Phase transformations in metals and alloys:
Gespeichert in:
Hauptverfasser: | , , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Boca Raton, Fla. [u.a.]
CRC Press
2009
|
Ausgabe: | 3. ed. |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XVI, 520 S. Ill., graph. Darst. |
ISBN: | 1420062107 9781420062106 |
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Datensatz im Suchindex
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adam_text | PHASE TRANSFORMATIONS IN METALS AND ALLOYS THIRD EDITION DAVID A.
PORTER, KENNETH E. EASTERLING, AND MOHAMED Y. SHERIF ( * **) CRC PRESS ^
^ ) TAYLOR & FRANCIS GROUP BOCA RATON LONDON NEW YORK CRC PRESS IS AN
IMPRINT OF THE TAYLOR & FRANCIS GROUP, AN INFORMA BUSINESS CONTENTS
PREFACE TO THE THIRD EDITION XIII PREFACE TO THE SECOND EDITION XV
PREFACE TO THE FIRST EDITION XVII AUTHORS XIX CHAPTER 1 THERMODYNAMICS
AND PHASE DIAGRAMS 1 1.1 EQUILIBRIUM 1 1.2 SINGLE-COMPONENT SYSTEMS 4
1.2.1 GIBBS FREE ENERGY AS A FUNCTION OF TEMPERATURE 4 1.2.2 PRESSURE
EFFECTS 7 1.2.3 DRIVING FORCE FOR SOLIDIFICATION 9 1.3 BINARY SOLUTIONS
11 1.3.1 GIBBS FREE ENERGY OF BINARY SOLUTIONS 11 1.3.2 IDEAL SOLUTIONS
13 1.3.3 CHEMICAL POTENTIAL 15 1.3.4 REGULAR SOLUTIONS 17 1.3.5 ACTIVITY
21 1.3.6 REAL SOLUTIONS 23 1.3.7 ORDERED PHASES 24 1.3.8 INTERMEDIATE
PHASES 26 1.4 EQUILIBRIUM IN HETEROGENEOUS SYSTEMS 28 1.5 BINARY PHASE
DIAGRAMS 31 1.5.1 SIMPLE PHASE DIAGRAM 31 1.5.2 SYSTEMS WITH A
MISCIBILITY GAP 32 1.5.3 ORDERED ALLOYS 33 1.5.4 SIMPLE EUTECTIC SYSTEMS
34 1.5.5 PHASE DIAGRAMS CONTAINING INTERMEDIATE PHASES 34 1.5.6 GIBBS
PHASE RULE 34 1.5.7 EFFECT OF TEMPERATURE ON SOLID SOLUBILITY 39 1.5.8
EQUILIBRIUM VACANCY CONCENTRATION 40 1.6 INFLUENCE OF INTERFACES ON
EQUILIBRIUM 42 1.7 TERNARY EQUILIBRIUM 45 1.8 ADDITIONAL THERMODYNAMIC
RELATIONSHIPS FOR BINARY SOLUTIONS 50 1.9 COMPUTATION OF PHASE DIAGRAMS
52 1.9.1 PURE STOICHIOMETRIC SUBSTANCES 52 1.9.2 SOLUTION PHASES 56
1.9.2.1 SUBSTITUTIONAL SOLUTIONS 56 VII VIII CONTENTS 1.10 KINETICS OF
PHASE TRANSFORMATIONS 57 EXERCISES 58 REFERENCES 60 FURTHER READING 61
CHAPTER 2 DIFFUSION 63 2.1 ATOMIC MECHANISMS OF DIFFUSION 65 2.2
INTERSTITIAL DIFFUSION 67 2.2.1 INTERSTITIAL DIFFUSION AS A RANDOM JUMP
PROCESS 67 2.2.2 EFFECT OF TEMPERATURE*THERMAL ACTIVATION 69 2.2.3
STEADY-STATE DIFFUSION 72 2.2.4 NONSTEADY-STATE DIFFUSION 72 2.2.5
SOLUTIONS TO THE DIFFUSION EQUATION 74 2.2.5.1 HOMOGENIZATION 74 2.2.5.2
CARBURIZATION OF STEEL 76 2.3 SUBSTITUTIONAL DIFFUSION 78 2.3.1
SELF-DIFFUSION 78 2.3.2 VACANCY DIFFUSION 83 2.3.3 DIFFUSION IN
SUBSTITUTIONAL ALLOYS 84 2.3.4 DIFFUSION IN DILUTE SUBSTITUTIONAL ALLOYS
92 2.4 ATOMIC MOBILITY 93 2.5 TRACER DIFFUSION IN BINARY ALLOYS 95 2.6
DIFFUSION IN TERNARY ALLOYS 98 2.7 HIGH-DIFFUSIVITY PATHS 100 2.7.1
DIFFUSION ALONG GRAIN BOUNDARIES AND FREE SURFACES 100 2.7.2 DIFFUSION
ALONG DISLOCATIONS 103 2.8 DIFFUSION IN MULTIPHASE BINARY SYSTEMS 104
EXERCISES 106 REFERENCES 109 FURTHER READING 110 CHAPTER 3 CRYSTAL
INTERFACES AND MICROSTRUCTURE ILL 3.1 INTERRACIAL FREE ENERGY 112 3.2
SOLID/VAPOR INTERFACES 113 3.3 BOUNDARIES IN SINGLE-PHASE SOLIDS 117
3.3.1 LOW-ANGLE AND HIGH-ANGLE BOUNDARIES 118 3.3.2 SPECIAL HIGH-ANGLE
GRAIN BOUNDARIES 121 3.3.3 EQUILIBRIUM IN POLYCRYSTALLINE MATERIALS 124
3.3.4 THERMALLY ACTIVATED MIGRATION OF GRAIN BOUNDARIES 129 3.3.5
KINETICS OF GRAIN GROWTH 137 3.4 INTERPHASE INTERFACES IN SOLIDS 140
3.4.1 INTERFACE COHERENCE 141 3.4.1.1 FULLY COHERENT INTERFACES 141
3.4.1.2 SEMICOHERENT INTERFACES 143 3.4.1.3 INCOHERENT INTERFACES 144
3.4.1.4 COMPLEX SEMICOHERENT INTERFACES 145 CONTENTS ! IX 3.4.2
SECOND-PHASE SHAPE: INTERFACIAL ENERGY EFFECTS 147 3.4.2.1 FULLY
COHERENT PRECIPITATES 147 3.4.2.2 PARTIALLY COHERENT PRECIPITATES 148
3.4.2.3 INCOHERENT PRECIPITATES 150 3.4.2.4 PRECIPITATES ON GRAIN
BOUNDARIES 151 3.4.3 SECOND-PHASE SHAPE: MISFIT STRAIN EFFECTS 152
3.4.3.1 FULLY COHERENT PRECIPITATES 152 3.4.3.2 INCOHERENT INCLUSIONS
155 3.4.3.3 PLATELIKE PRECIPITATES 156 3.4.4 COHERENCY LOSS 157 3.4.5
GLISSILE INTERFACES 160 3.4.6 SOLID/LIQUID INTERFACES 165 3.5 INTERFACE
MIGRATION 167 3.5.1 DIFFUSION-CONTROLLED AND INTERFACE-CONTROLLED GROWTH
170 EXERCISES 176 REFERENCES 178 FURTHER READING 179 CHAPTER 4
SOLIDIFICATION 181 4.1 NUCLEATION IN PURE METALS 181 4.1.1 HOMOGENEOUS
NUCLEATION 182 4.1.2 HOMOGENEOUS NUCLEATION RATE 186 4.1.3 HETEROGENEOUS
NUCLEATION 188 4.1.4 NUCLEATION OF MELTING 192 4.2 GROWTH OF A PURE
SOLID 193 4.2.1 CONTINUOUS GROWTH 193 4.2.2 LATERAL GROWTH 194 4.2.3
HEAT FLOW AND INTERFACE STABILITY 197 4.3 ALLOY SOLIDIFICATION 200 4.3.1
SOLIDIFICATION OF SINGLE-PHASE ALLOYS 200 4.3.2 EUTECTIC SOLIDIFICATION
212 4.3.3 OFF-EUTECTIC ALLOYS 218 4.3.4 PERITECTIC SOLIDIFICATION 220
4.4 SOLIDIFICATION OF INGOTS AND CASTINGS 221 4.4.1 INGOT STRUCTURE 222
4.4.2 SEGREGATION IN INGOTS AND CASTINGS 225 4.4.3 CONTINUOUS CASTING
226 4.5 SOLIDIFICATION OF FUSION WELDS 230 4.6 SOLIDIFICATION DURING
QUENCHING FROM THE MELT 235 4.7 METALLIC GLASSES 236 4.7.1
THERMODYNAMICS AND KINETICS 237 4.8 CASE STUDIES OF SOME PRACTICAL
CASTINGS AND WELDS 239 4.8.1 CASTING OF CARBON AND LOW-ALLOY STEELS 239
4.8.2 CASTING OF HIGH-SPEED STEELS 241 EXERCISES 247 X CONTENTS
REFERENCES 249 FURTHER READING 249 CHAPTER 5 DIFFUSIONAL TRANSFORMATIONS
IN SOLIDS 251 5.1 HOMOGENEOUS NUCLEATION IN SOLIDS 253 5.2 HETEROGENEOUS
NUCLEATION 259 5.2.1 RATE OF HETEROGENEOUS NUCLEATION 263 5.3
PRECIPITATE GROWTH 265 5.3.1 GROWTH BEHIND PLANAR INCOHERENT INTERFACES
266 5.3.2 DIFFUSION-CONTROLLED LENGTHENING OF PLATES OR NEEDLES 269
5.3.3 THICKENING OF PLATELIKE PRECIPITATES 271 5.4 OVERALL
TRANSFORMATION KINETICS: TTT DIAGRAMS 273 5.5 PRECIPITATION IN
AGE-HARDENING ALLOYS 276 5.5.1 PRECIPITATION IN ALUMINUM-COPPER ALLOYS
277 5.5.2 PRECIPITATION IN ALUMINUM-SILVER ALLOYS 285 5.5.3 QUENCHED-IN
VACANCIES 286 5.5.4 AGE HARDENING 288 5.5.5 SPINODAL DECOMPOSITION 290
5.5.6 PARTICLE COARSENING 295 5.6 PRECIPITATION OF FERRITE FROM
AUSTENITE 299 5.6.1 CASE STUDY: FERRITE NUCLEATION AND GROWTH 304 5.7
CELLULAR PRECIPITATION 310 5.8 EUTECTOID TRANSFORMATIONS 314 5.8.1
PEARLITE REACTION IN FE-C ALLOYS 314 5.8.2 BAINITE TRANSFORMATION 319
5.8.3 EFFECT OF ALLOYING ELEMENTS ON HARDENABILITY 327 5.8.4 CONTINUOUS
COOLING DIAGRAMS 332 5.8.5 FIBROUS AND INTERPHASE PRECIPITATION IN ALLOY
STEELS 334 5.8.6 RULE OF SCHEIL 336 5.9 MASSIVE TRANSFORMATIONS 337 5.10
ORDERING TRANSFORMATIONS 342 5.11 CASE STUDIES 349 5.11.1 TITANIUM
FORGING ALLOYS 349 5.11.2 WELDABILITY OF LOW-CARBON AND MICROALLOYED
ROLLED STEELS 353 5.11.3 VERY LOW-CARBON BAINITIC STEEL WITH HIGH
STRENGTH AND TOUGHNESS 356 5.11.4 VERY FINE BAINITE 357 EXERCISES 360
REFERENCES 362 FURTHER READING 364 CHAPTER 6 DIFFUSIONLESS
TRANSFORMATIONS 367 6.1 CHARACTERISTICS OF DIFFUSIONLESS TRANSFORMATIONS
368 6.1.1 SOLID SOLUTION OF CARBON IN IRON 371 6.2 MARTENSITE
CRYSTALLOGRAPHY 373 CONTENTS XI 6.2.1 BAIN MODEL OF THE FEE * * BET
TRANSFORMATION 375 6.2.2 COMPARISON OF CRYSTALLOGRAPHIC THEORY WITH
EXPERIMENTAL RESULTS 379 6.3 THEORIES OF MARTENSITE NUCLEATION 380 6.3.1
FORMATION OF COHERENT NUCLEI OF MARTENSITE 381 6.3.2 ROLE OF
DISLOCATIONS IN MARTENSITE NUCLEATION 384 6.3.3 DISLOCATION STRAIN
ENERGY ASSISTED TRANSFORMATION 387 6.4 MARTENSITE GROWTH 391 6.4.1
GROWTH OF LATH MARTENSITE 392 6.4.2 PLATE MARTENSITE 394 6.4.3
STABILIZATION 397 6.4.4 EFFECT OF EXTERNAL STRESSES 397 6.4.5 ROLE OF
GRAIN SIZE 397 6.5 PREMARTENSITE PHENOMENA 398 6.6 TEMPERING OF FERROUS
MARTENSITES 399 6.7 CASE STUDIES 408 6.7.1 CARBON AND LOW-ALLOY QUENCHED
AND TEMPERED STEELS 408 6.7.2 CONTROLLED TRANSFORMATION STEELS 409 6.7.3
TRIP-ASSISTED STEELS 411 6.7.4 SHAPE-MEMORY METAL: NITINOL 415
EXERCISES 417 REFERENCES 418 FURTHER READING 420 SOLUTIONS TO EXERCISES
421 INDEX 491
|
any_adam_object | 1 |
author | Porter, David A. Easterling, Kenneth E. 1933-1992 Sherif, Mohamed Y. |
author_GND | (DE-588)1141309467 (DE-588)122608151 |
author_facet | Porter, David A. Easterling, Kenneth E. 1933-1992 Sherif, Mohamed Y. |
author_role | aut aut aut |
author_sort | Porter, David A. |
author_variant | d a p da dap k e e ke kee m y s my mys |
building | Verbundindex |
bvnumber | BV036104332 |
classification_rvk | ZM 4200 |
classification_tum | WER 040f |
ctrlnum | (OCoLC)636139735 (DE-599)GBV575092718 |
dewey-full | 669.94 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 669 - Metallurgy |
dewey-raw | 669.94 |
dewey-search | 669.94 |
dewey-sort | 3669.94 |
dewey-tens | 660 - Chemical engineering |
discipline | Chemie / Pharmazie Werkstoffwissenschaften Werkstoffwissenschaften / Fertigungstechnik |
edition | 3. ed. |
format | Book |
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id | DE-604.BV036104332 |
illustrated | Illustrated |
indexdate | 2024-07-09T22:11:42Z |
institution | BVB |
isbn | 1420062107 9781420062106 |
language | English |
lccn | 2008037684 |
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physical | XVI, 520 S. Ill., graph. Darst. |
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publisher | CRC Press |
record_format | marc |
spelling | Porter, David A. Verfasser (DE-588)1141309467 aut Phase transformations in metals and alloys David A. Porter ; Kenneth E. Easterling and Mohamed Y. Sherif 3. ed. Boca Raton, Fla. [u.a.] CRC Press 2009 XVI, 520 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Physical metallurgy Phase rule and equilibrium Phasendiagramm (DE-588)4174149-3 gnd rswk-swf Phasenumwandlung (DE-588)4132140-6 gnd rswk-swf Diffusion (DE-588)4012277-3 gnd rswk-swf Metall (DE-588)4038860-8 gnd rswk-swf Legierung (DE-588)4035035-6 gnd rswk-swf Mikrostruktur (DE-588)4131028-7 gnd rswk-swf Legierung (DE-588)4035035-6 s Metall (DE-588)4038860-8 s Phasenumwandlung (DE-588)4132140-6 s DE-604 Mikrostruktur (DE-588)4131028-7 s Phasendiagramm (DE-588)4174149-3 s Diffusion (DE-588)4012277-3 s 1\p DE-604 Easterling, Kenneth E. 1933-1992 Verfasser (DE-588)122608151 aut Sherif, Mohamed Y. Verfasser aut GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=018994632&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Porter, David A. Easterling, Kenneth E. 1933-1992 Sherif, Mohamed Y. Phase transformations in metals and alloys Physical metallurgy Phase rule and equilibrium Phasendiagramm (DE-588)4174149-3 gnd Phasenumwandlung (DE-588)4132140-6 gnd Diffusion (DE-588)4012277-3 gnd Metall (DE-588)4038860-8 gnd Legierung (DE-588)4035035-6 gnd Mikrostruktur (DE-588)4131028-7 gnd |
subject_GND | (DE-588)4174149-3 (DE-588)4132140-6 (DE-588)4012277-3 (DE-588)4038860-8 (DE-588)4035035-6 (DE-588)4131028-7 |
title | Phase transformations in metals and alloys |
title_auth | Phase transformations in metals and alloys |
title_exact_search | Phase transformations in metals and alloys |
title_full | Phase transformations in metals and alloys David A. Porter ; Kenneth E. Easterling and Mohamed Y. Sherif |
title_fullStr | Phase transformations in metals and alloys David A. Porter ; Kenneth E. Easterling and Mohamed Y. Sherif |
title_full_unstemmed | Phase transformations in metals and alloys David A. Porter ; Kenneth E. Easterling and Mohamed Y. Sherif |
title_short | Phase transformations in metals and alloys |
title_sort | phase transformations in metals and alloys |
topic | Physical metallurgy Phase rule and equilibrium Phasendiagramm (DE-588)4174149-3 gnd Phasenumwandlung (DE-588)4132140-6 gnd Diffusion (DE-588)4012277-3 gnd Metall (DE-588)4038860-8 gnd Legierung (DE-588)4035035-6 gnd Mikrostruktur (DE-588)4131028-7 gnd |
topic_facet | Physical metallurgy Phase rule and equilibrium Phasendiagramm Phasenumwandlung Diffusion Metall Legierung Mikrostruktur |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=018994632&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT porterdavida phasetransformationsinmetalsandalloys AT easterlingkennethe phasetransformationsinmetalsandalloys AT sherifmohamedy phasetransformationsinmetalsandalloys |