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Design for Long-Span Core-Less Wound, Structural Composite Building Elements

, , , and . Impact: Design With All Senses Proceedings of the Design Modelling Symposium 2019, (2019)
DOI: 10.1007/978-3-030-29829-6 32

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Buga Fibre Pavilion : towards an architectural application of novel fiber composite building systems, , , , , , , and . Acadia 2019: Ubiquity and Autonomy : Paper Proceedings of the 39th Annual Conference of the Association for Computer Aided Design in Architecture, page 140-149. ‎Acadia Publishing Company, (2019)Robotic coreless filament winding for hyperboloid tubular composite components in construction, , , , and . Automation in construction, 126 (June): 103649 (2021)Filigree Shell Slabs: Material and Fabrication-aware Shape Optimisation for CFRP Coreless- wound Slab Components, , , , and . page 244-263.. (2021)Design for Long-Span Core-Less Wound, Structural Composite Building Elements, , , and . Impact: Design With All Senses, page 401--415. Cham, Springer International Publishing, (2020)Additive Manufacturing of Large Coreless Filament Wound Composite Elements for Building Construction, , , and . 3D printing and additive manufacturing, (2021)Towards an architectural application of novel fiber composite building systems – The BUGA Fibre Pavilion, , , , , , , and . ACADIA – Ubiquity and Autonomy - Proceedings of the 39th ACADIA Conference 2019, (2019)BUGA Fibre Pavilion: Towards Robotically-Fabricated Composite Building Structures, , , , , , , , , and . Fabricate 2020: Making Resilient Architecture, (2020)Development of an Impregnation End-Effector with Fiber Tension Monitoring for Robotic Coreless Filament Winding, , , and . Processes, 9 (5): 806 (2021)Additive Manufacturing of Large Coreless Filament Wound Composite Elements for Building Construction, , , and . 3D printing and additive manufacturing, 9 (3): 145-160 (2022)BUGA Fibre Pavilion: Towards robotically-fabricated composite building structures., , , , , , , , , and . page 234 - 245. UCL Press, London, (2020)