- A theory for large deformation and damage of interpenetrating polymer networks
2011/10/27 by Xuanhe Zhao · 14 citations
Engineering · Materials Science · Physics and Astronomy · #Composite material #Deformation (meteorology) #Elasticity and Material Modeling #Elastomer #Force Microscopy Techniques and Applications #Interpenetrating polymer network #Materials science #Modulus #Necking #Polymer #Polymer Nanocomposites and Properties #Softening #Stiffening #Toughness #Ultimate tensile strength
- Analysis of the cup-cone fracture in a round tensile bar
1984/01/01 by V. Tvergaard, Viggo Tvergaard, A. Needleman · 41 citations
Engineering · Materials Science · #Coalescence (physics) #Composite material #Fatigue and fracture mechanics #Finite element method #High-Velocity Impact and Material Behavior #Hydrostatic stress #Materials science #Metal Forming Simulation Techniques #Necking #Physics #Thermodynamics #Ultimate tensile strength #Void (composites) #Volume fraction
- An analysis of nonuniform and localized deformation in ductile single crystals
1982/06/01 by D. Peirce, R.J. Asaro, A. Needleman · 36 citations
Engineering · Materials Science · #Composite material #Condensed matter physics #Crystal (programming language) #Crystallography #Geometry #Hardening (computing) #High-Velocity Impact and Material Behavior #Isotropy #Materials science #Mechanics #Metal Forming Simulation Techniques #Microstructure #Microstructure and mechanical properties #Misorientation #Necking #Optics #Physics #Shear (geology) #Shear band #Single crystal #Slip (aerodynamics) #Softening #Thermodynamics #Ultimate tensile strength
- Dynamic fracture and spallation in ductile solids
1981/04/01 by J. N. Johnson · 7 citations
Engineering · Materials Science · #Composite material #Constitutive equation #Finite element method #High-Velocity Impact and Material Behavior #Materials science #Mechanics #Metal Forming Simulation Techniques #Microstructure and mechanical properties #Necking #Neutron #Physics #Plasticity #Spallation #Structural engineering #Ultimate tensile strength #Viscoplasticity #Void (composites)