Chen Xiaoyu, Zhang Xuhui, Chen Luyang, Guo Yan, Zhu Fulin
College of Mechanical Engineering, Xi'an University of Science and Technology, Xi'an 710054, China.
College of Engineering, Zunyi Normal College, Zunyi 563006, China.
Micromachines (Basel). 2021 Aug 21;12(8):995. doi: 10.3390/mi12080995.
To improve the energy harvesting performance of an energy harvester, a novel bistable piezoelectric energy harvester with variable potential well (BPEH-V) is proposed by introducing a spring to the external magnet from a curve-shaped beam bistable harvester (CBH-C). First, finite element simulation was performed in COMSOL software to validate that the curved beam configuration was superior to the straight beam in power generation performance, which benefits energy harvesting. Moreover, the nonlinear magnetic model was obtained by using the magnetic dipoles method, and the nonlinear restoring force model of the curve-shaped beam was acquired based on fitting the experimental data. The corresponding coupled governing equations were derived by using generalized Hamilton's principle, the dynamic responses were obtained by solving the coupling equations with the ode45 method. Finally, the numerical simulations showed that the proposed harvester can make interwell oscillations easier due to the spring being efficiently introduced to pull down the potential barrier compared with the conventional bistable harvester. Spring stiffness has a great impact on characteristics of the system, and a suitable stiffness contributes to realize large-amplitude interwell oscillations over a wide range of excitation, especially in the low excitation condition.
为了提高能量收集器的能量收集性能,通过从曲线形梁双稳态收集器(CBH-C)向外部磁体引入弹簧,提出了一种具有可变势阱的新型双稳态压电能量收集器(BPEH-V)。首先,在COMSOL软件中进行了有限元模拟,以验证曲线梁结构在发电性能方面优于直梁,这有利于能量收集。此外,采用磁偶极子法获得了非线性磁模型,并基于对实验数据的拟合得到了曲线形梁的非线性恢复力模型。利用广义哈密顿原理推导了相应的耦合控制方程,采用ode45方法求解耦合方程得到了动态响应。最后,数值模拟表明,与传统双稳态收集器相比,由于有效地引入了弹簧来降低势垒,所提出的收集器能够使阱间振荡更容易。弹簧刚度对系统特性有很大影响,合适的刚度有助于在很宽的激励范围内实现大幅度的阱间振荡,特别是在低激励条件下。