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Modelling the behaviour of steel fibre reinforced precast beam-to-column connection

Chai, C. E. and Sarbini, N. N. and Ibrahim, I. S. and Ma, C. K. and Tajol Anuar, M. Z. (2017) Modelling the behaviour of steel fibre reinforced precast beam-to-column connection. In: Global Congress on Construction, Material and Structural Engineering 2017, GCoMSE 2017, 28 - 29 August 2017, Johor Bahru, Johor.

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Official URL: http://dx.doi.org/10.1088/1757-899X/271/1/012101

Abstract

The numerical behaviour of steel fibre reinforced concrete (SFRC) corbels reinforced with different fibre volume ratio subjected to vertical incremental load is presented in this paper. Precast concrete structures had become popular in the construction field, which offer a faster, neater, safer, easier and cheaper construction work. The construction components are prefabricated in controlled environment under strict supervision before being erected on site. However, precast beam-column connections are prone to failure due to the brittle properties of concrete. Finite element analysis (FEA) is adopted due to the nonlinear behaviour of concrete and SFRC. The key objective of this research is to develop a reliable nonlinear FEA model to represent the behaviour of reinforced concrete corbel. The developed model is validated with experimental data from previous researches. Then, the validated FEA model is used to predict the behaviour of SFRC corbel reinforced with different fibre volume ratio by changing the material parameters. The results show that the addition of steel fibre (SF) increases the load carrying capacity, ductility, stiffness, and changed the failure mode of corbel from brittle bending-shear to flexural ductile. On the other hand, the increasing of SF volume ratio also leads to increased load carrying capacity, ductility, and stiffness of corbel.

Item Type:Conference or Workshop Item (Paper)
Uncontrolled Keywords:concretes, ductility, fiber reinforced materials
Subjects:T Technology > TA Engineering (General). Civil engineering (General)
Divisions:Civil Engineering
ID Code:97044
Deposited By: Narimah Nawil
Deposited On:12 Sep 2022 07:23
Last Modified:12 Sep 2022 07:23

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