Appendix – International Standards

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1097Standardisation of materials characterisationmethods is needed for various reasons, forexample: To provide the basis for measurements andtests that can be compared confidently withthose made by others around the world,To ensure that a material conforms to a technical specification of characteristics,To be used in the design of a component orstructureTo support investigations into the reasons forfailures in service.In addition, the results achieved from materials measurement and testing help guaranteethe quality, safety and reliability of products,components, and technical systems.The importance of measurement, testing andstandardisation to science, technology, and economy was expressed as follows by the Commissionof the European Union:There is no science without measurements, noquality without testing and no global marketswithout standards.Introducing the compilation of standards in the Appendix of this Handbook, some general remarks onstandardisation in this field should be made.Work on standardisation of materials measurementand test methods started between 1920 and 1930 forthe various methods in the individual countries. Therefore, the National, European and ISO standards partlyhave contained different specifications. Whereas it isgenerally accepted to strive for a complete alignmentof standards at all standardization levels, problems canarise from the interlining of existing national standardsand new supranational standards (e.g. ISO/EN). Whenadopting a supranational standard as a national stanAATCCANSIdard, it must be ensured that the supranational standard adopted e.g. as DIN EN ISO in no way contradictrelevant national standards. In most cases the relevantnational standard will be cancelled.However, it might happen that the new EN ISO standard covers only a part of the existing national standard.In these cases it must be decided whether the part notcovered by the new EN ISO standard can be abandonedor whether this part contains specifications that mustbe retained due to their relevance for the national economic region. In the latter case it will be maintained asa so-called “residual standard”.A further important purpose of standardization workis to decrease the measurement uncertainty of the testmethods and to give the users of standards guidelines tohandle.With the publication of EN ISO/IEC 17025 “Generalrequirements for the competency of testing and calibrating laboratories”, the test or calibration certificatesprovided by the laboratories shall incorporate the measurement results received including the measurementuncertainty. From these data it shall be possible to gatherthat the metrological specifications have been fulfilled.Moreover, it shall be ensured that the measurement results are converted back to SI units using a metrologicalchain.In this Appendix of the Springer Handbook of Materials Measurement Methods a collection of standardsrelated to the different chapters of this Handbook is compiled. The chapter standard collections are selective andnot complete; they differ in scope and volume and depend on the field and the state of the art of the pertinentstandards’ developments.The references listed comprise the symbol S for standard, the number of the chapter, the continued numbers(separate for each chapter), the name of the editing standards organization, the standards’ notation, the year ofpublication, and the title of the standard. For the abbreviations of the standards organizations see the followingexplanation including the internet adress:American Association of Textile Chemists and Colorists PO Box 12215, Research Triangle Park,NC 27709, USA, http://www.aatcc.orgAmerican National Standards Institute 11 West 42nd Street, 13th floor, New York, NY 10036, USA,http://www.ansi.orgInt. StandardsAppendix – International Standards

1098PartAppendix – International StandardsInt. AS/NZS, Standards Australia, available: Beuth Verlag, Berlin, Germany, Foreign Standards Service,http://www.standards.com.auAmerican Society for Testing and Materials 1916 Race Street, Philadelphia, PA 19103-1187, USA,http://www.astm.orgAmerican Wood-Preserver’s Association, P.O. Box 388, Selma, AL 36702-0388 USA,http://www.awpa.comBritish Standards Instituion 389 Chiswick High Road, London W4 4AL, UK, http://www.bsiglobal.comGerman Standard (Deutsches Institut für Normung, DIN) 10772 Berlin, Germany,http://www.din.deEuropean Standard (CEN-European Committee for Standardization) Rue de Stassart 36, B-1050Brussels, Belgium, http://www.cenorm.beInternational Electrotechnical Committee Rue de Varembé 3 P.O. Box 131, CH-1211 Geneva 20,Switzerland, http://iso.chInternational Standards Organization Rue de Varembé 1 P.O. Box 56, CH-1211 Geneva 20,Switzerland, http://www.iec.chJapanese Standard (JISC - Japanese Industrial Standards Committee) Agency of Industrial Scienceand Technology Ministry of International Trade and Industry 1-3-1, Kasumigaseki, Chiyoda-Ku,Tokyo 100, Japan, http://www.jisc.jpFrench Standard (AFNOR - Association française de normalisation) 11, avenue Francis dePressensé, 93571 Saint-Denise La Phaine Cedex, France, http://afnor.frOrganisation Internationale de Métrologie Légale 11, Rue Turgot, 75009 Paris, t” Verein Deutscher Eisenhüttenleute, Verlag Stahleisen GmbH, P.O. BOX10 51 64, 40042 Düsseldorf, Germany, http://www.stahleisen.deSwiss Association for Standardization (SNV) Mühlebachstraße 54, CH-8008 Zurich, Switzerland,http://www.snv.chVerein Deutscher Ingenieure P.O. Box 101139, 40002 Düsseldorf, Germany, http://www.vdi.dePart B Measurement Methods for Composition and StructureChapter 4 Chemical CompositionChemical Separations (4.1.2)S-4-1 ANSI/ASTM D 6042: 1996-00-00S-4-2 ANSI/ASTM D 6060: 2001-00-00S-4-3 ANSI/ASTM D 6159: 1997-00-00S-4-4 ANSI/ASTM D 6420: 2001-00-00S-4-5 ANSI/ASTM D 6733: 2001-00-00S-4-6 ASTM D 4626: 1995-00-00Test Method for Determination of Phenolic Antioxidants and Erucamide Slip Additives in Polypropylene Homopolymer Formulations Using Liquid Chromatography(LC)Practice for Sampling of Process Vents with a Portable Gas ChromatographTest Method for Determination of Hydrocarbon Impurities in Ethylene by GasChromatography/Note: reaffirmation of ANSI/ASTM D6159-1997Test Method for Determination of Gaseous Organic Compounds by Direct InterfaceGas Chromatography-Mass SpectrometryTest Method for Determination of Individual Components in Spark Ignition EngineFuels by 50 Meter Capillary High Resolution Gas ChromatographyStandard Practice for Calculation of Gas Chromatographic Response Factors / Note:Reapproved 2000

Appendix – International StandardsS-4-8 ASTM D 5917: 2002-00-00S-4-9 ASTM D 6060: 1996-00-00S-4-10 ASTM E 260: 1996-00-00S-4-11 ASTM E 355: 1996-00-00S-4-12 ASTM E 682 ANSI E 682: 199200-00S-4-13 ASTM E 685 ANSI E 685: 199300-00S-4-14 ASTM E 697: 1996-00-00S-4-15 ASTM E 840: 1995-00-00S-4-16 ASTM E 1140: 1995-00-00S-4-17 ASTM E 1303: 1995-00-00S-4-18 ASTM E 1449: 1992-00-00S-4-19 ASTM E 1510: 1995-00-00S-4-20 ASTM E 1642: 2000-00-00S-4-21 ASTM E 1657: 1998-00-00S-4-22 ASTM E 1698: 1995-00-00S-4-23S-4-24S-4-25S-4-26S-4-27ISO 2718: 1974-04-00JIS K 0114: 2000-07-20JIS K 0115: 1992-02-01JIS K 0123: 1995-04-01OIML R 83: 1990-00-00S-4-28 OIML R 113: 1994-00-00Standard Test Method for Boiling Point Distribution of Hydrocarbon Solvents by GasChromatography/ Note: Reapproved 2000Standard Test Method for Trace Impurities in Monocyclic Aromatic Hydrocarbons by GasChromatography and External CalibrationStandard Practice for Sampling of Process Vents With a Portable Gas Chromatograph /Note: Reapproved 2001Standard Practice for Packed Column Gas Chromatography / Note: Reapproved 2001Standard Practice for Gas Chromatography Terms and Relationships / Note: Reapproved2001Standard Practice for Liquid Chromatography Terms and Relationships / Note: Reapproved2000Standard Practice for Testing Fixed-Wavelength Photometric Detectors Used in LiquidChromatography / Note: Reapproved 2000Standard Practice for Use of Electron-Capture Detectors in Gas Chromatography / Note:Reapproved 2001Standard Practice for Using Flame Photometric Detectors in Gas Chromatography / Note:Reapproved 2000Standard Practice for Testing Nitrogen/Phosphorus Thermionic Ionization Detectors forUse In Gas Chromatography / Note: Reapproved 2000Practice for Refractive Index Detectors Used in Liquid Chromatography / Note: Reapproved 2000Standard Guide for Supercritical Fluid Chromatography Terms and Relationships / Note:Reapproved 2000Standard Practice for Installing Fused Silica Open Tubular Capillary Columns in GasChromatographs / Note: Reapproved 2000Standard Practice for General Techniques of Gas Chromatography Infrared (GC/IR)AnalysisStandard Practice for Testing Variable-Wavelength Photometric Detectors Used in LiquidChromatography / Note: Reapproved 2001Standard Practice for Testing Electrolytic Conductivity Detectors (ELCD) Used in GasChromatography / Note: Reapproved 2000Standard layout for a method of chemical analysis by gas chromatographyGeneral rules for gas chromatographic analysisGeneral rules for molecular absorptiometric analysisGeneral rules for analytical methods in gas chromatography mass spectrometryGas chromatograph/mass spectrometer/data system for analysis of organic pollutants inwaterPortable gas chromatographs for field measurements of hazardous chemical pollutants;Elemental Analysis (4.1.3)S-4-29 ANSI/ASTM D 4739: 2002-00-00Test Method for Base Number Determination by Potentiometric Titration (05.03) /Note: revision of ANSI/ASTM 4739-1996S-4-30 ANSI/ASTM E 1775: 2001-00-00Guide for Evaluating the Performance of On-Site Extraction and Field-PortableElectrochemical or Spectrophotometric Analysis for Lead / Note: revision ofANSI/ASTM E1775-96S-4-31 ASTM D 3610: 2000-00-00Standard Test Method for Total Cobalt In Alumina-Base Cobalt-MolybdenumCatalyst by Potentiometric Titration MethodS-4-32 ASTM D 3908: 1999-00-00Standard Test Method for Hydrogen Chemisorption on Supported Platinum onAlumina Catalysts and Catalyst Carriers By Volumetric Vacuum MethodS-4-33 ASTM D 4739: 2002-00-00Standard Test Method for Base Number Determination by Potentiometric TitrationS-4-34 ASTM E 473: 2000-00-00Standard Terminology Relating to Thermal Analysis1099Int. StandardsS-4-7 ASTM D 5399: 1995-00-00Part B Measurement Methods for Composition and Structure

1100PartAppendix – International StandardsInt. StandardsS-4-35 ASTM E 967: 1997-00-00S-4-36 ASTM E 1356: 1998-00-00S-4-37 ASTM E 1371: 1990-00-00S-4-38 ASTM E 1775: 2001-00-00S-4-39 ASTM E 1782: 1998-00-00S-4-40 ASTM E 1805: 2002-00-00S-4-41 ASTM E 1867: 2001-00-00S-4-42 ASTM E 1952: 2001-00-00S-4-43S-4-44S-4-45S-4-46S-4-47S-4-48ASTM E 1953: 2002-00-00ASTM E 1970: 2001-00-00ASTM E 2038: 1999-00-00ASTM E 2046:ASTM E 2161: 2001-00-00DIN 12650-7: 1983-11-00S-4-49 DIN 28417: 1976-03-00S-4-50 DIN 50502:S-4-51 DIN 50507: 1977-07-00S-4-52 DIN 50508: 1977-06-00S-4-53 DIN 51004: 60DIN 51005: 1999-12-00DIN 51005: 1993-08-00DIN 51006: 2000-01-00DIN 51006: 1990-10-00DIN 51007: 1994-06-00DIN 53240-2: 1998-10-00DIN EN 10036: 1990-04-00S-4-61 DIN EN 10071: 1990-04-00S-4-62 DIN EN 12441-1: 2002-02-00S-4-63 DIN EN 24938: 1992-10-00S-4-64 DIN EN 27527: 1992-02-00S-4-65 DIN EN ISO 4934: 2003-02-00Standard Practice for Temperature Calibration of Differential Scanning Calorimetersand Differential Thermal AnalyzersStandard Test Method for Assignment of the Glass Transition Temperatures by Differential Scanning Calorimetry or Differential Thermal AnalysisStandard Test Method for Gravimetric Determination of Phosphorus in PhosphorusCopper Alloys or Phosphorus-Copper-Silver Alloys / Note: Reapproved 1999Standard Guide for Evaluating Performance of On-Site Extraction and Field-PortableElectrochemical or Spectrophotometric Analysis for LeadStandard Test Method for Determining Vapor Pressure by Thermal AnalysisStandard Test Method for Fire Assay Determination of Gold in Copper Concentratesby GravimetryStandard Test Method for Temperature Calibration of Dynamic Mechanical AnalyzersStandard Test Method for Thermal Conductivity and Thermal Diffusivity by ModulatedTemperature Differential Scanning CalorimetryStandard Practice for Description of Thermal Analysis ApparatusStandard Practice for Statistical Treatment of Thermoanalytical DataStandard Test Method for Temperature Calibration of Dielectric AnalyzersStandard Test Method for Reaction Induction Time by Thermal AnalysisStandard Terminology Relating to Performance Validation in Thermal AnalysisMechanical, physical and electrical laboratory apparatus; piston operated volumetricapparatus; testing of the metrological reliability, photometrically, titrimetrically andwith volumetric calibrated vesselsVacuum technology; measurement of throughput by the volumetric method at constantpressureChemical analysis of copper and copper alloys – Determination of copper in unalloyedcopper containing not less than 99.90% of copperChemical analysis of copper and copper alloys; determination of lead, extractingtitration methodChemical analysis of copper and copper alloys; determination of tin as alloying element,volumetric methodThermal analysis; determination of melting temperatures of crystalline materials bydifferential thermal analysisThermal Analysis (TA) – TermsThermal analysis; termsThermal analysis (TA) – Thermogravimetry (TG) – PrinciplesThermal analysis; principles of thermogravimetryThermal analysis; differential thermal analysis; principlesDetermination of hydroxyl value – Part 2: Method with catalystChemical analysis of ferrous materials; determination of total carbon in steel andiron; gravimetric method after combustion in a stream of oxygen; german version EN10036:1989Chemical analysis of ferrous materials; determination of manganese in steel and iron;electrometric titration method; German version EN 10071:1989Zinc and zinc alloys – Chemical analysis – Part 1: Determination of aluminium in zincalloys; Titrimetric method; German version EN 12441-1:2001Determination of nickel content of steel and iron by gravimetry or volumetric analysis(ISO 4938:1988); German version EN 24938:1990Nickel, ferronickel and nickel alloys; determination of sulfur content; iodimetric titration method after induction furnace combustion (ISO 7527:1985); German version EN27527:1991Steel and iron – Determination of sulphur content – Gravimetric method (ISO/DIS4934:2002); German version prEN ISO 4934:2002

Appendix – International StandardsS-4-82 JIS B 7607: 1994-04-01S-4-83 JIS K 0067: 1992-05-01S-4-84 JIS K 0113: 1997-09-20S-4-85 JIS K 0129: 1994-03-01S-4-86 JIS K 0213: 1991-12-01S-4-87 JIS K 0214: 1983-03-01S-4-88 NF B30-108-1,NF ISO 4802-1: 1989-08-01S-4-89 NF B35-042:1973-03-01S-4-90 NF B35-655-6,NF EN ISO 8655-6: 2003-04-01S-4-91 NF T01-060-3,NF ISO 6353-2/AD2: 1987-11-01S-4-92 OIML R 31: 1995-00-00S-4-93 OIML R 32: 1989-00-00Piston-operated volumetric apparatus – Part 1: Terminology, general requirements and userrecommendations (ISO 8655-1:2002); German version EN ISO 8655-1:2002Piston-operated volumetric apparatus – Part 2: Piston pipettes (ISO 8655-2:2002); Germanversion EN ISO 8655-2:2002Piston-operated volumetric apparatus – Part 3: Piston burettes (ISO 8655-3:2002); Germanversion EN ISO 8655-3:2002Piston-operated volumetric apparatus – Part 4: Dilutors (ISO 8655-4:2002); German versionEN ISO 8655-4:2002Piston-operated volumetric apparatus – Part 5: Dispenser (ISO 8655-5:2002); German versionEN ISO 8655-5:2002Piston-operated volumetric apparatus – Part 6: Gravimetric methods for the determination ofmeasurement error (ISO 8655-6:2002); German version EN ISO 8655-6:2002Copper alloys; Determination of iron content; Na2 EDTA titrimetric method; identical withISO 4748, edition 1984Gas analysis – Preparation of calibration gas mixtures – Weighing methodsGas analysis; preparation of calibration gas mixtures; static volumetric methodsLaboratory glassware; One-mark pipettesDetermination of water; Karl Fischer method (General method)Copper alloys; Determination of tin as alloying element; Volumetric methodCopper and copper alloys; Determination of lead; Extracting titration methodCopper alloys; Determination of iron content; Na2 EDTA titrimetric methodSteel and iron; determination of nickel content; gravimetric or titrimetric methodCarbonaceous materials for the production of aluminium; pitch for electrodes; determinationof sulfur content by the bomb methodAutomatic checkweighing and weight grading instrumentsTest methods for loss and residue of chemical productsGeneral rules for methods of potentiometric, amperometric, coulometric, and Karl-FischertitrationsGeneral rules for thermal analysisTechnical terms for analytical chemistry (Electrochemistry division)Technical terms for analytical chemistry (chromatography part)Glassware. Hydrolytic resistance of the interior surfaces of glass containers. Part 1: determination by titration method and classification.Pyknometer Jaulmes type.Piston-operated volumetric apparatus – Part 6: gravimetric methods for the determination ofmeasurement error.Reagents for chemical analysis. Specifications. Part 3: primary standard. Sodium carbonate.Diaphragm gas metersRotary piston gas meters and turbine gas meters;Physical Methods for the Measurement of Chemical Composition (4.2)S-4-94 ANSI/ASTM D 1976:1996-00-00S-4-95 ANSI/ASTM D 2650:1999-00-00S-4-96 ANSI/ASTM D 3649a:1998-00-00Test Method for Elements in Water by Inductively-Coupled Argon Plasma Atomic EmissionSpectroscopyChemical Composition of Gases by Mass Spectrometry, Test Method for (05.02, 05.05) / Note:revision of ANSI/ASTM D2650-88Test Method for High-Resolution Gamma-Ray Spectrometry of Water / Note: 2. revision 1998.1101Int. StandardsS-4-66 DIN EN ISO 8655-1: 200212-00S-4-67 DIN EN ISO 8655-2: 200212-00S-4-68 DIN EN ISO 8655-3: 200212-00S-4-69 DIN EN ISO 8655-4: 200212-00S-4-70 DIN EN ISO 8655-5: 200212-00S-4-71 DIN EN ISO 8655-6: 200212-00S-4-72 DIN ISO 4748:1986-07-00S-4-73 DIN ISO 6142:1985-05-00S-4-74 DIN ISO 6144:1985-05-00S-4-75 ISO 648: 1977-12-00S-4-76 ISO 760: 1978-12-00S-4-77 ISO 3111: 1975-07-00S-4-78 ISO 3112: 1975-07-00S-4-79 ISO 4748: 1984-04-00S-4-80 ISO 4938: 1988-12-00S-4-81 ISO 9055: 1988-12-00Part B Measurement Methods for Composition and Structure

1102PartAppendix – International StandardsInt. StandardsS-4-97 ANSI/ASTM D 4628: 2002-00-00Analysis of Barium, Calcium, Magnesium, and Zinc in Unused Lubricating Oilsby Atomic Absorption Spectrometry, Method for (05.02) / Note: revision ofANSI/ASTM D4628-1997S-4-98 ANSI/ASTM D 6732: 2002-00-00Test Method for the Determination of Copper in Jet Fuels by Graphite FurnaceAtomic Absorption Spectrometry / Note: revision of ANSI/ASTM D6732-2001S-4-99 ANSI/ASTM D 6785: 2002-00-00Test Method for Determination of Lead in Workplace Air Using Flame or GraphiteFurnace Atomic Absorption SpectrometryS-4-100 ANSI/ASTM E 1727: 1999-00-00Practice for Field Collection of Soil Samples for Lead Determination by AtomicSpectrometry Techniques (04.11) / Note: revision of ANSI/ASTM E1727-95S-4-101 ANSI/ASTM E 1729: 1999-00-00Practice for Field Collection of Dried Paint Samples for Lead Determination byAtomic Spectrometry Techniques (04.11) / Note: revision of ANSI/ASTM E1729-95S-4-102 ASTM B 890: 2002-00-00Standard Test Method for Determination of Metallic Constituents of TungstenAlloys and Tungsten Hardmetals by X-Ray Fluorescence SpectrometryS-4-103 ASTM C 1111: 1998-00-00Standard Test Method for Determining Elements in Waste Streams by InductivelyCoupled Plasma-Atomic Emission SpectroscopyS-4-104 ASTM C 1118: 1989-00-00Standard Guide for Selecting Components for Wavelength-Dispersive X-Ray Fluorescence (XRF) Systems / Note: Reapproved 2000S-4-105 ASTM C 1163: 1998-00-00Standard Test Method for Mounting Actinides for Alpha Spectrometry UsingNeodymium FluorideS-4-106 ASTM C 1508: 2001-00-00Stan

S-4-22 ASTM E 1698: 1995-00-00 Standard Practice for Testing Electrolytic Conductivity Detectors (ELCD) Used in Gas Chromatography / Note: Reapproved 2000 S-4-23 ISO 2718: 1974-04-00 Standard layout for a method of chemical analysis by gas chromatography S-4-24 JIS K 0114: 2000-07-20 General rules for gas chromatographic analysis S-4-25 JIS K 0115: 1992-02-01 General rules for molecular .

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