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Poromechanics of microporous media. Journal of the Mechanics and Physics of Solids. 60(4):606–622.. 2012.
Quantifying plasticity-independent creep compliance and relaxation of viscoelastoplastic materials under contact loading. Journal of Materials Research. 27(01):302-312.. 2012.
ESEM Study of the Humidity-Induced Swelling of Clay Film. Langmuir. 29(41):12823–12833.. 2013.
Nanoindentation investigation of creep properties of calcium silicate hydrates. Cement and Concrete Research. 52:38–52.. 2013.
Elastic Properties of Swelling Clay Particles at Finite Temperature upon Hydration. Journal of Physical Chemistry C. 118(17):8933-8943.. 2014.
Creep of Clay: Numerical Results at the Scale of a Layer and Experimental Results at the Scale of Thin Self-Standing Films. 10th International Conference on Mechanics and Physics of Creep, Shrinkage, and Durability of Concrete and Concrete StructuresCONCREEP 10. CONCREEP 10: MECHANICS AND PHYSICS OF CREEP, SHRINKAGE, AND DURABILITY OF CONCRETE AND CONCRETE STRUCTURES :531-536.. 2015.
Effect of Water on Elastic and Creep Properties of Self-Standing Clay Films. Langmuir. 32(5):1370-1379.. 2016.
The Potential of Mean Force concept for bridging (length and time) scales in the modeling of complex porous materials. EPJ Web of Conferences. 140:ArticleNumber01009.. 2017.
Springer Series in Geomechanics and GeoengineeringAdvances in Laboratory Testing and Modelling of Soils and Shales (ATMSS)Measurement of Mechanical Properties of Thin Clay Films and Comparison with Molecular Simulations. Springer Series in Geomechanics and Geoengineering. :78-84.. 2017.