Fracture in concrete specimens of differing scale

Author:

Bolander J.E.,Hikosaka H.,He W.‐J.

Abstract

A planar lattice network of beam elements is used to study the mechanisms of fracture in cement‐based materials. Beam properties are controlled by a nonlinear elastic fracture law which roughly accounts for three‐dimensionality of the material and fracture process. Special attention is given to modeling toughening mechanisms associated with aggregate‐matrix interface failure. The distributions of damage and fracture energy consumption are resolved at the material mesoscale and are shown to depend on strain gradient. An adaptive remeshing procedure is used to reduce computational cost and enable analyses of specimens of significantly differing scale, while keeping the lattice density constant. Larger process zones, higher specific fracture energies, and lower specific peak loads are obtained with increasing specimen size, in agreement with published test results. These computations provide information useful in developing refined macromodels for engineering analyses.

Publisher

Emerald

Subject

Computational Theory and Mathematics,Computer Science Applications,General Engineering,Software

Reference25 articles.

1. Arslan, E., Schlangen, E. and van Mier, J.G.M. (1995), “Effect of model fracture law and porosity on tensile softening of concrete”, in Wittmann, F.H. (Ed.), Fracture Mechanics of Concrete StructuresAedificatio Publishers, Freiburg, Germany, pp. 45‐54.

2. Batrouni, G.G. and Hansen, A. (1988), “Fourier acceleration of iterative processes in disordered systems”, J. Stat. Phys., Vol. 52, pp. 747‐73.

3. Bazˇant, Z.P., Tabbara, M.R., Kazemi, M.T. and Pijaudier‐Cabot, G. (1992), “Random particle model for fracture of aggregate or fiber composites”, J. Engng Mech., Vol. 116, ASCE, pp. 1686‐1705.

4. Bolander, J.E., Ebihara, T. and Hikosaka, H. (1994), “Evaluating concrete mesoscale properties using neural networks”, in Basham, K.D. (Ed.), Infrastructure: New Materials and Methods of Repair, Proceedings of the Third Materials Engineering Conference, ASCE, pp. 475‐82.

5. Bolander, J.E., Hikosaka, H. and Shiraishi, T. (1993), “Effects of strain gradient on concrete tensile fracture”, Memoirs Faculty Engng, Vol. 53 No. 3, Kyushu Univ., Fukuoka, Japan, pp. 103‐19.

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