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Sam Nakhla
Sam Nakhla
Associate Professor, Mechanical Engineering, Memorial University
Verified email at mun.ca - Homepage
Title
Cited by
Cited by
Year
A finite element model for the analysis of stiffened laminated plates
EA Sadek, SA Tawfik
Computers & Structures 75 (4), 369-383, 2000
872000
Solar wind ion sputtering of sodium from silicates using molecular dynamics calculations of surface binding energies
LS Morrissey, OJ Tucker, RM Killen, S Nakhla, DW Savin
The Astrophysical Journal Letters 925 (1), L6, 2022
232022
A finite element model to predict the effect of porosity on elastic modulus in low-porosity materials
LS Morrissey, S Nakhla
Metallurgical and Materials Transactions A 49, 2622-2630, 2018
222018
Atomistic uniaxial tension tests: investigating various many-body potentials for their ability to produce accurate stress strain curves using molecular dynamics simulations
LS Morrissey, SM Handrigan, S Subedi, S Nakhla
Molecular Simulation 45 (6), 501-508, 2019
142019
Automating XFEM modeling process for optimal failure predictions
AY Elruby, S Nakhla, A Hussein
Mathematical Problems in Engineering 2018, 2018
142018
Strain energy density based damage initiation in heavily cross-linked epoxy using XFEM
AY Elruby, S Nakhla
Theoretical and Applied Fracture Mechanics 103, 102254, 2019
132019
Erosion of spacecraft metals due to atomic oxygen: A molecular dynamics simulation
LS Morrissey, SM Handrigan, S Nakhla, A Rahnamoun
Journal of Spacecraft and Rockets 56 (4), 1231-1236, 2019
122019
The effect of atomic oxygen flux and impact energy on the damage of spacecraft metals
LS Morrissey, A Rahnamoun, S Nakhla
Advances in Space Research 66 (6), 1495-1506, 2020
112020
Sputtering of surfaces by ion irradiation: A comparison of molecular dynamics and binary collision approximation models to laboratory measurements
LS Morrissey, OJ Tucker, RM Killen, S Nakhla, DW Savin
Journal of Applied Physics 130 (1), 2021
92021
The effect of many-body potential type and parameterisation on the accuracy of predicting mechanical properties of aluminium using molecular dynamics
S Subedi, LS Morrissey, SM Handrigan, S Nakhla
Molecular Simulation 46 (4), 271-278, 2020
72020
Discrepancies in the mechanical properties of gold nanowires: The importance of potential type and equilibration method
LS Morrissey, SM Handrigan, S Nakhla
Computational Materials Science 171, 109234, 2020
72020
Investigating various many-body force fields for their ability to predict reduction in elastic modulus due to vacancies using molecular dynamics simulations
SM Handrigan, LS Morrissey, S Nakhla
Molecular Simulation 45 (16), 1341-1352, 2019
72019
Extending the Ramberg–Osgood relationship to account for metal porosity
AY Elruby, S Nakhla
Metallurgical and Materials Transactions A 50, 3121-3131, 2019
72019
Molecular dynamics simulations of nanoindentation–the importance of force field choice on the predicted elastic modulus of FCC aluminum
DR Pratt, LS Morrissey, S Nakhla
Molecular Simulation 46 (12), 923-931, 2020
62020
Quantifying void formation and changes to microstructure during hydrogen charging: a precursor to embrittlement and blistering
LS Morrissey, SM Handrigan, S Nakhla
Metallurgical and Materials Transactions A 50, 1460-1467, 2019
52019
Considerations when calculating the mechanical properties of single crystals and bulk polycrystals from molecular dynamics simulations
LS Morrissey, S Nakhla
Molecular Simulation 46 (18), 1433-1442, 2020
42020
Deployable oil dispersant system for fixed wing aircraft
N Brazil, S Nakhla, S Kenny
2014 Oceans-St. John's, 1-9, 2014
42014
Molecular dynamics simulations of the hydrogen embrittlement base case: atomic hydrogen in a defect free single crystal
LS Morrissey, S Nakhla
Molecular Simulation 48 (13), 1214-1222, 2022
32022
Simulating the diffusion of hydrogen in amorphous silicates: A ‘jumping’migration process and its implications for solar wind implanted lunar volatiles
LS Morrissey, D Pratt, WM Farrell, OJ Tucker, S Nakhla, RM Killen
Icarus 379, 114979, 2022
32022
Applied Finite Element Procedure for Morphing Wing Design
S Nakhla, AY Elruby
Applied Composite Materials 28 (4), 1193-1220, 2021
32021
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