Papers
1
Total Citations
13
H-Index
1
About
Tan Shujie is a rising researcher in the field of advanced manufacturing and materials science, with a primary focus on multiscale modeling and additive manufacturing of lattice structures. Their most cited work, "Multiscale periodic homogenization for additive manufacturing of honeycomb lattices" (2024), introduces a novel computational framework that bridges microscale geometry with macroscale mechanical behavior, enabling the efficient design and optimization of honeycomb lattice structures for 3D printing. This contribution addresses a critical challenge in additive manufacturing: predicting how small-scale periodic patterns influence overall structural performance. By employing homogenization techniques, Tan Shujie’s research provides a powerful tool for engineers to tailor lattice properties—such as stiffness, strength, and weight—without costly trial-and-error experiments. With 13 citations already in a short time, this work signals growing recognition in the community. Tan Shujie’s achievements are particularly notable for their potential to accelerate the adoption of lightweight, high-performance lattice structures in aerospace, automotive, and biomedical applications. Their interdisciplinary approach, combining mechanics, mathematics, and digital fabrication, positions them as a promising voice in the next generation of manufacturing innovation.
Research Focus
Key Achievements
Top Papers
- 1