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Predicting microstructure and mechanical properties during alite (C3S) hydration using a Phase-Field model

Publication ,  Journal Article
Sac-Morane, A; Ioannidou, K; Veveakis, M; Rattez, H
Published in: Construction and Building Materials
April 25, 2026

Predicting the evolving microstructure of hydrating cement is essential for understanding and modeling its mechanical property development. Physics-based continuum approaches offer a rigorous framework for capturing the thermodynamics of dissolution and precipitation processes at the microstructural scale. In this work, we present an adapted Phase-Field (PF) model for cement hydration that resolves key physical inconsistencies in existing PF formulations by introducing a revised free-energy potential and distinct equilibrium constants for clinker dissolution and hydrate precipitation. The resulting PF framework reproduces microstructural evolution, yielding realistic porosity levels and continuous phase boundaries in close agreement with experimental observations. The predicted hydrated microstructures are subsequently used in a computational homogenization scheme to evaluate the elastic response of the material. The PF-derived mechanical properties show good agreement with experimental trends, supporting the ability of the proposed framework to consistently link hydration chemistry, microstructure formation, and the resulting mechanical response.

Duke Scholars

Published In

Construction and Building Materials

DOI

ISSN

0950-0618

Publication Date

April 25, 2026

Volume

521

Related Subject Headings

  • Building & Construction
  • 4016 Materials engineering
  • 4005 Civil engineering
  • 3302 Building
 

Citation

APA
Chicago
ICMJE
MLA
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Sac-Morane, A., Ioannidou, K., Veveakis, M., & Rattez, H. (2026). Predicting microstructure and mechanical properties during alite (C3S) hydration using a Phase-Field model (Accepted). Construction and Building Materials, 521. https://doi.org/10.1016/j.conbuildmat.2026.145946
Sac-Morane, A., K. Ioannidou, M. Veveakis, and H. Rattez. “Predicting microstructure and mechanical properties during alite (C3S) hydration using a Phase-Field model (Accepted).” Construction and Building Materials 521 (April 25, 2026). https://doi.org/10.1016/j.conbuildmat.2026.145946.
Sac-Morane A, Ioannidou K, Veveakis M, Rattez H. Predicting microstructure and mechanical properties during alite (C3S) hydration using a Phase-Field model (Accepted). Construction and Building Materials. 2026 Apr 25;521.
Sac-Morane, A., et al. “Predicting microstructure and mechanical properties during alite (C3S) hydration using a Phase-Field model (Accepted).” Construction and Building Materials, vol. 521, Apr. 2026. Scopus, doi:10.1016/j.conbuildmat.2026.145946.
Sac-Morane A, Ioannidou K, Veveakis M, Rattez H. Predicting microstructure and mechanical properties during alite (C3S) hydration using a Phase-Field model (Accepted). Construction and Building Materials. 2026 Apr 25;521.
Journal cover image

Published In

Construction and Building Materials

DOI

ISSN

0950-0618

Publication Date

April 25, 2026

Volume

521

Related Subject Headings

  • Building & Construction
  • 4016 Materials engineering
  • 4005 Civil engineering
  • 3302 Building