Phase transformation in metals: mathematics, theory and practice
This textbook explains the physics of phase transformation and associated constraints from a metallurgical or materials science point of view, based on many topics including crystallography, mass transport by diffusion, thermodynamics, heat transfer and related temperature gradients, thermal deforma...
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Cham, Switzerland
Springer
[2020]
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Schlagworte: | |
Zusammenfassung: | This textbook explains the physics of phase transformation and associated constraints from a metallurgical or materials science point of view, based on many topics including crystallography, mass transport by diffusion, thermodynamics, heat transfer and related temperature gradients, thermal deformation, and even fracture mechanics. The work presented emphasizes solidification and related analytical models based on heat transfer. This corresponds with the most fundamental physical event of continuous evolution of latent heat of fusion for directional or non-directional liquid-to-solid phase transformation at a specific interface with a certain geometrical shape, such as planar or curved front. Dr. Perez introduces mathematical and engineering approximation schemes for describing the phase transformation, mainly during solidification of pure metals and alloys. Giving clear definitions and explanations of theoretical concepts and full detail of derivation of formulae, this interdisciplinary volume is ideal for graduate and upper-level undergraduate students in applied science, and professionals in the metal making and surface reconstruction industries |
Beschreibung: | This textbook explains the physics of phase transformation and associated constraints from a metallurgical or materials science point of view, based on many topics including crystallography, mass transport by diffusion, thermodynamics, heat transfer and related temperature gradients, thermal deformation, and even fracture mechanics. The work presented emphasizes solidification and related analytical models based on heat transfer. This corresponds with the most fundamental physical event of continuous evolution of latent heat of fusion for directional or non-directional liquid-to-solid phase transformation at a specific interface with a certain geometrical shape, such as planar or curved front. Dr. Perez introduces mathematical and engineering approximation schemes for describing the phase transformation, mainly during solidification of pure metals and alloys. Giving clear definitions and explanations of theoretical concepts and full detail of derivation of formulae, this interdisciplinary volume is ideal for graduate and upper-level undergraduate students in applied science, and professionals in the metal making and surface reconstruction industries.- Reinforces concepts with example problems illustrating the application of thermodynamics and heat transfer techniques for solving complex solidification problems - Adopts an easy and succinct manner narrative style- Elucidates solidification shrinkage and gas porosity in casting defects- Describes analysis of cracks around a pore using linear elastic fracture mechanics (LEFM) Chapter 1. Crystallography.- Chapter 2. Surface Reconstruction.- Chapter 3. Mass Transport by Diffusion.- Chapter 4. Solidification.- Chapter 5. Planar Metal Solidification.- Chapter 6. Contour Metal Solidification.- Chapter 7. Alloy Solidification I.- Chapter 8. Alloy Solidification II.- Chapter 9. Solid-State Phase Change.- Chapter 10. Solidification Defects |
Beschreibung: | xix, 544 Seiten Illustrationen, Diagramme |
ISBN: | 9783030491673 |
Internformat
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500 | |a This textbook explains the physics of phase transformation and associated constraints from a metallurgical or materials science point of view, based on many topics including crystallography, mass transport by diffusion, thermodynamics, heat transfer and related temperature gradients, thermal deformation, and even fracture mechanics. The work presented emphasizes solidification and related analytical models based on heat transfer. This corresponds with the most fundamental physical event of continuous evolution of latent heat of fusion for directional or non-directional liquid-to-solid phase transformation at a specific interface with a certain geometrical shape, such as planar or curved front. Dr. Perez introduces mathematical and engineering approximation schemes for describing the phase transformation, mainly during solidification of pure metals and alloys. Giving clear definitions and explanations of theoretical concepts and full detail of derivation of formulae, this interdisciplinary volume is ideal for graduate and upper-level undergraduate students in applied science, and professionals in the metal making and surface reconstruction industries.- Reinforces concepts with example problems illustrating the application of thermodynamics and heat transfer techniques for solving complex solidification problems - Adopts an easy and succinct manner narrative style- Elucidates solidification shrinkage and gas porosity in casting defects- Describes analysis of cracks around a pore using linear elastic fracture mechanics (LEFM) | ||
500 | |a Chapter 1. Crystallography.- Chapter 2. Surface Reconstruction.- Chapter 3. Mass Transport by Diffusion.- Chapter 4. Solidification.- Chapter 5. Planar Metal Solidification.- Chapter 6. Contour Metal Solidification.- Chapter 7. Alloy Solidification I.- Chapter 8. Alloy Solidification II.- Chapter 9. Solid-State Phase Change.- Chapter 10. Solidification Defects | ||
520 | |a This textbook explains the physics of phase transformation and associated constraints from a metallurgical or materials science point of view, based on many topics including crystallography, mass transport by diffusion, thermodynamics, heat transfer and related temperature gradients, thermal deformation, and even fracture mechanics. The work presented emphasizes solidification and related analytical models based on heat transfer. This corresponds with the most fundamental physical event of continuous evolution of latent heat of fusion for directional or non-directional liquid-to-solid phase transformation at a specific interface with a certain geometrical shape, such as planar or curved front. Dr. Perez introduces mathematical and engineering approximation schemes for describing the phase transformation, mainly during solidification of pure metals and alloys. Giving clear definitions and explanations of theoretical concepts and full detail of derivation of formulae, this interdisciplinary volume is ideal for graduate and upper-level undergraduate students in applied science, and professionals in the metal making and surface reconstruction industries | ||
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Datensatz im Suchindex
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author | Perez, Nestor 1950- |
author_GND | (DE-588)1118628616 |
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author_sort | Perez, Nestor 1950- |
author_variant | n p np |
building | Verbundindex |
bvnumber | BV046936177 |
classification_rvk | ZM 4000 |
ctrlnum | (OCoLC)1220915324 (DE-599)BVBBV046936177 |
discipline | Werkstoffwissenschaften / Fertigungstechnik |
discipline_str_mv | Werkstoffwissenschaften / Fertigungstechnik |
format | Book |
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spelling | Perez, Nestor 1950- Verfasser (DE-588)1118628616 aut Phase transformation in metals mathematics, theory and practice Nestor Perez Cham, Switzerland Springer [2020] xix, 544 Seiten Illustrationen, Diagramme txt rdacontent n rdamedia nc rdacarrier This textbook explains the physics of phase transformation and associated constraints from a metallurgical or materials science point of view, based on many topics including crystallography, mass transport by diffusion, thermodynamics, heat transfer and related temperature gradients, thermal deformation, and even fracture mechanics. The work presented emphasizes solidification and related analytical models based on heat transfer. This corresponds with the most fundamental physical event of continuous evolution of latent heat of fusion for directional or non-directional liquid-to-solid phase transformation at a specific interface with a certain geometrical shape, such as planar or curved front. Dr. Perez introduces mathematical and engineering approximation schemes for describing the phase transformation, mainly during solidification of pure metals and alloys. Giving clear definitions and explanations of theoretical concepts and full detail of derivation of formulae, this interdisciplinary volume is ideal for graduate and upper-level undergraduate students in applied science, and professionals in the metal making and surface reconstruction industries.- Reinforces concepts with example problems illustrating the application of thermodynamics and heat transfer techniques for solving complex solidification problems - Adopts an easy and succinct manner narrative style- Elucidates solidification shrinkage and gas porosity in casting defects- Describes analysis of cracks around a pore using linear elastic fracture mechanics (LEFM) Chapter 1. Crystallography.- Chapter 2. Surface Reconstruction.- Chapter 3. Mass Transport by Diffusion.- Chapter 4. Solidification.- Chapter 5. Planar Metal Solidification.- Chapter 6. Contour Metal Solidification.- Chapter 7. Alloy Solidification I.- Chapter 8. Alloy Solidification II.- Chapter 9. Solid-State Phase Change.- Chapter 10. Solidification Defects This textbook explains the physics of phase transformation and associated constraints from a metallurgical or materials science point of view, based on many topics including crystallography, mass transport by diffusion, thermodynamics, heat transfer and related temperature gradients, thermal deformation, and even fracture mechanics. The work presented emphasizes solidification and related analytical models based on heat transfer. This corresponds with the most fundamental physical event of continuous evolution of latent heat of fusion for directional or non-directional liquid-to-solid phase transformation at a specific interface with a certain geometrical shape, such as planar or curved front. Dr. Perez introduces mathematical and engineering approximation schemes for describing the phase transformation, mainly during solidification of pure metals and alloys. Giving clear definitions and explanations of theoretical concepts and full detail of derivation of formulae, this interdisciplinary volume is ideal for graduate and upper-level undergraduate students in applied science, and professionals in the metal making and surface reconstruction industries bicssc bisacsh Metals Engineering—Materials Phase transitions (Statistical physics) Engineering mathematics Crystallography Materials science Phasenumwandlung (DE-588)4132140-6 gnd rswk-swf Metall (DE-588)4038860-8 gnd rswk-swf Hardcover, Softcover / Technik/Maschinenbau, Fertigungstechnik Metall (DE-588)4038860-8 s Phasenumwandlung (DE-588)4132140-6 s DE-604 Erscheint auch als Online-Ausgabe 978-3-030-49168-0 |
spellingShingle | Perez, Nestor 1950- Phase transformation in metals mathematics, theory and practice bicssc bisacsh Metals Engineering—Materials Phase transitions (Statistical physics) Engineering mathematics Crystallography Materials science Phasenumwandlung (DE-588)4132140-6 gnd Metall (DE-588)4038860-8 gnd |
subject_GND | (DE-588)4132140-6 (DE-588)4038860-8 |
title | Phase transformation in metals mathematics, theory and practice |
title_auth | Phase transformation in metals mathematics, theory and practice |
title_exact_search | Phase transformation in metals mathematics, theory and practice |
title_exact_search_txtP | Phase transformation in metals mathematics, theory and practice |
title_full | Phase transformation in metals mathematics, theory and practice Nestor Perez |
title_fullStr | Phase transformation in metals mathematics, theory and practice Nestor Perez |
title_full_unstemmed | Phase transformation in metals mathematics, theory and practice Nestor Perez |
title_short | Phase transformation in metals |
title_sort | phase transformation in metals mathematics theory and practice |
title_sub | mathematics, theory and practice |
topic | bicssc bisacsh Metals Engineering—Materials Phase transitions (Statistical physics) Engineering mathematics Crystallography Materials science Phasenumwandlung (DE-588)4132140-6 gnd Metall (DE-588)4038860-8 gnd |
topic_facet | bicssc bisacsh Metals Engineering—Materials Phase transitions (Statistical physics) Engineering mathematics Crystallography Materials science Phasenumwandlung Metall |
work_keys_str_mv | AT pereznestor phasetransformationinmetalsmathematicstheoryandpractice |