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Spectrometric Analysis

Spectrometric Analysis, Total:76 items.

In the international standard classification, Spectrometric Analysis involves: Non-ferrous metals, Testing of metals, Ferrous metals, Ferroalloys, Analytical chemistry, Iron and steel products, Vocabularies, Lubricants, industrial oils and related products, Metalliferous minerals, Fuels, Products of the textile industry.


Japanese Industrial Standards Committee (JISC), Spectrometric Analysis

  • JIS H 1631:2008 Titanium alloys -- Method for X-ray fluorescence spectrometric analysis
  • JIS G 1256 AMD 1:2010 Iron and steel -- Method for X-ray fluorescence spectrometric analysis (Amendment 1)
  • JIS G 1351:2006 Ferroalloys -- Method of X-ray fluorescence spectrometric analysis
  • JIS H 1669:1990 Method for X-ray fluorescence spectrometric analysis of zirconium alloys
  • JIS G 1351:1987 Method for X-ray fluorescence spectrometric analysis of ferroalloys
  • JIS K 0150:2009 Surface chemical analysis -- Analysis of zinc- and/or aluminium-based metallic coatings by glow-discharge optical-emission spectrometry

American Society for Testing and Materials (ASTM), Spectrometric Analysis

  • ASTM E1097-97 Standard Guide for Direct Current Plasma Emission Spectrometry Analysis
  • ASTM E10-08 Standard Test Method for Brinell Hardness of Metallic Materials
  • ASTM E10-15 Standard Test Method for Brinell Hardness of Metallic Materials
  • ASTM E2626-08 Standard Guide for Spectrometric Analysis of Reactive and Refractory Metals
  • ASTM E2626-08e1 Standard Guide for Spectrometric Analysis of Reactive and Refractory Metals
  • ASTM E1085-95(2004) Standard Test Method for X-Ray Emission Spectrometric Analysis of Low-Alloy Steels
  • ASTM E1085-95(2000) Standard Test Method for X-Ray Emission Spectrometric Analysis of Low-Alloy Steels
  • ASTM E1085-95(2004)e1 Standard Test Method for X-Ray Emission Spectrometric Analysis of Low-Alloy Steels
  • ASTM E1097-03 Standard Guide for Direct Current Plasma Emission Spectrometry Analysis
  • ASTM E322-96e1 Standard Test Method for X-Ray Emission Spectrometric Analysis of Low-Alloy Steels and Cast Irons
  • ASTM E1097-07 Standard Guide for Direct Current Plasma-Atomic Emission Spectrometry Analysis
  • ASTM E415-99a Standard Test Method for Optical Emission Vacuum Spectrometric Analysis of Carbon and Low-Alloy Steel
  • ASTM E1361-02 Standard Guide for Correction of Interelement Effects in X-Ray Spectrometric Analysis
  • ASTM E1361-02(2007) Standard Guide for Correction of Interelement Effects in X-Ray Spectrometric Analysis
  • ASTM E1361-02(2014)e1 Standard Guide for Correction of Interelement Effects in X-Ray Spectrometric Analysis
  • ASTM E634-05 Standard Practice for Sampling of Zinc and Zinc Alloys for Optical Emission Spectrometric Analysis
  • ASTM E1086-94(2005) Standard Test Method for Optical Emission Vacuum Spectrometric Analysis of Stainless Steel by the Point-to-Plane Excitation Technique
  • ASTM E415-99a(2005) Standard Test Method for Optical Emission Vacuum Spectrometric Analysis of Carbon and Low-Alloy Steel
  • ASTM E415-08 Standard Test Method for Atomic Emission Vacuum Spectrometric Analysis of Carbon and Low-Alloy Steel
  • ASTM E539-07 Standard Test Method for X-Ray Fluorescence Spectrometric Analysis of 6Al-4V Titanium Alloy
  • ASTM E539-90(1996)e1 Standard Test Method for X-Ray Emission Spectrometric Analysis of 6AI-4V Titanium Alloy
  • ASTM E539-02 Standard Test Method for X-Ray Emission Spectrometric Analysis of 6AI-4V Titanium Alloy
  • ASTM E539-06 Standard Test Method for X-Ray Emission Spectrometric Analysis of 6Al-4V Titanium Alloy
  • ASTM E485-94(2005) Standard Test Method for Optical Emission Vacuum Spectrometric Analysis of Blast Furnace Iron by the Point-to-Plane Technique
  • ASTM E1086-08 Standard Test Method for Optical Emission Vacuum Spectrometric Analysis of Stainless Steel by the Point-to-Plane Excitation Technique
  • ASTM E1086-94(2000) Standard Test Method for Optical Emission Vacuum Spectrometric Analysis of Stainless Steel by the Point-to-Plane Excitation Technique
  • ASTM E400-97 Standard Test Method for Analysis of Ores, Minerals, and Rocks by the Fire Assay Preconcentration Optical Emission Spectroscopy
  • ASTM E607-90(1996) Standard Test Method for Optical Emission Spectrometric Analysis of Aluminum and Aluminum Alloys by the Point-to-Plane Technique, Nitrogen Atmosphere
  • ASTM E607-02 Standard Test Method for Atomic Emission Spectrometric Analysis Aluminum Alloys by the Point to Plane Technique Nitrogen Atmosphere
  • ASTM E2465-06 Standard Test Method for Analysis of Ni-Base Alloys by X-ray Fluorescence Spectrometry
  • ASTM E572-02a(2006)e2 Standard Test Method for Analysis of Stainless and Alloy Steels by X-ray Fluorescence Spectrometry

Korean Agency for Technology and Standards (KATS), Spectrometric Analysis

  • KS D 1673-2007 Methods for inductively coupled plasma emission spectrochemical analysis of steel
  • KS D 1655-2008(2019) Method for X-ray fluorescence spectrometric analysis of iron and steel
  • KS D 1686-2011(2016) Method for x-ray fluorescence spectrometric analysis of ferroalloys
  • KS D 2597-1996(2016) Method for X-ray fluorescence spectrometric analysis of zirconium and zirconium alloys
  • KS D ISO 7530-2:2012 Nickel alloys-Flame atomic absorption spectrometric analysis-Part 2:Determination of cobalt content
  • KS D ISO 7530-4:2012 Nickel alloys-Flame atomic absorption spectrometric analysis-Part 4:Determination of copper content
  • KS D ISO 7530-3:2012 Nickel alloys-Flame atomic absorption spectrometric analysis-Part 3:Determination of chromium content
  • KS D ISO 7530-5:2012 Nickel alloys-Flame atomic absorption spectrometric analysis-Part 5:Determination of iron content
  • KS D ISO 7530-6:2012 Nickel alloys-Flame atomic absorption spectrometric analysis-Part 6:Determination of manganese content
  • KS D 1678-2012(2017) Methods for inductively coupled plasma emission spectrometric analysis of aluminum and alumnium alloys
  • KS D ISO 7530-1:2012 Nickel alloys-Flame atomic absorption spectrometric analysis-Part 1:General requirements and sample dissolution
  • KS D 1702-2015(2020) Platium-Determination of trace-element content by inductively coupled plasma spectrometric analysis-Matrix matching method
  • KS D ISO 3815-1:2006 Zinc and zinc alloys-Part 1:Analysis of solid samples by optical emission spectrometry
  • KS D ISO 3815-2:2006 Zinc and zinc alloys-Part 2:Analysis by inductively coupled plasma optical emission spectrometry

German Institute for Standardization, Spectrometric Analysis

  • DIN 51008-2:1990 Optical emission spectral analysis (OES); flame and plasma systems
  • DIN 51008-1:2004 Optical emission spectrometry (OES) - Part 1: Terms for systems with sparks and low pressure discharges
  • DIN 51008-2:2001 Optical Emission Spectrometry (OES) - Part 2: Terms for flame and plasma systems
  • DIN 51008-1 Bb.1:2004 Optical emission spectrometry (OES) - Part 1: Terms for systems with sparks and low pressure discharges; Explanations
  • DIN 51379-2:1990 Testing of lubricants; determination of molybdenum content of lubricating oils; analysis by wavelength dispersive X-ray spectrometry (XRS)
  • DIN EN ISO 3815-1:2005 Zinc and zinc alloys - Part 1: Analysis of solid samples by optical emission spectrometry (ISO 3815-1:2005); German version EN ISO 3815-1:2005
  • DIN 51769-6:1990 Determination of total lead content of petrol with a lead content exceeding 25 mg/l by wavelenght-dispersive X-ray spectrometry (XRS)
  • DIN EN ISO 3815-2:2005 Zinc and zinc alloys - Part 2: Analysis by inductively coupled plasma optical emission spectrometry (ISO 3815-2:2005); German version EN ISO 3815-2:2005

British Standards Institution (BSI), Spectrometric Analysis

  • BS EN 14726:2005 Aluminium and aluminium alloys - Chemical analysis - Guideline for spark optical emission spectrometric analysis
  • BS DD ENV 12908:1998 Lead and lead alloys - Analysis by optical emission spectrometry (OES) with spark excitation
  • BS EN ISO 3815-1:2005 Zinc and zinc alloys - Analysis of solid samples by optical emission spectrometry
  • BS EN ISO 3815-2:2005 Zinc and zinc alloys - Analysis by inductively coupled plasma optical emission spectrometry
  • BS 6810-1:1987 Determination of metals in textiles - Analysis by atomic absorption and colorimetric spectroscopy

Association Francaise de Normalisation, Spectrometric Analysis

  • NF A08-908*NF ISO 7530-8:2007 Nickel alloys - Flame atomic absorption spectrometric analysis - Part 8 : determination of silicon content.
  • NF A08-909*NF ISO 7530-9:2007 Nickel alloys - Flame atomic absorption spectrometric analysis - Part 9 : determination of vanadium content
  • NF A08-902:1991 Nickel alloys. Flame atomic absorption spectrometric analysis. Part 2 : determination of cobalt content.
  • NF A08-901:1991 Nickel alloys. Flame atomic absorption spectrometric analysis. Part 1 : general requirements and sample dissolution.
  • NF A06-840-1*NF EN ISO 3815-1:2005 Zinc and zinc alloys - Part 1 : analysis of solid samples by optical emission spectrometry
  • NF A06-840-2*NF EN ISO 3815-2:2005 Zinc and zinc alloys - Part 2 : analysis by inductively coupled plasma optical emission spectrometry

International Organization for Standardization (ISO), Spectrometric Analysis

  • ISO 3815-1:2005 Zinc and zinc alloys - Part 1: Analysis of solid samples by optical emission spectrometry
  • ISO/TS 25138:2010 Surface chemical analysis - Analysis of metal oxide films by glow-discharge optical-emission spectrometry
  • ISO 16962:2005 Surface chemical analysis - Analysis of zinc- and/or aluminium-based metallic coatings by glow-discharge optical-emission spectrometry
  • ISO 3815-2:2005 Zinc and zinc alloys - Part 2: Analysis by inductively coupled plasma optical emission spectrometry

RU-GOST R, Spectrometric Analysis

  • GOST 1367.1-1983 Antimony. Spectral method for the determination of impurities without preliminary concentration

European Committee for Standardization (CEN), Spectrometric Analysis

  • EN ISO 3815-1:2005 Zinc and zinc alloys - Part 1: Analysis of solid samples by optical emission spectrometry (ISO 3815-1:2005)




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