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Artículo

Modeling two-phase ferroelectric composites by sequential laminates

Idiart, Martín IgnacioIcon
Fecha de publicación: 02/2014
Editorial: IOP Publishing
Revista: Modelling And Simulation In Materials Science And Engineering
ISSN: 0965-0393
Idioma: Inglés
Tipo de recurso: Artículo publicado
Clasificación temática:
Ingeniería Mecánica

Resumen

Theoretical estimates are given for the overall dissipative response of two-phase ferroelectric composites with complex particulate microstructures under arbitrary loading histories. The ferroelectric behavior of the constituent phases is described via a stored energy density and a dissipation potential in accordance with the theory of generalized standard materials. An implicit time-discretization scheme is used to generate a variational representation of the overall response in terms of a single incremental potential. Estimates are then generated by constructing sequentially laminated microgeometries of particulate type whose overall incremental potential can be computed exactly. Because they are realizable, by construction, these estimates are guaranteed to conform with any material constraints, to satisfy all pertinent bounds, and to exhibit the required convexity properties with no duality gap. Predictions for representative composite and porous systems are reported and discussed in the light of existing experimental data.<br />
Palabras clave: Ferroelectricity , Composites , Homogenization , Dissipation
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info:eu-repo/semantics/openAccess Excepto donde se diga explícitamente, este item se publica bajo la siguiente descripción: Creative Commons Attribution-NonCommercial-ShareAlike 2.5 Unported (CC BY-NC-SA 2.5)
Identificadores
URI: http://hdl.handle.net/11336/31146
URL: http://iopscience.iop.org/article/10.1088/0965-0393/22/2/025010
DOI: https://doi.org/10.1088/0965-0393/22/2/025010
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Articulos de CTRO.CIENTIFICO TECNOL.CONICET - LA PLATA
Citación
Modeling two-phase ferroelectric composites by sequential laminates; IOP Publishing; Modelling And Simulation In Materials Science And Engineering; 22; 2-2014; 25010-25010
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