International audienceThe hydration model of Parrot & Killoh (1984) [1] has been extended to blended cements and coupled to a micromechanical scheme similar to that of Pichler & Hellmich (2011) [2] to estimate the Young modulus and the compressive strength of cementitious materials as a function of time. A finite aspect ratio of 7 is introduced to describe the shape of the hydrates and improve the estimate of the early age strength by the micromechanical scheme. Furthermore, accounting for the stress fluctuations in the cement paste partly explains the fact that the compressive strength of a concrete can be lower than that of its cement paste. Finally, the estimated physical properties are compared to numerous experimental measurements from...
The ability of the VCCTL microstructural model to predict the hydration kinetics and elastic moduli ...
The evolution of early age mechanical properties and volume change of cement paste is performed thro...
International audiencePredicting the time-dependent performance of cement-based materials during hyd...
The mechanical properties such as compressive strength, Young's modulus and Poisson's ratio are the ...
Although elastic properties of hydrating cement paste are crucial in concrete engineering practice, ...
Mechanical properties of cement paste are indispensable and frequent requirement in structural analy...
During hydration, thermal, autogeneous, and drying deformations are responsible for driving early ag...
The gradual evolution of the material properties of a cement-based material, i.e. the stiffness of c...
Cementitious materials { such as cement pastes, mortars, and concretes { are not only highly creep a...
This study deals with multi-scale kinetics study of blended cements containing supplementary cementi...
At early age, the mechanical characteristics of concrete, such as Young's modulus, follow a rapid ra...
Cementitious materials are known to be sensitive to cracking at early ages. During the first days wh...
Zusammenfassung in tschechischer SpracheIn order to reduce CO2 emissions associated with the product...
The development of the elastic properties of a hardening cement paste results from the microstructur...
Application of micromechanical modelling of hydrated cement paste (HCP) gains more and more interest...
The ability of the VCCTL microstructural model to predict the hydration kinetics and elastic moduli ...
The evolution of early age mechanical properties and volume change of cement paste is performed thro...
International audiencePredicting the time-dependent performance of cement-based materials during hyd...
The mechanical properties such as compressive strength, Young's modulus and Poisson's ratio are the ...
Although elastic properties of hydrating cement paste are crucial in concrete engineering practice, ...
Mechanical properties of cement paste are indispensable and frequent requirement in structural analy...
During hydration, thermal, autogeneous, and drying deformations are responsible for driving early ag...
The gradual evolution of the material properties of a cement-based material, i.e. the stiffness of c...
Cementitious materials { such as cement pastes, mortars, and concretes { are not only highly creep a...
This study deals with multi-scale kinetics study of blended cements containing supplementary cementi...
At early age, the mechanical characteristics of concrete, such as Young's modulus, follow a rapid ra...
Cementitious materials are known to be sensitive to cracking at early ages. During the first days wh...
Zusammenfassung in tschechischer SpracheIn order to reduce CO2 emissions associated with the product...
The development of the elastic properties of a hardening cement paste results from the microstructur...
Application of micromechanical modelling of hydrated cement paste (HCP) gains more and more interest...
The ability of the VCCTL microstructural model to predict the hydration kinetics and elastic moduli ...
The evolution of early age mechanical properties and volume change of cement paste is performed thro...
International audiencePredicting the time-dependent performance of cement-based materials during hyd...