Pages that link to "Item:Q422692"
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The following pages link to Simulation of micro-indentation hardness of FCC single crystals by mechanism-based strain gradient crystal plasticity (Q422692):
Displaying 9 items.
- Transient and steady-state nanoindentation creep of polymeric materials (Q414311) (← links)
- Micromechanics of pyramidal indentation in fcc metals: single crystal plasticity finite element analysis (Q732639) (← links)
- Orientation effects in nanoindentation of single crystal copper (Q951146) (← links)
- A micromechanical model of hardening, rate sensitivity and thermal softening in BCC single crystals (Q1612674) (← links)
- Cross-sectional nano-indentation of ion-irradiated steels: finite element simulations based on the strain-gradient crystal plasticity theory (Q2335397) (← links)
- Finite strain analysis of size effects in wedge indentation into a face-centered cubic (FCC) single crystal (Q2422410) (← links)
- Combined numerical simulation and nanoindentation for determining mechanical properties of single crystal copper at mesoscale (Q2456831) (← links)
- Finite element simulation of plane strain plastic-elastic indentation on single-crystal silicon. (Q5926010) (← links)
- FEM-simulation of the hardening behavior of FCC single crystals (Q5952212) (← links)