G0300-7-4 Experimental Research on Deformation Mechanism of Fe-28Mn-6Si-5Cr Shape Memory Alloy under Multi-axial Loading Condition

2010 ◽  
Vol 2010.1 (0) ◽  
pp. 237-238
Author(s):  
Asato NARUSAWA ◽  
Tadasi INABA ◽  
Takamasa YOSHIKAWA
Materials ◽  
2020 ◽  
Vol 13 (5) ◽  
pp. 1227 ◽  
Author(s):  
Chenkai Hong ◽  
Hui Qian ◽  
Gangbing Song

Superelastic shape memory alloy (SMA) exhibits the ability to undergo large deformations before reverting back to its undeformed shape following the removal of the load. This unique property underlies its great potential in the seismic design and retrofitting of structure members. In this paper, superelastic SMA wires were utilized to confine concrete cylinders to enhance their axial compressive behavior. The axial carrying and deformation capacities of SMA-confined concrete cylinders are assessed by uniaxial compression testing on a total of eight SMA-confined concrete columns and one unconfined column. The influence of the amount of SMA and the prestrain level of SMA wires, as well as the reinforcing mode, on the axial carrying and deformation capacity of confined concrete columns were considered. The analysis focuses on the axial carrying capacity and deformation performance of concrete columns reinforced with superelastic SMA under different loading conditions. Based on the experimental data and analysis results, it is found that superelastic SMA wires can increase the axial loading capacity and enhance deformation performance of concrete columns. Under the same loading condition, the ultimate bearing capacity of SMA-confined concrete columns increases as the increasing of the amount of SMA wire. The results of this study verify the effectiveness of superelastic SMA in enhancing the loading capacity and deformation behavior of concrete cylinders.


2018 ◽  
Vol 148 ◽  
pp. 12001
Author(s):  
Rafal Rusinek ◽  
Marcin Szymanski ◽  
Grzegorz Teresinski

The paper focuses on experimental research of a middle ear prosthesis made of shape memory alloy. The prosthesis provides better adjustment to individual patient than classical prosthesis. The shape memory prosthesis is implemented to a fresh temporal bone and vibrations of the round window are recorded by means of the Laser Doppler Vibrometer. Finally, the results are presented in the form of transfer function and compared to the intact and damaged middle ear.


Author(s):  
Rakesh P. Dhote ◽  
Roderick V. N. Melnik ◽  
Jean W. Zu

In this paper, we study the behavior of shape memory alloy (SMA) nanowires subjected to multi-axial loading. We use the model developed in our earlier work to study the microstructure and mechanical properties of finite length nanowires. The phase field model with the Ginzburg-Landau free energy is used to model the phase transformation based on the chosen order parameter. The governing equations of the thermo-mechanical model are solved simultaneously for different loading cases. We observe that nanowire behaves in a stiff manner to axial load with complete conversion of the unfavorable martensite to the favorable one. The bending load aids the phase transformation by redistributing the martensitic variants based on the local axial stress sign. The nanowire behavior to multi-axial (axial and bending together) is stiffer axially than the axial loading case. The understanding of the behavior of nanowire to multi-axial loading will be useful in developing better SMA-based MEMS and NEMS devices.


2004 ◽  
Vol 2004.6 (0) ◽  
pp. 279-280
Author(s):  
Tomohiro KATOH ◽  
Masataka TOKUDA ◽  
Tadashi INABA ◽  
Masakazu YAMAZAKI ◽  
Kazuhiro KITAMURA

2007 ◽  
Vol 2007.1 (0) ◽  
pp. 143-144 ◽  
Author(s):  
Tadashi INABA ◽  
Masataka TOKUDA ◽  
Atsuo HAYASHI ◽  
Noriyuki UEDA ◽  
Kazuhiro KITAMURA

2013 ◽  
Vol 2013.62 (0) ◽  
pp. 305-306
Author(s):  
Shinya Mizutani ◽  
Asato NARUSAWA ◽  
Takamasa YOSHIKAWA ◽  
Tadashi INABA

2013 ◽  
Vol 771 ◽  
pp. 203-208
Author(s):  
Yuan Gui Tang ◽  
Ai Qun Zhang

A kind of shape memory alloy (SMA) differential drive method and its experiment equipment can be used in swing joint of a micro amphibious robot is presented. According to its motion character, motion principle of the swing joint differential driven by SMA is analyzed. The basic thermodynamic performance of the SMA springs with different structural parameters is researched by experimentation. Aiming at the SMA differential actuator composed by SMA springs in different structural parameters, experimental research and analysis on the response ability of the SMA actuator is carried out in various driving condition and environment, which can be used to provide experimental base and data support for applying SMA drive technique in propulsive area of underwater vehicles.


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