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We formulate a model describing rate-independent hysteretic response of shape-memory alloys under slow external forcing. Under natural assumptions we prove ...
Jun 11, 2015 · We formulate a model describing rate-independent hysteretic re- sponse of shape-memory alloys under slow external forcing.
Abstract. We formulate a model describing rate-independent hysteretic response of shape- memory alloys under slow external forcing.
We formulate a model describing rate-independent hysteretic response of shape-memory alloys under slow external forcing. Under natural assumptions we prove that ...
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We formulate a model describing rate-independent hysteretic response of shape-memory alloys under slow external forcing. Under natural assumptions we prove ...
Abstract. This paper addresses a three-dimensional model for isothermal stress-induced transforma- tion in shape memory polycrystalline materials in ...
In this thesis we consider a special class of mechanical systems that is rate-independent systems. Such systems are typically driven by an external loading ...
This paper addresses a three-dimensional model for isothermal stress-induced transformation in shape memory polycrystalline materials in presence of ...
This behavior exhibits two very important properties, i.e., energy dissipation and zero residual strain upon unloading, and thus it is termed superelastic.
A new model for fully recoverable SMA response is derived that accounts for material behaviors not previously addressed. Rate-independent and rate-dependent ...