In recent years, innovative magnetic materials have been introduced in the field of electrical machines. In the ambit of soft magnetic materials, laminated steels guarantee good robustness and high magnetic performance but, in some high-frequency applications, can be replaced by Soft Magnetic Composite (SMC) materials. SMC materials allow us to reduce the eddy currents and to design innovative 3D magnetic circuits. In general, SMCs are characterized at room temperature, but as electrical machines operate at high temperature (around 100 C), an investigation analysis of the temperature effect has been carried out on these materials; in particular, three SMC samples with different binder percentages and process parameters have been considered for magnetic and energetic characterization.
Effect of the Temperature on the Magnetic and Energetic Properties of Soft Magnetic Composite Materials / Ferraris, Luca; Franchini, Fausto; Pošković, Emir; Actis Grande, Marco; Bidulský, Róbert. - In: ENERGIES. - ISSN 1996-1073. - ELETTRONICO. - 14:15(2021), p. 4400. [10.3390/en14154400]
Effect of the Temperature on the Magnetic and Energetic Properties of Soft Magnetic Composite Materials
Ferraris, Luca;Franchini, Fausto;Pošković, Emir;Actis Grande, Marco;
2021
Abstract
In recent years, innovative magnetic materials have been introduced in the field of electrical machines. In the ambit of soft magnetic materials, laminated steels guarantee good robustness and high magnetic performance but, in some high-frequency applications, can be replaced by Soft Magnetic Composite (SMC) materials. SMC materials allow us to reduce the eddy currents and to design innovative 3D magnetic circuits. In general, SMCs are characterized at room temperature, but as electrical machines operate at high temperature (around 100 C), an investigation analysis of the temperature effect has been carried out on these materials; in particular, three SMC samples with different binder percentages and process parameters have been considered for magnetic and energetic characterization.File | Dimensione | Formato | |
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https://hdl.handle.net/11583/2934524