Pages that link to "Item:Q2629194"
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The following pages link to A model for high temperature creep of single crystal superalloys based on nonlocal damage and viscoplastic material behavior (Q2629194):
Displaying 15 items.
- Constitutive modelling of viscoplasticity in a nickel-based superalloy at high temperature (Q374358) (← links)
- Duplex model for homogenized elastic-viscoplastic behavior of plate-fin structures at high temperatures (Q422753) (← links)
- A viscoplastic study of crack-tip deformation and crack growth in a nickel-based superalloy at elevated temperature (Q731126) (← links)
- Transversely isotropic viscoplasticity model for a directionally solidified Ni-base superalloy (Q849984) (← links)
- Dislocation creep of single-crystalline \(L1_2\)-superlattice intermetallic compounds (Q852215) (← links)
- A dislocation density based material model to simulate the anisotropic creep behavior of single-phase and two-phase single crystals (Q1013954) (← links)
- A microstructural model for the monotonic and the cyclic mechanical behavior of single crystals of superalloys at high temperatures (Q1348415) (← links)
- A nonlocal species concentration theory for diffusion and phase changes in electrode particles of lithium ion batteries (Q1655468) (← links)
- Anisotropic damage model under continuum slip crystal plasticity theory for single crystals. (Q1866287) (← links)
- Constitutive modelling of the anisotropic creep behaviour of nickel-base single crystal superalloys (Q1953294) (← links)
- Development of an anisotropic constitutive model for single-crystal superalloy for combined fatigue and creep loading (Q1960955) (← links)
- Anisotropic continuum damage modeling for single crystals at high temperatures (Q1977766) (← links)
- On one mathematical model of creep in superalloys. (Q1979008) (← links)
- On the prediction of high-temperature creep processes in metals (Q1984271) (← links)
- Modeling of Microstructures in a Cosserat Continuum Using Relaxed Energies: Analytical and Numerical Aspects (Q5050966) (← links)