ISO 16962:2017
Current
The latest, up-to-date edition.
Surface chemical analysis Analysis of zinc- and/or aluminium-based metallic coatings by glow-discharge optical-emission spectrometry
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English
24-02-2017
ISO 16962:2017 specifies a glow-discharge optical-emission spectrometric method for the determination of the thickness, mass per unit area and chemical composition of metallic surface coatings consisting of zinc- and/or aluminium-based materials. The alloying elements considered are nickel, iron, silicon, lead and antimony.
This method is applicable to zinc contents between 0,01 mass % and 100 mass %; aluminium contents between 0,01 mass % and 100 mass %; nickel contents between 0,01 mass % and 20 mass %; iron contents between 0,01 mass % and 20 mass %; silicon contents between 0,01 mass % and 15 mass %; magnesium contents between 0,01 mass% and 20 mass%; lead contents between 0,005 mass % and 2 mass %, antimony contents between 0,005 mass % and 2 mass %.
NOTE Due to environmental and health risks, lead and antimony are avoided nowadays, but this document is also applicable to older products including these elements.
DevelopmentNote |
Supersedes ISO/DIS 16962. (03/2017)
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DocumentType |
Standard
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Pages |
40
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PublisherName |
International Organization for Standardization
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Status |
Current
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Supersedes |
Standards | Relationship |
NEN ISO 16962 : 2017 | Identical |
DIN ISO 16962:2018-12 | Identical |
BS ISO 16962:2017 | Identical |
SAC GB/T 29559 : 2013 | Identical |
GOST R ISO 16962 : 2012 | Identical |
BS ISO 19272:2015 | Low alloyed steel. Determination of C, Si, Mn, P, S, Cr, Ni, Al, Ti and Cu. Glow discharge optical emission spectrometry (routine method) |
ISO 19272:2015 | Low alloyed steel Determination of C, Si, Mn, P, S, Cr, Ni, Al, Ti and Cu - Glow discharge optical emission spectrometry (routine method) |
ISO 11505:2012 | Surface chemical analysis — General procedures for quantitative compositional depth profiling by glow discharge optical emission spectrometry |
DD ISO/TS 25138:2010 | Surface chemical analysis. Analysis of metal oxide films by glow-discharge optical-emission spectrometry |
BS ISO 11505:2012 | Surface chemical analysis. General procedures for quantitative compositional depth profiling by glow discharge optical emission spectrometry |
ISO/TS 25138:2010 | Surface chemical analysis Analysis of metal oxide films by glow-discharge optical-emission spectrometry |
12/30255191 DC : 0 | BS ISO 11505 - SURFACE CHEMICAL ANALYSIS - GENERAL PROCEDURES FOR QUANTITATIVE COMPOSITIONAL DEPTH PROFILING BY GLOW DISCHARGE OPTICAL EMISSION SPECTROMETRY |
ISO/IEC 17025:2005 | General requirements for the competence of testing and calibration laboratories |
ISO 5725-1:1994 | Accuracy (trueness and precision) of measurement methods and results — Part 1: General principles and definitions |
ISO 18115-1:2013 | Surface chemical analysis — Vocabulary — Part 1: General terms and terms used in spectroscopy |
ISO 5725-6:1994 | Accuracy (trueness and precision) of measurement methods and results — Part 6: Use in practice of accuracy values |
ISO 14707:2015 | Surface chemical analysis Glow discharge optical emission spectrometry (GD-OES) Introduction to use |
ISO 11505:2012 | Surface chemical analysis — General procedures for quantitative compositional depth profiling by glow discharge optical emission spectrometry |
ISO/TS 25138:2010 | Surface chemical analysis Analysis of metal oxide films by glow-discharge optical-emission spectrometry |
ISO 17925:2004 | Zinc and/or aluminium based coatings on steel — Determination of coating mass per unit area and chemical composition — Gravimetry, inductively coupled plasma atomic emission spectrometry and flame atomic absorption spectrometry |
ISO 5725-2:1994 | Accuracy (trueness and precision) of measurement methods and results Part 2: Basic method for the determination of repeatability and reproducibility of a standard measurement method |
ISO 9000:2015 | Quality management systems — Fundamentals and vocabulary |
ISO 14284:1996 | Steel and iron — Sampling and preparation of samples for the determination of chemical composition |
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