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The SMA models are developed and included in a finite element simulation environment (ANSYS).
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The calculations presented here are a first step towards the finite element simulation of stress corrosion cracking of stainless steel in an aqueous nuclear environment.
In this work, finite element simulation has been applied in frequency-domain and time-domain analyses for a packaged accelerometer used in high-G environments.
Figure 2 Finite element simulation.
A formation mechanism supported by finite element simulation is proposed.
The solid line is obtained from a finite element simulation.
The finite element simulation includes the following constitutive relationships for pile, surrounding soil and interface element.
A three-dimensional finite element simulation was also conducted.
Finite element simulation results confirm the theoretical formulation data.
Further, the experimental results were supplemented by finite element simulation.
This approximation was validated via a finite element simulation.
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