Liquid injection system including droplet velocity adjustment

A technology of speed adjustment and jetting system, applied in directions such as printing, which can solve the problems of limiting the density of nozzle spacing, limiting the printing of high-resolution images, etc., to achieve the effect of reducing complexity and reducing the possibility of liquid splashing

Active Publication Date: 2016-04-13
EASTMAN KODAK CO
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

This limits the density of nozzle spacing that can be exploited in such an approach and severely limits the ability to print high resolution images

Method used

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  • Liquid injection system including droplet velocity adjustment
  • Liquid injection system including droplet velocity adjustment
  • Liquid injection system including droplet velocity adjustment

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Embodiment Construction

[0033] The description is particularly directed to elements forming part of, or cooperating more directly with, the device according to the invention. It is to be understood that elements not specifically shown or described may take various forms well known to those skilled in the art. In the following description and drawings, the same reference numerals are used to refer to the same elements where possible.

[0034] For the sake of clarity, the exemplary embodiments of the present invention are shown schematically and not to scale. One of ordinary skill in the art will be able to readily determine the specific dimensions and interconnections of the elements of the exemplary embodiments of the present invention.

[0035] As described herein, exemplary embodiments of the present invention provide a printhead or printhead components generally used in inkjet printing systems. In such systems, the liquid is the ink used to print on the recording medium. However, other applicat...

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Abstract

A continuous liquid ejection system includes a liquid chamber in fluidic communication with a nozzle. The liquid chamber contains liquid under pressure sufficient to eject a liquid jet through the nozzle. A drop formation device is associated with the liquid jet and is actuatable to produce a modulation in the liquid jet that cause portions of the liquid jet to break off into a series of drop pairs traveling along a path. Each drop pair is separated in time on average by a drop pair period. Each drop pair includes a first drop and a second drop. A charging device includes a charge electrode associated with the liquid jet and a source of varying electrical potential between the charge electrode and the liquid jet. The source of varying electrical potential provides a waveform that includes a period that is equal to the drop pair period. The waveform also includes a first distinct voltage state and a second distinct voltage state. The charging device is synchronized with the drop formation device to produce a first charge state on the first drop and to produce a second charge state on the second drop. A drop velocity modulation device varies a relative velocity of a first drop and a second drop of a selected drop pair to control whether the first drop and the second drop of the selected drop pair combine with each other to form a combined drop. The combined drop has a third charge state. A deflection device causes the first drop having the first charge state to travel along a first path, causes the second drop having the second charge state to travel along a second path, and causes the combined drop having the third charge state to travel along a third path.

Description

technical field [0001] The present invention relates generally to the field of digitally controlled printing systems, and in particular to continuous printing systems in which a stream of liquid breaks up into droplets, some of which are electrostatically deflected. Background technique [0002] Inkjet printing is recognized as a prominent contender in the digitally controlled electronic printing arena due to, for example, its non-impact, low-noise characteristics, its use of plain paper, and its avoidance of toner transfer and fixation. Inkjet printing mechanisms can be classified by technology as drop-on-demand inkjet (DOD) or continuous inkjet (CIJ). [0003] The first technique, "drop-on-demand" inkjet printing, uses a pressurized actuator (such as a thermal, piezoelectric, or electrostatic actuator) to deliver ink droplets that impinge on a recording surface. One commonly practiced drop-on-demand technique uses thermal actuation to eject ink droplets from nozzles. A h...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B41J2/105B41J2/21
Inventor H·V·潘沙瓦M·A·马库斯J·A·卡特博格A·G·洛佩斯S·P·阿迪加J·M·格雷斯
Owner EASTMAN KODAK CO
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