Pseudoelasticity of shape memory alloys: theory and experimental studies
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Amsterdam
Elsevier Butterworth-Heinemann
2015
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Schlagworte: | |
Online-Zugang: | Klappentext Inhaltsverzeichnis |
Beschreibung: | XX, 246 S. |
ISBN: | 9780128016978 |
Internformat
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Datensatz im Suchindex
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adam_text | Pseudoelasticity of
Shape Memory Alloys
Theory and Experimental Studies
Andrzej Ziółkowski
Department ol Mechanics of Materials. Institute of Fundamental Technological Research,
Polish Academy of Sciences. Warsaw, Poland
A shape memory alloy (also known as SMA. smart metal, memory metal, memory alloy,
muscle wire, or smart alloy) is an alloy that changes shape In response to an external
force such as heating or magnetism, Psotidoelastic or superelnstlc alloys belong to the
larger family of shape memory alloys but change their shape via the application of an
applied stress, such as a mechanical load, The ability of the material to revert back to Its
original shape when Ural stress is removed is known os pseudoelastlcity. Pseudoelastic
shape memory devices have applications in a number of industries. Current applications
include virtually indestructible eyeglass frames made from titanium-containing SMAs,
denial braces that use SMA technology to exert constant tooth-moving forces on the
teeth, and biomedical stents, to name |ust a low, Because of the promise that SMAs have
shown, research interest continues to grow and is taking place in materials science and
engineering and other R D fields around the world, This book will be of particular interest
to materials scientists and engineers, mechanical engineers, bioengineers, aerospace
engineers, and physical metallurgists.
Key features
• Introduces the phenomenon of pseudoelasticity exhibited by shape memory
alloy materials ..
• Features a survey of modeling approaches targeted at reliable prediction of
materials behavior on different scales of observation
• Provides extensive coverage of the stale of the art In the field
Related titles
Yamauchi et al. (eds), Shape Memory and Superelastic Alloys, 9781845697
Woodhead, April 2011 -ns
Yoneyoma Miyazaki (eds.). Shape Memory Alloys for Biomedical Applicatio
9781845693442. Woodhead. November 2008
Carpi et nl, (eds ), Dinlecthc Elastomers ns Electromechanical Transducers,
9780080474885. Elsevier Science. March 2008
Contents
About the author ix
Preface xi
hist of symbols xvii
Notation xxi
Abbreviations xxiii
1 Introduction 1
I I Shape memory effects and their technical significance I
1.2 Historical outlook on discovery of SMF in various metallic alloys 6
1.3 Scope and structure of‘the book 7
2 Shape memory effects in metallic alloys 11
2.1 Physical foundations of SMH effects—thermoelastic martensitic
transformation 11
2.2 Multiscale experimental investigation and modeling of martensitic
transformation and SMA materials behavior 17
2.3 SMA materials alloy systems, their characterization and properties 36
2.4 Fabrication and processing routes of SMA materials, TMTs 41
2.3 SMA materials application areas, functional and utility features 49
3 Family of thermodynamic R| models of pseudoelasticity 55
3.1 Introduction 55
3.2 Macroscopic, thermomechanical pseudoelastic behavior of SMA 57
3.3 Approaches towards modeling pscudoclasticity—hysteresis loops 74
3.4 Thermodynamic model of pscudoclasticity with SD-c fleet 77
4 Macroscopic free energy function of two-phase SMA material
macroelement-mcsoniechanical studies 95
4.1 Introduction 95
4.2 Mesomechanics of thermoelastic martensitic structures 97
4.3 Postulate of optimal rearrangement of niesoslrucUire 109
4.4 Summary M2
Annex 4.1 Principle of reciprocity in linear theory of elasticity
at presence of eigenstrains 113
Annex 4.2 The postulate of work compatibility—Hill’s postulate,
concept of effective properties 116
( oritcnls
VI
5 Experimental validation of Rj model assumptions for NiTi alloy 123
5.1 Introduction 123
5.2 Methodology of experimental studies on Nid i alloy submitted to
mulliaxia! stress states loadings 126
5.3 Experimental data processing for validation of theoretical
assumptions of the R| model 130
5.4 Procedure for identification of the R| model material parameters.
Comparison of modeling predictions with experimental evidence
lor Ni I i alloy 149
5.5 Summary 155
6 Kinetics models of tliermoelastic martensitic phase
transformation 157
6.1 Introduction 157
6.2 d ransformation kinetics relations—thermodynamic foundations 161
6.3 Parameters identification methodology of phase transition kinetics
rules 164
6.4 Experimental prof iles of rates of tliermoelastic martensitic
transformation stress induced in polycrystalline Ni l i alloy 168
6.5 Summary 177
7 Thermodynamic model of SMA pseudoelasticity based on
multiplicative decomposition of deformation gradient tensor 179
7.1 Introduction 179
7.2 Kinematic relations at finite deformations 181
7.3 Strain measures at finite deformations 184
7.4 Work conjugate stress measures 186
7.5 liquations of state—elastically isotropic SMA materials 189
7.6 Rate equations of state 190
7.7 Work dissipation 194
7.8 Special linear elastic model of pseudoelasticily of shape memory
alloys 195
7.9 Field equations of finite deformations thermomechanics 205
7.10 Summary 210
Annex 7.1 Relations between Lagrangean iocl Hitlerian iovi and
relative elastic spins 211
Annex 7.2 Kinematical relations between lt(0) ► l)L ¿c(0) dL 214
Annex 7.3 Kinematical relations between ec(0) ( } rfc, tensor
r£tJc and its properties, elastic logarithmic corotational
derivative ?c(0) * 215
Family of isoclinic natural configurations—oiin — 0 218
Annex 7.4
( onk Mts
vii
S Siimnniry and future trends 225
S.l Summary and future trends 225
References 233
Index 243
To view supplementary materials online, please visit: http://booksite.elsevier.eom/
7801 2X016978/
|
any_adam_object | 1 |
author | Ziółkowski, Andrzej |
author_GND | (DE-588)1232244015 |
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dewey-tens | 620 - Engineering and allied operations |
discipline | Physik Werkstoffwissenschaften / Fertigungstechnik |
format | Book |
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spelling | Ziółkowski, Andrzej Verfasser (DE-588)1232244015 aut Pseudoelasticity of shape memory alloys theory and experimental studies Andrzej Ziółkowski Amsterdam Elsevier Butterworth-Heinemann 2015 XX, 246 S. txt rdacontent n rdamedia nc rdacarrier Shape memory alloys / Elastic properties Pseudoelastizität (DE-588)4313772-6 gnd rswk-swf Memory-Legierung (DE-588)4120726-9 gnd rswk-swf Memory-Legierung (DE-588)4120726-9 s Pseudoelastizität (DE-588)4313772-6 s DE-604 Digitalisierung UB Bayreuth - ADAM Catalogue Enrichment application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=028152715&sequence=000003&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Klappentext Digitalisierung UB Bayreuth - ADAM Catalogue Enrichment application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=028152715&sequence=000004&line_number=0002&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Ziółkowski, Andrzej Pseudoelasticity of shape memory alloys theory and experimental studies Shape memory alloys / Elastic properties Pseudoelastizität (DE-588)4313772-6 gnd Memory-Legierung (DE-588)4120726-9 gnd |
subject_GND | (DE-588)4313772-6 (DE-588)4120726-9 |
title | Pseudoelasticity of shape memory alloys theory and experimental studies |
title_auth | Pseudoelasticity of shape memory alloys theory and experimental studies |
title_exact_search | Pseudoelasticity of shape memory alloys theory and experimental studies |
title_full | Pseudoelasticity of shape memory alloys theory and experimental studies Andrzej Ziółkowski |
title_fullStr | Pseudoelasticity of shape memory alloys theory and experimental studies Andrzej Ziółkowski |
title_full_unstemmed | Pseudoelasticity of shape memory alloys theory and experimental studies Andrzej Ziółkowski |
title_short | Pseudoelasticity of shape memory alloys |
title_sort | pseudoelasticity of shape memory alloys theory and experimental studies |
title_sub | theory and experimental studies |
topic | Shape memory alloys / Elastic properties Pseudoelastizität (DE-588)4313772-6 gnd Memory-Legierung (DE-588)4120726-9 gnd |
topic_facet | Shape memory alloys / Elastic properties Pseudoelastizität Memory-Legierung |
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