论文标题
涡度引起的流动焦点导致喷墨打印头的气泡夹带:同步器X射线和流体量的可视化量
Vorticity-induced flow-focusing leads to bubble entrainment in an inkjet printhead: synchrotron X-ray and volume-of-fluid visualizations
论文作者
论文摘要
喷墨打印头中存在的振荡流可导致喷嘴出口处的空气液体界面发生较大的变形。这种变形可能会导致带有气泡捏合的内向导向射流和随后的气泡夹带,这对喷墨印刷的稳定性非常有害。因此,了解气泡夹带的机制对于改善印刷稳定性至关重要。在目前的工作中,我们使用基于流体量方法的超快速X射线相位对比度成像和直接数值模拟来研究压电声原先泡沫夹带的机制。我们首先在实验和数字之间表现出良好的一致性。然后,我们显示在实验中获得的不同类别的气泡捏合,并且它们也被数值捕获。然后使用数值结果表明,由于密度和压力梯度的未对准而在气体液体界面上产生的斜压扭矩会导致流动式效应,从而驱动气射流的形成,从而从中形成了气泡可以在其上裂开。
The oscillatory flows present in an inkjet printhead can lead to strong deformations of the air-liquid interface at the nozzle exit. Such deformations may lead to an inward directed air jet with bubble pinch-off and the subsequent entrainment of an air bubble, which is highly detrimental to the stability of inkjet printing. Understanding the mechanisms of bubble entrainment is therefore crucial in improving print stability. In the present work, we use ultrafast X-ray phase-contrast imaging and direct numerical simulations based on the Volume-of-Fluid method to study the mechanisms underlying the bubble entrainment in a piezo-acoustic printhead. We first demonstrate good agreement between experiments and numerics. We then show the different classes of bubble pinch-off obtained in experiments, and that those were also captured numerically. The numerical results are then used to show that the baroclinic torque, which is generated at the gas-liquid interface due to the misalignment of density and pressure gradients, results in a flow-focusing effect that drives the formation of the air jet from which a bubble can pinch-off.