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Moulding prepreg platelets into high fibre loading fraction carbon fibre-reinforced syntactic epoxy foams

Year of publication

2025

Authors

Zhang, Yifang; Wang, Jier; Turpeinen, Tuomas; Salminen, Kristian; Li, Joanne; Smaradhana, Dharu Feby; Panesar, Ajit; Lee, Koon Yang

Abstract

<p>This study presents a novel method for manufacturing high fibre content carbon fibre-reinforced syntactic epoxy foams by moulding prepreg platelets with hollow glass microspheres. The prepreg platelets were either (i) dry-mixed at room temperature or (ii) mixed at cryogenic temperature in liquid nitrogen with hollow glass microspheres prior to compression moulding. This approach achieves a carbon fibre volume fraction of up to 49 %, addressing the limitations of low fibre content in conventional syntactic foams. The resulting materials exhibit enhanced mechanical properties, including a compressive modulus of ∼6 GPa and ∼3.5 GPa in the in-plane and through-thickness directions, respectively. The anisotropy in mechanical properties is attributed to the anisotropic packing of the prepreg platelets. Packing simulations using PyBullet confirmed that microspheres did not disrupt platelet arrangement, maintaining a packing efficiency of ∼63 % while filling inter-platelet gaps. Although cryogenic processing improved the mixing process, its impact on mechanical performance was minimal. This study demonstrates a simple manufacturing approach to produce high performance carbon fibre reinforced porous polymer composites suitable for lightweighting applications.</p>
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Organizations and authors

VTT Technical Research Centre of Finland Ltd

Salminen Kristian

Turpeinen Tuomas

Publication type

Publication format

Article

Parent publication type

Journal

Article type

Original article

Audience

Scientific

Peer-reviewed

Peer-Reviewed

MINEDU's publication type classification code

A1 Journal article (refereed), original research

Publication channel information

Volume

194

Article number

108865

​Publication forum

53877

​Publication forum level

2

Open access

Open access in the publisher’s service

Yes

Open access of publication channel

Partially open publication channel

License of the publisher’s version

CC BY

Self-archived

No

Other information

Fields of science

Materials engineering

Keywords

[object Object],[object Object],[object Object],[object Object],[object Object]

Identified topic

[object Object]

Language

English

International co-publication

Yes

Co-publication with a company

No

DOI

10.1016/j.compositesa.2025.108865

The publication is included in the Ministry of Education and Culture’s Publication data collection

Yes