Hysteresis and phase transitions
Our rough guess is there are 89,250 words in this book.
At a pace averaging 250 words per minute, this book will take 5 hours and 57 minutes to read. With a half hour per day, this will take 12 days to read.
How long will it take you?
This book will take an estimated to read at a reading speed averaging words per minute. With 30 minutes per day, this will take to read.
Enter your reading speedYou can take one of our WPM reading speed tests to find your reading speed.
Create a free account to track your reading progress, build your reading list, and set reading goals.
We earn a commission on purchases
Author
Contributions
- Sprekels, J. - Contributor
Publication
1996 - Springer, New York, New York (State)
Language
English
Word Count
89,250 words, Guess
Page Count
357 pages
Identifiers
- Open LibraryOL978303M
- ISBN-100387947639
- OCLC Control Number34669286
- OCLC Control Numberhysteresisphaset0000brok
- Library of Congress Control Number96015533
and 2 more
- LibraryThing9149560
- Goodreads3691546
Classifications
- DDC510 s
- LCCQA1 .A647 no. 121
- LCCQC754.2.H9 .A647 no. 121
Description
This monograph contributes to the mathematical analysis of systems exhibiting hysteresis effects and phase transitions. Its main part begins with a detailed study of models for scalar rate independent hysteresis in the form of hysteresis operators. Applications to ferromagnetism, elastoplasticity and fatigue analysis are presented, and two representative distributed systems with hysteresis operator are discussed. The attention then shifts to the mechanisms of energy dissipation and transformation that induce a hysteretic behavior in continuous media undergoing phase transitions. After an introduction to phenomenological thermodynamic theories of phase transitions, in particular, the Landau-Ginzburg theory and phase field models, several specific models are discussed in detail. These include Falk's model for the hysteresis in shape memory alloys and the phase field models due to Caginalp and Penrose-Fife. The latter are studied both for conserved and non-conserved order parameters. A chapter presenting a mathematical model for the austenite-pearlite and austenite-martensite phase transitions in eutectoid carbon steels concludes the book.
Subjects
Topics
Series Statement
- Applied mathematical sciences ;
Reader Reviews
No reviews yet for this book.
Be the first to share your thoughts!