ASTM-D7098 2008
$40.63
D7098-08 Standard Test Method for Oxidation Stability of Lubricants by Thin-Film Oxygen Uptake (TFOUT) Catalyst B
Published By | Publication Date | Number of Pages |
ASTM | 2008 | 10 |
ASTM D7098-08
Historical Standard: Standard Test Method for Oxidation Stability of Lubricants by Thin-Film Oxygen Uptake (TFOUT) Catalyst B
ASTM D7098
Scope
1.1 This test method covers the oxidation stability of lubricants by thin-film oxygen uptake (TFOUT) Catalyst B. This test method evaluates the oxidation stability of petroleum products, and it was originally developed as a screening test to indicate whether a given re-refined base stock could be formulated for use as automotive engine oil (see Test Method D 4742). The test is run at 160°C in a pressure vessel under oxygen pressure, and the sample contains a metal catalyst package, a fuel catalyst, and water to partially simulate oil conditions in an operating engine. In addition, the test method has since been found broadly useful as an oxidation test of petroleum products.
1.2 The applicable range of the induction time is from a few minutes up to several hundred minutes or more. However, the range of induction times used for developing the precision statements in this test method was from 40 to 280 min.
1.3 The values stated in SI units are to be regarded as the standard. The values given in parentheses are for information only.
1.4 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.
Keywords
oxidation stability; sequence IIIE engine simulation; TFOUT; Lubricants; Oxidation stability; Thin-film oxygen uptake (TFOUT)
ICS Code
ICS Number Code 75.100 (Lubricants, industrial oils and related products)
DOI: 10.1520/D7098-08
PDF Catalog
PDF Pages | PDF Title |
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1 | Scope Referenced Documents Terminology Summary of Test Method |
2 | Significance and Use Apparatus Reagents Materials FIG. 1 |
3 | Preparation of Apparatus Procedure |
4 | Report Precision and Bias Keywords A1. THIN FILM OXYGEN UPTAKE TEST USING THE RBOT/TFOUT APPARATUS A1.1 Pressure Vessel FIG. A1.1 |
5 | A1.2 Pressure Vessel Assembly and Charging A1.3 Oxidation A1.4 Aluminum Insert A1.5 Glass Sample Container FIG. A1.2 FIG. A1.3 |
6 | A1.6 Gauge A1.7 Oxidation Bath A1.8 Thermometer A2. THIN FILM OXYGEN UPTAKE TEST USING THE DESIGNED TFOUT APPARATUS A2.1 Pressure Oxidation Vessel A2.2 Oxidation Chamber FIG. A1.4 FIG. A2.1 FIG. A2.2 |
7 | A2.3 Drive Tube A2.4 Impeller/Lock Ring A2.5 O-ring Gaskets A2.6 Glass Reaction Dish A2.7 Pressure Vessel Assembly and Charging A2.8 Oxidation A2.9 Oxidation Bath A2.10 A2.11 Recorder A2.12 Thermometer FIG. A2.3 FIG. A2.4 |
8 | A3. PREPARATION OF THE FUEL COMPONENT A3.1 A3.2 A3.3 Distillation A3.4 Oxidation/Nitration A3.5 Reduction of Acidity A3.6 A3.7 A4. PREPARATION OF THE SOLUBLE METAL CATALYST MIXTURE A4.1 A4.2 Materials A4.3 Metal Content A4.4 Mixing of Metal Naphthenates FIG. A3.1 |
9 | A4.5 Composition of the Metals A4.6 A5. CLEANING PROCEDURE FOR CATALYST SYRINGES A5.1 A5.2 Materials A5.3 A5.4 A5.5 |