The Effects Of Stacking Configuration On The Response Of Tensile And Quasi-Static Penetration To Woven Kenaf/Glass Hybrid Composite Metal Laminate

The hybridization of natural and synthetic fibers in composite materials has gained the attention in the research field due to environmental awareness. Therefore, this study focuses on the effects of fiber stacking configuration on the tensile and quasi-static penetration of kenaf/glass hybrid...

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Main Authors: Subramaniam, Kathiravan, Dhar Malingam, Sivakumar, Ng, Lin Feng, Bapokutty, Omar
Format: Article
Published: John Wiley and Sons Inc. 2017
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Online Access:http://eprints.utem.edu.my/id/eprint/20956/
https://onlinelibrary.wiley.com/doi/full/10.1002/pc.24691
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Institution: Universiti Teknikal Malaysia Melaka
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spelling my.utem.eprints.209562020-11-27T08:49:12Z http://eprints.utem.edu.my/id/eprint/20956/ The Effects Of Stacking Configuration On The Response Of Tensile And Quasi-Static Penetration To Woven Kenaf/Glass Hybrid Composite Metal Laminate Subramaniam, Kathiravan Dhar Malingam, Sivakumar Ng, Lin Feng Bapokutty, Omar T Technology (General) TA Engineering (General). Civil engineering (General) The hybridization of natural and synthetic fibers in composite materials has gained the attention in the research field due to environmental awareness. Therefore, this study focuses on the effects of fiber stacking configuration on the tensile and quasi-static penetration of kenaf/glass hybrid fiber metal laminates (FMLs). Kenaf/glass reinforced polypropylene FMLs with two different hybrid stacking configurations were prepared using hot compression process. Non-hybrid kenaf and glass fiber reinforced metal laminates were also prepared for comparison. The tensile test was conducted according to ASTM E8, while the quasi-static penetration test was carried out in accordance with ASTM D 6264 using 12.7 and 20 mm hemispherical indenters. The fractured surface of FMLs due to tensile loading was examined using scanning electron microscope, while optical micrograph was used to investigate the failure mechanism of quasi-statically penetrated laminates. From the results, FMLs with the glass plies at the outer layers of composite (H1) showed a positive hybrid effect as they displayed better tensile and penetration resistance, compared to the non-hybrid kenaf and glass reinforced FMLs. Furthermore, it could be seen that the overall performance of FMLs decreased as the kenaf content in the laminates further increases for hybrid FML. John Wiley and Sons Inc. 2017-12 Article PeerReviewed Subramaniam, Kathiravan and Dhar Malingam, Sivakumar and Ng, Lin Feng and Bapokutty, Omar (2017) The Effects Of Stacking Configuration On The Response Of Tensile And Quasi-Static Penetration To Woven Kenaf/Glass Hybrid Composite Metal Laminate. Polymer Composites. pp. 1-10. ISSN 0272-8397 https://onlinelibrary.wiley.com/doi/full/10.1002/pc.24691 10.1002/pc.24691
institution Universiti Teknikal Malaysia Melaka
building UTEM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknikal Malaysia Melaka
content_source UTEM Institutional Repository
url_provider http://eprints.utem.edu.my/
topic T Technology (General)
TA Engineering (General). Civil engineering (General)
spellingShingle T Technology (General)
TA Engineering (General). Civil engineering (General)
Subramaniam, Kathiravan
Dhar Malingam, Sivakumar
Ng, Lin Feng
Bapokutty, Omar
The Effects Of Stacking Configuration On The Response Of Tensile And Quasi-Static Penetration To Woven Kenaf/Glass Hybrid Composite Metal Laminate
description The hybridization of natural and synthetic fibers in composite materials has gained the attention in the research field due to environmental awareness. Therefore, this study focuses on the effects of fiber stacking configuration on the tensile and quasi-static penetration of kenaf/glass hybrid fiber metal laminates (FMLs). Kenaf/glass reinforced polypropylene FMLs with two different hybrid stacking configurations were prepared using hot compression process. Non-hybrid kenaf and glass fiber reinforced metal laminates were also prepared for comparison. The tensile test was conducted according to ASTM E8, while the quasi-static penetration test was carried out in accordance with ASTM D 6264 using 12.7 and 20 mm hemispherical indenters. The fractured surface of FMLs due to tensile loading was examined using scanning electron microscope, while optical micrograph was used to investigate the failure mechanism of quasi-statically penetrated laminates. From the results, FMLs with the glass plies at the outer layers of composite (H1) showed a positive hybrid effect as they displayed better tensile and penetration resistance, compared to the non-hybrid kenaf and glass reinforced FMLs. Furthermore, it could be seen that the overall performance of FMLs decreased as the kenaf content in the laminates further increases for hybrid FML.
format Article
author Subramaniam, Kathiravan
Dhar Malingam, Sivakumar
Ng, Lin Feng
Bapokutty, Omar
author_facet Subramaniam, Kathiravan
Dhar Malingam, Sivakumar
Ng, Lin Feng
Bapokutty, Omar
author_sort Subramaniam, Kathiravan
title The Effects Of Stacking Configuration On The Response Of Tensile And Quasi-Static Penetration To Woven Kenaf/Glass Hybrid Composite Metal Laminate
title_short The Effects Of Stacking Configuration On The Response Of Tensile And Quasi-Static Penetration To Woven Kenaf/Glass Hybrid Composite Metal Laminate
title_full The Effects Of Stacking Configuration On The Response Of Tensile And Quasi-Static Penetration To Woven Kenaf/Glass Hybrid Composite Metal Laminate
title_fullStr The Effects Of Stacking Configuration On The Response Of Tensile And Quasi-Static Penetration To Woven Kenaf/Glass Hybrid Composite Metal Laminate
title_full_unstemmed The Effects Of Stacking Configuration On The Response Of Tensile And Quasi-Static Penetration To Woven Kenaf/Glass Hybrid Composite Metal Laminate
title_sort effects of stacking configuration on the response of tensile and quasi-static penetration to woven kenaf/glass hybrid composite metal laminate
publisher John Wiley and Sons Inc.
publishDate 2017
url http://eprints.utem.edu.my/id/eprint/20956/
https://onlinelibrary.wiley.com/doi/full/10.1002/pc.24691
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