Advance Sustainable Science, Engineering and Technology (ASSET)
Vol. 8 No. 3 (2026): May - July

Behavior of Lightweight Aggregate Concrete with FRP Confinement: Experimental Insights for Structural Applications

Butje Alfonsius Louk Fanggi (Politeknik Negeri Kupang)
Yuyun Tajunnisa (Institut Teknologi Sepuluh Nopember)
Hazen Masrafat (Institut Teknologi Sepuluh Nopember)
Jusuf Wilson Meynerd Rafael (Politeknik Negeri Kupang)
Alva Yuventus Lukas (Politeknik Negeri Kupang)
Niakku Immanuel Maggang (Politeknik Negeri Kupang)
Joko Suparmanto (Politeknik Negeri Kupang)
Melati Tabita Kirana Thei (Politeknik Negeri Kupang)



Article Info

Publish Date
22 Jul 2026

Abstract

Lightweight aggregate concrete reduces structural dead load but generally exhibits lower compressive strength and ductility than normal-weight concrete. This study experimentally evaluates the effectiveness of carbon-fibre-reinforced polymer (CFRP) confinement for low-density lightweight aggregate concrete, an area in which data for square sections remain limited. Twelve 300-mm-high specimens with a density of approximately 1550 kg/m³ were tested under monotonic concentric compression. The investigated parameters were concrete compressive strength (15 and 28 MPa), cross-sectional shape (square and circular), and number of CFRP layers (one and two). Failure occurred through localized, extensive, or hoop rupture of the CFRP. The confined specimens exhibited approximately bilinear stress–strain responses and substantial improvements in strength and deformation capacity. For square specimens with 15 MPa concrete, two CFRP layers increased the average strength ratio to 2.27 and the strain ratio to 23.39. Circular specimens developed greater confinement efficiency, reaching an average strength ratio of 3.76 with two layers. Lower-strength concrete showed larger relative ductility gains than higher-strength concrete. These findings demonstrate that CFRP confinement can substantially reduce the brittle response of low-density lightweight concrete and support its use in lightweight, resilient, and earthquake-resistant structural applications.

Copyrights © 2026






Journal Info

Abbrev

asset

Publisher

Subject

Chemistry Computer Science & IT Control & Systems Engineering Electrical & Electronics Engineering Industrial & Manufacturing Engineering

Description

Advance Sustainable Science, Engineering and Technology (ASSET) is a peer-reviewed open-access international scientific journal dedicated to the latest advancements in sciences, applied sciences and engineering, as well as relating sustainable technology. This journal aims to provide a platform for ...