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538.95 --- 538.91 --- 537.622 --- Magnetic materials --- -Nanostructure materials --- -Solids --- -Solid state physics --- Transparent solids --- Nanomaterials --- Nanometer materials --- Nanophase materials --- Nanostructure controlled materials --- Nanostructure materials --- Ultra-fine microstructure materials --- Microstructure --- Nanotechnology --- Materials --- Properties and phenomena (except transport properties) --- Structures, including transitions --- Magnetic properties of materials --- Congresses --- Magnetic properties --- -Congresses --- -Properties and phenomena (except transport properties) --- 537.622 Magnetic properties of materials --- 538.91 Structures, including transitions --- 538.95 Properties and phenomena (except transport properties) --- -537.622 Magnetic properties of materials --- Nanostructured materials --- Solids --- Solid state physics --- Magnetic properties&delete&
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Bonded magnets are the fastest growing sector in the entire market for magnetic materials. Their great advantages lie in the cost effective net-shape manufacturing process allowing the achievement of complex geometries and their isotropic magnetic properties. Energy products have more than quadrupled in recent years, too. The contributors to this volume present the current and future status of bonded magnets, including total world production and distribution, the markets involved, and the status of current and future applications. Current novel processing techniques are described and new developments reported, including powder production techniques, jet casting/melt spinning, atomization and DDDR processes. The different types of bonded magnets reviewed include isotropic and anisotropic neodymium-iron-boron, nanocomposites, Sm-Fe interstitial nitrides, Sm-Co and ferrites.
Magnets --- Aimants --- Congresses. --- Congrès --- Congrès --- Magnetism. --- Magnetic materials. --- Materials science. --- Magnetism, Magnetic Materials. --- Characterization and Evaluation of Materials. --- Material science --- Physical sciences --- Materials --- Mathematical physics --- Physics --- Electricity --- Magnetics
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Nanostructured materials --- Manophase materials --- Transport properties --- OPTICAL PROPERTIES --- MAGNETIC PROPERTIES --- MECHANICAL PROPERTIES --- ELECTRONIC PROPERTIES --- Monograph --- Optical properties. --- Magnetic properties. --- Nanostructured materials - Congresses.
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A detailed presentation of the physics of the various hysteresis models that are currently used to explain the magnetization reversal process, including coherent and incoherent magnetization processes, micromagnetism and its application in thin films, multilayers, nanowires, particles and bulk magnets, domain wall pinning and domain wall dynamics, and Preisach modelling. Some of the faulty concepts and interpretations that still exist in the literature are rectified. Magnetic imaging techniques are reviewed, including TEM, SEM, magnetic force microscopy, and optical microscopy. Temperature, field and angular dependence of coercivity, magnetic interactions and magnetic phenomena are reviewed and their effect on magnetic hysteresis is discussed. The magnetic properties of novel materials are discussed, including nanoparticles, nanocrystalline granular solids, particulate media, thin films, and bulk magnets. Finally, present and future applications of novel materials are presented, including magnetic and magneto-optic recording media, magneto-electronics, sensors, magnetic circuit design, and novel structures created from rigid, high-energy permanent magnets.
Magnetic materials --- Congresses --- Hysteresis --- Optics. --- Electrodynamics. --- Magnetism. --- Magnetic materials. --- Materials science. --- Condensed matter. --- Classical Electrodynamics. --- Magnetism, Magnetic Materials. --- Characterization and Evaluation of Materials. --- Condensed Matter Physics. --- Condensed materials --- Condensed media --- Condensed phase --- Materials, Condensed --- Media, Condensed --- Phase, Condensed --- Liquids --- Matter --- Solids --- Material science --- Physical sciences --- Materials --- Mathematical physics --- Physics --- Electricity --- Magnetics --- Dynamics --- Light
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