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Tables of Contents for Permanent Magnet and Electromechanical Devices
Chapter/Section Title
Page #
Page Count
Foreword
xi
 
Preface
xiii
 
Materials
1
72
Introduction
1
1
Units
2
4
Classification of Materials
6
1
Atomic Magnetic Moments
7
10
Single Electron Atoms
9
5
Multielectron Atoms
14
3
Paramagnetism
17
2
Ferromagnetism
19
4
Magnetostatic Energy
23
1
Demagnetization Field
23
4
Anisotropy
27
6
Magnetocrystalline Anisotropy
27
4
Shape Anisotropy
31
2
Domains
33
3
Hysteresis
36
3
Soft Magnetic Materials
39
5
Hard Magnetic Materials
44
2
Ferrites
46
2
Alnico
48
2
Samarium-Cobalt
50
1
Neodymium-Iron-Boron
51
2
Bonded Magnets
53
2
Magnetization
55
11
Stability
66
7
Review of Maxwell's Equations
73
24
Introduction
73
1
Maxwell's Equations
74
8
Constitutive Relations
75
2
Integral Equations
77
2
Boundary Conditions
79
3
Force and Torque
82
1
Potentials
82
3
Quasi-static Theory
85
2
Static Theory
87
4
Magnetostatic Theory
87
2
Electrostatic Theory
89
2
Summary
91
6
Field Analysis
97
110
Introduction
97
1
Magnetostatic Analysis
97
29
Vector Potential
102
8
Force and Torque
110
2
Maxwell Stress Tensor
112
4
Energy
116
2
Inductance
118
8
The Current Model
126
5
The Charge Model
131
13
Force
135
6
Torque
141
3
Magnetic Circuit Analysis
144
17
Current Sources
144
9
Magnet Sources
153
8
Boundary-Value Problems
161
24
Cartesian Coordinates
162
13
Cylindrical Coordinates
175
5
Spherical Coordinates
180
5
Method of Images
185
5
Finite Element Analysis
190
10
Finite Difference Method
200
7
Permanent Magnet Applications
207
128
Introduction
207
1
Magnet Structures
208
57
Rectangular Structures
208
10
Cylindrical Structures
218
47
High Field Structures
265
3
Magnetic Latching
268
5
Magnetic Suspension
273
9
Magnetic Gears
282
4
Magnetic Couplings
286
20
Magnetic Resonance Imaging
306
6
Electrophotography
312
6
Magneto-Optical Recording
318
7
Free-Electron Lasers
325
10
Electromechanical Devices
335
134
Introduction
335
1
Device Basics
335
2
Quasi-static Field Theory
337
17
Stationary Reference Frames
338
3
Moving Reference Frames
341
13
Electrical Equations
354
7
Stationary Circuits
354
4
Moving Coils
358
3
Mechanical Equations
361
2
Electromechanical Equations
363
13
Stationary Circuits
363
3
Moving Coils
366
10
Energy Analysis
376
7
Magnetic Circuit Actuators
383
10
Axial-Field Actuators
393
9
Resonant Actuators
402
4
Magneto-Optical Bias Field Actuator
406
7
Linear Actuators
413
8
Axial-Field Motors
421
16
Stepper Motors
437
9
Hybrid Analytical-FEM Analysis
446
9
Magnetic MEMS
455
14
A. Vector Analysis
469
26
Cartesian Coordinates
469
4
Cylindrical Coordinates
473
3
Spherical Coordinates
476
3
Integrals of Vector Functions
479
6
Theorems and Identities
485
6
Coordinates Transformations
491
4
B. Green's Functions
495
2
C. Systems of Equations
497
12
Euler's Method
498
4
Improved Euler Method
502
1
Runge-Kutta Methods
503
6
D. Units
509
4
Index
513