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Experimental Investigation of Effect of L-Profile Hybrid Aluminium/GFRP to the Axial and Lateral Characteristic

The current study investigates the effect of a hybrid L-profile aluminium/glass-fiber-reinforced polymer stacking sequence under axial and lateral compression loads. Four stacking sequences are studied: aluminium (A)—glass-fiber (GF)—AGF, GFA, GFAGF, and AGFA. In the axial compression test, the alum...

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Autores principales: Nugraha, Ariyana Dwiputra, Alandro, Daffa, Kusumawanto, Arif, Junianto, Endro, Perwara, Budi, Kumar, Vishnu Vijay, Santos, Gil Nonato C., Sentanuhady, Jayan, Norcahyo, Rachmadi, Muflikhun, Muhammad Akhsin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10007158/
https://www.ncbi.nlm.nih.gov/pubmed/36904378
http://dx.doi.org/10.3390/polym15051137
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author Nugraha, Ariyana Dwiputra
Alandro, Daffa
Kusumawanto, Arif
Junianto, Endro
Perwara, Budi
Kumar, Vishnu Vijay
Santos, Gil Nonato C.
Sentanuhady, Jayan
Norcahyo, Rachmadi
Muflikhun, Muhammad Akhsin
author_facet Nugraha, Ariyana Dwiputra
Alandro, Daffa
Kusumawanto, Arif
Junianto, Endro
Perwara, Budi
Kumar, Vishnu Vijay
Santos, Gil Nonato C.
Sentanuhady, Jayan
Norcahyo, Rachmadi
Muflikhun, Muhammad Akhsin
author_sort Nugraha, Ariyana Dwiputra
collection PubMed
description The current study investigates the effect of a hybrid L-profile aluminium/glass-fiber-reinforced polymer stacking sequence under axial and lateral compression loads. Four stacking sequences are studied: aluminium (A)—glass-fiber (GF)—AGF, GFA, GFAGF, and AGFA. In the axial compression test, the aluminium/GFRP hybrid tends to crush in a more progressive and stable failure than the net aluminium and net GFRP specimens, with a relatively more stable load-carrying capacity throughout the experimental tests. The AGF stacking sequence was second, with an energy absorption of 145.31 kJ, following AGFA at 157.19 kJ. The load-carrying capacity of AGFA was the highest, with an average peak crushing force of 24.59 kN. The second-highest peak crushing force, 14.94 kN, was achieved by GFAGF. The highest amount of energy absorption, 157.19 J, was achieved by the AGFA specimen. The lateral compression test showed a significant increase in load-carrying and energy absorption capacity in the aluminium/GFRP hybrid specimens compared to the net GFRP specimens. AGF had the highest energy absorption with 10.41 J, followed by AGFA with 9.49 J. AGF also had the highest peak crushing force with 2.98 kN, followed by AGFA with 2.16 kN. The most crashworthy stacking sequence among the four variations tested in this experimental research was the AGF stacking sequence because of its great load-carrying capacity, energy absorption, and specific energy absorption in axial and lateral loading. The study provides greater insight into the failure of hybrid composite laminates under lateral and axial compression.
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spelling pubmed-100071582023-03-12 Experimental Investigation of Effect of L-Profile Hybrid Aluminium/GFRP to the Axial and Lateral Characteristic Nugraha, Ariyana Dwiputra Alandro, Daffa Kusumawanto, Arif Junianto, Endro Perwara, Budi Kumar, Vishnu Vijay Santos, Gil Nonato C. Sentanuhady, Jayan Norcahyo, Rachmadi Muflikhun, Muhammad Akhsin Polymers (Basel) Article The current study investigates the effect of a hybrid L-profile aluminium/glass-fiber-reinforced polymer stacking sequence under axial and lateral compression loads. Four stacking sequences are studied: aluminium (A)—glass-fiber (GF)—AGF, GFA, GFAGF, and AGFA. In the axial compression test, the aluminium/GFRP hybrid tends to crush in a more progressive and stable failure than the net aluminium and net GFRP specimens, with a relatively more stable load-carrying capacity throughout the experimental tests. The AGF stacking sequence was second, with an energy absorption of 145.31 kJ, following AGFA at 157.19 kJ. The load-carrying capacity of AGFA was the highest, with an average peak crushing force of 24.59 kN. The second-highest peak crushing force, 14.94 kN, was achieved by GFAGF. The highest amount of energy absorption, 157.19 J, was achieved by the AGFA specimen. The lateral compression test showed a significant increase in load-carrying and energy absorption capacity in the aluminium/GFRP hybrid specimens compared to the net GFRP specimens. AGF had the highest energy absorption with 10.41 J, followed by AGFA with 9.49 J. AGF also had the highest peak crushing force with 2.98 kN, followed by AGFA with 2.16 kN. The most crashworthy stacking sequence among the four variations tested in this experimental research was the AGF stacking sequence because of its great load-carrying capacity, energy absorption, and specific energy absorption in axial and lateral loading. The study provides greater insight into the failure of hybrid composite laminates under lateral and axial compression. MDPI 2023-02-24 /pmc/articles/PMC10007158/ /pubmed/36904378 http://dx.doi.org/10.3390/polym15051137 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Nugraha, Ariyana Dwiputra
Alandro, Daffa
Kusumawanto, Arif
Junianto, Endro
Perwara, Budi
Kumar, Vishnu Vijay
Santos, Gil Nonato C.
Sentanuhady, Jayan
Norcahyo, Rachmadi
Muflikhun, Muhammad Akhsin
Experimental Investigation of Effect of L-Profile Hybrid Aluminium/GFRP to the Axial and Lateral Characteristic
title Experimental Investigation of Effect of L-Profile Hybrid Aluminium/GFRP to the Axial and Lateral Characteristic
title_full Experimental Investigation of Effect of L-Profile Hybrid Aluminium/GFRP to the Axial and Lateral Characteristic
title_fullStr Experimental Investigation of Effect of L-Profile Hybrid Aluminium/GFRP to the Axial and Lateral Characteristic
title_full_unstemmed Experimental Investigation of Effect of L-Profile Hybrid Aluminium/GFRP to the Axial and Lateral Characteristic
title_short Experimental Investigation of Effect of L-Profile Hybrid Aluminium/GFRP to the Axial and Lateral Characteristic
title_sort experimental investigation of effect of l-profile hybrid aluminium/gfrp to the axial and lateral characteristic
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10007158/
https://www.ncbi.nlm.nih.gov/pubmed/36904378
http://dx.doi.org/10.3390/polym15051137
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