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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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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Legarth, Brian Nyvang

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in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (30/30 displayed)

  • 2024Particle-matrix debonding with Strength-Differential effectscitations
  • 2024Temperature-dependent changes in thermoplastic sandwich core properties and failure mechanisms using four-point tests with short specimenscitations
  • 2024Mode-III fracture toughness measurements of foam-cored sandwich composites using a constrained Shear-Torsion-Bending specimencitations
  • 2022A Modified Shear Torsion Bending Test for Mode-III Fracture Toughness Measurements of Face/Core Interfaces in Sandwich Compositescitations
  • 2022A special finite element method applied to off-axis tunnel cracking in laminates3citations
  • 2022An efficient stiffness degradation model for layered composites with arbitrarily oriented tunneling and delamination cracks5citations
  • 2021Introduction to the finite element solid formulationcitations
  • 2021A novel test fixture for mode III fracture characterization of monolithic laminates and composite sandwich specimens2citations
  • 2021Approach for analysing off-axis tunnelling cracks in biaxially loaded laminates2citations
  • 2019Development of a Mode III Test Rig for Composite Laminates and Sandwich Face/Core Fracture Characterizationcitations
  • 2015Plasticity dependent damage evolution in composites with strain-gradient effects16citations
  • 2015Effect of fiber positioning on mixed-mode fracture of interfacial debonding in composites13citations
  • 2015Effect of fiber positioning on mixed-mode fracture of interfacial debonding in composites13citations
  • 2014A numerical study of the influence of microvoids in the transverse mechanical response of unidirectional composites122citations
  • 2014A numerical study of the influence of microvoids in the transverse mechanical response of unidirectional composites122citations
  • 2014A numerical study of the influence of microvoids in the transverse mechanical response of unidirectional composites122citations
  • 2014On the homogenization of metal matrix composites using strain gradient plasticity8citations
  • 2013Experimental and numerical study of the micro-mechanical failure in compositescitations
  • 2013Experimental and numerical study of the micro-mechanical failure in compositescitations
  • 2013A deformation mechanism map for polycrystals modeled using strain gradient plasticity and interfaces that slide and separate39citations
  • 2013Micromechanical modeling of unidirectional composites with uneven interfacial strengths15citations
  • 2013Micromechanical modeling of unidirectional composites with uneven interfacial strengths15citations
  • 2013A new macroscopically anisotropic pressure dependent yield function for metal matrix composite based on strain gradient plasticity for the microstructure13citations
  • 2013Fracture of anisotropic materials with plastic strain-gradient effectscitations
  • 2012Debonding analyses in anisotropic materials with strain- gradient effectscitations
  • 2012Debonding Analyses in Anisotropic Materials with Strain-Gradient Effectscitations
  • 2011Size-effects on yield surfaces for micro reinforced composites20citations
  • 2010Debonding failure and size effects in micro reinforced composites38citations
  • 2005Effects of geometrical anisotropy on failure in a plastically anisotropic metalcitations
  • 2004Particle debonding using different yield criteria17citations

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Sagong, Cheol
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Yoon, Jeong Whan
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Gomez Meisel, Edgar Arturo
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Horn, Alexander
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Berggreen, Christian
5 / 87 shared
Lin, Lujin
3 / 3 shared
Sabbadin, Pietro
3 / 4 shared
Mikkelsen, Lars Pilgaard
3 / 71 shared
Niordson, Christian Frithiof
9 / 52 shared
Christensen, Mikkel M.
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Herrmann, Leon
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Duddeck, Fabian
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Nielsen, Cv
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Martins, Paulo A. F.
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Bangaru, Ashish Kumar
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Sørensen, Bent F.
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Massabò, Roberta
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Ashouri Vajari, Danial
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Vajari, Danial Ashouri
4 / 4 shared
Gonzalez, Carlos
2 / 27 shared
Llorca, Javier
2 / 309 shared
González Martínez, Carlos Daniel
1 / 20 shared
Llorca Martinez, Francisco Javier
1 / 38 shared
Azizi, Reza
3 / 5 shared
Martyniuk, Karolina
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Dahlberg, Carl F. O.
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Faleskog, Jonas
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Kuroda, Mitsutoshi
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Co-Authors (by relevance)

  • Sagong, Cheol
  • Yoon, Jeong Whan
  • Gomez Meisel, Edgar Arturo
  • Horn, Alexander
  • Berggreen, Christian
  • Lin, Lujin
  • Sabbadin, Pietro
  • Mikkelsen, Lars Pilgaard
  • Niordson, Christian Frithiof
  • Christensen, Mikkel M.
  • Herrmann, Leon
  • Duddeck, Fabian
  • Nielsen, Cv
  • Martins, Paulo A. F.
  • Bangaru, Ashish Kumar
  • Sørensen, Bent F.
  • Massabò, Roberta
  • Ashouri Vajari, Danial
  • Vajari, Danial Ashouri
  • Gonzalez, Carlos
  • Llorca, Javier
  • González Martínez, Carlos Daniel
  • Llorca Martinez, Francisco Javier
  • Azizi, Reza
  • Martyniuk, Karolina
  • Dahlberg, Carl F. O.
  • Faleskog, Jonas
  • Kuroda, Mitsutoshi
OrganizationsLocationPeople

article

Debonding failure and size effects in micro reinforced composites

  • Legarth, Brian Nyvang
  • Niordson, Christian Frithiof
Abstract

Failure in micro-reinforced composites is investigated numerically using the strain-gradient plasticity theory of Gudmundson [Gudmundson, P., 2004. A unified treatment of strain gradient plasticity. Journal of the Mechanics and Physics of Solids 52 (6) 1379–1406] in a plane strain visco-plastic formulation. Bi-axially loaded unit cells are used and failure is modeled using a cohesive zone at the reinforcement interface. During debonding a sudden stress drop in the overall average stress–strain response is observed. Adaptive higher-order boundary conditions are imposed at the reinforcement interface for realistically modeling the restrictions on moving dislocations as debonding occurs. It is found that the influence of the imposed higher-order boundary conditions at the interface is minor. If strain-gradient effects are accounted for a void with a smooth shape develops at the reinforcement interface while a smaller void having a sharp tip nucleates if strain-gradient effects are excluded. Using orthogonalization of the plastic strain gradient with three corresponding material length scales it is found that, the first length scale dominates the evaluated overall average stress–strain response, the second one only has a small effect and the third one has an intermediate effect. Finally, studies of reinforcement having elliptical cross-sections show rather significant gradients of stress which is not seen for the corresponding circular cross-sections. Also, an increased drop in the overall load carrying capacity is observed for cross-sections elongated perpendicular to the principal tensile direction compared to the corresponding circular cross-sections.

Topics
  • impedance spectroscopy
  • polymer
  • theory
  • composite
  • dislocation
  • plasticity
  • void