IP Library Granted Patent US 8,267,329
Granted Patent B2
US 8,267,329 · App. 12/009,550 · Granted Sep 18, 2012

Expansion valve with noise reduction means

Assignee: Fujikoki Corporation
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Quick Facts
Patent No.
US 8,267,329
App. No.
12/009,550
Granted
Sep 18, 2012
Kind
B2
Abstract

In an expansion valve, in a first passage through which a high pressure liquid refrigerant flows, an inlet port includes a large diameter passage portion formed from one side surface to the other side surface of a valve body, and a small diameter passage portion that provides communication between the large diameter passage portion on the bottom end thereof and a valve chamber. A coil spring provided in the valve chamber biases a valve member toward a valve hole. An O ring that seals between a plug that supports a lower end of the coil spring and the valve body is located below the small diameter passage portion and placed on the opposite side of the bottom end of the large diameter passage. Thus, the plug that closes an opening of the valve chamber can be mounted to an upper position, thereby reducing a vertical size of the valve body to further reduce a size of the valve body, and reducing an amount of use of metal materials for the valve body to reduce weight and cost.

Claims (16)

1. An expansion valve with noise reduction means comprising:

a valve body;

an inlet port formed in the valve body and through which a high pressure liquid refrigerant is introduced;

a valve chamber communicating with the inlet port and having a lower end opening in a bottom surface of the valve body;

the inlet port including a large diameter passage portion formed from one side surface toward the other side surface of the valve body, and also including a small diameter passage portion that provides communication between the large diameter passage portion and the valve chamber, the large diameter passage portion including a bottom end at the lowest portion of the large diameter passage portion, and a vertical end face being defined by a surface between the large diameter passage portion and the small diameter passage portion;

a valve hole provided in the valve chamber;

an outlet port formed in the valve body and through which the refrigerant expanded in the valve hole is discharged to the outside;

a valve member that is brought close to and apart from a valve seat provided at an inlet of the valve hole and opens and closes the valve hole;

a coil spring provided in the valve chamber for biasing the valve member toward the valve hole;

a plug that is inserted and mounted into the lower end of the valve chamber to support a lower end of the coil spring, and closes the opening of the valve chamber, an outer peripheral portion of the plug having a stepped diameter decreasing toward an upper end;

an annular space formed in the valve chamber below the small diameter passage portion of the inlet port and extending from above the elevation of the bottom end of the large diameter passage portion; and

an O ring located below and adjacent the small diameter passage portion and being above the bottom end and on the opposite side of the vertical end face of the large diameter passage portion,

wherein the O ring is disposed in the annular space formed between the vertical end face of the large diameter passage portion and a side surface of the valve chamber.

2. The expansion valve with noise reduction means according to claim 1 , wherein the plug has a closed-end cylindrical spring support that receives the lower end of the coil spring.

3. An expansion valve with noise reduction means comprising: an inlet port through which a high pressure liquid refrigerant is introduced; a valve chamber communicating with the inlet port; a valve hole provided in the valve chamber; an outlet port through which the refrigerant expanded in the valve hole is discharged to the outside;

a valve member that is brought close to and apart from a valve seat provided at an inlet of the valve hole and opens and closes the valve hole; a coil spring provided in the valve chamber for biasing the valve member toward the valve hole, wherein a size of a space between adjacent coil wires of the coil spring is set so as to reduce bubbles entrained in the liquid refrigerant to a finer size, and the size of the space in an expanding and contracting direction of the coil spring is 0.54 mm or smaller in a state where the valve member abuts against the valve seat; an annular space formed in the valve chamber below a small diameter passage portion of the inlet port and extending from above an elevation of a bottom end of a large diameter passage portion of the inlet port; and an O ring located below and adjacent the small diameter passage portion and being above the bottom end and on the opposite side of a vertical end face of the large diameter passage portion, wherein the O ring is disposed in the annular space formed between the vertical end face of the large diameter passage portion and a side surface of the valve chamber.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 18, 2008
From: KOBAYASHI, KAZUTO; MOGI, TAKASHI
To: FUJIKOKI CORPORATION
Reel/Frame 020447/0071 →
Priority Claims (2)
JP 2007-015814 · Jan 26, 2007 · national
JP 2007-015815 · Jan 26, 2007 · national
Continuity (1)
Related Publication 20080185452A1 · Aug 7, 2008