Behaviour of Axially Loaded Composite Wall Panel by Using Finite Element Analysis

Author:

Isa Nur Fitriah1,Mohd Zahid Mohd Zulham Affandi1,Sofri Liyana Ahmad1,Zainol Norrazman Zaiha1,Azizi Azizan Muhammad1,Ahmad Muhammad Munsif1,Ab Manaf Mohd Badrul Hisyam1,Mohammad Zaki Mohd Faiz1,Abdul Rahim Mustaqqim1,Md Ghazaly Zuhayr1

Affiliation:

1. Universiti Malaysia Perlis

Abstract

In order to promote the efficient use of composite materials in civil engineering infrastructure, effort is being directed at the development of design criteria for composite structures. Insofar as design with regard to behavior is concerned, it is well known that a key step is to investigate the influence of geometric differences on the non-linear behavior of the panels. One possible approach is to use the validated numerical model based on the non-linear finite element analysis (FEA). The validation of the composite panel’s element using Trim-deck and Span-deck steel sheets under axial load shows that the present results have very good agreement with experimental references. The developed finite element (FE) models are found to reasonably simulate load-displacement response, stress condition, giving percentage of differences below than 15% compared to the experimental values. Trim-deck design provides better axial resistance than Span-deck. More concrete in between due to larger area of contact is the factor that contributes to its resistance.

Publisher

Trans Tech Publications, Ltd.

Reference9 articles.

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