Chenying Wang
Papers
5
Total Citations
108
H-Index
4
About
Chenying Wang is a leading innovator in flexible and miniaturized force sensing technologies, with a research focus on piezoresistive and capacitive sensors for robotics, smart devices, and biomedical applications. Their major contributions include pioneering the use of periodic microslits and multiple embossments within sensor interfaces to dramatically enhance stress tolerance and sensing stability—achieving ultrahigh durability without sacrificing sensitivity. Wang’s work on flexible three-dimensional force sensors, featuring bonding and supporting composite structures, has addressed critical challenges in crosstalk and repeatability, enabling reliable tactile feedback for dexterous robot hands. Their most cited paper (2024, 32 citations) demonstrates a breakthrough in stress-tolerant flexible pressure sensors, while a 2022 study (31 citations) further optimized performance through designed interface microstructures. Wang also advanced miniaturized silicon-based capacitive six-axis force/torque sensors (2024, 16 citations), achieving large range, high sensitivity, and low crosstalk for narrow-space applications like minimally invasive surgery. With over 100 cumulative citations, Wang’s work is shaping next-generation smart devices and robotic systems, offering practical solutions for high-stability, multi-axis force sensing in constrained environments.
Research Focus
Key Achievements
Top Papers
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