Publications by Author: M. BRIOUA

2019
Kherraf A, Tamerabet Y, BRIOUA M, Benbouta R. Chip Formation Process using Finite Element Simulation “Influence of Cutting Speed Variation”. Journal of Solid MechanicsJournal of Solid Mechanics. 2019;11 :854-861.
Mansouri K, BRIOUA M, Djebaili H, Ghelani L, Chitour M. Effect of Broken Fiber on Stress Transfer of Short Fiber Reinforced Thermoplastic Matrix Composite. Journal of Nano-and Electronic PhysicsJournal of Nano-and Electronic Physics. 2019;11.
2018
Tamerabet Y, BRIOUA M, TAMERABET M, Khoualdi S. Experimental Investigation on Tool Wear Behavior and Cutting Temperature during Dry Machining of Carbon Steel SAE 1030 Using KC810 and KC910 Coated Inserts. Tribology in IndustryTribology in Industry. 2018;40.
2011
ZIDANI K, CHLGHOUM L, BENICHA S, SMADI H, BENBRAHIM M, BRIOUA M. Etude Numérique Paramétrique d&⋕39;un Dispositif De Détéction Des Fissures Dans Les Pièces Mécaniques.; 2011.
Derardja A, BAROURA L, BRIOUA M. Isotropic Stress Distribution in Cu/(001) Fe Two Sheets, World Academy of Science. Engineering and TechnologyEngineering and Technology. 2011;Vol:5 :pp 07-23.Abstract
The nanotechnology based on epitaxial systems includes single or arranged misfit di slocations. In general, whatever is the type of dislocation or the geometry of the array formed by the dislocations; it is important for experimental studies to know exactly the stress distribution for which there is no analytical expression [1,2]. This work, using a numerical analysis, deals with relaxation of epitaxial layers having at their interface a periodic network of edge misfit dislocations. The stress distribution is estimated by using isotropic elasticity. The results show that the thickness of the two sheets is a crucial parameter in the stress distributions and then in the profile of the two sheets. A comparative study between the case of single dislocation and the case of parallel network shows that the layers relaxed better when the interface is covered by a parallel arrangement of misfit. Consequently, a single dislocation at the interface produces an important stress field which can be reduced by inserting a parallel network of dislocations with suitable periodicity.
2010
Benaicha S, ZIDANI K, BRIOUA M, Chelghoum L. A New Weight Function for Modeling Cracks in Meshless Numerical Methods, ICIC Express Letters An. International Journal of Research and SurveysInternational Journal of Research and Surveys. 2010;vol.4.
ZIDANI K, Chelghoum L, Benaicha S, BRIOUA M, BENCHERIF H. Numerical Simulation of hot Isostatic Pressing Process”6ème Journées d’Etudes Techniques.; 2010.