Through the automation of folding of sheet metal components by a six-axis industrial robot we explored the integration of parametrically-driven design and fabrication tools and its real-world implementation. Developed out of research into new possibilities presented by direct programming of flexible, digitally-driven, industrial tools, this project intends to speculate about the future implementation of parametric modeling tools in the field of design, and associated new, parametrically variable, fabrication processes. We explored the relationship between designer and machine, between data and craft, and tested conjectures about scale of production, through the digital creation, physical cutting, mental tracking, robotic folding, manual riv...
This study examines the role and potential of robotic and automated systems in the production of geo...
Part 4: Tools and Tool-SupportInternational audienceCollaborative robot-assisted production has grea...
In this study, a method, in which parametric design and robotic fabrication are combined into one un...
Robotic automation has become ubiquitous in the modern manufacturing landscape, spanning an overwhel...
Since recent times prototyping methods for sheet metal products have mostly been related to rapid to...
Purpose: This paper aims to introduce a new incremental sheet metal-forming process. By moving a ham...
Robotic tools open a new frontier in surface articulation. The combination of computer modelling wit...
Just recently Flank Milling has opened up new possibilities in detailing large-scale architectural b...
Architects, artists, and designers have been fascinated by robots for many decades, from Villemard’s...
This paper introduces new results of the single point incremental forming process of an industrial s...
This paper introduces new results of the single point incremental forming process of an industrial s...
This paper presents a methodology for the integration of fabrication constraints within the architec...
The process of designing and programming a new robot requires expert knowledge and design skills tha...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
This article describes new approaches to incremental sheet metal forming using industrial robots. In...
This study examines the role and potential of robotic and automated systems in the production of geo...
Part 4: Tools and Tool-SupportInternational audienceCollaborative robot-assisted production has grea...
In this study, a method, in which parametric design and robotic fabrication are combined into one un...
Robotic automation has become ubiquitous in the modern manufacturing landscape, spanning an overwhel...
Since recent times prototyping methods for sheet metal products have mostly been related to rapid to...
Purpose: This paper aims to introduce a new incremental sheet metal-forming process. By moving a ham...
Robotic tools open a new frontier in surface articulation. The combination of computer modelling wit...
Just recently Flank Milling has opened up new possibilities in detailing large-scale architectural b...
Architects, artists, and designers have been fascinated by robots for many decades, from Villemard’s...
This paper introduces new results of the single point incremental forming process of an industrial s...
This paper introduces new results of the single point incremental forming process of an industrial s...
This paper presents a methodology for the integration of fabrication constraints within the architec...
The process of designing and programming a new robot requires expert knowledge and design skills tha...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
This article describes new approaches to incremental sheet metal forming using industrial robots. In...
This study examines the role and potential of robotic and automated systems in the production of geo...
Part 4: Tools and Tool-SupportInternational audienceCollaborative robot-assisted production has grea...
In this study, a method, in which parametric design and robotic fabrication are combined into one un...