Crushing behaviour of plain weave composite hexagonal cellular structure
The tradition of fibre composite materials in energy absorbing tube applications has gained interest in structural collisions in the composite materials industry. Thus, the subject of this work is the experimental investigation to understand the effects of the failure initiator at the specimen’s e...
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2020
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my-ukm.journal.159162020-12-07T17:01:16Z http://journalarticle.ukm.my/15916/ Crushing behaviour of plain weave composite hexagonal cellular structure M.F.M., Alkbir Fatihhi, Januddi Adnan Baki, S.M. Sapuan, M.S.E. Kosnan, S.B. Mohamed, Hamuoda, M.S. A. Endut, The tradition of fibre composite materials in energy absorbing tube applications has gained interest in structural collisions in the composite materials industry. Thus, the subject of this work is the experimental investigation to understand the effects of the failure initiator at the specimen’s edge, causing the increase in the specific absorbed energy (SEA), as well as the influence of the cellular structure composed of cells with small hexagonal angle exhibited high energy absorption capability. An extensive experimental investigation of an in plane crashing behavior of the composite hexagonal cellular structure between platen has been carried out. The cellular structure composed of hexagonal cells with angles varying between 45 and 60°. The materials used to accomplish the study are the plain weave E-glass fabric as a reinforcement and the epoxy resin system as a matrix. Furthermore, the specific energy absorption increases as the hexagonal angle increases. Penerbit Universiti Kebangsaan Malaysia 2020-09 Article PeerReviewed application/pdf en http://journalarticle.ukm.my/15916/1/18.pdf M.F.M., Alkbir and Fatihhi, Januddi and Adnan Baki, and S.M. Sapuan, and M.S.E. Kosnan, and S.B. Mohamed, and Hamuoda, M.S. and A. Endut, (2020) Crushing behaviour of plain weave composite hexagonal cellular structure. Sains Malaysiana, 49 (9). pp. 2211-2219. ISSN 0126-6039 http://www.ukm.my/jsm/malay_journals/jilid49bil9_2020/KandunganJilid49Bil9_2020.html |
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The tradition of fibre composite materials in energy absorbing tube applications has gained interest in structural
collisions in the composite materials industry. Thus, the subject of this work is the experimental investigation to understand
the effects of the failure initiator at the specimen’s edge, causing the increase in the specific absorbed energy
(SEA), as well as the influence of the cellular structure composed of cells with small hexagonal angle exhibited high
energy absorption capability. An extensive experimental investigation of an in plane crashing behavior of the composite
hexagonal cellular structure between platen has been carried out. The cellular structure composed of hexagonal cells
with angles varying between 45 and 60°. The materials used to accomplish the study are the plain weave E-glass
fabric as a reinforcement and the epoxy resin system as a matrix. Furthermore, the specific energy absorption increases
as the hexagonal angle increases. |
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Article |
author |
M.F.M., Alkbir Fatihhi, Januddi Adnan Baki, S.M. Sapuan, M.S.E. Kosnan, S.B. Mohamed, Hamuoda, M.S. A. Endut, |
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M.F.M., Alkbir Fatihhi, Januddi Adnan Baki, S.M. Sapuan, M.S.E. Kosnan, S.B. Mohamed, Hamuoda, M.S. A. Endut, Crushing behaviour of plain weave composite hexagonal cellular structure |
author_facet |
M.F.M., Alkbir Fatihhi, Januddi Adnan Baki, S.M. Sapuan, M.S.E. Kosnan, S.B. Mohamed, Hamuoda, M.S. A. Endut, |
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M.F.M., Alkbir |
title |
Crushing behaviour of plain weave composite hexagonal cellular structure |
title_short |
Crushing behaviour of plain weave composite hexagonal cellular structure |
title_full |
Crushing behaviour of plain weave composite hexagonal cellular structure |
title_fullStr |
Crushing behaviour of plain weave composite hexagonal cellular structure |
title_full_unstemmed |
Crushing behaviour of plain weave composite hexagonal cellular structure |
title_sort |
crushing behaviour of plain weave composite hexagonal cellular structure |
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Penerbit Universiti Kebangsaan Malaysia |
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2020 |
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http://journalarticle.ukm.my/15916/1/18.pdf http://journalarticle.ukm.my/15916/ http://www.ukm.my/jsm/malay_journals/jilid49bil9_2020/KandunganJilid49Bil9_2020.html |
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