Phase Interaction in the Metal - Oxide Melts - Gas -System
The Modeling of Structure, Properties and Processes Mitwirkender: Boronenkov, Vladislav; Zinigrad, Michael; Shanchurov, Sergey; Pastukhov, Edward; Shalimov, Mikhail; Leontiev, Leopold
Phase Interaction in the Metal - Oxide Melts - Gas -System
The Modeling of Structure, Properties and Processes Mitwirkender: Boronenkov, Vladislav; Zinigrad, Michael; Shanchurov, Sergey; Pastukhov, Edward; Shalimov, Mikhail; Leontiev, Leopold
This monograph describes mathematical models that enable prediction of phase compositions for various technological processes, as developed on the base of a complex physico-chemical analysis of reaction. It studies thermodynamics and kinetics of specific stages of complex pyrometallurgical processes involving boron, carbon, sulfur, tungsten, phosphorus, and many more, as well as their exposure to all sorts of factors. First and foremost, this enables to optimize processes and technologies at the stage of design, while traditional empirical means of development of new technologies are…mehr
This monograph describes mathematical models that enable prediction of phase compositions for various technological processes, as developed on the base of a complex physico-chemical analysis of reaction. It studies thermodynamics and kinetics of specific stages of complex pyrometallurgical processes involving boron, carbon, sulfur, tungsten, phosphorus, and many more, as well as their exposure to all sorts of factors.
First and foremost, this enables to optimize processes and technologies at the stage of design, while traditional empirical means of development of new technologies are basically incapable of providing an optimal solution. Simulation results of metals and alloys production, welding and coating technologies allow obtaining materials with pre-given composition, structure and properties in a cost-saving and conscious manner. Moreover, a so-called "inverse problem", i.e., selecting source materials which would ensure the required results, cannot be solved by any other means.
Artikelnr. des Verlages: 80024818, 978-3-642-22376-1
2012
Seitenzahl: 424
Erscheinungstermin: 20. Oktober 2011
Englisch
Abmessung: 241mm x 160mm x 28mm
Gewicht: 764g
ISBN-13: 9783642223761
ISBN-10: 3642223761
Artikelnr.: 33585870
Herstellerkennzeichnung
Books on Demand GmbH
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Autorenporträt
This monograph describes mathematical models that enable prediction of phase compositions for various technological processes, as developed on the base of a complex physico-chemical analysis of reaction. It studies thermodynamics and kinetics of specific stages of complex pyrometallurgical processes involving boron, carbon, sulfur, tungsten, phosphorus, and many more, as well as their exposure to all sorts of factors. First and foremost, this enables to optimize processes and technologies at the stage of design, while traditional empirical means of development of new technologies are basically incapable of providing an optimal solution. Simulation results of metals and alloys production, welding and coating technologies allow obtaining materials with pre-given composition, structure and properties in a cost-saving and conscious manner. Moreover, a so-called "inverse problem", i.e., selecting source materials which would ensure the required results, cannot be solved by any other means. The monograph is undoubtedly useful for scientists and production engineers engaged in the creation of new materials and coatings, as well as the development of optimal technologies. The book is also of interest to university teachers and undergraduate and post-graduate students specializing in the theory and technology of metallurgical processes.
Inhaltsangabe
Introduction.- Metal and Slag Melts Structure and Properties Theory.- High-Temperature Processes Simulation.- Mathematical Models for Steel Production.- High-Temperature Physico-Chemical Processes of Welding, Depositing, and Coating.- Structure, Phase Composition and Properties Prediction.
Introduction.- Metal and Slag Melts Structure and Properties Theory.- High-Temperature Processes Simulation.- Mathematical Models for Steel Production.- High-Temperature Physico-Chemical Processes of Welding, Depositing, and Coating.- Structure, Phase Composition and Properties Prediction.
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