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VALA, J. KOZÁK, V.
Original Title
Computational analysis of quasi-brittle fracture in fibre reinforced cementitious composites
Type
journal article in Web of Science
Language
English
Original Abstract
Prediction of quasi-brittle behaviour of structural components from fibre reinforced composites under mechanical loads should incorporate such physical processes as elastic, resp. plastic deformation, crack initiation, crack propagation in a matrix, pull out of fibres and rupture of fibres. The computational model for the practically most important case of cementitious composites containing short intentionally or quasi-randomly oriented steel, ceramic, resp. polymeric fibres with its primary import of suppression of tensile stresses in a matrix will be introduced. Its numerical approach relies on the modified eXtended Finite Element Method, open to the implementation of the cohesive traction separation law. This paper introduces the implementation of some integral-type nonlocal constitutive strain-stress relation. It pays attention namely to the Eringen model for the generation of the multiplicative damage factor, to the related quasi-static analysis, to the existence of a weak solution of the corresponding boundary and initial value problem with a parabolic system of partial differential equation and to the convergence of an algorithm based on 3 types of Rothe sequences. Thus, the article combines the possibilities of the two procedures for modeling crack propagation. Microstructural behavior is contained in the Eringen model, the effect of macro behavior in modified finite element method XFEM.
Keywords
quasi-brittle fracture; fibre reinforced composites; computational analysis
Authors
VALA, J.; KOZÁK, V.
Released
1. 6. 2020
Publisher
Elsevier
Location
Amsterdam
ISBN
0167-8442
Periodical
Theoretical and Applied Fracture Mechanics
Year of study
107
Number
1
State
Kingdom of the Netherlands
Pages from
5501
Pages to
5510
Pages count
8
URL
https://doi.org/10.1016/j.tafmec.2020.102486
BibTex
@article{BUT161273, author="Jiří {Vala} and Vladislav {Kozák}", title="Computational analysis of quasi-brittle fracture in fibre reinforced cementitious composites", journal="Theoretical and Applied Fracture Mechanics", year="2020", volume="107", number="1", pages="5501--5510", doi="10.1016/j.tafmec.2020.102486", issn="0167-8442", url="https://doi.org/10.1016/j.tafmec.2020.102486" }