ASTM G114-2007 Standard Practices for Evaluating the Age Resistance of Polymeric Materials Used in Oxygen Service《供氧设备用评估聚合物材料耐老化性的标准实施规程》.pdf
《ASTM G114-2007 Standard Practices for Evaluating the Age Resistance of Polymeric Materials Used in Oxygen Service《供氧设备用评估聚合物材料耐老化性的标准实施规程》.pdf》由会员分享,可在线阅读,更多相关《ASTM G114-2007 Standard Practices for Evaluating the Age Resistance of Polymeric Materials Used in Oxygen Service《供氧设备用评估聚合物材料耐老化性的标准实施规程》.pdf(11页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: G 114 07Standard Practices forEvaluating the Age Resistance of Polymeric Materials Usedin Oxygen Service1This standard is issued under the fixed designation G 114; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the ye
2、ar 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.1. Scope1.1 These practices describe several procedures that areused to determine the age resistance of plastic, thermosett
3、ing,and elastomeric materials exposed to oxygen-containing me-dia.1.2 While this practice focuses on evaluating the age resis-tance of polymeric materials in oxygen-containing media priorto ignition and combustion testing, it also has relevance forevaluating the age resistance of metals.1.3 These pr
4、actices address both established procedures thathave a foundation of experience and new procedures that haveyet to be validated. The latter are included to promote researchand later elaboration in this practice as methods of the formertype.1.4 The results of these practices may not give exactcorrela
5、tion with service performance since service conditionsvary widely and may involve multiple factors.1.5 Three procedures are described for evaluating the ageresistance of polymeric materials depending on application andinformation sought.1.5.1 Procedure A: Natural AgingThis procedure is usedto simula
6、te the effect(s) of one or more service stressors on amaterials oxygen resistance, and is suitable for evaluatingmaterials that experience continuous or intermittent exposureto elevated temperature during service.1.5.2 Procedure B: Accelerated Aging Comparative OxygenResistanceThis procedure is suit
7、able for evaluating materialsthat are used in ambient temperature service, or at a tempera-ture that is otherwise lower than the aging temperature, and isuseful for developing oxygen compatibility rankings on alaboratory comparison basis.1.5.3 Procedure C: Accelerated Aging LifetimePredictionThis pr
8、ocedure is used to determine the relation-ship between aging temperature and a fixed level of propertychange, thereby allowing predictions to be made about theeffect of prolonged service on oxidative degradation.1.6 The values stated in SI units are to be regarded as thestandard, however, all numeri
9、cal values must also be cited inthe systems in which they were actually measured.1.7 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 and health practices and de
10、termine the applica-bility of regulatory limitations prior to use. Specific precau-tionary statements are given in Section 10.2. Referenced Documents2.1 ASTM Standards:2D 395 Test Methods for Rubber PropertyCompressionSetD 412 Test Methods for Vulcanized Rubber and Thermo-plastic ElastomersTensionD
11、638 Test Method for Tensile Properties of PlasticsD 1349 Practice for RubberStandard Temperatures forTestingD 1708 Test Method for Tensile Properties of Plastics byUse of Microtensile SpecimensD 2240 Test Method for Rubber PropertyDurometerHardnessD 2512 Test Method for Compatibility of Materials wi
12、thLiquid Oxygen (Impact Sensitivity Threshold and Pass-Fail Techniques)D 2863 Test Method for Measuring the Minimum OxygenConcentration to Support Candle-Like Combustion ofPlastics (Oxygen Index)D 3045 Practice for Heat Aging of Plastics Without LoadD 4809 Test Method for Heat of Combustion of Liqui
13、dHydrocarbon Fuels by Bomb Calorimeter (PrecisionMethod)D 5510 Practice for Heat Aging of Oxidatively DegradablePlasticsG63 Guide for Evaluating Nonmetallic Materials for Oxy-gen Service1These practices are under the jurisdiction of ASTM Committee G04 onCompatibility and Sensitivity of Materials in
14、Oxygen Enriched Atmospheres and isthe direct responsibility of Subcommittee G04.02 on Recommended Practices.Current edition approved March 15, 2007. Published June 2007. Originallyapproved in 1993. Last previous edition approved in 2006 as G 114 06.2For referenced ASTM standards, visit the ASTM webs
15、ite, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United Stat
16、es.G72 Test Method for Autogenous Ignition Temperature ofLiquids and Solids in a High-Pressure Oxygen-EnrichedEnvironmentG74 Test Method for Ignition Sensitivity of Materials toGaseous Fluid ImpactG86 Test Method for Determining Ignition Sensitivity ofMaterials to Mechanical Impact in Ambient Liquid
17、 Oxy-gen and Pressurized Liquid and Gaseous Oxygen Environ-mentsG 125 Test Method for Measuring Liquid and Solid Mate-rial Fire Limits in Gaseous OxidantsG 126 Terminology Relating to the Compatibility and Sen-sitivity of Materials in Oxygen Enriched Atmospheres2.2 Federal Standard:Federal Specifica
18、tion BB-0-925 Oxygen, Technical, Gasand Liquid32.3 Military Standard:MIL-O-27210E Amendment 1Oxygen, Aviators Breath-ing, Liquid and Gas33. Terminology3.1 Definitions of Terms Specific to This Standard:3.1.1 agingsee Terminology G 126.3.1.2 accelerated aginga type of artificial aging wherebythe effe
19、ct of prolonged exposure during service is simulated byaging at elevated temperature.3.1.3 artificial agingsee Terminology G 126.3.1.4 oxidative degradationphysical or mechanical prop-erty changes occurring as a result of exposure to oxygen-containing media.3.1.5 oxygen-containing mediaair media con
20、taininggreater than 21 mole % oxygen, or oxygen-enriched mediacontaining greater than 25 mole % oxygen.3.1.6 oxygen resistanceresistance of a material to ignitespontaneously, propagate by sustained combustion, or undergooxidative degradation.3.1.7 oxygen serviceapplications involving the produc-tion
21、, storage, transportation, distribution, of use of oxygen-containing media.3.1.8 natural agingsee Terminology G 126.3.1.9 physical agingaging that occurs during normal stor-age which is a function of time after production.4. Summary of Practice4.1 These practices can be used to evaluate systematical
22、lythe effect of natural aging (Procedure A) or accelerated aging(Procedures B and C) on oxygen resistance. To apply itsprinciple, the user first characterizes the material, then subjectsthe material to an aging stressor or stressors, followed byre-characterizing the material. Caution must be taken i
23、n inter-preting results because interactions occurring in service may bedifferent than those simulated during aging.4.2 It is always more accurate, although not always practi-cal, to determine the effect of natural aging (Procedure A)without resorting to accelerated aging (Procedures B and C).Accele
24、rated aging procedures are more useful for determiningmaterial rankings (Procedure B) or for making lifetime predic-tions (Procedure C).4.3 Summary of Practice for Evaluating the Effect of Agingin Incident Studies:4.3.1 In incident studies, in which initial characterizationdata are not available, hi
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