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EN 15605:2010

Current

Current

The latest, up-to-date edition.

Copper and copper alloys - Inductively coupled plasma optical emission spectrometry

Published date

21-07-2010

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Foreword
1 Scope
2 Normative references
3 Principle
4 Reagents
5 Apparatus
6 Sampling
7 Procedure
8 Expression of results
9 Precision
10 Test report
Annex A (informative) Optical emission spectrometer
        (OES) - Suggested performance criteria to be
        checked
Annex B (informative) Inductively coupled plasma emission
        spectrometry method for the analysis of
        Copper-tin-lead alloys
Bibliography

This European Standard specifies six inductively coupled plasma emission spectrometry methods (A to F) for the determination of alloying elements and impurities in copper and copper alloys in the form of unwrought, wrought and cast products.A complementary method, for the analysis of Copper-tin-lead alloys, is described in Annex B (informative). The precision criteria concerning this method do not reach the suitable level, for all the elements specified (zinc and phosphorus, namely).These methods are applicable to the elements listed in Tables 1 to 6 within the composition ranges shown: (...)NOTE 1The ranges specified for each method can be extended or adapted, for the determination of lower mass fractions.NOTE 2Other elements may be included. However such elements and their mass fractions should be carefully checked, taking into account interference, sensitivity, resolution and linearity criteria for each instrument and each wavelength.

Committee
CEN/TC 133
DevelopmentNote
Supersedes CEN/TS 15605. (08/2010)
DocumentType
Standard
PublisherName
Comite Europeen de Normalisation
Status
Current
Supersedes

Standards Relationship
SN EN 15605 : 2010 Identical
NF EN 15605 : 2010 Identical
I.S. EN 15605:2010 Identical
UNI EN 15605 : 2010 Identical
BS EN 15605:2010 Identical
NBN EN 15605 : 2010 Identical
PN EN 15605 : 2010 Identical
UNE-EN 15605:2011 Identical
DIN EN 15605:2010-12 Identical
NEN EN 15605 : 2010 Identical

BS EN 10351:2011 Chemical analysis of ferrous materials. Inductively coupled plasma optical emission spectrometric analysis of unalloyed and low alloyed steels. Determination of Mn, P, Cu, Ni, Cr, Mo, V, Co, Al (total) and Sn [Routine method]
UNE-EN 10351:2012 Chemical analysis of ferrous materials - Inductively coupled plasma optical emission spectrometric analysis of unalloyed and low alloyed steels - Determination of Mn, P, Cu, Ni, Cr, Mo, V, Co, Al (total) and Sn [Routine method]
EN 10351:2011 Chemical analysis of ferrous materials - Inductively coupled plasma optical emission spectrometric analysis of unalloyed and low alloyed steels - Determination of Mn, P, Cu, Ni, Cr, Mo, V, Co, Al (total) and Sn [Routine method]
EN 10355:2013 Chemical analysis of ferrous materials - Inductively coupled plasma optical emission spectrometric analysis of unalloyed and low alloyed steels - Determination of Si, Mn, P, Cu, Ni, Cr, Mo and Sn, following dissolution with nitric and sulphuric acids [Routine method]
UNI EN 10351 : 2011 CHEMICAL ANALYSIS OF FERROUS MATERIALS - INDUCTIVELY COUPLED PLASMA OPTICAL EMISSION SPECTROMETRIC ANALYSIS OF UNALLOYED AND LOW ALLOYED STEELS - DETERMINATION OF MN, P, CU, NI, CR, MO, V, CO, AL (TOTAL) AND SN [ROUTINE METHOD]
I.S. EN 10351:2011 CHEMICAL ANALYSIS OF FERROUS MATERIALS - INDUCTIVELY COUPLED PLASMA OPTICAL EMISSION SPECTROMETRIC ANALYSIS OF UNALLOYED AND LOW ALLOYED STEELS - DETERMINATION OF MN, P, CU, NI, CR, MO, V, CO, AL (TOTAL) AND SN [ROUTINE METHOD]
BS EN 10355:2013 Chemical analysis of ferrous materials. Inductively coupled plasma optical emission spectrometric analysis of unalloyed and low alloyed steels. Determination of Si, Mn, P, Cu, Ni, Cr, Mo and Sn, following dissolution with nitric and sulphuric acids [Routine method]
DIN EN 10355:2013-11 Chemical analysis of ferrous materials - Inductively coupled plasma optical emission spectrometric analysis of unalloyed and low alloyed steels - Determination of Si, Mn, P, Cu, Ni, Cr, Mo and Sn, following dissolution with nitric and sulphuric acids [Routine method]
UNE-EN 10355:2014 Chemical analysis of ferrous materials - Inductively coupled plasma optical emission spectrometric analysis of unalloyed and low alloyed steels - Determination of Si, Mn, P, Cu, Ni, Cr, Mo and Sn, following dissolution with nitric and sulphuric acids [Routine method]
11/30252539 DC : 0 BS EN 10355 - CHEMICAL ANALYSIS OF FERROUS MATERIALS - INDUCTIVELY COUPLED PLASMA OPTICAL EMISSION SPECTROMETRIC ANALYSIS OF UNALLOYED AND LOW ALLOYED STEELS - DETERMINATION OF SI, MN, P, CU, NI, CR, MO, SN [ROUTINE METHOD]
UNI EN 10355 : 2013 CHEMICAL ANALYSIS OF FERROUS MATERIALS - INDUCTIVELY COUPLED PLASMA OPTICAL EMISSION SPECTROMETRIC ANALYSIS OF UNALLOYED AND LOW ALLOYED STEELS - DETERMINATION OF SI, MN, P, CU, NI, CR, MO AND SN, FOLLOWING DISSOLUTION WITH NITRIC AND SULPHURIC ACIDS [ROUTINE METHOD]
DIN EN 10351:2011-05 Chemical analysis of ferrous materials - Inductively coupled plasma optical emission spectrometric analysis of unalloyed and low alloyed steels - Determination of Mn, P, Cu, Ni, Cr, Mo, V, Co, Al (total) and Sn [Routine method]
I.S. EN 10355:2013 CHEMICAL ANALYSIS OF FERROUS MATERIALS - INDUCTIVELY COUPLED PLASMA OPTICAL EMISSION SPECTROMETRIC ANALYSIS OF UNALLOYED AND LOW ALLOYED STEELS - DETERMINATION OF SI, MN, P, CU, NI, CR, MO AND SN, FOLLOWING DISSOLUTION WITH NITRIC AND SULPHURIC ACIDS [ROUTINE METHOD]

ISO 5725-1:1994 Accuracy (trueness and precision) of measurement methods and results — Part 1: General principles and definitions
ISO 1811-1:1988 Copper and copper alloys — Selection and preparation of samples for chemical analysis — Part 1: Sampling of cast unwrought products
ISO 1811-2:1988 Copper and copper alloys — Selection and preparation of samples for chemical analysis — Part 2: Sampling of wrought products and castings
ISO 5725-3:1994 Accuracy (trueness and precision) of measurement methods and results — Part 3: Intermediate measures of the precision of a standard measurement method
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

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