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Jet array driven flow on the nozzle plate of an inkjet printhead in deposition of molten nylon materials

机译:喷射阵列驱动的气流在喷墨打印头的喷嘴板上沉积熔融的尼龙材料

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摘要

During research into an inkjet-integrated manufacturing process, jetting of molten caprolactam was investigated using a piezoelectric drop-on-demand printhead. Due to the start-up purging step and the surface energy differences, a wetting melt layer on the printhead's nozzle plate was formed. With appropriate parameters, a stable jet array was made. However, contamination on the nozzle plate disturbed the jet stability resulting in jet trajectory errors and even jet failures. Particles were used to characterise the melt flow field on the nozzle plate during jetting when multiple nozzles were actuated. Particle tracking velocimetry revealed that movement of the particles followed a specific pattern when the jet array was developed. Flow pattern driven by an actuating nozzle influenced those of adjacent nozzles. The movement of particles towards and from the actuating nozzles was observed at the same time and position with velocities up to 2 mm/s. This showed that a complex flow system was generated on the nozzle plate during jetting with multiple nozzles which influenced the reliability of the inkjet printhead.
机译:在研究喷墨集成制造工艺的过程中,使用压电按需喷墨打印头研究了熔融己内酰胺的喷射。由于启动吹扫步骤和表面能的差异,在打印头喷嘴板上形成了一个湿润的熔融层。使用适当的参数,制成了稳定的射流阵列。但是,喷嘴板上的污染物破坏了喷嘴的稳定性,导致喷嘴轨迹错误甚至喷嘴故障。当启动多个喷嘴时,在喷射过程中使用颗粒表征喷嘴板上的熔体流场。粒子跟踪测速表明,在开发喷射阵列时,粒子的运动遵循特定的模式。由驱动喷嘴驱动的流型影响了相邻喷嘴的流型。可以同时和以高达2 mm / s的速度在位置上观察到颗粒向和从驱动喷嘴的运动。这表明在用多个喷嘴喷射期间在喷嘴板上产生了复杂的流动系统,这影响了喷墨打印头的可靠性。

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