TY - JOUR
T1 - Mechanical properties of REBaCuO single-grain bulk fabricated by the infiltration growth technique
AU - Murakami, Akira
AU - Muralidhar, Miryala
AU - Iwamoto, Akifumi
N1 - Publisher Copyright:
© 2020 IOP Publishing Ltd.
PY - 2020/1/7
Y1 - 2020/1/7
N2 - In order to investigate the mechanical properties and fracture mechanisms of (Gd,Dy)BaCuO dense bulk material fabricated by the infiltration growth technique, tensile tests were carried out for specimens cut from the as-grown bulk material. The average tensile strength value of the (Gd,Dy)BaCuO dense bulk material fabricated by the infiltration growth technique was 44 MPa, which is superior to that of a porous bulk material fabricated through melt-processing in a 50% O2 atmosphere (37 MPa), and comparable to that of a dense bulk material fabricated through melt-processing in 100% O2 (45 MPa) that have been reported elsewhere. Through the observations of the flow-like patterns formed by the crack propagations on the fracture surfaces, the fatal crack initiation site was identified. One extraordinarily large pore, segregated secondary phase particles and some inclusion that mainly consists of Pt were observed around the crack initiation site on the fracture surfaces of the (Gd,Dy)BaCuO dense bulk material.
AB - In order to investigate the mechanical properties and fracture mechanisms of (Gd,Dy)BaCuO dense bulk material fabricated by the infiltration growth technique, tensile tests were carried out for specimens cut from the as-grown bulk material. The average tensile strength value of the (Gd,Dy)BaCuO dense bulk material fabricated by the infiltration growth technique was 44 MPa, which is superior to that of a porous bulk material fabricated through melt-processing in a 50% O2 atmosphere (37 MPa), and comparable to that of a dense bulk material fabricated through melt-processing in 100% O2 (45 MPa) that have been reported elsewhere. Through the observations of the flow-like patterns formed by the crack propagations on the fracture surfaces, the fatal crack initiation site was identified. One extraordinarily large pore, segregated secondary phase particles and some inclusion that mainly consists of Pt were observed around the crack initiation site on the fracture surfaces of the (Gd,Dy)BaCuO dense bulk material.
KW - REBaCuO
KW - infiltration growth
KW - single-grain bulk
KW - tensile test
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U2 - 10.1088/1361-6668/ab5cf8
DO - 10.1088/1361-6668/ab5cf8
M3 - Article
AN - SCOPUS:85078882594
SN - 0953-2048
VL - 33
JO - Superconductor Science and Technology
JF - Superconductor Science and Technology
IS - 2
M1 - 024003
ER -