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Structural behavior of precast foamed concrete sandwich panel subjected vertical in-plane shear loading


Citation

Mugahed Amran, Y. H. and Muhammad Rashid, Raizal Saifulnaz and Hejazi, Farzad and Safiee, Nor Azizi and Abang Ali, Abang Abdullah (2016) Structural behavior of precast foamed concrete sandwich panel subjected vertical in-plane shear loading. International Journal of Civil & Environmental Engineering, 10 (6). pp. 705-714. ISSN 2010-3883; ESSN: 2010-3891

Abstract

Experimental and analytical studies were accomplished to examine the structural behavior of precast foamed concrete sandwich panel (PFCSP) under vertical in-plane shear load. PFCSP full-scale specimens with total number of six were developed with varying heights to study an important parameter slenderness ratio (H/t). The production technique of PFCSP and the procedure of test setup were described. The results obtained from the experimental tests were analysed in the context of in-plane shear strength capacity, load-deflection profile, load-strain relationship, slenderness ratio, shear cracking patterns and mode of failure. Analytical study of finite element analysis was implemented and the theoretical calculations of the ultimate in-plane shear strengths using the adopted ACI318 equation for reinforced concrete wall were determined aimed at predicting the in-plane shear strength of PFCSP. The decrease in slenderness ratio from 24 to 14 showed an increase of 26.51% and 21.91% on the ultimate in-plane shear strength capacity as obtained experimentally and in FEA models, respectively. The experimental test results, FEA models data and theoretical calculation values were compared and provided a significant agreement with high degree of accuracy. Therefore, on the basis of the results obtained, PFCSP wall has the potential use as an alternative to the conventional load-bearing wall system.


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Additional Metadata

Item Type: Article
Subject: Deflection profiles; Foamed concrete; Load strain relationships; Precast faomed concrete sandwhich panel; Slenderness ratio; Vertical in-plane shear strength capacity
Divisions: Faculty of Engineering
Publisher: World Academy of Science, Engineering and Technology
Depositing User: Nurul Ainie Mokhtar
Date Deposited: 21 Feb 2018 03:02
Last Modified: 21 Feb 2018 03:02
URI: http://psasir.upm.edu.my/id/eprint/53909
Statistic Details: View Download Statistic

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