TY - GEN
T1 - Shock compaction of MnAs1-xSbx powder using underwater shock wave
AU - Kim, Y. K.
AU - Wada, H.
AU - Itoh, S.
PY - 2007
Y1 - 2007
N2 - MnAs1-xSbx material is one of the ferromagnets which can contribute to a magnetic refrigeration system that is useable at room temperature. The consolidation experiments of MnAs1-xSbx (x=0.068, 0.073) powder are carried out by a shock compaction method using underwater shock wave with shock pressure of 16GPa. The magnetic entropy change, ΔSmag, of annealed sample (x=0.073) after press caused by a magnetic field of 1T is 27.8J/Kkg at the maximum value, and the sample annealed after press undergoes a first-order ferromagnetic to paramagnetic transition at 304.05K.
AB - MnAs1-xSbx material is one of the ferromagnets which can contribute to a magnetic refrigeration system that is useable at room temperature. The consolidation experiments of MnAs1-xSbx (x=0.068, 0.073) powder are carried out by a shock compaction method using underwater shock wave with shock pressure of 16GPa. The magnetic entropy change, ΔSmag, of annealed sample (x=0.073) after press caused by a magnetic field of 1T is 27.8J/Kkg at the maximum value, and the sample annealed after press undergoes a first-order ferromagnetic to paramagnetic transition at 304.05K.
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U2 - 10.1063/1.2832911
DO - 10.1063/1.2832911
M3 - Conference contribution
AN - SCOPUS:71949093225
SN - 9780735404694
T3 - AIP Conference Proceedings
SP - 1105
EP - 1108
BT - Shock Compression of Condensed Matter - 2007
T2 - 15th Biennial International Conference of the APS Topical Group on Shock Compression of Condensed Matter, SCCM 2007
Y2 - 24 June 2007 through 29 June 2007
ER -