Internal geometry evaluation of non-crimp 3D orthogonal woven carbon fabric composite

Date

2010-09

Authors

Lomov, Stepan Vladimirovitch
Bogdanovich, Alexander E.
Mungalov, Dimitri
Verpoest, Ignaas

Journal Title

Journal ISSN

Volume Title

Publisher

Elsevier

Abstract

Measurements of the internal geometry of a carbon fiber non-crimp 3D orthogonal woven composite are presented, including. waviness of the yarns, cross sections of the yarns, dimensions of the yarn cross sections, and local fiber volume fraction. The measured waviness of warp and fill yarns are well below 0.1%. which shows that the fabric termed here "non-crimp" has nearly straight in-plane fibers as-produced, and this feature is maintained after going through all steps of fabric handling and composite manufacturing The variability of dimensions of the yarns is in the range of 4-8% for warp and fill directions, while the variability of the yarn spacing is in the range of 3-4%. These variability parameters are lower than respective ranges of variability of the yarn waviness and the cross-sectional dimensions in typical carbon 2D weave and 3D interlock weave composites, which are also illustrated in this work for comparison.

Description

Keywords

3-Dimensional reinforcement, Polymer-matrix composites (PMCs), Microstructures, Optical microscopy, Tensile properties, Damage evolution, Part 1, Weave, Permeability, Engineering, Materials science, Carbon fibers, Composites, Fabric, Microscopy, Microstructure, Polypropylene, Reinforcement, Weaving, Wool, Yarn, Carbon fibers, Fabrics, Microstructure, Optical data storage, Optical instruments, Optical microscopy, Polymer matrix composites, Polypropylenes, Reinforcement, Three dimensional, 3-dimensional reinforcement, 3D orthogonal, 3D orthogonal woven composite, A-carbon, A. Polymer-matrix composites (PMCs), B. Microstructures, Composite manufacturing, Cross section, Fabric handling, Fiber volume fractions, In-plane, Internal geometry, Woven carbon fabric, Weaving

Citation

Karahan, M. vd. (2010). "Internal geometry evaluation of non-crimp 3D orthogonal woven carbon fabric composite". Composites part A-applied Science and Manufacturing, 41(9), 1301-1311.