the event aresidue is observed in the compatibility test with a test oil, the referenceoil(s) involved are subjected to the storage stability test with a view toeliminating them as the source of residue.8.2.1 If desir
22、ed, the compatibility testing can be carried outin parallel with the storage stability testing described in 8.1.8.2.2 Perform duplicate tests (that is, use two centrifugetubes).8.2.3 Screen the Test Oil for Storage StabilitySubject thetest oil alone (that is, not in combination with the referenceoil
23、s) to the storage stability test as described in 8.1.8.2.4 Preparation of the Centrifuge Tubes, Graduated Cyl-inders, and BeakersProceed as directed in 8.1.2.8.2.5 Preparation of the Test Oil/Reference Oil Mixtures:8.2.5.1 Thoroughly shake the test and reference oils prior tosampling.8.2.5.2 For eac
24、h reference oil, use separate graduated cyl-inders (see 6.7.2) to pour 110 mL 6 1 mL each of the referenceoil and the test oil into a clean, dry beaker (400 mL). Use thesame graduated cylinder each time the test oil is measured, buta clean, dry, graduated cylinder for each of the reference oils.Heat
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