3D Mesoscale Finite Element Modelling of Concrete under Uniaxial Loadings

被引:14
作者
Forti, Tiago [1 ]
Batistela, Gustavo [1 ]
Forti, Nadia [2 ]
Vianna, Nicolas [2 ]
机构
[1] Simworx R&D, BR-13087727 Campinas, Brazil
[2] Pontifical Catholic Univ Campinas PUC Campinas, Exact Sci Environm & Technol Ctr, BR-13086099 Campinas, Brazil
关键词
finite element method; concrete; mesoscale; damage; cohesive fracture; BEHAVIOR; TENSILE;
D O I
10.3390/ma13204585
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Concrete exhibits a complex mechanical behavior, especially when approaching failure. Its behavior is governed by the interaction of the heterogeneous structures of the material at the first level of observation below the homogeneous continuum, i.e., at the mesoscale. Concrete is assumed to be a three-phase composite of coarse aggregates, mortar, and the interfacial transitional zone (ITZ) between them. Finite element modeling on a mesoscale requires appropriate meshes that discretize the three concrete components. As the weakest link in concrete, ITZ plays an important role. However, meshing ITZ is a challenging issue, due to its very reduced thickness. Representing ITZ with solid elements of such reduced size would produce very expensive finite element meshes. An alternative is to represent ITZ as zero-thickness interface elements. This work adopts interface elements for ITZ. Damage plasticity model is adopted to describe the softening behavior of mortar in compression, while cohesive fractures describe the cracking process. Numerical experiments are presented. First example deals with the estimation of concrete Young's modulus. Experimental tests were performed to support the numerical test. A second experiment simulates a uniaxial compression test and last experiment simulates a uniaxial tensile test, where results are compared to data from the literature.
引用
收藏
页码:1 / 14
页数:14
相关论文
共 28 条
[1]  
Associacao Brasileira de Normas Tecnicas (ABNT), 2018, 16697 NBR
[2]  
AssociacAo Brasileira de Normas Tecnicas (ABNT), 2003, 248 NBR
[3]   Behavior of meso-scale heterogeneous concrete under uniaxial tensile and compressive loadings [J].
Chen, Hongbing ;
Xu, Bin ;
Mo, Yl ;
Zhou, Tianmin .
CONSTRUCTION AND BUILDING MATERIALS, 2018, 178 :418-431
[4]   Meso-scale simulation of concrete multiaxial behaviour [J].
Contrafatto, Loredana ;
Cuomo, Massimo ;
Greco, Leopoldo .
EUROPEAN JOURNAL OF ENVIRONMENTAL AND CIVIL ENGINEERING, 2017, 21 (7-8) :896-911
[5]  
de Souza Neto E., 2008, Computational Methods for Plasticity: Theory and Applications, DOI DOI 10.1002/9780470694626
[6]   Analysis of concrete fracture using a novel cohesive crack method [J].
Dong, Y. ;
Wu, S. ;
Xu, S. S. ;
Zhang, Y. ;
Fang, S. .
APPLIED MATHEMATICAL MODELLING, 2010, 34 (12) :4219-4231
[7]   Tensile and shear bond strength between cement paste and aggregate subjected to high temperature [J].
El Bitouri, Y. ;
Jamin, F. ;
Pelissou, C. ;
El Youssoufi, M. S. .
MATERIALS AND STRUCTURES, 2017, 50 (06)
[8]   The continuous-discontinuous Galerkin method applied to crack propagation [J].
Forti, Tiago L. D. ;
Forti, Nadia C. S. ;
Santos, Fabio L. G. ;
Carnio, Marco A. .
COMPUTERS AND CONCRETE, 2019, 23 (04) :235-243
[9]   Gmsh: A 3-D finite element mesh generator with built-in pre- and post-processing facilities [J].
Geuzaine, Christophe ;
Remacle, Jean-Francois .
INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN ENGINEERING, 2009, 79 (11) :1309-1331
[10]   Meso-scale approach to modelling the fracture process zone of concrete subjected to uniaxial tension [J].
Grassl, Peter ;
Jirasek, Milan .
INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES, 2010, 47 (7-8) :957-968