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Updated: May 27, 2025

Cutting Procedures, Tensile Testing, and Ageing of Flexible Unidirectional Composite Laminates
Published on: April 27, 2019
Weibull parameters determined from a comprehensive dataset of tensile testing of single carbon fibres
Rajnish Kumar1, Lars P Mikkelsen1, Hans Lilholt1
1Division of Wind Energy Materials and Components, Department of Wind and Energy Systems, Technical University of Denmark, 4000 Roskilde, Denmark.
Abstract:
This data article presents tensile properties of about 1200 single carbon fibres (PYROFIL™ TRW40 50L) tested at eight different gauge lengths in the range of [20; 80] mm with approximately 150 tested fibres for each length. The equivalent fibre diameter distribution is presented, and the mean and standard deviation are found to be (7.37 ± 0.34) µm. The obtained stress-strain curves are analysed by a second-order polynomial fitting method. The initial modulus, (220 ± 3) GPa, and the curvature coefficient (3600 ± 250) GPa are determined. The failure stress distribution is analysed by the Weibull model. A Weibull parameter of is determined, and the characteristic ( ), median ( ) and mean ( ) failure stresses are found to scale linearly with the gauge length. A length scale independent stress-length factor of is determined. The fibre properties determined in this work can be used as parameters to model the mechanical behaviour of carbon fibre composites by Weibull scaling, as done in [1] and [2].
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