IP Library › Granted Patent US 10,254,024
Granted Patent B2
US 10,254,024 · App. 15/512,170 · Granted Apr 9, 2019

Distributor and refrigeration cycle apparatus

Inventors: Shinya Higashiiue (Tokyo, JP); Shigeyoshi Matsui (Tokyo, JP); Akira Ishibashi (Tokyo, JP); Daisuke Ito (Tokyo, JP); Yuki Ugajin (Tokyo, JP); Takumi Nishiyama (Tokyo, JP); Shin Nakamura (Tokyo, JP)
Assignee: Mitsubishi Electric Corporation
F25B41/06F25B13/00F25B39/028F25B41/067
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Quick Facts
Patent No.
US 10,254,024
App. No.
15/512,170
Granted
Apr 9, 2019
Kind
B2
Abstract

A distributor includes a main body. The main body includes a refrigerant inflow path, a plurality of refrigerant outflow paths, a distribution path communicating with the refrigerant inflow path and the plurality of refrigerant outflow paths, and a plurality of tapered paths each communicating between corresponding one of the plurality of refrigerant outflow paths and the distribution path. The tapered paths each have an inlet opening and an outlet opening, the inlet opening being larger than the outlet opening.

Claims (58)

1. A distributor comprising:

a main body including:

a refrigerant inflow path;

a plurality of refrigerant outflow paths;

a distribution path communicating with the refrigerant inflow path and the plurality of refrigerant outflow paths; and

a plurality of tapered paths each communicating between corresponding one of the plurality of refrigerant outflow paths and the distribution path,

the plurality of tapered paths each having an inlet opening and an outlet opening, the inlet opening being larger than the outlet opening,

wherein

a capillary tube is connected to each of the refrigerant outflow paths, and the capillary tube has an inner diameter same as a diameter of the outlet opening of an corresponding one of the tapered paths,

a ratio of the inner diameter the capillary tube to a width of the distribution path in the flow direction is higher than 0.5 and lower than 1.5.

2. The distributor of claim 1 ,

wherein the main body includes a first member and a second member connecting to the first member,

the refrigerant inflow path is formed in the first member,

the distribution path is formed by coupling the first member and the second member with each other, and

the plurality of refrigerant outflow paths and the plurality of tapered paths are formed in the second member.

3. The distributor of claim 1 ,

wherein each of the tapered paths has a truncated conical shape.

4. The distributor of claim 3 ,

wherein an angle between a generatrix of the flow path having the truncated conical shape and a flow direction is equal to or more than 30 degrees and equal to or less than 60 degrees.

5. The distributor of claim 1 ,

wherein a side face of each of the tapered paths is formed such that a cross-sectional shape taken along the flow path direction is a quadrant shape.

6. The distributor of claim 1 ,

wherein the refrigerant inflow path is formed so as to allow refrigerant to evenly flow into the plurality of tapered paths through the distribution path.

7. A refrigeration cycle apparatus comprising:

a compressor;

a condenser;

an expansion valve;

the distributor of claim 1 ; and

an evaporator.

8. A distributor comprising:

a main body including:

a refrigerant inflow path;

a plurality of refrigerant outflow paths;

a distribution path communicating with the refrigerant inflow path and the plurality of refrigerant outflow paths; and

a plurality of tapered paths each communicating between corresponding one of the plurality of refrigerant outflow paths and the distribution path,

the plurality of tapered paths each having an inlet opening and an outlet opening, the inlet opening being larger than the outlet opening, wherein

a width of each of the tapered paths in the flow direction is equal to or smaller than twice the diameter of the outlet opening of the corresponding one of the tapered paths.

9. The distributor of claim 8 ,

wherein the main body includes a first member and a second member connecting to the first member,

the refrigerant inflow path is formed in the first member,

the distribution path is formed by coupling the first member and the second member with each other, and

the plurality of refrigerant outflow paths and the plurality of tapered paths are formed in the second member.

10. The distributor of claim 8 ,

wherein each of the tapered paths has a truncated conical shape.

11. The distributor of claim 10 ,

wherein an angle between a generatrix of the flow path having the truncated conical shape and a flow direction is equal to or more than 30 degrees and equal to or less than 60 degrees.

12. The distributor of claim 8 ,

wherein a side face of each of the tapered paths is formed such that a cross-sectional shape taken along the flow path direction is a quadrant shape.

13. The distributor of claim 8 ,

wherein a capillary tube is connected to each of the refrigerant outflow paths, and the capillary tube has an inner diameter same as a diameter of the outlet opening of an corresponding one of the tapered paths.

14. The distributor of claim 8 ,

wherein the refrigerant inflow path is formed so as to allow refrigerant to evenly flow into the plurality of tapered paths through the distribution path.

15. A refrigeration cycle apparatus comprising:

a compressor;

a condenser;

an expansion valve;

the distributor of claim 8 ; and

an evaporator.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 17, 2017
From: HIGASHIIUE, SHINYA; MATSUI, SHIGEYOSHI; ISHIBASHI, AKIRA; ITO, DAISUKE; UGAJIN, YUKI; NISHIYAMA, TAKUMI; NAKAMURA, SHIN
To: MITSUBISHI ELECTRIC CORPORATION
Reel/Frame 042039/0395 →
Continuity (1)
Related Publication 20170276414A1 · Sep 28, 2017