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ASTM D 5964 : 2016 : R2021

Current
Current

The latest, up-to-date edition.

Standard Practice for Rubber IRM 901, IRM 902, and IRM 903 Replacement Oils for ASTM No. 1, ASTM No. 2, ASTM No. 3 Oils, and IRM 905 formerly ASTM No. 5 Oil
Available format(s)

Hardcopy , PDF

Language(s)

English

Published date

02-07-2021

1.1This practice covers three immersion oils to be used as replacements for ASTM No. 1, No. 2, and No. 3 immersion oils as called for in Test Method D471. The immersion oils will be designated as IRM 901 as a replacement for ASTM No. 1 oil, IRM 902 as a replacement for ASTM No. 2 oil, and IRM 903 as a replacement for ASTM No. 3 oil. The new reference oils have been developed under a new Committee D11 policy on reference materials (see Practice D4678 for background on the new policy and procedures).

1.2The oils, IRM 901, IRM 902, and IRM 903, are similar but not fully equivalent to ASTM No.1, ASTM No. 2, and ASTM No. 3 oil, respectively. Refer to Table 1 for a description of the typical properties and specifications for these oils.

1.3ASTM No. 5 Oil was accepted into Specification D5900 as an industry reference material in 2010 and designated as IRM 905. The composition, and properties of this immersion oil were not changed and the data in Table 1 remains current. It was listed among the IRM immersion oils in Test Method D471 in 2010.

1.4This practice gives the necessary background and details on the changeover from the previous oils to the new oils. See Annex A1 for additional information on the commercial oils selected to replace ASTM No. 2 and No. 3 oil and the test program conducted for this selection process. The changeover from ASTM to IRM oils is proposed in two steps:

1.4.1Step 1—A transition phase that makes use of the Equivalent Volume Swell (EVS) for each of the two replacement oils. EVS(902) is the ASTM No. 2 percent volume swell value calculated from the measured percent volume swell value using IRM 902 as the immersion liquid. A similar calculation can be used to calculate the analogous EVS(903) and EVS(903) values. The EVS value is obtained as a correction of the measured IRM 901, 902, or 903 percent volume swell value. The EVS values may be used to determine if volume swell specifications are met when the specifications are expressed in terms of ASTM No. 1, No. 2, or No. 3 limits, and

1.4.2Step 2—A longer term policy change or conversion of specifications from ASTM No. 1, No. 2, and No. 3 values to IRM 901, 902, and 903 values.

1.5The EVS values are calculated on the basis of “correction equations” derived from one of two sources.

1.5.1Correction equations derived from the results of the comprehensive evaluation program conducted to select each of the two replacement oils from a group of three candidate oils for ASTM No. 2 and No. 3 oils. This program is described in Annex A1.

1.5.2Correction equations derived from in-house customized or specific testing programs to make direct comparisons of the volume swell (and other important properties) of the IRM and ASTM oils. These programs should be conducted in each laboratory of those organizations that engage in producer-user specification testing for rubber immersion performance.

1.6This 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, health, and environmental practices and determine the applicability of regulatory limitations prior to use.

1.7This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.

Committee
D 11
DocumentType
Standard Practice
Pages
10
PublisherName
American Society for Testing and Materials
Status
Current
Supersedes

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ASTM D 832 : 2007 : R2018 Standard Practice for Rubber Conditioning For Low Temperature Testing

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ASTM D 1414 : 2022 Standard Test Methods for Rubber O-Rings
ASTM D 445 : 2021 : EDT 2 Standard Test Method for Kinematic Viscosity of Transparent and Opaque Liquids (and Calculation of Dynamic Viscosity)
ASTM D 445 : 2017 : REV A Standard Test Method for Kinematic Viscosity of Transparent and Opaque Liquids (and Calculation of Dynamic Viscosity)
ASTM D 287 : 2022 Standard Test Method for API Gravity of Crude Petroleum and Petroleum Products (Hydrometer/Method)
ASTM D 2008 : 2012 : R2018 Standard Test Method for Ultraviolet Absorbance and Absorptivity of Petroleum Products
ASTM D 2140 : 2008 : R2017 Standard Practice for Calculating Carbon-Type Composition of Insulating Oils of Petroleum Origin
ASTM D 2008 : 2023 Standard Test Method for Ultraviolet Absorbance and Absorptivity of Petroleum Products
ASTM D 1500 : 2012 : R2017 Standard Test Method for ASTM Color of Petroleum Products (ASTM Color Scale)
ASTM D 1418 : 2021 : REV A Standard Practice for Rubber and Rubber Latices—Nomenclature
ASTM D 611 : 2012 : R2016 Standard Test Methods for Aniline Point and Mixed Aniline Point of Petroleum Products and Hydrocarbon Solvents
ASTM D 445 : 2019 : REV A Standard Test Method for Kinematic Viscosity of Transparent and Opaque Liquids (and Calculation of Dynamic Viscosity)
ASTM D 5900 : 2020 Standard Specification for Physical and Chemical Properties of Industry Reference Materials (IRM)
ASTM D 97 : 2017 : REV B Standard Test Method for Pour Point of Petroleum Products
ASTM D 2240 : 2015 : R2021 Standard Test Method for Rubber Property—Durometer Hardness
ASTM D 611 : 2023 Standard Test Methods for Aniline Point and Mixed Aniline Point of Petroleum Products and Hydrocarbon Solvents
ASTM D 287 : 2012 : REV B Standard Test Method for API Gravity of Crude Petroleum and Petroleum Products (Hydrometer Method)
ASTM D 445 : 2019 Standard Test Method for Kinematic Viscosity of Transparent and Opaque Liquids (and Calculation of Dynamic Viscosity)
ASTM D 97 : 2017 : REV B : R2022 Standard Test Method for Pour Point of Petroleum Products
ASTM D 2140 : 2023 : EDT 1 Standard Practice for Calculating Carbon-Type Composition of Insulating Oils of Petroleum Origin
ASTM D 445 : 2024 Standard Test Method for Kinematic Viscosity of Transparent and Opaque Liquids (and Calculation of Dynamic Viscosity)
ASTM D 4678 : 2015 : REV A : R2019 Standard Practice for Rubber—Preparation, Testing, Acceptance, Documentation, and Use of Reference Materials
ASTM D 445 : 2021 Standard Test Method for Kinematic Viscosity of Transparent and Opaque Liquids (and Calculation of Dynamic Viscosity)
ASTM D 2240 : 2015 : EDT 1 Standard Test Method for Rubber Property—Durometer Hardness
ASTM D 1418 : 2022 Standard Practice for Rubber and Rubber Latices—Nomenclature
ASTM D 4052 : 2022 Standard Test Method for Density, Relative Density, and API Gravity of Liquids by Digital Density Meter
ASTM D 445 : 2018 Standard Test Method for Kinematic Viscosity of Transparent and Opaque Liquids (and Calculation of Dynamic Viscosity)
ASTM D 445 : 2021 : EDT 1 Standard Test Method for Kinematic Viscosity of Transparent and Opaque Liquids (and Calculation of Dynamic Viscosity)
ASTM D 2140 : 2023 Standard Practice for Calculating Carbon-Type Composition of Insulating Oils of Petroleum Origin
ASTM D 445 : 2023 Standard Test Method for Kinematic Viscosity of Transparent and Opaque Liquids (and Calculation of Dynamic Viscosity)
ASTM D 4678 : 2015 : REV A : R2023 Standard Practice for Rubber—Preparation, Testing, Acceptance, Documentation, and Use of Reference Materials
ASTM D 287 : 2012 : REV B : R2019 Standard Test Method for API Gravity of Crude Petroleum and Petroleum Products (Hydrometer Method)
ASTM D 1418 : 2021 Standard Practice for Rubber and Rubber Latices—Nomenclature
ASTM D 1414 : 2015 Standard Test Methods for Rubber O-Rings

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