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Alloys and Intermetallic Compounds: From Modeling to Engineering

Alloys and Intermetallic Compounds: From Modeling to Engineering

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  • More about Alloys and Intermetallic Compounds: From Modeling to Engineering

The book explores the role of modeling in designing alloys and intermetallic compounds, covering important techniques and applications, emphasizing the correlation between modeling and technological developments.

Format: Paperback / softback
Length: 367 pages
Publication date: 31 March 2021
Publisher: Taylor & Francis Ltd


Modeling plays a crucial role in the design of alloys and intermetallic compounds, providing valuable insights into their properties and behavior. This book offers an introduction to the most important and widely used modeling techniques, including CALPHAD and ab-initio methods, and explores the latest developments in their applications. The book emphasizes the correlation between modeling and technological advancements, highlighting topics such as wettability of Ultra High Temperature Ceramics by metals, active brazing of diamonds to metals in cutting tools, surface issues in medicine, novel Fe-based superconductors, metallic glasses, high entropy alloys, and thermoelectric materials.

Modeling in Alloy and Intermetallic Compounds Design


This book focuses on the role of modeling in the design of alloys and intermetallic compounds. It includes an introduction to the most important and most used modeling techniques, such as CALPHAD and ab-initio methods, as well as a section devoted to the latest developments in applications of alloys. The book emphasizes the correlation between modeling and technological developments while discussing topics such as wettability of Ultra High Temperature Ceramics by metals, active brazing of diamonds to metals in cutting tools, surface issues in medicine, novel Fe-based superconductors, metallic glasses, high entropy alloys, and thermoelectric materials.

Introduction to Modeling Techniques


Modeling techniques are used to predict the properties and behavior of materials. CALPHAD (Calculation of Phase Diagrams) is a widely used technique that combines thermodynamic data with phase diagram calculations to predict the phase stability and phase diagram of materials. Ab-initio methods, on the other hand, are based on quantum mechanics and are used to calculate the electronic structure and properties of materials. These techniques are essential for understanding the behavior of materials at the atomic level and for designing new materials with desired properties.

Applications of Modeling Techniques in Alloy and Intermetallic Compounds


Modeling techniques have been applied to a wide range of alloy and intermetallic compounds. For example, CALPHAD has been used to design new alloys for various applications, such as aerospace, automotive, and electronics. Ab-initio methods have been used to design new superconductors, metallic glasses, and thermoelectric materials. These techniques have also been used to study the wettability of Ultra High Temperature Ceramics by metals, active brazing of diamonds to metals in cutting tools, and surface issues in medicine.

Correlation between Modeling and Technological Developments


Modeling and technological developments are closely related. Modeling can help to identify new materials with desired properties, while technological developments can help to improve the performance of existing materials. For example, the development of new alloys for aerospace applications has led to increased fuel efficiency and reduced emissions. The development of new superconductors has led to the development of new energy-efficient technologies.

Conclusion


Modeling plays a crucial role in the design of alloys and intermetallic compounds. It provides valuable insights into their properties and behavior and can help to identify new materials with desired properties. Modeling techniques such as CALPHAD and ab-initio methods are essential for understanding the behavior of materials at the atomic level and for designing new materials with desired properties. By emphasizing the correlation between modeling and technological developments, this book will help to advance the field of materials science and engineering.

Weight: 680g
Dimension: 234 x 156 (mm)
ISBN-13: 9780367782207

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