Effect of heat resistant coating on the drilled hole quality of hybrid fiber reinforced epoxy composite

Drilling is considered an inevitable operation for joining components in automotive and aerospace industries. Hybrid fiber reinforced polymer (HFRP) composites have attained enormous attention due to their light weight and higher strength. In this study, HFRP composite was made of glass, carbon fibe...

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Main Authors: Kabir, S., Ahmad, F., Malik, K., Nosbi, N., Gui Llaumat, L.
Format: Article
Published: Novel Carbon Resource Sciences 2020
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85099053612&doi=10.5109%2f4150472&partnerID=40&md5=f9509b4bab43e478afe3dac247a8195d
http://eprints.utp.edu.my/29744/
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Institution: Universiti Teknologi Petronas
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spelling my.utp.eprints.297442022-03-25T02:49:04Z Effect of heat resistant coating on the drilled hole quality of hybrid fiber reinforced epoxy composite Kabir, S. Ahmad, F. Malik, K. Nosbi, N. Gui Llaumat, L. Drilling is considered an inevitable operation for joining components in automotive and aerospace industries. Hybrid fiber reinforced polymer (HFRP) composites have attained enormous attention due to their light weight and higher strength. In this study, HFRP composite was made of glass, carbon fibers and epoxy. The vacuum infusion molding technique is used to fabricate HFRP composites. Physical and mechanical properties of HFRP composites were analyzed according to ASTM standard. Heat resistant coating was made of conventional coating ingredients with fillers as a binder to enhance coating performance. This coating was applied on HFRP composite. Drilling performance was tested for HFRP and coated HFRP composites to examine the impact of coating of the composite in term of drilled hole quality. Results showed that density was reduced by 10 after applying the coating in HFRP composite. The tensile and flexural strength were found around 441.27 MPa and 409 MPa, respectively. The coating was effective in terms of improving drilled hole quality by minimizing delamination factor. It was found higher with the increment of spindle speed and feed rate for both coated and uncoated HFRP composite samples. Coated samples showed less DF at the entrance as well as exit compared to uncoated composites. © 2020, Novel Carbon Resource Sciences. All rights reserved. Novel Carbon Resource Sciences 2020 Article NonPeerReviewed https://www.scopus.com/inward/record.uri?eid=2-s2.0-85099053612&doi=10.5109%2f4150472&partnerID=40&md5=f9509b4bab43e478afe3dac247a8195d Kabir, S. and Ahmad, F. and Malik, K. and Nosbi, N. and Gui Llaumat, L. (2020) Effect of heat resistant coating on the drilled hole quality of hybrid fiber reinforced epoxy composite. Evergreen, 7 (4). pp. 530-537. http://eprints.utp.edu.my/29744/
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Institutional Repository
url_provider http://eprints.utp.edu.my/
description Drilling is considered an inevitable operation for joining components in automotive and aerospace industries. Hybrid fiber reinforced polymer (HFRP) composites have attained enormous attention due to their light weight and higher strength. In this study, HFRP composite was made of glass, carbon fibers and epoxy. The vacuum infusion molding technique is used to fabricate HFRP composites. Physical and mechanical properties of HFRP composites were analyzed according to ASTM standard. Heat resistant coating was made of conventional coating ingredients with fillers as a binder to enhance coating performance. This coating was applied on HFRP composite. Drilling performance was tested for HFRP and coated HFRP composites to examine the impact of coating of the composite in term of drilled hole quality. Results showed that density was reduced by 10 after applying the coating in HFRP composite. The tensile and flexural strength were found around 441.27 MPa and 409 MPa, respectively. The coating was effective in terms of improving drilled hole quality by minimizing delamination factor. It was found higher with the increment of spindle speed and feed rate for both coated and uncoated HFRP composite samples. Coated samples showed less DF at the entrance as well as exit compared to uncoated composites. © 2020, Novel Carbon Resource Sciences. All rights reserved.
format Article
author Kabir, S.
Ahmad, F.
Malik, K.
Nosbi, N.
Gui Llaumat, L.
spellingShingle Kabir, S.
Ahmad, F.
Malik, K.
Nosbi, N.
Gui Llaumat, L.
Effect of heat resistant coating on the drilled hole quality of hybrid fiber reinforced epoxy composite
author_facet Kabir, S.
Ahmad, F.
Malik, K.
Nosbi, N.
Gui Llaumat, L.
author_sort Kabir, S.
title Effect of heat resistant coating on the drilled hole quality of hybrid fiber reinforced epoxy composite
title_short Effect of heat resistant coating on the drilled hole quality of hybrid fiber reinforced epoxy composite
title_full Effect of heat resistant coating on the drilled hole quality of hybrid fiber reinforced epoxy composite
title_fullStr Effect of heat resistant coating on the drilled hole quality of hybrid fiber reinforced epoxy composite
title_full_unstemmed Effect of heat resistant coating on the drilled hole quality of hybrid fiber reinforced epoxy composite
title_sort effect of heat resistant coating on the drilled hole quality of hybrid fiber reinforced epoxy composite
publisher Novel Carbon Resource Sciences
publishDate 2020
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85099053612&doi=10.5109%2f4150472&partnerID=40&md5=f9509b4bab43e478afe3dac247a8195d
http://eprints.utp.edu.my/29744/
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