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High-Entropy Materials: Advances and Applications: Emerging Materials and Technologies

Autor Yong Zhang
en Limba Engleză Hardback – 9 aug 2023
Research in the field of high-entropy materials is advancing rapidly. High-Entropy Materials: Advances and Applications focuses on materials discovered using the high-entropy alloys (HEA) strategy. It discusses various types of high-entropy materials, such as face-centered cubic (FCC) and body-centered cubic (BCC) HEAs, films and coatings, fibers, and powders and hard-cemented carbides, along with current research status and applications:
• Describes, compositions and processing of high-entropy materials.
• Summarizes industrially valuable alloys found in high-entropy materials that hold promise for promotion and application.
• Explains how high-entropy materials can be used in many fields and can outperform traditional materials.
This book is aimed at researchers, advanced students, and academics in materials science and engineering and related disciplines.
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Specificații

ISBN-13: 9781032323916
ISBN-10: 1032323914
Pagini: 164
Ilustrații: 55 Line drawings, black and white; 38 Halftones, black and white; 93 Illustrations, black and white
Dimensiuni: 156 x 234 x 17 mm
Greutate: 0.46 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press
Seria Emerging Materials and Technologies


Public țintă

Postgraduate and Professional Reference

Notă biografică

Yong Zhang obtained his PhD from the University of Science and Technology Beijing (USTB). After postdoctoral work at the Institute of Physics, Chinese Academy of Science, he worked as a research fellow at the National University of Singapore as part of the Singapore-Massachusetts Institute of Technology Alliance. He became a professor at the USTB in 2004 and received an award from the Ministry of Education of China under the New Century Excellent Talents (NCET) in Universities program in 2005. His main research interest is the development of new materials in bulk, film, and fiber forms by using the high-entropy and materials-genome-initiative (MGI) strategies.

Cuprins

Chapter 1 Brief Introduction of High-Entropy Materials
Chapter 2 FCC-Structured High-Entropy Materials
Chapter 3 BCC-Structured High-Entropy Materials
Chapter 4 Multiple-Phase High-Entropy Materials
Chapter 5 High-Entropy Films and Coating
Chapter 6 High-Entropy Fibers
Chapter 7 High-Entropy Powder and Hard-Cemented Carbide Alloys
Chapter 8 High-Entropy Ceramics and Intermetallic Compounds
Chapter 9 High-Entropy Polymers and Entropic Materials
Chapter 10 Future and Applications

Descriere

High-Entropy Materials: Advances and Developments introduces developments and focuses on materials discovered using the high-entropy alloys strategy. It discusses various types of high-entropy materials, such as FCC and BCC HEAs, films and coatings, fibers, and powders and hard cemented carbides, along with current research status and applications.

Textul de pe ultima copertă

This book draws on the latest research to discuss the history and development of high-entropy alloys and ceramics in bulk, film, and fiber form. High-entropy materials have recently been developed using the entropy of mixing and entropy of configuration of materials, and have proven to exhibit unique properties superior to those of conventional materials. The field of high-entropy alloys was born in 2004, and has since been developed for both scientific and engineering applications.
Although there is extensive literature, this field is rapidly transforming. This book highlights the cutting edge of high-entropy materials, including their fundamentals and applications. Above all, it reflects two major milestones in their development: the equi-atomic ratio single-phase high-entropy alloys; and the non-equi-atomic ratio dual-phase high-entropy alloys.

Caracteristici

Provides detailed information on the materials design, processing, and properties of high-entropy materials Elucidates the relationship between the micro- & nano-scale structures and properties of entropic materials Investigates the phase stability of high-entropy materials at elevated temperatures, including high-entropy super-alloys and ceramics Discusses the ultrahigh fracture toughness and Charpy impact toughness of high-entropy alloys at liquid helium and liquid nitrogen temperatures