Network model for predicting structural properties of paper

Author:

Görtz Morgan12ORCID,Kettil Gustav1,Målqvist Axel23,Fredlund Mats4,Wester Kenneth5,Edelvik Fredrik1

Affiliation:

1. Computational Engineering and Design , Fraunhofer-Chalmers Centre , Gothenburg , Sweden

2. Department of Mathematical Sciences , Chalmers University of Technology , Gothenburg , Sweden

3. University of Gothenburg , Gothenburg , Sweden

4. Stora Enso AB , Karlstad , Sweden

5. Albany International , Halmstad , Sweden

Abstract

Abstract Paper simulations that resolve the entire microscopic fiber structure are typically time-consuming and require extensive resources. Several such modeling approaches have been proposed to analyze different properties in paper. However, most use non-linear and time-dependent models resulting in high computational complexity. Resolving these computational issues would increase its usefulness in industrial applications. The model proposed in this work was developed in collaboration with companies in the papermaking industry within the Innovative Simulation of Paper (ISOP) project. A linear network model is used for efficiency, where 1-D beams represent the fibers. Similar models have been proposed in the past. However, in this work, the paper models are three-dimensional, a new dynamic bonding technique is used, and more extensive simulations are evaluated. The model is used to simulate tensile stiffness, tensile strength, and bending resistance. These simulated results are compared to experimental and theoretical counterparts and produce representable results for realistic parameters. Moreover, an off-the-shelf computer accessible to a paper developer can evaluate these models structural properties efficiently.

Funder

Stiftelsen för Strategisk Forskning

Vetenskapsrådet

Publisher

Walter de Gruyter GmbH

Subject

General Materials Science,Forestry

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