Xuan-Tan Pham
Papers
3
Total Citations
59
H-Index
3
About
Dr. Xuan-Tan Pham is a leading researcher in advanced thermal and manufacturing processes, specializing in numerical simulation and optimization of heat treatment technologies. His work centers on the development and validation of computational models for arc welding and induction heating, with a particular focus on robotic systems for large-scale industrial components. Dr. Pham’s major contributions include pioneering the use of the Element-free Galerkin method for moving heat source simulation in arc welding, achieving high accuracy validated by experimental data (33 citations). He also developed a coupled thermo-electromagnetic model for a novel robotic high-frequency induction heat treatment system, enabling precise local heating of large steel parts (23 citations). His non-linear optimization of induction processes using thermal finite element analysis further advances efficient, localized heat treatment for complex geometries. With a growing citation impact, Dr. Pham’s work bridges computational modeling and practical manufacturing, offering robust solutions for improving weld quality, reducing thermal distortion, and enhancing process control in industries such as automotive and heavy machinery. His research is instrumental for engineers and scientists seeking to optimize heat-intensive manufacturing through simulation-driven design.
Research Focus
Key Achievements
Top Papers
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