Yi‐Tsung Lee
Papers
2
Total Citations
10
H-Index
2
About
Yi-Tsung Lee is a researcher advancing the frontiers of soft robotics and bio-inspired actuation, with a primary focus on dielectric elastomer actuators (DEAs). His work addresses a critical challenge in the field: creating compliant, stretchable electrodes that enable DEAs to achieve the large deformations needed for applications ranging from micro-robots to artificial muscles. Lee’s most cited paper (2017, 6 citations) introduces the innovative use of stretchable metallic springs as compliant electrodes for cylindrical DEAs, a design that overcomes the limitations of traditional rigid electrodes. His earlier foundational study (2016, 4 citations) further established the viability of spring-based electrodes, demonstrating their potential to replace conventional motors in micro-scale and bio-compatible systems. Though early in his career, Lee’s contributions are already shaping how DEAs are designed for soft robotics and biomedical devices, offering a pathway to more durable, high-performance actuators. His work is particularly notable for its practical approach to electrode compliance, a key hurdle in making DEAs viable for real-world applications.
Research Focus
Key Achievements
Top Papers
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