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Proof mass effect on piezoelectric cantilever beam for vibrational energy harvesting using Finite Element Method

机译:有限元方法对压电悬臂梁振动能量采集的质量效应证明

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Energy harvesting is a process of extracting and converting ambient energy into electrical energy. Ambient vibration energy can be utilised by electromagnetic, electrostatic and piezoelectric mechanisms to provide electrical energy. Piezoelectric mechanism is widely preferred due its effective piezoelectric effect. Resonant frequency of structure is a vital parameter in piezoelectric energy harvesting. In this paper, proof mass effect on piezoelectric cantilever beams was analysed to reduce resonant frequency. The structure of the beams were designed in SolidWorks. The beams were consisted of bi-layered PZT-5H, Aluminium substrate and Tungsten proof mass. The dimensions of proof mass were varied only. The other parts were remain unchanged in dimensions. The beams were analysed by using Finite Element Method (FEM) in COMSOL Multiphysics. Vibration acceleration of 1 g (g = 9.81 m/s2) was applied on both beams. Higher terminal voltage of 7.8 mV was obtained at lower resonant frequency of 163.4 Hz from the beam with larger proof mass. While from the other beam with smaller proof mass, terminal voltage of 7.64 mV was obtained at higher resonant frequency of 190.3 Hz. The designed and analysed beams can be used for wireless sensor networks, monitoring structures, temperature and humidity sensors etc.
机译:能量收集是将环境能量提取并将其转换为电能的过程。周围的振动能量可以通过电磁,静电和压电机制加以利用,以提供电能。压电机构由于其有效的压电效应而被广泛优选。结构的共振频率是压电能量收集的重要参数。本文分析了压电悬臂梁的质量效应,以降低共振频率。梁的结构是在SolidWorks中设计的。横梁由双层PZT-5H,铝基板和钨制质量块组成。证明质量的大小仅变化。其他部分的尺寸保持不变。使用COMSOL Multiphysics中的有限元方法(FEM)对光束进行了分析。在两个梁上都施加了1 g(g = 9.81 m / s2)的振动加速度。从具有较大屈服质量的光束中,在163.4 Hz的较低谐振频率下可获得7.8 mV的较高端电压。从另一束质量更小的光束中,在190.3 Hz的较高谐振频率下获得了7.64 mV的端电压。设计和分析的光束可用于无线传感器网络,监视结构,温度和湿度传感器等。

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