Tinoco Matheus¶
Information
- ORCID
- 0000-0001-9480-1535
- First Contribution
- 2022-04-13
- Last Contribution
- 2026-01-02
- Number Contributions
- 9
- Number Citations
- 115
Top Co-Authors
- Mendoza Reales Oscar (9)
- Toledo Filho Romildo (8)
- Barluenga Gonzalo (3)
- Márquez Álvaro (2)
- Ramallo Laura (2)
Top Cited Articles
Persons This Author Cites the Most
- Mechtcherine Viktor (26)
- Nerella Venkatesh (18)
- Perrot Arnaud (17)
- Roussel Nicolas (15)
- Bos Freek (11)
Persons This Author Is Cited Most By
- Mendoza Reales Oscar (4)
- Zhang Yamei (4)
- Salet Theo (3)
- Ye Junhong (3)
- Zhuang Zicheng (3)
- Tinoco Matheus, Márquez Álvaro, Ramallo Laura, Barluenga Gonzalo et al. (2026-01)
Effect of Cellulose Microfibers on Rheological Properties and Printability of 3D Printable Cement-Based Composites - Tinoco Matheus, Lima Moura Paiva Rayane, Andrade Luiza, Mendoza Reales Oscar (2025-12)
Hybrid 3D Printable Mixtures Incorporating Fine Earth, Portland Cement, and Fly Ash:
A Sustainable Alternative to Cement-Intensive Systems - Tinoco Matheus, Márquez Álvaro, Ramallo Laura, Barluenga Gonzalo et al. (2025-06)
Fresh and Hardened Properties of Cellulose Fiber-Reinforced Mortars for 3D Printing in Construction - Tinoco Matheus, Toledo Filho Romildo, Mendoza Reales Oscar (2025-06)
Rice Husk Bio-Aggregates for 3D Printing in Construction:
Balancing Fresh and Hardened Properties - Tinoco Matheus, Cavalcante Tiago, Andrade Luiza, Araújo Olga et al. (2025-01)
Mix-Design-Strategies for 3D Printable Bio-Based Cementitious Composites Using Rice-Husk-Particles as Multifunctional Aggregates - 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 - Tinoco Matheus, Mendoza Reales Oscar, Toledo Filho Romildo (2023-06)
Rheological Behavior of 3D Printable Bio-Concretes Produced with Rice Husk - Tinoco Matheus, Gouvêa Lucas, Cássia Magalhães Martins Karenn, Toledo Filho Romildo et al. (2022-12)
The Use of Rice Husk Particles to Adjust the Rheological Properties of 3D Printable Cementitious Composites Through Water Sorption - Tinoco Matheus, Mendonça Érica, Fernandez Letízia, Caldas Lucas et al. (2022-04)
Life Cycle Assessment and Environmental Sustainability of Cementitious Materials for 3D Concrete Printing:
A Systematic Literature Review