Yield stress of cemented paste backfill in sub-zero environments: experimental results J Haiqiang, M Fall, L Cui Minerals Engineering 92, 141-150, 2016 | 177 | 2016 |
Mechanical and thermal properties of cemented tailings materials at early ages: Influence of initial temperature, curing stress and drainage conditions L Cui, M Fall Construction and Building Materials 125, 553-563, 2016 | 130 | 2016 |
An evolutive elasto-plastic model for cemented paste backfill L Cui, M Fall Computers and Geotechnics 71, 19-29, 2016 | 128 | 2016 |
A coupled thermo–hydro-mechanical–chemical model for underground cemented tailings backfill L Cui, M Fall Tunnelling and Underground Space Technology 50, 396-414, 2015 | 113 | 2015 |
Freezing behaviour of cemented paste backfill material in column experiments H Jiang, M Fall, L Cui Construction and building materials 147, 837-846, 2017 | 92 | 2017 |
Multiphysics modeling of arching effects in fill mass L Cui, M Fall Computers and Geotechnics 83, 114-131, 2017 | 67 | 2017 |
Effects of curing time, cement content, and saturation state on mode-I fracture toughness of cemented paste backfill ILS Libos, L Cui Engineering Fracture Mechanics 235, 107174, 2020 | 61 | 2020 |
Effect of external sulfate attack on the mechanical behavior of cemented paste backfill Y Wang, Y Cao, L Cui, Z Si, H Wang Construction and Building Materials 263, 120968, 2020 | 55 | 2020 |
Modeling of pressure on retaining structures for underground fill mass L Cui, M Fall Tunnelling and Underground Space Technology 69, 94-107, 2017 | 54 | 2017 |
Effect of polypropylene fiber content and fiber length on the saturated hydraulic conductivity of hydrating cemented paste backfill S Chakilam, L Cui Construction and Building Materials 262, 120854, 2020 | 50 | 2020 |
Multiphysics model for consolidation behavior of cemented paste backfill L Cui, M Fall International Journal of Geomechanics 17 (3), 04016077, 2017 | 50 | 2017 |
Effect of curing temperature on time-dependent shear behavior and properties of polypropylene fiber-reinforced cemented paste backfill ILS Libos, L Cui, X Liu Construction and Building Materials 311, 125302, 2021 | 41 | 2021 |
A coupled chemo-elastic cohesive zone model for backfill-rock interface K Fang, L Cui, M Fall Computers and Geotechnics 125, 103666, 2020 | 41 | 2020 |
Multiphysics modeling and simulation of strength development and distribution in cemented tailings backfill structures L Cui, M Fall International Journal of Concrete Structures and Materials 12, 1-22, 2018 | 41 | 2018 |
A multiphysics-viscoplastic cap model for simulating blast response of cemented tailings backfill G Lu, M Fall, L Cui Journal of Rock Mechanics and Geotechnical Engineering 9 (3), 551-564, 2017 | 40 | 2017 |
Insight into the isothermal multiphysics processes in cemented paste backfill: Effect of curing time and cement-to-tailings ratio Z Wang, Y Wang, L Cui, C Bi, A Wu Construction and Building Materials 325, 126739, 2022 | 32 | 2022 |
Strength and microstructural evolution of alkali-activated slag-based cemented paste backfill: Coupled effects of activator composition and temperature H Jiang, L Ren, Q Zhang, J Zheng, L Cui Powder Technology 401, 117322, 2022 | 32 | 2022 |
Mathematical modelling of cemented tailings backfill: a review L Cui, M Fall International Journal of Mining, Reclamation and Environment 33 (6), 389-408, 2019 | 32 | 2019 |
Modeling of self‐desiccation in a cemented backfill structure L Cui, M Fall International Journal for Numerical and Analytical Methods in Geomechanics …, 2018 | 31 | 2018 |
Time-and temperature-dependence of compressive and tensile behaviors of polypropylene fiber-reinforced cemented paste backfill ILS Libos, L Cui Frontiers of Structural and Civil Engineering 15, 1025-1037, 2021 | 26 | 2021 |