Modeling the Effect of Alternative Cementitious Binders in Ultra-High-Performance Concrete

Materials (Basel). 2021 Nov 30;14(23):7333. doi: 10.3390/ma14237333.

Abstract

The use of alternative cementitious binders is necessary for producing sustainable concrete. Herein, we study the effect of using alternative cementitious binders in ultra-high-performance concrete (UPHC) by calculating the phase assemblages of UHPC in which Portland cement is replaced with calcium aluminate cement, calcium sulfoaluminate cement, metakaolin or blast furnace slag. The calculation result shows that replacing Portland cement with calcium aluminate cement or calcium sulfoaluminate cement reduces the volume of C-S-H but increases the overall solid volume due to the formation of other phases, such as strätlingite or ettringite. The modeling result predicts that using calcium aluminate cement or calcium sulfoaluminate cement may require more water than it would for plain UHPC, while a similar or lower amount of water is needed for chemical reactions when using blast furnace slag or metakaolin.

Keywords: UHPC; alternative cementitious binders; phase assemblage; supplementary cementitious materials; thermodynamic modeling.