Gamma titanium aluminide alloys: science and technology
Gespeichert in:
Hauptverfasser: | , , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Weinheim
Wiley-VCH
2011
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Schlagworte: | |
Online-Zugang: | Umschlagbild Inhaltstext Inhaltsverzeichnis |
Beschreibung: | XVI, 745 S. Ill., graph. Darst. |
ISBN: | 352731525X 9783527315253 9783527636204 |
Internformat
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100 | 1 | |a Appel, Fritz |e Verfasser |0 (DE-588)173257194 |4 aut | |
245 | 1 | 0 | |a Gamma titanium aluminide alloys |b science and technology |c Fritz Appel, Jonathan David Heaton Paul, and Michael Oehring |
264 | 1 | |a Weinheim |b Wiley-VCH |c 2011 | |
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650 | 0 | 7 | |a Leichtmetall |0 (DE-588)4035174-9 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Titanaluminide |0 (DE-588)4470201-2 |2 gnd |9 rswk-swf |
689 | 0 | 0 | |a Titanaluminide |0 (DE-588)4470201-2 |D s |
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700 | 1 | |a Paul, Jonathan David Heaton |e Verfasser |4 aut | |
700 | 1 | |a Oehring, Michael |e Verfasser |4 aut | |
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Datensatz im Suchindex
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adam_text |
IMAGE 1
CONTENTS
PREFACE XIII FIGURES-TABLES ACKNOWLEDGEMENT LIST XV
1 INTRODUCTION 1
REFERENCES 3
2 CONSTITUTION 5
2.1 THE BINARY TI-AL PHASE DIAGRAM 5
2.2 TERNARY AND MULTICOMPONENT ALLOY SYSTEMS 11 REFERENCES 20
3 THERMOPHYSICAL CONSTANTS 25 3.1 ELASTIC AND THERMAL PROPERTIES 25
3.2 POINT DEFECTS 27
3.3 DIFFUSION 29
REFERENCES 30
4 PHASE TRANSFORMATIONS AND MICROSTRUCTURES 33 4.1 MICROSTRUCTURE
FORMATION ON SOLIDIFICATION 33 4.2 SOLID-STATE TRANSFORMATIONS 49 4.2.1
SS - A TRANSFORMATION 50
4.2.2 FORMATION OF (A 2 + Y) LAMELLAE COLONIES 52 4.2.3 FEATHERY
STRUCTURES AND WIDMANNSTAETTEN COLONIES 60 4.2.4 MASSIVE TRANSFORMATION
63 REFERENCES 64
5 DEFORMATION BEHAVIOR OF SINGLE-PHASE ALLOYS 71 5.1 SINGLE-PHASE
Y(TIAL) ALLOYS 71 5.1.1 SLIP SYSTEMS AND DEFORMATION KINEMATICS 71 5.1.2
PLANAR FAULTS 75
5.1.3 PLANAR DISLOCATION DISSOCIATIONS IN Y(TIAL) 81 5.1.4 NONPLANAR
DISSOCIATIONS AND DISLOCATION LOCKING 85
BIBLIOGRAFISCHE INFORMATIONEN HTTP://D-NB.INFO/1010591584
DIGITALISIERT DURCH
IMAGE 2
VI I CONTENTS
5.1.5 MECHANICAL TWINNING IN Y(TIAL) 89
5.1.6 EFFECTS OF ORIENTATION AND TEMPERATURE ON DEFORMATION OF Y PHASE
95 5.2 DEFORMATION BEHAVIOR OF SINGLE-PHASE A 2 (TI 3 AL) ALLOYS 106
5.2.1 SLIP SYSTEMS AND DEFORMATION KINEMATICS 106 5.2.2 EFFECTS OF
ORIENTATION AND TEMPERATURE ON DEFORMATION OF OC 2
PHASE 112
5.3 SS/B2 PHASE ALLOYS 114 REFERENCES 118
6 DEFORMATION BEHAVIOR OF TWO-PHASE A 2 (TI 3 AL) + YFTIAL) ALLOYS 125
6.1 LAMELLAR MICROSTRUCTURES 225 6.1.1 INTERFACE STRUCTURES IN LAMELLAR
TIAL ALLOYS 125 6.1.2 ENERGETIC ASPECTS OF LAMELLAR INTERFACES 136
6.1.3 COHERENT AND SEMICOHERENT INTERFACES 139 6.1.4 COHERENCY STRESSES
249 6.1.5 PLASTIC ANISOTROPY 256 6.1.6 MICROMECHANICAL MODELING 262 6.2
DEFORMATION MECHANISMS, CONTRASTING SINGLE-PHASE AND
TWO-PHASE ALLOYS 264 6.2.1 METHODICAL ASPECTS OF TEM CHARACTERIZATION
264 6.2.2 DEFORMATION OF (OC 2 + Y) ALLOYS AT ROOM TEMPERATURE 265 6.2.3
INDEPENDENT SLIP SYSTEMS 269
6.2.4 HIGH-TEMPERATURE DEFORMATION OF (A 2 + Y) ALLOYS 272 6.2.5 SLIP
TRANSFER THROUGH LAMELLAE 273 6.3 GENERATION OF DISLOCATIONS AND
MECHANICAL TWINS 178 6.3.1 DISLOCATION SOURCE OPERATION IN Y(TIAL) 278
6.3.2 INTERFACE-RELATED DISLOCATION GENERATION 284 6.3.3 TWIN NUDEATION
AND GROWTH 286 6.3.4 TWIN INTERSECTIONS 297 6.3.5 ACOUSTIC EMISSIONS 204
6.3.6 THERMAL STABILITY OF TWIN STRUCTURES 206 6.4 GLIDE RESISTANCE AND
DISLOCATION MOBILITY 207 6.4.1 THERMALLY ACTIVATED DEFORMATION 207 6.4.2
GLIDE RESISTANCE AT THE BEGINNING OF DEFORMATION 227 6.4.3 STATIC AND
DYNAMIC STRAIN AGING OF TIAL ALLOYS 222 6.4.4 DIFFUSION-ASSISTED
DISLOCATION CLIMB, RECOVERY, AND
RECRYSTALLIZATION 232 6.5 THERMAL AND ATHERMAL STRESSES 234 REFERENCES
240
7 STRENGTHENING MECHANISMS 249 7.1 GRAIN REFINEMENT 249 7.2 WORK
HARDENING 254
7.2.1 WORK-HARDENING PHENOMENA 255
IMAGE 3
CONTENTS VII
7.2.2 ATHERMAL CONTRIBUTIONS TO WORK HARDENING 257
7.2.3 JOG DRAGGING AND DEBRIS HARDENING 259 7.2.4 THERMAL STABILITY OF
DEFORMATION STRUCTURES 262 7.2.5 HIGH-TEMPERATURE FLOW BEHAVIOR 268
7.2.6 HIGH STRAIN-RATE DEFORMATION 272 7.3 SOLUTION HARDENING 273
7.3.1 ELEMENTAL SIZE MISFIT OF SOLUTE ATOMS WITH THE TIAL MATRIX 273
7.3.2 SURVEY OF OBSERVATIONS 276 7.3.3 EFFECT OF SOLUTE NIOBIUM 277 7.4
PRECIPITATION HARDENING 282
7.4.1 CARBIDE PRECIPITATION IN TIAL ALLOYS 282 1 A.I HARDENING BY
CARBIDES 284 7A3 HARDENING BY BORIDES, NITRIDES, OXIDES, AND SUICIDES
289 7.5 OPTIMIZED NB-BEARING ALLOYS 292
REFERENCES 295
8 DEFORMATION BEHAVIOR OF ALLOYS WITH A MODULATED MICROSTRUCTURE 301 8.1
MODULATED MICROSTRUCTURES 302 8.2 MISFITTING INTERFACES 306
8.3 MECHANICAL PROPERTIES 320
REFERENCES 322
9 CREEP 313
9.1 DESIGN MARGINS AND FAILURE MECHANISMS 323 9.2 GENERAL CREEP BEHAVIOR
324
9.3 THE STEADY-STATE OR MINIMUM CREEP RATE 326 9.3.1 SINGLE-PHASE
Y(TIAL) ALLOYS 327 9.3.2 TWO-PHASE OC 2 (TI 3 AL) + Y(TIAL) ALLOYS 329
9.3.3 EXPERIMENTAL OBSERVATION OF CREEP STRUCTURES 320 9.4 EFFECT OF
MICROSTRUCTURE 322
9.5 PRIMARY CREEP 325
9.6 CREEP-INDUCED DEGRADATION OF LAMELLAR STRUCTURES 329 9.7
PRECIPITATION EFFECTS ASSOCIATED WITH THE A 2 - Y PHASE TRANSFORMATION
339 9.8 TERTIARY CREEP 340
9.9 OPTIMIZED ALLOYS, EFFECT OF ALLOY COMPOSITION AND PROCESSING 342
9.10 CREEP PROPERTIES OF ALLOYS WITH A MODULATED MICROSTRUCTURE 346
9.10.1 EFFECT OF STRESS AND TEMPERATURE 346 9.10.2 DAMAGE MECHANISMS 347
REFERENCES 352
10 FRACTURE BEHAVIOR 357 10.1 LENGTH SCALES IN THE FRACTURE OF TIAL
ALLOYS 357 10.2 CLEAVAGE FRACTURE 360
IMAGE 4
VIII CONTENTS
10.3 CRACK-TIP PLASTICITY 362
10.3.1 PLASTIC ZONE 362 10.3.2 INTERACTION OF CRACKS WITH INTERFACES 365
10.3.3 CRACK-DISLOCATION INTERACTIONS 367 10.3.4 ROLE OF TWINNING 369
10.4 FRACTURE TOUGHNESS, STRENGTH, AND DUCTILITY 373 10.4.1 METHODICAL
ASPECTS 373 10.4.2 EFFECTS OF MICROSTRUCTURE AND TEXTURE 376
10.4.3 EFFECT OF TEMPERATURE AND LOADING RATE 383 10.4.4 EFFECT OF
PREDEFORMATION 387 10.5 FRACTURE BEHAVIOR OF MODULATED ALLOYS 388 10.6
REQUIREMENTS FOR DUCTILITY AND TOUGHNESS 392 10.7 ASSESSMENT OF PROPERTY
VARIABILITY 393 10.7.1 STATISTICAL ASSESSMENT 393 10.7.2 VARIABILITY IN
STRENGTH AND DUCTILITY OF TIAL 394 10.7.3 FRACTURE TOUGHNESS VARIABILITY
OF TIAL 396
REFERENCES 398
11 FATIGUE 403
11.1 DEFINITIONS 403 11.2 THE STRESS-LIFE (S-N) BEHAVIOR 405 11.3 HCF
407
11.3.1 FATIGUE CRACK GROWTH 407 11.3.2 CRACK-CLOSURE EFFECTS 409 11.3.3
FATIGUE AT THE THRESHOLD STRESS INTENSITY 422 11.4 EFFECTS OF
TEMPERATURE AND ENVIRONMENT ON THE CYCLIC
CRACK-GROWTH RESISTANCE 423 11.5 LCF 428
11.5.1 GENERAL CONSIDERATIONS 428 11.5.2 CYCLIC-STRESS RESPONSE 419
11.5.3 CYCLIC PLASTICITY 422 11.5.4 STRESS-INDUCED PHASE TRANSFORMATION
AND DYNAMIC
RECRYSTALLIZATION 426 11.6 THERMOMECHANICAL FATIGUE AND CREEP RELAXATION
428 REFERENCES 429
12 OXIDATION BEHAVIOR AND RELATED ISSUES 433 12.1 KINETICS AND
THERMODYNAMICS 433 12.2 GENERAL ASPECTS CONCERNING OXIDATION 437 12.2.1
EFFECT OF COMPOSITION 437
12.2.2 MECHANICAL ASPECTS OF OXIDE GROWTH 439 12.2.3 EFFECT OF OXYGEN
AND NITROGEN 441 12.2.4 EFFECT OF OTHER ENVIRONMENTAL FACTORS 443 12.2.5
SUBSURFACE ZONE, THE Z-PHASE, AND SILVER ADDITIONS 446
12.2.6 EFFECT OF SURFACE FINISH 447
IMAGE 5
CONTENTS IX
12.2.7 ION IMPLANTATION 448
12.2.8 INFLUENCE OF HALOGENS ON OXIDATION 450 12.2.9 EMBRITTLEMENT AFTER
HIGH-TEMPERATURE EXPOSURE 450 12.2.10 COATINGS/OXIDATION-RESISTANT
ALLOYS 456 12.3 SUMMARY 458
REFERENCES 459
13 ALLOY DESIGN 465
13.1 EFFECT OF ALUMINUM CONTENT 465 13.2 IMPORTANT ALLOYING
ELEMENTS-GENERAL REMARKS 467 13.2.1 CR, MN, AND V 468
13.2.2 NB, W, MO, AND TA 469 13.2.3 B, C, AND SI 469
13.3 SPECIFIC ALLOY SYSTEMS 471 13.3.1 CONVENTIONAL ALLOYS 472 13.3.2
HIGH NIOBIUM-CONTAINING ALLOYS 472 13.3.3 SS-SOLIDIFYING ALLOYS 473
13.3.4 MASSIVELY TRANSFORMED ALLOYS 474 13.4 SUMMARY 476
REFERENCES 477
14 INGOT PRODUCTION AND COMPONENT CASTING 479 14.1 INGOT PRODUCTION 479
14.1.1 VACUUM ARC MELTING (VAR) 480 14.1.2 PLASMA-ARC MELTING (PAM) 483
14.1.3 INDUCTION SKULL MELTING (ISM) 489 14.1.4 GENERAL COMMENTS 492
14.2 CASTING 495
14.2.1 INVESTMENT CASTING 497 14.2.2 GRAVITY METAL MOLD CASTING (GMM)
503 14.2.3 CENTRIFUGAL CASTING 506 14.2.4 COUNTERGRAVITY LOW-PRESSURE
CASTING 523 14.2.5 DIRECTIONAL CASTING 524 14.3 SUMMARY 525
REFERENCES 525
15 POWDER METALLURGY 522 15.1 PREALLOYED POWDER TECHNOLOGY 522 15.1.1
GAS ATOMIZATION 522 15.1.1.1 PLASMA INERT-GAS ATOMIZATION (PIGA) AT GKSS
524
15.1.1.2 TITANIUM GAS-ATOMIZER PROCESS (TGA) 526 15.1.1.3 ELECTRODE
INDUCTION MELTING GAS ATOMIZATION (EIGA) 527 15.1.2 ROTATING-ELECTRODE
PROCESSES 529 15.1.3 ROTATING-DISC ATOMIZATION 532 15.1.4 GENERAL
ASPECTS OF ATOMIZATION 532
IMAGE 6
X I CONTENTS
15.1.5 POSTATOMIZATION PROCESSING 542
15.1.5.1 HOT ISOSTATIC PRESSING (HIPING), HOT WORKING, AND PROPERTIES
543 15.1.5.2 LASER-BASED RAPID-PROTOTYPING TECHNIQUES 547 15.1.5.3 METAL
INJECTION MOLDING (MIM) 549
15.1.5.4 SPRAY FORMING 552 15.1.5.5 SHEET/FOIL PRODUCTION THROUGH (I)
HIP OF CAST TAPES AND (II) LIQUID-PHASE SINTERING 556 15.1.5.6 SPARK
SINTERING 557 15.1.6 SUMMARY 558 15.2 ELEMENTAL-POWDER TECHNOLOGY 559
15.2.1 REACTIVE SINTERING 559 15.2.1.1 MECHANICAL PROPERTIES OF REACTIVE
SINTERED MATERIAL 563 15.2.1.2 MANUFACTURE OF REACTIVELY SINTERED
COMPONENTS/PARTS 564 15.2.2 SUMMARY 564 15.3 MECHANICAL ALLOYING 565
REFERENCES 566
16 WROUGHT PROCESSING 573 16.1 FLOW BEHAVIOR UNDER HOT-WORKING
CONDITIONS 574 16.1.1 FLOW CURVES 574 16.1.2 CONSTITUTIVE ANALYSIS OF
THE FLOW BEHAVIOR 578 16.2 CONVERSION OF MICROSTRUCTURE 585 16.2.1
RECRYSTALLIZATION OF SINGLE-PHASE ALLOYS 585 16.2.2 MULTIPHASE ALLOYS
AND ALLOYING EFFECTS 587 16.2.3 INFLUENCE OF LAMELLAR INTERFACES 595
16.2.4 MICROSTRUCTURAL EVOLUTION DURING HOT WORKING ABOVE THE EUTECTOID
TEMPERATURE 603
16.2.5 TECHNOLOGICAL ASPECTS 605 16.3 WORKABILITY AND PRIMARY PROCESSING
607 16.3.1 WORKABILITY 607 16.3.2 INGOT BREAKDOWN 627
16.4 TEXTURE EVOLUTION 642 16.5 SECONDARY PROCESSING 658 16.5.1
COMPONENT MANUFACTURE THROUGH WROUGHT PROCESSING 658 16.5.2 ROLLING -
SHEET PRODUCTION AND SELECTED MECHANICAL PROPERTIES 662
16.5.2.1 PACK ROLLING 663 16.5.2.2 ROLLING DEFECTS 666 16.5.2.3
INDUSTRIAL PRODUCTION OF SHEET 667
16.5.2.4 MECHANICAL PROPERTIES OF SHEET 668 16.5.2.5 SUPERPLASTIC
BEHAVIOR 669 16.5.3 NOVEL TECHNIQUES 671 16.5.3.1 MANUFACTURE OF LARGE
"DEFECT-FREE" COMPONENTS 671
REFERENCES 673
IMAGE 7
CONTENTS XI
17 JOINING 683
17.1 DIFFUSION BONDING 683 17.1.1 ALLOY COMPOSITIONS AND MICROSTRUCTURES
684 17.1.2 MICROASPERITY DEFORMATION 685 17.1.3 DIFFUSION BONDING;
EXPERIMENTAL SETUP 687 17.1.4 METALLOGRAPHIC CHARACTERIZATION OF THE
BONDING ZONE 687 17.1.5 EFFECT OF ALLOY COMPOSITION 696 17.1.6 INFLUENCE
OF BONDING TIME AND STRESS 698 17.1.7 MECHANICAL CHARACTERIZATION OF THE
BONDS 700 17.2 BRAZING AND OTHER JOINING TECHNOLOGIES 702 17.2.1 BRAZING
AND TRANSIENT LIQUID-PHASE JOINING 702 17.2.2 OTHER TECHNIQUES 704
REFERENCES 704
18 SURFACE HARDENING 707 18.1 SHOT PEENING AND ROLLER BURNISHING 707
18.2 RESIDUAL STRESSES, MICROHARDNESS, AND SURFACE ROUGHNESS 708 18.3
SURFACE DEFORMATION DUE TO SHOT PEENING 722
18.4 PHASE TRANSFORMATION, RECRYSTALLIZATION, AND AMORPHIZATION 726 18.5
EFFECT OF SHOT PEENING ON FATIGUE STRENGTH 721 18.6 THERMAL STABILITY OF
THE SURFACE HARDENING 724 REFERENCES 726
19 APPLICATIONS, COMPONENT ASSESSMENT, AND OUTLOOK 729 19.1 AEROSPACE
729 19.1.1 AIRCRAFT-ENGINE APPLICATIONS 729
19.1.2 EXOTIC AEROSPACE APPLICATIONS 731 19.2 AUTOMOTIVE 732 19.3
OUTLOOK 736 REFERENCES 737
SUBJECT INDEX 739 |
any_adam_object | 1 |
author | Appel, Fritz Paul, Jonathan David Heaton Oehring, Michael |
author_GND | (DE-588)173257194 |
author_facet | Appel, Fritz Paul, Jonathan David Heaton Oehring, Michael |
author_role | aut aut aut |
author_sort | Appel, Fritz |
author_variant | f a fa j d h p jdh jdhp m o mo |
building | Verbundindex |
bvnumber | BV039661729 |
classification_rvk | ZM 4610 |
ctrlnum | (OCoLC)254325683 (DE-599)BSZ279321538 |
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 Maschinenbau / Maschinenwesen Werkstoffwissenschaften / Fertigungstechnik |
format | Book |
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id | DE-604.BV039661729 |
illustrated | Illustrated |
indexdate | 2024-07-21T00:14:00Z |
institution | BVB |
isbn | 352731525X 9783527315253 9783527636204 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-024511099 |
oclc_num | 254325683 |
open_access_boolean | |
owner | DE-92 DE-83 DE-634 DE-29T DE-860 |
owner_facet | DE-92 DE-83 DE-634 DE-29T DE-860 |
physical | XVI, 745 S. Ill., graph. Darst. |
publishDate | 2011 |
publishDateSearch | 2011 |
publishDateSort | 2011 |
publisher | Wiley-VCH |
record_format | marc |
spelling | Appel, Fritz Verfasser (DE-588)173257194 aut Gamma titanium aluminide alloys science and technology Fritz Appel, Jonathan David Heaton Paul, and Michael Oehring Weinheim Wiley-VCH 2011 XVI, 745 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Leichtmetall (DE-588)4035174-9 gnd rswk-swf Titanaluminide (DE-588)4470201-2 gnd rswk-swf Titanaluminide (DE-588)4470201-2 s Leichtmetall (DE-588)4035174-9 s DE-604 Paul, Jonathan David Heaton Verfasser aut Oehring, Michael Verfasser aut Erscheint auch als Online-Ausgabe, EPUB 978-3-527-63621-1 Erscheint auch als Online-Ausgabe, PDF 978-3-527-63622-8 V:DE-576;X:wiley application/pdf http://swbplus.bsz-bw.de/bsz279321538cov.htm Umschlagbild text/html http://deposit.dnb.de/cgi-bin/dokserv?id=3702182&prov=M&dok_var=1&dok_ext=htm Inhaltstext DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=024511099&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Appel, Fritz Paul, Jonathan David Heaton Oehring, Michael Gamma titanium aluminide alloys science and technology Leichtmetall (DE-588)4035174-9 gnd Titanaluminide (DE-588)4470201-2 gnd |
subject_GND | (DE-588)4035174-9 (DE-588)4470201-2 |
title | Gamma titanium aluminide alloys science and technology |
title_auth | Gamma titanium aluminide alloys science and technology |
title_exact_search | Gamma titanium aluminide alloys science and technology |
title_full | Gamma titanium aluminide alloys science and technology Fritz Appel, Jonathan David Heaton Paul, and Michael Oehring |
title_fullStr | Gamma titanium aluminide alloys science and technology Fritz Appel, Jonathan David Heaton Paul, and Michael Oehring |
title_full_unstemmed | Gamma titanium aluminide alloys science and technology Fritz Appel, Jonathan David Heaton Paul, and Michael Oehring |
title_short | Gamma titanium aluminide alloys |
title_sort | gamma titanium aluminide alloys science and technology |
title_sub | science and technology |
topic | Leichtmetall (DE-588)4035174-9 gnd Titanaluminide (DE-588)4470201-2 gnd |
topic_facet | Leichtmetall Titanaluminide |
url | http://swbplus.bsz-bw.de/bsz279321538cov.htm http://deposit.dnb.de/cgi-bin/dokserv?id=3702182&prov=M&dok_var=1&dok_ext=htm http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=024511099&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT appelfritz gammatitaniumaluminidealloysscienceandtechnology AT pauljonathandavidheaton gammatitaniumaluminidealloysscienceandtechnology AT oehringmichael gammatitaniumaluminidealloysscienceandtechnology |