132.suncitygroup太阳新城
力学(0801)
力学(0801)
曹东兴
发布时间:2021-10-29 发布者: 浏览次数:

1.Cao DX, Zhou YW, Guo XY. In-plane free vibration analysis of multi-folded beam structures. Eng Struct. 2024: 302:117437.

2.Cao DX, Zhan CH, Guo XY, Yao MH. An Impact-Driven Enhanced Tuning Fork for Low-Frequency Ambient Vibration Energy Harvesting: Modeling, Simulation, and Experiment. Journal of Vibration Engineering & Technologies. 2024.

3.Cao DX, Li SS, Guo XY, Chen XM, Lai SK. Buckling-driven piezoelectric defect-induced energy localization and harvesting using a Rubik’s cube-inspired phononic crystal structure. Smart Mater Struct. 2024: 33:035036.

4.Dong T, Cao DX, Dong MM. The dynamic regimes and the energy harvesting of the energy harvester based on the bistable piezoelectric composite laminate. Thin-Walled Structures. 2023: 188:110777.

5.Cao DX, Wang JR, Guo XY, Lai SK, Shen YJ. Recent advancement of flow-induced piezoelectric vibration energy harvesting techniques: principles, structures, and nonlinear designs. Applied Mathematics and Mechanics (English Edition). 2022: 43:959-78.

6.Cao DX, Lu YM, Lai SK, Mao JJ, Guo XY, Shen YJ. A novel soft encapsulated multi-directional and multi-modal piezoelectric vibration energy harvester. Energy. 2022: 254:124309.

7.Cao DX, Li SS, Zhan CH, Lu YM, Mao JJ, Lai SK. Defect-mode-induced energy localization/harvesting of a locally resonant phononic crystal plate: Analysis of line defects. Journal of Infrastructure Intelligence and Resilience. 2022: 1:100001.

8.Cao DX, Xia W, Guo XY, Lai SK. Modeling and experiment of vibro-impact vibration energy harvester based on a partial interlayer-separated piezoelectric beam. J Intell Mater Syst Struct. 2021: 32:817-31.

9.Cao DX, Ding XD, Guo XY, Yao MH. Design, Simulation and Experiment for a Vortex-Induced Vibration Energy Harvester for Low-Velocity Water Flow. International Journal of Precision Engineering and Manufacturing-Green Technology. 2021: 8:1239-52.

10.Cao DX, Ding XD, Guo XY, Yao MH. Improved Flow-Induced Vibration Energy Harvester by Using Magnetic Force: An Experimental Study. International Journal of Precision Engineering and Manufacturing-Green Technology. 2021: 8:879-87.

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