Delta IXI: Deployable Structure with Flax Fibre Pultruded Profiles for Architectural Applications—Case Studies in Furniture and Adaptive Facade Systems. Designs, Special Issue Sustainable Construction: Innovations in Design, Engineering, and the Circular Economy, (9)2mdpi, Basel, Switzerland, March 2025. [PUMA: biomat dahy natural profiles pultrusion itke threading fibre fibres sustainable methods lightweight courarie-delage adaptive systems deployable spyridonos 2025 structures biocomposites pultruded architecture]
Strategies in construction and assembly for the LightPRO Shell: An active-bending structure employing flax fibre pultruded profiles for sustainable architecture. Structures, (72)108296Elsevier, February 2025. [PUMA: biomat Architecture Spyridonos Structures Lightweight Active-Bending Fibres Dahy Natural Pultruded Profiles itke 2025 Biocomposites Fibre Flax Sustainable Pultrusion]
Equilibrium Morphologies- Interactive modeling for form-finding of fabric structures. Data-Driven Intelligence - Proceedings of the 42nd Conference on Education and Research in Computer Aided Architectural Design in Europe (eCAADe 2024), (1):351– 360, eCAADe, September 2024. [PUMA: Behavioral modeling Making schwinn Structures Tangible 2024 eidner Fabrication Interfaces maierhofer itke Form-Finding turean Fabric Cyber-Physical menges architecture]
Integrative Structural Design of Non-Standard Building Systems: Coreless Filament-Wound Structures as a Case Study.. Forschungsberichte aus dem Institut für Tragkonstruktionen und Konstruktives Entwerfen, Universität Stuttgart, (49):75, Institut für Tragkonstruktionen und Konstruktives Entwerfen, Universität Stuttgart, Stuttgart, February 2023. [PUMA: coreless Structural gil perez 2023 building engineering non-standard systems design Integrative itke from:petraheim structures coreless-wound architecture]
Computational co-design framework for coreless wound fibre–polymer composite structures. Journal of Computational Design and Engineering, (9)2:310–329, April 2022. [PUMA: 2022 Balangé architecture bischoff collaborative composite computational coreless coreless-wound digital engineering evaluation fibre-polymer filament framework from:petraheim förster gienger gil gresser guo hügle itke kannenberg knippers menges middendorf minderman model object schwieger structural structures tarin winding workflow zechmeister]
Towards sustainable buildings with free-form geometries: Development and Application of flexible NFRP in load-bearing structures. In M. T. H. Sultan, M. Shuky A. Majid, A. Iskandar A., M. R. M. Jamir, and N. Saba (Eds.), Biocomposite Materials: Design and Mechanical Properties Characterization, 31-43, Springer Nature, Singapore, February 2021. [PUMA: biomat load-bearing dahy development sustainable natural biocomposite nfrp free-form fibre-reinforced 2021 application geometies flexible itke material from:petraheim structures architecture]
Materials as a Design Tool’ Design Philosophy Applied in Three Innovative Research Pavilions Out of Sustainable Building Materials with Controlled End-Of-Life Scenarios. Buildings, (9)3:64, Mar 13, 2019. [PUMA: DfD biomat bending-active green dahy biomimetic life-cycle sustainable segmented building scenarios shell digital materials itke from:petraheim end-of-life structures fabrication architecture]
From Nature to Fabrication: Biomimetic Design Principles for the Production of Complex Spatial Structures. In L. Hesselgren, S. Sharma, J. Wallner, N. Baldassini, P. Bompas, and J. Raynaud (Eds.), Advances in Architectural Geometry 2012, 107--122, Springer, Wien New York, 2012. [PUMA: 2012 architecture biomimetic bionik fabrication from:petraheim gabler itke knippers magna menges nature reichert schwinn spatial structures waimer]
Prototyping Biomimetic Structures for Architecture. In Michael Stacey (Eds.), Prototyping Architecture: The Conference Papers, 224--244, The Building Centre Trust, London, 2013. [PUMA: biomimetic prototyping schwinn reichert 2013 magna knippers bionik itke from:petraheim structures menges architecture]
Biomimetic Lightweight Timber Plate Shells: Computational Integration of Robotic Fabrication, Architectural Geometry and Structural Design.. In Philippe Block, Jan Knippers, Niloy J. Mitra, and Wenping Wang (Eds.), Advances in Architectural Geometry 2014, 109 – 126, Springer International Publishing, Cham, Heidelberg, New York, 2015. [PUMA: 2015 architecture biomimetic design fabrication from:petraheim geometry itke knippers krieg leightweight li menges plate robotic schmitt schwieger schwinn shell structures timber]
From Nature to Fabrication: Biomimetic Design Principles for the Production of Complex Spatial Structures. In Hesselgren, Sharma, Wallner, and Baldassini (Eds.), Advances in Architectural Geometry 2012, 107 – 122, Springer, Wien, New York, 2012. [PUMA: waimer biomimetic nature schwinn reichert magna 2012 knippers bionik design itke from:petraheim structures gabler fabrication spatial menges architecture]