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A Numerical Approach for Flexoelectric Energy Harvester Modeling Using COMSOL Multiphysics

机译:COMSOL多发性柔性能量收割机建模的数值方法

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As a piezoelectricity-like electromechanical coupling effect, flexoelectricity has stimulated more and more interest because of its unique virtues from discipline of material, mechanical engineering, automation, instrument, etc. Due to the lack of flexoelectric module in all of the commercial finite element software at the moment, numerical modelling flexoelectric electromechanical response turned to be a professional programming work which only be implemented by a small number of researchers within a limited discipline field. In the meantime, there exists a strong need for more understanding of dynamic flexoelectric electromechanical response in application areas such as energy harvester, wave filter and so on. However, benefitting from the external equation interface of COMSOL Multiphysics, we developed a cost-effective numerical approach to implement the dynamic flexoelectric electromechanical response in dielectric solids. As a specific case, a plate-mass-type energy harvester employing a perovskite ceramic material is studied and the corresponding output voltages, electric power and natural frequencies are analyzed in different conditions.
机译:作为压电性的机电耦合效果,由于其所有商业有限元软件中缺乏柔性模块,因此柔性电性促进了越来越多的兴趣。目前,数值建模柔性电机电响应转身为专业的编程工作,只能通过有限学科领域的少数研究人员实现。与此同时,有强有力需要更加了解应用领域的动态柔性电机电响应,如能量收割机,波过滤器等。然而,从Comsol Multiphysics的外部方程界面受益,我们开发了一种经济高效的数值方法来实现介电固体中的动态柔性电机电响应。作为一种特定情况,研究了采用钙钛矿陶瓷材料的板质型能量收割机,并在不同条件下分析相应的输出电压,电力和自然频率。

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