ASTM D5964-1996(2001) Standard Practice for Rubber IRM 902 and IRM 903 Replacement Oils for ASTM No 2 and ASTM No 3 Oils《用ASTM 2号和ASTM 3 号油代替IRM 902号和IRM 903号橡胶用实用规程》.pdf
《ASTM D5964-1996(2001) Standard Practice for Rubber IRM 902 and IRM 903 Replacement Oils for ASTM No 2 and ASTM No 3 Oils《用ASTM 2号和ASTM 3 号油代替IRM 902号和IRM 903号橡胶用实用规程》.pdf》由会员分享,可在线阅读,更多相关《ASTM D5964-1996(2001) Standard Practice for Rubber IRM 902 and IRM 903 Replacement Oils for ASTM No 2 and ASTM No 3 Oils《用ASTM 2号和ASTM 3 号油代替IRM 902号和IRM 903号橡胶用实用规程》.pdf(7页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D 5964 96 (Reapproved 2001)Standard Practice forRubber IRM 902 and IRM 903 Replacement Oils forASTM No. 2 and ASTM No. 3 Oils1This standard is issued under the fixed designation D 5964; the number immediately following the designation indicates the year oforiginal adoption or, in the ca
2、se of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.INTRODUCTIONTest Method D 471 was revised in February 1995, establishing IRM 902 and IRM 903 asreplac
3、ements for ASTM No. 2 and No. 3 immersion oils, respectively. Unlike ASTM No. 2 and No.3 oils, the two IRM oils are severely hydrotreated, have a demonstrated negative Ames test and do notrequire cancer warning labels under the OSHA Hazard Communication Standard published inNovember 1983. Although i
4、t was attempted to match the effect of the ASTM oils on rubber propertiesin immersion testing as closely as possible, in general, neither of the IRM oils produces test resultsexactly identical to the ASTM oils it replaced.The selections for replacement oils were made on the basis of an objective com
5、prehensive testprogram as described in this practice and decisions on the data generated in this program were madein open meetings of Subcommittee D11.15. The SAE Committee on Automotive Rubber Specifica-tions (CARS) made a recommendation on the replacement oils that was identical to the decisions m
6、adeby D11.15.This practice addresses the need for establishing a correlation between test results obtained withIRM versus ASTM oils, based on results of the described test program. Although the test program wasquite comprehensive, it cannot begin to address the numerous variations in compound recipe
7、s used inthe rubber industry. Correlations established by this practice may therefore not always providesatisfactory results. In this case it is suggested that other approaches be used, such as a directcomparison of each specific rubber compound in the respective ASTM and IRM oils. All newspecificat
8、ions, including oil immersion testing, shall be established using IRM 902 and IRM 903 inplace of ASTM No. 2 and No. 3 oils, respectively.1. Scope1.1 This practice covers two new immersion oils to be usedas replacements for ASTM No. 2 and No. 3 immersion oils ascalled for in Test Method D 471. The ne
9、w immersion oils willbe designated as IRM 902 as a replacement for ASTM No. 2 oiland IRM 903 as a replacement for ASTM No. 3 oil. The newreference oils have been developed under a new CommitteeD11 policy on reference materials (see Practice D 4678 forbackground on the new policy and procedures).1.2
10、The new oils, IRM 902 and IRM 903, are similar but notfully equivalent to ASTM No. 2 and ASTM No. 3 oil,respectively.1.3 This practice gives the necessary background and detailson the changeover from the previous oils to the new oils. SeeAnnex A1 for additional information on the commercial oilssele
11、cted to replace the two ASTM oils and the test programconducted for this selection process. The changeover fromASTM to IRM oils is proposed in two steps:1.3.1 Step 1A transition phase that makes use of theEquivalent Volume Swell (EVS) for each of the two replace-ment oils. EVS(902) is the ASTM No. 2
12、 percent volume swellvalue calculated from the measured percent volume swell valueusing IRM 902 as the immersion liquid. A similar calculationcan be used to calculate the analogous EVS(903) value. EitherEVS value is obtained as a correction of the measured IRM 902or 903 percent volume swell value. T
13、he EVS values may beused to determine if volume swell specifications are met whenthe specifications are expressed in terms of ASTM No. 2 or No.3 limits, and1.3.2 Step 2A longer term policy change or conversion ofspecifications from ASTM No. 2 and No. 3 values to IRM 902and 903 values.1.4 The EVS val
14、ues are calculated on the basis of “correc-tion equations” derived from one of two sources.1.4.1 Correction equations derived from the results of thecomprehensive evaluation program conducted to select each of1This practice is under the jurisdiction of ASTM Committee D11 on Rubber andis the direct r
15、esponsibility of Subcommittee D11.15 on Degradation Tests.Current edition approved June 10, 1996. Published July 1996.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.the two replacement oils from a group of three candidate oilsfor ea
16、ch ASTM oil. This program is described in Annex A1.1.4.2 Correction equations derived from in-house custom-ized or specific testing programs to make direct comparisons ofthe volume swell (and other important properties) of the twoIRM and ASTM oils. These programs should be conducted ineach laborator
17、y of those organizations that engage in producer-user specification testing for rubber immersion performance.1.5 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
18、 and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:D 92 Test Method for Flash and Fire Points by ClevelandOpen Cup2D 97 Test Method for Pour Point of Petroleum Products2D 287 Test Method for API Gravity of Crude Pet
19、roleum andPetroleum Products (Hydrometer Method)3D 412 Test Methods for Vulcanized Rubber and Thermo-plastic Rubbers and Thermoplastic Elastomers Tension4D 445 Test Method for Kinematic Viscosity of Transparentand Opaque Liquids (and the Calculation of DynamicViscosity)2D 471 Test Method for Rubber
20、PropertyEffect of Liq-uids4D 611 Test Methods for Aniline Point and Mixed AnilinePoint of Petroleum Products and Hydrocarbon Solvents2D 1414 Test Methods for Rubber O-Rings5D 1418 Practice for Rubber and Rubber LaticesNomenclature4D 1500 Test Method for Color of ASTM Petroleum Prod-ucts (ASTM Color
21、Scale)2D 1747 Test Method for Refractive Index of Viscous Mate-rials2D 2000 Classification System for Rubber Products in Auto-motive Applications5D 2008 Test Method for Ultraviolet Absorbance and Ab-sorptivity of Petroleum Products2D 2140 Test Method for Carbon-Type Composition of In-sulating Oils o
22、f Petroleum Origin6D 2240 Test Method for Rubber PropertyDurometerHardness4D 4483 Practice for Determining Precision for Test MethodStandards in the Rubber and Carbon Black Industries4D 4678 Practice for RubberPreparation, Testing, Accep-tance, Documentation, and Use of Industry ReferenceMaterials43
23、. Significance and Use3.1 The two reference immersion oils described in thispractice are required for the development of oil-resistant rubbercompounds for use in environments where contact withpetroleum-based solvents and oils is encountered. Tests fortensile strength, percent elongation at break, h
24、ardness, andpercent volume swell are performed after a specified immer-sion time period (at a specified temperature) in the evaluationof oil-resistant rubbers. The results of such testing by rubberproduct manufacturers and their customers are used to developoil-resistant rubbers or compounds, or bot
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