Inkjet printing apparatus
US-2024246342-A1 · Jul 25, 2024 · US
US9493011B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9493011-B2 |
| Application number | US-201414200191-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 7, 2014 |
| Priority date | Apr 18, 2013 |
| Publication date | Nov 15, 2016 |
| Grant date | Nov 15, 2016 |
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A filling liquid for distribution of an ink jet head of a thermal type, the filling liquid filling a nozzle flow path during distribution of the ink jet head, a hydrophilic region formed on a periphery of an ink discharge port having an opening area of from 100 to 350 μm 2 , the filling liquid including: an aqueous medium having at least a water-soluble organic compound and water as constituents; and a dye dissolved in the aqueous medium, a concentration of the dye in the filling liquid being 0.2 mass % or more and 1 mass % or less with respect to a total mass of the filling liquid and the concentration of the dye being equal to or less than saturation solubility with respect to the water-soluble organic compound, wherein the filling liquid has a surface tension of 25 mN/m or more and 34 mN/m or less.
Opening claim text (preview).
What is claimed is: 1. A filling liquid for distribution of an ink jet head of a thermal type, the filling liquid for distribution being to fill a nozzle flow path communicating with an ink discharge port during distribution of the ink jet head, the ink discharge port of the ink jet head having an opening area of from 100 to 350 μm 2 , the ink jet head including a hydrophilic region formed on an outer surface on a periphery of the ink discharge port, the filling liquid for distribution comprising: an aqueous medium including at least a water-soluble organic compound and water as constituents; and a dye dissolved in the aqueous medium, a concentration of the dye in the filling liquid for distribution being 0.2 mass % or more and 1 mass % or less with respect to a total mass of the filling liquid for distribution and the concentration of the dye being equal to or less than saturation solubility with respect to the water-soluble organic compound, wherein the filling liquid for distribution has a surface tension of 25 mN/m or more and 34 mN/m or less. 2. A filling liquid for distribution according to claim 1 , wherein the water-soluble organic compound comprises a water-soluble organic solvent having a vapor pressure of 3 Pa or less at 20° C. 3. A filling liquid for distribution according to claim 2 , wherein the water-soluble organic compound comprises a solution in which a water-soluble organic compound that is solid at 20° C. is dissolved in the water-soluble organic solvent. 4. A filling liquid for distribution according to claim 3 , wherein the water-soluble organic compound that is solid at 20° C. is ethylene urea. 5. A filling liquid for distribution according to claim 1 , wherein a concentration of the water-soluble organic compound in the filling liquid for distribution is 40 mass % or less with respect to the total mass of the filling liquid for distribution. 6. A filling liquid for distribution according to claim 1 , wherein the filling liquid for distribution has a viscosity of 1.3 mPa·s or more and 5.0 mPa·s or less. 7. An ink jet head of a thermal type, comprising: an ink discharge port having an opening area of from 100 to 350 μm 2 ; a hydrophilic region formed on a periphery of the ink discharge port; and a nozzle flow path communicating with the ink discharge port, the nozzle flow path being filled with a filling liquid for distribution as recited in claim 1 . 8. An ink jet head according to claim 7 , wherein the hydrophilic region has a contact angle of 60° or less with respect to the filling liquid for distribution. 9. An ink jet head according to claim 7 , comprising: a plurality of nozzle flow paths partitioned by nozzle walls; a plurality of ink discharge ports communicating with the plurality of nozzle flow paths, respectively; and a plurality of heaters disposed in the plurality of nozzle flow paths, respectively. 10. An ink jet head according to claim 9 , wherein the nozzle walls of the ink jet head are formed of an epoxy-based photosensitive resin. 11. An ink jet head according to claim 9 , further comprising: a common liquid chamber communicating with the plurality of nozzle flow paths; an opening portion communicating with the common liquid chamber; a main liquid supply chamber communicating with the opening portion; a liquid supply path communicating with the main liquid supply chamber; a liquid supply chamber communicating with the liquid supply path; a supply filter provided in the liquid supply chamber to separate the liquid supply chamber into a first liquid supply chamber and a second liquid supply chamber, the first liquid supply chamber being upstream of the second liquid supply chamber along a flow during liquid supply; a gas-liquid separation portion provided in a part of the main liquid supply chamber; and an air chamber communicating with the gas-liquid separation portion, wherein the plurality of nozzle flow paths, the common liquid chamber, the opening portion, the main liquid supply chamber, the liquid supply path, the liquid supply chamber, the supply filter, the gas-liquid separation portion, and the air chamber are disposed on a plane parallel to a plane including an arrangement direction of the plurality of nozzle flow paths and a discharge direction of the liquid, and the main liquid supply chamber, the liquid supply path, the supply filter, the gas-liquid separation portion, and the air chamber are disposed without being stacked on top of one another. 12. An ink jet head according to claim 7 , wherein the ink jet head has a resolution of 600 dpi or more, and the ink jet head comprises a plurality of nozzle flow paths forming a nozzle row having a length of 2 inches or more. 13. A method of distributing an ink jet head of a thermal type, the ink jet head including: an ink discharge port having an opening area of from 100 to 350 μm 2 ; and a hydrophilic region formed on a periphery of the ink discharge port, the method comprising: distributing the ink jet head in a state in which a filling liquid for distribution as recited in claim 1 fills a nozzle flow path communicating with the ink discharge port. 14. A method according to claim 13 , wherein the hydrophilic region has a contact angle of 60° or less with respect to the filling liquid for distribution. 15. A method according to claim 13 , comprising: filling the nozzle flow path with the filling liquid for distribution having a viscosity of 1.3 mPa·s or more and 5.0 mPa·s or less; and performing a print test with the filling liquid for distribution before the distributing of the ink jet head in the state in which the filling liquid for distribution fills the nozzle flow path. 16. A method according to claim 13 , wherein the ink jet head including: a plurality of nozzle flow paths partitioned by nozzle walls; a plurality of ink discharge ports communicating with the plurality of nozzle flow paths, respectively; and a plurality of heaters disposed in the plurality of nozzle flow paths, respectively. 17. A method according to claim 16 , wherein the nozzle walls of the ink jet head are formed of an epoxy-based photosensitive resin. 18. A method according to claim 16 , wherein the ink jet head further including: a common liquid chamber communicating with the plurality of nozzle flow paths; an opening portion communicating with the common liquid chamber; a main liquid supply chamber communicating with the opening portion; a liquid supply path communicating with the main liquid supply chamber; a liquid supply chamber communicating with the liquid supply path; a supply filter provided in the liquid supply chamber to separate the liquid supply chamber into a first liquid supply chamber and a second liquid supply chamber, the first liquid supply chamber being upstream of the second liquid supply chamber along a flow during liquid supply; a gas-liquid separation portion provided in a part of the main liquid supply chamber; and an air chamber communicating with the gas-liquid separation portion, wherein the plurality of nozzle flow paths, the common liquid chamber, the opening portion, the main liquid supply chamber, the liquid supply path, the liquid supply chamber, the supply filter, the gas-liquid separation portion, and the air chamber are disposed on a plane parallel to a plane including an arrangement direction of the plurality of nozzle flow paths and a discharge direction of the liquid, and the main liquid supply chamber, the liquid supply path, the supply filter, the gas-liquid separation portion, and the air chambe
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