Coreless Winding and Assembled Core – Novel fabrication approaches for FRP based components in building construction. Building and Costruction Materials, (1)ELSEVIER SCI LTD, 2016. [PUMA: 2016 building components construction coreless fabrication from:petraheim frp itke knippers magna waimer winding]
Branched Structures in Plants and Architecture. Biomimetic Research for Architecture and Building Construction, (8):195 -215, Springer, Cham, 2016. [PUMA: 2016 architecture biomimetic bionik born branched bunk from:petraheim gresser itke jonas knippers masselter plant speck structure]
Compliant Mechanisms in Plants and Architecture. Biomimetic Research for Architecture and Building Construction.. Biomimetic Research for Architecture and Building Construction, (8):169 -193, Springer, Cham, 2016. [PUMA: 2016 architecture biomimetic bionik bischoff born compliant construction from:petraheim gresser hesse itke knippers körner poppinga sachse speck structure westermeier]
Entwicklungen zur Anwendung faseroptischer Sensoren für die Spannungsbemessung in Glaslaminaten.. In Bernhard Weller, and Silke Tasche (Eds.), Glasbau 2016, 239 – 251, Ernst & Sohn, Berlin, 2016. [PUMA: 2016 faseroptik faseroptisch fildhuth from:petraheim glas glasbau glaslaminat itke knippers sensor spannungsbemessung]
Bending-Active Plates: Form and Structure.. In S. Adriaenssens, F. Gramazio, M. Kohler, Achim Menges, and M. Pauly (Eds.), Advances in Architectural Geometry 2016, 170 -186, vdf Hochschulverlag, Zürich, 2016. [PUMA: 2016 architecture bending-active engineering from:petraheim geometry itke knippers magna plates schleicher structure]
The skeleton of the sand dollar as a biological role model for segmented shells in building construction: a research review.. In Jan Knippers, Klaus Nickel, and Thomas Speck (Eds.), Biomimetic Research for Architecture and Building Construction, (9):217 - 242, Springer, Cham, 2016. [PUMA: 2016 architecture biomimetic bionik bischoff construction dehkordi from:petraheim grun itke knippers menges nebelsick scheven schwinn segmented shell skeleton sonntag]
Topology driven Form finding: Implementation of an Evolving Network Model for Extending Design Spaces in Dynamic Relaxation. Protocols, Flows, and Glitches – Proceedings of the 22nd CAADRIA Conference, Suzhou, China, 2016. [PUMA: implementation tolology relaxation knippers erazo network finding space evolving extending form design 2016 itke from:petraheim dynamic model suzuki driven]
Bio-Inspired Kinetic Curved-Line Folding for Architectural Applications. Acadia 2016 Posthuman Frontiers: Data, Designers, and Cognitive Machines, 270-279, Ann Arbor, Michigan, USA, September 2016. [PUMA: biomimetic körner folding curved-line knippers application saffarian mader 2016 itke from:petraheim architectural kinetic bio-inspired]
Scale Effect in Bending-active Plates and a Novel Concept for Elastic Kinetic Roof Systems. Proceedings of the IASS Annual Symposium 2016, Tokyo, Japan, 26-30 Sept 2016. [PUMA: 2016 bending-active biomimetic concept effect elastic from:petraheim itke kinetic knippers koslowski körner novel plates roof scale system takahashi]
Textile Fabrication Techniques for Timber Shells: Elastic Bending of Custom-Laminated Veneer for Segmented Shell. In S. Adriaenssens, F. Gramazio, M. Kohler, Achim Menges, and M Pauly (Eds.), Advances in Architectural Geometry 2016, 164 – 169, Zurich, Switzerland, 2016. [PUMA: 2016 bechert bending custom-laminated elastic fabrication from:petraheim itke knippers krieg menges schwinn segmental shell sonntag technique textile timber veneer]
Biocomposites and biofoams for innovative sustainable architectural applications. JEC- World Composites Show, Paris, France, March 2016. [PUMA: biomat dahy sustainable biocomposite biofoam application innovative 2016 itke from:petraheim architectural]
Biocomposites for architectural applications based on the second generation of natural annual renewable resource. SBE 16- Sustainable Built Environment Conference 2016, Hamburg, March 2016. [PUMA: based biomat dahy natural biocomposite second application generation 2016 itke from:petraheim renewable ressource annual architectural]
Bio-inspired Compliant Mechanisms for Architectural Design: Transferring Bending and Folding Principles of Plant Leaves to Flexible Kinetic Structures. In Jan Knippers (Eds.), Forschungsberichte aus dem Institut für Tragkonstruktionen und Konstruktives Entwerfen, (40)Stuttgart: Institut für Tragkonstruktionen und Konstruktives Entwerfen, ITKE, Stuttgart, Germany, 2016. [PUMA: 2016 architectural architecture bending bio-inspired biomimetic compliant design diss dissertation flexible folding forschungsbericht from:petraheim itke kinetic leave mechanism plant principles schleicher structure transferring]