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This work presents the results of a study on the permeability and compaction behaviour of textiles under shear deformation.
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The mechanical behaviour of textiles is often of great importance in several industrial applications.
This tester provides the platform to evaluate the thermal and moisture behaviour of textiles.
Accurate understanding of the relationships between the construction and technical behaviour of textiles is the key in engineering textile materials for the intended applications.
Concepts to adjust the delamination behaviour of textile reinforced composites are investigated.
This chapter discusses the cyclic stress fatigue behaviour of textile polymer composites with three-dimensional (3D) fibre architectures.
Compaction behaviour of textile preforms can significantly influence the resin permeability, fibre volume fraction and the geometry of individual tows.
When analysing for instance permeability and mechanical behaviour of advanced textiles, a representative description of the textiles' architecture is desired.
Good prediction of draping behaviour of woven textiles is accessible, but requires a set of preliminary experiments to well characterise the fabric in question.
This chapter discusses the fatigue behaviour of structural textile composites, where the textile yarns are embedded in a plastic matrix to enhance their mechanical properties.
The objective of this study is to provide, by describing the experimental approach, a detailed description of the behaviour of multilayer Textile-Reinforced Concrete (TRC) composites under axial (tensile) olygocyclic fatigue.
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