LDPE Core Material High Temperature Resistance Test Analysis for Aluminum Composite Panels (ACP)
Analisa Uji Ketahanan Suhu Tinggi Pada Aluminium Composite Panel (ACP) Menggunakan Material Inti LDPE
DOI:
https://doi.org/10.21070/ups.9438Keywords:
Aluminum Composite Panel, LDPE, high resistance temperature,, microstructureAbstract
Because of its mechanical strength and aesthetic qualities, aluminum composite panel, or ACP, is a material that is frequently employed in high-rise structures. Low Density Polyethylene (LDPE), one of the ACP core components, is susceptible to high temperatures. The goal of this study is to enhance the LDPE-based ACP's resistance to high temperatures and microstructural alterations during high-temperature testing. 5052 aluminum plates and LDPE core materials were used to create ACP samples, which were subsequently tested in a heating furnace in accordance with SNI 01-4449-2006 guidelines. According to test results, LDPE experiences notable microstructural alterations at high temperatures, which affects how well the LDPE core material adheres to aluminum. The final result affirms that LDPE is not advised for use as an ACP core material in locations that are vulnerable to fire or high temperatures.
Downloads
References
M. Tanubrata, 2015, Bahan-Bahan Konstruksi Dalam Konteks Teknik Sipil. J. Tek. Sipil, 132-154.
Hiwang Rafika Wingrum, & Intan Pramesti Rochana., 2024, Perbandingan Penerapan Material Fasad ACP Dan Aluminium Sheet Terhadap Iklim Tropis Pada Bangunan Apartemen Di Surabaya. Siar-V, Universitas Muhammadiyah Surakarta.
Priyanka Mohaney, Er. Gaurav Soni, 2018, Aluminium Composite Panel as a Facade Material, International Journal of Engineering Trends and Technology (IJETT) – Volume 55 Number 2-January 2018.
J. I. Duruaku, P. A. C. Okoye, N. H. Okoye, J. O. Nwadiogbu, V. I. Onwukeme, dan R. U. Arinze, 2023, An Evaluation of the Physicochemical , Structural and Morphological Properties of Selected Tropical Wood Species for Possible Utilization in the Wood Industry, J. Sustain. Bioenergy Syst., vol. 13, hal. 131–148, 2023, doi: 10.4236/jsbs.2023.134008.
Wesli, Mhd. Afrizam Syahputra, Said Jalalul Akbar, Muthmainnah, 2024, Pemanfaatan Plastik Low Density Polyethylene (LDPE) dan Arang Tempurung Kelapa Terhadap Parameter Marshall Sebagai Substitusi Sebagian Aspal Pada Lapisan AC-WC, Teras Jurnal: Jurnal Teknik Sipil P-ISSN 2088-0561, Vol 14, No 02, September 2024 E-ISSN 2502-1680.
A. A. Alhazmi, A. S. Alqahtani, and M. A. Alshahrani, “Fire Safety Assessment of Building Facades with Aluminium Composite Panels,” Fire Technology, vol. 59, no. 2, pp. 841–860, 2023, doi: 10.1007/s10694-022-01388-1.
H. Yang, X. Liu, and Z. Li, “Experimental Study on Fire Performance of ACP with Polyethylene Core,” Journal of Building Engineering, vol. 65, p. 105732, 2023, doi: 10.1016/j.jobe.2023.105732.
R. C. Gupta, A. Kumar, and S. Singh, “Recycling and Environmental Impact of Polyethylene Waste: A Review,” Polymer Degradation and Stability, vol. 210, p. 110326, 2023, doi: 10.1016/j.polymdegradstab.2023.110326.
Lucky Zaehir Maulana, Agus Yulianto, Sulhadi, 2013, Aplikasi Low Density Polyethylene (LDPE) Pada Pembuatan Magnet Ferrite Komposit, Unnes Physics Journal, hal. 13-16, http://journal.unnes.ac.id/sju/index.php/upj, ISSN 2252-6978.
. Pilipenets O, Gunawardena T, Kin Peng Hui F, Nguyen K, Mendis P, Aye L, 2022, Upcycling opportunities and potential markets for aluminium composite panels with polyethylene core (ACP-PE) cladding materials in Australia, A review. Constr Build Mater. 2022 Nov;357:129194, doi: https://doi.org/10.1016/j.conbuildmat.2022.129194.
. Prantasi Harmi Tjahjanti, Mulyadi, Majdi Ervandrie Wicaksono, 2025, Analysis of PolyTetraFluoroEthylene (PTFE) fire resistance as core material for Aluminium Composite Panel (ACP), JEMMME (Journal of Energy, Mechanical, Material, and Manufacturing Engineering) Vol. 10, No. 1, 2025,ISSN 2541-6332 | e-ISSN 2548-4281 Journal homepage: http://ejournal.umm.ac.id/index.php/JEMMME.
. Prantasi Harmi Tjahjanti, A'rasy Fahruddin, Mulyadi, Septia Hardy Sujiatanti, Majdi Ervandrie Wicaksono, Ribangun Bamban Jakaria, 2024, Core Material Manufacturing Study On Aluminum Composite Panel (ACP), Journal Of Engineering Sciences (Improsci), Vol 2 No 3 December 2024, e-ISSN 3031-7088, p-ISSN 3032-3452, https://annpublisher.org/ojs/index.php/improsci/article/view/579
. Majdi Ervandrie Wicaksono, Prantasi Harmi Tjahjanti, Metatia Intan Mauliana, Edi Widodo, 2024, Simulasi Numerik Aluminium Composite Panel (ACP) Dengan Variasi Material Inti, 2025, Prosiding Seminar Sosial Politik Bisnis Akuntansi dan Teknik 6, page: :189-196, February 2025, DOI:10.32897/sobat.2024.6.1.4182, https://www.researchgate.net/publication/389875129.
A. Velmurugan and P. Sakthivel, “Thermal Degradation Behavior of Polyethylene Composites,” Materials Today: Proceedings, vol. 62, pp. 2331–2337, 2022, doi: 10.1016/j.matpr.2022.03.105.
Y. Wang, J. Sun, and T. Zhang, “Effect of Core Material on Fire Safety of Aluminium Composite Panels,” Construction and Building Materials, vol. 348, p. 128701, 2022, doi: 10.1016/j.conbuildmat.2022.128701.
Downloads
Additional Files
Posted
License
Copyright (c) 2025 UMSIDA Preprints Server

This work is licensed under a Creative Commons Attribution 4.0 International License.
