Nguyen Vinh-Tan, Leong Jason Yu Chuan, Watanabe Satoshi, Morooka Toshimitsu, Shimizu Takayuki
Institute of High Performance Computing, 1 Fusionopolis Way, #16-16 Connexis, Singapore 138632, Singapore.
Seiko Holdings Corp., 8, Nakase 1-chome, Mihama-ku, Chiba-shi 261-8507, Chiba, Japan.
Micromachines (Basel). 2021 Aug 29;12(9):1038. doi: 10.3390/mi12091038.
The ink drop generation process in piezoelectric droplet-on-demand devices is a complex multiphysics process. A fully resolved simulation of such a system involves a coupled fluid-structure interaction approach employing both computational fluid dynamics (CFD) and computational structural mechanics (CSM) models; thus, it is computationally expensive for engineering design and analysis. In this work, a simplified lumped element model (LEM) is proposed for the simulation of piezoelectric inkjet printheads using the analogy of equivalent electrical circuits. The model's parameters are computed from three-dimensional fluid and structural simulations, taking into account the detailed geometrical features of the inkjet printhead. Inherently, this multifidelity LEM approach is much faster in simulations of the whole inkjet printhead, while it ably captures fundamental electro-mechanical coupling effects. The approach is validated with experimental data for an existing commercial inkjet printhead with good agreement in droplet speed prediction and frequency responses. The sensitivity analysis of droplet generation conducted for the variation of ink channel geometrical parameters shows the importance of different design variables on the performance of inkjet printheads. It further illustrates the effectiveness of the proposed approach in practical engineering usage.
压电按需滴液设备中的墨滴生成过程是一个复杂的多物理过程。对这样一个系统进行完全解析的模拟涉及采用计算流体动力学(CFD)和计算结构力学(CSM)模型的流固耦合方法;因此,对于工程设计和分析来说,计算成本很高。在这项工作中,通过等效电路类比,提出了一种简化的集总元件模型(LEM)来模拟压电喷墨打印头。该模型的参数通过三维流体和结构模拟计算得出,同时考虑了喷墨打印头的详细几何特征。本质上,这种多保真度LEM方法在整个喷墨打印头的模拟中速度要快得多,同时它能够很好地捕捉基本的机电耦合效应。该方法通过现有商用喷墨打印头的实验数据进行了验证,在液滴速度预测和频率响应方面具有良好的一致性。针对墨道几何参数变化进行的液滴生成敏感性分析表明了不同设计变量对喷墨打印头性能的重要性。它进一步说明了所提出方法在实际工程应用中的有效性。