Smst 2000 Proceedings Of The International Conference On Shape Memory And Superelastic Technologies
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SMST-2000 Proceedings of the International Conference on Shape Memory and Superelastic Technologies, 30 April to 4 May 2000, Asilomar Conference Center, Pacific Grove, California, USA
Author | : Scott M. Russell |
Publisher | : |
Total Pages | : |
Release | : 2001 |
Genre | : Electronic book |
ISBN | : |
Proceedings of SMST-94, the First International Conference on Shape Memory and Superelastic Technology
Author | : International Conference on Shape Memory and Superelastic Technologies |
Publisher | : |
Total Pages | : 527 |
Release | : 1994 |
Genre | : |
ISBN | : |
SMST-2007
Author | : Shuichi Miyazaki |
Publisher | : |
Total Pages | : 0 |
Release | : 2008 |
Genre | : Technology & Engineering |
ISBN | : 9780871707222 |
The SMST Conferences focus on real-world issues and applications of shape memory materials. This volume includes more than 75 edited technical papers and is an excellent reference on the latest technical advances, industrial applications, and current state-of-the-art in shape memory and superelastic technologies.
Shape Memory Alloy Actuators
Author | : Mohammad H. Elahinia |
Publisher | : John Wiley & Sons |
Total Pages | : 297 |
Release | : 2016-01-19 |
Genre | : Technology & Engineering |
ISBN | : 1118359445 |
This book provides a systematic approach to realizing NiTi shape memory alloy actuation, and is aimed at science and engineering students who would like to develop a better understanding of the behaviors of SMAs, and learn to design, simulate, control, and fabricate these actuators in a systematic approach. Several innovative biomedical applications of SMAs are discussed. These include orthopedic, rehabilitation, assistive, cardiovascular, and surgery devices and tools. To this end unique actuation mechanisms are discussed. These include antagonistic bi-stable shape memory-superelastic actuation, shape memory spring actuation, and multi axial tension-torsion actuation. These actuation mechanisms open new possibilities for creating adaptive structures and biomedical devices by using SMAs.