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MAXWELL3D官方教程,初学者宝典,按照教程一步步走下来,基本掌握MAXWELL软件
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user’s guide – Maxwell 3D
Electromagnetic and Electromechanical Analysis
ANSYS Inc • Southpointe • 275 Technology Drive • Canonsburg, PA 15317
Maxwell 3D
electronic design automation software
The information contained in this document is subject to change without notice.
ANSYS Inc. makes no warranty of any kind with regard to this material, including, but
not limited to, the implied warranties of merchantability and fitness for a particular
purpose. ANSYS Inc. shall not be liable for errors contained herein or for incidental or
consequential damages in connection with the furnishing, performance, or use of this
material.
© 2010 ANSYS Inc. All rights reserved.
ANSYS Inc.
Southpointe
275 Technology Drive
Canonsburg, PA 15317
ansysinfo@ansys.com
http://www.ansys.com
(T) 724-746-3304 (F) 724-514-9494
Ansoft Maxwell, Simplorer, RMxprt and Optimetrics and any and all ANSYS, Inc.
brand, product, service and feature names, logos and slogans are registered
trademarks or trademarks of ANSYS, Inc. or its subsidiaries in the United States or
other countries. All other brand, product, service and feature names or trademarks are
the property of their respective owners.
New editions of this manual will incorporate all material updated since the previous
edition. The manual printing date, which indicates the manual’s current edition,
changes when a new edition is printed. Minor corrections and updates which are
incorporated at reprint do not cause the date to change. Update packages may be
issued between editions and contain additional and/or replacement pages to be
merged into the manual by the user. Note that pages which are rearranged due to
changes on a previous page are not considered to be revised.
Edition: REV6.0
Date: 13 March 2012
Software Version: 15
Maxwell 3D User’s Guide
Contents
This document discusses some basic concepts and terminology used throughout
the ANSYS Maxwell application. It provides an overview of the following topics:
1. Overview
2. Solution Types
2.0 - General Finite Element Information
2.1 - Magnetostatic Analysis
2.2 - Eddy Current Analysis
2.3 - Transient Magnetic Analysis
2.4 - Electrostatic Analysis
2.5 - DC Conduction Analysis
2.6- Electric Transient Analysis
3. Mesh Overview
3.0 - Meshing Process and Operations
3.1 - Geometry Import & Healing
3.2 - Mesh Operation Examples
3.3 - Adaptive Meshing
4. Data Reporting
4.0 - Data Plotting
4.1 - Field Calculator
5. Examples – Magnetostatic
5.1 – Magnetic Force
5.2 – Inductance Calculation
5.3 – Stranded Conductors
5.4 – Equivalent Circuit Extraction (ECE) Linear Movement
5.5 – Anisotropic Materials
5.6 – Symmetry Boundaries
5.7 – Permanent Magnet Magnetization
5.8 – Master/Slave boundaries
6. Examples – Eddy Current
6.1 – Asymmetrical Conductor with a Hole
6.2 – Radiation Boundary
6.3 - Instantaneous Forces on Busbars
Maxwell 3D User’s Guide
7. Examples – Transient
7.1 – Switched Reluctance Motor (Stranded Conductors)
7.2 – Rotational Motion
7.3 – Translational Motion
7.4 – Core Loss
8. Examples – Electric
8.1 – Mass Spectrometer
9. Examples – Basic Exercises
9.1 – Electrostatic
9.2 – DC Conduction
9.3 – Magnetostatic
9.4 – Parametrics
9.5 – Magnetic Transient
9.6 – Magnetic Transient with Circuit Editor
9.7 – Post Processing
9.8 – Optimetrics
9.9 – Meshing
9.10 – Scripting
9.11 – Linear ECE
9.12 – Eddy Current with ANSYS Mechanical
9.13 – Rotational Transient Motion
9.14 – Basic Electric Transient
9.15 – Permanent Magnet Assignment
9.16 – Electric Transient High Voltage Line
10. Examples – Optimetrics
10.1 – Gapped Inductor
11. Examples – Motors
11.1 – Motor Application Note – Prius Motor
12. Examples – Multiphysics Coupling
12. 1 – Maxwell Magnetostatic to Mechanical Coupling (IGBT)
12.2 - Maxwell Eddy Current to FLUENT Coupling
12.3 – Maxwell Transient to FLUENT Coupling
12.4 – Maxwell Electrostatic to Mechanical Coupling (Capacitor)
ANSYS Maxwell Field Simulator v15 – Training Seminar
P1-1
Overview
Presentation
1
Maxwell v15
Maxwell 3D is a high-performance interactive software
package that uses finite element analysis (FEA) to solve
electric, magnetostatic, eddy current, and transient
problems.
v15
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