Comparative Study of Numerical Methods for Predicting Crack Propagation in Reinforced Concrete Hollow Core Slabs

Author:

Sheikhnasiri Alireza

Abstract

Hollow core slabs are commonly used in prefabricated building construction and are calculated and constructed using gravity loads. The dead loads of the structure are reduced by using this slab system. Different criteria, such as the initiation and propagation of cracks in the hollow core slab, are used to analyze these slabs. Fracture mechanics is the basis for studying crack propagation. The present study was conducted to analyze the propagation of cracks in hollow core slabs under common loading conditions using the finite element method and numerical modeling to analyze cracks in reinforced concrete members. This research is theoretically conducted using finite element software. This research takes into account the potential varieties of cracks in concrete slabs. Slabs should consider all three types of cracks, which are shear, flexural, and flexural-shear cracks obtained from the reference test. Two Contour integral and XFEM methods are used to analyze cracks in Abaqus software. To validate and control the modeling process, the laboratory results of the research of Ibrahim N. Najma, Raid A. Daudb, and Adel A. Al-Azzawi. December 2, 2019, has been used. The outcomes of this study showed that the probability of the formation of a flexural-shear crack in the slab is higher than in other crack forms.

Publisher

Apex Publishing

Reference10 articles.

1. Sgambi, Luca, Konstantinos Gkoumas, and Franco Bontempi. "Genetic algorithm optimization of precast hollow core slabs." Computers and concrete 13.3 (2014): 389-409.

2. Najm, Ibrahim N., Raid A. Daud, and Adel A. Al-Azzawi. "Behavior of reinforced concrete segmental hollow core slabs under monotonic and repeated loadings." Structural Monitoring and Maintenance 6.4 (2019): 269-289.

3. Reza Salehi, Abbas Akbarpour Nik Qalb Rashti. Numerical study of the behavior of prestressed one-way hollow slabs. International conference on civil engineering, architecture, and urban planning of contemporary Iran, 2016. P. 1-11

4. Behzad Shafi Rad, Amir Saedi Darian. Introducing a finite element modeling method for precast hollow core slabs by ABAQUS software and checking the friction coefficient changes on it. The first conference on civil engineering, new developments, and economic development, 2014. P. 1-9

5. Genikomsou, Aikaterini S., and Maria Anna Polak. "Finite element analysis of punching shear of concrete slabs using damaged plasticity model in ABAQUS." Engineering structures 98 (2015): 38-48.

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