IP Library › Granted Patent US 11,162,721
Granted Patent B2
US 11,162,721 · App. 16/549,272 · Granted Nov 2, 2021

Gas-liquid separation device for vehicle

Inventors: Wan Je Cho (Hwaseong-si, KR); Namho Park (Hwaseong-si, KR); Jae Yeon Kim (Asan-si, KR); Yeon Ho Kim (Seoul, KR); Seoyoung Oh (Uijeongbu-si, KR); Chul Min Kim (Asan-si, KR); Young Chul Kim (Jeonju-si, KR); Jae Min Lee (Sejong-si, KR)
Assignees: HYUNDAI MOTOR COMPANY; KIA MOTORS CORPORATION; DOOWON CLIMATE CONTROL CO., LTD.; HANON SYSTEMS
F25B43/006F25B43/003F25B43/02F25B2400/23
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Quick Facts
Patent No.
US 11,162,721
App. No.
16/549,272
Granted
Nov 2, 2021
Kind
B2
Abstract

A gas-liquid separation device for a vehicle includes: a housing of which an upper surface is opened and a lower surface is closed; a cover disposed on the upper surface of the housing, and the cover having an outlet disposed at a center region of the cover and an inlet disposed at a portion spaced apart from the center region; an exhaust pipe of which an upper end is connected to the outlet; a guide pipe having a cylinder shape with an upper surface opened and having a gas refrigerant flow space; a mounting cap disposed on the lower surface of the housing; and a refrigerant guider disposed on the cover inside the housing to prevent a liquid refrigerant from flowing into the gas refrigerant flow space among a refrigerant flowing into the inlet.

Claims (20)

1. A gas-liquid separation device for a vehicle comprising:

a housing of which an upper surface is opened and a lower surface is closed;

a cover disposed on the upper surface of the housing so as to seal an inside of the housing, the cover having an outlet disposed at a center region of the cover and an inlet disposed at a portion spaced apart from the center region;

an exhaust pipe of which an upper end is connected to the outlet;

a guide pipe having a cylinder shape with an upper surface opened so that the exhaust pipe is inserted into the guide pipe, the guide pipe further having a gas refrigerant flow space between an exterior circumference of the exhaust pipe and an interior circumference of the guide pipe;

a mounting cap disposed on the lower surface of the housing so as to fix a closed lower surface of the guide pipe;

a refrigerant guider disposed on the cover inside the housing to prevent a liquid refrigerant from flowing into the gas refrigerant flow space among a refrigerant flowing into the inlet, the refrigerant guider having a cup shape and fixed to the exhaust pipe; and

an oil collecting part protruding toward the lower surface of the housing from a lower end center of the guide pipe, the oil collecting part including an oil groove.

2. The gas-liquid separation device of claim 1 , wherein the housing includes a refrigerant storage in a section extending from the lower surface toward the upper surface of the housing in a length direction.

3. The gas-liquid separation device of claim 2 , wherein the refrigerant storage has a diameter smaller than that of the upper surface of the housing so as to reduce a storing amount of the liquid refrigerant.

4. The gas-liquid separation device of claim 2 , further comprising

a refrigerant pipe, supplying the liquid refrigerant to a condenser, connected to a lower end part of the refrigerant storage.

5. The gas-liquid separation device of claim 1 , further comprising at least one fixing rib protruding toward a center of the guide pipe on a lower interior circumference in the guide pipe so that the exhaust pipe is fixed to an inner lower part of the guide pipe.

6. The gas-liquid separation device of claim 1 , wherein the gas refrigerant flow space is configured such that an oil included in a gas refrigerant flowing into the gas refrigerant flow space is collected in the oil groove by a weight of the oil.

7. The gas-liquid separation device of claim 1 , wherein the mounting cap has an upper surface that is opened and a lower surface that is closed so that the lower surface of the guide pipe is seated inside the mounting cap, and

wherein the mounting cap has at least one opening hole arranged along a circumference direction so that the liquid refrigerant flows therein.

8. The gas-liquid separation device of claim 1 , wherein the exhaust pipe has a hang end on an upper exterior circumference so that the refrigerant guider is disposed at the upper part inside the housing.

9. The gas-liquid separation device of claim 1 , wherein the housing has a drying member therein configured to remove a foreign substance and moisture included in the refrigerant.

10. The gas-liquid separation device of claim 9 , wherein the refrigerant guider includes a mounting ring which couples the drying member to the refrigerant guider.

11. The gas-liquid separation device of claim 1 , wherein the inlet is connected to a heat exchanger configured to condense or evaporate the refrigerant, and the outlet is connected to a compressor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 23, 2019
From: CHO, WAN JE; PARK, NAMHO; KIM, JAE YEON; KIM, YEON HO; OH, SEOYOUNG; KIM, CHUL MIN; KIM, YOUNG CHUL; LEE, JAE MIN
To: HYUNDAI MOTOR COMPANY; KIA MOTORS CORPORATION; DOOWON CLIMATE CONTROL CO., LTD.; HANON SYSTEMS
Reel/Frame 050154/0343 →
Priority Claims (1)
KR 10-2019-0064819 · May 31, 2019 · national
Continuity (1)
Related Publication 20200378663A1 · Dec 3, 2020
Cited By (1)
US 12,571,569