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Magnetically Active Nanocomposites

On the other hand, the industrialization of Sm-Fe-based nanocomposite magnets will be realized by the manufacturing activities of Siunitomo Metal Mining Co., Ltd., TDK Co., Ltd., Hitachi Metal Ind. Co., Ltd., Toshiba Co., Ltd. and other companies in Japan. [Pg.547]

Magnetically active nanocomposites can function as passive magnetic devices because nanocomposites control inductance of the circuitry. Magnetic nanocomposites can be embedded into an epoxy matrix to provide passive magnetic devices such as inductors, antennas and transformers. [Pg.462]

Kumar, U.N., Kratz, K., Behl, M., and Lendlein, A. (2012) Shape-memory properties of magnetically active triple-shape nanocomposites based on a grafted polymer network with two crystallizable switching segments. eXPRESS Polym. [Pg.151]

V. Thiruvengadam, and S. Vitta, Ni/Bacterial cellulose nanocomposite, a magnetically active inorganic-organic hybrid gel. RSCAdv. 3,12765-12773 (2013). [Pg.504]

The nanoporous hypercrosslinked polystyrene proves to be the material of choice for the preparation of nanocomposites (Chapter 17) by formation of nano-sized clusters of catalyticaUy active metals, for example, platinum or palladium, or of magnetic nano-crystals of iron oxides. Being confined in the nano-cage, the clusters do not agglomerate so that the catalysts remain stable and highly active in any liquid media. [Pg.669]

Although the electronic properties of magnetic SMP systems have been explored, this has usually been seen as a secondary focus. However, in 2012 Fu et al. showed that Joule heating of a CNT nanocomposite in a polystyrene matrix was able to achieve a shape change while imparting electro-active properties to the SMP [131]. The electrical properties were shown to be strongly dependent on CNT concentration, testing frequency, and temperature. [Pg.343]


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See also in sourсe #XX -- [ Pg.475 , Pg.476 , Pg.477 , Pg.478 ]




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