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Pseudoelasticity of Shape Memory Alloys


Pseudoelasticity of Shape Memory Alloys
  • Author : Andrzej Ziolkowski
  • Publisher : Butterworth-Heinemann
  • Release : 2015-03-23
  • ISBN : 9780128018019
  • Language : En, Es, Fr & De
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Pseudoelasticity of Shape Memory Alloys: Theory and Experimental Studies is devoted to the phenomenon of pseudoelasticity (superelasticity) exhibited by shape memory alloy materials. It provides extensive introductory content on the state-of-the-art in the field, including SMA materials development, definition of shape memory effects, and discussions on where shape memory behavior is found in various engineering application areas. The book features a survey of modeling approaches targeted at reliable prediction of SMA materials’ behavior on different scales of observation, including atomistic, microscopic, mezoscopic, and macroscopic. Researchers and graduate students will find detailed information on the modern methodologies used in the process of building constitutive models of advanced materials exhibiting complex behavior. Introduces the phenomenon of pseudoelasticity exhibited by shape memory alloy materials Features a survey of modeling approaches targeted at reliable prediction of SMN materials' behavior on different scales of observation Provides extensive coverage of the state-of-the-art in the field Ideal reference for researchers and graduate students interested in the modern methodologies used in the process of building constitutive models of advanced materials

Shape Memory Materials


Shape Memory Materials
  • Author : Toshio Saburi
  • Publisher : Trans Tech Publications Ltd
  • Release : 2000-01-05
  • ISBN : 9783035705485
  • Language : En, Es, Fr & De
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Volume is indexed by Thomson Reuters CPCI-S (WoS). This book reviews recent developments in the field of shape memory materials, which are becoming more and more important as 'smart (intelligent)' materials. The fundamental principles and properties are discussed, as well as the associated experimental and processing methods. Special emphasis is placed on the present, and potential future, applications of SMMs. Superelastic wires are already being used for the antennae of cellular phones, and medical stents and guide wires promise to become big business as well. Rapid progress is also being made in fundamental aspects, such as the kinetics of martensitic transformations, premartensitic behavior, aging problems, thin-film SMA, etc. Moreover, new experimental techniques are becoming available: such as imaging plane, TEM with energy filter, AFM, grazing-angle x-ray reflection, etc.

Shape Memory Alloys Handbook


Shape Memory Alloys Handbook
  • Author : Christian Lexcellent
  • Publisher : John Wiley & Sons
  • Release : 2013-04-08
  • ISBN : 9781118577950
  • Language : En, Es, Fr & De
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The aim of this book is to understand and describe themartensitic phase transformation and the process of martensiteplatelet reorientation. These two key elements enable the author tointroduce the main features associated with the behavior ofshape-memory alloys (SMAs), i.e. the one-way shape-memory effect,pseudo-elasticity, training and recovery. Attention is paid in particular to the thermodynamical frame forsolid materials modeling at the macroscopic scale and itsapplications, as well as to the particular use of such alloys– the simplified calculations for the bending of bars andtheir torsion. Other chapters are devoted to key topics such as theuse of the “crystallographical theory of martensite”for SMA modeling, phenomenological and statistical investigationsof SMAs, magneto-thermo-mechanical behavior of magnetic SMAs andthe fracture mechanics of SMAs. Case studies are provided on thedimensioning of SMA elements offering the reader an additionaluseful framework on the subject. Contents 1. Some General Points about SMAs. 2. The World of Shape-memory Alloys. 3. Martensitic Transformation. 4. Thermodynamic Framework for the Modeling of SolidMaterials. 5. Use of the “CTM” to Model SMAs. 6. Phenomenological and Statistical Approaches for SMAs. 7. Macroscopic Models with Internal Variables. 8. Design of SMA Elements: Case Studies. 9. Behavior of Magnetic SMAs. 10. Fracture Mechanics of SMAs. 11. General Conclusion. Appendix 1. Intrinsic Properties of Rotation Matrices. Appendix 2. “Twinning Equation” Demonstration. Appendix 3. Calculation of the Parameters a, n and Q from the“Twinning” Equation. Appendix 4. “Twinned” Austenite/MartensiteEquation. About the Authors Christian Lexcellent is Emeritus Professor at the ÉcoleNational Supérieure de Mécanique et des Microtechniquesde Besançon and a researcher in the Department of AppliedMechanics at FEMTO-ST in France. He is a specialist in themechanics of materials and phase transition and has taught in thesubjects of mechanics of continuum media and shape memory alloys.He is also a member of the International Committee of ESOMAT.

European Symposium on Martensitic Transformations


European Symposium on Martensitic Transformations
  • Author : Sergey Prokoshkin
  • Publisher : Trans Tech Publications Ltd
  • Release : 2013-01-25
  • ISBN : 9783038139911
  • Language : En, Es, Fr & De
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ESOMAT 2012 Selected, peer reviewed papers from the 9th European Symposium on Martensitic Transformations ESOMAT 2012, September 9-16, 2012, Saint-Petersburg, Russia

Shape Memory Effects in Alloys


Shape Memory Effects in Alloys
  • Author : Jeff Perkins
  • Publisher : Springer Science & Business Media
  • Release : 2012-12-06
  • ISBN : 9781468422115
  • Language : En, Es, Fr & De
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The International Symposium on Shape Memory Effects and Appli cations was held at the University of Toronto on May 19-20, 1975, in four sessions over two days, as part of the regular 1975 Spring Meeting of The Metallurgical Society of AlME, sponsored by the Physical Metallurgy Committee of The Metallurgical Society. This was the first symposium on the subject, the only previous meeting at all related being the 1968 NOL Symposium on TiNi and Associated Compounds. One of the major intentions of this Symposium was to provide a forum for cross-communication between workers in the diverse metallurgical areas pertinent to shape memory effects, areas such as martensitic transformation, crystallography and thermodynamics, mechanical behavior, stress-induced transformation, lattice sta bility, and alloy development. Authors were encouraged to place an emphasis on delineation of general controlling factors and mech anisms, and on comparison of shape memory effect alloy systems with systems not exhibiting SME.