首页> 外文会议>Color Hard Copy and Graphic Arts >Real-time simultaneous measurements of ink drop velocity and diameter in thermal ink-jet printhead using laser scattering techniques
【24h】

Real-time simultaneous measurements of ink drop velocity and diameter in thermal ink-jet printhead using laser scattering techniques

机译:使用激光散射技术实时同时测量热喷墨打印头中的墨滴速度和直径

获取原文
获取原文并翻译 | 示例

摘要

Abstract: The velocity and diameter of ink drops are important parameters in ink-jet printing technology. They affect print quality and the control of the gray scale. We report here an exploratory experiment in which the velocity and diameter of drops from thermal ink-jet print heads were measured nonintrusively, simultaneously and in real-time. A laser phase Doppler particle analyzer was used in the experiment. The velocity was deduced from the Doppler signal and the diameter from the spatial phase difference of the scattered intensity. From an analysis using geometrical optics, it was determined that the optimum condition for sizing absorbing spheres such as ink drops was that the signal detected be limited to externally reflected rays. The intensity of rays refracted as a fraction of rays reflected by ink drops could vary significantly over their size range and compounded size interpretation. By considering the scattered intensity, the analysis showed that the best placement of the detectors for the present application was at 90$DGR scattering angle, using a perpendicularly polarized light source. In this configuration, twice refracted rays (no internal reflection) were absent. The detected signal was dominated by externally reflected rays. In order to measure ink drop diameter accurately, the complex refractive index m of several ink-jet inks was measured. A typical value was m $EQ 1.37 - $iota 0.0049 at 0.6328 $mu@m wavelength. Monodisperse droplets produced with a piezo-electric squeeze tube drop generator were used to calibrate the instrument. With the optimized configuration the drop velocity and diameter of two commercial thermal ink-jet heads and an experimental prototype were measured.!10
机译:摘要:墨滴的速度和直径是喷墨打印技术的重要参数。它们影响打印质量和灰度控制。我们在这里报告了一项探索性实验,其中非侵入式,同时且实时地测量了来自热喷墨打印头的墨滴的速度和直径。实验中使用了激光相位多普勒颗粒分析仪。从多普勒信号推导出速度,从散射强度的空间相位差推导出直径。从使用几何光学的分析中可以确定,确定诸如墨滴之类的吸收球尺寸的最佳条件是所检测到的信号仅限于外部反射射线。作为墨滴反射的一部分光线折射的光线强度在其尺寸范围和复合尺寸解释中可能会发生显着变化。通过考虑散射强度,分析表明,对于本应用,使用垂直偏振光源时,探测器的最佳放置位置为90°DGR散射角。在这种配置中,不存在两次折射射线(无内反射)。所检测到的信号主要由外部反射射线所控制。为了准确地测量墨滴直径,测量了几种喷墨油墨的复折射率m。典型值为在0.6328μm@m波长处的m $ EQ 1.37-iota 0.0049。使用压电挤压管液滴发生器产生的单分散液滴来校准仪器。通过优化配置,可以测量两个商用热喷墨头的滴落速度和直径以及一个实验原型。!10

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号