2 papers
cond-mat.soft2026
Revisiting the hydromechanical formulation of a micromechanics-based phase-field model for poro-elastoplastic media
Hanzhang Li, Tao You, Keita Yoshioka +3
Even for tension-dominated fracture propagation, porous materials may deform plastically adjacent to the propagating fracture. As is common for porous materials, existing phase-fie…
math.NA2024
A phase-field fracture model in thermo-poro-elastic media with micromechanical strain energy degradation
Yuhao Liu, Keita Yoshioka, Tao You +2
This work extends the hydro-mechanical phase-field fracture model to non-isothermal conditions with micromechanics based poroelasticity, which degrades Biot's coefficient not only…