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BS EN 61788-5:2013

Current

Current

The latest, up-to-date edition.

Superconductivity Matrix to superconductor volume ratio measurement. Copper to superconductor volume ratio of Cu/Nb-Ti composite superconducting wires

Available format(s)

Hardcopy , PDF

Language(s)

English

Published date

30-09-2013

€217.36
Excluding VAT

INTRODUCTION
1 Scope
2 Normative references
3 Terms and definitions
4 Principle
5 Chemicals
6 Apparatus
7 Measurement procedure
8 Calculation of results
9 Uncertainty of the test method
10 Test report
Annex A (normative) - Copper to superconductor
        volume ratio - copper mass method
Annex B (informative) - Specific mass depending
        on Nb-Ti fraction
Annex C (information) - Mechanical removal of
        insulating cover materials
Annex D (informative) - Second etch of specimen
Annex E (informative) - Uncertainty considerations
Annex F (informative) - Uncertainty evaluation in
        the test method of copper to superconductor
        volume ratio of Cu/Nb-Ti composite
        superconductors
Annex ZA (normative) - Normative references to
         international publications with their
         corresponding European publications

Includes a test method for the determination of copper to superconductor volume ratio of Cu/Nb-Ti composite superconducting wires.

Committee
W/-
DevelopmentNote
Supersedes 98/260996 DC (03/2003)
DocumentType
Standard
Pages
30
PublisherName
British Standards Institution
Status
Current
Supersedes

IEC 61788-5:2013 covers a test method for the determination of copper to superconductor volume ratio of Cu/Nb-Ti composite superconducting wires. This test method and the alternate method in Annex are intended for use with Cu/Nb-Ti composite superconducting wires with a cross-sectional area of 0,1 mm2 to 3 mm2, a diameter of the Nb-Ti filament(s) of 2 micrometers to 200 micrometers, and a copper to superconductor volume ratio of 0,5 or more. The Cu/Nb-Ti composite test conductor discussed in this method has a monolithic structure with a round or rectangular cross-section. This test method is carried out by dissolving the copper with nitric acid. Deviations from this test method that are allowed for routine tests and other specific restrictions are given in this standard. Cu/Nb-Ti composite superconducting wires beyond the limits in the cross-sectional area, the filament diameter and the copper to superconductor volume ratio could be measured with this present method with an anticipated reduction of uncertainty. Other, more specialized, specimen test geometries may be more appropriate for conductors beyond the limits and have been omitted from this present standard for simplicity and to retain low uncertainty. The test method given in this standard is expected to apply to other superconducting composite wires after some appropriate modifications. The copper to superconductor volume ratio of composite superconductors is used mainly to calculate the critical current density of superconducting wires. The test with the method given in this International Standard may be used to provide part of the information needed to determine the suitability of a specific superconductor. Moreover, this method is useful for quality control, acceptance or research testing if the precautions given in this standard are observed. This second edition cancels and replaces the first edition published in 2000. It constitutes a technical revision. The main revisions are the addition of two new annexes, \'Uncertainty considerations\' (Annex E) and \'Uncertainty evaluation in test method of copper to superconductor volume ratio of Cu/Nb-Ti composite superconductors\' (Annex F).

Standards Relationship
UNE-EN 61788-5:2002 Identical
EN 61788-5:2013 Identical
I.S. EN 61788-5:2013 Identical
IEC 61788-5:2013 Identical
NBN EN 61788-5 : 2013 Identical
SN EN 61788-5 : 2001 Identical
DIN EN 61788-5 : 2014 Identical

ISO/IEC Guide 99:2007 International vocabulary of metrology Basic and general concepts and associated terms (VIM)
ISO/IEC Guide 98-3:2008 Uncertainty of measurement — Part 3: Guide to the expression of uncertainty in measurement (GUM:1995)

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