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Layered Phase Field Approach to Shells

2020
Fracture is one of the most commonly encountered failure modes of engineering materials and structures. Prevention of cracking-induced failure is, therefore, essential to save lives and contain costs and should be considered a social commitment. However, the understanding of nucleation and propagation of complex crack patterns in real structures is ...
Brunetti M., Freddi F., Sacco E.
openaire   +4 more sources

Phase field method

Materials Science and Technology, 2010
In an ideal scenario, a phase field model is able to compute quantitative aspects of the evolution of microstructure without explicit intervention. The method is particularly appealing because it provides a visual impression of the development of structure, one which often matches observations.
Qin, RS, Bhadeshia, HK
openaire   +2 more sources

Phase Field Methods

2020
This article reviews the principles and applications of the phase field technique for modeling phase transformations and microstructural evolutions, with an emphasis on solid-solid transformations. Conventional phase field models, which rely on phenomenological thermodynamic and kinetic descriptions, are first presented and examples of application are ...
Bellon, Pascal, Thuinet, Ludovic
openaire   +3 more sources

Phase in the Near Field

Frontiers in Optics 2012/Laser Science XXVIII, 2012
In recent decades, the role of phase in near-field optics has been explored. I discuss past results, current challenges, and unexplored avenues of research in near-field phase.
openaire   +1 more source

Multigrain phase-field simulation in ferroelectrics with phase coexistences: An improved phase-field model

Computational Materials Science, 2022
Fan, Ling   +5 more
openaire   +2 more sources

Dressed fields and phase

Physica Scripta, 1997
In the theory of the interaction of radiation with atoms, the concept of a dressed atom is well known. In this paper we explore aspects of the antithesis of this, the concept of a dressed field, that is, a field dressed by the atoms of the medium. In particular we use the concept to study the quantum mechanical action of a retarding plate.
openaire   +1 more source

Phase Field Methods

2015
The phase-field method to modeling microstructure evolution in materials is introduced in this chapter. It can be employed to model, understand, and predict complex material behaviors at meso-scale (on the order of nano- to micro-meter size), and it covers application-relevant time scales (on the order of seconds to years).
Nan Wang, Long-Qing Chen
openaire   +1 more source

Phase-field modeling of microstructure evolution: Recent applications, perspectives and challenges

Progress in Materials Science, 2022
Javier Llorca, Damien Tourret
exaly  

From classical thermodynamics to phase-field method

Progress in Materials Science, 2022
Yuhong Zhao, Long-Qing Chen
exaly  

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