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- W2573704997 abstract "CEMHYD3D has been employed to simulate the representative volume element (RVE) of cementitious systems (Type I cement) containing fly ash (Class F) through a voxel-based finite element analysis (FEA) approach. Three-dimensional microstructures composed of voxels are generated for a heterogeneous cementitious material consisting of various constituent phases. The primary focus is to simulate a cementitious RVE containing fly ash and to present the homogenized macromechanical properties obtained from its analysis. Simple kinematic uniform boundary conditions as well as periodic boundary conditions were imposed on the RVE to obtain the principal and shear moduli. Our current work considers the effect of fly ash percentage on the elastic properties based on the mass and volume replacements. RVEs with lengths of 50, 100 and 200[Formula: see text][Formula: see text] at different degrees of hydration are generated, and the elastic properties are modeled and simulated. In general, the elastic properties of a cementitious RVE with fly ash replacement for cement based on mass and volume differ from each other. Moreover, the finite element (FE) mesh density effect is studied. Results indicate that mechanical properties decrease with increasing mesh density." @default.
- W2573704997 created "2017-01-26" @default.
- W2573704997 creator A5039481572 @default.
- W2573704997 creator A5085274770 @default.
- W2573704997 date "2017-05-04" @default.
- W2573704997 modified "2023-09-23" @default.
- W2573704997 title "Modeling of Cementitious Representative Volume Element with Additives" @default.
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- W2573704997 doi "https://doi.org/10.1142/s1756973717500032" @default.
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