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Featured researches published by Kader Zaïdat.


Materials Science Forum | 2006

Columnar-to-Equiaxed Transition in SOLidification Processing (CETSOL): a project of the European Space Agency (ESA) - Microgravity Applications Promotion (MAP) programme

Charles-André Gandin; B. Billia; Gerhard Zimmermann; David J. Browne; Marie-Danielle Dupouy; Gildas Guillemot; Henri Nguyen-Thi; N. Mangelinck-Noël; Guillaume Reinhart; Laszlo Sturz; S. Mc Fadden; Jerzy Banaszek; Yves Fautrelle; Kader Zaïdat; Alexandru Ciobanas

The main objective of the research project of the European Space Agency (ESA) - Microgravity Application Promotion (MAP) programme entitled Columnar-to-Equiaxed Transition in SOLidification Processing (CETSOL) is the investigation of the formation of the transition from columnar to equiaxed macrostructure that takes place in casting. Indeed, grain structures observed in most casting processes of metallic alloys are the result of a competition between the growth of several arrays of dendrites that develop under constrained and unconstrained conditions, leading to the CET. A dramatic effect of buoyancy-driven flow on the transport of equiaxed crystals on earth is acknowledged. This leads to difficulties in conducting precise investigations of the origin of the formation of the equiaxed crystals and their interaction with the development of the columnar grain structure. Consequently, critical benchmark data to test fundamental theories of grain structure formation are required, that would benefit from microgravity investigations. Accordingly, the ESA-MAP CETSOL project has gathered together European groups with complementary skills to carry out experiments and to model the processes, in particular with a view to utilization of the reduced-gravity environment that will be afforded by the International Space Station (ISS) to get benchmark data. The ultimate objective of the research program is to significantly contribute to the improvement of integrated modelling of grain structure in industrially important castings. To reach this goal, the approach is devised to deepen the quantitative understanding of the basic physical principles that, from the microscopic to the macroscopic scales, govern microstructure formation in solidification processing under diffusive conditions and with fluid flow in the melt. Pertinent questions are attacked by well-defined model experiments on technical alloys and/or on model transparent systems, physical modelling at microstructure and mesoscopic scales (e.g. large columnar front or equiaxed crystals) and numerical simulation at all scales, up to the macroscopic scales of casting with integrated numerical models.


Metallurgical and Materials Transactions A-physical Metallurgy and Materials Science | 2013

Direct Simulation of a Solidification Benchmark Experiment

Tommy Carozzani; Charles-André Gandin; Hugues Digonnet; Michel Bellet; Kader Zaïdat; Yves Fautrelle


Journal of Crystal Growth | 2010

Columnar-to-equiaxed transitions in al-based alloys during directional solidification under a high magnetic field

Xi Li; Yves Fautrelle; Kader Zaïdat; Annie Gagnoud; Zhongming Ren; Rene Moreau; Yudong Zhang; Claude Esling


International Journal of Heat and Mass Transfer | 2012

Experimental analysis of the solidification of Sn–3 wt.%Pb alloy under natural convection

Lakhdar Hachani; Bachir Saadi; Xiao Dong Wang; Abdallah Nouri; Kader Zaïdat; A. Belgacem-Bouzida; Linda Ayouni-Derouiche; Gaëtan Raimondi; Yves Fautrelle


Journal of Crystal Growth | 2005

Directional solidification of refined Al–3.5 wt% Ni under natural convection and under a forced flow driven by a travelling magnetic field

Kader Zaïdat; T. Ouled-Khachroum; G. Vian; C. Garnier; N. Mangelinck-Noël; M.D. Dupouy; R. Moreau


Journal of Crystal Growth | 2014

Directional solidification of silicon under the influence of travelling magnetic field

M. Cablea; Kader Zaïdat; Annie Gagnoud; A. Nouri; Yves Delannoy


Journal of Crystal Growth | 2011

One-dimensional model of the equiaxed grain formation in multi-crystalline silicon

M. Beaudhuin; Thierry Duffar; M. Lemiti; Kader Zaïdat


Materials Chemistry and Physics | 2012

Carbon reaction with levitated silicon – Experimental and thermodynamic approaches

M. Beaudhuin; G. Chichignoud; P. Bertho; Thierry Duffar; M. Lemiti; Kader Zaïdat


Journal of Crystal Growth | 2011

Nitrogen reaction with silicon: Investigation of Si undercooling and Si3N4 growth

M. Beaudhuin; Kader Zaïdat; Thierry Duffar; M. Lemiti


Journal of Crystal Growth | 2015

Multi-crystalline silicon solidification under controlled forced convection

M. Cablea; Kader Zaïdat; Annie Gagnoud; A. Nouri; G. Chichignoud; Yves Delannoy

Collaboration


Dive into the Kader Zaïdat's collaboration.

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Guy Chichignoud

Centre national de la recherche scientifique

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Yves Delannoy

Centre national de la recherche scientifique

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Ahmed Nouri

Centre national de la recherche scientifique

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Yves Fautrelle

Centre national de la recherche scientifique

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Annie Gagnoud

Centre national de la recherche scientifique

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C. Jimenez

Centre national de la recherche scientifique

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Eirini Sarigiannidou

Centre national de la recherche scientifique

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Isabelle Gélard

Centre national de la recherche scientifique

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M. Beaudhuin

Centre national de la recherche scientifique

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Thierry Duffar

Centre national de la recherche scientifique

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