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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977 Locations available

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Naji, M.
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in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (36/36 displayed)

  • 2024Does the wet addition of crumb rubber and emission reduction agents impair the rheological performance of bitumen?3citations
  • 2021Introducing an improved testing method to evaluate the fatigue resistance of bituminous mortarscitations
  • 2021Investigation of the effect of short-term ageing on rejuvenated reclaimed asphalt bindercitations
  • 2021Determination of bitumen coverage, after the rolling bottle test, by a digital image processing methodcitations
  • 2021Influence of aggregates, glass fibre reinforcement and recycled aggregates on polyester mortar15citations
  • 2021Influence of soft binder and rejuvenator on the mechanical and chemical properties of bituminous binders26citations
  • 2020Cementitious binders and reclaimed asphalt aggregates for sustainable pavement base layers25citations
  • 2019Visualization and chemical analysis of bitumen microstructures3citations
  • 2017Use of early acoustic emission to evaluate the structural condition and self-healing performance of textile reinforced cements16citations
  • 2017Use of early acoustic emission to evaluate the structural condition and self-healing performance of textile reinforce cementscitations
  • 2017Development of a mold for thermoplastics based on a phosphate cement3citations
  • 2017Acoustic emission for characterization of failure mechanisms in textile reinforced mortar laminates under tensile loadingcitations
  • 2014Influence of geometry on the fracturing behavior of textile reinforced cement monitored by acoustic emissioncitations
  • 2014Effect of curing conditions on the dimensional and thermal stability of calcium phosphate cement for elevated temperature applications15citations
  • 2014Application of acoustic emission on the characterization of fracture in TRC laminatescitations
  • 2014Acoustic emission for characterization of failure mechanism in textile reinforced mortar laminatescitations
  • 2014Bending fracture of textile reinforced cement laminates monitored by acoustic emission: influence of aspect ratio27citations
  • 2013Modeling textile reinforced cementitious composites - effect of elevated temperaturescitations
  • 2013FORMING THERMOPLASTIC PREPREGS IN A TEXTILE REINFORCED INORGANIC PHOSPHATE CEMENT COMPOSITE MOULDcitations
  • 2012Determination of linear thermal expansion coefficient by using digital image correlationcitations
  • 2012Determination of linear thermal expansion coefficient by using digital image correlationcitations
  • 2012Influence of strain rate on tensile behavior of cementitious compositescitations
  • 2012Influence of strain rate on tensile behavior of cementitious composites: increasing speed in a static testcitations
  • 2012Flexural behavior of textile reinforced cementitious composites when exposed to high temperaturescitations
  • 2011Study of the Bending Behaviour of Textile Reinforced Cementitious Composites When Exposed to High Temperaturescitations
  • 2011Applicability of composite Charpy impact method for strain hardening textile reinforced cementitious compositescitations
  • 2011Applicability of composite Charpy impact method for strain hardening textile reinforced cementitious compositescitations
  • 2011Determination of Linear thermal expansion coefficient by using digital image correlationcitations
  • 2010Shrinkage measurement of a textile reinforced composite at high temperature using a non contact methodcitations
  • 2010Strain rate effect on the mechanical behaviour of a textile reinforced cement compositecitations
  • 2010Damage characterisation of a textile reinforced cement composite under low velocity impact loadingcitations
  • 2009Impact study of textile reinforced cementitious materials: test method and preliminary resultscitations
  • 2009Impact study of textile reinforced cementitious materialscitations
  • 2009Inorganic Phosphate Textile Reinforced Cement composite mouldscitations
  • 2008Determination of material parameters of a textile reinforced composite using an inverse methodcitations
  • 2007Modelling the Behaviour of Textile Reinforced Cementitious Composites under Bendingcitations

Places of action

Chart of shared publication
Bressan Borinelli, Jaffer
1 / 2 shared
Hernando, David
2 / 7 shared
Vuye, Cedric
2 / 8 shared
Pipintakos, Georgios
1 / 4 shared
Bergh, Wim Van Den
4 / 10 shared
Zhang, Li Ming
1 / 1 shared
Margaritis, Alexandros
3 / 3 shared
Jacobs, Geert
3 / 4 shared
Soenen, Hilde
2 / 14 shared
Porot, Laurent
1 / 14 shared
Van Thillo, Lotte
1 / 1 shared
Craeye, Bart
1 / 7 shared
Moreels, Alex
1 / 1 shared
He, Liang
1 / 4 shared
Bezerra, Augusto Cesar S.
1 / 1 shared
Oliveira Costa, Juliana
1 / 2 shared
Borges, Paulo H. R.
1 / 2 shared
Santos, Flavio A. Dos
1 / 1 shared
Sjövall, Peter
1 / 14 shared
Lu, Xiaohu
1 / 5 shared
Andersson, Martin
1 / 13 shared
Kadi, Michael El
5 / 36 shared
Aggelis, Dimitrios G.
7 / 73 shared
Wastiels, Jan
27 / 235 shared
Rahier, Hubert
2 / 67 shared
Vuye, C.
1 / 1 shared
Ackeren, Johan Van
14 / 41 shared
Belkassem, Bachir
3 / 25 shared
Hemelrijck, Danny Van
2 / 19 shared
Paepegem, Wim Van
7 / 64 shared
Vantomme, Johnny
2 / 29 shared
Palanivelu, Sivakumar
7 / 35 shared
Degrieck, J.
1 / 143 shared
Kakogiannis, Dimitrios
7 / 38 shared
Van Hemelrijck, Danny
6 / 126 shared
Vantomme, John
6 / 47 shared
Van Paepegem, Wim
1 / 489 shared
Van Ackeren, Johan
1 / 4 shared
Degrieck, Joris
4 / 97 shared
Itterbeeck, Petra Van
3 / 20 shared
Cuypers, Heidi
2 / 46 shared
Chart of publication period
2024
2021
2020
2019
2017
2014
2013
2012
2011
2010
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Co-Authors (by relevance)

  • Bressan Borinelli, Jaffer
  • Hernando, David
  • Vuye, Cedric
  • Pipintakos, Georgios
  • Bergh, Wim Van Den
  • Zhang, Li Ming
  • Margaritis, Alexandros
  • Jacobs, Geert
  • Soenen, Hilde
  • Porot, Laurent
  • Van Thillo, Lotte
  • Craeye, Bart
  • Moreels, Alex
  • He, Liang
  • Bezerra, Augusto Cesar S.
  • Oliveira Costa, Juliana
  • Borges, Paulo H. R.
  • Santos, Flavio A. Dos
  • Sjövall, Peter
  • Lu, Xiaohu
  • Andersson, Martin
  • Kadi, Michael El
  • Aggelis, Dimitrios G.
  • Wastiels, Jan
  • Rahier, Hubert
  • Vuye, C.
  • Ackeren, Johan Van
  • Belkassem, Bachir
  • Hemelrijck, Danny Van
  • Paepegem, Wim Van
  • Vantomme, Johnny
  • Palanivelu, Sivakumar
  • Degrieck, J.
  • Kakogiannis, Dimitrios
  • Van Hemelrijck, Danny
  • Vantomme, John
  • Van Paepegem, Wim
  • Van Ackeren, Johan
  • Degrieck, Joris
  • Itterbeeck, Petra Van
  • Cuypers, Heidi
OrganizationsLocationPeople

booksection

Development of a mold for thermoplastics based on a phosphate cement

  • Rahier, Hubert
  • Wastiels, Jan
  • Blom, Johan
Abstract

In case of limited series or prototypes of thermoplastics, metallic molds are too<br/>expensive and time consuming to build. For that reason, a production strategy was developed to build a textile reinforced phosphate based cement mold with a thermal stability to at least 300°C. In this research, a composite mold is developed, based on glass fiber textile reinforced phosphate cement (TRC). This tooling system is combining the advantages of a thermoset mold with elevated temperature use. Since cement based molding systems contain water, major challenges are the reduction of porosity, the sealing of the surface and the limitation of the thermal shrinkage. The development of an isothermal curing method resulted in a more stable calcium phosphate cement, as confirmed by shrinkage measurements, X;ray Diffraction and Scanning Electron Microscopy. By adding fillers to the top coat, the surface permeability was decreased. The effects of thermal loading, composition of the matrix and the curing conditions were investigated by an experimental study including acoustic emission. To<br/>illustrate the potential of the proposed method, a thermoplastic prepreg was processed in both the conventional metal and the TRC equivalent. The proof of concept showed that a textile reinforced cement mold can be used to thermoform a thermoplastic prepreg to an acceptable part.<br/>

Topics
  • impedance spectroscopy
  • surface
  • scanning electron microscopy
  • glass
  • glass
  • composite
  • cement
  • permeability
  • acoustic emission
  • porosity
  • Calcium
  • thermoset
  • thermoplastic
  • curing