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Tinoco Matheus

Information

ORCID
0000-0001-9480-1535
First Contribution
2022-04-13
Last Contribution
2026-01-02
Number Contributions
9
Number Citations
115

Persons This Author Cites the Most

  1. Mechtcherine Viktor (26)
  2. Nerella Venkatesh (18)
  3. Perrot Arnaud (17)
  4. Roussel Nicolas (15)
  5. Bos Freek (11)

Persons This Author Is Cited Most By

  1. Mendoza Reales Oscar (4)
  2. Zhang Yamei (4)
  3. Salet Theo (3)
  4. Ye Junhong (3)
  5. Zhuang Zicheng (3)


  1. 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
  2. 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
  3. 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
  4. Tinoco Matheus, Toledo Filho Romildo, Mendoza Reales Oscar (2025-06)
    Rice Husk Bio-Aggregates for 3D Printing in Construction:
    Balancing Fresh and Hardened Properties
  5. 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
  6. 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
  7. Tinoco Matheus, Mendoza Reales Oscar, Toledo Filho Romildo (2023-06)
    Rheological Behavior of 3D Printable Bio-Concretes Produced with Rice Husk
  8. 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
  9. 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