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Permanent Magnet & Electromechanical Devices: Materials, Analysis, and Applications (Electromagnetism) by Edward P. Furlani
- Permanent Magnet & Electromechanical Devices: Materials, Analysis, and Applications (Electromagnetism)
- Edward P. Furlani
- Page: 518
- Format: pdf, ePub, mobi, fb2
- ISBN: 9780080513690
Ebooks rar free download Permanent Magnet & Electromechanical Devices: Materials, Analysis, and Applications (Electromagnetism) DJVU 9780080513690
<p> <b>From the Back Cover</b></p> <p> Permanent Magnet and Electromechanical Devices: Materials, Analysis, and Applications is a comprehensive and self-contained exposition of the theory and methods used in the analysis and design of permanent magnet and electromechanical devices. It contains extensive discussions of several key topics of applied magnetics, including the theory of ferromagnetism, a survey of magnetic materials, magnetostatic analysis, magnetic circuit theory, the design of <br>rare-earth permanent magnet structures, and the analysis of electromechanical devices. The book is a valuable text or reference for researchers, professors, engineers, and students engaged in the development of permanent magnet materials, computation of magnetic fields, analysis of magnetic circuits, design of permanent magnet structures, and development of electromechanical devices such as transducers, actuators, and motors. It can also serve as a primary or supplemental text for courses on applied magnetics, permanent magnetism, electromechanical energy conversion, or motion control. The book provides a rigorous theoretical foundation for the subject matter and demonstrates the application of theory to the implementation of practical designs. The theoretical presentation is reinforced with numerous illustrations and over 60 solved examples of practical applications.<br> · Extensive discussion of magnetic materials, including the physical principles of magnetism, domains, hysteresis, soft and hard magnetic materials and their properties, and the magnetization and stability of permanent magnets.<br>· Comprehensive presentation of analytical and numerical methods for the analysis of steady currents, permanent magnets, and magnetic circuits.<br>· Over 60 solved examples of practical permanent magnet and electromechanical applications<br>· Analytical analysis and design formulas for the field distributions of the most common rare-earth magnet structures and the performance of rare-earth magnetic couplings, gears, and bearings<br>· Extensive discussion of the theory of electromechanical devices with numerous solved examples<br>· Analytical analysis and design formulas for linear and rotational actuators, brushless DC motors, and stepper motors<br>· Presentation of a hybrid analytical-FEM approach to analysis of electromechanical devices<br>· Introduction to magnetic microactuators<br><br><br></p> <p> <b>About the Author</b></p> <p> Dr. Edward Furlani holds BS degrees in both physics and electrical engineering, and MS and PhD degrees in theoretical physics from the State University of New York at Buffalo. He is currently a research associate in the research laboratories of the Eastman Kodak Company, which he joined in 1982. He has worked in the area of applied magnetics for over 15 years. His research in this area has involved the design and development of numerous magnetic devices and processes. He has extensive experience in the analysis and simulation of a broad range of magnetic applications including rare-earth permanent magnet structures, magnetic drives and suspensions, magnetic circuits, magnetic brush subsystems in the electrophotographic process, magnetic and magneto-optic recording, high-gradient magnetic separation, and electromechanical devices such as transducers, actuators and motors. His current research activity is in the area of microsystems and involves the analysis and simulation of various micro-electromechanical systems (MEMS) including light modulators, microactuators and microfluidic components. Dr. Furlani has authored over 40 publications in scientific journals and holds over 100 US patents.<br />
Permanent magnet and electromechanical devices [electronic
Other design applications would be for permanent magnet structures such as engineering on electromagnetic theory, electronic and magnetic materials, and Permanent Magnet and Electromechanical Devices: Materials, Analysis, and .
Permanent Magnet and Electromechanical Devices: Materials
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Permanent Magnet and Electromechanical Devices. Electromagnetism
Other design applications would be for permanent magnet structures such as bearings and couplings, which are hardware electrical engineering on electromagnetic theory, electronic and magnetic materials, and Magnetic Circuit Analysis.
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the resultant magnetic field through the plane of the device. We examine Introduction. Applications requiring specifically tailored magnetic fields are widespread of permanently magnetized hard magnetic material, possibly augmented with can be reached with electromagnetic sources, static sources have the natural.
Permanent Magnet and Electromechanical Devices: Materials
Permanent Magnet and Electromechanical Devices: Materials, Analysis, and examples of practical engineering applications such as the design of magnetic components like solenoids, which are electromagnetic coils that are moved by
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Hiroyuki Ohsaki
Graduate School: Applied Electromechanical Dynamics, Electromagnetic Characteristic analysis of superconducting application devices have been performed and the Progress in material technologies such as permanent magnets and
Permanent Magnet and Electromechanical Devices Materials
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Multi-functional magnetic composite materials for use in high specific output are finding increased application in transportation and renewable power generation. earth permanent magnets have opened the way for novel electromagnetic failure of the device, lies in the development of mechanically robust solutions for
ABSTRACT DUVAL, LUIS DENIT. Low Power Valve Actuation using
Furlani, E. P., 2001, Permanent Magnet and Electromagnetic Devices: Materials,. Analysis, and Applications, Academic Press, New York. 2.4 Moon, F., 1984,
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ECE Ph.D. Degrees Awarded
Dissertation:Design, Implementation, and Analysis for an Improved Multiple Inverter Microgrid System Dissertation: Doubly-Salient Permanent-Magnet Flux -Reversal-Free Defect-Tolerant Handling of Trillion-Element Reconfigurable Devices Dissertation: Propagation of Electromechanical Disturbances Across Large
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