Pages that link to "Item:Q2456831"
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The following pages link to Combined numerical simulation and nanoindentation for determining mechanical properties of single crystal copper at mesoscale (Q2456831):
Displaying 11 items.
- Review on numerical modeling of instrumented indentation tests for elastoplastic material behavior identification (Q338753) (← links)
- Material behavior of the hexagonal alpha phase of a titanium alloy identified from nanoindentation tests (Q388240) (← links)
- Combined grain size, strain rate and loading condition effects on mechanical behavior of nanocrystalline Cu under high strain rates (Q399557) (← links)
- A dislocation density-based single crystal constitutive equation (Q422635) (← links)
- Simulation of micro-indentation hardness of FCC single crystals by mechanism-based strain gradient crystal plasticity (Q422692) (← links)
- Computer simulations of nanoindentation on Cu (1 1 1) with a void (Q546679) (← 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)
- Atomistic and mean-field estimates of effective stiffness tensor of nanocrystalline copper (Q1625250) (← links)
- Multiscale dislocation dynamics simulations of shock compression in copper single crystal (Q2576055) (← links)
- Identification of material properties using indentation test and shape manifold learning approach (Q2631538) (← links)