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Phase interaction in the metal-oxide melts-gas system: the modeling of structure, properties and processes

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...

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Detalles Bibliográficos
Autores principales: Boronenkov, V, Zinigrad, M, Leontiev, L
Lenguaje:eng
Publicado: Springer 2012
Materias:
Acceso en línea:https://dx.doi.org/10.1007/978-3-642-22377-8
http://cds.cern.ch/record/1433359
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author Boronenkov, V
Zinigrad, M
Leontiev, L
author_facet Boronenkov, V
Zinigrad, M
Leontiev, L
author_sort Boronenkov, V
collection CERN
description 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.
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publishDate 2012
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spelling cern-14333592021-04-22T00:36:17Zdoi:10.1007/978-3-642-22377-8http://cds.cern.ch/record/1433359engBoronenkov, VZinigrad, MLeontiev, LPhase interaction in the metal-oxide melts-gas system: the modeling of structure, properties and processesEngineeringThis 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.Springeroai:cds.cern.ch:14333592012
spellingShingle Engineering
Boronenkov, V
Zinigrad, M
Leontiev, L
Phase interaction in the metal-oxide melts-gas system: the modeling of structure, properties and processes
title Phase interaction in the metal-oxide melts-gas system: the modeling of structure, properties and processes
title_full Phase interaction in the metal-oxide melts-gas system: the modeling of structure, properties and processes
title_fullStr Phase interaction in the metal-oxide melts-gas system: the modeling of structure, properties and processes
title_full_unstemmed Phase interaction in the metal-oxide melts-gas system: the modeling of structure, properties and processes
title_short Phase interaction in the metal-oxide melts-gas system: the modeling of structure, properties and processes
title_sort phase interaction in the metal-oxide melts-gas system: the modeling of structure, properties and processes
topic Engineering
url https://dx.doi.org/10.1007/978-3-642-22377-8
http://cds.cern.ch/record/1433359
work_keys_str_mv AT boronenkovv phaseinteractioninthemetaloxidemeltsgassystemthemodelingofstructurepropertiesandprocesses
AT zinigradm phaseinteractioninthemetaloxidemeltsgassystemthemodelingofstructurepropertiesandprocesses
AT leontievl phaseinteractioninthemetaloxidemeltsgassystemthemodelingofstructurepropertiesandprocesses