We present a nonlinear multiscale modeling and simulation framework for the mechanical design of machine-knitted textiles with functionally graded microstructures. The framework operates on the mesoscale (stitch level), where yarns intermesh into stitch patterns, and the macroscale (fabric level), where these repetitive stitch patterns are composed into a fabric. On the mesoscale, representative unit cells consisting of single interlocked yarn loops, modeled as geometrically exact, nonlinear elastic 3D beams, are homogenized to compute their effective mechanical properties. From this data, a B-Spline response surface model is generated to represent the nonlinear orthotropic constitutive behavior on the macroscale, where the fabric is modele...
International audienceFor many applications, numerical modeling of composite reinforcements may requ...
Textiles and their production machines are increasingly designed using simulations of the textile pr...
AbstractA multiscale model for a fabric material is introduced. The model is based on the assumption...
We present a nonlinear multiscale modeling and simulation framework for the mechanical design of mac...
Three-dimensionally (3D) knitted technical textiles are spreading into industrial applications, sinc...
Knitted textiles are hierarchically structured materials. Compared to other materials such as fiber-...
Knitted textiles are flexible and geometrically hierarchical 3D materials dominated by complex micro...
We present a method for animating yarn-level cloth effects using a thin-shell solver. We accomplish ...
This folder contains data for the manuscript "Programming Mechanics in Knitted Materials, Stitch by ...
The complex yarn structure of knitted and woven fabrics gives rise to both a mechanical and visual c...
This article presents a numerical framework to predict the mechanical behavior of knitted fabrics fr...
This article presents a numerical framework to predict the mechanical behavior of knitted fabrics fr...
Manufacturing processes and parameters have played a crucial role in the design and analysis of comp...
International audienceFor many applications, numerical modeling of composite reinforcements may requ...
Textiles and their production machines are increasingly designed using simulations of the textile pr...
AbstractA multiscale model for a fabric material is introduced. The model is based on the assumption...
We present a nonlinear multiscale modeling and simulation framework for the mechanical design of mac...
Three-dimensionally (3D) knitted technical textiles are spreading into industrial applications, sinc...
Knitted textiles are hierarchically structured materials. Compared to other materials such as fiber-...
Knitted textiles are flexible and geometrically hierarchical 3D materials dominated by complex micro...
We present a method for animating yarn-level cloth effects using a thin-shell solver. We accomplish ...
This folder contains data for the manuscript "Programming Mechanics in Knitted Materials, Stitch by ...
The complex yarn structure of knitted and woven fabrics gives rise to both a mechanical and visual c...
This article presents a numerical framework to predict the mechanical behavior of knitted fabrics fr...
This article presents a numerical framework to predict the mechanical behavior of knitted fabrics fr...
Manufacturing processes and parameters have played a crucial role in the design and analysis of comp...
International audienceFor many applications, numerical modeling of composite reinforcements may requ...
Textiles and their production machines are increasingly designed using simulations of the textile pr...
AbstractA multiscale model for a fabric material is introduced. The model is based on the assumption...