000 02819nam a22001697a 4500
999 _c1292
_d1292
005 20211201100437.0
008 211201b ||||| |||| 00| 0 eng d
020 _a9783319261041
082 _a620.112
_bZHU
100 _aZhukov, Arcady,
245 _aNovel functional magnetic materials :
_bfundamentals and applications
_cArcady Zhukov
260 _aCham : .
_bSpringer,
_c2016
300 _a446P:
505 _t Magnetic shape memory materials with improved functional properties: scientific aspects --
_tMagnetic, magetocaloric, magnetotransport, magneto-optical properties of Heusler alloys Ni-Mn-In: bulk, ribbons and microwires --
_tHeusler alloy ribbons: Structure, Martensitic transformation, Magnetic transitions and Exchange bias effect --
_tMagnetocaloric materials --
_tAbove room temperature ferromagnetism in dilute magnetic oxide semiconductors --
_tSoft magnetic wires for sensor applications --
_tBimagnetic microwires, magnetic properties and high frequency behavior --
_tTuneable meta-composites based on functional fillers --
_tPermanent magnets --
_thistory, current research, outlook --
_tBulk Metallic Glasses and Glassy/Crystalline Materials.
520 _a This book presents current research on advanced magnetic materials and multifunctional composites. Recent advances in technology and engineering have resulted from the development of advanced magnetic materials with improved functional magnetic and magneto-transport properties. Certain industrial sectors, such as magnetic sensors, microelectronics, and security, demand cost-effective materials with reduced dimensionality and desirable magnetic properties such as enhanced magnetic softness, giant magnetic field sensitivity, and large magnetocaloric effect. Expert chapters present the most up-to-date information on the fabrication process, processing, tailoring of properties, and applications of different families of modern functional materials for advanced smart applications. Topics covered include novel magnetic materials and applications; amorphous and nanocrystalline magnetic materials and applications; hard magnetic materials; magnetic shape memory alloys; and magnetic oxides. The book's highly interdisciplinary and forward-looking approach will benefit the scientific community, particularly researchers and advanced graduate students working in the field of advanced magnetic materials, composites, and high-performance sensor and microwave devices. Presents the state-of-the-art in novel functional magnetic materials Features expert chapters from intern ational experts Covers shape memory materials, magnetocaloric materials, magnetic microwires, and hard magnets Represents essential reading for advanced graduate students through practicing scientists and industry researchers
942 _2ddc
_cBK