K. H. Khayat
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- The effect of degree of saturation of sand on groutability—experimental simulation. In: Proceedings of the Institution of Civil Engineers - Ground Improvement, v. 4, n. 1 (Januar 2000). (2000):
- FRP confinement of SCC incorporating expansive agent and saturated lightweight sand. In: Construction and Building Materials, v. 252 (August 2020). (2020):
- Effect of SCC Mixture Composition on Thixotropy and Formwork Pressure. In: Journal of Materials in Civil Engineering (ASCE), v. 24, n. 7 (Juli 2012). (2012):
- Effect of placement characteristics on SCC lateral pressure variations. In: Construction and Building Materials, v. 66 (September 2014). (2014):
- Influence of formwork material on transport properties of self-consolidating concrete near formed surfaces. In: Construction and Building Materials, v. 146 (August 2017). (2017):
- Field-oriented test methods to evaluate structural build-up at rest of flowable mortar and concrete. In: Materials and Structures, v. 45, n. 10 (Oktober 2012). (2012):
- Influence of particle lattice effect on stability of suspensions: application to self-consolidating concrete. In: Materials and Structures, v. 50, n. 1 (Februar 2017). (2017):
- Applicability of rheological models to high-performance grouts containing supplementary cementitious materials and viscosity enhancing admixture. In: Materials and Structures, v. 36, n. 6 (Juli 2003). (2003):
- Evaluation of cement grouts for embedding anchors under water. In: Materials and Structures, v. 31, n. 4 (Mai 1998). (1998):
- Laboratory investigation of rheological properties and scaling resistance of air entrained self-consolidating concrete. In: Materials and Structures, v. 32, n. 3 (April 1999). (1999):
- Assessment of washout resistance of underwater concrete: a comparison between CRD C61 and new MC-1 tests. In: Materials and Structures, v. 32, n. 4 (Mai 1999). (1999):
- Factorial design model for proportioning self-consolidating concrete. In: Materials and Structures, v. 32, n. 9 (November 1999). (1999):
- Testing and performance of fiber-reinforced, self-consolidating concrete. In: Materials and Structures, v. 33, n. 6 (Juli 2000). (2000):
- Mix design approach for low-powder self-consolidating concrete: Eco-SCC—content optimization and performance. In: Materials and Structures, v. 50, n. 2 (April 2017). (2017):
- Bétons à haute performance pour fabriquer des panneaux destinés à réparer des structures submergées. In: Canadian Journal of Civil Engineering / Revue canadienne de génie civil, v. 20, n. 4 (August 1993). (1993):
- High-performance cement grout for underwater crack injection. In: Canadian Journal of Civil Engineering / Revue canadienne de génie civil, v. 24, n. 3 (Juni 1997). (1997):
- Repair of 130-Year Old Masonry Bridge using High-Performance Cement Grout. In: Journal of Bridge Engineering (ASCE), v. 7, n. 1 (Januar 2002). (2002):
- Utility of statistical models in proportioning self-consolidating concrete. In: Materials and Structures, v. 33, n. 5 (Juni 2000). (2000):
- Effect of Mixture Consistency on Formwork Pressure Exerted by Highly Flowable Concrete. In: Journal of Materials in Civil Engineering (ASCE), v. 18, n. 6 (Dezember 2006). (2006):