State Key Laboratory of Mining Response and Disaster Prevention and Control in Deep Coal Mines, Anhui University of Science and Technology, Huainan 232001, China.
College of Mechanical Engineering, Anhui University of Science and Technology, Huainan 232001, China.
Sensors (Basel). 2022 Sep 6;22(18):6720. doi: 10.3390/s22186720.
To overcome high periodic maintenance requirements, difficult replacement, and large application limitations of wireless sensor nodes powered by chemical batteries during the vibration control process of stiffened plates, a two-degree-of-freedom diagonal beam piezoelectric vibration energy harvester was proposed. Multidimensional energy harvesting and broadband work are integrated into one structure through the combined action of oblique angle, mass blocks, and piezoelectric beam. The mechanical model of the beam is established for theoretical analysis; the output characteristics of the structure are analyzed by finite element simulation; a piezoelectric energy harvesting experimental bench is built. The results show that: The structure has a wider harvesting band, multi-order resonant frequency, multi-dimensional energy harvesting, and higher output voltage and power than the traditional cantilever structures. The output performance of the specimens with 45° oblique angle, 5 g:5 g mass ratio, and 0.2 mm thickness of piezoelectric substrate is good in the frequency band of 10~40 Hz. When the excitation frequency is 28 Hz, the output voltage of the sextuple array structure reaches 19.20 V and the output power reaches 7.37 mW. The field experiments show that the harvester array can meet the requirements of providing auxiliary energy for wireless sensor nodes in the process of active vibration control of stiffened plates.
为了克服在加筋板振动控制过程中,由化学电池供电的无线传感器节点由于周期性维护要求高、更换困难和应用范围有限的问题,提出了一种两自由度对角梁压电振动能量收集器。通过斜角、质量块和压电梁的联合作用,将多维能量收集和宽带工作集成到一个结构中。建立了梁的力学模型进行理论分析;通过有限元模拟分析了结构的输出特性;搭建了压电能量收集实验台。结果表明:与传统的悬臂梁结构相比,该结构具有更宽的采集带宽、多阶共振频率、多维能量采集以及更高的输出电压和功率。对于斜角为 45°、质量比为 5 g:5 g、压电基底厚度为 0.2 mm 的试件,在 10~40 Hz 的频段内具有良好的输出性能。当激励频率为 28 Hz 时,六重阵列结构的输出电压达到 19.20 V,输出功率达到 7.37 mW。现场实验表明,该收集器阵列能够满足在加筋板主动振动控制过程中为无线传感器节点提供辅助能量的要求。