Stress distribution of CFRP strengthened steel hollow sections under tension


Autoria(s): Shahanara, Kaniz; Fawzia, Sabrina
Contribuinte(s)

Hossain, Quazi Sazzad

Islam, Kd. Md. Shafiul

Rashid, Md. Harunur

Hassan, Khondoker Mahbub

Ali, Md. Shahjahan

Rahman, Md. Ataur

Adhikary, Sajal Kumar

Data(s)

2012

Resumo

Carbon fibre reinforced polymer (CFRP) sheets have many outstanding properties such as high strength, high elastic modulus, light weight and good durability which are made them a suitable alternative for steel in strengthening work. This paper describe the ultimate load carrying capacity of steel hollow sections at effective bond length in terms of its cross sectional area and the stress distribution within bond region for different layers CFRP. It was found that depending on their size and orientation of uni- directional CFRP layers, the ultimate tensile load was different. Along with these tests, non linear finite element analysis was also performed to validate the ultimate load carrying capacity depending on their cross sections. The predicted ultimate loads from FE analysis are found very close to the laboratory test results. The validated model has been used to determine the stress distribution at bond joint for different orientation of CFRP. This research shows the effect of stress distribution and suitable wrapping layer to be used for the strengthening of steel hollow sections in tension.

Formato

application/pdf

Identificador

http://eprints.qut.edu.au/58912/

Publicador

Khulna University of Engineering & Technology

Relação

http://eprints.qut.edu.au/58912/4/58912.pdf

Shahanara, Kaniz & Fawzia, Sabrina (2012) Stress distribution of CFRP strengthened steel hollow sections under tension. In Hossain, Quazi Sazzad, Islam, Kd. Md. Shafiul, Rashid, Md. Harunur, Hassan, Khondoker Mahbub, Ali, Md. Shahjahan, Rahman, Md. Ataur, et al. (Eds.) Proceedings of the International Conference on Civil Engineering for Sustainable Development, Khulna University of Engineering & Technology, Bangladesh, pp. 1-9.

Direitos

Copyright 2012 please consult the authors

Fonte

School of Civil Engineering & Built Environment; Science & Engineering Faculty

Palavras-Chave #CFRP #Steel Hollow Section #Wrapping Layer #Stress Distribution
Tipo

Conference Paper