Characterization of carbon fibre reinforced polyphenylene sulfide composite under interlaminar shear strength
Aerospace industry is seeking thermoplastic composites materials due to several advantages over thermoset material and one of them is mechanical properties. Mechanical properties of thermoplastic composite materials are found to be superior compared to thermoset materials. High strength fibre compos...
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Semarak Ilmu Publishing
2023
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my.utem.eprints.277732024-10-07T12:21:43Z http://eprints.utem.edu.my/id/eprint/27773/ Characterization of carbon fibre reinforced polyphenylene sulfide composite under interlaminar shear strength Razali, Nadlene Kamarolzaman, Anita Akmar Abdul Hamid, Nurfaizey Sheikh Md Fadzullah, Siti Hajar Sharif, Emy Aqillah Hamdan, Hasanudin Ahmad Rashidi, Syazwan Othman, Sarah Aerospace industry is seeking thermoplastic composites materials due to several advantages over thermoset material and one of them is mechanical properties. Mechanical properties of thermoplastic composite materials are found to be superior compared to thermoset materials. High strength fibre composites parts are made of several plies with different fibre orientation with a designed balanced of lay-up sequence. Interlaminar Shear Strength (ILSS) is an essential consideration when designing laminated structures exposed to transverse stresses. It is to predict quality and strength of laminate levels of composite due to, composite failure cannot be observed directly to the propagation of single macroscopic crack when subjected to cyclic loading. This test is employed to evaluate both the interfacial adhesion of the matrix and the influence of the reinforcement on the mechanical characteristics of the composite. This study provides the understanding of ILSS test of 2 different thickness for 6 and 8 plies Carbon Fibre Reinforced Polyphenylene Sulfide (CF/PPS) according to the testing standard EN 2563. The results show that 8 plies have higher ILSS properties compared to 6 plies. The fractography of the CF/PPS composite under Scanning Electron Microscope (SEM) shows good agreement with the experimental values which was recorded 8 plies can withstand to shear strength of 79 MPa with maximum load applied was 2.738kN while, 6 plies recorded 75 MPa on shear strength with load of 1.971kN. More damage/cracks on 6 plies specimen compared to 8 plies. Semarak Ilmu Publishing 2023-02 Article PeerReviewed text en http://eprints.utem.edu.my/id/eprint/27773/2/01505130820241040371004.pdf Razali, Nadlene and Kamarolzaman, Anita Akmar and Abdul Hamid, Nurfaizey and Sheikh Md Fadzullah, Siti Hajar and Sharif, Emy Aqillah and Hamdan, Hasanudin and Ahmad Rashidi, Syazwan and Othman, Sarah (2023) Characterization of carbon fibre reinforced polyphenylene sulfide composite under interlaminar shear strength. Journal of Advanced Research in Applied Mechanics, 102 (1). pp. 1-9. ISSN 2289-7895 https://semarakilmu.com.my/journals/index.php/appl_mech/article/view/1468/1050 10.37934/aram.102.1.19 |
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Aerospace industry is seeking thermoplastic composites materials due to several advantages over thermoset material and one of them is mechanical properties. Mechanical properties of thermoplastic composite materials are found to be superior compared to thermoset materials. High strength fibre composites parts are made of several plies with different fibre orientation with a designed balanced of lay-up sequence. Interlaminar Shear Strength (ILSS) is an essential consideration when designing laminated structures exposed to transverse stresses. It is to predict quality and strength of laminate levels of composite due to, composite failure cannot be observed directly to the propagation of single macroscopic crack when subjected to cyclic loading. This test is employed to evaluate both the interfacial adhesion of the matrix and the influence of the reinforcement on the mechanical characteristics of the composite. This study provides the understanding of ILSS test of 2 different thickness for 6 and 8 plies Carbon Fibre Reinforced Polyphenylene Sulfide (CF/PPS) according to the testing standard EN 2563. The results show that 8 plies have higher ILSS properties compared to 6 plies. The fractography of the CF/PPS composite under Scanning Electron Microscope (SEM) shows good agreement with the experimental values which was recorded 8 plies can withstand to shear strength of 79 MPa with maximum load applied was 2.738kN while, 6 plies recorded 75 MPa on shear strength with load of 1.971kN. More damage/cracks on 6 plies specimen compared to 8 plies. |
format |
Article |
author |
Razali, Nadlene Kamarolzaman, Anita Akmar Abdul Hamid, Nurfaizey Sheikh Md Fadzullah, Siti Hajar Sharif, Emy Aqillah Hamdan, Hasanudin Ahmad Rashidi, Syazwan Othman, Sarah |
spellingShingle |
Razali, Nadlene Kamarolzaman, Anita Akmar Abdul Hamid, Nurfaizey Sheikh Md Fadzullah, Siti Hajar Sharif, Emy Aqillah Hamdan, Hasanudin Ahmad Rashidi, Syazwan Othman, Sarah Characterization of carbon fibre reinforced polyphenylene sulfide composite under interlaminar shear strength |
author_facet |
Razali, Nadlene Kamarolzaman, Anita Akmar Abdul Hamid, Nurfaizey Sheikh Md Fadzullah, Siti Hajar Sharif, Emy Aqillah Hamdan, Hasanudin Ahmad Rashidi, Syazwan Othman, Sarah |
author_sort |
Razali, Nadlene |
title |
Characterization of carbon fibre reinforced polyphenylene sulfide composite under interlaminar shear strength |
title_short |
Characterization of carbon fibre reinforced polyphenylene sulfide composite under interlaminar shear strength |
title_full |
Characterization of carbon fibre reinforced polyphenylene sulfide composite under interlaminar shear strength |
title_fullStr |
Characterization of carbon fibre reinforced polyphenylene sulfide composite under interlaminar shear strength |
title_full_unstemmed |
Characterization of carbon fibre reinforced polyphenylene sulfide composite under interlaminar shear strength |
title_sort |
characterization of carbon fibre reinforced polyphenylene sulfide composite under interlaminar shear strength |
publisher |
Semarak Ilmu Publishing |
publishDate |
2023 |
url |
http://eprints.utem.edu.my/id/eprint/27773/2/01505130820241040371004.pdf http://eprints.utem.edu.my/id/eprint/27773/ https://semarakilmu.com.my/journals/index.php/appl_mech/article/view/1468/1050 |
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1814061425969070080 |
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13.244413 |