Mohammad Bahar
Papers
1
Total Citations
41
H-Index
1
About
Mohammad Bahar is a pioneering researcher at the intersection of additive manufacturing and construction materials, with a primary focus on developing advanced reinforcement techniques for 3D-printed concrete structures. His most cited work, "Development of a Robot-Based Multi-Directional Dynamic Fiber Winding Process for Additive Manufacturing Using Shotcrete 3D Printing" (2021, 41 citations), introduces a novel method for integrating continuous fiber reinforcement—specifically fiber-reinforced polymers (FRP)—into shotcrete-based additive manufacturing. This innovation addresses a critical challenge in construction 3D printing: the lack of robust, corrosion-resistant reinforcement that can match the performance of traditional steel. By enabling multi-directional, dynamic fiber winding through robotic control, Bahar’s research enhances the structural integrity and durability of printed elements, paving the way for more resilient and sustainable building practices. His work is particularly notable for its practical application of FRP composites, which offer high strength-to-weight ratios and resistance to environmental degradation. With growing interest in automated construction, Bahar’s contributions are shaping the future of digital fabrication, making him a key figure in advancing both materials science and robotic manufacturing for the built environment.
Research Focus
Key Achievements
Top Papers
- 1