Papers

6

Total Citations

59

H-Index

4

About

Xavier Balandraud’s research lies at the intersection of robotics, smart materials, and advanced manufacturing, with a focus on enhancing the performance and adaptability of robotic systems. His major contributions include pioneering the use of **finite element method (FEM)-based stiffness maps** for robotic performance analysis, a tool critical for optimizing robots in pick-and-place and manufacturing tasks—his 2015 paper on this topic has garnered 28 citations. Balandraud has also advanced **variable stiffness mechanisms** by integrating shape-memory alloys (SMAs) with rotary actuators, enabling compliant structures that can dynamically adapt their stiffness; his 2018 work on this concept has received 14 citations. In the realm of **wire arc additive manufacturing (WAAM)**, he has investigated the complex interactions between cold metal transfer (CMT) equipment and robot controllers, addressing toolpath accuracy challenges—a 2023 study on this topic has already earned 4 citations. Additionally, his development of a manufacturing time estimator incorporating kinematic and thermal factors (2023, 3 citations) offers practical insights for WAAM process planning. Balandraud’s work bridges theoretical modeling and real-world application, making him a key figure in the evolution of flexible, precise robotic systems for production.

Research Focus

Key Achievements

4
H-Index
6
Papers
59
Total Citations
10
Avg Citations/Paper
🏆 Most Cited Paper
FEM-Based Generation of Stiffness Maps
28 citations · 2015
📈 Most Prolific Year: 2015 (2 Papers)
🤝 Key Collaborators: 7
🏛 Institutions: Clermont Université, Centre National de la Recherche Scientifique, Université Clermont Auvergne

Top Papers

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Key Collaborators

Contact & Links

Available for collaboration
Content generated · 14 days ago