Fibrous structures: an integrative approach to design computation, simulation and fabrication for lightweight, glass and carbon fibre composite structures in architecture based on biomimetic design principles
In this paper the authors present research into an integrative computational design methodology for the design and robotic implementation of fibre-composite systems. The proposed approach is based on the concurrent and reciprocal integration of biological analysis, material design, structural analysis, and the constraints of robotic filament winding within a coherent computational design process. A particular focus is set on the development of specific tools and solvers for the generation, simulation and optimization of the fibre layout and their feedback into the global morphology of the system. The methodology demonstrates how fibre reinforced composites can be arranged and processed in order to meet the specific requirements of architectural design and building construction. This was further tested through the design and fabrication of a full-scale architectural prototype.
%0 Journal Article
%1 reichert2014fibrous
%A Reichert, Steffen
%A Schwinn, Tobias
%A La Magna, Riccardo
%A Waimer, Frédéric
%A Knippers, Jan
%A Menges, Achim
%D 2014
%J Computer-Aided Design
%K 2014 approach architecture carbon composite computation design fabrication fibre fibrous glass integrative itke knippers lightweight magna menges peer-reviewed reichert robotic schwinn simulation structure waimer
%P 27-39
%R https://doi.org/10.1016/j.cad.2014.02.005
%T Fibrous structures: an integrative approach to design computation, simulation and fabrication for lightweight, glass and carbon fibre composite structures in architecture based on biomimetic design principles
%V 52
%X In this paper the authors present research into an integrative computational design methodology for the design and robotic implementation of fibre-composite systems. The proposed approach is based on the concurrent and reciprocal integration of biological analysis, material design, structural analysis, and the constraints of robotic filament winding within a coherent computational design process. A particular focus is set on the development of specific tools and solvers for the generation, simulation and optimization of the fibre layout and their feedback into the global morphology of the system. The methodology demonstrates how fibre reinforced composites can be arranged and processed in order to meet the specific requirements of architectural design and building construction. This was further tested through the design and fabrication of a full-scale architectural prototype.
@article{reichert2014fibrous,
abstract = {In this paper the authors present research into an integrative computational design methodology for the design and robotic implementation of fibre-composite systems. The proposed approach is based on the concurrent and reciprocal integration of biological analysis, material design, structural analysis, and the constraints of robotic filament winding within a coherent computational design process. A particular focus is set on the development of specific tools and solvers for the generation, simulation and optimization of the fibre layout and their feedback into the global morphology of the system. The methodology demonstrates how fibre reinforced composites can be arranged and processed in order to meet the specific requirements of architectural design and building construction. This was further tested through the design and fabrication of a full-scale architectural prototype.},
added-at = {2020-05-14T14:45:16.000+0200},
author = {Reichert, Steffen and Schwinn, Tobias and La Magna, Riccardo and Waimer, Frédéric and Knippers, Jan and Menges, Achim},
biburl = {https://puma.ub.uni-stuttgart.de/bibtex/2be368fe6cad147f4f3927d612645acae/petraheim},
doi = {https://doi.org/10.1016/j.cad.2014.02.005},
interhash = {3cebe7f0c6717f2fdd8fbdaed7ffb8a1},
intrahash = {be368fe6cad147f4f3927d612645acae},
journal = {Computer-Aided Design},
keywords = {2014 approach architecture carbon composite computation design fabrication fibre fibrous glass integrative itke knippers lightweight magna menges peer-reviewed reichert robotic schwinn simulation structure waimer},
language = {eng},
month = jul,
pages = {27-39},
timestamp = {2020-06-02T10:17:54.000+0200},
title = {Fibrous structures: an integrative approach to design computation, simulation and fabrication for lightweight, glass and carbon fibre composite structures in architecture based on biomimetic design principles},
volume = 52,
year = 2014
}