Knowledge Agora



Similar Articles

Title Multiple closed loop recycling of carbon fibre composites with the HiPerDiF (High Performance Discontinuous Fibre) method
ID_Doc 29710
Authors Longana, ML; Ong, N; Yu, HN; Potter, KD
Title Multiple closed loop recycling of carbon fibre composites with the HiPerDiF (High Performance Discontinuous Fibre) method
Year 2016
Published
Abstract The aim of this article is to apply the concept of Circular Economy, where end-of-life products and production wastes are recycled into reusable materials, to carbon fibre reinforced plastics. This not only reduces the amount of material disposed into landfills, but also enables manufacturers to achieve significant savings. While current research focuses on the performance of recycled carbon fibre reinforced composites after one recycling process, this paper aims to investigate the performance of composites remanufactured from short carbon fibres that have undergone multiple recycling loops with the High Performance Discontinuous Fibre (HiPerDiF) method. The HiPerDiF method enables the production of aligned short fibre composites with exceptional mechanical properties. In addition, using short fibres makes the composite material intrinsically easy to recycle. Short virgin carbon fibres underwent two loops of fibre reclamation and remanufacturing. A correlation between the composites' mechanical properties and the nature of the fibres, i.e. reduction in fibre lengths, as well as the residual matrix accumulation from the reclaiming process over a number of recycling loops, was established. (C) 2016 The Authors. Published by Elsevier Ltd.
PDF https://doi.org/10.1016/j.compstruct.2016.06.018

Similar Articles

ID Score Article
28021 Gopalraj, SK; Kärki, T A review on the recycling of waste carbon fibre/glass fibre-reinforced composites: fibre recovery, properties and life-cycle analysis(2020)Sn Applied Sciences, 2.0, 3
2936 Arif, ZU; Khalid, MY; Ahmed, W; Arshad, H; Ullah, S Recycling of the glass/carbon fibre reinforced polymer composites: A step towards the circular economy(2022)Polymer-Plastics Technology And Materials, 61, 7
16933 Butenegro, JA; Bahrami, M; Abenojar, J; Martínez, MA Recent Progress in Carbon Fiber Reinforced Polymers Recycling: A Review of Recycling Methods and Reuse of Carbon Fibers(2021)Materials, 14, 21
21426 Qureshi, J A Review of Recycling Methods for Fibre Reinforced Polymer Composites(2022)Sustainability, 14.0, 24
27380 Elango, I; Henderson, LC; Arumugam, V Recycled milled fibres in sustainable composite materials: A comprehensive review and future prospects(2024)
4973 Naqvi, SR; Prabhakara, HM; Bramer, EA; Dierkes, W; Akkerman, R; Brem, G A critical review on recycling of end-of-life carbon fibre/glass fibre reinforced composites waste using pyrolysis towards a circular economy(2018)
16953 Colombo, B; Gaiardelli, P; Dotti, S; Caretto, F Recycling technologies for fibre-reinforced plastic composite materials: A bibliometric analysis using a systematic approach(2022)Journal Of Composite Materials, 56, 19
23687 Khalid, MY; Ariff, ZU; Ahmed, W; Arshad, H Recent trends in recycling and reusing techniques of different plastic polymers and their composite materials(2022)
2708 Abbate, E; Mirpourian, M; Brondi, C; Ballarino, A; Copani, G Environmental and Economic Assessment of Repairable Carbon-Fiber-Reinforced Polymers in Circular Economy Perspective(2022)Materials, 15, 9
28718 Aldosari, SM; Alotaibi, BM; Alblalaihid, KS; Aldoihi, SA; Alogab, KA; Alsaleh, SS; Alshamary, DO; Alanazi, TH; Aldrees, SD; Alshammari, BA Mechanical Recycling of Carbon Fiber-Reinforced Polymer in a Circular Economy(2024)Polymers, 16.0, 10
Scroll