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Publisher: Emerald Group Publishing Limited

Volume 30, Number 5, 2011

Numerical model of electrode induction melting for gas atomization
pp. 1455-1466(12)
Authors: Bojarevics, Valdis; Roy, Alan; Pericleous, Koulis

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Modelling of electromagnetic heating and mixing conditions in glass melt output equipment
pp. 1467-1478(12)
Authors: Geža, V.; Jakovics, A.; Krieger, U.; Halbedel, B.

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A cell method-based numerical model for resistance welding
pp. 1479-1486(8)
Authors: Alotto, P.; Guarnieri, M.; Moro, F.; Stella, A.

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Numerical simulation of electromagnetic stirring in continuous casting of wires
pp. 1499-1506(8)
Authors: Turewicz, P.; Baake, E.; Umbrashko, A.

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Synthesizing a nanoparticle distribution in magnetic fluid hyperthermia
pp. 1507-1516(10)
Authors: Barba, P. Di; Dughiero, F.; Sieni, E.

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Higher-order finite element modeling of rotational induction heating of nonferromagnetic cylindrical billets
pp. 1517-1527(11)
Authors: Karban, Pavel; Mach, František; Dolezel, Ivo; Barglik, Jerzy

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A new high efficiency technology for the induction heating of non magnetic billets
pp. 1528-1538(11)
Authors: Dughiero, F.; Forzan, M.; Lupi, S.; Nicoletti, F.; Zerbetto, M.

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Numerical simulation and investigation of induction through-heaters in dynamic operation mode
pp. 1539-1549(11)
Authors: Blinov, Kirill; Nikanorov, Alexander; Nacke, Bernard; Klöpzig, Markus

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Compensation of induction heating load edge-effect by space control
pp. 1558-1569(12)
Authors: Forzan, Michele; Lupi, Sergio; Toffano, Ezio

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A 3D numerical FEM model for the simulation of induction welding of tubes
pp. 1570-1581(12)
Authors: Dughiero, F.; Forzan, M.; Garbin, M.; Pozza, C.; Sieni, E.

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Heat generation ability in AC magnetic field of needle-type Ti-coated mild steel for ablation cancer therapy
pp. 1582-1588(7)
Authors: Naohara, Takashi; Aono, Hiromichi; Hirazawa, Hideyuki; Maehara, Tsunehiro; Watanabe, Yuji; Matsutomo, Shinya

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Operational constraints on the DC induction heating of aluminum billets
pp. 1589-1597(9)
Authors: Fabbri, Massimo; Morandi, Antonio; Ribani, Pier Luigi

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Phase-modulated currents in induction heating
pp. 1598-1605(8)
Authors: Kapusta, A.; Levy, A.; Mikhailovich, B.

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Analysis of reactive and resistive open waveguide filters for use in microwave-heating applicators
pp. 1606-1615(10)
Authors: Clemente-Fernández, Francisco J.; Monzó-Cabrera, Juan; Pedreño-Molina, Juan L.; Lozano-Guerrero, Antonio J.; Díaz-Morcillo, Alejandro

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An application of the impedance boundary condition for the design of coils used in domestic induction heating systems
pp. 1616-1625(10)
Authors: Carretero, Claudio; Lucía, Óscar; Acero, Jesús; Alonso, Rafael; Burdío, José M.

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Magnetic field generating inductor for cancer hyperthermia research
pp. 1626-1636(11)
Authors: Nemkov, V.; Ruffini, R.; Goldstein, R.; Jackowski, J.; DeWeese, T.L.; Ivkov, R.

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Influence of the channel design on the heat and mass exchange of induction channel furnace
pp. 1637-1650(14)
Authors: Baake, E.; Jakovics, A.; Pavlovs, S.; Kirpo, M.

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New DC electromagnetic wiping system for hot-dip coating
pp. 1663-1671(9)
Authors: Dumont, M.; Ernst, R.; Fautrelle, Y.; Grenier, B.; Hardy, J.J.; Anderhuber, M.

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