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Jetting, In-Nozzle Meniscus Motion and Nozzle-Plate Flooding in an Industrial Drop-on-Demand Print Head

机译:工业按需滴落式打印头中的喷射,喷嘴内弯液面运动和喷嘴板溢流

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摘要

The state of the ink film at and near the nozzles of a drop-on-demand (DoD) print head during jetting has a direct impact on printing performance and reliability. We have developed highspeed imaging apparatus and analytical techniques to investigate the ink film dynamics on an industrial print head nozzle-plate in real-time. In addition to a direct correlation between the jet emergence velocity and drive voltage, drive-dependent variations in the oscillation of the ink meniscus in adjacent nozzles were also observed. Using a ray-tracing model to analyze the meniscus shape, the meniscus oscillations for both printing and non-printing nozzles were found to be complex and involve elements such as pre-oscillation and high-order surface waves. The flooding of non-firing nozzles, deliberately caused by the application of maximum drive voltage to a neighboring nozzle, has been recorded and analyzed dynamically. The build-up of fluid in an annulus around the nozzle (flooding rate) has been characterized and compared with models for the net ink flow through the nozzle.
机译:喷墨过程中,按需滴落(DoD)打印头的喷嘴处及其附近的墨膜状态直接影响打印性能和可靠性。我们已经开发了高速成像设备和分析技术来实时研究工业打印头喷嘴板上的墨膜动力学。除了喷射出射速度和驱动电压之间的直接相关性之外,还观察到相邻喷嘴中的墨水弯月面振荡的驱动相关变化。使用射线追踪模型分析弯月面形状,发现打印和非打印喷嘴的弯月面振荡都很复杂,并且包含诸如预振荡和高阶表面波之类的元素。动态记录并分析了不点火喷嘴的溢流,该溢流是由向相邻喷嘴施加最大驱动电压故意造成的。表征了喷嘴周围环空中流体的积聚(溢流速率),并与通过喷嘴的净墨水流模型进行了比较。

著录项

  • 来源
  • 会议地点 Minneapolis MN(US);Minneapolis MN(US);Minneapolis MN(US);Minneapolis MN(US)
  • 作者单位

    Inkjet Research Centre (IRC), Institute for Manufacturing, Department of Engineering, University of Cambridge, Cambridge, UK;

    Inkjet Research Centre (IRC), Institute for Manufacturing, Department of Engineering, University of Cambridge, Cambridge, UK;

    Inkjet Research Centre (IRC), Institute for Manufacturing, Department of Engineering, University of Cambridge, Cambridge, UK;

    Inkjet Research Centre (IRC), Institute for Manufacturing, Department of Engineering, University of Cambridge, Cambridge, UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 数字印刷;
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