Stereo Camera Setup for 360° Digital Image Correlation to Reveal Smart Structures of Hakea Fruits

  • Abstract About forty years after its first application, digital image correlation (DIC) has become an established method for measuring surface displacements and deformations of objects under stress. To date, DIC has been used in a variety of in vitro and in vivo studies to biomechanically characterise biological samples in order to reveal biomimetic principles. However, when surfaces of samples strongly deform or twist, they cannot be thoroughly traced. To overcome this challenge, different DIC setups have been developed to provide additional sensor perspectives and, thus, capture larger parts of an object’s surface. Herein, we discuss current solutions for this multi-perspective DIC, and we present our own approach to a 360° DIC system based on a single stereo-camera setup. Using this setup, we are able to characterise the desiccation-driven opening mechanism of two woody Hakea fruits over their entire surfaces. Both the breaking mechanism and the actuation of the two valves in predominantly dead plant material are models for smart materials. Based on these results, an evaluation of the setup for 360° DIC regarding its use in deducing biomimetic principles is given. Furthermore, we propose a way to improve and apply the method for future measurements.

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Metadaten
Author:Matthias FischerORCiD, Max D. MyloORCiD, Leon S. Lorenz, Lars Böckenholt, Heike BeismannORCiD
URN:urn:nbn:de:hbz:1010-opus4-47562
DOI:https://doi.org/0.3390/biomimetics9030191
Parent Title (English):Biomimetics (Special Issue Biological and Bioinspired Smart Adaptive Structures)
Publisher:MDPI
Document Type:Article
Language:English
Date of Publication (online):2024/03/21
Date of first Publication:2024/03/21
Publishing Institution:Westfälische Hochschule Gelsenkirchen Bocholt Recklinghausen
Release Date:2025/05/15
Tag:3D digital image correlation (3D-DIC); Hakea salicifolia; Hakea sericea; biomimetics; functional morphology; plant biomechanics; plant motion; strain analysis; structure-function relationship
Volume:2024
Issue:9(3), Artikel Nr. 191
Pagenumber:15 Seiten
Departments / faculties:Institute / Westfälisches Institut für Bionik
Licence (German):License LogoCreative Commons - Namensnennung

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