Methods of identification of concrete elastic-plastic-damage models

被引:7
作者
Benin A.V. [1 ]
Semenov A.S. [2 ]
Semenov S.G. [2 ]
Beliaev M.O. [2 ]
Modestov V.S. [2 ]
机构
[1] Petersburg State Transport University, St. Petersburg
[2] Peter the Great St. Petersburg Polytechnic University, St. Petersburg
来源
Magazine of Civil Engineering | 2017年 / 76卷 / 08期
关键词
Concrete; Damage; Elasticity; Experiment; Finite-element simulation; Parameter identification; Plasticity;
D O I
10.18720/MCE.76.24
中图分类号
学科分类号
摘要
The methodology for identification of mechanical characteristics of the nonlinear material model for concrete, taking into account the elastic-plastic deformation and the damage accumulation under monotonous and cyclic loading, is proposed. The using such improved models of concrete deformation is actual for carrying out finite-element computations of the most important elements of unique and responsible buildings and structures. The proposed methodology is verified for three different types of concrete (B45, B25, B5), including also their preliminary heat treatment at 200 °C, 300 °C, 400 °C and 600 °C. The experiments were carried out on standard specimens of cubic and prismatic form under compression, as well as on dog-bone-shaped specimens under tension. Elasticity and plasticity moduli, ultimate strengths in compression and tension, damage evolutions during deformation process were obtained in tests. Particular attention has been paid to the search for reliable and effective methods for determining damage based on cyclic deformation curves in the pre-peak and after-peak loading regimes. Comparison of simulation results with experimental data under monotonic and cyclic compression demonstrates a good agreement for regular and for overheated concrete. © 2017 Benin A.V.,Semenov A.S.,Semenov S.G.,Beliaev M.O.,Modestov V.S.
引用
收藏
页码:279 / 297
页数:18
相关论文
共 40 条
[1]  
Lubliner J., Oliver J., Oller S., Onate E., A plastic-damage model for concrete, Int. Journal of Solids and Structures., 3, 25, pp. 229-326, (1989)
[2]  
Voyiadjis G.Z., Abu Lebdeh T.M., Plasticity model for concrete using the bounding surface concept, Int. J. Plast., 10, 1, pp. 1-21, (1994)
[3]  
Lee J., Fenves G.L., Plastic-damage model for cyclic loading of concrete structures, Journal of Engineering Mechanics., 124, pp. 892-900, (1998)
[4]  
Kratzig W.B., Polling R., An elasto-plastic damage model for reinforced concrete with minimum number of material parameters, Computers and Structures., 82, 15-16, pp. 1201-1215, (2004)
[5]  
Jason L., Huerta A., Pijaudier-Cabot G., Ghavamian S., An elastic plastic damage formulation for concrete: Application to elementary tests and comparison with an isotropic damage model, Computer Methods in Applied Mechanics and Engineering., 195, 52, pp. 7077-7092, (2006)
[6]  
Grassl P., Jirasek M., Damage-plastic model for concrete failure, International Journal of Solids and Structures., 43, pp. 7166-7196, (2006)
[7]  
Mazars J., Pijaudier-Cabot G., Continuum damage theory- Application to concrete, Journal of Engineering Mechanics., 115, 2, pp. 345-365, (1989)
[8]  
Voyiadjis G.Z., Taqieddin Z.N., Elastic plastic and damage model for concrete materials: Part i - Theoretical formulation, International Journal of Structural Changes in Solids - Mechanics and Appl, 1, 1, pp. 31-59, (2009)
[9]  
Benin A.V., Semenov A.S., Semenov S.G., Fracture simulation of reinforced concrete structure with account of bond degradation and concrete cracking under steel corrosion, Advances in Civil Engineering and Building Materials. Proc. 2nd Int. Conf. On Civil Eng. and Building Materials., pp. 233-237, (2012)
[10]  
Benin A.V., Semenov A.S., Semenov S.G., Melnikov B.E., Simulation of degradation of bond between reinforcing bar and concrete. Part 1. Models with account of the discontinuity, Magazine of Civil Engineering., 5, 40, pp. 86-99, (2013)