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The aim of this Special Issue is to highlight the most recent advancements in the field of materials science, showcasing novel techniques that can be used in a variety of applications, including medical and civil engineering. This collection of research articles was edited by Assoc. Prof. Andrei Victor Sandu from the Gheorghe Asachi Technical University of laşi, Romania.
A collection of articles published under the guidance of Assoc. Prof. Ph.D. Andrei Victor SANDU in the Special Issue "Obtaining and Characterization of New Materials, Volume II". The published articles under this Special Issue represent an excellent collection of research and review articles with cutting-edge results that promote sustainable development in the field of material engineering.
This book reviews the recent scientific developments on mining and metallurgical wastes-based alkali-activated materials (MMWAAMs). Enormous quantities of solid wastes are generated during the exploitation of ore deposits and the subsequent processing for materials, causing serious environmental problems. Alkali activation is one of the robust technologies that converts mining and metallurgical wastes into value-added materials and offers technological solutions for efficient stabilization of toxic components in mining and metallurgical wastes. Herein, this book presents the development of the design, processing routes, and performances of mining and metallurgical waste-based alkali-activate...
"This book entitled “Engineering Steels and High Entropy-Alloys” presents an overview of various types of advanced steels and high entropy alloys. It also discusses the current research trends, problems, and applications of engineering steels and high entropy materials. The book also gives a brief overview of advances in surface protection strategies of steels and laser processing of materials (additive manufacturing). The various key features of this book include: 1. A comprehensive overview of various types of engineering steels, phase transformation, and applications in engineering. 2. A complete detailed understanding and mechanism of high entropy materials, including high entropy alloys and ceramics. 3. Descriptions of structure-property relationships in high entropy materials and their application in various fields such as biomedical implants. 4. A brief review of various laser processing (additive manufacturing) and surface protection of advanced materials."
This book offers a comprehensive and up-to-date overview of the progress and innovations in the field of novel biomaterials applied in tissue engineering. It focuses on the development, characterization, and application of a wide range of advanced biomaterials, from biodegradable metallic alloys to hydroxyapatite composites and nanofiber technologies, with a special emphasis on enhancing tissue regeneration and wound healing. These aspects may be of interest to decision-makers in health and technology, providing vision into future research directions and the potential impact on patient care.
Epoxy resins are versatile, high-performance materials essential to modern industry, used in coatings, adhesives, composites, and advanced technologies. This book offers a concise and comprehensive overview of recent developments in epoxy science, from conventional systems to sustainable, bio-based, and nanostructured materials. It highlights their exceptional mechanical, thermal, and dielectric properties, as well as innovations to improve performance and environmental compatibility. Combining scientific fundamentals with practical insights, the volume serves as a valuable reference for researchers, engineers, and students interested in the design and application of next-generation epoxy materials.
This book provides an overview of biomaterials science with a focus on health and medical applications that can be improved with new biomaterials with non-allergenic elements. These materials are designed to meet functional requirements and overcome the disadvantages of classical alloys used as biomaterials in human tissue. Over seven chapters, this volume explains the problems created by classical alloys and examines how the new generation of biomaterials helps both doctors and patients. It is designed for students, doctors, patients, and researchers worldwide.
The publication of "Innovations in Smart Alloys: From Microstructure to Market" addresses the growing demand for advanced materials that combine adaptive properties with high performance across diverse industries. This comprehensive volume explores the science and technology of smart alloys, tracing their historical development, underlying principles, and the latest advancements in their manufacturing, functionalization, and processing techniques. It delves into key topics such as the relationship between microstructure and material properties, the unique characteristics of multicomponent and high-entropy alloys, and the development of smart alloy composites and hybrid materials. The book also covers the significant applications of smart alloys in critical sectors including energy, biomedical, civil engineering, aerospace, and automotive industries, supported by case studies and real-world examples. This book is an invaluable resource for materials scientists, engineers, researchers, and industry professionals seeking to deepen their understanding of smart alloys and leverage their transformative potential in modern technology and industry.
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