Magnetism and Magnetic Materials
Catégorie: Science-Fiction, Sciences, Techniques et Médecine
Auteur: E. Bruce Goldstein
Éditeur: Suzanne Goldring, William Leavitt
Publié: 2016-12-25
Écrivain: Rachel Abbott, Yôko Ogawa
Langue: Coréen, Espagnol, Russe
Format: pdf, eBook Kindle
Auteur: E. Bruce Goldstein
Éditeur: Suzanne Goldring, William Leavitt
Publié: 2016-12-25
Écrivain: Rachel Abbott, Yôko Ogawa
Langue: Coréen, Espagnol, Russe
Format: pdf, eBook Kindle
Multiscale Modeling of Magnetic Materials - Ferromagnetic materials are used in a wide range of applications such as sensors, actuators, motors or transformers. Their main property of interest is their capability to reach high magnetisation levels when subjected to an external magnetic field of relatively low intensity. This property originates in the complex magnetic domain microstructure and its evolution under the application of external loading. In that sense, magnetic behaviour is a very good example of multiscale phenomena, and a natural playground for multiscale modelling approaches. Of course the magnetisation curve can be described using macroscopic approaches [1], and such macroscopic approaches are necessary when it comes to numerical design of engineering parts or devices. However, because magnetic behaviour is very sensitive to many external influences-such as temperature, chemical environment , or mechanical stress-macroscopic approaches can quickly become inoperative to describe these coupled phenomena intricately related to the mi-crost
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