Shape memory alloys : modeling and engineering applications
This book provides a working knowledge of the modeling and applications of shape memory alloys (SMAs) to practicing engineers and graduate and advanced undergraduate students with an interest in the behavior and utility of active or multifunctional materials and "smart" structures. SMAs r...
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oai:112.137.131.14:VNU_123-298232020-06-21T04:42:12Z Shape memory alloys : modeling and engineering applications Lagoudas, Dimitris C. Chemistry Materials Science ; Shape memory alloys. 620.1632 This book provides a working knowledge of the modeling and applications of shape memory alloys (SMAs) to practicing engineers and graduate and advanced undergraduate students with an interest in the behavior and utility of active or multifunctional materials and "smart" structures. SMAs represent a unique material class with the ability to recover seemingly permanent deformations and provide large forces upon heating. These interesting characteristics have led to an ever-expanding variety of engineering applications which address design problems requiring high force actuation in a confined environment. Such applications range from morphing aerospace structures to medical stents and other biomedical devices. 2017-04-17T07:23:21Z 2017-04-17T07:23:21Z 2008 Book 978-0-387-47684-1 http://repository.vnu.edu.vn/handle/VNU_123/29823 en 446 p. application/pdf Springer |
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Chemistry Materials Science ; Shape memory alloys. 620.1632 |
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Chemistry Materials Science ; Shape memory alloys. 620.1632 Shape memory alloys : modeling and engineering applications |
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This book provides a working knowledge of the modeling and applications of shape memory alloys (SMAs) to practicing engineers and graduate and advanced undergraduate students with an interest in the behavior and utility of active or multifunctional materials and "smart" structures. SMAs represent a unique material class with the ability to recover seemingly permanent deformations and provide large forces upon heating. These interesting characteristics have led to an ever-expanding variety of engineering applications which address design problems requiring high force actuation in a confined environment. Such applications range from morphing aerospace structures to medical stents and other biomedical devices. |
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Lagoudas, Dimitris C. |
author_facet |
Lagoudas, Dimitris C. |
format |
Book |
title |
Shape memory alloys : modeling and engineering applications |
title_short |
Shape memory alloys : modeling and engineering applications |
title_full |
Shape memory alloys : modeling and engineering applications |
title_fullStr |
Shape memory alloys : modeling and engineering applications |
title_full_unstemmed |
Shape memory alloys : modeling and engineering applications |
title_sort |
shape memory alloys : modeling and engineering applications |
publisher |
Springer |
publishDate |
2017 |
url |
http://repository.vnu.edu.vn/handle/VNU_123/29823 |
_version_ |
1680963453333798912 |