This book discusses the scientific framework of thermoplastic deformation of structural metallic materials, in particular dual-phase steels and intermetallic alloys, emphasizing the attainment of desired alloy structures and properties through enhanced production techniques. By strategically manipulating the stress-strain state, a more uniform deformation is achieved, thereby fostering structural and property homogeneity. A novel experimental-theoretical approach is presented for correlating the stress-strain state with grain size and metal flow stress. Through extensive experimentation, flow curve dependencies and deformation resistance under varying temperature-velocity conditions are meticulously examined, facilitating their integration into specialized software platforms. Analytical formulations derived from experimental data enable the calculation of deformation resistance for special alloys and the establishment of optimal thermoplastic processing parameters. Aimed at scientific and technical professionals, as well as experts in metallurgy and materials science, this book offers invaluable insights into the advancement of alloy processing methodologies.
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Serhii Sheyko, a Candidate of Technical Sciences and Associate Professor, serves as the Head of the educational and scientific laboratory focusing on the latest technologies at "Metalspetsprojekt," Zaporizhzhia National University. With expertise in material science and metal processing, he specializes in the development of progressive technology for thermoplastic processing of special alloys. Sheyko has contributed significantly to the field with 121 scientific publications, including articles, reports, textbooks, and monographs, and holds 7 patents in Ukraine.
Yurii Belokon, a Doctor of Engineering Sciences and Professor, leads the Department of Metallurgical Technologies, Ecology, and Technogenic Safety at Zaporizhzhia National University. With extensive experience in material science and metal processing, Belokon focuses on developing intermetallic alloys for gas turbine engine and aviation-space engineering components. He has published 161 scientific works, comprising articles, reports, textbooks, and monographs, and holds 13 patents in Ukraine. Belokon has received several prestigious awards, including the Scholarship of the Cabinet of Ministers of Ukraine for Young Scientists (2016-2017) and the Award of the President of Ukraine for young scientists for his work on "Innovative technologies of self-propagating high-temperature synthesis" (2022).
Oleksii Hrechanyi, Ph.D. and Associate Professor at the Department of Metallurgical Equipment at Zaporizhzhia National University. Specializing in metallurgical equipment, Hrechanyi focuses on ensuring the reliability of mechanical systems' elements in cases of complex damage. He has published 62 scientific works, including articles, reports, textbooks, and monographs, and holds 6 patents in Ukraine.
Tetiana Vasіlchenko, a Candidate of Technical Sciences and Associate Professor at the Department of Metallurgical Equipment at Zaporizhzhia National University, specializes in metallurgical equipment and metal processing. Her research interests include the production of intermetallic alloys under the conditions of thermochemical pressing. Vasіlchenko has published 67 scientific works, comprising articles, reports, textbooks, and monographs, and holds 6 patents in Ukraine.
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Paperback. Zustand: new. Paperback. This book discusses the scientific framework of thermoplastic deformation of structural metallic materials, in particular dual-phase steels and intermetallic alloys, emphasizing the attainment of desired alloy structures and properties through enhanced production techniques. By strategically manipulating the stress-strain state, a more uniform deformation is achieved, thereby fostering structural and property homogeneity. A novel experimental-theoretical approach is presented for correlating the stress-strain state with grain size and metal flow stress. Through extensive experimentation, flow curve dependencies and deformation resistance under varying temperature-velocity conditions are meticulously examined, facilitating their integration into specialized software platforms. Analytical formulations derived from experimental data enable the calculation of deformation resistance for special alloys and the establishment of optimal thermoplastic processing parameters. Aimed at scientific and technical professionals, as well as experts in metallurgy and materials science, this book offers invaluable insights into the advancement of alloy processing methodologies. This book discusses the scientific framework of thermoplastic deformation of structural metallic materials, in particular dual-phase steels and intermetallic alloys, emphasizing the attainment of desired alloy structures and properties through enhanced production techniques. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. Bestandsnummer des Verkäufers 9783031738951
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Taschenbuch. Zustand: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -This book discusses the scientific framework of thermoplastic deformation of structural metallic materials, in particular dual-phase steels and intermetallic alloys, emphasizing the attainment of desired alloy structures and properties through enhanced production techniques. By strategically manipulating the stress-strain state, a more uniform deformation is achieved, thereby fostering structural and property homogeneity. A novel experimental-theoretical approach is presented for correlating the stress-strain state with grain size and metal flow stress. Through extensive experimentation, flow curve dependencies and deformation resistance under varying temperature-velocity conditions are meticulously examined, facilitating their integration into specialized software platforms. Analytical formulations derived from experimental data enable the calculation of deformation resistance for special alloys and the establishment of optimal thermoplastic processing parameters. Aimed at scientific and technical professionals, as well as experts in metallurgy and materials science, this book offers invaluable insights into the advancement of alloy processing methodologies. 112 pp. Englisch. Bestandsnummer des Verkäufers 9783031738951
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Taschenbuch. Zustand: Neu. This item is printed on demand - Print on Demand Titel. Neuware -This book discusses the scientific framework of thermoplastic deformation of structural metallic materials, in particular dual-phase steels and intermetallic alloys, emphasizing the attainment of desired alloy structures and properties through enhanced production techniques. By strategically manipulating the stress-strain state, a more uniform deformation is achieved, thereby fostering structural and property homogeneity. A novel experimental-theoretical approach is presented for correlating the stress-strain state with grain size and metal flow stress. Through extensive experimentation, flow curve dependencies and deformation resistance under varying temperature-velocity conditions are meticulously examined, facilitating their integration into specialized software platforms. Analytical formulations derived from experimental data enable the calculation of deformation resistance for special alloys and the establishment of optimal thermoplastic processing parameters. Aimed at scientific and technical professionals, as well as experts in metallurgy and materials science, this book offers invaluable insights into the advancement of alloy processing methodologies.Springer-Verlag KG, Sachsenplatz 4-6, 1201 Wien 124 pp. Englisch. Bestandsnummer des Verkäufers 9783031738951
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Taschenbuch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - This book discusses the scientific framework of thermoplastic deformation of structural metallic materials, in particular dual-phase steels and intermetallic alloys, emphasizing the attainment of desired alloy structures and properties through enhanced production techniques. By strategically manipulating the stress-strain state, a more uniform deformation is achieved, thereby fostering structural and property homogeneity. A novel experimental-theoretical approach is presented for correlating the stress-strain state with grain size and metal flow stress. Through extensive experimentation, flow curve dependencies and deformation resistance under varying temperature-velocity conditions are meticulously examined, facilitating their integration into specialized software platforms. Analytical formulations derived from experimental data enable the calculation of deformation resistance for special alloys and the establishment of optimal thermoplastic processing parameters. Aimed at scientific and technical professionals, as well as experts in metallurgy and materials science, this book offers invaluable insights into the advancement of alloy processing methodologies. Bestandsnummer des Verkäufers 9783031738951
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Taschenbuch. Zustand: Neu. Thermoplastic Processing of Structural Metallic Materials | Experiments, Theory, and Modeling | Serhii Sheyko (u. a.) | Taschenbuch | SpringerBriefs in Materials | x | Englisch | 2024 | Springer | EAN 9783031738951 | Verantwortliche Person für die EU: Springer Verlag GmbH, Tiergartenstr. 17, 69121 Heidelberg, juergen[dot]hartmann[at]springer[dot]com | Anbieter: preigu Print on Demand. Bestandsnummer des Verkäufers 129993476
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