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Lattice discrete particle modeling of concrete coupled creep and shrinkage behavior : a comprehensive calibration and validation study

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HIGH-PERFORMANCE CONCRETE, EARLY-AGE CONCRETE, SOLIDIFICATION THEORY, PREDICTION MODEL, MECHANICAL MODEL, BASIC CREEP, FRACTURE, HYDRATION, SIMULATION, COUPLINGS, Creep, Shrinkage, Lattice Discrete Particle Model, Concrete, Aging, Deterioration, Time-dependent deformation

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MLA
Abdellatef, Mohammed, et al. “Lattice Discrete Particle Modeling of Concrete Coupled Creep and Shrinkage Behavior : A Comprehensive Calibration and Validation Study.” CONSTRUCTION AND BUILDING MATERIALS, vol. 211, Elsevier Sci Ltd, 2019, pp. 629–45.
APA
Abdellatef, M., Boumakis, I., Wan-Wendner, R., & Alnaggar, M. (2019). Lattice discrete particle modeling of concrete coupled creep and shrinkage behavior : a comprehensive calibration and validation study. CONSTRUCTION AND BUILDING MATERIALS, 211, 629–645.
Chicago author-date
Abdellatef, Mohammed, Ioannis Boumakis, Roman Wan-Wendner, and Mohammed Alnaggar. 2019. “Lattice Discrete Particle Modeling of Concrete Coupled Creep and Shrinkage Behavior : A Comprehensive Calibration and Validation Study.” CONSTRUCTION AND BUILDING MATERIALS 211: 629–45.
Chicago author-date (all authors)
Abdellatef, Mohammed, Ioannis Boumakis, Roman Wan-Wendner, and Mohammed Alnaggar. 2019. “Lattice Discrete Particle Modeling of Concrete Coupled Creep and Shrinkage Behavior : A Comprehensive Calibration and Validation Study.” CONSTRUCTION AND BUILDING MATERIALS 211: 629–645.
Vancouver
1.
Abdellatef M, Boumakis I, Wan-Wendner R, Alnaggar M. Lattice discrete particle modeling of concrete coupled creep and shrinkage behavior : a comprehensive calibration and validation study. CONSTRUCTION AND BUILDING MATERIALS. 2019;211:629–45.
IEEE
[1]
M. Abdellatef, I. Boumakis, R. Wan-Wendner, and M. Alnaggar, “Lattice discrete particle modeling of concrete coupled creep and shrinkage behavior : a comprehensive calibration and validation study,” CONSTRUCTION AND BUILDING MATERIALS, vol. 211, pp. 629–645, 2019.
@article{8629900,
  author       = {Abdellatef, Mohammed and Boumakis, Ioannis and Wan-Wendner, Roman and Alnaggar, Mohammed},
  issn         = {0950-0618},
  journal      = {CONSTRUCTION AND BUILDING MATERIALS},
  keywords     = {HIGH-PERFORMANCE CONCRETE,EARLY-AGE CONCRETE,SOLIDIFICATION THEORY,PREDICTION MODEL,MECHANICAL MODEL,BASIC CREEP,FRACTURE,HYDRATION,SIMULATION,COUPLINGS,Creep,Shrinkage,Lattice Discrete Particle Model,Concrete,Aging,Deterioration,Time-dependent deformation},
  language     = {eng},
  pages        = {629--645},
  publisher    = {Elsevier Sci Ltd},
  title        = {Lattice discrete particle modeling of concrete coupled creep and shrinkage behavior : a comprehensive calibration and validation study},
  url          = {http://dx.doi.org/10.1016/j.conbuildmat.2019.03.176},
  volume       = {211},
  year         = {2019},
}

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