Analysing and predicting failure of injection-moulded short-fibre composite components
File(s)62286_Fullpaper_FUJITA_YUKI.pdf (625.3 KB)
Accepted version
Author(s)
Fujita, Y
Noda, S
Takahashi, J
Greenhalgh, ES
Pimenta, S
Type
Conference Paper
Abstract
Injection-moulded short-fibre composites are lightweight materials suitable for highvolume applications; however, current simulation methods for these materials cannot yet predict failure accurately. This work proposes a methodology to predict failure of injection-moulded short-glass-fibre reinforced PA66 composite components, based on experimentally measured properties. The material's fracture toughness was characterized for different fibre orientations, and these values were used as the input for cohesive zone modelling in Finite Element analyses of the components, coupled with simulations of the injection-moulding process. The coupled process/structural simulations using cohesive zone modelling presented excellent agreement with the experimental data of the component tests, highlighting the importance of accounting for the finite fracture toughness of the material to accurately predict the ultimate failure of injection-moulded short-fibre reinforced PA66 composite components.
Date Issued
2022-12-12
Date Acceptance
2022-06-26
Citation
Proceedings of the 20th European Conference on Composite Materials: Composites Meet Sustainability, 2022, 4, pp.312-317
ISBN
9782970161400
Publisher
EPFL Lausanne, Composite Construction Laboratory
Start Page
312
End Page
317
Journal / Book Title
Proceedings of the 20th European Conference on Composite Materials: Composites Meet Sustainability
Volume
4
Copyright Statement
©2022 1st Author et al. published under CC BY-NC 4.0 license
License URL
Identifier
https://infoscience.epfl.ch/record/298799?ln=en
Source
ECCM20 - The 20th European Conference on Composite Materials, EPFL
Publication Status
Published
Start Date
2022-06-26
Finish Date
2022-06-30
Coverage Spatial
Lausanne
Date Publish Online
2022-12-12