Materials Map

Discover the materials research landscape. Find experts, partners, networks.

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The Materials Map is an open tool for improving networking and interdisciplinary exchange within materials research. It enables cross-database search for cooperation and network partners and discovering of the research landscape.

The dashboard provides detailed information about the selected scientist, e.g. publications. The dashboard can be filtered and shows the relationship to co-authors in different diagrams. In addition, a link is provided to find contact information.

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Materials Map under construction

The Materials Map is still under development. In its current state, it is only based on one single data source and, thus, incomplete and contains duplicates. We are working on incorporating new open data sources like ORCID to improve the quality and the timeliness of our data. We will update Materials Map as soon as possible and kindly ask for your patience.

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in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (1/1 displayed)

  • 2010The double cantilever beam test applied to mode I fracture characterization of cortical bone tissue61citations

Places of action

Chart of shared publication
Morais, Jjl
1 / 5 shared
Xavier, J.
1 / 35 shared
Dourado, N.
1 / 13 shared
Pereira, Fam
1 / 1 shared
De Moura, Mfsf
1 / 2 shared
Azevedo, Jmt
1 / 1 shared
Chart of publication period
2010

Co-Authors (by relevance)

  • Morais, Jjl
  • Xavier, J.
  • Dourado, N.
  • Pereira, Fam
  • De Moura, Mfsf
  • Azevedo, Jmt
OrganizationsLocationPeople

article

The double cantilever beam test applied to mode I fracture characterization of cortical bone tissue

  • Morais, Jjl
  • Xavier, J.
  • Dourado, N.
  • Pereira, Fam
  • De Moura, Mfsf
  • Azevedo, Jmt
  • Dias, Mir
Abstract

The primary objective of this work was to analyse the adequacy of the Double Cantilever Beam (DCB) test in determining fracture toughness under pure mode I loading of cortical bone tissue. A new data reduction scheme based on specimen compliance and the crack equivalent concept was used to overcome the difficulties inherent in crack monitoring during its growth. It provides a complete resistance curve, which is fundamental in estimating the fracture energy. A cohesive zone model was used to simulate damage initiation and propagation, thus assessing the efficacy of the proposed testing method and data reduction scheme. Subsequently, the DCB test was applied to evaluate the mode I fracture energy of hydrated and thermally dehydrated cortical bone tissue from young bovine femur, in the tangential-longitudinal propagation system. The results obtained demonstrate the efficacy of the DCB test and the proposed data reduction scheme on the bone fracture characterization under mode I loading.

Topics
  • impedance spectroscopy
  • crack
  • fracture toughness