TY - GEN
T1 - Shape memory alloy driven two-way deformation structure design
AU - Yu, Dong
AU - Chen, Zhao Bo
AU - Zhang, Bo Ming
AU - Jiao, Ying Hou
AU - Jin, Long Xue
PY - 2013
Y1 - 2013
N2 - Shape memory alloy (SMA) is a type of smart material with huge driving force, and large driven displacement. Using SMA as the structure driver may force a bi-directional deformation structure that can achieve high efficiency and compact driving structure. SMA, together with elastic component, forms the two-way driving structure; however the two, if respectively serving as the driver, can enable the occurrence of the simplest bi-directional drivable structure. The offset structure constituted by SMA, not only can achieve two-way drive, and does not require continuous input of energy during the shape-stabilizing period. This paper studies the design methods of these two structures, gives the typical formulas, which makes possible efficient and compact bi-directional drivable structures.
AB - Shape memory alloy (SMA) is a type of smart material with huge driving force, and large driven displacement. Using SMA as the structure driver may force a bi-directional deformation structure that can achieve high efficiency and compact driving structure. SMA, together with elastic component, forms the two-way driving structure; however the two, if respectively serving as the driver, can enable the occurrence of the simplest bi-directional drivable structure. The offset structure constituted by SMA, not only can achieve two-way drive, and does not require continuous input of energy during the shape-stabilizing period. This paper studies the design methods of these two structures, gives the typical formulas, which makes possible efficient and compact bi-directional drivable structures.
KW - Offset structure of spring
KW - SMA self-offset structure
KW - Shape memory alloy
KW - Structure design
UR - https://www.scopus.com/pages/publications/84887481442
U2 - 10.4028/www.scientific.net/AMM.433-435.2129
DO - 10.4028/www.scientific.net/AMM.433-435.2129
M3 - 会议稿件
AN - SCOPUS:84887481442
SN - 9783037858943
T3 - Applied Mechanics and Materials
SP - 2129
EP - 2133
BT - Advances in Mechatronics and Control Engineering II
T2 - 2013 2nd International Conference on Mechatronics and Control Engineering, ICMCE 2013
Y2 - 28 August 2013 through 29 August 2013
ER -