Title of article :
A novel numerical multi-component model for simulating hydration of cement
Author/Authors :
Le، نويسنده , , Nghi L.B. and Stroeven، نويسنده , , Martijn and Sluys، نويسنده , , Lambertus J. and Stroeven، نويسنده , , Piet، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2013
Pages :
10
From page :
12
To page :
21
Abstract :
A numerical multi-component model to simulate the microstructural evolution of plain cement as well as pozzolanic blended cement during hydration is presented. The model is an extension of the so-called “Integrated Particle Kinetics Model” (IPKM) developed by Navi and Pignat [8] to simulate hydration of tricalcium silicate grains. The IPKM is extended to a new model that accounts for different major cement compounds and for a pozzolanic admixture (in case of blended paste). Therefore, the proposed model is referred to as the “Extended Integrated Particle Kinetics Model” (XIPKM). New computational techniques used in the simulation are also presented. A numerical method to estimate the basic penetration rate of the particle reaction front based on experimental data is proposed. The results obtained from four simulated samples of plain cement and pozzolanic blended cement are compared with experimental data from different authors.
Keywords :
Vector approach , Pozzolanic blending , Multi-component model , Penetration rate , microstructure , Hydration simulation
Journal title :
Computational Materials Science
Serial Year :
2013
Journal title :
Computational Materials Science
Record number :
1691000
Link To Document :
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