Strength analysis and failure prediction of thin tow-based discontinuous composites
Artikel i vetenskaplig tidskrift, 2024

Tow Based Discontinuous Composites (TBDCs) are a new class of composite materials which combine in-plane isotropy, high strength and stiffness and enhanced manufacturability. However, due to their complicated micro-architecture, characterising the performance of these materials and predicting their response is challenging. This work develops a complete experimental and analytical framework which identifies all the key properties in the performance of the TBDCs, characterises them experimentally and builds an analytical predictive tool for both the stiffness response and the strength of the TBDC material. Fractography is also utilised to identify the damage mechanisms and correlate them with the analytical predictions. A parametric study is developed which shows the critical effect that the tape thickness and mode II fracture toughness have on the TBDCs. Finally, the performance of the material is compared to similarly developed TBDCs from the literature and shows the significant strength and stiffness increases recorded through the combination of the thin high-modulus tapes and the increased fibre volume fractions.

Scanning electron microscopy (SEM)

Short-fibre composites

Compression moulding

Elastic properties

Interfacial strength

Författare

Ioannis Katsivalis

Chalmers, Industri- och materialvetenskap, Material- och beräkningsmekanik

Mattias Persson

Chalmers, Industri- och materialvetenskap, Material- och beräkningsmekanik

Marcus Johansen

Chalmers, Industri- och materialvetenskap, Material och tillverkning

Florence Moreau

Oxeon AB

Erik Kullgren

Elitkomposit AB

Monica Norrby

Kungliga Tekniska Högskolan (KTH)

Dan Zenkert

Kungliga Tekniska Högskolan (KTH)

Soraia Pimenta

Imperial College London

Leif Asp

Chalmers, Industri- och materialvetenskap, Material- och beräkningsmekanik

Composites Science and Technology

0266-3538 (ISSN)

Vol. 245 110342

Integrerade lättviktstankar för lagring av flytande väte (VOLANT)

Chalmers (Dnr C 2021-0040), 2022-01-01 -- 2023-12-31.

Högtöjningskomposit för utmattningståliga fotproteser

VINNOVA (2021-04048), 2021-12-12 -- 2023-11-30.

Ämneskategorier

Farkostteknik

Kompositmaterial och -teknik

DOI

10.1016/j.compscitech.2023.110342

Mer information

Senast uppdaterat

2023-11-23