Papers
1
Total Citations
29
H-Index
1
About
Yayu Huang is a leading researcher in mechanical engineering, specializing in multibody dynamics and tribology of rolling element bearings. Their work focuses on the intricate interactions between balls, ring raceways, and cage structures in high-performance bearings, particularly thin-walled four-point contact ball bearings used in precision machinery. Huang’s most-cited paper, "Multibody dynamics simulation of thin-walled four-point contact ball bearing with interactions of balls, ring raceways and crown-type cage" (2019), has garnered 29 citations, establishing a foundation for advanced simulation methods that capture the complex, coupled dynamics of bearing components. This contribution is critical for improving bearing durability, reducing vibration, and enhancing load distribution in applications such as aerospace and robotics. By integrating detailed contact mechanics with multibody system dynamics, Huang’s research bridges theoretical modeling and practical engineering design, offering tools for optimizing cage geometry and predicting failure modes. Their work is widely referenced by engineers and researchers developing next-generation mechanical systems, underscoring its impact on the reliability and efficiency of rotating machinery.
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