ReadfeedReadfeed

Steven M. Arnold

  • A differential CDM model for fatigue of unidirectional metal matrix compositesA differential CDM model for fatigue of unidirectional metal matrix composites
  • A fully associative, nonisothermal, nonlinear kinematic, unified viscoplastic model for titanium alloysA fully associative, nonisothermal, nonlinear kinematic, unified viscoplastic model for titanium alloys
  • A modeling investigation of thermal and strain induced recovery and nonlinear hardening in potential based viscoplasticityA modeling investigation of thermal and strain induced recovery and nonlinear hardening in potential based viscoplasticity
  • A transversely isotropic thermoelastic theoryA transversely isotropic thermoelastic theory
  • Application of symbolic computations to the constitutive modeling of structural materialsApplication of symbolic computations to the constitutive modeling of structural materials
  • Differential continuum damage mechanics models for creep and fatigue of unidirectional metal matrix compositesDifferential continuum damage mechanics models for creep and fatigue of unidirectional metal matrix composites
  • Elastic/plastic analyses of advanced composites investigating the use of the compliant layer concept in reducing residual stresses resulting from processingElastic/plastic analyses of advanced composites investigating the use of the compliant layer concept in reducing residual stresses resulting from processing
  • Influence of fiber architecture on the elastic and inelastic response of metal matrix compositesInfluence of fiber architecture on the elastic and inelastic response of metal matrix composites
  • On the thermodynamic framework of generalized coupled thermoeleastic-viscoplastic-damage modelingOn the thermodynamic framework of generalized coupled thermoeleastic-viscoplastic-damage modeling
  • Practical Micromechanics of Composite MaterialsPractical Micromechanics of Composite Materials
  • Unified viscoplastic behavior of metal matrix compositesUnified viscoplastic behavior of metal matrix composites