Failure configuration and evaluation of hybrid CFRP-GFRP laminates using innovative Arcan fixture: Experimental and simulation approach

This study successfully explored and evaluated the impact of notches modification in U, V, and square shapes on both tensile and shear strength using Arcan fixture. ASTM D 5379 was incorporated to evaluate the model then compared with FEA simulation. Composite material featuring a U-shaped notch pos...

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Main Authors: Ariyana Dwiputra Nugraha, Daffa Alandro, Kevin Gausultan Hadith Mangunkusumo, Muhammad Kusni, Yi Chieh Wu, Muhammad Akhsin Muflikhun
Format: Article
Language:English
Published: Elsevier 2024-07-01
Series:Composites Part C: Open Access
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2666682024000239
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author Ariyana Dwiputra Nugraha
Daffa Alandro
Kevin Gausultan Hadith Mangunkusumo
Muhammad Kusni
Yi Chieh Wu
Muhammad Akhsin Muflikhun
author_facet Ariyana Dwiputra Nugraha
Daffa Alandro
Kevin Gausultan Hadith Mangunkusumo
Muhammad Kusni
Yi Chieh Wu
Muhammad Akhsin Muflikhun
author_sort Ariyana Dwiputra Nugraha
collection DOAJ
description This study successfully explored and evaluated the impact of notches modification in U, V, and square shapes on both tensile and shear strength using Arcan fixture. ASTM D 5379 was incorporated to evaluate the model then compared with FEA simulation. Composite material featuring a U-shaped notch possesses a notable advantage in terms of its tensile strength and shear strength values, which measure at 276.3 MPa and 14.9 MPa, respectively. 3D Hashin's damage model also employed to compare and validate the shear damage resulting from each notch of the experimental work. The composite with a U-shaped notch demonstrates excellent capacity for withstanding both tensile and shear loading without compromising its strength and fracture resistance in shear. the failure mode analysis was showed that the matrix failure tent to make weaker of the specimen, although the fiber still stands and kinked. The present study can be used as the leading method to evaluate the hybrid laminates applied in wind turbines, automotives body structures, and aircraft structures.
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spelling doaj.art-253c818a55f3478cb500fb507eb7eeb72024-03-23T06:26:19ZengElsevierComposites Part C: Open Access2666-68202024-07-0114100452Failure configuration and evaluation of hybrid CFRP-GFRP laminates using innovative Arcan fixture: Experimental and simulation approachAriyana Dwiputra Nugraha0Daffa Alandro1Kevin Gausultan Hadith Mangunkusumo2Muhammad Kusni3Yi Chieh Wu4Muhammad Akhsin Muflikhun5PLN Puslitbang, Jl. Duren Tiga Raya No.102, Pancoran, Kota Jakarta Selatan, Jakarta, 12760, IndonesiaMechanical and Industrial Engineering Department, Gadjah Mada University, Jl. Grafika No. 2, Yogyakarta, 55281, Indonesia; PLN Puslitbang, Jl. Duren Tiga Raya No.102, Pancoran, Kota Jakarta Selatan, Jakarta, 12760, IndonesiaPLN Puslitbang, Jl. Duren Tiga Raya No.102, Pancoran, Kota Jakarta Selatan, Jakarta, 12760, IndonesiaDepartment of Aerospace Engineering, Bandung Institute of Technology, Jl. E ITB Jl. Ganesa No.10, Bandung, 40132, IndonesiaNational Chengchi University, ZhiNan Rd., Wenshan District, Taipei City, 116302, Taiwan R.O.CMechanical and Industrial Engineering Department, Gadjah Mada University, Jl. Grafika No. 2, Yogyakarta, 55281, Indonesia; Corresponding author.This study successfully explored and evaluated the impact of notches modification in U, V, and square shapes on both tensile and shear strength using Arcan fixture. ASTM D 5379 was incorporated to evaluate the model then compared with FEA simulation. Composite material featuring a U-shaped notch possesses a notable advantage in terms of its tensile strength and shear strength values, which measure at 276.3 MPa and 14.9 MPa, respectively. 3D Hashin's damage model also employed to compare and validate the shear damage resulting from each notch of the experimental work. The composite with a U-shaped notch demonstrates excellent capacity for withstanding both tensile and shear loading without compromising its strength and fracture resistance in shear. the failure mode analysis was showed that the matrix failure tent to make weaker of the specimen, although the fiber still stands and kinked. The present study can be used as the leading method to evaluate the hybrid laminates applied in wind turbines, automotives body structures, and aircraft structures.http://www.sciencedirect.com/science/article/pii/S2666682024000239Iosipescu test3D Hashin's damageShear propertiesHybrid composite
spellingShingle Ariyana Dwiputra Nugraha
Daffa Alandro
Kevin Gausultan Hadith Mangunkusumo
Muhammad Kusni
Yi Chieh Wu
Muhammad Akhsin Muflikhun
Failure configuration and evaluation of hybrid CFRP-GFRP laminates using innovative Arcan fixture: Experimental and simulation approach
Composites Part C: Open Access
Iosipescu test
3D Hashin's damage
Shear properties
Hybrid composite
title Failure configuration and evaluation of hybrid CFRP-GFRP laminates using innovative Arcan fixture: Experimental and simulation approach
title_full Failure configuration and evaluation of hybrid CFRP-GFRP laminates using innovative Arcan fixture: Experimental and simulation approach
title_fullStr Failure configuration and evaluation of hybrid CFRP-GFRP laminates using innovative Arcan fixture: Experimental and simulation approach
title_full_unstemmed Failure configuration and evaluation of hybrid CFRP-GFRP laminates using innovative Arcan fixture: Experimental and simulation approach
title_short Failure configuration and evaluation of hybrid CFRP-GFRP laminates using innovative Arcan fixture: Experimental and simulation approach
title_sort failure configuration and evaluation of hybrid cfrp gfrp laminates using innovative arcan fixture experimental and simulation approach
topic Iosipescu test
3D Hashin's damage
Shear properties
Hybrid composite
url http://www.sciencedirect.com/science/article/pii/S2666682024000239
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