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Zouheir Fawaz
Zouheir Fawaz
Adresă de e-mail confirmată pe ryerson.ca
Titlu
Citat de
Citat de
Anul
Use of infrared thermography to investigate the fatigue behavior of a carbon fiber reinforced polymer composite
J Montesano, Z Fawaz, H Bougherara
Composite structures 97, 76-83, 2013
2312013
Numerical simulation of normal and oblique ballistic impact on ceramic composite armours
Z Fawaz, W Zheng, K Behdinan
Composite Structures 63 (3-4), 387-395, 2004
2132004
Fatigue failure model for fibre-reinforced materials under general loading conditions
Z Fawaz, F Ellyin
Journal of composite materials 28 (15), 1432-1451, 1994
1751994
Tensile and compressive damaged response in Flax fibre reinforced epoxy composites
Z Mahboob, I El Sawi, R Zdero, Z Fawaz, H Bougherara
Composites Part A: Applied Science and Manufacturing 92, 118-133, 2017
1362017
Numerical simulation of the axial collapse of thin-walled polygonal section tubes
A Rossi, Z Fawaz, K Behdinan
Thin-walled structures 43 (10), 1646-1661, 2005
1172005
Ballistic limit prediction using a numerical model with progressive damage capability
S Chan, Z Fawaz, K Behdinan, R Amid
Composite Structures 77 (4), 466-474, 2007
1152007
Applicability and viability of a GA based finite element analysis architecture for structural design optimization
N Ali, K Behdinan, Z Fawaz
Computers & structures 81 (22-23), 2259-2271, 2003
902003
An investigation of the damage mechanisms and fatigue life diagrams of flax fiber-reinforced polymer laminates
I El Sawi, Z Fawaz, R Zitoune, H Bougherara
Journal of Materials Science 49, 2338-2346, 2014
892014
Non-destructive assessment of the fatigue strength and damage progression of satin woven fiber reinforced polymer matrix composites
J Montesano, Z Fawaz, H Bougherara
Composites Part B: Engineering 71, 122-130, 2015
852015
Biomechanical assessment of composite versus metallic intramedullary nailing system in femoral shaft fractures: a finite element study
S Samiezadeh, PT Avval, Z Fawaz, H Bougherara
Clinical Biomechanics 29 (7), 803-810, 2014
842014
Investigation of the mechanical properties and failure modes of hybrid natural fiber composites for potential bone fracture fixation plates
S Manteghi, Z Mahboob, Z Fawaz, H Bougherara
Journal of the mechanical behavior of biomedical materials 65, 306-316, 2017
782017
Curvilinear variable stiffness 3D printing technology for improved open-hole tensile strength
S Khan, K Fayazbakhsh, Z Fawaz, MA Nik
Additive Manufacturing 24, 378-385, 2018
752018
Application of infrared thermography for the characterization of damage in braided carbon fiber reinforced polymer matrix composites
J Montesano, H Bougherara, Z Fawaz
Composites Part B: Engineering 60, 137-143, 2014
712014
Influence of drilling and abrasive water jet induced damage on the performance of carbon fabric/epoxy plates with holes
J Montesano, H Bougherara, Z Fawaz
Composite Structures 163, 257-266, 2017
702017
On optimization of a composite bone plate using the selective stress shielding approach
S Samiezadeh, PT Avval, Z Fawaz, H Bougherara
Journal of the Mechanical Behavior of Biomedical Materials 42, 138-153, 2015
622015
Modeling fatigue damage evolution in polymer matrix composite structures and validation using in-situ digital image correlation
J Montesano, M Selezneva, M Levesque, Z Fawaz
Composite Structures 125, 354-361, 2015
592015
Damage evolution in unidirectional and cross-ply flax/epoxy laminates subjected to low velocity impact loading
BL Sy, Z Fawaz, H Bougherara
Composites Part A: Applied Science and Manufacturing 112, 452-467, 2018
542018
Internal chamber modeling of a solid rocket motor: Effects of coupled structural and acoustic oscillations on combustion
J Montesano, K Behdinan, DR Greatrix, Z Fawaz
Journal of Sound and Vibration 311 (1-2), 20-38, 2008
532008
Numerical modeling of pin–fin micro heat exchangers
E Galvis, BA Jubran, FXIK Behdinan, Z Fawaz
Heat and mass transfer 44 (6), 659-666, 2008
472008
Star-grain rocket motor–nonsteady internal ballistics
S Loncaric, DR Greatrix, Z Fawaz
Aerospace Science and Technology 8 (1), 47-55, 2004
472004
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