Robotic variable fabric formwork

Author:

Yang Xuyou1,Loh Paul1,Leggett David2

Affiliation:

1. University of Melbourne, Melbourne, Australia

2. Architectural Research Lab, Melbourne, Australia

Abstract

Abstract Casting is one of the most widely used construction techniques. Complex geometries produced via computational design processes are not readily achievable through traditional rigid formwork and are subject to increased material waste. More suitable casting techniques are required to represent digital design output efficiently. This article presents a variable fabric formwork developed to work in conjunction with a 6-axis robotic arm for casting doubly curved panels based on hyperbolic paraboloid geometry. The variable formwork is designed to be extendable in length and width so that it can produce a wide range of outcomes within a single formwork. The interface established in the workflow allows the physical formwork and digital design to influence each other. The article concludes by discussing a verification method used to confirm the accuracy of the outcome. This variable fabric form-work reduces construction waste and is a more sustainable method for casting complex geometries. Highlights Robotic arm used to manipulate a bespoke mould for fabric formwork casting. Constraints of mould design used to inform robotic arm of its fabrication limits. Workflow allows the physical formwork and digital design to influence each other. Verification of result reveals future area of research.

Funder

Architect Michael Kaufman Scholarship

Publisher

Oxford University Press (OUP)

Subject

Computational Mathematics,Computer Graphics and Computer-Aided Design,Human-Computer Interaction,Engineering (miscellaneous),Modelling and Simulation,Computational Mechanics

Reference23 articles.

1. Digital construction: Automated design and construction. Experiments using customised on-site digital devices;Ameijde,2012

2. Geometry working beyond effect;Burry;Architectural Design,2011

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