All Stories

  1. Modeling fatigue and hydrogen embrittlement (HELP+HEDE model) of steel with unified mechanics theory
  2. Unified Mechanics Theory
  3. Predicting high cycle fatigue life with unified mechanics theory
  4. A Review of Damage, Void Evolution, and Fatigue Life Prediction Models
  5. A unified mechanics theory-based model for temperature and strain rate dependent proportionality limit stress of mild steel
  6. Dynamic Equilibrium Equations in Unified Mechanics Theory
  7. A Review of Damage, Void Evolution, and Fatigue Life Prediction Models
  8. Entropy Based Fatigue, Fracture, Failure Prediction and Structural Health Monitoring
  9. High current density electron wind forces in metallic graphene nanoribbons
  10. Low Cycle Fatigue Life Prediction Using Unified Mechanics Theory in Ti-6Al-4V Alloys
  11. Fatigue Life Prediction Using Unified Mechanics Theory in Ti-6Al-4V Alloys
  12. Impact of electrostatic doping level on the dissipative transport in graphene nanoribbons tunnel field-effect transistors
  13. Influence of defects on dissipative transport in graphene nanoribbons tunnel field-effect transistor
  14. Electrostatic Doping-Based All GNR Tunnel FET: An Energy-Efficient Design for Power Electronics
  15. Mechanical and electronic properties of graphene nanomesh heterojunctions
  16. Electron-phonon scattering and Joule heating in copper at extreme cold temperatures
  17. Comparison of fracture behavior of defective armchair and zigzag graphene nanoribbons