A note on the nonlinear mechanical behavior of planar random network structures subjected to in-plane compression

Author:

Åslund Pär E.1,Isaksson Per1

Affiliation:

1. Division of Applied Mechanics, Mid Sweden University, SE-85170 Sundsvall, Sweden.

Abstract

The microstructural effect on the mechanical behavior of idealized two-dimensional random fiber networks subjected to in-plane compression is studied. A finite element model utilizing nonlinear beam elements assuming a linearly elastic material is developed. On a macroscopic level, random fiber networks often display an asymmetric material behavior when loaded in tension and compression. In mechanical models, this nonlinearity is traditionally described using continuum elastic-inelastic and/or damage models even though using a continuum approach risks overlooking microstructural effects. It is found that even though a linear elastic material model is used for the individual fibers, the network gives a nonlinear response in compression. The nonlinearity is found to be caused by buckling of individual fibers. This reversible nonlinear mechanism is limited in tensile loading and hence offers an alternative explanation to the global asymmetry of random fibernetworks.

Publisher

SAGE Publications

Subject

Materials Chemistry,Mechanical Engineering,Mechanics of Materials,Ceramics and Composites

Reference17 articles.

1. Modelling paper as a two-dimensional elastic–plastic stochastic network

2. Structural effects on deformation and fracture of random fiber networks and consequences on continuum models

3. Fellers C. Mechanical behaviour The significance of structure on the compression behavior of paper 1980Stockholm: The Royal Institute of Technology.

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