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- W1552285961 abstract "During hydration of cement, a series of coupled thermo-chemo-hygral phenomena takes place in cementbased materials. It is generally agreed, that the conditions in which these phenomena take place have a great influence upon the final properties and performance of the material. Thus, it is especially important to properly predict and account for various phenomena accompanying the hydration process. On the one hand, the hydration process may be analyzed during laboratory tests, most commonly calorimetric measurements, that provide information on the amount of heat released during the process and are widely in use nowadays, both in research and engineering practice. On the other hand, the efforts of the research community are focused on providing the analytical or numerical models that would enable both the simulations of the hydration process, and further predicting the evolution of material properties. In modelling of concrete maturing, the concepts of maturity (e.g. [3]), or equivalent time are often in use (e.g. [4]). These approaches meet, however, some serious difficulties, when it comes to modelling a strong non-linear process like hydration, as shown e.g. by Jensen and Hansen [5]. The concept of normalized hydration degree [6] is used in this work as the evolution variable describing the maturing of a cementitious material. Constitutive relationship governing the kinetics of hydration in the form proposed by Parrot and Killoh [1] is implemented in the model of concrete by Gawin et al. [2]. MODELLING AND EXPERIMENTAL STUDY OF HYDRATION FOR ORDINARY PORTLAND CEMENT" @default.
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- W1552285961 date "2010-01-01" @default.
- W1552285961 modified "2023-09-23" @default.
- W1552285961 title "Modelling and experimental study of hydration for ordinary portland cement" @default.
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