Varela Hugo¶
Information
- ORCID
- 0000-0001-8094-6071
- First Contribution
- 2020-07-08
- Last Contribution
- 2025-09-05
- Number Contributions
- 9
- Number Citations
- 45
Top Co-Authors
- Barluenga Gonzalo (9)
- Márquez Álvaro (3)
- Perrot Arnaud (2)
- Sonebi Mohammed (2)
- Puentes Javier (1)
Top Cited Articles
Persons This Author Cites the Most
- Roussel Nicolas (38)
- Perrot Arnaud (34)
- Wangler Timothy (24)
- Mechtcherine Viktor (23)
- Wolfs Robert (21)
Persons This Author Is Cited Most By
- Mendoza Reales Oscar (9)
- Tinoco Matheus (7)
- Toledo Filho Romildo (7)
- Barluenga Gonzalo (6)
- McNally Ciaran (4)
- Márquez Álvaro, Varela Hugo, Barluenga Gonzalo (2025-09)
Influence of Rheology Modifying Admixtures on the Buildability of 3D Printing Cement-Based Mortars - 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 - 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 - Varela Hugo, Barluenga Gonzalo, Sonebi Mohammed (2024-09)
Evaluation of Basalt-Fibers and Nano-Clays to Enhance Extrudability and Buildability of 3D Printing Mortars - 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 - Varela Hugo, Barluenga Gonzalo, Perrot Arnaud (2023-08)
Nano-Modified Materials for New Construction Technologies:
Self-Compacting and 3D Printing - Varela Hugo, Barluenga Gonzalo, Sonebi Mohammed (2023-07)
Rheology Characterization of 3D Printing Mortars with Nano-Clays and Basalt-Fibers - 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 - Varela Hugo, Barluenga Gonzalo, Palomar Irene (2020-07)
Rheology Evaluation of Cement-Paste with Nano-Clay , Nano-Silica and Polymeric Admixtures for Digital Fabrication