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Journal ArticleDOI

Fine phase mixtures as minimizers of energy

TLDR
In this article, the authors explore a theoretical approach to these fine phase mixtures based on the minimization of free energy and show that the α-phase breaks up into triangular domains called Dauphine twins which become finer and finer in the direction of increasing temperature.
Abstract
Solid-solid phase transformations often lead to certain characteristic microstructural features involving fine mixtures of the phases. In martensitic transformations one such feature is a plane interface which separates one homogeneous phase, austenite, from a very fine mixture of twins of the other phase, martensite. In quartz crystals held in a temperature gradient near the α-β transformation temperature, the α-phase breaks up into triangular domains called Dauphine twins which become finer and finer in the direction of increasing temperature. In this paper we explore a theoretical approach to these fine phase mixtures based on the minimization of free energy.

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Citations
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A Sharp-Interface Limit for a Two-Well Problem in Geometrically Linear Elasticity

TL;DR: In the theory of solid solid phase transitions, the deformation Open image in new window of an elastic body is determined via a functional containing a nonconvex energy density and a singular perturbation as mentioned in this paper.
Journal ArticleDOI

Relaxation of multiple integrals in the space BV(Ω;Rp)

TL;DR: In this paper, a characterisation of the surface energy density for the relaxation in V(Ω; Rp) of the functional functional is obtained and a lemma of De Giorgi is used to modify a sequence near the boundary without increasing its total energy.
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Finite Element Analysis of Microstructure for the Cubic to Tetragonal Transformation

TL;DR: In this paper, the authors give bounds for the L 2 convergence of directional derivatives in the "twin" plane, for the 2-dimensional deformation, for weak convergence of the deformation gradient, and for the convergence of microstructure.
Journal ArticleDOI

Theory and finite element computation of cyclic martensitic phase transformation at finite strain

TL;DR: In this article, a generalized variational formulation, including quasi-convexification of energy wells for arbitrarily many martensitic variants in case of mono-crystals for linearized strains, was developed for finite strain kinematics with monotonous hyperelastic stress-strain functions.
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A micromechanical model for polycrystalline shape-memory alloys

TL;DR: In this article, an energy-based model for polycrystalline shape-memory alloys is developed, which allows to predict all relevant features such as pseudoelasticity and the shape memory effect, based on orientation-distribution of martensite-variants and the minimization of total elastic strain energy and dissipation due to phasetransformation.
References
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Berechnung verschiedener physikalischer Konstanten von heterogenen Substanzen. I. Dielektrizitätskonstanten und Leitfähigkeiten der Mischkörper aus isotropen Substanzen

TL;DR: In this article, the Berechnung der dielektrizitatatkonstanten and der Leitfahigkeiten fur Elektriatitat and Warme der Mischkorper aus isotropen Bestandteilen behandelt.
Book

The theory of transformations in metals and alloys

J.W. Christian, +1 more
TL;DR: In this paper, the authors present a general introduction to the theory of transformation kinetics of real metals, including the formation and evolution of martensitic transformations, as well as a theory of dislocations.