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#supplement

Keywords by Co - Occurrence

  1. Omarov Bekarys, Ali Md., Memon Shazim (2026-03)
    A Novel Method to Enhance Interlayer Bond in 3D-Printed Concrete Using Dry-Powder Application of Supplementary Cementitious Materials
  2. Mahmood Mir, Alias Aizat, Hasan Kamrul (2026-02)
    A Bibliometric and Technical Review of Supplementary Cementitious Materials for 3D Concrete Printing: Research Trends, Current Status, Challenges, and Future Directions
  3. Goel Devansh, Kore Sudarshan, Blanco Ana (2026-02)
    Understanding the Role of Supplementary Cementitious Materials in 3D Printed Concrete
  4. Yan Yufei, Zhang Mo, Ma Guowei (2025-12)
    Synergistic Effect of Multi-Supplementary Materials on Rheology and Ultra-Early Stage Properties of 3D Printable FA-GBFS Geopolymer
  5. Flor Juncal Luis, Scott Allan, Clucas Don, Loporcaro Giuseppe (2025-11)
    Influence of Alternative Supplementary Cementitious Materials and Printing Parameters on the Mechanical Properties of 3D-Printed Mortars
  6. Gajjar Parth, Gajjar T., Tangirala Aniruddha, Shrestha Ajad (2025-10)
    Advancing 3D Printing in Construction:
    Rheological Behaviors of Cementitious Composites with Supplementary Materials
  7. Silveira Júnior Jairon, Sakata Rafael, Onghero Lucas, Matos Paulo et al. (2025-03)
    Al-Anodizing Waste as a Supplementary Cementitious Material for 3D-Printed Portland Cement
  8. Mani Aravindhraj, Muthukumar S., Sathyanarayanan K. (2023-08)
    Use of Alccofine 1203 as a Sustainable Supplementary Cementitious Material for Printable Concrete
  9. Nodehi Mehrab, Ozbakkaloglu Togay, Gholampour Aliakbar (2022-04)
    Effect of Supplementary Cementitious Materials on Properties of 3D Printed Conventional and Alkali-Activated Concrete:
    A Review
  10. Teixeira João, Schaefer Cecília, Maia Lino, Rangel Bárbara et al. (2022-03)
    Influence of Supplementary Cementitious Materials on Fresh Properties of 3D Printable Materials
  11. Guo Xiaolu, Yang Junyi, Xiong Guiyan (2020-09)
    Influence of Supplementary Cementitious Materials on Rheological Properties of 3D Printed Fly-Ash-Based Geopolymer