The book covers the most important materials (naturals, metals, ceramics, polymers and composites) to be used mainly as structural engineering materials. Their main applications based on the properties are described in the first chapters of the book: mechanical, physical and chemical. The second part of the book is dedicated to the conceptual design by properties for a certain structural application: stiffness, mechanical strength, toughness, fatigue resistance, creep, etc., taking into account the weight and the cost. One of the chapters of the second part of the book is focused on the heat…mehr
The book covers the most important materials (naturals, metals, ceramics, polymers and composites) to be used mainly as structural engineering materials. Their main applications based on the properties are described in the first chapters of the book: mechanical, physical and chemical. The second part of the book is dedicated to the conceptual design by properties for a certain structural application: stiffness, mechanical strength, toughness, fatigue resistance, creep, etc., taking into account the weight and the cost. One of the chapters of the second part of the book is focused on the heat treatments of steels in order to improve their resistance to fatigue. The book concludes with a critical comparison between materials considering their production, properties and cost, and the forecast about the utilization of the different fields of materials in structural applications.
José Antonio Pero-Sanz Elorz (1934-2012) had a Doctorate in Engineering from the University of Barcelona (Spain), was a founder member of the International Metallographic Society (USA), a fellow of the Institute of Materials, Minerals and Mining (UK) and Mêmbre d'Honneour de la Société Française de Métallurgie et des Matériaux. He was adviser on Physical Metallurgy matters for the United Nations Industrial Development Organization (UNIDO) as well as for Arcelor Mittal-Europe and was member of the Conseil Scientifique des Usines Renault. He was the Responsible of Research and Development of the Group of Materials in the Oviedo and Madrid School of Mines and professor in both schools for more than 30 years. He has published several books: Materiales Metálicos. Solidificación, Diagramas, Transformaciones (Dossat, Madrid, 1988, ISBN: 84-237-0729-6); Materiales para Ingeniería. Fundiciones Férreas (Dossat, Madrid, 1994, ISBN: 84-237-0822-5); Ciencia e Ingeniería de Materiales. Estructura, Transformaciones, Propiedades y Selección (5 editions, Dossat 2000, Madrid, 2000, ISBN: 84-95312-18-2); Aceros. Metalurgia Física, Selección y Diseño (Dossat 2000, Madrid, 2004, ISBN: 84-89656-54-1); Solidification and Solid-state Transformations of Metals and Alloys (Elsevier, Amsterdam, 2017, ISBN: 978-0-12-812607-3); Materiales para Ingeniería. Fundiciones Férreas (Pedeca Press Publicaciones S. L. U., Madrid, 2018, ISBN: 978-84-697-8834-9); Physical Metallurgy of Cast Irons (Springer International Publishing, Chem (Switzerland), 2018, ISBN ebook: 978-3-319-97313-5; DOI: 10.1007/978-3-319-97313-5; ISBN hardcover: 978-3-319-97312-8). Daniel Fernández González (fernandezgdaniel@uniovi.es), Master in Mining Engineering and Materials Science and Technology from the University of Oviedo. Prize to the best end of degree project in the environmental field Gas Natural-Fenosa. Nowadays, he prepares his PhD. Student granted by the Spanish Government in the field of concentrated solar energy in metallurgy and materials. He is author of 15 articles in indexed journals, and he has published the books: Materiales para Ingeniería. Fundiciones Férreas (Pedeca Press Publicaciones S. L. U., Madrid, 2018, ISBN: 978-84-697-8834-9), Physical Metallurgy of Cast Irons (Springer International Publishing, Chem (Switzerland), 2018, ISBN ebook: 978-3-319-97313-5; DOI: 10.1007/978-3-319-97313-5; ISBN hardcover: 978-3-319-97312-8). He has participated in several research projects. Luis Felipe Verdeja González (lfv@uniovi.es) has a PhD in Chemical Sciences from the University of Oviedo, where he is a professor of Materials Science and head of the Siderurgy, Metals and Materials Group (Sid-Met-Mat). His research focuses in the application, maintenance, and wear of refractory linings in blast furnaces and other metal and steels production processes. He has published more than 100 articles, and has participated in more than 40 research projects (public and private). He has published 8 books: Ciencia de Materiales (Eléctricos) (Servicio de Publicaciones de la Universidad de Oviedo, Oviedo, 1994, ISBN: 84-7468-804-3); Metalurgia Extractiva. Volumen I. Fundamentos (Síntesis, Madrid, 2000, ISBN: 84-7738-802-4); Metalurgia Extractiva. Volumen II. Procesos de Obtención (Síntesis, Madrid, 2000, ISBN: 84-7738-803-2); Prácticas y Problemas de Siderurgia (Fundación Luis Fernández Velasco, Oviedo, 2000, ISBN: 84-931202-2-7); Materiales Refractarios y Cerámicos (Síntesis, Madrid, 2008, ISBN: 978-84-975655-9-2); Refractory and Ceramic Materials (Síntesis, Madrid, 2014, ISBN: 978-84-907705-6-6); Solidification and Solid-state Transformations of Metals and Alloys (Elsevier, Amsterdam, 2017, ISBN: 978-0-12-812607-3); Materiales para Ingeniería. Fundiciones Férreas (Pedeca Press Publicaciones S. L. U., Madrid, 2018, ISBN: 978-84-697-8834-9); Physical Metallurgy of Cast Irons (Springer International Publishing, Chem (Switzerland), 2018, ISBN ebook: 978-3-319-97313-5; DOI: 10.1007/978-3-319-97313-5; ISBN hardcover: 978-3-319-97312-8).
Inhaltsangabe
Conversion of units.- Introduction to the structural materials: naturals, metals, ceramics, polymers and composites.- Structural materials: Metals.- Structural materials: Ceramics.- Organic polymers.- Composites.- The selection of structural materials. Combined mechanical properties, charts for the selection of materials.- Materials for beams.- Materials for columns and struts (compression-tension).- Materials for pressure vessels.- The cost, factor for the selection of materials.- Materials resistant to fatigue: Quenched and tempered steels.- Considerations about the temperature in service and the behaviour of materials.
Conversion of units.- Introduction to the structural materials: naturals, metals, ceramics, polymers and composites.- Structural materials: Metals.- Structural materials: Ceramics.- Organic polymers.- Composites.- The selection of structural materials. Combined mechanical properties, charts for the selection of materials.- Materials for beams.- Materials for columns and struts (compression-tension).- Materials for pressure vessels.- The cost, factor for the selection of materials.- Materials resistant to fatigue: Quenched and tempered steels.- Considerations about the temperature in service and the behaviour of materials.
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