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Simulation-based size optimisation of hot-end channel for pre-impregnated continuous fibre-reinforced polymer composite fused deposition modelling

Xuguang Xu, Huilin Ren, Feihu Zhao Orcid Logo, Yi Xiong Orcid Logo

Journal of Engineering Design, Pages: 1 - 16

Swansea University Author: Feihu Zhao Orcid Logo

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Published in: Journal of Engineering Design
ISSN: 0954-4828 1466-1837
Published: Informa UK Limited 2025
Online Access: Check full text

URI: https://cronfa.swan.ac.uk/Record/cronfa70818
first_indexed 2025-11-03T11:41:02Z
last_indexed 2026-01-15T05:28:28Z
id cronfa70818
recordtype SURis
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spelling 2026-01-14T14:49:50.1073173 v2 70818 2025-11-03 Simulation-based size optimisation of hot-end channel for pre-impregnated continuous fibre-reinforced polymer composite fused deposition modelling 1c6e79b6edd08c88a8d17a241cd78630 0000-0003-0515-6808 Feihu Zhao Feihu Zhao true false 2025-11-03 EAAS Journal Article Journal of Engineering Design 0 1 16 Informa UK Limited 0954-4828 1466-1837 Additive manufacturing, continuous fibre-reinforced composite, numerical modelling, geometric optimisation 23 10 2025 2025-10-23 10.1080/09544828.2025.2576424 COLLEGE NANME Engineering and Applied Sciences School COLLEGE CODE EAAS Swansea University Not Required This work was supported by Department of Education of Guangdong Province: [Grant Number No. 2022ZDZX3020]; Guangdong Innovative and Entrepreneurial Research Team Program: [Grant Number No. 2021ZT09X256]. 2026-01-14T14:49:50.1073173 2025-11-03T11:38:21.4693337 Faculty of Science and Engineering School of Engineering and Applied Sciences - Biomedical Engineering Xuguang Xu 1 Huilin Ren 2 Feihu Zhao 0000-0003-0515-6808 3 Yi Xiong 0000-0002-0184-8607 4
title Simulation-based size optimisation of hot-end channel for pre-impregnated continuous fibre-reinforced polymer composite fused deposition modelling
spellingShingle Simulation-based size optimisation of hot-end channel for pre-impregnated continuous fibre-reinforced polymer composite fused deposition modelling
Feihu Zhao
title_short Simulation-based size optimisation of hot-end channel for pre-impregnated continuous fibre-reinforced polymer composite fused deposition modelling
title_full Simulation-based size optimisation of hot-end channel for pre-impregnated continuous fibre-reinforced polymer composite fused deposition modelling
title_fullStr Simulation-based size optimisation of hot-end channel for pre-impregnated continuous fibre-reinforced polymer composite fused deposition modelling
title_full_unstemmed Simulation-based size optimisation of hot-end channel for pre-impregnated continuous fibre-reinforced polymer composite fused deposition modelling
title_sort Simulation-based size optimisation of hot-end channel for pre-impregnated continuous fibre-reinforced polymer composite fused deposition modelling
author_id_str_mv 1c6e79b6edd08c88a8d17a241cd78630
author_id_fullname_str_mv 1c6e79b6edd08c88a8d17a241cd78630_***_Feihu Zhao
author Feihu Zhao
author2 Xuguang Xu
Huilin Ren
Feihu Zhao
Yi Xiong
format Journal article
container_title Journal of Engineering Design
container_volume 0
container_start_page 1
publishDate 2025
institution Swansea University
issn 0954-4828
1466-1837
doi_str_mv 10.1080/09544828.2025.2576424
publisher Informa UK Limited
college_str Faculty of Science and Engineering
hierarchytype
hierarchy_top_id facultyofscienceandengineering
hierarchy_top_title Faculty of Science and Engineering
hierarchy_parent_id facultyofscienceandengineering
hierarchy_parent_title Faculty of Science and Engineering
department_str School of Engineering and Applied Sciences - Biomedical Engineering{{{_:::_}}}Faculty of Science and Engineering{{{_:::_}}}School of Engineering and Applied Sciences - Biomedical Engineering
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active_str 0
published_date 2025-10-23T05:33:50Z
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