Understanding the bending mechanics of uncured carbon fibre prepreg is vital for modelling forming processes and the formation of out-of-plane wrinkling defects. This paper presents a modification of standard Dynamic Mechanical Analysis (DMA) to characterise the viscoelastic bending mechanics of uncured carbon fibre prepreg using Timoshenko beam theory. By post-processing DMA results, the analysis provides temperature and rate-dependent values of inter and intra-ply shear stiffness for a carbon fibre laminate and each individual ply with experimental results for AS4/8552 presented. The new methodology provides a means to parametrise process models, and also gives an indication of optimal manufacturing conditions to enable defect-free forming and consolidation processes.
Cite
@article{arxiv.1709.07940,
title = {Characterisation of bending mechanics in uncured laminated materials using a modified Dynamic Mechanical Analysis},
author = {S. Erland and T. J. Dodwell and R. Butler},
journal= {arXiv preprint arXiv:1709.07940},
year = {2017}
}