A phase-field method for computational modeling of interfacial damage interacting with crack propagation in realistic microstructures obtained by microtomography TT Nguyen, J Yvonnet, QZ Zhu, M Bornert, C Chateau Computer Methods in Applied Mechanics and Engineering 312, 567-595, 2016 | 312 | 2016 |
Modeling of creep in rock materials in terms of material degradation JF Shao, QZ Zhu, K Su Computers and Geotechnics 30 (7), 549-555, 2003 | 308 | 2003 |
A phase field method to simulate crack nucleation and propagation in strongly heterogeneous materials from direct imaging of their microstructure TT Nguyen, J Yvonnet, QZ Zhu, M Bornert, C Chateau Engineering Fracture Mechanics 139, 18-39, 2015 | 266 | 2015 |
Micromechanical analysis of coupling between anisotropic damage and friction in quasi brittle materials: Role of the homogenization scheme QZ Zhu, D Kondo, JF Shao International Journal of Solids and Structures 45 (5), 1385-1405, 2008 | 172 | 2008 |
Static solution of crack propagation problems in peridynamics T Ni, M Zaccariotto, QZ Zhu, U Galvanetto Computer Methods in Applied Mechanics and Engineering 346, 126-151, 2019 | 161 | 2019 |
Peridynamic formulations enriched with bond rotation effects Q Zhu, T Ni International journal of engineering science 121, 118-129, 2017 | 156 | 2017 |
Micromechanical modelling of anisotropic damage in brittle rocks and application Q Zhu, D Kondo, J Shao, V Pensee International Journal of Rock Mechanics and Mining Sciences 45 (4), 467-477, 2008 | 130 | 2008 |
Hybrid FEM and peridynamic simulation of hydraulic fracture propagation in saturated porous media T Ni, F Pesavento, M Zaccariotto, U Galvanetto, QZ Zhu, BA Schrefler Computer Methods in Applied Mechanics and Engineering 366, 113101, 2020 | 122 | 2020 |
A micromechanics-based elastoplastic damage model for granular materials at low confining pressure QZ Zhu, JF Shao, M Mainguy International Journal of Plasticity 26 (4), 586-602, 2010 | 113 | 2010 |
A refined micromechanical damage–friction model with strength prediction for rock-like materials under compression QZ Zhu, JF Shao International Journal of Solids and Structures 60, 75-83, 2015 | 104 | 2015 |
Analytical and numerical analysis of frictional damage in quasi brittle materials QZ Zhu, LY Zhao, JF Shao Journal of the Mechanics and Physics of Solids 92, 137-163, 2016 | 99 | 2016 |
Fractional order plasticity modelling of state-dependent behaviour of granular soils without using plastic potential Y Sun, Y Gao, Q Zhu International Journal of Plasticity 102, 53-69, 2018 | 92 | 2018 |
A general and efficient computational procedure for modelling the Kapitza thermal resistance based on XFEM J Yvonnet, QC He, QZ Zhu, JF Shao Computational Materials Science 50 (4), 1220-1224, 2011 | 92 | 2011 |
A micromechanics-based thermodynamic formulation of isotropic damage with unilateral and friction effects QZ Zhu, JF Shao, D Kondo European Journal of Mechanics-A/Solids, 2010 | 92 | 2010 |
A micro-mechanics based plastic damage model for quasi-brittle materials under a large range of compressive stress LY Zhao, QZ Zhu, JF Shao International Journal of Plasticity 100, 156-176, 2018 | 85 | 2018 |
Peridynamic simulation of fracture in quasi brittle solids using irregular finite element mesh T Ni, Q Zhu, LY Zhao, PF Li Engineering Fracture Mechanics 188, 320-343, 2018 | 73 | 2018 |
Coupling of FEM and ordinary state-based peridynamics for brittle failure analysis in 3D T Ni, M Zaccariotto, QZ Zhu, U Galvanetto Mechanics of advanced materials and structures 28 (9), 875-890, 2021 | 72 | 2021 |
Homogenization‐based analysis of anisotropic damage in brittle materials with unilateral effect and interactions between microcracks QZ Zhu, D Kondo, JF Shao International journal for numerical and analytical methods in geomechanics …, 2009 | 71 | 2009 |
A micromechanics-based elastoplastic damage model for quasi-brittle rocks N Xie, QZ Zhu, LH Xu, JF Shao Computers and Geotechnics, 2011 | 68 | 2011 |
Micromechanics of rock damage: Advances in the quasi-brittle field Q Zhu, J Shao Journal of Rock Mechanics and Geotechnical Engineering 9 (1), 29-40, 2017 | 63 | 2017 |