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Modeling and experimental validation of the hysteretic dynamics of shape memory alloy springs


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Figure 1:

(A) SMA rod under torsion; (B) SMA spring under deformation.
(A) SMA rod under torsion; (B) SMA spring under deformation.

Figure 2:

(A) Recovery force of SMA spring; (B) observed hysteresis in simulation results.
(A) Recovery force of SMA spring; (B) observed hysteresis in simulation results.

Figure 3:

The experimental setup for testing SMA spring.
The experimental setup for testing SMA spring.

Figure 4:

Loadings and unloading at different temperatures and constant loading rate (A) before rescaling; (B) after rescaling.
Loadings and unloading at different temperatures and constant loading rate (A) before rescaling; (B) after rescaling.

Figure 5:

Comparison of numerical and experimental SMA spring responses at 50°C.
Comparison of numerical and experimental SMA spring responses at 50°C.

Figure 6:

Comparison of numerical and experimental SMA spring responses at (70°C).
Comparison of numerical and experimental SMA spring responses at (70°C).

Figure 7:

Comparison of numerical and experimental SMA spring responses at 90°C.
Comparison of numerical and experimental SMA spring responses at 90°C.

Figure 8:

Comparison of numerical and experimental SMA spring responses.
Comparison of numerical and experimental SMA spring responses.

Figure A1:

(A) the SMA spring sample; (B) the SMA spring heating chamber.
(A) the SMA spring sample; (B) the SMA spring heating chamber.
eISSN:
1178-5608
Język:
Angielski
Częstotliwość wydawania:
Volume Open
Dziedziny czasopisma:
Engineering, Introductions and Overviews, other