Fiber-Reinforced Plastics with Locally Adapted Stiffness for Bio-Inspired Hingeless, Deployable Architectural Systems

Author:

Born Larissa1,Körner Axel1,Schieber Gundula1,Westermeier Anna S.2,Poppinga Simon2,Sachse Renate1,Bergmann Paavo3,Betz Oliver3,Bischoff Manfred1,Speck Thomas2,Knippers Jan1,Milwich Markus4,Gresser Götz T.1

Affiliation:

1. University of Stuttgart

2. University of Freiburg

3. University of Tübingen

4. Institute for Textile Technology and Process Engineering

Abstract

This paper presents results of the investigation of two biological role models, the shield bug (Graphosomaitalicum) and the carnivorous Waterwheel plant (Aldrovandavesiculosa). The aim was to identify biological construction and movement principles as inspiration for technical, deployable systems. The subsequent processes of abstraction and simulation of the movement and the design principles are summarized, followed by results on the mechanical investigations on various combinations of fibers and matrices with regard to taking advantage of the anisotropy of fiber-reinforced plastics (FRPs). With the results gained, it was possible to implement defined flexible bending zones in stiff composite components using one composite material, and thereby to mimic the biological role models. First small-scale demonstrators for adaptive façade shading systems – Flectofold and Flexagon – are proving the functionality.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

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