ASTM G126-2000 Standard Terminology Relating to the Compatibility and Sensitivity of Materials in Oxygen Enriched Atmospheres《氧浓缩气氛中材料相容性和灵敏性标准术语》.pdf
《ASTM G126-2000 Standard Terminology Relating to the Compatibility and Sensitivity of Materials in Oxygen Enriched Atmospheres《氧浓缩气氛中材料相容性和灵敏性标准术语》.pdf》由会员分享,可在线阅读,更多相关《ASTM G126-2000 Standard Terminology Relating to the Compatibility and Sensitivity of Materials in Oxygen Enriched Atmospheres《氧浓缩气氛中材料相容性和灵敏性标准术语》.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: G 126 00Standard Terminology Relating to theCompatibility and Sensitivity of Materials in OxygenEnriched Atmospheres1This standard is issued under the fixed designation G 126; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revi
2、sion, 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.1. Scope1.1 This terminology defines terms related to the compat-ibility and sensitivity of materials in oxygen
3、 enriched atmo-spheres. It includes those standards under the jurisdiction ofASTM Committee G-4.1.2 The terminology concentrates on terms commonly en-countered in and specific to practices and methods used toevaluate the compatibility and sensitivity of materials inoxygen. This evaluation is usually
4、 performed in a laboratoryenvironment, and this terminology does not attempt to includelaboratory terms.2. Referenced Documents2.1 ASTM Standards:G63 Guide for Evaluating Nonmetallic Materials for Oxy-gen Service2G72 Test Method for Autogenous Ignition Temperature ofLiquids and Solids in a High-Pres
5、sure Oxygen-EnrichedEnvironment2G 74 Test Method for Ignition Sensitivity of Materials toGaseous Fluid Impact2G 86 Test Method for Determining Ignition Sensitivity ofMaterials to Mechanical Impact in Pressurized OxygenEnvironments2G88 Guide for Designing Systems for Oxygen Service2G93 Practice for C
6、leaning Methods for Material andEquipment Used in Oxygen-Enriched Environments2G94 Guide for Evaluating Metals for Oxygen Service2G114 Practice forAging Oxygen-Service Materials Prior toFlammability Testing2G 120 Practice for Determination of Soluble Residual Con-tamination in Materials and Componen
7、ts by Soxhlet Ex-traction2G 121 Practice for Preparation of Contaminated Test Cou-pons for the Evaluation of Cleaning Agents2G 122 Test Method for Evaluating the Effectiveness ofCleaning Agents2G 124 Test Method for Determining the Combustion Be-havior of Metallic Materials in Oxygen-Enriched Atmo-s
8、pheres2G 125 Test Method for Measuring Liquid and Solid Mate-rial Fire Limits in Gaseous Oxidants2G 127 Guide for the Selection of Cleaning Agents forOxygen Systems2G 128 Guide for Control of Hazards and Risks in OxygenEnriched Systems2G 131 Practice for Cleaning of Materials and Componentsby Ultras
9、onic Techniques2G 136 Practice for Determination of Soluble Residual Con-taminants in Materials by Ultrasonic Extraction2G 144 Test Method for Determination of Residual Contami-nation of Materials and Components by Total CarbonAnalysis Using a High Temperature Combustion Ana-lyzer2G 145 Guide for St
10、udying Fire Incidents in Oxygen Sys-tems23. Terminology3.1 Definitions:autoignition temperature (AIT), nthe lowest temperatureat which a material will spontaneously ignite in an oxygen-enriched atmosphere under specific test conditions.G63, G72, G94, G 128contaminant, nunwanted molecular or particul
11、ate matterthat could adversely affect or degrade the operation, life, orreliability of the systems or components upon which itresides. G93, G 120, G 121, G 131, G 136, G 144contaminate, vto make unfit for use, either intentionally orunintentionally, by introduction of a contaminant. G 131,G 136conta
12、mination, n(1) the amount of unwanted molecular orparticulate matter in a system; (2) the process or condition ofbeing contaminated.1This terminology is under the jurisdiction of ASTM Committee G04 onCompatibility and Sensitivity of Materials in Oxygen Enriched Atmospheres and isthe direct responsib
13、ility of Subcommittee G04.03 on Terminology.Current edition approved March 10, 2000. Published June 2000. Originallypublished as G 126 94. Last previous edition G 126 94.2Annual Book of ASTM Standards, Vol 14.04.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA
14、 19428-2959, United States.DISCUSSIONContamination and cleanliness are opposing properties:increasing cleanliness implies decreasing contamination.G93, G 120, G 121, G 131, G 136, G 144control coupon (also witness coupon), n(1) a coupon madefrom the same material and prepared in exactly the same way
15、as the test coupons which is used to verify the validity of themethod or part thereof (G 120, G 131); (2) a coupon madefrom the same material as the test coupons but in this testmethod is not coated with the contaminant (G 121).DISCUSSION(1) in this practice, the control coupon is contaminatedin the
16、 same manner as the test coupons and is subjected to the identicalextraction procedure (G 120); (2) in this practice, the control coupon iscontaminated in the same manner as the test coupons and is subjectedto the identical cleaning procedure (G 131).degas, vthe process of removing gases from a liqu
17、id.G 131, G 136direct oxygen service, nservice in contact with oxygen-enriched atmosphere during normal operations. G63,G88, G94DISCUSSIONExamples are oxygen compressor piston rings or con-trol valve seats.impact-ignition resistance, nthe resistance of a material toignition when struck by an object
18、in an oxygen-enrichedatmosphere under a specific test procedure.G63, G94, G 128indirect oxygen service, nservice in which oxygen is notnormally but may be contacted as a result of an operatorerror, or process disturbance, such as liquid oxygen tankinsulation or liquid oxygen pump motor bearings. G63
19、,G88, G94DISCUSSIONExamples include, liquid oxygen tank insulation orliquid oxgen pump motor bearings.maximum use pressure, nthe greatest pressure to which amaterial can be subjected as a result of a reasonablyforeseeable malfunction, operator error or process distur-bance. G63, G94maximum use tempe
20、rature, nthe greatest temperature towhich a material can be subjected as a result of a reasonablyforeseeable malfunction, operator error, or process distur-bance. G63, G94molecular contaminant, nnonparticulate contaminant thatmay exist in either a gaseous, liquid, or solid state.DISCUSSIONMolecular
21、contaminant may be uniformly or nonuni-formly distributed as a solution or an emulsion or may be in the formof droplets. Molecular contaminants account for most of what consti-tutes nonvolatile residue. G 120, G 121, G 136, G 144nonmetal, nany material other than a metal, nonpolymericalloy, or any c
22、omposite in which the metallic component isnot the most easily ignited component and for which theindividual constituents cannot be evaluated independently,including (ceramics, such as glass, synthetic polymers, suchas most rubbers, thermoplastics, and thermosets, and naturalpolymers, such as natura
23、lly occurring rubber, wood, andcloth.) Nonmetallic is the adjective form of this term.G63, G93, G94, G 128nonvolatile residue (NVR), nmolecular or particulate mat-ter remaining following the filtration and controlled evapo-ration of a liquid containing contaminants.G 120, G 121, G 131, G 136, G 144o
24、perating pressure, nthe pressure expected under normaloperating conditions. G63, G94operating temperature, nthe temperature expected undernormal operating conditions. G63, G94oxygen compatibility (also oxidant compatibility), ntheability of a substance to coexist with both oxygen and apotential sour
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