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Integrative Fabrication of Sandwich Shells. An integrative approach to design of robotically fabricated wood- based sandwich segmented shells

Patricio Lara Ditzel, Leonard Balas, Olga Kalina, Lauren Vasey, Simon Bechert, Oliver David Krieg, Achim Menges, Jan Knippers

Year
2018
Citations
2
Access
Open access

Abstract

This paper presents the development of an integrative and adaptive robotic fabrication process for the production of wooden-based segmented shells of variable thickness. A material and construction process is presented whereby an industrial robot with a two-degree of freedom end-effector acts as active form-work, positioning flexible strips of plywood so they can be assembled into a structurally performative configuration and then filled with a polyurethane expandable foam. The resulting material system is a structurally performative and doubly curved sandwich composite which performs well in bending. This paper discusses the construction process and the material system, methods for structural analysis, an adaptive robotic fabrication process, as well as a computational design tool which integrates material constraints, robotic constraints, and structural performance. The resulting construction system expands the design possibilities for robotic fabrication in wood, particularly as a viable material system for implementation directly in an on-site condition.

Keywords

FabricationMaterials scienceShell (structure)Composite materialSandwich-structured compositeCore (optical fiber)Structural engineeringMechanical engineeringComputer scienceEngineering drawing

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