Method of ink jet printing

4153467
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Inventors

Yano, Hirofumi
Okamura, Noriaki
Toyoda, Tsunehiko

Application #

744600

Filed

Nov-24-1976

Published

May-8-1979

Current US Class

106/31.43
106/31.58
106/31.75
106/31.86
347/100

International Classes

C09D 011/02; C09D 011/06; C09D 011/10; G01D 015/18

Field of Search

106/22 106/23 106/27 106/20

Assignee

Dai Nippon Toryo Co., Ltd. (Osaka, JP)

Examiners

Welcome; Joan E.

Attorney, Agent or Firm

Oblon, Fisher, Spivak, McClelland & Maier

Referenced by:

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Citation

Cite This Patent

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Abstract
A method of ink jet printing by injecting ink through a fine nozzle and electrostatically deflecting the ink particles to print a symbol corresponding to a predetermined matrix, the improvement wherein said ink comprises a non-aqueous ink comprising a coloring agent and a mixture of formamide and an aliphatic monohydric alcohol.
 
Claims
What is claimed as new and desired to be secured by letters Patent of the United States is:

1. In a method of ink jet printing which comprises injecting ink through a fine nozzle and electrostatically deflecting the resulting ink particles to print a symbol which corresponds to a predetermined matrix, the improvement wherein said ink is a non-aqueous ink which comprises a coloring agent and a mixture of formamide and an C.sub.1 -C.sub.8 aliphatic monohydric monovalent alcohol, wherein the weight ratio of formamide to aliphatic alcohol is 40-80 to 60-20.

2. The ink jet printing method of claim 1, wherein the total amount of the mixture of formamide and aliphatic monohydric alcohol in said ink is greater than 10 wt.% of the total diluent.



Description
BACKGROUND OF THE INVENTION

1. Field of the Invention

The present invention relates to a jet ink composition. Particularly, it relates to a jet printing liquid ink composition to be used for a printer in an ink jet system.

2. Description of the Prior Art

Printing by an ink jet printer involves feeding an ink to a fine nozzle (inner diameter of 10.mu.(m - 120.mu.m) made of metal or glass, injecting uniform ink particles from the top of the nozzle and electrostatically deflecting the ink particles by a deflecting electrode disposed in front of the nozzle so as to print a symbol corresponding to a predetermined dot-matrix. The key problems areas of technology for the ink jet printer have concerned the development of methods for dividing the ink in the nozzle into fine ink particles and methods for controlling the injecting direction by a deflection plate or by movement of the nozzle. It is clear that the characteristics of the ink are a critical consideration in these technological areas. Accordingly, the characteristics required for the jet ink composition include stability while being injected as particles by pressure and electrical field, high deflection sensitivity and ease in being discharged from the nozzle under the mutual interaction of ink and nozzle. Moreover, the ink must possess the basic characteristics needed by inks in any printing system, e.g., sufficient fluidity, to prevent closing of the nozzle by drying of the ink in the nozzle.
 
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