Shiho Kawashima, Ph.D.
Affiliations: | 2013 | Civil and Environmental Engineering | Northwestern University, Evanston, IL |
Area:
Civil Engineering, Materials Science EngineeringGoogle:
"Shiho Kawashima"Parents
Sign in to add mentorSurendra P. Shah | grad student | 2013 | Northwestern | |
(Nanomodification of Cementitious Materials: Fresh State and Early Age.) |
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Publications
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Tian Y, Bourtsalas ACT, Kawashima S, et al. (2020) Performance of structural concrete using Waste-to-Energy (WTE) combined ash. Waste Management (New York, N.Y.). 118: 180-189 |
Ma S, Kawashima S. (2020) Role of shear stress at rest on the viscoelastic response of fresh cement pastes Journal of Rheology. 64: 433-444 |
Atutis M, Kawashima S. (2020) Analysis of flexural concrete beams prestressed with basalt composite bars. Analytical-experimental approach Composite Structures. 243: 112172 |
Muzenda TR, Hou P, Kawashima S, et al. (2020) The role of limestone and calcined clay on the rheological properties of LC3 Cement & Concrete Composites. 107: 103516 |
Qian Y, Ma S, Kawashima S, et al. (2019) Rheological characterization of the viscoelastic solid-like properties of fresh cement pastes with nanoclay addition Theoretical and Applied Fracture Mechanics. 103: 102262 |
Roussel N, Bessaies-Bey H, Kawashima S, et al. (2019) Recent advances on yield stress and elasticity of fresh cement-based materials Cement and Concrete Research. 124: 105798 |
Guerini V, Conforti A, Plizzari G, et al. (2018) Influence of Steel and Macro-Synthetic Fibers on Concrete Properties Fibers. 6: 47 |
Lim S, Lee H, Kawashima S. (2018) Pore structure refinement of cement paste incorporating nanosilica: Study with dual beam scanning electron microscopy/focused ion beam (SEM/FIB) Materials Characterization. 145: 323-328 |
Ma S, Qian Y, Kawashima S. (2018) Performance-based study on the rheological and hardened properties of blended cement mortars incorporating palygorskite clays and carbon nanotubes Construction and Building Materials. 171: 663-671 |
Lee S, Kawashima S, Kim K, et al. (2018) Shrinkage characteristics and strength recovery of nanomaterials-cement composites Composite Structures. 202: 559-565 |