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Fibrous Joints for Lightweight Segmented Timber Shells

, , , , , , and . Proceedings of Research Culture in Architecture Conference 2018 (RCA 2018), (2018)

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Visualization for Architecture, Engineering, and Construction: Shaping the Future of Our Built World, , , , , , , , , and 1 other author(s). IEEE Computer Graphics and Applications, (2022)Towards an On-site Fabrication System for Bespoke, Unlimited and Monolithic Timber Slabs, , , , and . International Conference on Intelligent Robots and Systems (IROS) Proceedings of Workshop on Construction and Architecture Robotics, 2020, IEEE/RSJ, (2020)Towards digital automation flexibility in large-scale timber construction: integrative robotic prefabrication and co-design of the BUGA Wood Pavilion, , , and . Construction Robotics, (2020)Three-Dimensional Fibre Placement in Wood for connections and reinforcements in timber structures, , , , and . Proceedings of the IASS Annual Symposium 2020/21 and the 7th International Conference on Spatial Structures, IASS, (2021)Qualities of the Unique: Accuracy and Process-Control Management in Project-based Robotic Timber Construction, , , , , and . World Conference on Timber Engineering 2021 - WCTE 2021, Santiago, Chile, (2021)Fibrous Joints for Lightweight Segmented Timber Shells, , , , , , and . Research Culture in Architecture: Cross-Disciplinary Collaboration, De Gruyter / Birkhäuser, Berlin, Munich, Boston, (December 2019)BUGA Holzpavillon - Freiformfläche aus robotisch gefertigten Nulltoleranz- Segmenten, , , and . Proceedings of the 25. Internationales Holzbau-Forum IHF 2019, (2019)Point-Support Reinforcement for a Highly Efficient Timber Hollow Core Slab System, , , , and . (2023)Advanced Timber Construction Industry : A Quantitative Review of 646 Global Design and Construction Stakeholders, , , , , , and . Buildings, 13 (9): 2287 (2023)Floor Plate Segmentation Data, , , , and . Dataset, (2023)Related to: Orozco, L., Wagner, H. J., Krtschil, A., Knippers, J., & Menges, A. (2023). Computational segmentation methods for the material efficient Co-Design of point-supported, grid-independent floor slabs in timber architecture. CAD Journal(x), Submitted for Pre-Print.