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Analytical and experimental comparisons of electromechanical vibration response of a piezoelectric bimorph beam for power harvesting

机译:用于功率收集的压电双压电晶片梁的机电振动响应的分析和实验比较

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Power harvesters that extract energy from vibrating systems via piezoelectric transduction show strong potential for powering smart wireless sensor devices in applications of health condition monitoring of rotating machinery and structures. This paper presents an analytical method for modelling an electromechanical piezoelectric bimorph beam with tip mass under two input base transverse and longitudinal excitations. The Euler-Bernoulli beam equations were used to model the piezoelectric bimorph beam. The polarity-electric field of the piezoelectric element is excited by the strain field caused by base input excitation, resulting in electrical charge. The governing electromechanical dynamic equations were derived analytically using the weak form of the Hamiltonian principle to obtain the constitutive equations. Three constitutive electromechanical dynamic equations based on independent coefficients of virtual displacement vectors were formulated and then further modelled using the normalised Ritz eigenfunction series. The electromechanical formulations include both the series and parallel connections of the piezoelectric bimorph. The multi-mode frequency response functions (FRFs) under varying electrical load resistance were formulated using Laplace transformation for the multi-input mechanical vibrations to provide the multi-output dynamic displacement, velocity, voltage, current and power. The experimental and theoretical validations reduced for the single mode system were shown to provide reasonable predictions. The model results from polar base excitation for off-axis input motions were validated with experimental results showing the change to the electrical power frequency response amplitude as a function of excitation angle, with relevance for practical implementation.
机译:通过压电换能从振动系统中提取能量的能量采集器在为旋转机械和结构的健康状况监测应用中为智能无线传感器设备提供动力方面具有强大的潜力。本文提出了一种在两个输入基面的横向和纵向激励下模拟具有尖端质量的机电压电双压电晶片梁的分析方法。 Euler-Bernoulli束方程用于模拟压电双压电晶片束。压电元件的极性电场被基极输入激发引起的应变场激发,从而产生电荷。利用汉密尔顿原理的弱形式对控制的机电动力学方程进行解析推导,得到本构方程。建立了基于虚拟位移矢量独立系数的三个本构机电动力学方程,然后使用归一化的Ritz特征函数级数对其进行建模。机电配方包括压电双压电晶片的串联和并联连接。使用拉普拉斯变换,针对多输入机械振动,制定了在变化的电气负载电阻下的多模频率响应函数(FRF),以提供多输出动态位移,速度,电压,电流和功率。对单模系统减少的实验和理论验证表明可以提供合理的预测。实验结果验证了极性基极激励对轴外输入运动的模型结果,实验结果表明电功率频率响应幅度随激励角的变化而变化,与实际应用有关。

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