Biography and Research Information
OverviewAI-generated summary
Rencheng Wu's research focuses on the application of robotics in additive manufacturing processes. His work investigates methods for enhancing the efficiency and precision of 3D printing through robotic manipulation, particularly with tape-based materials. Wu has explored topological interlocking shapes for collision-free multi-robot additive manufacturing, a technique termed LayerLock. He has also published research on desktop-scale robot tape manipulation for 3D printing applications.
Wu has a scholarly output of four publications with 19 citations and an h-index of 2. His research network includes collaborators such as Wenchao Zhou, Wan Shou, and Nahid Tushar, all from the University of Arkansas at Fayetteville, with whom he has co-authored multiple publications.
Metrics
- h-index: 2
- Publications: 4
- Citations: 20
Selected Publications
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Heterogeneous swarm manufacturing: a framework and proof-of-concept study (2026)
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Desktop-scale robot tape manipulation for additive manufacturing (2024)
Collaboration Network
Top Collaborators
- LayerLock: Layer-Wise Collision-Free Multi-Robot Additive Manufacturing Using Topologically Interlocked Space-Filling Shapes
- Desktop-scale robot tape manipulation for additive manufacturing
- Robot Tape Manipulation for 3D Printing
- Desktop-scale robot tape manipulation for additive manufacturing
- Robot Tape Manipulation for 3D Printing
- Heterogeneous swarm manufacturing: a framework and proof-of-concept study
- Desktop-scale robot tape manipulation for additive manufacturing
- Robot Tape Manipulation for 3D Printing
- Heterogeneous swarm manufacturing: a framework and proof-of-concept study
- Desktop-scale robot tape manipulation for additive manufacturing
- Robot Tape Manipulation for 3D Printing
- LayerLock: Layer-Wise Collision-Free Multi-Robot Additive Manufacturing Using Topologically Interlocked Space-Filling Shapes
- LayerLock: Layer-Wise Collision-Free Multi-Robot Additive Manufacturing Using Topologically Interlocked Space-Filling Shapes
- LayerLock: Layer-Wise Collision-Free Multi-Robot Additive Manufacturing Using Topologically Interlocked Space-Filling Shapes
- LayerLock: Layer-Wise Collision-Free Multi-Robot Additive Manufacturing Using Topologically Interlocked Space-Filling Shapes
- LayerLock: Layer-Wise Collision-Free Multi-Robot Additive Manufacturing Using Topologically Interlocked Space-Filling Shapes
- LayerLock: Layer-Wise Collision-Free Multi-Robot Additive Manufacturing Using Topologically Interlocked Space-Filling Shapes
- Heterogeneous swarm manufacturing: a framework and proof-of-concept study
- Heterogeneous swarm manufacturing: a framework and proof-of-concept study
- Heterogeneous swarm manufacturing: a framework and proof-of-concept study
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