Increasing fatigue strength of austenitic stainless steel using machine hammer peening: = Erhöhung der Ermüdungsfestigkeit von austenitischem rostfreiem Edelstahl durch maschinelles Oberflächenhämmern
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1. Verfasser: | |
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Format: | Abschlussarbeit Buch |
Sprache: | English |
Veröffentlicht: |
Aachen
Apprimus Verlag
2021
|
Ausgabe: | 1. Auflage |
Schriftenreihe: | Ergebnisse aus der Produktionstechnik
Band 25/2021 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XII, 144, XIII-XLIV Seiten Ilustrationen, Diagramme 21 cm x 14.8 cm, 294 g |
ISBN: | 9783985550067 3985550069 |
Internformat
MARC
LEADER | 00000nam a22000008cb4500 | ||
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003 | DE-604 | ||
005 | 20220324 | ||
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008 | 211117s2021 gw |||| m||| 00||| eng d | ||
015 | |a 21,N44 |2 dnb | ||
016 | 7 | |a 1244437409 |2 DE-101 | |
020 | |a 9783985550067 |c : EUR 39.00 (DE), EUR 40.10 (AT) |9 978-3-98555-006-7 | ||
020 | |a 3985550069 |9 3-98555-006-9 | ||
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100 | 1 | |a Mannens, Robby |e Verfasser |0 (DE-588)1244255394 |4 aut | |
245 | 1 | 0 | |a Increasing fatigue strength of austenitic stainless steel using machine hammer peening |b = Erhöhung der Ermüdungsfestigkeit von austenitischem rostfreiem Edelstahl durch maschinelles Oberflächenhämmern |c Robby Mannens |
246 | 1 | 1 | |a Erhöhung der Ermüdungsfestigkeit von austenitischem rostfreiem Edelstahl durch maschinelles Oberflächenhämmern |
250 | |a 1. Auflage | ||
264 | 1 | |a Aachen |b Apprimus Verlag |c 2021 | |
300 | |a XII, 144, XIII-XLIV Seiten |b Ilustrationen, Diagramme |c 21 cm x 14.8 cm, 294 g | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
490 | 1 | |a Ergebnisse aus der Produktionstechnik |v Band 25/2021 | |
490 | 0 | |a Technologie der Fertigungsverfahren | |
502 | |b Dissertation |c Rheinisch-Westfälische Technische Hochschule Aachen |d 2021 | ||
650 | 0 | 7 | |a Oberflächenfeingestalt |0 (DE-588)4201597-2 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Maschinelles Oberflächenhämmern |0 (DE-588)1175916838 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Materialermüdung |0 (DE-588)4074631-8 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Austenitischer Stahl |0 (DE-588)4003892-0 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Edelstahl |0 (DE-588)4135605-6 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Prozessführung |g Technik |0 (DE-588)4197295-8 |2 gnd |9 rswk-swf |
653 | |a Fertigungstechnik | ||
653 | |a manufacturing engineering | ||
653 | |a grind | ||
653 | |a umformen | ||
653 | |a reshape | ||
653 | |a schleifen | ||
655 | 7 | |0 (DE-588)4113937-9 |a Hochschulschrift |2 gnd-content | |
689 | 0 | 0 | |a Austenitischer Stahl |0 (DE-588)4003892-0 |D s |
689 | 0 | 1 | |a Edelstahl |0 (DE-588)4135605-6 |D s |
689 | 0 | 2 | |a Maschinelles Oberflächenhämmern |0 (DE-588)1175916838 |D s |
689 | 0 | 3 | |a Prozessführung |g Technik |0 (DE-588)4197295-8 |D s |
689 | 0 | 4 | |a Oberflächenfeingestalt |0 (DE-588)4201597-2 |D s |
689 | 0 | 5 | |a Materialermüdung |0 (DE-588)4074631-8 |D s |
689 | 0 | |5 DE-604 | |
830 | 0 | |a Ergebnisse aus der Produktionstechnik |v Band 25/2021 |w (DE-604)BV023307578 |9 2021,25 | |
856 | 4 | 2 | |m DNB Datenaustausch |q application/pdf |u http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=032976191&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |3 Inhaltsverzeichnis |
999 | |a oai:aleph.bib-bvb.de:BVB01-032976191 | ||
883 | 1 | |8 1\p |a vlb |d 20211026 |q DE-101 |u https://d-nb.info/provenance/plan#vlb |
Datensatz im Suchindex
_version_ | 1804182951440678912 |
---|---|
adam_text | TABLE
OF
CONTENTS
I
TABLE
OF
CONTENTS
INHALTSVERZEICHNIS
1
INTRODUCTION
.......................................................................................................
1
2
STATE
OF
THE
ART
IN
RESEARCH
AND
INDUSTRY
.....................................................
9
2.1
AUSTENITIC
STAINLESS
STEELS
........................................................................
9
2.1.1
AUSTENITE
STABILITY
.......................................................................
10
2.1.2
MARTENSITIC
TRANSFORMATION
.........................................................
12
2.1.3
DEFORMATION
BEHAVIOR
OF
AUSTENITIC
STAINLESS
STEELS
................
17
2.1.4
INTERMEDIATE
CONCLUSION
............................................................
19
2.2
SURFACE
LAYER
TREATMENT
...........................................................................
20
2.2.1
PROCESSES
FOR
MECHANICAL
SURFACE
LAYER
IMPROVEMENT
............
20
2.2.2
EFFECTS
ON
SURFACE
LAYER
.............................................................
21
2.2.3
INFLUENCE
ON
FATIGUE
BEHAVIOR
...................................................
26
2.2.4
INTERMEDIATE
CONCLUSION
............................................................
29
2.3
MACHINE
HAMMER
PEENING
(MHP)
..........................................................
29
2.3.1
TECHNOLOGICAL
PROCESS
VARIATIONS
.............................................
30
2.3.2
ELECTRODYNAMIC
OPERATING
PRINCIPLE
..........................................
31
2.3.3
KINEMATICS,
CONTACT
MECHANICS
AND
IMPACT
ANALYSIS
..............
32
2.3.4
INTERMEDIATE
CONCLUSION
............................................................
35
2.4
ECONOMIC
AND
SCIENTIFIC
PROBLEM
STATEMENT
..........................................
35
3
OBJECTIVE
AND
RESEARCH
METHODOLOGY
.........................................................
37
4
CHARACTERIZATION
AND
ANALYSIS
OF
ROBOT-BASED
MHP
KINETICS
.................
41
4.1
DETERMINATION
OF
ROBOT
DYNAMICS
............................................................
42
4.1.1
ANALYSIS
OF
ROBOT
ACCELERATION
..................................................
42
4.1.2
EXAMINATION
OF
ROBOT
OSCILLATIONS
..............................................
44
4.1.3
INFLUENCE
OF
ROBOT
DYNAMICS
ON
MHP
PROCESSING
...................
47
4.2
METROLOGICAL
EXTENSION
OF
THE
ELECTRODYNAMIC
MHP
SYSTEM
...............
48
4.2.1
REQUIREMENT
ANALYSIS
AND
SENSOR
TECHNOLOGY
SELECTION
.......
48
4.2.2
INSTRUMENTATION
OF
MHP
TOOL
.....................................................
49
4.2.3
INFLUENCE
OF
SAMPLING
RATE
ON
PROCESS
DATA
.............................
51
4.3
EFFECTS
OF
PROCESS
PARAMETERS
ON
MHP
SYSTEM
BEHAVIOR
....................
53
4.3.1
TEST
SETUP
AND
EXPERIMENTAL
PROCEDURE
..................................
53
4.3.2
FREE
STROKE
ANALYSIS
.................................................................
53
4.3.3
DETERMINATION
OF
CURRENT,
VOLTAGE
AND
ELECTRICAL
POWER
........55
4.3.4
DETERMINATION
OF
HAMMERING
FORCES
.......................................
56
4.3.5
DETERMINATION
OF
PLUNGER
STROKE
AND
CONTACT
ENERGY
.............
57
4.3.6
DEDUCTION
OF
AN
EMPIRICAL-MATHEMATICAL
MHP
MODEL
............
60
4.4
NUMERICAL
MODELLING
OF
MULTIPHYSICAL
MHP
SYSTEM
BEHAVIOR
.............
61
4.4.1
ELECTRICAL
OPERATING
SYSTEM
.....................................................
62
4.4.2
MECHANICAL
OPERATING
SYSTEM
..................................................
65
II
TABLE
OF
CONTENTS
4.4.3
CONTACT
MECHANICS
....................................................................
66
4.4.4
DEDUCTION
OF
A
DATA-BASED
MHP
KINETICS
MODEL
.....................
67
4.5
INTERMEDIATE
CONCLUSION
..........................................................................
70
5
PLASTOMECHANICAL
SINGLE
IMPACT
ANALYSIS
.................................................
73
5.1
DEVELOPMENT
OF
DROP
TOWER
TEST
RIG
........................................................
73
5.1.1
TEST
RIG
DESIGN
FOR
SINGLE
IMPACT
ANALYSIS
................................
74
5.1.2
EVALUATION
OF
RESULT
TRANSFERABILITY
TO
MHP
PROCESS
...............
75
5.2
EXPERIMENTAL
ANALYSIS
OF
INDENTATION
GEOMETRY
AND
CONTACT
MODES...
76
5.2.1
PROCEDURE
AND
EVALUATION
OF
INDENTATIONS
...............................
77
5.2.2
RESULTS
OF
CONTACT
CONDITIONS
AND
INDENTATION
MORPHOLOGY
...
78
5.3
NUMERICAL
FE
MODELING
OF
IMPACT
TESTS
.................................................84
5.3.1
SET-UP
AND
VERIFICATION
OF
THE
FE
MODEL
..................................84
5.3.2
ANALYSIS
OF
PLASTOMECHANICAL
MATERIAL
STATE
...........................
86
5.4
INTERMEDIATE
CONCLUSION
.........................................................................90
6
INFLUENCE
OF
MHP
ON
SURFACE
INTEGRITY
........................................................
93
6.1
EXPERIMENTAL
ANALYSIS
OF
SURFACE
LAYER
AFTER
ROBOT-BASED
MHP
..........
93
6.1.1
MHP
TEST
SETUP
AND
PROCEDURE
.................................................93
6.1.2
ANALYSIS
METHODS
AND
SPECIMEN
PREPARATION
..........................
95
6.1.3
RESULTS
OF
SURFACE
LAYER
CHARACTERIZATION
................................
96
6.2
NUMERICAL
FE
MODELING
OF
MACHINE
HAMMER
PEENING
........................
109
6.2.1
SET-UP
AND
VALIDATION
OF
THE
FE
MODEL
...................................
110
6.2.2
ANALYSIS
OF
STRESS
STATES
AND
DISLOCATION
DENSITY
...................
114
6.3
INTERMEDIATE
CONCLUSION
........................................................................
118
6.4
SYNTHESIS
OF
RESULTS
INTO
DESIGN
MODEL
................................................
119
7
FATIGUE
ANALYSIS
OF
MHP-TREATED
SURFACE
LAYERS
.....................................123
7.1
EXPERIMENTAL
DESIGN
AND
PROCEDURE
.....................................................
123
7.1.1
EXTENSION
OF
MHP
TEST
BENCH
AND
TEST
CONDITIONS
...............
123
7.1.2
VALIDATION
OF
ROTATING
BENDING
TEST
RIG
AND
APPROACH
...........
126
7.2
ANALYSIS
OF
LOAD
CYCLES
AND
FRACTOGRAPHS
............................................
128
7.3
CONCLUSION
AND
VALIDATION
OF
THE
RESEARCH
HYPOTHESIS
......................
132
8
SUMMARY
AND
OUTLOOK
.................................................................................
133
BIBLIOGRAPHY
..........................................................................................................
XIII
APPENDIX
XXXVII
|
adam_txt |
TABLE
OF
CONTENTS
I
TABLE
OF
CONTENTS
INHALTSVERZEICHNIS
1
INTRODUCTION
.
1
2
STATE
OF
THE
ART
IN
RESEARCH
AND
INDUSTRY
.
9
2.1
AUSTENITIC
STAINLESS
STEELS
.
9
2.1.1
AUSTENITE
STABILITY
.
10
2.1.2
MARTENSITIC
TRANSFORMATION
.
12
2.1.3
DEFORMATION
BEHAVIOR
OF
AUSTENITIC
STAINLESS
STEELS
.
17
2.1.4
INTERMEDIATE
CONCLUSION
.
19
2.2
SURFACE
LAYER
TREATMENT
.
20
2.2.1
PROCESSES
FOR
MECHANICAL
SURFACE
LAYER
IMPROVEMENT
.
20
2.2.2
EFFECTS
ON
SURFACE
LAYER
.
21
2.2.3
INFLUENCE
ON
FATIGUE
BEHAVIOR
.
26
2.2.4
INTERMEDIATE
CONCLUSION
.
29
2.3
MACHINE
HAMMER
PEENING
(MHP)
.
29
2.3.1
TECHNOLOGICAL
PROCESS
VARIATIONS
.
30
2.3.2
ELECTRODYNAMIC
OPERATING
PRINCIPLE
.
31
2.3.3
KINEMATICS,
CONTACT
MECHANICS
AND
IMPACT
ANALYSIS
.
32
2.3.4
INTERMEDIATE
CONCLUSION
.
35
2.4
ECONOMIC
AND
SCIENTIFIC
PROBLEM
STATEMENT
.
35
3
OBJECTIVE
AND
RESEARCH
METHODOLOGY
.
37
4
CHARACTERIZATION
AND
ANALYSIS
OF
ROBOT-BASED
MHP
KINETICS
.
41
4.1
DETERMINATION
OF
ROBOT
DYNAMICS
.
42
4.1.1
ANALYSIS
OF
ROBOT
ACCELERATION
.
42
4.1.2
EXAMINATION
OF
ROBOT
OSCILLATIONS
.
44
4.1.3
INFLUENCE
OF
ROBOT
DYNAMICS
ON
MHP
PROCESSING
.
47
4.2
METROLOGICAL
EXTENSION
OF
THE
ELECTRODYNAMIC
MHP
SYSTEM
.
48
4.2.1
REQUIREMENT
ANALYSIS
AND
SENSOR
TECHNOLOGY
SELECTION
.
48
4.2.2
INSTRUMENTATION
OF
MHP
TOOL
.
49
4.2.3
INFLUENCE
OF
SAMPLING
RATE
ON
PROCESS
DATA
.
51
4.3
EFFECTS
OF
PROCESS
PARAMETERS
ON
MHP
SYSTEM
BEHAVIOR
.
53
4.3.1
TEST
SETUP
AND
EXPERIMENTAL
PROCEDURE
.
53
4.3.2
FREE
STROKE
ANALYSIS
.
53
4.3.3
DETERMINATION
OF
CURRENT,
VOLTAGE
AND
ELECTRICAL
POWER
.55
4.3.4
DETERMINATION
OF
HAMMERING
FORCES
.
56
4.3.5
DETERMINATION
OF
PLUNGER
STROKE
AND
CONTACT
ENERGY
.
57
4.3.6
DEDUCTION
OF
AN
EMPIRICAL-MATHEMATICAL
MHP
MODEL
.
60
4.4
NUMERICAL
MODELLING
OF
MULTIPHYSICAL
MHP
SYSTEM
BEHAVIOR
.
61
4.4.1
ELECTRICAL
OPERATING
SYSTEM
.
62
4.4.2
MECHANICAL
OPERATING
SYSTEM
.
65
II
TABLE
OF
CONTENTS
4.4.3
CONTACT
MECHANICS
.
66
4.4.4
DEDUCTION
OF
A
DATA-BASED
MHP
KINETICS
MODEL
.
67
4.5
INTERMEDIATE
CONCLUSION
.
70
5
PLASTOMECHANICAL
SINGLE
IMPACT
ANALYSIS
.
73
5.1
DEVELOPMENT
OF
DROP
TOWER
TEST
RIG
.
73
5.1.1
TEST
RIG
DESIGN
FOR
SINGLE
IMPACT
ANALYSIS
.
74
5.1.2
EVALUATION
OF
RESULT
TRANSFERABILITY
TO
MHP
PROCESS
.
75
5.2
EXPERIMENTAL
ANALYSIS
OF
INDENTATION
GEOMETRY
AND
CONTACT
MODES.
76
5.2.1
PROCEDURE
AND
EVALUATION
OF
INDENTATIONS
.
77
5.2.2
RESULTS
OF
CONTACT
CONDITIONS
AND
INDENTATION
MORPHOLOGY
.
78
5.3
NUMERICAL
FE
MODELING
OF
IMPACT
TESTS
.84
5.3.1
SET-UP
AND
VERIFICATION
OF
THE
FE
MODEL
.84
5.3.2
ANALYSIS
OF
PLASTOMECHANICAL
MATERIAL
STATE
.
86
5.4
INTERMEDIATE
CONCLUSION
.90
6
INFLUENCE
OF
MHP
ON
SURFACE
INTEGRITY
.
93
6.1
EXPERIMENTAL
ANALYSIS
OF
SURFACE
LAYER
AFTER
ROBOT-BASED
MHP
.
93
6.1.1
MHP
TEST
SETUP
AND
PROCEDURE
.93
6.1.2
ANALYSIS
METHODS
AND
SPECIMEN
PREPARATION
.
95
6.1.3
RESULTS
OF
SURFACE
LAYER
CHARACTERIZATION
.
96
6.2
NUMERICAL
FE
MODELING
OF
MACHINE
HAMMER
PEENING
.
109
6.2.1
SET-UP
AND
VALIDATION
OF
THE
FE
MODEL
.
110
6.2.2
ANALYSIS
OF
STRESS
STATES
AND
DISLOCATION
DENSITY
.
114
6.3
INTERMEDIATE
CONCLUSION
.
118
6.4
SYNTHESIS
OF
RESULTS
INTO
DESIGN
MODEL
.
119
7
FATIGUE
ANALYSIS
OF
MHP-TREATED
SURFACE
LAYERS
.123
7.1
EXPERIMENTAL
DESIGN
AND
PROCEDURE
.
123
7.1.1
EXTENSION
OF
MHP
TEST
BENCH
AND
TEST
CONDITIONS
.
123
7.1.2
VALIDATION
OF
ROTATING
BENDING
TEST
RIG
AND
APPROACH
.
126
7.2
ANALYSIS
OF
LOAD
CYCLES
AND
FRACTOGRAPHS
.
128
7.3
CONCLUSION
AND
VALIDATION
OF
THE
RESEARCH
HYPOTHESIS
.
132
8
SUMMARY
AND
OUTLOOK
.
133
BIBLIOGRAPHY
.
XIII
APPENDIX
XXXVII |
any_adam_object | 1 |
any_adam_object_boolean | 1 |
author | Mannens, Robby |
author_GND | (DE-588)1244255394 |
author_facet | Mannens, Robby |
author_role | aut |
author_sort | Mannens, Robby |
author_variant | r m rm |
building | Verbundindex |
bvnumber | BV047591021 |
classification_rvk | ZM 4550 |
ctrlnum | (OCoLC)1287914117 (DE-599)DNB1244437409 |
discipline | Werkstoffwissenschaften / Fertigungstechnik |
discipline_str_mv | Werkstoffwissenschaften / Fertigungstechnik |
edition | 1. Auflage |
format | Thesis Book |
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genre | (DE-588)4113937-9 Hochschulschrift gnd-content |
genre_facet | Hochschulschrift |
id | DE-604.BV047591021 |
illustrated | Not Illustrated |
index_date | 2024-07-03T18:36:10Z |
indexdate | 2024-07-10T09:15:42Z |
institution | BVB |
isbn | 9783985550067 3985550069 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-032976191 |
oclc_num | 1287914117 |
open_access_boolean | |
owner | DE-83 DE-29T |
owner_facet | DE-83 DE-29T |
physical | XII, 144, XIII-XLIV Seiten Ilustrationen, Diagramme 21 cm x 14.8 cm, 294 g |
publishDate | 2021 |
publishDateSearch | 2021 |
publishDateSort | 2021 |
publisher | Apprimus Verlag |
record_format | marc |
series | Ergebnisse aus der Produktionstechnik |
series2 | Ergebnisse aus der Produktionstechnik Technologie der Fertigungsverfahren |
spelling | Mannens, Robby Verfasser (DE-588)1244255394 aut Increasing fatigue strength of austenitic stainless steel using machine hammer peening = Erhöhung der Ermüdungsfestigkeit von austenitischem rostfreiem Edelstahl durch maschinelles Oberflächenhämmern Robby Mannens Erhöhung der Ermüdungsfestigkeit von austenitischem rostfreiem Edelstahl durch maschinelles Oberflächenhämmern 1. Auflage Aachen Apprimus Verlag 2021 XII, 144, XIII-XLIV Seiten Ilustrationen, Diagramme 21 cm x 14.8 cm, 294 g txt rdacontent n rdamedia nc rdacarrier Ergebnisse aus der Produktionstechnik Band 25/2021 Technologie der Fertigungsverfahren Dissertation Rheinisch-Westfälische Technische Hochschule Aachen 2021 Oberflächenfeingestalt (DE-588)4201597-2 gnd rswk-swf Maschinelles Oberflächenhämmern (DE-588)1175916838 gnd rswk-swf Materialermüdung (DE-588)4074631-8 gnd rswk-swf Austenitischer Stahl (DE-588)4003892-0 gnd rswk-swf Edelstahl (DE-588)4135605-6 gnd rswk-swf Prozessführung Technik (DE-588)4197295-8 gnd rswk-swf Fertigungstechnik manufacturing engineering grind umformen reshape schleifen (DE-588)4113937-9 Hochschulschrift gnd-content Austenitischer Stahl (DE-588)4003892-0 s Edelstahl (DE-588)4135605-6 s Maschinelles Oberflächenhämmern (DE-588)1175916838 s Prozessführung Technik (DE-588)4197295-8 s Oberflächenfeingestalt (DE-588)4201597-2 s Materialermüdung (DE-588)4074631-8 s DE-604 Ergebnisse aus der Produktionstechnik Band 25/2021 (DE-604)BV023307578 2021,25 DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=032976191&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p vlb 20211026 DE-101 https://d-nb.info/provenance/plan#vlb |
spellingShingle | Mannens, Robby Increasing fatigue strength of austenitic stainless steel using machine hammer peening = Erhöhung der Ermüdungsfestigkeit von austenitischem rostfreiem Edelstahl durch maschinelles Oberflächenhämmern Ergebnisse aus der Produktionstechnik Oberflächenfeingestalt (DE-588)4201597-2 gnd Maschinelles Oberflächenhämmern (DE-588)1175916838 gnd Materialermüdung (DE-588)4074631-8 gnd Austenitischer Stahl (DE-588)4003892-0 gnd Edelstahl (DE-588)4135605-6 gnd Prozessführung Technik (DE-588)4197295-8 gnd |
subject_GND | (DE-588)4201597-2 (DE-588)1175916838 (DE-588)4074631-8 (DE-588)4003892-0 (DE-588)4135605-6 (DE-588)4197295-8 (DE-588)4113937-9 |
title | Increasing fatigue strength of austenitic stainless steel using machine hammer peening = Erhöhung der Ermüdungsfestigkeit von austenitischem rostfreiem Edelstahl durch maschinelles Oberflächenhämmern |
title_alt | Erhöhung der Ermüdungsfestigkeit von austenitischem rostfreiem Edelstahl durch maschinelles Oberflächenhämmern |
title_auth | Increasing fatigue strength of austenitic stainless steel using machine hammer peening = Erhöhung der Ermüdungsfestigkeit von austenitischem rostfreiem Edelstahl durch maschinelles Oberflächenhämmern |
title_exact_search | Increasing fatigue strength of austenitic stainless steel using machine hammer peening = Erhöhung der Ermüdungsfestigkeit von austenitischem rostfreiem Edelstahl durch maschinelles Oberflächenhämmern |
title_exact_search_txtP | Increasing fatigue strength of austenitic stainless steel using machine hammer peening = Erhöhung der Ermüdungsfestigkeit von austenitischem rostfreiem Edelstahl durch maschinelles Oberflächenhämmern |
title_full | Increasing fatigue strength of austenitic stainless steel using machine hammer peening = Erhöhung der Ermüdungsfestigkeit von austenitischem rostfreiem Edelstahl durch maschinelles Oberflächenhämmern Robby Mannens |
title_fullStr | Increasing fatigue strength of austenitic stainless steel using machine hammer peening = Erhöhung der Ermüdungsfestigkeit von austenitischem rostfreiem Edelstahl durch maschinelles Oberflächenhämmern Robby Mannens |
title_full_unstemmed | Increasing fatigue strength of austenitic stainless steel using machine hammer peening = Erhöhung der Ermüdungsfestigkeit von austenitischem rostfreiem Edelstahl durch maschinelles Oberflächenhämmern Robby Mannens |
title_short | Increasing fatigue strength of austenitic stainless steel using machine hammer peening |
title_sort | increasing fatigue strength of austenitic stainless steel using machine hammer peening erhohung der ermudungsfestigkeit von austenitischem rostfreiem edelstahl durch maschinelles oberflachenhammern |
title_sub | = Erhöhung der Ermüdungsfestigkeit von austenitischem rostfreiem Edelstahl durch maschinelles Oberflächenhämmern |
topic | Oberflächenfeingestalt (DE-588)4201597-2 gnd Maschinelles Oberflächenhämmern (DE-588)1175916838 gnd Materialermüdung (DE-588)4074631-8 gnd Austenitischer Stahl (DE-588)4003892-0 gnd Edelstahl (DE-588)4135605-6 gnd Prozessführung Technik (DE-588)4197295-8 gnd |
topic_facet | Oberflächenfeingestalt Maschinelles Oberflächenhämmern Materialermüdung Austenitischer Stahl Edelstahl Prozessführung Technik Hochschulschrift |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=032976191&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV023307578 |
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