Mija H. Hubler, Ph.D.

Affiliations: 
2013 Civil and Environmental Engineering Northwestern University, Evanston, IL 
Area:
Civil Engineering
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"Mija Hubler"

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Zdenek P. Bazant grad student 2013 Northwestern
 (Improved Prediction Models of Creep, Shrinkage, and Relaxation of Modern Concrete.)
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Publications

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Zhang Y, Hubler M. (2020) Role of Early Drying Cracks in the Shrinkage Size Effect of Cement Paste Journal of Engineering Mechanics-Asce. 146: 4020128
Li L, Hubler MH, Xi Y. (2020) Theoretical Modeling on Chemical Composition and Mechanical Properties of Well Cement under Carbonation Reactions Journal of Cleaner Production. 124270
Zhang Y, Li L, Xi Y, et al. (2020) Experimental and theoretical study of the restrained shrinkage cracking of early age well cement Construction and Building Materials. 262: 120368
Li L, Hubler MH, Xi Y. (2020) Modeling the corrosion of steel casing and the damage of well cement in a borehole system Construction and Building Materials. 259: 119701
Montoya LD, Gadde HK, Champion WM, et al. (2019) PM2.5 generated during rapid failure of fiber-reinforced concrete induces TNF-alpha response in macrophages. The Science of the Total Environment. 690: 209-216
Baqué PS, Hubler M. (2019) Particle spatial arrangement metrics for near-crack-tip stress Theoretical and Applied Fracture Mechanics. 104: 102386
Wakeel SA, Němeček J, Li L, et al. (2019) The effect of introducing nanoparticles on the fracture toughness of well cement paste International Journal of Greenhouse Gas Control. 84: 147-153
Wakeel SA, Ghanbari F, Hubler M. (2018) Particle arrangement effects on the stress intensity in composite material Engineering Fracture Mechanics. 202: 33-46
Monfared S, Laubie H, Radjai F, et al. (2018) A methodology to calibrate and to validate effective solid potentials of heterogeneous porous media from computed tomography scans and laboratory-measured nanoindentation data Acta Geotechnica. 13: 1369-1394
Wakeel SA, Hubler MH. (2018) Introducing Heterogeneity into the Micro-Scratch Test Fracture Toughness Relation for Brittle Particle Composites Experimental Mechanics. 58: 1237-1247
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