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Evaluation and validation of equivalent properties of macro fibre composites for piezoelectric transducer modelling

机译:压电换能器建模中大纤维复合材料等效性能的评估和验证

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Piezoelectric transducers based on macro fibre composites (MFCs) are widely used for energy harvesting, actuation and sensing because of the high conformability, reliability and strong piezoelectric effect of MFCs. Analytical or numerical modelling of the heterogeneous MFC as a homogenous material with equivalent properties is usually required to predict the performance of the transducers. However, the equivalent properties reported in the literature are not suitable for this purpose. This work proposes an equal power-output method to numerically evaluate the equivalent properties of d31type MFCs for piezoelectric transducer modelling. Taking energy harvesting application as a study case, it departs from the traditional method by applying electric assumptions that ensure the equal voltage, electric charge, and thus equal power output between the heterogeneous and homogeneous MFCs. The equivalent properties were characterised through the finite element (FE) analysis of the MFC's representative volume element (RVE), which is the minimum periodic unit in the MFC and takes account all the constitutes. The validity of these equivalent properties for energy harvesting transducer modelling was verified by FE modelling as well as experimental testing. The application of the equivalent properties for actuation and sensing transducer modelling was analysed and validated. FE modelling results showed that a homogeneous RVE with the equivalent properties accurately simulated the energy harvesting and actuation behaviours of the heterogeneous RVE. The simulated power output of MFC-based strain energy harvesters matched the mean experimental results with a mean error of 2.5%. When used for actuation, the MFC produced a free strain of 0.93με/V, which is close to the manufacturer specification.
机译:基于MFC的高适应性,可靠性和强压电效应,基于宏纤维复合材料(MFC)的压电换能器被广泛用于能量收集,致动和传感。通常需要对异质MFC作为具有均等特性的均质材料进行分析或数值建模,以预测换能器的性能。然而,文献中报道的等效性质不适合该目的。这项工作提出了一种相等的功率输出方法,以对压电换能器建模的d31型MFC的等效特性进行数值评估。以能量收集应用为研究案例,它通过应用可确保异质MFC和均质MFC之间相等的电压,电荷以及相等的功率输出的电假设来偏离传统方法。通过对MFC的代表体积元素(RVE)进行有限元(FE)分析来表征等效属性,RFE是MFC中的最小周期性单位,并考虑了所有构成。这些等效属性对于能量采集换能器建模的有效性已通过有限元建模和实验测试得到了验证。分析并验证了等效特性在致动和传感换能器建模中的应用。有限元建模结果表明,具有等效特性的同质RVE可以精确模拟异质RVE的能量收集和驱动行为。基于MFC的应变能采集器的模拟功率输出与平均实验结果相匹配,平均误差为2.5%。当用于致动时,MFC产生的自由应变为0.93με/ V,接近于制造商的规格。

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