ASTM D4817-1988(2012) Standard Classification for Rubber Compounding MaterialsStearic Acid《橡胶配料的标准分类 硬脂酸》.pdf
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1、Designation: D4817 88 (Reapproved 2012)Standard Classification forRubber Compounding MaterialsStearic Acid1This standard is issued under the fixed designation D4817; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last
2、revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This classification covers the compounding materialscommercially known as stearic acid.1.2 This standard does not purport t
3、o 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 and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2D1466 St
4、andard Test Method for Sampling Liquid Oils andFatty Acids Commonly Used in Paints, Varnishes, andRelated Materials3D1951 Standard Test Method for Ash in Drying Oils andFatty Acids3D1959 Test Method for Iodine Value of Drying Oils andFatty Acids3D1962 Standard Test Method for Saponification Value of
5、Drying Oils, Fatty Acids, and Polymerized Fatty Acids3D1965 Test Method for Unsaponifiable Matter in DryingOils, Fatty Acids, and Polymerized Fatty Acids3D1980 Test Method for Acid Value of Fatty Acids andPolymerized Fatty Acids3D1982 Test Method for Titer of Fatty AcidsD1983 Standard Test Method fo
6、r Fatty Acid Compositionby Gas-Liquid Chromatography of Methyl Esters3D4075 Test Methods for Rubber Compounding MaterialsFlame Atomic Absorption AnalysisDetermination ofMetals3. Significance and Use3.1 Stearic acid is important in the rubber vulcanizationprocess. It is believed that the stearic acid
7、 reacts with zinc-oxide or other metallic oxides, during vulcanization, to form arubber soluble salt or soap, that reacts with the acceleratorenabling it to exert its full effect.3.2 Stearic acid of commerce is generally a mixture ofpalmitic, stearic, and oleic acids usually derived from tallowbase
8、stock but can be derived from other fats and oils of animalor vegetable origins.4. Basis of Classification4.1 Classification of Stearic Acid by Classes:4.1.1 There are several different classes of stearic acid,based on stearic acid content and iodine value. There are twoclasses predominantly used in
9、 rubber compounding.4.1.1.1 Class Number 1: Stearic Acid Containing Unsatu-rated Fatty AcidsStearic acid containing unsaturated acids iscommonly referred to as rubber grade stearic acid. Threegrades are commonly available with low, medium, and highunsaturation. These grades of stearic acid are used
10、in rubbercompounding where unsaturated fatty acids can be tolerated.(See Table 1 for typical analysis of Class 1 stearic acid.)4.1.1.2 Class Number 2Stearic Acid with Low Levels ofUnsaturated Fatty AcidsLow IV:(1) Low iodine value stearic acid is produced in severalgrades. Two grades are commonly us
11、ed in rubber compoundingwhere a 1.0 maximum iodine value is needed. These twogrades are distinguished by their ratios of palmitic to stearicacid content. The physical and chemical properties of thestearic acid will change as the palmitic/stearic acid ratiochanges. The palmitic/stearic ratio may be c
12、hecked by TestMethod D1983. (See Table 2 for a typical analysis of the Class2 stearic acid.)(2) Stearic acid can be made to customer specifications byemploying various processing steps such as hydrogenation tolower iodine value, bleaching with diatomaceous earth to1This classification is under the j
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