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Solidification and Crystallization Processing in Metals and Alloys

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📘 Book Details

  • Author: Hasse Fredriksson, Ulla Åkerlind

  • Brand: Wiley

  • Binding: Hardcover

  • Edition: 1

  • Number of Pages: 826

  • Release Date: 03-08-2012

  • EAN: 9781119993056

  • Package Dimensions: 11.3 x 9.6 x 2.0 inches

  • Languages: English


📝 About the Book

Solidification and Crystallization Processing in Metals and Alloys is an authoritative and comprehensive resource for understanding the transformation of atoms from a disordered liquid state to a more ordered solid state, a process fundamental to metals processing. Written by Hasse Fredriksson (KTH, Royal Institute of Technology, Stockholm) and Ulla Åkerlind (University of Stockholm, Sweden), this book delves deeply into the mechanisms of solidification and crystallization processes in metals and alloys. It is designed as a companion volume to earlier works like Materials Processing during Casting (2006) and Physics of Functional Materials (2008).

This book is essential for Masters and PhD students, researchers in Materials Science, Engineering, Chemistry, and Metallurgy, as well as engineers working in industry. It provides clear theoretical explanations complemented by experimental insights, offering readers a holistic view of the field.


📚 Key Features

  • Comprehensive Overview: The book covers the thermodynamic fundamentals, including the properties of interfaces, nucleation, crystal growth in vapors, liquids, and melts, and heat transport during solidification processes.

  • Real-World Applications: Emphasizing practical applications, this text explores a wide range of solidification structures like faceted, dendritic, eutectic, and peritectic structures, as well as metallic glasses and amorphous alloy melts.

  • Numerous Worked Examples: Each chapter includes solved examples and exercises with answers, helping readers reinforce their understanding and apply theoretical concepts to real-world situations.

  • In-Depth Content: The book connects theoretical concepts with experimental results, providing a detailed account of the crystallization and solidification processes from both scientific and engineering perspectives.

  • Resource for Industry Professionals: In addition to being a textbook for students, this book serves as a valuable reference for engineers in industry engaged in metals processing and materials science.


📖 Table of Contents

  • Fundamentals of Thermodynamics in Solidification

  • Properties of Interfaces in Materials

  • Nucleation and Crystal Growth

  • Heat Transport During Solidification

  • Solidification Structures: Faceted, Dendritic, Eutectic, and Peritectic

  • Metallic Glasses and Amorphous Alloy Melts

  • Crystal Growth in Vapors, Liquids, and Melts

  • Practical Insights from Experimental Results


🌟 Why Choose This Book?

  • Expert Authorship: Written by leading experts in Materials Science, Hasse Fredriksson and Ulla Åkerlind, providing valuable academic and industry insights.

  • Extensive Coverage: This book offers an in-depth exploration of solidification and crystallization, covering essential processes and the latest advancements in metals processing.

  • Clear and Structured Approach: The book presents a well-organized structure, beginning with theoretical foundations and moving toward practical applications, making it ideal for students and professionals alike.

  • Practical Exercises: Includes worked examples, exercises with answers, and full worked solutions to aid in learning and problem-solving.


🎓 Who Should Read This Book?

  • Masters and PhD Students: Ideal for students in Materials Science, Metallurgy, Engineering, and Chemistry who are focusing on solidification and crystallization processes.

  • Researchers: A valuable reference for researchers in metals processing and materials science, as well as those conducting advanced studies in thermodynamics and crystal growth.

  • Industry Professionals: A comprehensive guide for engineers involved in metals processing, casting, and materials fabrication in metallurgy and related fields.