ASTM D6335-2009 6250 Standard Test Method for Determination of High Temperature Deposits by Thermo-Oxidation Engine Oil Simulation Test《通过热氧化发动机油模拟试验测定高温沉积物的标准试验方法》.pdf
《ASTM D6335-2009 6250 Standard Test Method for Determination of High Temperature Deposits by Thermo-Oxidation Engine Oil Simulation Test《通过热氧化发动机油模拟试验测定高温沉积物的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM D6335-2009 6250 Standard Test Method for Determination of High Temperature Deposits by Thermo-Oxidation Engine Oil Simulation Test《通过热氧化发动机油模拟试验测定高温沉积物的标准试验方法》.pdf(7页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D 6335 09Standard Test Method forDetermination of High Temperature Deposits by Thermo-Oxidation Engine Oil Simulation Test1This standard is issued under the fixed designation D 6335; the number immediately following the designation indicates the year oforiginal adoption or, in the case
2、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. Scope*1.1 This test method covers the procedure to determine theamount of deposits formed by automotiv
3、e engine oils utilizingthe thermo-oxidation engine oil simulation test (TEOST2).3Aninterlaboratory study (see Section 17) has determined it to beapplicable over the range from 10 to 65 mg total deposits.NOTE 1Operational experience with the test method has shown thetest method to be applicable to en
4、gine oils having deposits over the rangefrom 2 to 180 mg total deposits.1.2 The values stated in SI units are to be regarded asstandard. No other units of measurement are included in thisstandard.1.2.1 Milligrams (mg), grams (g), millilitres (mL), and litresare the units provided, because they are a
5、n industry acceptedstandard.1.2.2 ExceptionProvided psig for information only in 6.2.1.3 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 an
6、d determine the applica-bility of regulatory limitations prior to use.2. Terminology2.1 Definitions of Terms Specific to This Standard:2.1.1 ceramic isolatorthe fitting that compresses theO-ring into the depositor rod casing and isolates the depositorrod casing from the voltage applied to the deposi
7、tor rod.2.1.2 depositor rodthe steel rod on which the deposits arecollected. It is resistively heated through a temperature cycleduring the test.2.1.3 depositor rod casingthe sleeve that surrounds thedepositor rod and allows the flow of specimen around theoutside of the rod.2.1.4 drain tubethe tube
8、connecting the outlet of thedepositor rod casing to the reaction chamber.2.1.5 end capthe fitting to tighten the ceramic isolatorsdown onto the O-rings at the ends of the depositor rod casing.2.1.6 filter depositsthe mass in mg of the deposits col-lected on the filter cartridge.2.1.7 pumpthe gear pu
9、mp that controls the flow rate ofsample through the depositor rod casing.2.1.8 pump inlet tubethe tube connecting the reactorchamber to the pump.2.1.9 pump outlet tubethe tube connecting the pump tothe depositor rod casing.2.1.10 reactor chamberthe reservoir that contains thebulk of the sample throu
10、ghout the test. It has a drain valve forremoving sample at the end of the test and an inlet valve foradding gases to the sample. The chamber contains a magneticstir bar well in the bottom in which a stir bar is placed to mixthe reactor contents.2.1.11 rod depositsthe mass, in milligrams, of the depo
11、s-its collected on the depositor rod.2.1.12 rod O-ringsthe O-rings that seal the outside of therod and the depositor rod casing to prevent sample leaks.2.1.13 side nutthe fitting creates a seal to prevent sampleleaking from the front holes of the depositor rod casing.2.1.14 thermocouple lock collara
12、 fitting that tightens onthe thermocouple to ensure the thermocouple is at the correctdepth when placed inside the rod.2.1.15 total depositsthe rod deposits plus the filter depos-its.3. Summary of Test Method3.1 A sample of the engine oil at a temperature of 100Cthat contains ferric napthenate and i
13、s in contact with nitrousoxide and moist air is pumped at a set flow rate past a tareddepositor rod. The rod is resistively heated through twelve, 9.5min temperature cycles that go from 200 to 480C. When thetwelve cycle program is complete, the depositor rod rinsed ofoil residue and dried and the gr
14、oss rod mass obtained. Thesample is flushed from the system and filtered through a taredfilter. The mass of deposits on the rod plus the mass of depositson the filter is the total deposit mass.1This test method is under the jurisdiction of ASTM Committee D02 onPetroleum Products and Lubricants and i
15、s the direct responsibility of SubcommitteeD02.09.0G on Oxidation Testing of Engine Oils.Current edition approved June 1, 2009. Published July 2009. Originally approvedin 1998. Last previous edition approved in 2003 as D 633503b.2TEOST is a trademark of the Tannas Co. (Reg. 2001396), Tannas Company,
16、4800 James Savage Rd., Midland, MI 48642.3The Development of Thermo-Oxidation Engine Oil Simulation Test (TEOST),Society of Automotive Engineers (SAE No. 932837), 400 Commonwealth Dr.,Warrendale, PA 15096-0001.1*A Summary of Changes section appears at the end of this standard.Copyright ASTM Internat
17、ional, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.4. Significance and Use4.1 The test method is designed to predict the high tempera-ture deposit forming tendencies of an engine oil. This testmethod can be used to screen oil samples or as a qualityassurance t
18、ool.5. Apparatus5.1 Thermo-oxidation engine oil simulation test (TEOST)test instrument.4See Fig. 1.5.2 Balance, capable of weighing to the nearest 0.1 mg.5.3 Vacuum Source, hand held, floor model, or housevacuum.5.4 Magnetic stirrer and stir bars.5.5 Digital timer.5.6 Petroleum and temperature resis
19、tant O-rings.5.7 Ceramic isolators.5.8 Polypropylene filters.5.9 Plastic filter holder.5.10 Plastic Petri Dishes, for filter storage.5.11 Filtering Flask1000 mL.5.12 Graduated Filter Funnel500 mL with Luer lockfitting.5.13 Graduated Cylinder150 mL.5.14 BeakersOne small (for example, 25 mL). One bea-
20、ker large enough to clean the depositor rod casing (forexample, 600 mL).5.15 Graduated Cylinder10 mL.5.16 Erlenmeyer Flask50 mL.5.17 Adjustable hex wrench.5.18 Pipe Cleaners3 3 304.8 mm.5.19 Steel Wool4/0 (ultra fine).5.20 Brass Brush0.22 caliber.5.21 Glass Syringe100 L.5.22 Tannas one piece cartrid
21、ge filters. (OptionalItems5.8, 5.9, and 5.10 are not needed if the optional Tannasone-piece cartridge filters is used.)45.23 Flow Meters, capable of measuring 0 to 10 mL of airper min.5.24 Weighing Boat, light, circular or oblong open con-tainer, preferably made of aluminum with a diameter or length
22、of approximately 7 to 10 cm and notched in two diametricallyopposed places to prevent the rod from rolling. (See Fig. 2.)4The sole source of supply of the apparatus known to the committee at this timeis Tannas Co., 4800 James Savage Rd., Midland, MI 48642. If you are aware ofalternative suppliers, p
23、lease provide this information to ASTM InternationalHeadquarters. Your comments will receive careful consideration at a meeting of theresponsible technical committee,1which you may attend.FIG. 1 Thermo-oxidation Engine Oil Simulation Test (TEOST)D63350926. Reagents and Materials6.1 Nitrous Oxide (N2
24、O)USP compressed gas cylinder,medical grade.6.2 Moist AirHydrocarbon-free air regulated to 103.4 kPa(15 psig) before the flow meter and then bubbled throughapproximately 30 mL of water in a small Erlenmeyer flask.6.3 Ferric NaphthenateSix percent iron content in min-eral spirits.6.4 Cyclohexane or H
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