DocumentCode :
1375389
Title :
Hoop Stress Test of \\hbox {GdBa}_{2}\\hbox {Cu}_{3}\\hbox {O}_{\\rm y} Coated Conductor
Author :
Nishijima, Gen ; Minegishi, Kazuhiro ; Awaji, Satoshi ; Watanabe, Kazuo ; Izumi, Teruo ; Shiohara, Yuh
Author_Institution :
Supercond. Mater. Center, Nat. Inst. for Mater. Sci., Tsukuba, Japan
Volume :
21
Issue :
3
fYear :
2011
fDate :
6/1/2011 12:00:00 AM
Firstpage :
3094
Lastpage :
3097
Abstract :
Mechanical property of GdBa2Cu3Oy (GdBCO) coated conductor was investigated at 4.2 K in a magnetic field by two ways, which are the tensile test and the hoop stress test. The tensile stress/strain dependence of critical current (Ic) of a 2 mm width conductor was explored at 4.2 K, 18 T. The result provided that Ic -reversible strain limit existed in between 0.43% and 0.46%, corresponding to 907 MPa and 960 MPa in stress, and the elastic constant was 203 GPa. The hoop stress test has been performed at 4.2 K, 11 T. A test coil was fabricated by winding a 5 mm width conductor on a 270 mm diameter GFRP bobbin by 1.5 turns. The maximum value of applied hoop stress, which was deduced from a product of magnetic field, current density and coil radius, was 1322 MPa. Five strain gauges glued on the conductor surface showed almost the same values, which were in a range of 0.64% to 0.67%, indicating the uniform longitudinal deformation. Furthermore, the hoop stress-strain characteristics were linear, suggesting an elastic deformation. The deduced elastic constants were in a range of 196-204 GPa. It was confirmed that the GdBCO coated conductor performance was deteriorated irreversibly by 1322 MPa hoop stress, whereas not by 1302 MPa hoop stress.
Keywords :
elastic deformation; gadolinium compounds; superconducting thin films; tensile testing; magnetic flux density 11 T; magnetic flux density 18 T; size 2 mm; size 270 mm; size 5 mm; temperature 4.2 K; Coils; Conductors; Magnetomechanical effects; Strain; Superconducting magnets; Tensile stress; Coated conductor; GdBCO; hoop stress; mechanical property;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2010.2086419
Filename :
5629453
Link To Document :
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