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Universal Triboelectric Nanogenerator Simulation Based on Dynamic Finite Element Method Model

机译:基于动态有限元法模型的通用摩擦纳米料模拟

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摘要

The lack of a universal simulation method for triboelectric nanogenerator (TENG) makes the device design and optimization difficult before experiment, which protracts the research and development process and hinders the landing of practical TENG applications. The existing electrostatic induction models for TENGs have limitations in simulating TENGs with complex geometries and their dynamic behaviors under practical movements due to the topology change issues. Here, a dynamic finite element method (FEM) model is proposed. The introduction of air buffer layers and the moving mesh method eliminates the topology change issues during practical movement and allows simulation of dynamic and time-varying behaviors of TENGs with complex 2D/3D geometries. Systematic investigations are carried out to optimize the air buffer thickness and mesh densities, and the optimized results show excellent consistency with the experimental data and results based on other existing methods. It also shows that a 3D disk-type rotating TENG can be simulated using the model, clearly demonstrating the capability and superiority of the dynamic FEM model. Moreover, the dynamic FEM model is used to optimize the shape of the tribo-material, which is used as a preliminary example to demonstrate the possibility of designing a TENG-based sensor.
机译:缺乏对摩擦纳米电磁炉(Teng)的通用模拟方法使得实验前的装置设计和优化,这突出了研发过程,阻碍了实用腾申请的着陆。由于拓扑变化问题,现有的腾冲的静电感应模型具有模拟复杂几何形状的腾冲和其动态行为的局限性。这里,提出了一种动态有限元方法(FEM)模型。空气缓冲层和移动网格方法的引入消除了实际运动过程中的拓扑变化问题,并探讨了复杂的2D / 3D几何形状的Tengs的动态和时变行为。进行系统调查以优化空气缓冲厚度和网眼密度,并且优化结果显示出具有实验数据的优异一致性和基于其他现有方法。它还表明,可以使用该模型进行模拟3D盘式旋转腾腾,清楚地证明了动态有限元模型的能力和优越性。此外,动态有限元模型用于优化摩擦材料的形状,该材料被用作初步示例,以证明设计基于龄传感器的可能性。

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