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 (21/21 displayed)

  • 2024An efficient numerical model for free vibration of temperature-dependent porous FG nano-scale beams using a nonlocal strain gradient theorycitations
  • 2023Bending Responses of Bi-Directional Advanced Composite Nanobeams Using Higher Order Nonlocal Strain Gradient Theory2citations
  • 2022Elastic stability of functionally graded graphene reinforced porous nanocomposite beams using two variables shear deformationcitations
  • 2022Bending analysis of functionally graded porous nanocomposite beams based on a non-local strain gradient theory31citations
  • 2021A robust method for the reliability-based design optimization of shape memory alloy actuator5citations
  • 2020Surrogate models for uncertainty analysis of micro-actuator13citations
  • 2019An approach for the reliability-based design optimization of shape memory alloy structure16citations
  • 2018Uncertainty analysis of an actuator for a shape memory alloy micro-pump with uncertain parameters12citations
  • 2018Uncertainty analysis of an actuator for a shape memory alloy micro-pump with uncertain parameters12citations
  • 2017Edge Effect on Nanoparticles of an Interconnect Alloy from the ABV Modelcitations
  • 2013Contribution to the modeling of hydration and chemical shrinkage of slag-blended cement at early age65citations
  • 2013Contribution to the modeling of hydration and chemical shrinkage of slag-blended cement at early age65citations
  • 2012Finite Element analysis of a shape memory alloy actuator for a micropump38citations
  • 2012Finite Element analysis of a shape memory alloy actuator for a micropump38citations
  • 2010Coupling between measured kinematic fields and multicrystal SMA finite element calculations35citations
  • 2010Coupling between measured kinematic fields and multicrystal SMA finite element calculations35citations
  • 2009Coupling between experiment and numerical simulation of shape memory alloy multicrystal3citations
  • 2009Coupling between experiment and numerical simulation of shape memory alloy multicrystal3citations
  • 2009Dialogue entre expérience et simulation numérique pour un multicristal en alliage à mémoire de formecitations
  • 2009Dialogue entre expérience et simulation numérique pour un multicristal en alliage à mémoire de formecitations
  • 2008Experimental identification and micromechancial modeling of the behavior of a multicrystal out of shape memory alloycitations

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Houari, Mohammed Sid Ahmed
3 / 4 shared
Belkacem, Abdelkader
1 / 2 shared
Ladmek, Miloud
1 / 2 shared
Tounsi, Abdelouahed
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Bessaim, Aicha
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Daikh, Ahmed Amine
1 / 4 shared
Belarbi, Mohamed Ouejdi
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Messai, Abderraouf
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Fortas, Lahcene
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Bessaim, A.
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Haboussi, Mohamed
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Dimitri, R.
1 / 13 shared
Tornabene, Francesco
1 / 19 shared
Ahmed, Houari Mohammed Sid
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Yaich, Ahmed
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Abid, Fatma
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El Hami, Abdelkhalak
3 / 6 shared
Haddar, Mohamed
3 / 73 shared
Walha, Lassaad
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Dammak, Khalil
1 / 1 shared
Walha, Lassâad
1 / 1 shared
Trabelsi, Hassen
1 / 1 shared
Hami, Abdelkhalak El
3 / 3 shared
Zineb, Tarak Ben
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Guerine, Ahmed
2 / 2 shared
Ben Zineb, Tarak
5 / 73 shared
Pougnet, Philippe
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Saada, Chemseddine
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Dahoo, Pierre-Richard
1 / 10 shared
Linares, Jorge
1 / 3 shared
Houda Khalifa, Nour El
1 / 1 shared
Bouasker, Marwen
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Mounanga, Pierre
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Khalifa, Nour El Houda
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Duval, Arnaud
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Meraghni, Fodil
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Collard, Christophe
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Bourgeois, N.
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Bourgeois, Nadine
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Co-Authors (by relevance)

  • Houari, Mohammed Sid Ahmed
  • Belkacem, Abdelkader
  • Ladmek, Miloud
  • Tounsi, Abdelouahed
  • Bessaim, Aicha
  • Daikh, Ahmed Amine
  • Belarbi, Mohamed Ouejdi
  • Messai, Abderraouf
  • Fortas, Lahcene
  • Bessaim, A.
  • Haboussi, Mohamed
  • Dimitri, R.
  • Tornabene, Francesco
  • Ahmed, Houari Mohammed Sid
  • Yaich, Ahmed
  • Abid, Fatma
  • El Hami, Abdelkhalak
  • Haddar, Mohamed
  • Walha, Lassaad
  • Dammak, Khalil
  • Walha, Lassâad
  • Trabelsi, Hassen
  • Hami, Abdelkhalak El
  • Zineb, Tarak Ben
  • Guerine, Ahmed
  • Ben Zineb, Tarak
  • Pougnet, Philippe
  • Saada, Chemseddine
  • Dahoo, Pierre-Richard
  • Linares, Jorge
  • Houda Khalifa, Nour El
  • Bouasker, Marwen
  • Mounanga, Pierre
  • Khalifa, Nour El Houda
  • Duval, Arnaud
  • Meraghni, Fodil
  • Collard, Christophe
  • Bourgeois, N.
  • Bourgeois, Nadine
OrganizationsLocationPeople

article

Bending Responses of Bi-Directional Advanced Composite Nanobeams Using Higher Order Nonlocal Strain Gradient Theory

  • Belkacem, Abdelkader
  • Ladmek, Miloud
  • Tounsi, Abdelouahed
  • Bessaim, Aicha
  • Daikh, Ahmed Amine
  • Houari, Mohammed Sid Ahmed
  • Belarbi, Mohamed Ouejdi
  • Merzouki, Tarek
Abstract

The bending response of two-dimensional (2D) functionally graded (FG) nonlocal strain gradient nanobeams is explored analytically in this work. The longitudinal and transverse orientations vary in material gradation and material characteristics. Kinematic relations of nanobeams are proposed according to hybrid hyperbolic-parabolic functions. The virtual work principle obtains the equilibrium equations, which are then solved using Navier's method. The accuracy and dependability of the suggested analytical model are demonstrated by comparing the results to predictions made in the literature. A thorough parametric study also determines how sensitive the material distribution, the nonlocal length-scale parameter, the strain gradient microstructure-scale parameter, and the geometry are to how the bending response and stresses of 2D FG nanobeams. The results obtained provide benchmark results, which can be used in the design of composite structures.

Topics
  • impedance spectroscopy
  • microstructure
  • theory
  • composite
  • two-dimensional