BS EN 61788-21:2015
Current
The latest, up-to-date edition.
Superconductivity Superconducting wires. Test methods for practical superconducting wires. General characteristics and guidance
Hardcopy , PDF
English
31-07-2015
FOREWORD
INTRODUCTION
1 Scope
2 Normative references
3 Terms and definitions
4 Characteristic attributes of practical SC wires
5 Categories of properties
6 Properties governed by IEC standards
Annex A (informative) - Characteristic attributes of
practical SC wires
Bibliography
Annex ZA (normative) - Normative references
to international publications with their
corresponding European publications
Defines the test methods used for validating the mechanical, electrical, and superconducting properties of practical SC wires.
Committee |
W/-
|
DocumentType |
Standard
|
Pages |
20
|
PublisherName |
British Standards Institution
|
Status |
Current
|
This part of IEC 61788 specifies the test methods used for validating the mechanical, electrical, and superconducting properties of practical SC wires. A wire is considered as being practical if it can be procured in sufficiently continuous lengths under ordinary commercial transactions to build devices. Conductors made of multiple wires, such as cables, are not included in the scope of this part of IEC 61788. Extension of the discussions in this part of IEC 61788 beyond practical SC wires is not intended, even though referenced documents include aspects outside of this scope.
Standards | Relationship |
EN 61788-21:2015 | Identical |
IEC 61788-21:2015 | Identical |
EN 61788-5:2013 | SUPERCONDUCTIVITY - PART 5: MATRIX TO SUPERCONDUCTOR VOLUME RATIO MEASUREMENT - COPPER TO SUPERCONDUCTOR VOLUME RATIO OF CU/NB-TI COMPOSITE SUPERCONDUCTING WIRES |
IEC 61788-10:2006 | Superconductivity - Part 10: Critical temperature measurement - Critical temperature of composite superconductors by a resistance method |
IEC 61788-1:2006 | Superconductivity - Part 1: Critical current measurement - DC critical current of Nb-Ti composite superconductors |
EN 61788-18:2013 | Superconductivity - Part 18: Mechanical properties measurement - Room temperature tensile test of Ag- and/or Ag alloy-sheathed Bi-2223 and Bi-2212 composite superconductors |
EN 61788-13:2012 | Superconductivity - Part 13: AC loss measurements - Magnetometer methods for hysteresis loss in superconducting multifilamentary composites |
EN 61788-4:2016 | Superconductivity - Part 4: Residual resistance ratio measurement - Residual resistance ratio of Nb-Ti and Nb3Sn composite superconductors |
IEC 61788-11:2011 | Superconductivity - Part 11: Residual resistance ratio measurement - Residual resistance ratio of Nb3Sn composite superconductors |
IEC 61788-3:2006 | Superconductivity - Part 3: Critical current measurement - DC critical current of Ag- and/or Ag alloy-sheathed Bi-2212 and Bi-2223 oxide superconductors |
IEC 61788-18:2013 | Superconductivity - Part 18: Mechanical properties measurement - Room temperature tensile test of Ag- and/or Ag alloy-sheathed Bi-2223 and Bi-2212 composite superconductors |
IEC 61788-6:2011 | Superconductivity - Part 6: Mechanical properties measurement - Room temperature tensile test of Cu/Nb-Ti composite superconductors |
IEC 61788-4:2016 | Superconductivity - Residual resistance ratio measurement - Residual resistance ratio of Nb-Ti and Nb<sub>3</sub>Sn composite superconductors |
EN 61788-6:2011 | SUPERCONDUCTIVITY - PART 6: MECHANICAL PROPERTIES MEASUREMENT - ROOM TEMPERATURE TENSILE TEST OF CU/NB-TI COMPOSITE SUPERCONDUCTORS |
IEC 60050-815:2015 | International Electrotechnical Vocabulary (IEV) - Part 815: Superconductivity |
EN 61788-3:2006 | SUPERCONDUCTIVITY - PART 3: CRITICAL CURRENT MEASUREMENT - DC CRITICAL CURRENT OF AG- AND/OR AG ALLOY-SHEATHED BI-2212 AND BI-2223 OXIDE SUPERCONDUCTORS |
EN 61788-2:2007 | Superconductivity - Part 2: Critical current measurement - DC critical current of Nb3Sn composite superconductors |
IEC 61788-8:2010 | Superconductivity - Part 8: AC loss measurements - Total AC loss measurement of round superconducting wires exposed to a transverse alternating magnetic field at liquid helium temperature by a pickup coil method |
EN 61788-19:2014 | Superconductivity - Part 19: Mechanical properties measurement - Room temperature tensile test of reacted Nb3Sn composite superconductors |
EN 61788-12:2013 | Superconductivity - Part 12: Matrix to superconductor volume ratio measurement - Copper to non-copper volume ratio of Nb3Sn composite superconducting wires |
IEC 61788-13:2012 | Superconductivity - Part 13: AC loss measurements - Magnetometer methods for hysteresis loss in superconducting multifilamentary composites |
EN 61788-8:2010 | Superconductivity - Part 8: AC loss measurements - Total AC loss measurement of round superconducting wires exposed to a transverse alternating magnetic field at liquid helium temperature by a pickup coil method |
EN 61788-1:2007 | Superconductivity - Part 1: Critical current measurement - DC critical current of Nb-Ti composite superconductors |
IEC 61788-12:2013 | Superconductivity - Part 12: Matrix to superconductor volume ratio measurement - Copper to non-copper volume ratio of Nb<sub>3</sub>Sn composite superconducting wires |
IEC TR 61788-20:2014 | Superconductivity - Part 20: Superconducting wires - Categories of practical superconducting wires - General characteristics and guidance |
IEC 61788-19:2013 | Superconductivity - Part 19: Mechanical properties measurement - Room temperature tensile test of reacted Nb3Sn composite superconductors |
EN 61788-10:2006 | SUPERCONDUCTIVITY - PART 10: CRITICAL TEMPERATURE MEASUREMENT - CRITICAL TEMPERATURE OF COMPOSITE SUPERCONDUCTORS BY A RESISTANCE METHOD |
EN 61788-11:2011 | SUPERCONDUCTIVITY - PART 11: RESIDUAL RESISTANCE RATIO MEASUREMENT - RESIDUAL RESISTANCE RATIO OF NB[3]SN COMPOSITE SUPERCONDUCTORS |
IEC 61788-5:2013 | Superconductivity - Part 5: Matrix to superconductor volume ratio measurement - Copper to superconductor volume ratio of Cu/Nb-Ti composite superconducting wires |
IEC 61788-2:2006 | Superconductivity - Part 2: Critical current measurement - DC critical current of Nb3Sn composite superconductors |
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