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The magnetocaloric effect in the Mn<sub>x</sub>Fe<sub>2x</sub>P<sub.1y</sub>Ge<sub>y</sub> intermetallic compounds with the amount of Mn in the range of x = 1.05 to 1.17 and amount of Ge in the range of y = 0.19 to 0.22 has been studied. It was found that a higher Ge/P ratio causes an increase in Curie temperature, magnetocaloric effect at low field (up to 1 T), activation energy of structural transition and a decrease in thermal hysteresis, as well as transition enthalpy. Contrary to this observation, higher Mn/Fe ratio causes a decrease in Curie temperature, slight decrease of magnetocaloric effect at low magnetic field, and an increase in thermal hysteresis. Simultaneous increase of both ratios may be very advantageous, as the thermal hysteresis can be lowered and magnetocaloric effect can be enhanced without changing the Curie temperature. Some hints about optimization of the composition for applications at low magnetic fields (0.5 T to 2 T) have been presented.
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Wydawca
Czasopismo
Rocznik
Tom
Strony
494--502
Opis fizyczny
Bibliogr. 13 poz., rys., tab.
Twórcy
autor
- Institute of Non-Ferrous Metals, ul. Sowinskiego 5, 44-100 Gliwice, Poland
autor
- Institute of Non-Ferrous Metals, ul. Sowinskiego 5, 44-100 Gliwice, Poland
autor
- Institute of Non-Ferrous Metals, ul. Sowinskiego 5, 44-100 Gliwice, Poland
autor
- Institute of Non-Ferrous Metals, ul. Sowinskiego 5, 44-100 Gliwice, Poland
autor
- University of Silesia, Institute of Physics, ul. Uniwersytecka 4, 40-007 Katowice, Poland
autor
- Institute of Non-Ferrous Metals, ul. Sowinskiego 5, 44-100 Gliwice, Poland
Bibliografia
- [1] TEGUS O.,BRUCK E.,BUSCHOW K.H.J.,BOERDE F.R., Nature,415(2002),150.
- [2] TEGUS O.,BRUCK E.,ZHANG L.,DAGULA W., BUSCHOW K.H.J., DE BOER F.R., PhysicaB,319 (2002),174.
- [3] LI W.X.,TEGUS O.,ZHANG L.,DAGULA W., BRUCK E.,BUSCHOW K.H.J.,BOERDE F.R., IEEE T.Magn.,39(2003),3148.
- [4] SOUGRATI M.T.,HERMANN R.P.,GRANDJEAN F., LONG G.J.,BR ¨ UCK E.,TEGUS O.,TRUNG N.T., BUSCHOW K.H.J., J.Phys.-Condens.Mat.,20(2008), 475206.
- [5] YABUTA H.,UMEO K.,TAKABATAKE T., KOYAMA K.,WATANABE K., J.Phys.Soc.Jpn., 75(2006),113707.
- [6] BANERJEE S.K., Phys.Lett.,12(1964),16.
- [7] YIBOLE H.,GUILLOU F.,ZHANG L., VAN DIJK N.H., BRUCK E., J.Phys.DAppl.Phys.,47(2014),075002.
- [8] TRUNG N.T.,KLAASSE J.C.P.,TEGUS O.,CAM THANH D.T.,BUSCHOW K.H.J.,BRUCK E., J.Phys. DAppl.Phys.,43(2010),015002.
- [9] AVRAMI M., J.Chem.Phys.,7(1939),1103.
- [10] JEZIORNY A., Polymer,19(1978),1142.
- [11] FLYNN J.H.,WALL L.A., J.Polym.Sci.Lett.,4(1966), 323.
- [12] OZAWA T., B.Chem.Soc.Jpn.,38(1965),1881.
- [13] DOYLE C.D., Nature,207(1965),290.
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę.
Typ dokumentu
Bibliografia
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