Adaptronics – smart structures and materials:
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
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Springer
[2021]
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Online-Zugang: | Inhaltstext http://www.springer.com/ Inhaltsverzeichnis |
Beschreibung: | xxiv, 455 Seiten Illustrationen, Diagramme 23.5 cm x 15.5 cm |
ISBN: | 9783662613986 |
Internformat
MARC
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024 | 3 | |a 9783662613986 | |
028 | 5 | 2 | |a Bestellnummer: 89069415 |
028 | 5 | 2 | |a Bestellnummer: 978-3-662-61398-6 |
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084 | |a ZQ 5260 |0 (DE-625)158126: |2 rvk | ||
084 | |a 621.3 |2 sdnb | ||
100 | 1 | |a Sinapius, Michael |d 1955- |e Verfasser |0 (DE-588)172810671 |4 aut | |
245 | 1 | 0 | |a Adaptronics – smart structures and materials |c Johannes Michael Sinapius |
264 | 1 | |a Berlin |b Springer |c [2021] | |
300 | |a xxiv, 455 Seiten |b Illustrationen, Diagramme |c 23.5 cm x 15.5 cm | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
650 | 0 | 7 | |a Funktionswerkstoff |0 (DE-588)4841224-7 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Adaptronik |0 (DE-588)4473681-2 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Intelligenter Werkstoff |0 (DE-588)4274825-2 |2 gnd |9 rswk-swf |
653 | |a adaptive materials | ||
653 | |a adaptive systems | ||
653 | |a adaptronik | ||
653 | |a funktionselemente | ||
653 | |a funktionselemente buch | ||
653 | |a funktionswerkstoffe | ||
653 | |a intelligent materials | ||
653 | |a intelligent structures | ||
653 | |a intelligente materialien | ||
653 | |a smart materials | ||
653 | |a smart structures | ||
653 | |a vibrationskontrolle | ||
653 | |a vibroakustik | ||
689 | 0 | 0 | |a Intelligenter Werkstoff |0 (DE-588)4274825-2 |D s |
689 | 0 | 1 | |a Adaptronik |0 (DE-588)4473681-2 |D s |
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Datensatz im Suchindex
_version_ | 1817968144439836672 |
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adam_text |
CONTENTS
1
INTRODUCTION
.
1
JOHANNES
MICHAEL
SINAPIUS
REFERENCES
.
5
2
PRINCIPLES
OF
ADAPTRONICS
.
7
JOHANNES
MICHAEL
SINAPIUS
2.1
INTRODUCTORY
EXAMPLES
OF
ADAPTRONIC
SYSTEMS
.
7
2.2
ELEMENTS
OF
ADAPTRONICS
.
11
2.3
VARIANTS
OF
ADAPTIVE
SYSTEMS
.
11
2.4
COMPONENTS
OF
ADAPTIVE
SYSTEMS
.
14
2.5
SUMMARY
.
15
REFERENCES
.
15
3
FUNCTIONAL
MATERIALS
.
17
JOHANNES
MICHAEL
SINAPIUS
AND
SEBASTIAN
GEIER
3.1
CLASSIFICATION
OF
FUNCTIONAL
MATERIALS
.
17
3.2
FEATURES
OF
FUNCTIONAL
MATERIALS
.
19
3.3
ELECTROMECHANICAL
CONVERTERS
.
26
3.3.1
PIEZOELECTRIC
CERAMICS
.
28
3.3.2
ELECTROACTIVE
POLYMERS
.
64
3.4
THERMOMECHANICAL
CONVERTERS
.
73
3.4.1
SHAPE
MEMORY
ALLOYS
.
73
3.4.2
SHAPE
MEMORY
POLYMERS
.
82
3.5
RESEARCH
PROJECT
.
84
3.5.1
ACTUATORS
BASED
ON
NANOSCALE
CARBON
TUBES
.
84
3.6
SUMMARY
.
115
REFERENCES
.
115
4
ADAPTRONIC
FUNCTIONAL
ELEMENTS
.
121
JOHANNES
MICHAEL
SINAPIUS
AND
THOMAS
GRIES
4.1
PIEZO
COMPOSITES
.
121
4.1.1
0-3
PIEZO
COMPOSITES
.
125
4.1.2
1-3
PIEZO
COMPOSITES
.
125
4.1.3
1-2
PIEZO
COMPOSITE
.
128
XI
XII
CONTENTS
4.1.4
2-2
PIEZO
COMPOSITES
.
129
4.1.5
USE
OF
RESIDUAL
STRESSES
IN
PIEZO
COMPOSITES
.
130
4.1.6
COMPARATIVE
CONSIDERATION
OF
THE
DESIGNS
OF
PIEZO
COMPOSITES
.
133
4.2
STROKE
AMPLIFYING
ACTUATORS
.
134
4.3
ACTUATORS
OF
DIELECTRIC
ELASTOMERS
.
143
4.4
RESEARCH
PROJECT
.
144
4.4.1
RADIAL-SENSORY
PVDF
FIBERS
.
144
4.5
SUMMARY
.
151
REFERENCES
.
152
5
ACTIVE
SHAPE
CONTROL
.
155
JOHANNES
MICHAEL
SINAPIUS,
CHRISTIAN
HUHNE,
HOSSEIN
SADRI
AND
JOHANNES
RIEMENSCHNEIDER
5.1
OBJECTIVES
OF
ACTIVE
SHAPE
CONTROL
.
156
5.2
INTEGRATION
OF
FUNCTIONAL
ELEMENTS
INTO
COMPONENTS
.
156
5.3
ACTIVATABLE
FIBER
COMPOSITES
.
162
5.3.1
USE
OF
DEFORMATION
COUPLING
.
176
5.3.2
EFFECT
OF
INTEGRATION
ON
STIFFNESS
AND
STRENGTH
.
184
5.4
SELECTIVELY
DEFORMABLE
LIGHTWEIGHT
STRUCTURES
.
185
5.5
RESEARCH
PROJECTS
.
189
5.5.1
CELLULAR
STRUCTURES
ACTUATED
BY
INTERNAL
PRESSURE
AND
VARIABLE
IN
SHAPE
.
189
5.5.2
MORPHING
LEADING
EDGE
.
204
5.5.3
ADAPTIVE
FOIL
BEARINGS
.
211
5.6
SUMMARY
.
223
REFERENCES
.
223
6
ACTIVE
VIBRATION
CONTROL
.
227
JOHANNES
MICHAEL
SINAPIUS,
BJORN
TIMO
KLETZ
AND
STEFFEN
OPITZ
6.1
OBJECTIVES
OF
ACTIVE
VIBRATION
CONTROL
.
228
6.2
BASICS
OF
ACTIVE
VIBRATION
CONTROL
.
228
6.2.1
WAVE
PROPAGATION
IN
SOLIDS
.
229
6.2.2
STRUCTURE-BORNE
SOUND
INTERFERENCE
.
236
6.2.3
STANDING
WAVES
.
239
6.2.4
DAMPING
.
247
6.2.5
INFLUENCE
OF
INTEGRATED
FUNCTIONAL
ELEMENTS
.
249
6.2.6
RESPONSE
BEHAVIOR
.
252
6.2.7
LOCAL
AND
LOCALLY
DISTRIBUTED
DESTRUCTIVE
INTERFERENCE
.
.
.
260
6.2.8
DISCRETISED
DESCRIPTION
OF
THE
VIBRATIONS
OF
CONTINUOUS
STRUCTURES
.
262
CONTENTS
XIII
6.3
STRUCTURAL
DYNAMIC
IDENTIFICATION
OF
ACTIVATABLE
STRUCTURES
.
269
6.3.1
SINGLE-DEGREE
OF
FREEDOM
METHODS
.
271
6.3.2
MULTIPLE-DEGREE
OF
FREEDOM
METHODS
.
278
6.4
VARIANTS
OF
ACTIVE
VIBRATION
CONTROL
.
283
6.4.1
LOCAL
VIBRATION
SUPPRESSION
.
283
6.4.2
GLOBAL
VIBRATION
SUPPRESSION
.
286
6.4.3
VIBRATION
ISOLATION
.
289
6.4.4
ACTIVE
SKYHOOK-ISOLATION
.
292
6.4.5
ADAPTIVE
ABSORBER
.
294
6.4.6
ELECTROMECHANICAL
ABSORBER
NETWORKS
.
299
6.5
RESEARCH
PROJECTS
.
309
6.5.1
ACTIVE
VIBRATION
REDUCTION
IN
FORCE-
AND
BASE-EXCITED
STRUCTURES
.
310
6.5.2
ACTIVE
VIBRATION
REDUCTION
IN
PARALLEL
ROBOTICS
.
318
6.5.3
ACTIVE
TWIST
ROTOR
BLADE
.
321
6.6
SUMMARY
.
327
REFERENCES
.
327
7
CONTROL
OF
ADAPTIVE
STRUCTURES
.
331
JOHANNES
MICHAEL
SINAPIUS
AND
STEPHAN
ALGERMISSEN
7.1
PREVIEWS
AND
GOALS
.
331
7.2
BASIC
CONTROL
STRATEGIES
.
334
7.2.1
FEEDBACK
CONTROL
.
334
7.2.2
FEEDFORWARD
CONTROL
.
336
7.2.3
CONTROL
SIGNALS
FROM
DIGITAL
FILTERING
.
337
7.2.4
OPTIMAL
CONTROL
.
338
7.2.5
HYBRID
CONTROL
.
342
7.2.6
ADAPTIVE
CONTROL
.
343
7.3
RESEARCH
PROJECTS
.
344
7.3.1
ACTIVE
VIBRATION
REDUCTION
IN
STRUCTURES
WITH
CHANGING
VIBRATION
PROPERTIES
.
344
7.4
SUMMARY
.
351
REFERENCES
.
352
8
ACTIVE
SOUND
CONTROL
.
355
JOHANNES
MICHAEL
SINAPIUS
AND
MALTE
MISOL
8.1
OBJECTIVES
OF
ACTIVE
ACOUSTIC
CONTROL
.
355
8.2
BASICS
OF
ACTIVE
SOUND
CONTROL
.
357
8.2.1
AWARENESS
OF
SOUND
.
357
8.2.2
SOUND
FIELD
DESCRIPTION
.
360
8.2.3
SOUND
INTERFERENCE
.
370
8.2.4
SOUND
RADIATION
FROM
ELEMENTARY
SOURCES
.
372
8.2.5
SOUND
RADIATION
OF
DISKS
.
381
8.2.6
SOUND
PROPAGATION
IN
CLOSED
SPACES
(CAVITIES)
.
397
XIV
CONTENTS
8.3
VARIANTS
OF
ACTIVE
SOUND
CONTROL
.
408
8.3.1
ACTIVE
REDUCTION
OF
SOUND
PRESSURE
*
ACTIVE
NOISE
CONTROL
.
409
8.3.2
ACTIVE
VIBRATION
CONTROL
.
411
8.3.3
ACTIVE
STRUCTURAL
ACOUSTIC
CONTROL
.
411
8.4
RESEARCH
PROJECT
.
415
8.4.1
INFLUENCING
THE
SOUND
TRANSMISSION
THROUGH
AIRCRAFT
FUSELAGE
PANELS
WITH
ACTIVE
CONTROL
.
415
8.5
SUMMARY
.
423
REFERENCES
.
424
9
INTEGRATED
STRUCTURAL
HEALTH
MONITORING
.
425
JOHANNES
MICHAEL
SINAPIUS
AND
FLORIAN
RADDATZ
9.1
OBJECTIVES
OF
AN
INTEGRATED
STRUCTURAL
HEALTH
MONITORING
.
425
9.2
MODAL
METHOD
OF
STRUCTURAL
HEALTH
MONITORING
.
427
9.3
INTEGRATED
STRUCTURAL
HEALTH
MONITORING
THROUGH
GUIDED
ULTRASONIC
WAVE
ANALYSIS
.
431
9.4
RESEARCH
PROJECT
.
438
9.4.1
LOCALIZATION
OF
DAMAGES
IN
COMPLEX
FIBER
COMPOSITE
STRUCTURES
.
438
9.5
SUMMARY
.
447
REFERENCES
.
447
INDEX
.
449 |
adam_txt |
CONTENTS
1
INTRODUCTION
.
1
JOHANNES
MICHAEL
SINAPIUS
REFERENCES
.
5
2
PRINCIPLES
OF
ADAPTRONICS
.
7
JOHANNES
MICHAEL
SINAPIUS
2.1
INTRODUCTORY
EXAMPLES
OF
ADAPTRONIC
SYSTEMS
.
7
2.2
ELEMENTS
OF
ADAPTRONICS
.
11
2.3
VARIANTS
OF
ADAPTIVE
SYSTEMS
.
11
2.4
COMPONENTS
OF
ADAPTIVE
SYSTEMS
.
14
2.5
SUMMARY
.
15
REFERENCES
.
15
3
FUNCTIONAL
MATERIALS
.
17
JOHANNES
MICHAEL
SINAPIUS
AND
SEBASTIAN
GEIER
3.1
CLASSIFICATION
OF
FUNCTIONAL
MATERIALS
.
17
3.2
FEATURES
OF
FUNCTIONAL
MATERIALS
.
19
3.3
ELECTROMECHANICAL
CONVERTERS
.
26
3.3.1
PIEZOELECTRIC
CERAMICS
.
28
3.3.2
ELECTROACTIVE
POLYMERS
.
64
3.4
THERMOMECHANICAL
CONVERTERS
.
73
3.4.1
SHAPE
MEMORY
ALLOYS
.
73
3.4.2
SHAPE
MEMORY
POLYMERS
.
82
3.5
RESEARCH
PROJECT
.
84
3.5.1
ACTUATORS
BASED
ON
NANOSCALE
CARBON
TUBES
.
84
3.6
SUMMARY
.
115
REFERENCES
.
115
4
ADAPTRONIC
FUNCTIONAL
ELEMENTS
.
121
JOHANNES
MICHAEL
SINAPIUS
AND
THOMAS
GRIES
4.1
PIEZO
COMPOSITES
.
121
4.1.1
0-3
PIEZO
COMPOSITES
.
125
4.1.2
1-3
PIEZO
COMPOSITES
.
125
4.1.3
1-2
PIEZO
COMPOSITE
.
128
XI
XII
CONTENTS
4.1.4
2-2
PIEZO
COMPOSITES
.
129
4.1.5
USE
OF
RESIDUAL
STRESSES
IN
PIEZO
COMPOSITES
.
130
4.1.6
COMPARATIVE
CONSIDERATION
OF
THE
DESIGNS
OF
PIEZO
COMPOSITES
.
133
4.2
STROKE
AMPLIFYING
ACTUATORS
.
134
4.3
ACTUATORS
OF
DIELECTRIC
ELASTOMERS
.
143
4.4
RESEARCH
PROJECT
.
144
4.4.1
RADIAL-SENSORY
PVDF
FIBERS
.
144
4.5
SUMMARY
.
151
REFERENCES
.
152
5
ACTIVE
SHAPE
CONTROL
.
155
JOHANNES
MICHAEL
SINAPIUS,
CHRISTIAN
HUHNE,
HOSSEIN
SADRI
AND
JOHANNES
RIEMENSCHNEIDER
5.1
OBJECTIVES
OF
ACTIVE
SHAPE
CONTROL
.
156
5.2
INTEGRATION
OF
FUNCTIONAL
ELEMENTS
INTO
COMPONENTS
.
156
5.3
ACTIVATABLE
FIBER
COMPOSITES
.
162
5.3.1
USE
OF
DEFORMATION
COUPLING
.
176
5.3.2
EFFECT
OF
INTEGRATION
ON
STIFFNESS
AND
STRENGTH
.
184
5.4
SELECTIVELY
DEFORMABLE
LIGHTWEIGHT
STRUCTURES
.
185
5.5
RESEARCH
PROJECTS
.
189
5.5.1
CELLULAR
STRUCTURES
ACTUATED
BY
INTERNAL
PRESSURE
AND
VARIABLE
IN
SHAPE
.
189
5.5.2
MORPHING
LEADING
EDGE
.
204
5.5.3
ADAPTIVE
FOIL
BEARINGS
.
211
5.6
SUMMARY
.
223
REFERENCES
.
223
6
ACTIVE
VIBRATION
CONTROL
.
227
JOHANNES
MICHAEL
SINAPIUS,
BJORN
TIMO
KLETZ
AND
STEFFEN
OPITZ
6.1
OBJECTIVES
OF
ACTIVE
VIBRATION
CONTROL
.
228
6.2
BASICS
OF
ACTIVE
VIBRATION
CONTROL
.
228
6.2.1
WAVE
PROPAGATION
IN
SOLIDS
.
229
6.2.2
STRUCTURE-BORNE
SOUND
INTERFERENCE
.
236
6.2.3
STANDING
WAVES
.
239
6.2.4
DAMPING
.
247
6.2.5
INFLUENCE
OF
INTEGRATED
FUNCTIONAL
ELEMENTS
.
249
6.2.6
RESPONSE
BEHAVIOR
.
252
6.2.7
LOCAL
AND
LOCALLY
DISTRIBUTED
DESTRUCTIVE
INTERFERENCE
.
.
.
260
6.2.8
DISCRETISED
DESCRIPTION
OF
THE
VIBRATIONS
OF
CONTINUOUS
STRUCTURES
.
262
CONTENTS
XIII
6.3
STRUCTURAL
DYNAMIC
IDENTIFICATION
OF
ACTIVATABLE
STRUCTURES
.
269
6.3.1
SINGLE-DEGREE
OF
FREEDOM
METHODS
.
271
6.3.2
MULTIPLE-DEGREE
OF
FREEDOM
METHODS
.
278
6.4
VARIANTS
OF
ACTIVE
VIBRATION
CONTROL
.
283
6.4.1
LOCAL
VIBRATION
SUPPRESSION
.
283
6.4.2
GLOBAL
VIBRATION
SUPPRESSION
.
286
6.4.3
VIBRATION
ISOLATION
.
289
6.4.4
ACTIVE
SKYHOOK-ISOLATION
.
292
6.4.5
ADAPTIVE
ABSORBER
.
294
6.4.6
ELECTROMECHANICAL
ABSORBER
NETWORKS
.
299
6.5
RESEARCH
PROJECTS
.
309
6.5.1
ACTIVE
VIBRATION
REDUCTION
IN
FORCE-
AND
BASE-EXCITED
STRUCTURES
.
310
6.5.2
ACTIVE
VIBRATION
REDUCTION
IN
PARALLEL
ROBOTICS
.
318
6.5.3
ACTIVE
TWIST
ROTOR
BLADE
.
321
6.6
SUMMARY
.
327
REFERENCES
.
327
7
CONTROL
OF
ADAPTIVE
STRUCTURES
.
331
JOHANNES
MICHAEL
SINAPIUS
AND
STEPHAN
ALGERMISSEN
7.1
PREVIEWS
AND
GOALS
.
331
7.2
BASIC
CONTROL
STRATEGIES
.
334
7.2.1
FEEDBACK
CONTROL
.
334
7.2.2
FEEDFORWARD
CONTROL
.
336
7.2.3
CONTROL
SIGNALS
FROM
DIGITAL
FILTERING
.
337
7.2.4
OPTIMAL
CONTROL
.
338
7.2.5
HYBRID
CONTROL
.
342
7.2.6
ADAPTIVE
CONTROL
.
343
7.3
RESEARCH
PROJECTS
.
344
7.3.1
ACTIVE
VIBRATION
REDUCTION
IN
STRUCTURES
WITH
CHANGING
VIBRATION
PROPERTIES
.
344
7.4
SUMMARY
.
351
REFERENCES
.
352
8
ACTIVE
SOUND
CONTROL
.
355
JOHANNES
MICHAEL
SINAPIUS
AND
MALTE
MISOL
8.1
OBJECTIVES
OF
ACTIVE
ACOUSTIC
CONTROL
.
355
8.2
BASICS
OF
ACTIVE
SOUND
CONTROL
.
357
8.2.1
AWARENESS
OF
SOUND
.
357
8.2.2
SOUND
FIELD
DESCRIPTION
.
360
8.2.3
SOUND
INTERFERENCE
.
370
8.2.4
SOUND
RADIATION
FROM
ELEMENTARY
SOURCES
.
372
8.2.5
SOUND
RADIATION
OF
DISKS
.
381
8.2.6
SOUND
PROPAGATION
IN
CLOSED
SPACES
(CAVITIES)
.
397
XIV
CONTENTS
8.3
VARIANTS
OF
ACTIVE
SOUND
CONTROL
.
408
8.3.1
ACTIVE
REDUCTION
OF
SOUND
PRESSURE
*
ACTIVE
NOISE
CONTROL
.
409
8.3.2
ACTIVE
VIBRATION
CONTROL
.
411
8.3.3
ACTIVE
STRUCTURAL
ACOUSTIC
CONTROL
.
411
8.4
RESEARCH
PROJECT
.
415
8.4.1
INFLUENCING
THE
SOUND
TRANSMISSION
THROUGH
AIRCRAFT
FUSELAGE
PANELS
WITH
ACTIVE
CONTROL
.
415
8.5
SUMMARY
.
423
REFERENCES
.
424
9
INTEGRATED
STRUCTURAL
HEALTH
MONITORING
.
425
JOHANNES
MICHAEL
SINAPIUS
AND
FLORIAN
RADDATZ
9.1
OBJECTIVES
OF
AN
INTEGRATED
STRUCTURAL
HEALTH
MONITORING
.
425
9.2
MODAL
METHOD
OF
STRUCTURAL
HEALTH
MONITORING
.
427
9.3
INTEGRATED
STRUCTURAL
HEALTH
MONITORING
THROUGH
GUIDED
ULTRASONIC
WAVE
ANALYSIS
.
431
9.4
RESEARCH
PROJECT
.
438
9.4.1
LOCALIZATION
OF
DAMAGES
IN
COMPLEX
FIBER
COMPOSITE
STRUCTURES
.
438
9.5
SUMMARY
.
447
REFERENCES
.
447
INDEX
.
449 |
any_adam_object | 1 |
any_adam_object_boolean | 1 |
author | Sinapius, Michael 1955- |
author_GND | (DE-588)172810671 |
author_facet | Sinapius, Michael 1955- |
author_role | aut |
author_sort | Sinapius, Michael 1955- |
author_variant | m s ms |
building | Verbundindex |
bvnumber | BV046883608 |
classification_rvk | ZQ 5260 |
ctrlnum | (OCoLC)1199067433 (DE-599)DNB1205484787 |
discipline | Elektrotechnik / Elektronik / Nachrichtentechnik Mess-/Steuerungs-/Regelungs-/Automatisierungstechnik / Mechatronik |
discipline_str_mv | Elektrotechnik / Elektronik / Nachrichtentechnik Mess-/Steuerungs-/Regelungs-/Automatisierungstechnik / Mechatronik |
format | Book |
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id | DE-604.BV046883608 |
illustrated | Illustrated |
index_date | 2024-07-03T15:18:53Z |
indexdate | 2024-12-09T13:05:25Z |
institution | BVB |
institution_GND | (DE-588)1065168780 |
isbn | 9783662613986 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-032293559 |
oclc_num | 1199067433 |
open_access_boolean | |
owner | DE-29T DE-703 |
owner_facet | DE-29T DE-703 |
physical | xxiv, 455 Seiten Illustrationen, Diagramme 23.5 cm x 15.5 cm |
publishDate | 2021 |
publishDateSearch | 2021 |
publishDateSort | 2021 |
publisher | Springer |
record_format | marc |
spelling | Sinapius, Michael 1955- Verfasser (DE-588)172810671 aut Adaptronics – smart structures and materials Johannes Michael Sinapius Berlin Springer [2021] xxiv, 455 Seiten Illustrationen, Diagramme 23.5 cm x 15.5 cm txt rdacontent n rdamedia nc rdacarrier Funktionswerkstoff (DE-588)4841224-7 gnd rswk-swf Adaptronik (DE-588)4473681-2 gnd rswk-swf Intelligenter Werkstoff (DE-588)4274825-2 gnd rswk-swf adaptive materials adaptive systems adaptronik funktionselemente funktionselemente buch funktionswerkstoffe intelligent materials intelligent structures intelligente materialien smart materials smart structures vibrationskontrolle vibroakustik Intelligenter Werkstoff (DE-588)4274825-2 s Adaptronik (DE-588)4473681-2 s Funktionswerkstoff (DE-588)4841224-7 s DE-604 Springer-Verlag GmbH (DE-588)1065168780 pbl Erscheint auch als Online-Ausgabe 978-3-662-61399-3 X:MVB text/html http://deposit.dnb.de/cgi-bin/dokserv?id=55aa32f299cf48898fc7725cba39f265&prov=M&dok_var=1&dok_ext=htm Inhaltstext X:MVB http://www.springer.com/ DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=032293559&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Sinapius, Michael 1955- Adaptronics – smart structures and materials Funktionswerkstoff (DE-588)4841224-7 gnd Adaptronik (DE-588)4473681-2 gnd Intelligenter Werkstoff (DE-588)4274825-2 gnd |
subject_GND | (DE-588)4841224-7 (DE-588)4473681-2 (DE-588)4274825-2 |
title | Adaptronics – smart structures and materials |
title_auth | Adaptronics – smart structures and materials |
title_exact_search | Adaptronics – smart structures and materials |
title_exact_search_txtP | Adaptronics – smart structures and materials |
title_full | Adaptronics – smart structures and materials Johannes Michael Sinapius |
title_fullStr | Adaptronics – smart structures and materials Johannes Michael Sinapius |
title_full_unstemmed | Adaptronics – smart structures and materials Johannes Michael Sinapius |
title_short | Adaptronics – smart structures and materials |
title_sort | adaptronics smart structures and materials |
topic | Funktionswerkstoff (DE-588)4841224-7 gnd Adaptronik (DE-588)4473681-2 gnd Intelligenter Werkstoff (DE-588)4274825-2 gnd |
topic_facet | Funktionswerkstoff Adaptronik Intelligenter Werkstoff |
url | http://deposit.dnb.de/cgi-bin/dokserv?id=55aa32f299cf48898fc7725cba39f265&prov=M&dok_var=1&dok_ext=htm http://www.springer.com/ http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=032293559&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT sinapiusmichael adaptronicssmartstructuresandmaterials AT springerverlaggmbh adaptronicssmartstructuresandmaterials |