Phase diagrams and heterogeneous equilibria a practical introduction

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Hauptverfasser: Predel, Bruno 1928-2007 (VerfasserIn), Hoch, Michael (VerfasserIn), Pool, Monte (VerfasserIn)
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Sprache:English
German
Veröffentlicht: Berlin [u.a.] Springer 2004
Schriftenreihe:Engineering materials and processes
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Datensatz im Suchindex

DE-BY-TUM_call_number 0302/CHE 178f 03.2004 A 172
DE-BY-TUM_katkey 1480983
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adam_text IMAGE 1 CONTENTS ................................................... LIST OF SYMBOLS XI11 ............................. 1 FUNDAMENTAL FACTS AND CONCEPTS 1 .................................................... 1.1 GENERAL 1 ................................... 1.2 VAPORIZATION EQUILIBRIUM 3 ................................................. REFERENCES 7 2 PHASE EQUILIBRIA IN ONE - COMPONENT SYSTEMS .................. 9 .................................................... 2.1 GENERAL 9 2.2 TRANSFORMATION EQUILIBRIA IN THE SOLID STATE .................... 9 ................................. 2.3 MONOTROPIC TRANSFORMATIONS 12 ................................................. REFERENCES 15 PHASE EQUILIBRIA IN IMAGE 2 V111 CONTENTS PHASE EQUILIBRIA WITH COMPLETE SOLUBILITY IN THE SOLID AND LIQUID PHASES AND A MELTING POINT MINIMUM OR MELTING POINT MAXIMUM .................................. 50 REAL PHASE DIAGRAMS WITH COMPLETE SOLUBILITY IN THE SOLID AND LIQUID PHASES ................................ 52 MISCIBILITY GAP IN THE SOLID PHASE ............................. 54 PHASE DIAGRAM WITH PERITECTIC EQUILIBRIUM .................... 56 MISCIBILITY GAP IN THE LIQUID PHASE ............................ 58 REAL PHASE DIAGRAMS WITH A MISCIBILITY GAP IN THE LIQUID PHASE ........................ AND AN UPPER CRITICAL POINT EXCLUSIVELY 62 PHASES WITH A IMAGE 3 ISOTHERMAL SECTION THROUGH A TERNARY SYSTEM WITH UNLIMITED SOLUTION FORMATION ........................... 115 TEMPERATURE - COMPOSITION SECTION THROUGH A TERNARY SYSTEM WITH UNLIMITED SOLID SOLUTION FORMATION ...................... 117 SYSTEM WITH A TERNARY EUTECTIC AND LIMITED SOLID SOLUTION ....... 118 TERNARY SYSTEM WITH A CONGRUENTLY MELTING BINARY COMPOUND AND A PSEUDOBINARY SECTION .................................. 120 TERNARY SYSTEM WITH A BINARY COMPOUND WITHOUT A PSEUDOBINARY SECTION .............................. 122 ISOTHERMAL SECTION AND TEMPERATURE-COMPOSITION SECTION THROUGH A TERNARY SYSTEM WITH A BINARY COMPOUND WITH NO PSEUDOBINARY SECTION ................................ 124 TERNARY SYSTEM WITH TWO BINARY COMPOUNDS .................. 125 TERNARY COMPOUNDS WITH MELTING POINT MAXIMA ................ 127 REAL TERNARY SYSTEMS WITH BINARY AND TERNARY COMPOUNDS ...... 128 TERNARY SYSTEM WITH TWO EUTECTIC BOUNDING BINARY SYSTEMS WITH LIMITED SOLUBILITY IN THE SOLID AND COMPLETE MISCIBILITY IN THE THIRD BOUNDING BINARY SYSTEM .......................... 129 TERNARY SYSTEM WITH TWO PERITECTIC BOUNDING SYSTEMS AND COMPLETE SOLUBILITY IN THE THIRD BOUNDING SYSTEM .......... 131 TRANSITION BETWEEN AN UNIVARIANT PERITECTIC AND AN UNIVARIANT EUTECTIC REACTION ........................... 133 MISCIBILITY GAP IN THE LIQUID PHASE ............................ 134 MONOTECTIC FOUR-PHASE REACTION .............................. 137 RED TERNARY DIAGRAMS WITH LIMITED SOLUBILITY IN THE LIQUID PHASE ......................................... 138 REACTION SCHEMES ........................................... 141 FOUR-COMPONENT SYSTEMS .................................... 143 SIMPLE EQUILIBRIA IN FOUR-COMPONENT SYSTEMS ................. 145 RECIPROCAL SYSTEMS .......................................... 146 SOLUBILITY OF RECIPROCAL SALT PAIRS IN WATER ..................... 148 COMMENTS TO THE EXTENT OF HIGHER ORDER SYSTEMS ............... 150 REFERENCES ................................................. 152 PHASE EQUILIBRIA INCLUDING A VAPOR PHASE ...................... 155 VAPOR - LIQUID EQUILIBRIUM IN A ONE - COMPONENT SYSTEM .......... 155 PHASE EQUILIBRIA BETWEEN LIQUID AND VAPOR IN BINARY SYSTEMS WITHOUT A MISCIBILITY GAP .................................... 156 GAS-SOLID EQUILIBRIA IN A BINARY SYSTEM ........................ 160 PHASE EQUILIBRIA IN A BINARY SYSTEM IN WHICH SOLID. LIQUID AND GAS CAN APPEAR ......................................... 163 PHASE EQUILIBRIA WITH PARTICIPATION OF THE GAS PHASE WITH LIMITED SOLUBILITY IN THE LIQUID PHASE ..................... 167 VAPOR-SOLID EQUILIBRIA WITH SOLID SOLUTION FORMATION ........... 169 IMAGE 4 X CONTENTS 5.7 GAS - SOLID EQUILIBRIA IN SYSTEMS WITH COMPOUNDS ............... 169 5.8 HETEROGENEOUS EQUILIBRIA AT CHEMICAL TRANSPORT REACTION ....... 172 REFERENCES ................................................. 173 6 THERMODYNAMICS ........................................... 175 6.1 GENERAL .................................................... 175 6.2 BASIC THERMODYNAMIC CONCEPTS AND DEFINITIONS ................ 176 6.3 INTEGRAL QUANTITIES OF MIXING ................................. 178 6.4 PARTIAL QUANTITIES OF MIXING .................................. 181 6.5 THE IDEAL SOLUTION .......................................... 183 6.6 THE MODEL OF THE REGULAR SOLUTION ............................ 183 6.7 REAL SOLUTIONS AND EXCESS FUNCTIONS .......................... 185 6.8 ANALYSIS OF EXPERIMENTAL THERMODYNAMIC DATA ................ 188 6.9 INFLUENCE OF THE ATOMIC SIZE DIFFERENCE ........................ 188 6.10 THE ASSOCIATION MODEL ...................................... 190 6.10.1 BASIC FORMULAE OF THE ASSOCIATION MODEL ...................... 191 6.10.2 IMAGE 5 CONTENTS XI 6.32 CALCULATION OF A SIMPLE ORDERING REACTION IN SOLID SOLUTIONS ..... 249 6.33 DEGREE OF ORDER IN A SUPERLATTICE AS A FUNCTION OF TEMPERATURE ... 255 6.34 COMMENTS ON THE CHARACTER OF PHASE TRANSFORMATIONS .......... 257 6.35 THERMODYNAMIC PROPERTIES OF TERNARY ALLOYS .................. 258 6.36 CALCULATION OF FUSION EQUILIBRIA IN TERNARY SYSTEMS ............. 263 REFERENCES ................................................ 267 7 UCLEATION DURING PHASE TRANSITIONS .......................... 269 7.1 GENERAL .................................................... 269 7.2 HOMOGENEOUS NUCLEATION WITHOUT CHANGE OF COMPOSITION ...... 269 7.3 HETEROGENEOUS NUCLEATION ................................... 272 7.4 HOMOGENEOUS NUCLEATION WITH CHANGE IN COMPOSITION .......... 275 7.5 SPINODAL DECOMPOSITION ..................................... 278 REFERENCES ................................................. 281 8 METASTABLE PHASES .......................................... 283 8.1 ENERGETICS OF THE NUCLEATION OF METASTABLE CRYSTALLINE PHASES ..... 283 8.2 GUINIER-PRESTON ZONES IN AL-CU ALLOYS ......................... 285 8.3 SHORT RANGE ORDER IN LIQUID SOLUTIONS AND THEIR EFFECT ON SOLID-LIQUID EQUILIBRIA ................................... 288 8.3.1 SOME EMPIRICAL FINDINGS ABOUT SHORT RANGE ORDER IN LIQUID ALLOYS ............................................. 288 8.3.2 THE MODEL OF HOMOGENEOUS EQUILIBRIA FOR THE QUANTITATIVE DESCRIPTION OF THE SHORT RANGE ORDER IN LIQUID ALLOYS ........... 294 8.3.3 THE EFFECT OF HOMOGENEOUS EQUILIBRIA ON FUSION EQUILIBRIA ...... 296 8.3.3.1 LIQUIDUS LINES IN THE VICINITY OF THE MELTING POINT OF A CONGRUENTLY MELTING COMPOUND .......................... 296 8.3.3.2 MISCIBILITY GAP IN A BINARY LIQUID ALLOY WITH A STRONG COMPOUND FORMING TENDENCY ............................... 298 8.4 METALLIC GLASSES ............................................ 302 8.5 METASTABLE, NON-CRYSTALLINE METALLIC PHASES .................... 304 8.6 METHODS TO OBTAIN EXTREMELY HIGH COOLING RATES ............... 307 8.7 IMAGE 6 XI1 CONTENTS 10 ORGANIC AND POLYMERIE MATERIALS ............................. 331 10.1 INTRODUCTION ............................................... 331 10.2 ORGANIC MATERIALS ........................................... 331 10.3 PHASE DIAGRAMS ............................................ 333 10.4 POLYMER BLENDS ............................................. 334 REFERENCES ................................................. 339 SUBJECT INDEX ..................................................... 341
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Hoch, Michael
Pool, Monte
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publishDate 2004
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publishDateSort 2004
publisher Springer
record_format marc
series2 Engineering materials and processes
spellingShingle Predel, Bruno 1928-2007
Hoch, Michael
Pool, Monte
Phase diagrams and heterogeneous equilibria a practical introduction
Diagrammes de phases
Loi des phases et équilibre
Métallurgie extractive
Thermodynamique
Chemistry, Metallurgic
Phase diagrams
Phase rule and equilibrium
Thermodynamics
Heterogenes Gleichgewicht (DE-588)4159736-9 gnd
Phasendiagramm (DE-588)4174149-3 gnd
subject_GND (DE-588)4159736-9
(DE-588)4174149-3
title Phase diagrams and heterogeneous equilibria a practical introduction
title_auth Phase diagrams and heterogeneous equilibria a practical introduction
title_exact_search Phase diagrams and heterogeneous equilibria a practical introduction
title_full Phase diagrams and heterogeneous equilibria a practical introduction Bruno Predel ; Michael Hoch ; Monte Pool
title_fullStr Phase diagrams and heterogeneous equilibria a practical introduction Bruno Predel ; Michael Hoch ; Monte Pool
title_full_unstemmed Phase diagrams and heterogeneous equilibria a practical introduction Bruno Predel ; Michael Hoch ; Monte Pool
title_short Phase diagrams and heterogeneous equilibria
title_sort phase diagrams and heterogeneous equilibria a practical introduction
title_sub a practical introduction
topic Diagrammes de phases
Loi des phases et équilibre
Métallurgie extractive
Thermodynamique
Chemistry, Metallurgic
Phase diagrams
Phase rule and equilibrium
Thermodynamics
Heterogenes Gleichgewicht (DE-588)4159736-9 gnd
Phasendiagramm (DE-588)4174149-3 gnd
topic_facet Diagrammes de phases
Loi des phases et équilibre
Métallurgie extractive
Thermodynamique
Chemistry, Metallurgic
Phase diagrams
Phase rule and equilibrium
Thermodynamics
Heterogenes Gleichgewicht
Phasendiagramm
url http://www3.ub.tu-berlin.de/ihv/001687421.pdf
http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=012914982&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA
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AT hochmichael phasediagramsandheterogeneousequilibriaapracticalintroduction
AT poolmonte phasediagramsandheterogeneousequilibriaapracticalintroduction