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Standard Test Method for Evaluation of the Thermal and Oxidative Stability of Lubricating Oils Used for Manual Transmissions and Final Drive Axles
Automatische name übersetzung:
Standard Test Method for Evaluation der Wärme- und Oxidationsbeständigkeit von Schmierölen verwendet für Schaltgetriebe und Achsantrieb Achsen
NORM herausgegeben am 1.5.2014
Bezeichnung normen: ASTM D5704-14
Anmerkung: UNGÜLTIG
Ausgabedatum normen: 1.5.2014
SKU: NS-32216
Zahl der Seiten: 18
Gewicht ca.: 54 g (0.12 Pfund)
Land: Amerikanische technische Norm
Kategorie: Technische Normen ASTM
Keywords:
carbon and varnish deposits, final drive axle, gear cleanliness, gears, insoluble, L-60, lubricants, manual transmission, oil thickening, seal failure, sludge, thermal oxidation, ICS Number Code 75.100 (Lubricants, industrial oils and related products)
Significance and Use | ||||||||||||||||||||
5.1 This test method measures the tendency of automotive manual transmission and final drive lubricants to deteriorate under high-temperature conditions, resulting in thick oil, sludge, carbon and varnish deposits, and the formation of corrosive products. This deterioration can lead to serious equipment performance problems, including, in particular, seal failures due to deposit formation at the shaft-seal interface. This test method is used to screen lubricants for problematic additives and base oils with regard to these tendencies. 5.2 This test method is used or referred to in the following documents: 5.2.1 American Petroleum Institute (API) Publication 1560-Lubricant Service Designations for Automotive Manual Transmissions, Manual Transaxles, and Axles,5.2.2 STP-512A–Laboratory Performance Tests for Automotive Gear Lubricants Intended for API GL-5 Service,5.2.3 SAE J308-Information Report on Axle and Manual Transmission Lubricants,9 and 5.2.4 U.S. Military Specification MIL-L-2105D. |
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1. Scope | ||||||||||||||||||||
1.1 This test method is commonly referred to as the L-60-1 test.2 It covers the oil-thickening, insolubles-formation, and deposit-formation characteristics of automotive manual transmission and final drive axle lubricating oils when subjected to high-temperature oxidizing conditions. 1.2 The values stated in inch-pound units are to be regarded as standard. The values given in parentheses are mathematical conversions to SI units that are provided for information only and are not considered standard. 1.2.1 Exceptions—The values stated in SI units for catalyst mass loss, oil mass and volume, alternator output, and air flow are to be regarded as standard. 1.2.2 SI units are provided for all parameters except where there is no direct equivalent such as the units for screw threads, or where there is a sole source supply equipment specification. 1.3 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.
Standard Test Method for Insolubles in
Used Lubricating Oils Standard Specification for Mineral
Spirits (Petroleum Spirits) (Hydrocarbon Dry Cleaning Solvent) Standard Test Method for Acid Number of
Petroleum Products by Potentiometric Titration (Includes all
amendments and changes 1/4/2019). Standard Test Method for Kinematic
Viscosity of Transparent and Opaque Liquids (and Calculation of
Dynamic Viscosity) Standard Classification of Coppers Standard Test Method for Evaluation of
Automotive Engine Oils in the Sequence IIIF, Spark-Ignition Engine
(Includes all amendments and changes 6/23/2022). Standard Practice for Using Significant
Digits in Test Data to Determine Conformance with
Specifications Standard Practice for Numbering Metals
and Alloys in the Unified Numbering System (UNS) Engineering Drawings MIL-L-2105D Lubricating Oil, Gear, Multipurpose |
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