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Keine Gelenkbeschwerden – Wie Pflanzen sich bewegen und die Technik inspirieren.

, , , , , , , , and . Stuttgarter Beiträge zur Naturkunde, Serie C, Staaliches Museum für Naturkunde Stuttgart, Stuttgart, (2017)

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Kai Simon University of Stuttgart

Rigid Glulam Joints to Concrete Abutments with Glued-In Steel Rod, and . Timber for a livable future : World Conference on Timber Engineering : WCTE 2023 : 19-22 June 2023, Oslo, Norway, 3, page 1443-1452. Red Hook, Curran Associates, Inc., (2023)
Rigid Glulam Joints to Concrete Abutments with Glued-In Steel Rod, and . Timber for a livable future : World Conference on Timber Engineering : WCTE 2023 : 19-22 June 2023, Oslo, Norway, 3, page 1443-1452. Red Hook, Curran Associates, Inc., (2023)Semi-Integral Full-Scale Stuttgart Timber Model Bridge, and . Timber for a livable future : World Conference on Timber Engineering : WCTE 2023 : 19-22 June 2023, Oslo, Norway, 5, page 3264-3271. Red Hook, Curran Associates, Inc., (2023)

Simon Eckstein University of Stuttgart

State- Based Control for an Actuated Reciprocal Gait Orthosis, , , , and . 2023 IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS), page 6075-6081. IEEE, (2023)
 

Other publications of authors with the same name

Elastic architecture: nature inspired pliable structures, , , , and . Design and Nature V, Vol. 138, page 469 – 477. Southampton, WIT Press, (2010)Fiber-reinforced plastics with locally adapted stiffness for bio-inspired hingeless, deployable architectural systems, , , , , , , , , and 4 other author(s). 742, page 689-696. (2017)Compliant Mechanisms in Plants and Architecture, , , , , , , , , and . Biomimetic Research for Architecture and Building Construction : Biological Design and Integrative Structures, volume 9 of Biologically-Inspired Systems, chapter 9, Springer, Cham, (2016)Bio-Inspired Motion Mechanisms : Computational Design and Material Programming of Self-Adjusting 4D-Printed Wearable Systems, , , , , , , and . Advanced science, 8 (13): 2100411 (2021)Plant Movements as Concept Generators for the Development of Biomimetic Compliant Mechanisms, , , , and . Integrative and comparative biology, 60 (4): 886–895 (2020)Fiber-Reinforced Plastics with Locally Adapted Stiffness for Bio-Inspired Hingeless, Deployable Architectural Systems, , , , , , , , , and 3 other author(s). Key Engineering Materials, 742, page 689-696. Trans Tech Publications Ltd, (2017)Snapping mechanics of the Venus flytrap (Dionaea muscipula), , , , , , and . Proceedings of the National Academy of Sciences of the United States of America, 117 (27): 16035-16042 (2020)Adaptive Biomimetic Actuator Systems Reacting to Various Stimuli by and Combining Two Biological Snap-Trap Mechanics., , , , , , , , and . Living Machines, volume 11556 of Lecture Notes in Computer Science, page 114-121. Springer, (2019)Optimierung und Weiterentwicklung des Flectofin®, , , , , , , , , and . Conference Proceedings of the 5. Bremer Bionik Kongress ‘Patente aus der Natur‘, page 36-45. Bremen, Germany, (2010)Biomimetic deployable systems in architecture, , , , , and . IFMBE Proceedings, 6th World Congress on Biomechanics, Vol. 31, page 40 – 43. (2010)