Due to random orientation of fibres and presence of voids in their microstructure, low-density thermally bonded polymer-based nonwovens demonstrate complex processes of deformation and damage initiation and evolution. This paper aims to introduce a micro-scale discontinuous finite element model to simulate an onset of damage in low-density nonwovens. In the model, structural randomness of a nonwoven fabric was introduced in terms of orientation distribution function (ODF) obtained by an algorithm based on the Hough Transform. Fibres were represented in the model with truss elements with orientations defined according to the computed ODF. Another structural element of nonwovens – bond points – were modelled with shell elements having isotrop...
Nonwoven fabrics are web structures of randomly-oriented fibres, bonded by means of mechanical, ther...
A mechanical behaviour of random fibrous networks is predominantly governed by their microstructure....
Thermal bonding is the fastest and the cheapest technique for manufacturing nonwovens. Understanding...
A random and discontinuous microstructure is one of the most characteristic features of a low-densit...
A random and discontinuous microstructure is one of the most characteristic features of a low-densit...
A random and discontinuous microstructure is one of the most characteristic features of a low-densit...
A random and discontinuous microstructure is one of the most characteristic features of a low-densit...
A deformation behaviour of, and damage in, polymer-based thermally bonded nonwovens was studied with...
Understanding a mechanical behaviour of polymer-based nonwoven materials that include large-strain d...
In this study, a new method for the finite element analysis of low-density thermally bonded nonwoven...
A complex time-dependent deformation and damage behaviour in polymer-based nonwovens are analysed un...
A random and discontinuous microstructure is one of the most characteristic features of a low-densit...
AbstractUnderstanding a mechanical behaviour of polymer-based nonwoven materials that include large-...
Nonwoven materials are engineered fabrics, produced by bonding constituent fibres together by mechan...
Nonwoven fabrics are web structures of randomly-oriented fibres, bonded by means of mechanical, ther...
Nonwoven fabrics are web structures of randomly-oriented fibres, bonded by means of mechanical, ther...
A mechanical behaviour of random fibrous networks is predominantly governed by their microstructure....
Thermal bonding is the fastest and the cheapest technique for manufacturing nonwovens. Understanding...
A random and discontinuous microstructure is one of the most characteristic features of a low-densit...
A random and discontinuous microstructure is one of the most characteristic features of a low-densit...
A random and discontinuous microstructure is one of the most characteristic features of a low-densit...
A random and discontinuous microstructure is one of the most characteristic features of a low-densit...
A deformation behaviour of, and damage in, polymer-based thermally bonded nonwovens was studied with...
Understanding a mechanical behaviour of polymer-based nonwoven materials that include large-strain d...
In this study, a new method for the finite element analysis of low-density thermally bonded nonwoven...
A complex time-dependent deformation and damage behaviour in polymer-based nonwovens are analysed un...
A random and discontinuous microstructure is one of the most characteristic features of a low-densit...
AbstractUnderstanding a mechanical behaviour of polymer-based nonwoven materials that include large-...
Nonwoven materials are engineered fabrics, produced by bonding constituent fibres together by mechan...
Nonwoven fabrics are web structures of randomly-oriented fibres, bonded by means of mechanical, ther...
Nonwoven fabrics are web structures of randomly-oriented fibres, bonded by means of mechanical, ther...
A mechanical behaviour of random fibrous networks is predominantly governed by their microstructure....
Thermal bonding is the fastest and the cheapest technique for manufacturing nonwovens. Understanding...