Verlag: World Scientific Publishing Comp, 1995
ISBN 10: 9810220626 ISBN 13: 9789810220624
Sprache: Englisch
Anbieter: suffolkbooks, Center moriches, NY, USA
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Verlag: World Scientific Publishing Company, 1995
ISBN 10: 9810220626 ISBN 13: 9789810220624
Sprache: Englisch
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In den WarenkorbZustand: Good. Used - Good. Your purchase helps support Sri Lankan Children's Charity 'The Rainbow Centre.' Ex-library, but has been well cared for. Our donations to The Rainbow Centre have helped provide an education and a safe haven to hundreds of children who live in appalling conditions.
Verlag: World Scientific Publishing Company, 1995
ISBN 10: 9810220626 ISBN 13: 9789810220624
Sprache: Englisch
Anbieter: Basi6 International, Irving, TX, USA
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Anbieter: GreatBookPricesUK, Woodford Green, Vereinigtes Königreich
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Verlag: WORLD SCIENTIFIC PUB CO INC, 1995
ISBN 10: 9810220626 ISBN 13: 9789810220624
Sprache: Englisch
Anbieter: Buchpark, Trebbin, Deutschland
Zustand: Gut. Zustand: Gut | Sprache: Englisch | Produktart: Bücher.
Anbieter: GreatBookPricesUK, Woodford Green, Vereinigtes Königreich
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Anbieter: Rarewaves USA, OSWEGO, IL, USA
Hardback. Zustand: New. The Phase Field Crystal (PFC) model incorporates microscopic structural details into a mesoscopic continuum theory. Methods for fast propagation of PFC interfaces are discussed in this book. They can handle a wide range of thermal gradients, supersaturations and supercoolings, including applications such as selective laser melting. The reader will find theoretical treatment in the first half, while the latter half discusses numerical models.
Anbieter: killarneybooks, Inagh, CLARE, Irland
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Hardcover. Zustand: Good. 1st Edition. Good+ condition. Hardcover, ix + 375 pages, NOT ex-library. Weight 945g. Good+. A faint grubby mark on one of the front endpapers. Else book is clean and bright with unmarked text, free of inscriptions and stamps, firmly bound. Shelfworn marks and scratches on the boards. Issued without a dust jacket. -- This monograph provides a rigorous and systematic treatment of the physics governing the formation of non-equilibrium solid phases from deeply undercooled liquids. The work is structured around the core theoretical pillars of the field: the thermodynamics and kinetics of nucleation, the theory of rapid dendritic and eutectic growth, and the principles of competitive phase selection. A significant focus is dedicated to the advanced experimental techniques required for such studies, with detailed discussions on containerless processing methods like electromagnetic and electrostatic levitation, drop tube processing, and calorimetry. The authors apply these fundamental concepts to explain the formation of a wide range of materials, including supersaturated solid solutions, intermetallic compounds, quasicrystals, and bulk metallic glasses. The book stands as a definitive reference for researchers and graduate students in physical metallurgy, materials science, and condensed matter physics. -- An in-depth examination of the formation and properties of metastable solid phases that form when melts are cooled below their normal freezing point. This work offers a thorough analysis of the thermodynamic and kinetic processes that occur during the solidification of undercooled melts. It covers experimental techniques, theoretical models, and case studies of various materials, making it an essential resource for scientists and engineers interested in materials science and phase transitions. The volume begins by introducing the concept of undercooling and the conditions under which melts can remain in a liquid state below their equilibrium solidification temperature. It explains the importance of undercooling for the creation of metastable phases, which often exhibit unique structural, mechanical, and physical properties. The book further discusses the nucleation process, crystal growth kinetics, and the factors that influence the formation of metastable phases, such as cooling rate, impurities, and the material's chemical composition. Key chapters focus on experimental methods for undercooling melts and observing metastable phases, including levitation techniques, electromagnetic fields, and rapid quenching methods. These techniques allow for precise control of cooling rates and conditions necessary to produce metastable solids. The text also covers theoretical models that predict the behaviour of materials during undercooling and solidification, offering insights into the phase diagrams and microstructural development of various materials. Throughout the book, case studies of specific materials, including metals, alloys, and glass-forming liquids, provide practical examples of how metastable phases are utilised in technological applications. The authors explore how these metastable materials can lead to enhanced performance in fields such as aerospace, electronics, and metallurgy. The volume concludes with a discussion on the future directions in research and technological applications of metastable materials, emphasising the potential for innovation in new material design and the expansion of metastable phase usage in industrial processes.
Anbieter: AHA-BUCH GmbH, Einbeck, Deutschland
Buch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - The Phase Field Crystal (PFC) model incorporates microscopic structural details into a mesoscopic continuum theory. Methods for fast propagation of PFC interfaces are discussed in this book. They can handle a wide range of thermal gradients, supersaturations and supercoolings, including applications such as selective laser melting. The reader will find theoretical treatment in the first half, while the latter half discusses numerical models.
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Zustand: Sehr gut. Zustand: Sehr gut | Sprache: Englisch | Produktart: Bücher.
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Hardback. Zustand: New. The Phase Field Crystal (PFC) model incorporates microscopic structural details into a mesoscopic continuum theory. Methods for fast propagation of PFC interfaces are discussed in this book. They can handle a wide range of thermal gradients, supersaturations and supercoolings, including applications such as selective laser melting. The reader will find theoretical treatment in the first half, while the latter half discusses numerical models.
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Verlag: Springer International Publishing AG, Cham, 2024
ISBN 10: 3031492773 ISBN 13: 9783031492778
Sprache: Englisch
Anbieter: Grand Eagle Retail, Bensenville, IL, USA
Hardcover. Zustand: new. Hardcover. This book deals with the use of the hodograph equation in phase transformations in condensed matter, especially, for crystallization and solidification processes. The main focus of the book is the interpretation of the phase-field equations for isotropic and anisotropic interfaces based on the advanced GibbsThomson and Herring conditions, respectively. Beginning with the basic ideas behind the extended irreversible thermodynamics, the kinetic phase-field model for slow and arbitrarily fast phase transformations is derived where the unified hodograph equation follows from: the sharp interface limit of the diffuse interface or the traveling wave solution of the propagating phase field.Under the example of solute trapping and disorder trapping effects, comparing theoretical results with molecular dynamics simulations, and with the analysis of experimental data, the concrete workability of the developed hodograph equation is demonstrated for widest range of driving force in phase transformations. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.
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In den WarenkorbHardcover. Zustand: Brand New. 1st edition. 400 pages. 9.75x7.00x1.00 inches. In Stock.
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Anbieter: Books Puddle, New York, NY, USA
Zustand: New. 1st ed. 2024 edition NO-PA16APR2015-KAP.
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Taschenbuch. Zustand: Neu. Phase Field Theory in Materials Physics | The Hodograph Equation | Peter Galenko | Taschenbuch | xxi | Englisch | 2025 | Springer | EAN 9783031492808 | Verantwortliche Person für die EU: Springer Verlag GmbH, Tiergartenstr. 17, 69121 Heidelberg, juergen[dot]hartmann[at]springer[dot]com | Anbieter: preigu.
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Zustand: Hervorragend. Zustand: Hervorragend | Sprache: Englisch | Produktart: Bücher.
Verlag: Springer International Publishing, Springer Nature Switzerland, 2025
ISBN 10: 3031492803 ISBN 13: 9783031492808
Sprache: Englisch
Anbieter: AHA-BUCH GmbH, Einbeck, Deutschland
Taschenbuch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - This book deals with the use of the hodograph equation in phase transformations in condensed matter, especially, for crystallization and solidification processes. The main focus of the book is the interpretation of the phase-field equations for isotropic and anisotropic interfaces based on the advanced Gibbs-Thomson and Herring conditions, respectively. Beginning with the basic ideas behind the extended irreversible thermodynamics, the kinetic phase-field model for slow and arbitrarily fast phase transformations is derived where the unified hodograph equation follows from:- the sharp interface limit of the diffuse interface or- the traveling wave solution of the propagating phase field.Under the example of solute trapping and disorder trapping effects, comparing theoretical results with molecular dynamics simulations, and with the analysis of experimental data, the concrete workability of the developed hodograph equation is demonstrated for widest range of driving force in phase transformations.
Verlag: Springer International Publishing, Springer Nature Switzerland, 2024
ISBN 10: 3031492773 ISBN 13: 9783031492778
Sprache: Englisch
Anbieter: AHA-BUCH GmbH, Einbeck, Deutschland
Buch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - This book deals with the use of the hodograph equation in phase transformations in condensed matter, especially, for crystallization and solidification processes. The main focus of the book is the interpretation of the phase-field equations for isotropic and anisotropic interfaces based on the advanced Gibbs-Thomson and Herring conditions, respectively. Beginning with the basic ideas behind the extended irreversible thermodynamics, the kinetic phase-field model for slow and arbitrarily fast phase transformations is derived where the unified hodograph equation follows from:- the sharp interface limit of the diffuse interface or- the traveling wave solution of the propagating phase field.Under the example of solute trapping and disorder trapping effects, comparing theoretical results with molecular dynamics simulations, and with the analysis of experimental data, the concrete workability of the developed hodograph equation is demonstrated for widest range of driving force in phase transformations.