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In this paper a material model for shape memory alloys from Seelecke (1999) is investigated.
In this paper we suggest a new phenomenological material model for shape memory alloys.
In this work we investigate passivity of the Müller-Achenbach-Seelecke Model for shape memory alloy (SMA) wires.
Finite element analysis enables the computation of numerical strain fields using a thermodynamical constitutive model for shape memory alloys previously implemented in a finite element code.
In this paper, a gradient-enhanced 3-D phenomenological model for shape memory alloys using the non-local theory is developed based on a 1-D constitutive model.
This paper presents a fully coupled thermo-mechanical constitutive model for shape memory alloys taking into account latent heat effects during forward and reverse martensitic phase transformations.
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We have also evaluated the applicability of a simple Taylor-type model for shape-memory materials.
Hence, this paper proposes a contingency model for shaping and managing buyer supplier relationships in manufacturing contexts.
The ultimate purpose of this study is to propose a model for shaping regional palliative care.
Brinson model is one of the most-widely used models for shape memory alloy (SMA) wires.
The B-Spline surfaces are imported into a CAD system to construct parametric solid models for shape optimization.
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CEO of Professional Science Editing for Scientists @ prosciediting.com