Nonwoven materials are engineered fabrics, produced by bonding constituent fibres together by mechanical, thermal or chemical means. Such a technology has a great potential to produce material for specific purposes. It is therefore crucial to develop right products with requested properties. This requires a good understanding of the macro and micro behaviours of nonwoven products. In last 40 years, many efforts have been made by researchers to understand the performance of nonwoven materials. One of the main research challenges on the way to this understanding is to link the properties of fibres and the fabric's random fibrous microstructure to the mechanisms of overall material's deformation. The purpose of this research is to study experi...
Thermal bonding is the fastest and the cheapest technique for manufacturing nonwovens. Understanding...
In contrast to composites and woven fabrics, nonwoven materials have a unique web structure, which i...
A mechanical behaviour of random fibrous networks is predominantly governed by their microstructure....
Nonwoven materials are engineered fabrics, produced by bonding constituent fibres together by mechan...
A discontinuous and non-uniform microstructure of a low-density thermally bonded nonwoven material d...
A discontinuous and non-uniform microstructure of a low-density thermally bonded nonwoven material d...
A discontinuous and non-uniform microstructure of a low-density thermally bonded nonwoven material d...
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...
One of the most important characteristic features of a low-density thermally bonded non-woven materi...
Due to random orientation of fibres and presence of voids in their microstructure, low-density therm...
A complex time-dependent deformation and damage behaviour in polymer-based nonwovens are analysed un...
A deformation behaviour of, and damage in, polymer-based thermally bonded nonwovens was studied with...
Thermal bonding is the fastest and the cheapest technique for manufacturing nonwovens. Understanding...
In contrast to composites and woven fabrics, nonwoven materials have a unique web structure, which i...
A mechanical behaviour of random fibrous networks is predominantly governed by their microstructure....
Nonwoven materials are engineered fabrics, produced by bonding constituent fibres together by mechan...
A discontinuous and non-uniform microstructure of a low-density thermally bonded nonwoven material d...
A discontinuous and non-uniform microstructure of a low-density thermally bonded nonwoven material d...
A discontinuous and non-uniform microstructure of a low-density thermally bonded nonwoven material d...
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...
One of the most important characteristic features of a low-density thermally bonded non-woven materi...
Due to random orientation of fibres and presence of voids in their microstructure, low-density therm...
A complex time-dependent deformation and damage behaviour in polymer-based nonwovens are analysed un...
A deformation behaviour of, and damage in, polymer-based thermally bonded nonwovens was studied with...
Thermal bonding is the fastest and the cheapest technique for manufacturing nonwovens. Understanding...
In contrast to composites and woven fabrics, nonwoven materials have a unique web structure, which i...
A mechanical behaviour of random fibrous networks is predominantly governed by their microstructure....