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Electro-mechanical analysis of a multilayer piezoelectric cantilever energy harvester upon harmonic vibrations

机译:多层压电悬臂式能量收集器谐波振动的机电分析

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This paper addresses an important issue of the individual layer thickness influence in a multilayer piezo composite on electro-mechanical energy conversion. The use of energy harvesting systems seems to be very promising for applications such as ultra-low power electronics, sensors and wireless communication. The energy converters are often disabled due to a failure of the piezo layer caused by an excessive deformation/stresses occurring upon the operation. It is thus desirable to increase both reliability and efficiency of the electromechanical conversion as compared to standard concepts. The proposed model of the piezoelectric vibration energy harvester is based on a multilayer beam design with active piezo and protective ceramic layers. This paper presents results of a comparative study of an analytical and numerical approach used for the electro-mechanical simulations of the multilayer energy harvesting systems. Development of the functional analytical model is crucial for the further optimization of new (smart material based) energy harvesting systems, since it provides much faster response than the numerical model.
机译:本文探讨了多层压电复合材料中各个层厚度对机电能量转换的重要影响。对于超低功率电子设备,传感器和无线通信等应用,使用能量收集系统似乎非常有前途。通常由于在操作时发生过度的变形/应力而导致压电层的故障而使能量转换器失效。因此,与标准概念相比,期望增加机电转换的可靠性和效率。所提出的压电振动能量收集器模型基于具有有源压电层和保护性陶瓷层的多层梁设计。本文介绍了用于多层能量收集系统的机电模拟的分析和数值方法的比较研究结果。功能分析模型的开发对于进一步优化新的(基于智能材料的)能量收集系统至关重要,因为它提供的响应速度比数值模型快得多。

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