Rubes Ondrej, Machu Zdenek, Sevecek Oldrich, Hadas Zdenek
Faculty of Mechanical Engineering, Brno University of Technology, Technicka 2896/2, 616 69 Brno, Czech Republic.
Sensors (Basel). 2020 Oct 14;20(20):5808. doi: 10.3390/s20205808.
Kinetic piezoelectric energy harvesters are used to power up ultra-low power devices without batteries as an alternative and eco-friendly source of energy. This paper deals with a novel design of a lead-free multilayer energy harvester based on BaTiO ceramics. This material is very brittle and might be cracked in small amplitudes of oscillations. However, the main aim of our development is the design of a crack protective layered architecture that protects an energy harvesting device in very high amplitudes of oscillations. This architecture is described and optimized for chosen geometry and the resulted one degree of freedom coupled electromechanical model is derived. This model could be used in bistable configuration and the model is extended about the nonlinear stiffness produced by auxiliary magnets. The complex bistable vibration energy harvester is simulated to predict operation in a wide range of frequency excitation. It should demonstrate typical operation of designed beam and a stress intensity factor was calculated for layers. The whole system, without presence of cracks, was simulated with an excitation acceleration of amplitude up to 1g. The maximal obtained power was around 2 mW at the frequency around 40 Hz with a maximal tip displacement 7.5 mm. The maximal operating amplitude of this novel design was calculated around 10 mm which is 10-times higher than without protective layers.
动力学压电能量采集器被用于为无电池的超低功耗设备供电,作为一种替代的、环保的能源。本文涉及一种基于钛酸钡陶瓷的新型无铅多层能量采集器设计。这种材料非常脆,在小振幅振荡时可能会开裂。然而,我们开发的主要目标是设计一种裂纹保护分层结构,在非常高的振幅振荡中保护能量采集装置。针对选定的几何形状描述并优化了这种结构,并推导了由此产生的单自由度耦合机电模型。该模型可用于双稳态配置,并围绕辅助磁体产生的非线性刚度对模型进行了扩展。对复杂的双稳态振动能量采集器进行了模拟,以预测其在宽频激励范围内的运行情况。它应展示设计梁的典型运行情况,并计算各层的应力强度因子。在不存在裂纹的情况下,对整个系统进行了模拟,激励加速度幅值高达1g。在频率约为40Hz、最大尖端位移为7.5mm时,获得的最大功率约为2mW。这种新颖设计的最大工作振幅计算约为10mm,比没有保护层时高10倍。