OBINNA OKOLIE o.okolie@rgu.ac.uk
Research Student
OBINNA OKOLIE o.okolie@rgu.ac.uk
Research Student
Jim Latto
Professor Nadimul Faisal N.H.Faisal@rgu.ac.uk
Professor
Harvey Jamieson
Arindam Mukherji
Professor James Njuguna j.njuguna@rgu.ac.uk
NSC Director of Research and Innovation
Thermoplastic composite pipes (TCP) in comparison to other pipes have proven beneficial features due to its flexibility which includes being fit for purpose, lightweight and no corrosion. However, during the manufacturing of TCP which involves the consolidation process, certain defects may be induced in it because of certain parameters, and this can affect the performance of the pipe in the long run as the induced defects might lead to in-service defects. Current techniques used in the industry are facing challenges with on-the-spot detection in a continuous manufacturing system. In TCP manufacturing process, the pipe is regularly monitored. When a defect is noticed, the whole process stops, and the appropriate action is taken. However, shutting down the process is costly; hence it is vital to decrease the downtime during manufacturing to the barest minimum. The solutions include optimizing the process for reduction in the manufacturing defects amount and thoroughly understanding the effect of parameters which causes certain defect types in the pipe. This review covers the current state-of-the-art and challenges associated with characterizing the identified manufacturing induced defects in TCP. It discusses and describes all effective consolidation monitoring strategies for early detection of these defects during manufacturing through the application of suitable sensing technology that is compatible with the TCP. It can be deduced that there is a correlation between manufacturing process to the performance of the final part and selection of characterization technique as well as optimizing process parameters.
OKOLIE, O., LATTO, J., FAISAL, N., JAMIESON, H., MUKHERJI, A. and NJUGUNA, J. 2023. Advances in structural analysis and process monitoring of thermoplastic composite pipes. Heliyon [online], 9(7), e17918. Available from: https://doi.org/10.1016/j.heliyon.2023.e17918
Journal Article Type | Article |
---|---|
Acceptance Date | Jul 1, 2023 |
Online Publication Date | Jul 3, 2023 |
Publication Date | Jul 31, 2023 |
Deposit Date | Jul 7, 2023 |
Publicly Available Date | Jul 7, 2023 |
Journal | Heliyon |
Electronic ISSN | 2405-8440 |
Publisher | Elsevier |
Peer Reviewed | Peer Reviewed |
Volume | 9 |
Issue | 7 |
Article Number | e17918 |
DOI | https://doi.org/10.1016/j.heliyon.2023.e17918 |
Keywords | Thermoplastic composite pipe; Manufacturing defect characterization; Real time process monitoring; Processing parameter optimization; Quality control |
Public URL | https://rgu-repository.worktribe.com/output/2002388 |
OKOLIE 2023 Advances in structural analysis (VOR)
(11 Mb)
PDF
Publisher Licence URL
https://creativecommons.org/licenses/by-nc-nd/4.0/
Copyright Statement
© 2023 Published by Elsevier Ltd.
Version
Final VOR uploaded 2023.08.21
Bio-based sustainable polymers and materials: from processing to biodegradation.
(2023)
Journal Article
Material challenges and opportunities in 3D printing for hip implant applications.
(2022)
Journal Article
3D printing for hip implant applications: a review.
(2020)
Journal Article
An evaluation of the morphological, microstructural and mechanical behaviour of the glass fibre/HDPE thermoplastic composite pipe.
(2022)
Presentation / Conference Contribution
About OpenAIR@RGU
Administrator e-mail: publications@rgu.ac.uk
This application uses the following open-source libraries:
Apache License Version 2.0 (http://www.apache.org/licenses/)
Apache License Version 2.0 (http://www.apache.org/licenses/)
SIL OFL 1.1 (http://scripts.sil.org/OFL)
MIT License (http://opensource.org/licenses/mit-license.html)
CC BY 3.0 ( http://creativecommons.org/licenses/by/3.0/)
Powered by Worktribe © 2025
Advanced Search