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  4. Characterization of Mechanical Properties of MgB2 Conductor for the Superconducting Link Project at CERN
 
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research article

Characterization of Mechanical Properties of MgB2 Conductor for the Superconducting Link Project at CERN

Sugano, Michinaka
•
Ballarino, Amalia
•
Bártová, Barbora
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2015
IEEE Transactions on Applied Superconductivity

In the framework of high luminosity upgrade of Large Hadron Collider at CERN, superconducting links are being developed. MgB2 wire is a candidate conductor for use in high- current cables. Mechanical properties of this material are of key importance for the definition of the cable design and operating conditions. In this study, we evaluated the Young’s modulus of MgB2 filaments extracted from ex situ processed composite wires. The wires were produced in unit lengths of about 1 km and used in high-current cables. Single fiber tensile test was carried out on fil- aments composed of MgB2, Nb barrier, and Nb–Ni reaction layer. From the unloading modulus of filament specimens measured with different gauge lengths, the Young’s modulus of composite filaments extracted from two different strands was determined to be 114 and 122 GPa at room temperature, respectively. By using the rule-of-mixture, the Young’s modulus of MgB2 was estimated to be lower than that reported for highly dense MgB2 bulks. The reason for such difference is discussed from the viewpoint of void fraction.

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Type
research article
DOI
10.1109/TASC.2014.2364740
Author(s)
Sugano, Michinaka
•
Ballarino, Amalia
•
Bártová, Barbora
•
Bjoerstad, R
•
Scheuerlein, Christian
•
Grasso, G
Date Issued

2015

Publisher

IEEE Institute of Electrical and Electronics Engineers

Published in
IEEE Transactions on Applied Superconductivity
Volume

25

Issue

3

Article Number

4801004

Subjects

MgB2

•

single fiber tensile test

•

superconducting link

•

void fraction

•

Young’s modulus

Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
IIE  
Available on Infoscience
March 16, 2016
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/124977
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