Design strategy for 3D layer-to-layer angle interlock woven composites
Design strategy for 3D layer-to-layer angle interlock woven composites
A design strategy for 3D layer-to-layer angle interlock woven composites has been established by employing a set of three key properties of the weave (KPoWs): the global fibre volume fraction, the interlocking angle and the ratio of the weft tow volume to the warp tow volume. Using analytically derived expressions of the KPoWs, their variation trends relative to the manufacturing parameters have been revealed. At the same time, via a range of systematic computational material characterisation exercises, the KPoWs were shown to be sufficient for representing the woven reinforcement as far as the elastic behaviour predictions are concerned, because the effective elastic properties were found to follow consistent variation trends with the KPoWs. As a result, through use of KPoWs, manufacturing parameters have been associated with the effective elastic properties in a systematic manner. This offer means for obtaining a desirable elastic behaviour of 3D woven composites via variation of their internal architecture. The design method developed is the alternative to trial-and-error-based selection method conventionally adopted for this type of materials. As an example of application of the proposed method, a woven composite with balanced weft and warp properties has been designed.
3D woven composite, Analytical modelling, Elastic characterisation, Key Properties of Weave (KPoWs), Mechanical properties
Sitnikova, Elena
e0c2f901-24fe-43d0-88e8-76f415675104
Xu, Mingming
b1989557-3ad2-4fa9-8d94-a36c95524321
Kong, Weiyi
4d0430b3-f693-4095-8af5-ba9f8b03900e
Hu, Shoufeng
bbbe6abe-f79d-48ef-9e1e-16e52a19fe51
Li, Shuguang
f99c53b3-e42e-456f-97df-4c4e06de4a40
9 November 2024
Sitnikova, Elena
e0c2f901-24fe-43d0-88e8-76f415675104
Xu, Mingming
b1989557-3ad2-4fa9-8d94-a36c95524321
Kong, Weiyi
4d0430b3-f693-4095-8af5-ba9f8b03900e
Hu, Shoufeng
bbbe6abe-f79d-48ef-9e1e-16e52a19fe51
Li, Shuguang
f99c53b3-e42e-456f-97df-4c4e06de4a40
Sitnikova, Elena, Xu, Mingming, Kong, Weiyi, Hu, Shoufeng and Li, Shuguang
(2024)
Design strategy for 3D layer-to-layer angle interlock woven composites.
Materials & Design, 247, [113414].
(doi:10.1016/j.matdes.2024.113414).
Abstract
A design strategy for 3D layer-to-layer angle interlock woven composites has been established by employing a set of three key properties of the weave (KPoWs): the global fibre volume fraction, the interlocking angle and the ratio of the weft tow volume to the warp tow volume. Using analytically derived expressions of the KPoWs, their variation trends relative to the manufacturing parameters have been revealed. At the same time, via a range of systematic computational material characterisation exercises, the KPoWs were shown to be sufficient for representing the woven reinforcement as far as the elastic behaviour predictions are concerned, because the effective elastic properties were found to follow consistent variation trends with the KPoWs. As a result, through use of KPoWs, manufacturing parameters have been associated with the effective elastic properties in a systematic manner. This offer means for obtaining a desirable elastic behaviour of 3D woven composites via variation of their internal architecture. The design method developed is the alternative to trial-and-error-based selection method conventionally adopted for this type of materials. As an example of application of the proposed method, a woven composite with balanced weft and warp properties has been designed.
Text
Design_strategy_for_3D_woven_composites-ACCEPTED
- Accepted Manuscript
Text
1-s2.0-S0264127524007895-main
- Version of Record
More information
Accepted/In Press date: 25 October 2024
Published date: 9 November 2024
Keywords:
3D woven composite, Analytical modelling, Elastic characterisation, Key Properties of Weave (KPoWs), Mechanical properties
Identifiers
Local EPrints ID: 497700
URI: http://eprints.soton.ac.uk/id/eprint/497700
ISSN: 0261-3069
PURE UUID: cd4e6f65-9177-479b-829b-0f79fc49d9de
Catalogue record
Date deposited: 29 Jan 2025 18:31
Last modified: 22 Aug 2025 02:46
Export record
Altmetrics
Contributors
Author:
Elena Sitnikova
Author:
Mingming Xu
Author:
Weiyi Kong
Author:
Shoufeng Hu
Author:
Shuguang Li
Download statistics
Downloads from ePrints over the past year. Other digital versions may also be available to download e.g. from the publisher's website.
View more statistics