学术成果展示
[1] Liang, H.*, Hopkins, J.B.*, Hao, G.*, et al., 2025. The design of spatial compliant mechanisms with distributed multi-stability based on post-buckled cylindrical compliant beams. Mechanical Systems and Signal Processing, 228, p.112365. (一区Top, IF:7.9 ) [2] Liang, H., Hao, G., et al., 2022. Ultra-low wide bandwidth vibrational energy harvesting using a statically balanced compliant mechanism. International Journal of Mechanical Sciences, p.107130. (一区Top, IF:6.772 ) [3] Liang, H., Hao, G. and Olszewski, O.Z., 2021. A review on vibration-based piezoelectric energy harvesting from the aspect of compliant mechanisms. Sensors and Actuators A: Physical, 331, p.112743. (IF:4.291, Google Scholar被引>160次) [4] Liang, H., Hao, G. et al., 2023. Design of a foldable origami mechanism with helical motion inspired by the Resch Triangular Tessellation, Mechanism and Machine Theory, p. 105101. (一区Top, IF:4.93) [5] Liang, H., Fu, H, Hao, G., 2024. A miniaturized statically balanced compliant mechanism for on-chip ultralow wide-bandwidth vibrational energy harvesting. Mechanical Sciences, 15, p.159-168. [6] Liang, H., Hao, G. and Olszewski, O.Z., and M. Carandell, A new nonlinear compliant mechanism for harvesting energy from ocean waves. Global Oceans 2022: Chennai. [7] Liang, H., Hao, G., Olszewski, O.Z. and Pentek, A., 2021. The Design of a Twisting Origami Robot Inspired by Resch Triangular Tessellation. 5th IEEE/IFToMM International Conference on Reconfigurable Mechanisms and Robots (ReMAR 2021).
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