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An Implicit Algorithm for the Numerical Simulation of Shape-Memory Alloys
[摘要] Shape-memory alloys (SMA) have the potential to be used in a variety of interesting applications due to their unique properties of pseudoelasticity and the shape-memory effect. However, in order to design SMA devices efficiently, a physics-based constitutive model is required to accurately simulate the behavior of shape-memory alloys. The scope of this work is to extend the numerical capabilities of the SMA constitutive model developed by Jannetti et. al. (2003), to handle large-scale polycrystalline simulations. The constitutive model is implemented within the finite-element software ABAQUS/Standard using a user defined material subroutine, or UMAT. To improve the efficiency of the numerical simulations, so that polycrystalline specimens of shape-memory alloys can be modeled, a fully implicit algorithm has been implemented to integrate the constitutive equations. Using an implicit integration scheme increases the efficiency of the UMAT over the previously implemented explicit integration method by a factor of more than 100 for single crystal simulations.
[发布日期] 2003-10-16 [发布机构] Lawrence Livermore National Laboratory
[效力级别]  [学科分类] 
[关键词] Efficiency;Alloys;75 Condensed Matter Physics, Superconductivity And Superfluidity;36 Materials Science;Simulation [时效性] 
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