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Automated Framework for the Optimisation of Spatial Layouts for Concrete Structures Reinforced with Robotic Filament Winding
Concrete is a major contributor to the environmental impact of the construction industry, due to its cement content but also its reinforcement. Reinforcement has a significant contribution because of construction rationalisation, resorting to regular mats or cages of steel bars, despite layoutoptimisation algorithms and additive-manufacturing technologies. This paper presents an automated framework, connecting design and fabrication requirements for the optimisation of spatial layouts as of reinforcement of concrete structures, by the means of robotic filament winding.
Automated Framework for the Optimisation of Spatial Layouts for Concrete Structures Reinforced with Robotic Filament Winding
Concrete is a major contributor to the environmental impact of the construction industry, due to its cement content but also its reinforcement. Reinforcement has a significant contribution because of construction rationalisation, resorting to regular mats or cages of steel bars, despite layoutoptimisation algorithms and additive-manufacturing technologies. This paper presents an automated framework, connecting design and fabrication requirements for the optimisation of spatial layouts as of reinforcement of concrete structures, by the means of robotic filament winding.
Automated Framework for the Optimisation of Spatial Layouts for Concrete Structures Reinforced with Robotic Filament Winding
Oval, Robin (Autor:in) / Castro e Costa, Eduardo (Autor:in) / Thomas-McEwen, Diana (Autor:in) / Spadea, Saverio (Autor:in) / Orr, John (Autor:in) / Shepherd, Paul (Autor:in)
27.10.2020
Oval , R , Castro e Costa , E , Thomas-McEwen , D , Spadea , S , Orr , J & Shepherd , P 2020 , Automated Framework for the Optimisation of Spatial Layouts for Concrete Structures Reinforced with Robotic Filament Winding . in 2020 Proceedings of the 37th ISARC . pp. 1541-1548 , 37th International Symposium on Automation and Robotics in COnstruction , Kitakyshu , Japan , 27/10/20 . https://doi.org/10.22260/ISARC2020/0214
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
BASE | 2025
|Filament Winding of Revolution Structures
British Library Online Contents | 2005
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