Magnetocaloric Properties of Fe-based Bulk Amorphous/Nanocrystalline Alloys

2006-10-26

Suggestions

Magnetocaloric Properties of Heusler Alloys
Topbası, Cem; Mehrabov, Amdulla; Akdeniz, Mahmut Vedat (null; 2006-10-26)
MAGNETOHYDRODYNAMIC FLOW IN ELECTRODYNAMICALLY COUPLED RECTANGULAR DUCTS
Tezer, Münevver (Wiley, 1988-06-01)
In Sezgin1,2 the problems considered are the magnetohydrodynamic (MHD) flows in an electrodynamically conducting infinite channel and in a rectangular duct respectively, in the presence of an applied magnetic field. In the present paper we extend the solution procedure of these papers to two rectangular channels connected by a barrier which is partially conductor and partially insulator. The problem has been reduced to the solution of a pair of dual series equations and then to the solution of a Fredholm's ...
Magnetoelectric heterojunction properties of multiferroic materials
Özdilek, Çağrı; Özenbaş, A. Macit.; Department of Metallurgical and Materials Engineering (2020)
Bismuth ferrite (BiFeO3) has gained a great interest over the past years as it exhibits more than one primary ferroic orders in a single phase. In the first part of this work, optimum parameters, such as reaction temperature, duration and concentration of mineralizer in the solution, for the production of bismuth ferrite particles via a hydrothermal method were determined. The second part involves the influence of Yb doping on the structural, magnetic and electrical properties of bismuth ferrite (BiFeO3). W...
Magnetohydrodynamic convection of Cu water nanofluid in a square cavity with a circular cylinder
Bozkaya, Canan (2016-11-05)
Magnetohydrodynamic convection of Cu-water nanofluid in a square cavity with a circular cylinder
Bozkaya, Canan (2016-01-01)
The hydromagnetic free convection of a Cu-water nanofluid in a square cavity involving an adiabatic circular cylinder is numerically investigated in the presence of an inclined uniform magnetic field. The left and right walls of the cavity are kept at constant hot and cold temperatures, respectively, while the horizontal walls are assumed to be adiabatic. The coupled nonlinear equations of mass, momentum and energy governing the present problem are discretized using the dual reciprocity boundary element met...
Citation Formats
M. Yıldırım, A. Mehrabov, and M. V. Akdeniz, “Magnetocaloric Properties of Fe-based Bulk Amorphous/Nanocrystalline Alloys,” 2006, Accessed: 00, 2021. [Online]. Available: https://hdl.handle.net/11511/75610.