Process, Simulation, and Materials Modeling Research Group
American University of Beirut
  • Home
    • Logo
  • Research
    • Ongoing Research>
      • Process and Simulation>
        • 3D Thermo-mechanical FEM
        • Surface Integrity in Sustainable Drilling
        • A Hybrid Framework for Controlling the Zener-Hollomon Parameter
        • Micro FEM Simulations of Sawing of Cortical Bone
      • Materials Modeling>
        • Multiscale Dislocation Dynamics Modeling
        • Mechanical Behavior of Wooden Assembly
    • Research Opportunities
    • Research Facilities>
      • Materials Testing Lab>
        • UTM
        • Impact Tester
        • Microscope
      • NC Machining Lab>
        • VF 6
        • SL 20
        • Laser System
        • Wire Cut EDM
      • Materials Processing Lab>
        • Heat Treatment Oven
        • Induction Melting Oven
        • Induction Melting and Centrifugal Casting Oven
        • Cryogenic Cooling
      • Central Research Science Lab
      • Computational Facilities
    • Recent Publications
  • People
  • Contact Us

Materials Modeling

  • Multiscale Dislocation Dynamics Modeling of the High Strain Rate Deformation in Copper Single Crystal under Cyclic, Monotonic, & Shock Loading
    • Advisor: Mu'tasem Shehadeh
    • Student: Micheal Kattoura
Picture
Cyclic deformation simulation at a total strain of 1.7×10-3 (a) Hardening curve (b) Hysteresis loops (Average Stress vs. Total Strain)
  • Simulation and Optimization of the Mechanical Behavior of Wooden Assembly Under Wet and Sunny Conditions
    • Advisor: Mu'tasem Shehadeh
    • Student: Zeina El Chlouk

Picture
Three point bending- Transverse direction
Powered by Create your own unique website with customizable templates.