Spring back of thick curved uni-directional carbon fibre reinforced composite laminate for aircraft structure application

Spring-back phenomena of a CFRP part takes place after it has gone through a high temperature cure cycle inside an autoclave. These phenomena have caused quality concerns for aerospace part manufacturers due to the part being out-of-tolerance for surface profile. This paper presents the results of t...

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Main Authors: Zakaria, Mushab, Shaik Dawood, Mohd. Sultan Ibrahim, Aminanda, Yulfian, Ahmad Rashidi, Syazwan, Mat Sah, Mohd Azizi
Format: Article
Language:English
English
Published: Blue Eyes Intelligence Engineering and Sciences Publication 2019
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Online Access:http://irep.iium.edu.my/72586/1/72586_Spring%20back%20of%20thick%20curved%20uni-directional.pdf
http://irep.iium.edu.my/72586/2/72586_Spring%20back%20of%20thick%20curved%20uni-directional_SCOPUS.pdf
http://irep.iium.edu.my/72586/
https://www.ijrte.org/wp-content/uploads/papers/v7i6s/F02440376S19.pdf
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spelling my.iium.irep.725862019-06-13T06:07:29Z http://irep.iium.edu.my/72586/ Spring back of thick curved uni-directional carbon fibre reinforced composite laminate for aircraft structure application Zakaria, Mushab Shaik Dawood, Mohd. Sultan Ibrahim Aminanda, Yulfian Ahmad Rashidi, Syazwan Mat Sah, Mohd Azizi T175 Industrial research. Research and development Spring-back phenomena of a CFRP part takes place after it has gone through a high temperature cure cycle inside an autoclave. These phenomena have caused quality concerns for aerospace part manufacturers due to the part being out-of-tolerance for surface profile. This paper presents the results of the measurement and analysis of thick curved laminates, which are representative of the actual aircraft parts such as the main ribs of an outboard flap. It is a continuation from the previous work with results for flat uni-directional laminates. Curved laminates with sizes of 300mm, 400mm, and 500mm, corner angles of 30°, 45°, and 90°, and thicknesses of 20, 24, and 28 layers were manufactured. The spring-back effect was measured using a 3D scanner to obtain accurate measurements. Within the range of specimen studied in this work, the spring-back value increases with an increment in size. However, for the remaining two factors (thickness and corner angle), the value decreases. Blue Eyes Intelligence Engineering and Sciences Publication 2019-03 Article PeerReviewed application/pdf en http://irep.iium.edu.my/72586/1/72586_Spring%20back%20of%20thick%20curved%20uni-directional.pdf application/pdf en http://irep.iium.edu.my/72586/2/72586_Spring%20back%20of%20thick%20curved%20uni-directional_SCOPUS.pdf Zakaria, Mushab and Shaik Dawood, Mohd. Sultan Ibrahim and Aminanda, Yulfian and Ahmad Rashidi, Syazwan and Mat Sah, Mohd Azizi (2019) Spring back of thick curved uni-directional carbon fibre reinforced composite laminate for aircraft structure application. International Journal of Recent Technology and Engineering (IJRTE), 7 (6S). pp. 224-228. ISSN 2277-3878 https://www.ijrte.org/wp-content/uploads/papers/v7i6s/F02440376S19.pdf
institution Universiti Islam Antarabangsa Malaysia
building IIUM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider International Islamic University Malaysia
content_source IIUM Repository (IREP)
url_provider http://irep.iium.edu.my/
language English
English
topic T175 Industrial research. Research and development
spellingShingle T175 Industrial research. Research and development
Zakaria, Mushab
Shaik Dawood, Mohd. Sultan Ibrahim
Aminanda, Yulfian
Ahmad Rashidi, Syazwan
Mat Sah, Mohd Azizi
Spring back of thick curved uni-directional carbon fibre reinforced composite laminate for aircraft structure application
description Spring-back phenomena of a CFRP part takes place after it has gone through a high temperature cure cycle inside an autoclave. These phenomena have caused quality concerns for aerospace part manufacturers due to the part being out-of-tolerance for surface profile. This paper presents the results of the measurement and analysis of thick curved laminates, which are representative of the actual aircraft parts such as the main ribs of an outboard flap. It is a continuation from the previous work with results for flat uni-directional laminates. Curved laminates with sizes of 300mm, 400mm, and 500mm, corner angles of 30°, 45°, and 90°, and thicknesses of 20, 24, and 28 layers were manufactured. The spring-back effect was measured using a 3D scanner to obtain accurate measurements. Within the range of specimen studied in this work, the spring-back value increases with an increment in size. However, for the remaining two factors (thickness and corner angle), the value decreases.
format Article
author Zakaria, Mushab
Shaik Dawood, Mohd. Sultan Ibrahim
Aminanda, Yulfian
Ahmad Rashidi, Syazwan
Mat Sah, Mohd Azizi
author_facet Zakaria, Mushab
Shaik Dawood, Mohd. Sultan Ibrahim
Aminanda, Yulfian
Ahmad Rashidi, Syazwan
Mat Sah, Mohd Azizi
author_sort Zakaria, Mushab
title Spring back of thick curved uni-directional carbon fibre reinforced composite laminate for aircraft structure application
title_short Spring back of thick curved uni-directional carbon fibre reinforced composite laminate for aircraft structure application
title_full Spring back of thick curved uni-directional carbon fibre reinforced composite laminate for aircraft structure application
title_fullStr Spring back of thick curved uni-directional carbon fibre reinforced composite laminate for aircraft structure application
title_full_unstemmed Spring back of thick curved uni-directional carbon fibre reinforced composite laminate for aircraft structure application
title_sort spring back of thick curved uni-directional carbon fibre reinforced composite laminate for aircraft structure application
publisher Blue Eyes Intelligence Engineering and Sciences Publication
publishDate 2019
url http://irep.iium.edu.my/72586/1/72586_Spring%20back%20of%20thick%20curved%20uni-directional.pdf
http://irep.iium.edu.my/72586/2/72586_Spring%20back%20of%20thick%20curved%20uni-directional_SCOPUS.pdf
http://irep.iium.edu.my/72586/
https://www.ijrte.org/wp-content/uploads/papers/v7i6s/F02440376S19.pdf
_version_ 1643620171293655040
score 13.211869