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photo de Cuong Ha MinhCuong HA MINH Old member of the laboratory

Publications

titre
année, auteur(s)
type  
Analysis of local and global localizations on the failure phenomenon of 3D interlock woven fabrics under ballistic impact
2017, Chu Tuan-Long; Ha Minh Cuong; Imad Abdellatif
Composite Structures
journal paper     
A numerical investigation of the influence of yarn mechanical and physical properties on the ballistic impact behavior of a Kevlar KM2® woven fabric
2016, Chu Tuan-Long; Ha Minh Cuong; Imad Abdellatif
Composites Part B: Engineering
journal paper     
Experimental and numerical investigation of a 3D woven fabric subjected to a ballistic impact
2016, Ha Minh Cuong; Imad Abdellatif; Boussu François; Kanit Toufik
International Journal of Impact Engineering
journal paper     
Numerical analysis of a ballistic impact on textile fabric
2013, Ha Minh Cuong; Imad Abdellatif; Kanit Toufik; Boussu François
International Journal of Mechanical Sciences
journal paper     
Effect of Frictions on the Ballistic Performance of a 3D Warp Interlock Fabric: Numerical Analysis
2012, Ha Minh Cuong; Boussu François; Kanit Toufik; Crepin David; Imad Abdellatif
Applied composite materials
journal paper     
Numerical study on the effects of yarn mechanical transverse properties on the ballistic impact behavior of textile fabric
2012, Ha Minh Cuong; Imad Abdellatif; Boussu François; Kanit Toufik; Crepin David
Journal of Strain Analysis for Engineering Design
journal paper     
Analysis on failure mechanisms of an interlock woven fabric under ballistic impact
2011, Ha Minh Cuong; Boussu François; Kanit Toufik; Crepin David; Imad Abdellatif
Engineering Failure Analysis
journal paper     
Numerical multi-scale modeling for textile woven fabric against ballistic impact
2011, Ha Minh Cuong; Kanit Toufik; Boussu François; Imad Abdellatif
Computational Materials Science
journal paper     
Analysis on failure mechanisms of an interlock woven fabric under ballistic impact
2001, Ha Minh Cuong
Engineering Failure Analysis
journal paper     
pages