Automotive coolant liquid deaerator unit
US-2024335767-A1 · Oct 10, 2024 · US
US9481175B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9481175-B2 |
| Application number | US-201615062355-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 7, 2016 |
| Priority date | Aug 8, 2012 |
| Publication date | Nov 1, 2016 |
| Grant date | Nov 1, 2016 |
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A gas-liquid separator includes a casing with a cylindrical chamber inside, a gas-liquid 2-phase inlet pipe which is attached to a wall of the casing and connected to the chamber, a gas outlet pipe for discharging the gas of a gas-liquid mixture flowing into the chamber, and the gas-liquid 2-phase outlet pipe for discharging the liquid as a most part of the gas-liquid mixture flowing into the chamber. A gap is formed around the gas-liquid outlet pipe in the chamber for separating the mixture into liquid and gas using the surface tension and suction force. The gas-liquid separator is installed in the inkjet recording apparatus, especially in the print head. The print head is filled with the solvent gas so as to be suctioned from the gutter to reduce the solvent consumption.
Opening claim text (preview).
What is claimed is: 1. A gas-liquid separator comprising: a casing with a chamber which accumulates gas and liquid inside; a gas-liquid 2-phase inlet pipe attached to the casing and connected to the chamber; a gas outlet hole for discharging gas in the chamber; and a gas-liquid 2-phase outlet pipe for discharging liquid in the chamber, wherein the gas-liquid 2-phase outlet pipe is protruded into the chamber, and a gap is formed between the protruded gas-liquid 2-phase outlet pipe and the chamber. 2. The gas-liquid separator according to claim 1 , wherein the chamber has a cylindrical shape. 3. The gas-liquid separator according to claim 2 , wherein the gas-liquid 2-phase outlet pipe and the gas outlet hole are symmetrically arranged with respect to a center of a circle of the chamber. 4. The gas-liquid separator according to claim 1 , wherein the chamber is formed by combining a first casing to which the gas-liquid 2-phase inlet pipe is connected, and a second casing to which the gas outlet hole and the gas-liquid 2-phase outlet pipe are connected, and the gas-liquid 2-phase outlet pipe is protruded to an innermost part of the chamber to form a gap with the first casing, and further forms a gap with an inner peripheral wall of the chamber. 5. The gas-liquid separator according to claim 1 , wherein the chamber is formed by combining a first casing to which the gas-liquid 2-phase inlet pipe is connected and a second casing to which the gas outlet hole and the gas-liquid 2-phase outlet pipe are connected, and a block is provided in the chamber between the gas-liquid 2-phase outlet pipe and the first casing to form gaps between the gas-liquid 2-phase outlet pipe and the block, the second casing and the block, and the first casing and the block. 6. The gas-liquid separator according to claim 1 , wherein the chamber is formed by combining a first casing to which the gas-liquid 2-phase inlet pipe is connected, and a second casing to which the gas outlet hole and the gas-liquid 2-phase outlet pipe are connected, and the gas-liquid 2-phase outlet pipe is protruded to an innermost part of the chamber, and a porous plate is provided in the chamber between the gas-liquid 2-phase outlet pipe and the first casing. 7. The gas-liquid separator according to claim 1 , wherein the chamber is formed by combining a first casing to which the gas-liquid 2-phase inlet pipe is connected, and a second casing to which the gas outlet hole and the gas-liquid 2-phase outlet pipe are connected, and the gas-liquid 2-phase outlet pipe is protruded to an innermost part of the chamber to have a double-layered structure. 8. The gas-liquid separator according to claim 1 , wherein the gas-liquid 2-phase inlet pipe and the gas outlet hole are interchangeable for use. 9. An inkjet recording apparatus comprising: an ink container for accumulating an ink stored in a main body; a nozzle for discharging the ink as an ink particle for printing on an object to be printed; an ink supply flow channel for supplying the ink to the nozzle from the ink container; a gutter for recovering the ink particle discharged from the nozzle, which has been unused for the printing; an ink recovery flow channel for recovering the ink particle recovered by the gutter into the ink container; an exhaust path connected to the ink container for discharging a solvent gas from the ink container; and a gas-liquid separator for subjecting a condensate of the solvent gas formed owing to a temperature drop to gas-liquid separation in the exhaust path, wherein the gas-liquid separator includes a casing with a chamber which accumulates gas and liquid inside, a gas-liquid 2-phase inlet pipe attached to the casing and connected to an inner chamber, a gas outlet hole for discharging gas of a gas-liquid mixture flowing into the chamber, and a gas-liquid 2-phase outlet pipe for discharging liquid of the gas-liquid mixture flowing into the chamber, and the gas-liquid 2-phase outlet pipe is protruded into the chamber, and a gap is formed between the protruded gas-liquid 2-phase outlet pipe and the chamber. 10. The inkjet recording apparatus according to claim 9 , wherein the inkjet recording apparatus is formed of the main body and a print head for printing, and the gas-liquid separator is installed in the print head. 11. The inkjet recording apparatus according to claim 9 , wherein the inkjet recording apparatus is formed of the main body and a print head for printing, and the gas-liquid separator is provided to an inside or an outside of the main body. 12. The inkjet recording apparatus according to claim 9 , comprising a fan for cooling the gas-liquid separator. 13. The inkjet recording apparatus according to claim 9 , wherein the gas-liquid separator discharges the solvent gas separated by the gas-liquid separator into the print head. 14. The inkjet recording apparatus according to claim 13 , wherein the solvent gas discharged from the gas-liquid separator are recovered by the gutter, and the recovered solvent gas discharges by the ink recovery flow channel into the ink container. 15. An inkjet recording apparatus which has a main body and a print head comprising: an ink container for accumulating an ink stored in the main body; a nozzle, which is provided to the print head, for discharging the ink as an ink particle for printing on an object to be printed; an ink supply flow channel for supplying the ink to the nozzle from the ink container; a gutter, which is provided to the print head, for recovering the ink particle discharged from the nozzle, which has been unused for the printing; an ink recovery flow channel for recovering the ink particle recovered by the gutter into the ink container; an exhaust path connected to the ink container for discharging a solvent gas from the ink container; and a gas-liquid separator located on the exhaust path, which is connected to the ink container and provided to the print head, for separating liquid and gas passing through the exhaust path. 16. The inkjet recording apparatus according to claim 15 , wherein the gas-liquid separator discharges the solvent gas separated by the gas-liquid separator into the print head. 17. The inkjet recording apparatus according to claim 16 , wherein the solvent gas discharged from the gas-liquid separator are recovered by the gutter, and the recovered solvent gas discharges by the ink recovery flow channel into the ink container.
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