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The Simulation Study of Fluid Physical Properties on Drop Formation of Drop-on-demand Inkjet Printing

机译:按需喷墨印刷中液滴形成的流体物理特性模拟研究

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Inkjet printing is a method for directly patterning and fabricating patterns without the need for masks. However, the physical phenomenon in inkjet printing process is very complicated with the coupling of piezoelectricity, elasticity, and free surface fluid dynamics. The authors use the volume of fluid (VOF) method as implemented in the commercial code FLUENT to model the details of the drop formation process. The influence of viscosity and surface tension of the liquid on the droplet formation process is investigated. Consequently, we find that the speed of liquid plays an important role for the jet stability. The viscosity of liquid greatly influences the final speed of droplet. However, the surface tension of liquid does not much affect the speed of droplet. It changes the shape of the liquid thread and final droplet.Key words: drop-on-demand / inkjet / volume of fluid / pressure waveform
机译:喷墨印刷是一种无需掩模即可直接图案化和制造图案的方法。但是,喷墨打印过程中的物理现象与压电性,弹性和自由表面流体动力学的耦合非常复杂。作者使用在商业代码FLUENT中实现的液体体积(VOF)方法对液滴形成过程的细节进行建模。研究了液体的粘度和表面张力对液滴形成过程的影响。因此,我们发现液体的速度对射流的稳定性起着重要的作用。液体的粘度极大地影响液滴的最终速度。但是,液体的表面张力对液滴的速度影响不大。它改变了液体线和最终液滴的形状。关键词:按需滴/喷墨/流体量/压力波形

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