Organisatieprofiel

Introductie / missie

The chair of Applied Mechanics (AM) examines the mechanical and physical behaviour of materials and structures at various length scales.

Highlighted phrase

Creating new solutions for design and engineering in the built environment

Over de organisatie

The chair has a strong international reputation in the modelling of failure (plasticity, fracture, damage, phase transformations) and deformation of advanced engineering materials. The research examines and couples the mechanical behaviour of materials and structures at various length scales (macro, micro, nano), in order to improve material characteristics (high strength and toughness, low weight) and to pursue optimal structural and functional performances of applications in the built environment.

The coupled modelling of the mechanical behaviour of materials with other physical processes, such as the diffusion of moisture and/or chemical species, heat conduction, air flow, finds relevant applications within collaborative PhD research projects. Examples are the chemical degradation of concrete sewer systems, the damage development of historical museum objects under varying indoor climate conditions, the optimization and durability of wind turbines, and the thermal resistance of steel structures. In addition, multi-disciplinary optimization of buildings is researched via a combination of conceptual design process simulation and computing science optimization.


Our research themes

The group’s research is concentrated around the following three main directions:

1. Modelling of failure and deformation at various scales

Failure and deformation of structures and materials are modeled at the macro, meso and micro levels, with the aim of understanding how small-scale (microscopic) information affects behavior at larger (meso and macroscopic) scales. Activities focus on the development of robust and accurate computational models that closely follow the physics of the problem, and obey rigorous mathematical principles characterizing the separate scales and their couplings.

Collaborations: Delft University of Technology, Rijksmuseum, Centrum Wiskunde & Informatica, Cambridge University, Getty Conservation Institute, Metropolitan Museum of Art


2. Multi-physics modeling of structures and materials

In multi-physics modelling systems and processes referring to more than one physical field are studied, and their interactive phenomena are characterized. The research includes the mathematical formulation of the physical processes, the numerical discretization into robust and accurate numerical implementations, and the application of models to relevant engineering problems in the built environment. 

Collaborations: Rijksmuseum, Mauritshuis, University of Amsterdam, Cambridge University, Getty Conservation Institute, Building Physics group at TU/e, Delft University of Technology, Deltares, Polytechnic University of Valencia, Royal Danish Academy of Fine Arts, Queensland University of Technology

3. Optimization of structures and materials

The optimization of structures and materials refers to the study of structural shape, size, phase distribution and texture at the micro scale (morphology) and structural shape and space at the macro scale (topology). The aim is to optimize the performance and interactions of materials and structures during operation and manufacturing.

Collaborations: Concrete Structures group at TU/e, Building Physics group at TU/e, Delft University of Technology, Leiden Institute of Advanced Computer Science

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    Profielen

    Foto van Sjonnie Boonstra
    20152019
    Foto van Emanuela Bosco

    Emanuela Bosco

    Persoon: UD : Universitair Docent

    20122020
    Foto van Gijs J.A.M. Eumelen
    20182019

    Onderzoeksoutput

    Multi-scale prediction of chemo-mechanical properties of concrete materials through asymptotic homogenization

    Bosco, E., Claessens, R. J. M. A. & Suiker, A. S. J., feb 2020, In : Cement and Concrete Research. 128, 13 blz., 105929.

    Onderzoeksoutput: Bijdrage aan tijdschriftTijdschriftartikelAcademicpeer review

  • 1 Downloads (Pure)

    A computational model for chemo-mechanical degradation of historical oil paintings due to metal soap formation

    Eumelen, G., Bosco, E., Suiker, A. S. J., van Loon, A. & Iedema, P., 1 nov 2019, In : Journal of the Mechanics and Physics of Solids. 132, 21 blz., 103683.

    Onderzoeksoutput: Bijdrage aan tijdschriftTijdschriftartikelAcademicpeer review

  • 2 Downloads (Pure)

    Prijzen

    Award Best Bachelor Lecturer 2013

    Harrie Janssen (Ontvanger), 19 jun 2014

    Prijs: AndersWerk, activiteit of publicatie gerelateerde prijzen (lifetime, best paper, poster etc.)Wetenschappelijk

    Bestand

    Award Best Bachelor Lecturer 2014

    Harrie Janssen (Ontvanger), 21 mei 2015

    Prijs: AndersWerk, activiteit of publicatie gerelateerde prijzen (lifetime, best paper, poster etc.)Wetenschappelijk

    Bestand

    Award Best Bachelor Lecturer 2015

    Harrie Janssen (Ontvanger), 2 jun 2016

    Prijs: AndersWerk, activiteit of publicatie gerelateerde prijzen (lifetime, best paper, poster etc.)Wetenschappelijk

    Bestand

    Activiteiten

    • 62 Publicatie peer-review
    • 5 Redactioneel werk
    • 2 Lidmaatschap van commissie
    • 2 Genodigd spreker

    Automation in Construction (Tijdschrift)

    Herm Hofmeyer (Peer reviewer)
    13 mrt 2020

    Activiteit: Types publicaties van collegiale toetsing en redactioneel werkPublicatie peer-reviewWetenschappelijk

    Fire and Materials (Tijdschrift)

    Herm Hofmeyer (Peer reviewer)
    19 feb 2020

    Activiteit: Types publicaties van collegiale toetsing en redactioneel werkPublicatie peer-reviewWetenschappelijk

    Advanced Engineering Informatics (Tijdschrift)

    Herm Hofmeyer (Peer reviewer)
    10 feb 2020

    Activiteit: Types publicaties van collegiale toetsing en redactioneel werkPublicatie peer-reviewWetenschappelijk

    Scripties/Masterproeven

    Accelerating early strength and stiffness development of a Portland cement-based mortar for 3D printing

    Auteur: van der Meijde, G., 28 mei 2019

    Begeleider: Wolfs, R. (Afstudeerdocent 1), Suiker, A. (Afstudeerdocent 2) & Salet, T. (Afstudeerdocent 2)

    Scriptie/masterproef: Master

    Bestand

    A numerical simulation of an ESECMaSE shaking table test

    Auteur: Afantrous, H., 31 aug 2019

    Begeleider: Wijte, S. (Afstudeerdocent 1), Suiker, A. (Afstudeerdocent 2), Middelkoop, E. (Externe persoon) (Externe coach) & Vermeltfoort, A. (Afstudeerdocent 2)

    Scriptie/masterproef: Master

    Bestand

    Automated two-way coupled CFD fire and thermomechanical FE analyses of a self-supporting sandwich panel façade system

    Auteur: de Boer, J., 26 jun 2018

    Begeleider: Hofmeyer, H. (Afstudeerdocent 1), Maljaars, J. (Afstudeerdocent 2) & van Herpen, R. (Afstudeerdocent 2)

    Scriptie/masterproef: Master

    Bestand