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Compact model for the characterization of a piezoelectric bend-mode droplet generator

机译:压电弯曲模式液滴发生器表征的紧凑模型

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In the present paper a compact model for a piezoelectric drop-on-demand (DoD) printhead is derived from basic electrical, mechanical and fluid mechanical relationships. The model covers the whole droplet generation process, spanning over the electrical as well as the mechanical and fluidmechanical domains. It allows predictions about essential droplet characteristics, such as droplet volume and flight velocity, for a given set of droplet generator (DG) dimensions, material and fluid properties and a predetermined electrical excitation. This enables the targeted adaption of the droplet generator's design to varying application requirements, such as different fluid properties, with a minimum number of design iterations. The model is implemented by transferring the resulting differential equations to the Matlab/SIMULINK™ simulation environment. It is verified by comparing its output with an extensive empirical dataset which is obtained by fabricating a selection of droplet generators with different geometrical dimensions and testing them with several different fluids. Despite the fact that the model is based on strongly simplified physical relationships, it is able to accurately predict the minimum excitation voltage needed for droplet generation as well as the droplet velocity. However, the volume of the ejected droplets could not be predicted with satisfactory results, which is attributed to the limited accuracy of the nozzle submodel.
机译:在本文中,从基本的电气,机械和流体机械关系推导了压电按需喷墨(DoD)打印头的紧凑模型。该模型涵盖了整个液滴生成过程,涵盖了电学,机械和流体力学领域。对于给定的一组液滴生成器(DG)尺寸,材料和流体特性以及预定的电激发,它允许对基本的液滴特性(例如,液滴体积和飞行速度)进行预测。这使得液滴发生器的设计能够有针对性地适应不同的应用需求,例如不同的流体特性,并且设计迭代次数最少。该模型是通过将所得的微分方程传递到Matlab / SIMULINK™仿真环境来实现的。通过将其输出与广泛的经验数据集进行比较来进行验证,该经验数据集是通过选择具有不同几何尺寸的液滴生成器并用几种不同的流体对其进行测试而获得的。尽管该模型基于高度简化的物理关系,但它能够准确预测液滴产生所需的最小激励电压以及液滴速度。但是,无法预测出令人满意的结果,这是由于喷嘴子模型的精度有限所致。

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