Author: Etienne Du Trémolet de Lacheisserie
Publisher: CRC Press
ISBN:
Category : Science
Languages : en
Pages : 438
Book Description
This outstanding reference provides a comprehensive discussion of magnetoelasticity based on three accepted descriptions of magnetostriction: elastomagnetic matrices, a group symmetrical description, and a tensor formalism. It explores recent advances that rely mainly on Callen's work and emphasizes the influence of temperature, stress, and composition on the Joule magnetostriction of soft ferromagnets. The author offers a comprehensive examination of magnetoelastic effects useful for a variety of significant applications, including the Villari-, direct and inverse Wiedemann-, Matteuci-, ?E-, and invar-effects. This vital work also addresses fundamental topics, including pressure dependence of the Curie temperature, form effect, and magnetostriction in paramagnets, diamagnets, superconductors, and antiferromagnets. The last chapter is devoted to technical aspects such as experimental methods, technically useful materials (e.g., Terfenol-D and 2605SC Metglas), and various illustrative applications. Magnetostriction is one reference no physicist, materials scientist, or geophysicist should be without.
Magnetostriction Theory and Applications of Magnetoelasticity
Author: Etienne Du Trémolet de Lacheisserie
Publisher: CRC Press
ISBN:
Category : Science
Languages : en
Pages : 438
Book Description
This outstanding reference provides a comprehensive discussion of magnetoelasticity based on three accepted descriptions of magnetostriction: elastomagnetic matrices, a group symmetrical description, and a tensor formalism. It explores recent advances that rely mainly on Callen's work and emphasizes the influence of temperature, stress, and composition on the Joule magnetostriction of soft ferromagnets. The author offers a comprehensive examination of magnetoelastic effects useful for a variety of significant applications, including the Villari-, direct and inverse Wiedemann-, Matteuci-, ?E-, and invar-effects. This vital work also addresses fundamental topics, including pressure dependence of the Curie temperature, form effect, and magnetostriction in paramagnets, diamagnets, superconductors, and antiferromagnets. The last chapter is devoted to technical aspects such as experimental methods, technically useful materials (e.g., Terfenol-D and 2605SC Metglas), and various illustrative applications. Magnetostriction is one reference no physicist, materials scientist, or geophysicist should be without.
Publisher: CRC Press
ISBN:
Category : Science
Languages : en
Pages : 438
Book Description
This outstanding reference provides a comprehensive discussion of magnetoelasticity based on three accepted descriptions of magnetostriction: elastomagnetic matrices, a group symmetrical description, and a tensor formalism. It explores recent advances that rely mainly on Callen's work and emphasizes the influence of temperature, stress, and composition on the Joule magnetostriction of soft ferromagnets. The author offers a comprehensive examination of magnetoelastic effects useful for a variety of significant applications, including the Villari-, direct and inverse Wiedemann-, Matteuci-, ?E-, and invar-effects. This vital work also addresses fundamental topics, including pressure dependence of the Curie temperature, form effect, and magnetostriction in paramagnets, diamagnets, superconductors, and antiferromagnets. The last chapter is devoted to technical aspects such as experimental methods, technically useful materials (e.g., Terfenol-D and 2605SC Metglas), and various illustrative applications. Magnetostriction is one reference no physicist, materials scientist, or geophysicist should be without.
Finite Elements for Electrical Engineers
Author: P. P. Silvester
Publisher: Cambridge University Press
ISBN: 9780521372190
Category : Technology & Engineering
Languages : en
Pages : 356
Book Description
This third edition of the principal text on the finite element method for electrical engineers and electronics specialists presents the method in a mathematically undemanding style, accessible to undergraduates who may be encountering it for the first time. Like the earlier editions, it begins by deriving finite elements for the simplest familiar potential fields, and then formulates finite elements for a wide range of applied electromagnetics problems. These include wave propagation, diffusion, and static fields; open-boundary problems and nonlinear materials; axisymmetric, planar and fully three-dimensional geometries; and scalar and vector fields. A wide selection of demonstration programs allows the reader to follow the practical use of the methods. Besides providing all that is needed for the beginning undergraduate student, this textbook is also a valuable reference text for professional engineers and research students.
Publisher: Cambridge University Press
ISBN: 9780521372190
Category : Technology & Engineering
Languages : en
Pages : 356
Book Description
This third edition of the principal text on the finite element method for electrical engineers and electronics specialists presents the method in a mathematically undemanding style, accessible to undergraduates who may be encountering it for the first time. Like the earlier editions, it begins by deriving finite elements for the simplest familiar potential fields, and then formulates finite elements for a wide range of applied electromagnetics problems. These include wave propagation, diffusion, and static fields; open-boundary problems and nonlinear materials; axisymmetric, planar and fully three-dimensional geometries; and scalar and vector fields. A wide selection of demonstration programs allows the reader to follow the practical use of the methods. Besides providing all that is needed for the beginning undergraduate student, this textbook is also a valuable reference text for professional engineers and research students.