Structural Performance of Precast Non-Load Bearing Wall Panels with Recycled Concrete Aggregate and Perlite

The scarcity of natural sand in wall construction poses a significant challenge, prompting a novel solution in this study: wall panels using Recycled Concrete Aggregates (RCA) and perlite. The lack of existing literature on such panels underscores the studys' importance. Panels of varying thick...

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書誌詳細
出版年:JURNAL KEJURUTERAAN
主要な著者: Ruslan, Amir Khomeiny; Nor, Noorsuhada Md; Musnazri, Nur Amira Wahida; Jamaludin, Amril Hadri; Saliah, Soffian Noor Mat; Fauzi, Mohd Azrizal; Hassan, Ahmad Syauqi Md; Aziz, Nor Azian
フォーマット: 論文
言語:English
出版事項: UKM PRESS 2024
主題:
オンライン・アクセス:https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001421957400001
その他の書誌記述
要約:The scarcity of natural sand in wall construction poses a significant challenge, prompting a novel solution in this study: wall panels using Recycled Concrete Aggregates (RCA) and perlite. The lack of existing literature on such panels underscores the studys' importance. Panels of varying thicknesses (75 mm, 100 mm, and 125 mm) are prepared with a 1:4 concrete mix, with the aggregate portion consisting of 40% sand, 40% RCA, and 20% perlite. For control purposes, additional wall panels are prepared using natural sand as the aggregate. Subsequently, all panels undergo compressive tests to evaluate their structural performance, including crack analysis. Comprehensive analyses, encompassing load, stress, and strain, yield Youngs' Modulus and Poissons' Ratio. Strain gauges and acoustic emissions enhance data precision. Maximum loads of 936.51 kN are observed on 125 mm panels. Findings reveal variations in compressive strength, with control panels surpassing the proposed ones. Wall panel thickness proves pivotal, influencing both strength and crack visibility. Notably, the 100 mm panel performs optimally, displaying minimal percentage differences in compressive strength compared to the control. This research offers invaluable insights into alternative aggregate-infused wall panels' structural behaviour, enriched by verification through an AE analysis.
ISSN:0128-0198
2289-7526
DOI:10.17576/jkukm-2024-36(6)-01