Pages that link to "Item:Q2022042"
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The following pages link to Phase field modeling of frictional slip with slip weakening/strengthening under non-isothermal conditions (Q2022042):
Displaying 12 items.
- Electro-chemo-mechanical induced fracture modeling in proton exchange membrane water electrolysis for sustainable hydrogen production (Q2083189) (← links)
- Variational modeling of hydromechanical fracture in saturated porous media: a micromechanics-based phase-field approach (Q2156777) (← links)
- A phase-field model of frictional shear fracture in geologic materials (Q2236182) (← links)
- A damage model for the frictional shear failure of brittle materials in compression (Q2237790) (← links)
- A novel micromechanics-enhanced phase-field model for frictional damage and fracture of quasi-brittle geomaterials (Q2237795) (← links)
- DP-MPM: domain partitioning material point method for evolving multi-body thermal-mechanical contacts during dynamic fracture and fragmentation (Q2237796) (← links)
- Asynchronous phase field fracture model for porous media with thermally non-equilibrated constituents (Q2246419) (← links)
- Probabilistic failure mechanisms via Monte Carlo simulations of complex microstructures (Q2674091) (← links)
- A comparative analysis of continuum plasticity, viscoplasticity and phase-field models for earthquake sequence modeling (Q6062916) (← links)
- An extended three-field principle to scale-bridge the granular micromechanics of polymer-bonded particulate materials (Q6084448) (← links)
- Reconstruct lower‐dimensional crack paths from phase‐field point cloud (Q6091397) (← links)
- Investigation of driving forces in a phase field approach to mixed mode fracture of concrete (Q6153852) (← links)