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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Vrije Universiteit Brussel

in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (22/22 displayed)

  • 2020Experimental and numerical evaluation of textile reinforced cement (TRC) sandwich walls in compression: A geometrical study11citations
  • 2019Experimental investigation of the buckling behaviour of textile reinforced cement sandwich panels with varying face thickness using Digital Image Correlation20citations
  • 2019Fatigue Behaviour of Textile Reinforced Cementitious Composites and Their Application in Sandwich Elements17citations
  • 2019Validation of a Numerical Bending Model for Sandwich Beams with Textile-Reinforced Cement Faces by Means of Digital Image Correlation23citations
  • 2019Experimental study and benchmarking of 3D textile reinforced cement composites30citations
  • 2019Durability of sandwich beams with textile reinforced cementitious composite faces20citations
  • 2018Design and experimental investigation of textile reinforced cement sandwich panel endscitations
  • 2018Investigation of 3D TRC’s by Means of Three Point Bending Tests on Short Beam Specimenscitations
  • 2018Characterization of the Bond between Textile Reinforced Cement and Extruded Polystyrene by Shear Testcitations
  • 2018Fibre textile reinforced cementitious composites: experimental investigation and modelling of three point bending tests on short beamscitations
  • 2018Repeated loading of cement composite sandwich beamscitations
  • 2018Modelling and experimental verification of flexural behaviour of textile reinforced cementitious composite sandwich renovation panelscitations
  • 2018Influence of environmental loading on the tensile and cracking behaviour of textile reinforced cementitious composites36citations
  • 2018Experimental investigation and benchmarking of 3D textile reinforced cementitious composites7citations
  • 2018Buckling behaviour of structural insulating sandwich walls with textile reinforced cement faces2citations
  • 2018Investigation of 3D TRC's by Means of Three Point Bending Tests on Short Beam Specimenscitations
  • 2018Investigation of the bond properties between textile reinforced concrete and extruded polystyrene foamcitations
  • 2018Influence of weathering conditions on TRC sandwich renovation panels3citations
  • 2017Durability study of textile reinforced cementitious composites with low fiber volume fractioncitations
  • 20173D fibre textiles as reinforcement for lightweight concrete structurescitations
  • 2017AE monitoring of 3D textile reinforced cementscitations
  • 2017Axial loading of small sandwich panels with textile reinforced cementitious faces monitored by DICcitations

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Chart of shared publication
Hemelrijck, Danny Van
2 / 19 shared
Kadi, Michael El
21 / 36 shared
Van Hemelrijck, Danny
9 / 126 shared
Itterbeeck, Petra Van
3 / 20 shared
Kapsalis, Panagiotis
6 / 13 shared
Wastiels, Jan
20 / 235 shared
Tysmans, Tine
22 / 82 shared
Munck, Matthias De
21 / 24 shared
Verbruggen, Svetlana
18 / 44 shared
Remy, Olivier
6 / 25 shared
Van Hemelrijck, D.
1 / 37 shared
Verbruggen, S.
1 / 5 shared
De Munck, M.
1 / 3 shared
Tysmans, T.
1 / 7 shared
El Kadi, M.
1 / 2 shared
Vervloet, J.
1 / 3 shared
Petra Itterbeek, Van
1 / 1 shared
Murray, Brendan
1 / 2 shared
Remi, Olivier
1 / 1 shared
Tsangouri, Eleni
4 / 46 shared
Itterbeek, Petra Van
2 / 2 shared
Triantafillou, Thanasis
1 / 39 shared
Aggelis, Dimitrios G.
1 / 73 shared
Chart of publication period
2020
2019
2018
2017

Co-Authors (by relevance)

  • Hemelrijck, Danny Van
  • Kadi, Michael El
  • Van Hemelrijck, Danny
  • Itterbeeck, Petra Van
  • Kapsalis, Panagiotis
  • Wastiels, Jan
  • Tysmans, Tine
  • Munck, Matthias De
  • Verbruggen, Svetlana
  • Remy, Olivier
  • Van Hemelrijck, D.
  • Verbruggen, S.
  • De Munck, M.
  • Tysmans, T.
  • El Kadi, M.
  • Vervloet, J.
  • Petra Itterbeek, Van
  • Murray, Brendan
  • Remi, Olivier
  • Tsangouri, Eleni
  • Itterbeek, Petra Van
  • Triantafillou, Thanasis
  • Aggelis, Dimitrios G.
OrganizationsLocationPeople

article

Validation of a Numerical Bending Model for Sandwich Beams with Textile-Reinforced Cement Faces by Means of Digital Image Correlation

  • Kadi, Michael El
  • Van Hemelrijck, Danny
  • Itterbeeck, Petra Van
  • Kapsalis, Panagiotis
  • Wastiels, Jan
  • Tysmans, Tine
  • Vervloet, Jolien
  • Munck, Matthias De
Abstract

<p>Sandwich panels with textile-reinforced cement (TRC) faces merge both structural and insulating performance into one lightweight construction element. To design with sandwich panels, predictive numerical models need to be thoroughly validated, in order to use them with high confidence and reliability. Numerical bending models established in literature have been validated by means of local displacement measurements, but are missing a full surface strain validation. Therefore, four-point bending tests monitored by a digital image correlation system were compared with a numerical bending model, leading to a thorough validation of that numerical model. Monitoring with a digital image correlation (DIC) system gave a highly detailed image of behaviour during bending and the strains in the different materials of the sandwich panel. The measured strains validated the numerical model predictions of, amongst others, the multiple cracking of the TRC tensile face and the shear deformation of the core.</p>

Topics
  • surface
  • cement
  • bending flexural test