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Biswas Pankaj

Information

ORCID
N/A
First Contribution
2023-12-06
Last Contribution
2026-04-01
Number Contributions
9
Number Citations
60

Persons This Author Cites the Most

  1. Bos Freek (19)
  2. Salet Theo (16)
  3. Panda Biranchi (13)
  4. Sanjayan Jay (13)
  5. Ma Guowei (12)

Persons This Author Is Cited Most By

  1. Panda Biranchi (5)
  2. Hopkins Ben (2)
  3. Maroszek Marcin (2)
  4. Mercimek Ömer (2)
  5. Tarhan Yeşim (2)


  1. Warsi Syed, Panda Biranchi, Biswas Pankaj (2026-04)
    3D Finite Element Analysis on the Effects of Boundary Elements Confinement on Cyclic Performance of 3D Printed Concrete Wall
  2. Warsi Syed, Panda Biranchi, Biswas Pankaj, Chandra Borsaikia Arun (2026-03)
    Design of Earthquake-Resistant 3D Printed Concrete Walls:
    An Integrated Experimental-Numerical Framework for Predicting Cyclic Performance of Full-Scale Structural Building Based on Wall Testing
  3. Fatima Warsi, Syed Bustan, Panda Biranchi, Biswas Pankaj (2025-12)
    Numerical Evaluation of the Seismic Performance of Self-Centering 3D Printed Concrete Wall
  4. Warsi Syed, Panda Biranchi, Biswas Pankaj (2025-06)
    Design of Earthquake-Resistant 3D Printed Concrete Wall Based on ACI 318-19:
    Analytical Investigation and Numerical Modelling
  5. Warsi Syed, Panda Biranchi, Biswas Pankaj (2024-11)
    Structural Analysis of 3D Printed Concrete Walls Under Quasi-Static Cyclic Loading Using Composite Micro-Model
  6. Warsi Syed, Panda Biranchi, Biswas Pankaj (2024-11)
    Development of Ultra-Ductile Strain-Hardening 3D Printed Concrete Composite Utilizing Critical Fiber Volume and Coarse Aggregate
  7. Warsi Syed, Panda Biranchi, Biswas Pankaj (2024-09)
    Effect of Strain-Hardening Material on Seismic-Performance of 3D Printed Concrete Wall:
    A Numerical Study
  8. Warsi Syed, Panda Biranchi, Biswas Pankaj (2023-12)
    Exploring Fiber Addition Methods and Mechanical Properties of Fiber-Reinforced 3D Printed Concrete:
    A Review
  9. Warsi Syed, Srinivas Dodda, Panda Biranchi, Biswas Pankaj (2023-12)
    Investigating the Impact of Coarse Aggregate Dosage on the Mechanical Performance of 3D Printable Concrete