Basic engineering plasticity: an introduction with engineering and manufacturing applications
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Amsterdam [u.a.]
Butterworth-Heinemann
2006
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Ausgabe: | 1. ed. |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XIV, 511 S. Ill., graph. Darst. |
ISBN: | 9780750680257 0750680253 |
Internformat
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adam_text | BASIC ENGINEERING PLASTICITY AN INTRODUCTION WITH ENGINEERING AND
MANUFACTURING APPLICATIONS D. W. A. REES SCHOOL OF ENGINEERING AND
DESIGN, BRUNEI UNIVERSITY, UK AMSTERDAM * BOSTON * HEIDELBERG * LONDON *
NEW YORK * OXFORD * PARIS SAN DIEGO * SAN FRANCISCO * SINGAPORE * SYDNEY
* TOKYO ELSEVIER BUTTERWORTH-HEINEMANN IS AN IMPRINT OF ELSEVIER
CONTENTS PREFACE XI ACKNOWLEDGEMENTS XII LIST OF SYMBOLS XIII CHAPTER 1
STRESS ANALYSIS 1.1 INTRODUCTION 1 1.2 CAUCHY DEFINITION OF STRESS 4 1.3
THREE DIMENSIONAL STRESS ANALYSIS 7 1.4 PRINCIPAL STRESSES AND
INVARIANTS 15 1.5 PRINCIPAL STRESSES AS CO-ORDINATES, 21 1.6 ALTERNATIVE
STRESS DEFINITIONS 27 BIBLIOGRAPHY 31 EXERCISES 31 CHAPTER 2 STRAIN
ANALYSIS 2.1 INTRODUCTION 33 2.2 INFINITESIMAL STRAIN TENSOR 33 2.3
LARGE STRAIN DEFINITIONS 40 2.4 FINITE STRAIN TENSORS 47 2.5 POLAR
DECOMPOSITION 58 2.6 STRAIN DEFINITIONS 62 REFERENCES 62 EXERCISES 63 VI
CONTENTS CHAPTER 3 YIELD CRITERIA 3.1 INTRODUCTION 65 3.2 YIELDING OF
DUCTILE ISOTROPIC MATERIALS 65 3.3 EXPERIMENTAL VERIFICATION - 71 3.4
ANISOTROPIC YIELDING IN POLYCRYSTALS 83 3.5 CHOICE OF YIELD FUNCTION 90
REFERENCES 91 EXERCISES 93 CHAPTER 4 NON-HARDENING PLASTICITY 4.1
INTRODUCTION 95 4.2 CLASSICAL THEORIES OF PLASTICITY 95 4.3 APPLICATION
OF CLASSICAL THEORY TO UNIFORM STRESS STATES 98 4.4 APPLICATION OF
CLASSICAL THEORY TO NON-UNIFORM STRESS STATES 111 4.5 HENCKY VERSUS
PRANDTL-REUSS 123 REFERENCES 124 EXERCISES 124 CHAPTER 5 ELASTIC-PERFECT
PLASTICITY 5.1 INTRODUCTION 127 5.2 ELASTIC-PLASTIC BENDING OF BEAMS ^
127 5.3 ELASTIC-PLASTIC TORSION 137 5.4 THICK-WALLED, PRESSURISED
CYLINDER WITH CLOSED-ENDS 144 5.5 OPEN-ENDED CYLINDER AND THIN DISC
UNDER PRESSURE 149 5.6 ROTATING DISC 154 REFERENCES 159 EXERCISES 159
CONTENTS VII CHAPTER 6 SLIP LINE FIELDS 6.1 INTRODUCTION 161 6.2 SLIP
LINE FIELD THEORY 161 6.3 FRICTIONLESS EXTRUSION THROUGH PARALLEL DIES
180 6.4 FRICTIONLESS EXTRUSION THROUGH INCLINED DIES 191 6.5 EXTRUSION
WITH FRICTION THROUGH PARALLEL DIES 195 6.6 NOTCHED BAR IN TENSION 197
6.7 DIE INDENTATION 199 6.8 ROUGH DIE INDENTATION 204 6.9 LUBRICATED DIE
INDENTATION 207 REFERENCES 210 EXERCISES 211 CHAPTER 7 LIMIT ANALYSIS
7.1 INTRODUCTION 213 7.2 COLLAPSE OF BEAMS , 213 7.3 COLLAPSE OF
STRUCTURES 215 7.4 DIE INDENTATION 221 7.5 EXTRUSION 225 7.6 STRIP
ROLLING 230 7.7 TRANSVERSE LOADING OF CIRCULAR PLATES 234 7.8 CONCLUDING
REMARKS 238 REFERENCES 239 EXERCISES 239 VIII CONTENTS CHAPTER 8 CRYSTAL
PLASTICITY 8.1 INTRODUCTION 241 8.2 RESOLVED SHEAR STRESS AND STRAIN 242
8.3 LATTICE SLIP SYSTEMS 246 8.4 HARDENING - 248 8.5 YIELD SURFACE 250
8.6 FLOW RULE 255 8.7 MICRO- TO MACRO-PLASTICITY 257 8.8 SUBSEQUENT
YIELD SURFACE 262 8.9 SUMMARY 266 REFERENCES , 267 EXERCISES 268 CHAPTER
9 THE FLOW CURVE 9.1 INTRODUCTION 269 9.2 EQUIVALENCE IN PLASTICITY 269
9.3 UNIAXIAL TESTS 274 9.4 TORSION TESTS 280 9.5 UNIAXIAL AND TORSIONAL
EQUIVALENCE - 283 9.6 MODIFIED COMPRESSION TESTS 286 9.7 BULGE TEST 290
9.8 EQUATIONS TO THE FLOW CURVE , , 294 9.9 STRAIN AND WORK HARDENING
HYPOTHESES 298 9.10 CONCLUDING REMARKS 304 REFERENCES 304 EXERCISES 305
CHAPTER 10 PLASTICITY WITH HARDENING 10.1 INTRODUCTION 309 10.2
CONDITIONS ASSOCIATED WITH THE YIELD SURFACE 309 10.3 ISOTROPIC
HARDENING 313 10.4 VALIDATION OF LEVY MISES AND DRUCKER FLOW RULES 318
10.5 NON-ASSOCIATED FLOW RULES 325 10.6 PRANDTL-REUSS FLOW THEORY 326
10.7 KINEMATIC HARDENING 331 10.8 CONCLUDING REMARKS 336 REFERENCES 336
EXERCISES 337 CONTENTS IX CHAPTER 11 ORTHOTROPIC PLASTICITY 11.1
INTRODUCTION - 339 11.2 ORTHOTROPIC FLOW POTENTIAL 339 11.3 ORTHOTROPIC
FLOW CURVES 343 11.4 PLANAR ISOTROPY 348 11.5 ROLLED SHEET METALS 351
11.6 EXTRUDED TUBES , 357 11.7 NON-LINEAR STRAIN PATHS 362 11.8
ALTERNATIVE YIELD CRITERIA 365 11.9 CONCLUDING REMARKS 366 REFERENCES
367 EXERCISES 368 CHAPTER 12 PLASTIC INSTABILITY 12.1 INTRODUCTION 371
12.2 INELASTIC BUCKLING OF STRUTS - 371 12.3 BUCKLING OF PLATES 378 12.4
TENSILE INSTABILITY 388 12.5 CIRCULAR BULGE INSTABILITY , . 393 12.6
ELLIPSOIDAL BULGING OF ORTHOTROPIC SHEET 395 12.7 PLATE STRETCHING 399
12.8 CONCLUDING REMARKS 408 REFERENCES 409 EXERCISES 409 CHAPTER 13
STRESS WAVES IN BARS 13.1 INTRODUCTION 411 13.2 THE WAVE EQUATION 411
13.3 PARTICLE VELOCITY 412 13.4 LONGITUDINAL IMP ACTOFBARS 415 13.5
PLASTIC WAVES 421 13.6 PLASTIC STRESS LEVELS 432 13.7 CONCLUDING REMARKS
436 REFERENCES 436 EXERCISES 436 CONTENTS CHAPTER 14 PRODUCTION
PROCESSES 14.1 INTRODUCTION 439 14.2 HOT FORGING 439 14.3 COLD FORGING -
442 14.4 EXTRUSION 444 14.5 HOT ROLLING 448 14.6 COLD ROLLING 454 14.7
WIRE AND STRIP DRAWING 457 14.8 ORTHOGONAL MACHINING 461 14.9 CONCLUDING
REMARKS 475 REFERENCES 475 EXERCISES 475 CHAPTER 15 APPLICATIONS OF
FINITE ELEMENTS 15.1 INTRODUCTION 479 15.2 ELASTIC STIFFNESS MATRIX 479
15.3 ENERGY METHODS 482 15.4 PLANE TRIANGULAR ELEMENT 484 15.5
ELASTIC-PLASTIC STIFFNESS MATRIX 490 15.6 FE SIMULATIONS . 496 15.7
CONCLUDING REMARKS 502 REFERENCES 503 EXERCISES 503 INDEX 505
|
adam_txt |
BASIC ENGINEERING PLASTICITY AN INTRODUCTION WITH ENGINEERING AND
MANUFACTURING APPLICATIONS D. W. A. REES SCHOOL OF ENGINEERING AND
DESIGN, BRUNEI UNIVERSITY, UK AMSTERDAM * BOSTON * HEIDELBERG * LONDON *
NEW YORK * OXFORD * PARIS SAN DIEGO * SAN FRANCISCO * SINGAPORE * SYDNEY
* TOKYO ELSEVIER BUTTERWORTH-HEINEMANN IS AN IMPRINT OF ELSEVIER
CONTENTS PREFACE XI ACKNOWLEDGEMENTS XII LIST OF SYMBOLS XIII CHAPTER 1
STRESS ANALYSIS 1.1 INTRODUCTION 1 1.2 CAUCHY DEFINITION OF STRESS 4 1.3
THREE DIMENSIONAL STRESS ANALYSIS 7 1.4 PRINCIPAL STRESSES AND
INVARIANTS 15 1.5 PRINCIPAL STRESSES AS CO-ORDINATES, 21 1.6 ALTERNATIVE
STRESS DEFINITIONS 27 BIBLIOGRAPHY 31 EXERCISES 31 CHAPTER 2 STRAIN
ANALYSIS 2.1 INTRODUCTION 33 2.2 INFINITESIMAL STRAIN TENSOR 33 2.3
LARGE STRAIN DEFINITIONS 40 2.4 FINITE STRAIN TENSORS 47 2.5 POLAR
DECOMPOSITION 58 2.6 STRAIN DEFINITIONS 62 REFERENCES 62 EXERCISES 63 VI
CONTENTS CHAPTER 3 YIELD CRITERIA 3.1 INTRODUCTION 65 3.2 YIELDING OF
DUCTILE ISOTROPIC MATERIALS 65 3.3 EXPERIMENTAL VERIFICATION - 71 3.4
ANISOTROPIC YIELDING IN POLYCRYSTALS 83 3.5 CHOICE OF YIELD FUNCTION 90
REFERENCES 91 EXERCISES 93 CHAPTER 4 NON-HARDENING PLASTICITY 4.1
INTRODUCTION 95 4.2 CLASSICAL THEORIES OF PLASTICITY 95 4.3 APPLICATION
OF CLASSICAL THEORY TO UNIFORM STRESS STATES 98 4.4 APPLICATION OF
CLASSICAL THEORY TO NON-UNIFORM STRESS STATES 111 4.5 HENCKY VERSUS
PRANDTL-REUSS 123 REFERENCES 124 EXERCISES 124 CHAPTER 5 ELASTIC-PERFECT
PLASTICITY 5.1 INTRODUCTION 127 5.2 ELASTIC-PLASTIC BENDING OF BEAMS ^
127 5.3 ELASTIC-PLASTIC TORSION 137 5.4 THICK-WALLED, PRESSURISED
CYLINDER WITH CLOSED-ENDS 144 5.5 OPEN-ENDED CYLINDER AND THIN DISC
UNDER PRESSURE 149 5.6 ROTATING DISC 154 REFERENCES 159 EXERCISES 159
CONTENTS VII CHAPTER 6 SLIP LINE FIELDS 6.1 INTRODUCTION 161 6.2 SLIP
LINE FIELD THEORY 161 6.3 FRICTIONLESS EXTRUSION THROUGH PARALLEL DIES
180 6.4 FRICTIONLESS EXTRUSION THROUGH INCLINED DIES 191 6.5 EXTRUSION
WITH FRICTION THROUGH PARALLEL DIES 195 6.6 NOTCHED BAR IN TENSION 197
6.7 DIE INDENTATION 199 6.8 ROUGH DIE INDENTATION 204 6.9 LUBRICATED DIE
INDENTATION 207 REFERENCES 210 EXERCISES 211 CHAPTER 7 LIMIT ANALYSIS
7.1 INTRODUCTION 213 7.2 COLLAPSE OF BEAMS , 213 7.3 COLLAPSE OF
STRUCTURES 215 7.4 DIE INDENTATION 221 7.5 EXTRUSION 225 7.6 STRIP
ROLLING 230 7.7 TRANSVERSE LOADING OF CIRCULAR PLATES 234 7.8 CONCLUDING
REMARKS 238 REFERENCES 239 EXERCISES 239 VIII CONTENTS CHAPTER 8 CRYSTAL
PLASTICITY 8.1 INTRODUCTION 241 8.2 RESOLVED SHEAR STRESS AND STRAIN 242
8.3 LATTICE SLIP SYSTEMS 246 8.4 HARDENING - 248 8.5 YIELD SURFACE 250
8.6 FLOW RULE 255 8.7 MICRO- TO MACRO-PLASTICITY 257 8.8 SUBSEQUENT
YIELD SURFACE 262 8.9 SUMMARY 266 REFERENCES , 267 EXERCISES 268 CHAPTER
9 THE FLOW CURVE 9.1 INTRODUCTION 269 9.2 EQUIVALENCE IN PLASTICITY 269
9.3 UNIAXIAL TESTS 274 9.4 TORSION TESTS 280 9.5 UNIAXIAL AND TORSIONAL
EQUIVALENCE - 283 9.6 MODIFIED COMPRESSION TESTS 286 9.7 BULGE TEST 290
9.8 EQUATIONS TO THE FLOW CURVE , , 294 9.9 STRAIN AND WORK HARDENING
HYPOTHESES 298 9.10 CONCLUDING REMARKS 304 REFERENCES 304 EXERCISES 305
CHAPTER 10 PLASTICITY WITH HARDENING 10.1 INTRODUCTION 309 10.2
CONDITIONS ASSOCIATED WITH THE YIELD SURFACE 309 10.3 ISOTROPIC
HARDENING 313 10.4 VALIDATION OF LEVY MISES AND DRUCKER FLOW RULES 318
10.5 NON-ASSOCIATED FLOW RULES 325 10.6 PRANDTL-REUSS FLOW THEORY 326
10.7 KINEMATIC HARDENING 331 10.8 CONCLUDING REMARKS 336 REFERENCES 336
EXERCISES 337 CONTENTS IX CHAPTER 11 ORTHOTROPIC PLASTICITY 11.1
INTRODUCTION - 339 11.2 ORTHOTROPIC FLOW POTENTIAL 339 11.3 ORTHOTROPIC
FLOW CURVES 343 11.4 PLANAR ISOTROPY 348 11.5 ROLLED SHEET METALS 351
11.6 EXTRUDED TUBES , 357 11.7 NON-LINEAR STRAIN PATHS 362 11.8
ALTERNATIVE YIELD CRITERIA 365 11.9 CONCLUDING REMARKS 366 REFERENCES
367 EXERCISES 368 CHAPTER 12 PLASTIC INSTABILITY 12.1 INTRODUCTION 371
12.2 INELASTIC BUCKLING OF STRUTS - 371 12.3 BUCKLING OF PLATES 378 12.4
TENSILE INSTABILITY 388 12.5 CIRCULAR BULGE INSTABILITY , . 393 12.6
ELLIPSOIDAL BULGING OF ORTHOTROPIC SHEET 395 12.7 PLATE STRETCHING 399
12.8 CONCLUDING REMARKS 408 REFERENCES 409 EXERCISES 409 CHAPTER 13
STRESS WAVES IN BARS 13.1 INTRODUCTION 411 13.2 THE WAVE EQUATION 411
13.3 PARTICLE VELOCITY 412 13.4 LONGITUDINAL IMP ACTOFBARS 415 13.5
PLASTIC WAVES 421 13.6 PLASTIC STRESS LEVELS 432 13.7 CONCLUDING REMARKS
436 REFERENCES 436 EXERCISES 436 CONTENTS CHAPTER 14 PRODUCTION
PROCESSES 14.1 INTRODUCTION 439 14.2 HOT FORGING 439 14.3 COLD FORGING -
442 14.4 EXTRUSION 444 14.5 HOT ROLLING 448 14.6 COLD ROLLING 454 14.7
WIRE AND STRIP DRAWING 457 14.8 ORTHOGONAL MACHINING 461 14.9 CONCLUDING
REMARKS 475 REFERENCES 475 EXERCISES 475 CHAPTER 15 APPLICATIONS OF
FINITE ELEMENTS 15.1 INTRODUCTION 479 15.2 ELASTIC STIFFNESS MATRIX 479
15.3 ENERGY METHODS 482 15.4 PLANE TRIANGULAR ELEMENT 484 15.5
ELASTIC-PLASTIC STIFFNESS MATRIX 490 15.6 FE SIMULATIONS . 496 15.7
CONCLUDING REMARKS 502 REFERENCES 503 EXERCISES 503 INDEX 505 |
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language | English |
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spelling | Rees, David W. A. Verfasser aut Basic engineering plasticity an introduction with engineering and manufacturing applications D. W. A. Rees 1. ed. Amsterdam [u.a.] Butterworth-Heinemann 2006 XIV, 511 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Déformations (Mécanique) Matériaux - Plasticité Plasticité Plastizität (DE-588)4046283-3 gnd rswk-swf Plastizität (DE-588)4046283-3 s DE-604 HEBIS Datenaustausch Darmstadt application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=015019888&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Rees, David W. A. Basic engineering plasticity an introduction with engineering and manufacturing applications Déformations (Mécanique) Matériaux - Plasticité Plasticité Plastizität (DE-588)4046283-3 gnd |
subject_GND | (DE-588)4046283-3 |
title | Basic engineering plasticity an introduction with engineering and manufacturing applications |
title_auth | Basic engineering plasticity an introduction with engineering and manufacturing applications |
title_exact_search | Basic engineering plasticity an introduction with engineering and manufacturing applications |
title_exact_search_txtP | Basic engineering plasticity an introduction with engineering and manufacturing applications |
title_full | Basic engineering plasticity an introduction with engineering and manufacturing applications D. W. A. Rees |
title_fullStr | Basic engineering plasticity an introduction with engineering and manufacturing applications D. W. A. Rees |
title_full_unstemmed | Basic engineering plasticity an introduction with engineering and manufacturing applications D. W. A. Rees |
title_short | Basic engineering plasticity |
title_sort | basic engineering plasticity an introduction with engineering and manufacturing applications |
title_sub | an introduction with engineering and manufacturing applications |
topic | Déformations (Mécanique) Matériaux - Plasticité Plasticité Plastizität (DE-588)4046283-3 gnd |
topic_facet | Déformations (Mécanique) Matériaux - Plasticité Plasticité Plastizität |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=015019888&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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