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A thermodynamically based model of the superelastic behavior of shape memory alloys using a discrete Preisach model
Published in
2009
Volume: 1
   
Pages: 277 - 282
Abstract
Shape Memory Alloys are increasingly being used in aeronautic [1], vibration control and seismic applications [2-6]. These applications require models that faithfully represent the full thermomechanical response of SMA wires but which at the same time are simple and fast to implement. In this paper we present a model for the superelastic behavior of Shape Memory Alloys that combines a thermodynamical framework with a Preisach model. This approach allows us to easily account for both stress and strain controlled responses as well as changes in termperature in a simple and straightforward way. Copyright © 2009 by ASME.
About the journal
JournalProceedings of the ASME Conference on Smart Materials, Adaptive Structures and Intelligent Systems 2009, SMASIS2009
Open AccessNo
Concepts (12)
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    CONTROLLED RESPONSE
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    PREISACH MODEL
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    SEISMIC APPLICATION
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    Shape memory alloy
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    SMA WIRE
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    Stress and strain
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    SUPER ELASTIC BEHAVIOR
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    Thermo-mechanical
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    Intelligent materials
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    Intelligent systems
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    Shape memory effect
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    Alloys