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Título : Phase-field modeling of fracture for quasi-brittle materials
Autor: Ulloa Vanegas, Jacinto Israel
Rodriguez Cedillo, Patricio Santiago
Samaniego Alvarado, Cristobal Augusto
Samaniego Alvarado, Esteban Patricio
Correspondencia: Ulloa Vanegas, Jacinto Israel, jacintoisrael.ulloa@kuleuven.be
Palabras clave : Fracture
Gradient damage
Phase fields
Quasi-brittle materials
Variational formulation
Área de conocimiento FRASCATI amplio: 2. Ingeniería y Tecnología
Área de conocimiento FRASCATI detallado: 2.11.2 Otras Ingenierias y Tecnologías
Área de conocimiento FRASCATI específico: 2.11 Otras Ingenierias y Tecnologías
Área de conocimiento UNESCO amplio: 07 - Ingeniería, Industria y Construcción
ÁArea de conocimiento UNESCO detallado: 0711 - Ingeniería y Procesos Químicos
Área de conocimiento UNESCO específico: 071 - Ingeniería y Profesiones Afines
Fecha de publicación : 2018
Volumen: Volumen 4, número 9
Fuente: Underground Space
metadata.dc.identifier.doi: 10.1016/j.undsp.2018.08.002
Tipo: ARTÍCULO
Abstract: 
Abstract This paper addresses the modeling of fracture in quasi-brittle materials using a phase-field approach to the description of crack topology. Within the computational mechanics community, several studies have treated the issue of modeling fracture using phase fields. Most of these studies have used an approach that implies the lack of a damage threshold. We herein explore an alternative model that includes a damage threshold and study how it compares with the most popular approach. The formulation is systematically explained within a rigorous variational framework. Subsequently, we present the corresponding three-dimensional finite element discretization that leads to a straightforward numerical implementation. Benchmark simulations in two dimensions and three dimensions are then presented. The results show that while an elastic stage and a damage threshold are ensured by the present model, good agreement with the results reported in the literature can be obtained, where such features are generally absent.
Resumen : 
This paper addresses the modeling of fracture in quasi-brittle materials using a phase-field approach to the description of crack topology. Within the computational mechanics community, several studies have treated the issue of modeling fracture using phase fields. Most of these studies have used an approach that implies the lack of a damage threshold. We herein explore an alternative model that includes a damage threshold and study how it compares with the most popular approach. The formulation is systematically explained within a rigorous variational framework. Subsequently, we present the corresponding three-dimensional finite element discretization that leads to a straightforward numerical implementation. Benchmark simulations in two dimensions and three dimensions are then presented. The results show that while an elastic stage and a damage threshold are ensured by the present model, good agreement with the results reported in the literature can be obtained, where such features are generally absent.
URI : https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85076787222&origin=inward
URI Fuente: https://www.sciencedirect.com/journal/underground-space/vol/4/issue/1
ISSN : 2467-9674
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