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    List of publications of Didier Snoeck


      Peer-reviewed journal articles (99)

  1. 44. Lefever, G., Tsangouri, E., Snoeck, D., Aggelis, D. G., De Belie, N., Van Vlierberghe, S., & Van Hemelrijck, D. (2020). Combined use of superabsorbent polymers and nanosilica for reduction of restrained shrinkage and strength compensation in cementitious mortars. Construction & building materials, 251, 118966. doi:10.1016/j.conbuildmat.2020.118966
  2. 45. Boshoff, W., Mechtcherine, V., Snoeck, D., Schröfl, C., De Belie, N., Bettencourt Ribeiro, A., Cusson, D., Wyrzykowski, M., Toropovs, N., & Lura, P. (2020). The effect of superabsorbent polymers on the mitigation of plastic shrinkage cracking of conventional concrete, results of an inter-laboratory test by RILEM TC 260-RSC. Materials and structures, 53(4). doi:10.1617/s11527-020-01516-6
  3. 46. Tenório Filho, J. R., Snoeck, D., & De Belie, N. (2020). Mixing protocols for plant‐scale production of concrete with superabsorbent polymers. Structural concrete, 21(3), 983-991. doi:10.1002/suco.201900443
  4. 47. Lefever, G., Snoeck, D., De Belie, N., Van Vlierberghe, S., Van Hemelrijck, D., & Aggelis, D. G. (2020). The Contribution of Elastic Wave NDT to the Characterization of Modern Cementitious Media. Sensors, 20(10), 2959. doi:10.3390/s20102959
  5. 48. Tenório Filho, J. R., Mannekens, E., Van Tittelboom, K., Snoeck, D., & De Belie, N. (2020). Assessment of the potential of superabsorbent polymers as internal curing agents in concrete by means of optical fiber sensors. Construction & building materials, 238, 117751. doi:10.1016/j.conbuildmat.2019.117751
  6. 49. Lefever, G., Snoeck, D., Aggelis, D. G., De Belie, N., Van Vlierberghe, S., & Van Hemelrijck, D. (2020). Evaluation of the Self-Healing Ability of Mortar Mixtures Containing Superabsorbent Polymers and Nanosilica. Materials, 13(2), 380. doi:10.3390/ma13020380
  7. 50. Rodríguez, C. R., Figueiredo, S. C., Deprez, M., Snoeck, D., Schlangen, E., & Šavija, B. (2019). Numerical investigation of crack self-sealing in cement-based composites with superabsorbent polymers. Cement & concrete composites, 104, 103395. doi:10.1016/j.cemconcomp.2019.103395
  8. 51. Snoeck, D., Pel, L., & De Belie, N. (2019). Comparison of different techniques to study the nanostructure and the microstructure of cementitious materials with and without superabsorbent polymers. Construction & building materials, 223, 244-253. doi:10.1016/j.conbuildmat.2019.06.225
  9. 52. Tenório Filho, J. R., Pereira Gomes de Araújo, M. A., Snoeck, D., & De Belie, N. (2019). Discussing Different Approaches for the Time-Zero as Start for Autogenous Shrinkage in Cement Pastes Containing Superabsorbent Polymers. Materials, 12(18), 2962. doi:10.3390/ma12182962
  10. 53. Snoeck, D., & Criel, P. (2019). Voronoi diagrams and self-healing cementitious materials: a perfect match. Advances in cement research, 31(6), 261-269. doi:10.1680/jadcr.16.00091
  11. 54. De Meyst, L., Mannekens, E., Araújo, M., Snoeck, D., Van Tittelboom, K., Van Vlierberghe, S., & De Belie, N. (2019). Parameter Study of Superabsorbent Polymers (SAPs) for Use in Durable Concrete Structures. Materials, 12(9), 1541. doi:10.3390/ma12091541
  12. 55. Alderete, N., Villagrán Zaccardi, Y., Snoeck, D., Van Belleghem, B., Van den Heede, P., Van Tittelboom, K., & De Belie, N. (2019). Capillary imbibition in mortars with natural pozzolan, limestone powder and slag evaluated through neutron radiography, electrical conductivity, and gravimetric analysis. Cement and concrete research, 118, 57-68. doi:10.1016/j.cemconres.2019.02.011

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