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  3. In situ micropillar compression reveals superior strength and ductility but an absence of damage in lamellar bone
 

In situ micropillar compression reveals superior strength and ductility but an absence of damage in lamellar bone

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Official URL
http://www.nature.com/nmat/journal/v13/n7/full/nmat3959.html
Publisher DOI
10.1038/nmat3959
PubMed ID
24907926
Description
Ageing societies suffer from an increasing incidence of bone fractures. Bone strength depends on the amount of mineral measured by clinical densitometry, but also on the micromechanical properties of the hierarchical organization of bone. Here, we investigate the mechanical response under monotonic and cyclic compression of both single osteonal lamellae and macroscopic samples containing numerous osteons. Micropillar compression tests in a scanning electron microscope, microindentation and macroscopic compression tests were performed on dry ovine bone to identify the elastic modulus, yield stress, plastic deformation, damage accumulation and failure mechanisms. We found that isolated lamellae exhibit a plastic behaviour, with higher yield stress and ductility but no damage. In agreement with a proposed rheological model, these experiments illustrate a transition from a ductile mechanical behaviour of bone at the microscale to a quasi-brittle response driven by the growth of cracks along interfaces or in the vicinity of pores at the macroscale.
Date of Publication
2014-06
Publication Type
Article
Subject(s)
500 Science > 530 Physics
500 Science > 570 Life sciences; biology
600 Technology > 610 Medicine & health
600 Technology > 620 Engineering
Language(s)
en
Contributor(s)
Schwiedrzik, Johann Jakob
Institut für chirurgische Technologien und Biomechanik (ISTB)
Raghavan, Rejin
Bürki, Alexander
Institut für chirurgische Technologien und Biomechanik (ISTB)
LeNader, Victor
Wolfram, Uwe
Institut für chirurgische Technologien und Biomechanik (ISTB)
Michler, Johann
Zysset, Philippeorcid-logo
Institut für chirurgische Technologien und Biomechanik (ISTB)
Additional Credits
Institut für chirurgische Technologien und Biomechanik (ISTB)
Series
Nature Materials
Publisher
Nature Publishing Group
ISSN
1476-1122
Access(Rights)
metadata.only
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