IP Library Granted Patent US 12,467,458
Granted Patent B2
US 12,467,458 · App. 18/727,307 · Granted Nov 11, 2025

Variable capacity bypass valve for screw compressor

Inventors: Jonathan D. Batdorff (Fort Wayne, IN); Hideki Fujimoto (Shizuoka, JP); Edward Noble (Chesterton, IN)
Assignee: HITACHI GLOBAL AIR POWER US, LLC
F04C28/265F04C18/16
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Quick Facts
Patent No.
US 12,467,458
App. No.
18/727,307
Granted
Nov 11, 2025
Kind
B2
Abstract

A screw compressor and a variable capacity bypass valve therefor are provided. The variable capacity bypass valve includes a bore formed in a rotor bore discharge face of the compressor housing upstream of a compression chamber outlet end of the compression chamber, a slide valve member inserted into the bore to fill a cavity, the valve member having a sealing surface configured to interact with a thread of a compressor screw during operation of the screw compressor, an actuator structure coupled to the valve member and oriented to move the valve member radially along the bore to open a fluid pathway communicatively coupling the compressor chamber to a bypass chamber configured to return compressed fluid to a fluid inlet of the compression chamber.

Claims (32)

1 . A variable capacity bypass valve for a screw compressor having a compressor housing defining a compression chamber, the variable capacity bypass valve comprising:

a bore formed in a rotor bore discharge face of the compressor housing upstream of a compression chamber outlet end of the compression chamber;

a slide valve member inserted into the bore to fill a cavity formed in the rotor bore discharge face of the compressor housing, the valve member having a sealing surface configured to interact with a thread of a compressor screw during operation of the screw compressor; and

an actuator structure coupled to the valve member and oriented to move the valve member radially along the bore to open a fluid pathway communicatively coupling the compression chamber to a bypass chamber configured to return compressed fluid to a fluid inlet of the compression chamber,

wherein the valve member has a partial cylindrical shape with an opened region on a side opposite the sealing surface in an axial direction of the screw compressor.

2 . The variable capacity bypass valve of claim 1 , wherein the sealing surface is a flat sealing surface extending parallel to the rotor bore discharge face of the compressor housing.

3 . The variable capacity bypass valve of claim 2 , wherein the valve member is aligned in the bore such that the sealing surface protrudes outward from the rotor bore discharge face into the compression chamber.

4 . The variable capacity bypass valve of claim 1 , wherein the sealing surface is a flat sealing surface extending parallel to the rotor bore discharge face of the compressor housing.

5 . The variable capacity bypass valve of claim 4 , wherein the valve member is aligned in the bore such that the sealing surface protrudes outward from the rotor bore discharge face into the compression chamber.

6 . A screw compressor comprising:

a compressor housing defining a compression chamber having a compression chamber outlet end and a plurality of bypass ports communicating with the compression chamber;

a spiral valve positioned adjacent the plurality of bypass ports communicating with the compression chamber, the spiral valve comprising a shutter configured to selectively open and close one or more of the plurality of bypass ports based on a rotational position; and

a variable capacity bypass valve comprising:

a bore formed in a rotor bore discharge face of the compressor housing upstream of a compression chamber outlet end of the compression chamber;

a slide valve member inserted into the bore to fill a cavity formed in the rotor bore discharge face of the compressor housing, the valve member having a sealing surface configured to interact with a thread of a compressor screw during operation of the screw compressor; and

an actuator structure coupled to the valve member and oriented to move the valve member radially along the bore to open a fluid pathway communicatively coupling the compression chamber to a bypass chamber housing the spiral valve, the bypass chamber configured to return compressed fluid to a fluid inlet of the compression chamber,

wherein the valve member of the variable capacity bypass valve has a partial cylindrical shape with an opened region on a side opposite the sealing surface in an axial direction of the screw compressor.

7 . The screw compressor of claim 6 , wherein the sealing surface of the variable capacity bypass valve is a flat sealing surface extending parallel to the rotor bore discharge face of the compressor housing.

8 . The screw compressor of claim 7 , wherein the valve member of the variable capacity bypass valve is aligned in the bore such that the sealing surface protrudes outward from the rotor bore discharge face into the compression chamber.

9 . The screw compressor of claim 6 , wherein the sealing surface of the variable capacity bypass valve is a flat sealing surface extending parallel to the rotor bore discharge face of the compressor housing.

10 . The screw compressor of claim 9 , wherein the valve member of the variable capacity bypass valve is aligned in the bore such that the sealing surface protrudes outward from the rotor bore discharge face into the compression chamber.

11 . The screw compressor of claim 6 , further comprising a plurality of variable capacity bypass valves, each variable capacity bypass valves comprising:

a bore formed in a rotor bore discharge face of the compressor housing upstream of a compression chamber outlet end of the compression chamber;

a slide valve member inserted into the bore to fill a cavity formed in the rotor bore discharge face of the compressor housing, the valve member having a sealing surface configured to interact with a thread of a compressor screw during operation of the screw compressor; and an actuator structure coupled to the valve member and oriented to move the valve member radially along the bore to open a fluid pathway communicatively coupling the compression chamber to a bypass chamber housing the spiral valve, the bypass chamber configured to return compressed fluid to a fluid inlet of the compression chamber,

wherein, the bores of the plurality of variable capacity bypass valves are arranged circumferentially around the rotor bore discharge face of the compressor housing in a rotation direction of at least one screw disposed in the compression chamber.

12 . The variable capacity bypass valve of claim 1 , wherein the valve member has the partial cylindrical shape with the opened region on the side opposite the sealing surface to flow a compressor fluid onto the open region into a bypass region.

13 . A variable capacity bypass valve for a screw compressor having a compressor housing defining a compression chamber, the variable capacity bypass valve comprising:

a bore formed in a rotor bore discharge face of the compressor housing upstream of a compression chamber outlet end of the compression chamber;

a slide valve member inserted into the bore to fill a cavity formed in the rotor bore discharge face of the compressor housing, the valve member having a sealing surface configured to interact with a thread of a compressor screw during operation of the screw compressor; and

an actuator structure coupled to the valve member and oriented to move the valve member radially along the bore to open a fluid pathway communicatively coupling the compression chamber to a bypass chamber configured to return compressed fluid to a fluid inlet of the compression chamber,

wherein the sealing surface is a flat sealing surface extending parallel to the rotor bore discharge face of the compressor housing, and

wherein the valve member is aligned in the bore such that the sealing surface protrudes outward from the rotor bore discharge face into the compression chamber.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 8, 2024
From: BATDORFF, JONATHAN D.; FUJIMOTO, HIDEKI; NOBLE, EDWARD
To: SULLAIR, LLC
Reel/Frame 067930/0397 →
CHANGE OF NAME Recorded Jul 8, 2024
From: SULLAIR, LLC
To: HITACHI GLOBAL AIR POWER US, LLC
Reel/Frame 068219/0843 →
Continuity (1)
Related Publication 20250084845A1 · Mar 13, 2025
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