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Science and Engineering of Casting Solidification, Second Edition

Autor Doru Michael Stefanescu
en Limba Engleză Paperback – 5 noi 2010
Science and Engineering of Casting Solidification, Second Edition covers the essentials of solidification science of metals and alloys at macro- and micro-length scales at cooling rates specific to commercial castings and rapid solidification processing. The mathematical fundamentals necessary to build a working knowledge in the field, specifically partial differential equations and numerical analysis, are introduced. Each topic begins with the description of the underlying physics, followed by the mathematics required to build analytical and numerical models. Wherever possible, a detailed description of the architecture of the numerical model is provided, followed by examples of models built on the Excel spreadsheet.
Features of this new edition include:
  • Expanded sections on peritectic solidification and shrinkage porosity mechanisms and modeling,
  • A new chapter addressing rapid solidification and bulk metallic glasses,
  • Additional solved problems,
  • Revised and simplified derivations of several models.
Science and Engineering of Casting Solidification, Second Edition will prove useful to senior undergraduate and graduate students, as well as to industrial researchers that work in the field of solidification in general and casting modeling in particular. The detailed coverage of casting defects will also make it useful to industrial practitioners of metal casting.
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Specificații

ISBN-13: 9781441945099
ISBN-10: 1441945091
Pagini: 424
Ilustrații: XX, 380 p.
Dimensiuni: 155 x 235 x 22 mm
Greutate: 0.59 kg
Ediția:Softcover reprint of hardcover 2nd ed. 2009
Editura: Springer Us
Colecția Springer
Locul publicării:New York, NY, United States

Public țintă

Research

Cuprins

Length-scale in solidification analysis.- Equilibrium and non-equilibrium during solidification.- Macro-scale phenomena - general equations.- Macro-mass transport.- Macro-energy transport.- Numerical Macro-modeling of solidification.- Micro-scale phenomena and interface dynamics.- Cellular and dendritic growth.- Eutectic solidification.- Peritectic solidification.- Monotectic solidification.- Microstructures obtained through rapid solidification.- Solidification in the presence of a third phase.- Numerical micro-modeling of solidification.- Atomic scale phenomena - Nucelation and growth.

Textul de pe ultima copertă

Science and Engineering of Casting Solidification, Second Edition covers the essentials of solidification science of metals and alloys at macro- and micro-length scales at cooling rates specific to commercial castings and rapid solidification processing. The mathematical fundamentals necessary to build a working knowledge in the field, specifically partial differential equations and numerical analysis, are introduced. Each topic begins with the description of the underlying physics, followed by the mathematics required to build analytical and numerical models. Wherever possible, a detailed description of the architecture of the numerical model is provided, followed by examples of models built on the Excel spreadsheet.
Features of this new edition include:
  • Expanded sections on peritectic solidification and shrinkage porosity mechanisms and modeling,
  • A new chapter addressing rapid solidification and bulk metallic glasses,
  • Additional solved problems,
  • Revised and simplified derivations of several models.
Science and Engineering of Casting Solidification, Second Edition will prove useful to senior undergraduate and graduate students, as well as to industrial researchers that work in the field of solidification in general and casting modeling in particular. The detailed coverage of casting defects will also make it useful to industrial practitioners of metal casting. Additional course materials are available upon faculty request.

Caracteristici

Numerous modeling and calculation examples Covers theoretical solidification and its main practical application Includes a new chapter on rapid solidification and bulk metallic glasses Update on phase field modeling and its applications to nucleation theory and grain growth Update on cellular automaton modeling and its application to microshrinkage prediction