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Metallurgy --- corrosie
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Gold ores --- Metallurgy.
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The theme of this special collection of peer-reviewed papers is the preparation and application of High-Performance Mineral-based Powders (HQMP). Here, HQMP refers to powder prepared from natural minerals with high specifications. It is predicted that the area of application of HQMP will become increasingly extensive. The future development of HQMP lies in the further exploitation and improvement of the manufacturing and production technologies of HQMP-orientated towards markets, and this collection will provide a handy roadmap for these likely developments.
Powders --- Powder metallurgy --- Nanoparticles
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Les métaux, ressources minérales naturelles non renouvelables, sont à la base de notre civilisation industrielle. Moins médiatique que le changement climatique ou les enjeux énergétiques, leur raréfaction sera pourtant un des défis majeurs du XXIe siècle : notre modèle de développement, qui repose sur la croissance économique et un accroissement continu du prélèvement des ressources, se heurte à la finitude de la planète. C'est ce thème qu'a choisi de traiter dans ce livre scientifique un groupe d'ingénieurs de l'association des centraliens sous la direction de Philippe Bihouix et Benoît de Guillebon. À l'issue d'une analyse approfondie et documentée, prenant en compte les enjeux techniques, économiques, sociaux et environnementaux de la raréfaction des métaux, les auteurs mettent à mal les mythes de l'abondance, de la croissance verte et d'une technologie forcément salvatrice. Les métaux posent aussi les limites d'une économie circulaire fondée sur le recyclage généralisé. Écrit dans un langage accessible à tous, composé d'un texte principal complété d'une trentaine d'études couvrant des secteurs d'activité, métaux et thèmes transversaux, cet ouvrage est conçu pour répondre aux questions de tous ceux qui veulent comprendre le futur des métaux.
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Introduction to Corrosion Science is suitable for a one-semester course in corrosion science at the graduate or advanced undergraduate level for students that do not have backgrounds in electrochemistry but have taken introductory courses in materials science or physical chemistry. The text follows the approach of a physical chemist or materials scientist and is geared toward students of physical chemistry, materials science, and engineering. In addition, practicing corrosion engineers and materials engineers will find useful information that will broaden their understanding of the fundamental principles of corrosion science. This textbook grew out of classroom lectures, which the author presented as a Professorial Lecturer at George Washington University, Washington, D.C. Chapters on: o Charged interfaces o Electrochemical cells o Thermodynamics of corrosion o Corrosion kinetics and mixed potential theory o Concentration polarization and diffusion o Passivity o Crevice corrosion and pitting o Stress-corrosion cracking and corrosion fatigue o Corrosion inhibitors o Corrosion under organic coatings o AC impedance o High temperature oxidation Key features: o Detailed illustrations o Worked example problems o Problem sets after each chapter o Extensive references o Appendices to show the origin of important equations About the author: Dr. E. McCafferty is a Professorial Lecturer at George Washington University and a consultant to the Naval Research Laboratory, Washington D.C., where he has conducted research in corrosion science for over thirty years.
Materials sciences --- Metallurgy --- coating --- corrosie
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Sintering is a method for manufacturing components from ceramic or metal powders by heating the powder until the particles adhere to form the component required. The resulting products are characterised by an enhanced density and strength, and are used in a wide range of industries. Sintering of advanced materials: fundamentals and processes reviews important developments in this technology and its applicationsPart one discusses the fundamentals of sintering with chapters on topics such as the thermodynamics of sintering, kinetics and mechanisms of densification, the kinetics of micros
Sintering. --- Frittage --- Additive manufacturing --- Iron --- Powder metallurgy --- Isostatic pressing --- Metallurgy --- Material Science and Metallurgy --- General and Others
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