Related Experiment Video
Updated: Nov 17, 2025

Cutting Procedures, Tensile Testing, and Ageing of Flexible Unidirectional Composite Laminates
Published on: April 27, 2019
Failure mechanisms and bending strength of Fuchsia magellanica var. gracilis stems
Timothy Hone1, Max Mylo2,3, Olga Speck2,3
1Trinity Centre for Biomedical Engineering, Department of Mechanical and Manufacturing Engineering, Trinity College Dublin, The University of Dublin, Ireland.
Abstract:
In the course of biological evolution, plant stems have evolved mechanical properties and an internal structure that makes them resistant to various types of failure. The mechanisms involved during damage development and failure in bending are complex and incompletely understood. The work presented builds on a theoretical framework outlined by Ennos and van Casteren, who applied engineering mechanics theory to explain why different woody stems fail in different ways. Our work has extended this approach, applying it to a detailed analysis of one particular species: Fuchsia magellanica var. gracilis. When subjected to three-point bending, stems of this species exhibited one of two failure mechanisms: a plastic hinge or a greenstick fracture. We developed a predictive model using a computer simulation and a mathematical analysis using the theory of plastic bending. Required material properties were obtained from tests, the literature and imaging techniques. We found that greenstick fractures are more likely to occur in more lignified stems with a higher density. We discovered a new failure mode: an internal crack caused by tensile transverse stress. This work helps in understanding how plants have evolved their bending resistance and may assist in the creation of novel engineering structures inspired by these principles.
Related Concept Videos
Plastic Deformations
Plastic Deformations
Bending of Members Made of Several Materials
Hooke's Law determines stress in each material, stating that stress is proportional to strain but varies due to each material's...
Bending of Material: Problem Solving
Design of Prismatic Beams for Bending
Bending of Curved Members - Strain Analysis
The important part of bending analysis for such a member...

