Skip to content

Varela Hugo

Information

ORCID
0000-0001-8094-6071
First Contribution
2020-07-08
Last Contribution
2025-09-05
Number Contributions
9
Number Citations
45

Persons This Author Cites the Most

  1. Roussel Nicolas (38)
  2. Perrot Arnaud (34)
  3. Wangler Timothy (24)
  4. Mechtcherine Viktor (23)
  5. Wolfs Robert (21)

Persons This Author Is Cited Most By

  1. Mendoza Reales Oscar (9)
  2. Tinoco Matheus (7)
  3. Toledo Filho Romildo (7)
  4. Barluenga Gonzalo (6)
  5. McNally Ciaran (4)


  1. Márquez Álvaro, Varela Hugo, Barluenga Gonzalo (2025-09)
    Influence of Rheology Modifying Admixtures on the Buildability of 3D Printing Cement-Based Mortars
  2. Márquez Álvaro, Varela Hugo, Barluenga Gonzalo (2024-12)
    Rheology and Early-Age Evaluation of 3D Printable Cement-Limestone-Filler-Pastes with Nano-Clays and Methylcellulose
  3. Varela Hugo, Tinoco Matheus, Mendoza Reales Oscar, Toledo Filho Romildo et al. (2024-10)
    3D Printable Cement-Based Composites Reinforced with Sisal-Fibers:
    Rheology, Printability and Hardened Properties
  4. Varela Hugo, Barluenga Gonzalo, Sonebi Mohammed (2024-09)
    Evaluation of Basalt-Fibers and Nano-Clays to Enhance Extrudability and Buildability of 3D Printing Mortars
  5. Márquez Álvaro, Ramallo Laura, Varela Hugo, Barluenga Gonzalo et al. (2024-09)
    3D Printing Architectural Applications of Cement-Lime Mortars with Microencapsulated Phase-Change-Material
  6. Varela Hugo, Barluenga Gonzalo, Perrot Arnaud (2023-08)
    Nano-Modified Materials for New Construction Technologies:
    Self-Compacting and 3D Printing
  7. Varela Hugo, Barluenga Gonzalo, Sonebi Mohammed (2023-07)
    Rheology Characterization of 3D Printing Mortars with Nano-Clays and Basalt-Fibers
  8. Varela Hugo, Barluenga Gonzalo, Perrot Arnaud (2023-07)
    Extrusion and Structural Build-Up of 3D Printing Cement-Pastes with Fly-Ash, Nano-Clay and VMAs
  9. Varela Hugo, Barluenga Gonzalo, Palomar Irene (2020-07)
    Rheology Evaluation of Cement-Paste with Nano-Clay , Nano-Silica and Polymeric Admixtures for Digital Fabrication