Tommaso Casucci
Papers
2
Total Citations
11
H-Index
2
About
Tommaso Casucci is a researcher at the forefront of digital fabrication and structural design, specializing in robotic 3D printing of concrete and the development of mesh-based workflows for funicular structures. His work bridges the gap between computational design and physical construction, with a particular focus on unreinforced concrete—a material that poses unique challenges for additive manufacturing. Casucci’s most cited paper, "Print-Path Design for Inclined-Plane Robotic 3D Printing of Unreinforced Concrete" (2022, 7 citations), introduces innovative strategies for optimizing print paths to ensure structural stability and material efficiency, a critical contribution to the field of construction robotics. His earlier case study on mesh-based design-to-fabrication workflows for funicular structures (2019, 4 citations) demonstrates a practical, integrated approach to creating lightweight, self-supporting forms. Though his citation counts are modest, his work is highly relevant to emerging sustainable construction practices, and he is recognized for advancing the automation of non-standard architectural elements. Casucci’s research is particularly valuable for students and practitioners exploring the intersection of robotics, material science, and computational geometry in architecture.
Research Focus
Key Achievements
Top Papers
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