IP Library Granted Patent US 12,018,665
Granted Patent B2
US 12,018,665 · App. 17/461,256 · Granted Jun 25, 2024

Single piece valve plate assembly for a reciprocating compressor, the valve plate assembly including a valve plate and a suction valve retainer that are integrally formed as a unitary body

Inventors: Siddharth Dhanpal Devanawar (Pune, IN); Janardhan Sakhahari Kolpe (Pune, IN); Rajesh Vasant More (Pune, IN)
Assignee: Copeland LP
F04B39/1066F04B27/00F04B27/0451F04B39/1086F04B39/125F04B39/14
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Quick Facts
Patent No.
US 12,018,665
App. No.
17/461,256
Granted
Jun 25, 2024
Kind
B2
Abstract

A valve plate assembly for a compressor according to the principles of the present disclosure includes a valve plate and a suction valve retainer. The valve plate is configured to separate suction-pressure working fluid entering a cylinder of the compressor from discharge-pressure working fluid exiting the cylinder of the compressor. The valve plate defines a discharge valve seat. The suction valve retainer is configured to retain a suction valve within a suction valve seat disposed about a central longitudinal axis of the cylinder.

Claims (44)

1. A valve plate assembly for a compressor assembly that includes a compressor housing defining multiple cylinders, the valve plate assembly comprising:

a valve plate configured to separate suction-pressure working fluid entering the cylinders of the compressor housing in a first direction from discharge-pressure working fluid exiting the cylinder of the compressor housing in a second direction, the valve plate defining a discharge valve seat and having a bottom surface configured to mount to the compressor housing; and

a suction valve retainer configured to retain at least one suction valve within at least one suction valve seat disposed about a central longitudinal axis of one of the cylinders, wherein:

the at least one suction valve seat is defined by the compressor housing;

the suction valve retainer has a bottom surface configured to sealingly contact an outer perimeter of the at least one suction valve to limit movement of the at least one suction valve in the second direction when discharge-pressure working fluid is expelled from the cylinders of the compressor housing;

the bottom surface of the valve plate is coplanar with the bottom surface of the suction valve retainer;

the suction valve retainer includes interconnected annular disk portions that are each configured to be disposed about the central longitudinal axis of one the cylinders; and

the valve plate and the suction valve retainer are integrally formed as a unitary body.

2. The valve plate assembly of claim 1 , wherein the valve plate is configured to be attached to the compressor housing using fasteners, and the fasteners do not extend through the suction valve retainer when the valve plate assembly is assembled to the compressor housing.

3. The valve plate assembly of claim 1 , wherein the valve plate includes a flat portion and hollow conical frustum portions projecting from the flat portion and configured to extend toward the cylinders when the valve plate is mounted to the compressor housing, each of the hollow conical frustum portions defining the discharge valve seat.

4. The valve plate assembly of claim 3 , wherein the flat portion of the valve plate defines holes disposed about an outer perimeter of the flat portion for receiving fasteners to attach the valve plate to the compressor housing.

5. A valve plate assembly for a compressor assembly that includes a compressor housing defining multiple cylinders, the valve plate assembly comprising:

a valve plate configured to separate suction-pressure working fluid entering the cylinders of the compressor housing in a first direction from discharge-pressure working fluid exiting the cylinder of the compressor housing in a second direction, the valve plate defining a discharge valve seat; and

a suction valve retainer configured to retain at least one suction valve within at least one suction valve seat disposed about a central longitudinal axis of one of the cylinders, wherein;

the at least one suction valve seat is defined by the compressor housing;

the suction valve retainer is configured to sealingly contact an outer perimeter of the at least one suction valve to limit movement of the at least one suction valve in the second direction when discharge-pressure working fluid is expelled from the cylinders of the compressor housing;

the suction valve retainer includes interconnected annular disk portions that are each configured to be disposed about the central longitudinal axis of one the cylinders;

the valve plate and the suction valve retainer are integrally formed as a unitary body;

the valve plate includes a flat portion and hollow conical frustum portions projecting from the flat portion and configured to extend toward the cylinders when the valve plate is mounted to the compressor housing, each of the hollow conical frustum portions defining the discharge valve seat;

the flat portion of the valve plate defines holes disposed about an outer perimeter of the flat portion for receiving fasteners to attach the valve plate to the compressor housing; and

the valve plate further includes collars disposed about the holes and projecting from the flat portion of the valve plate, the collars being configured to locate the valve plate relative to the compressor housing in a plane parallel to a mounting surface of the compressor housing to which the valve plate is configured to be mounted.

6. The valve plate assembly of claim 1 , wherein the valve plate is configured to be mounted to a mounting surface of the compressor housing, and the suction valve retainer is configured to be mounted to the same mounting surface of the compressor housing.

7. The valve plate assembly of claim 1 , further comprising posts disposed between the valve plate and the suction valve retainer and configured to hold the suction valve retainer in place when discharge-pressure working fluid is expelled from the cylinders of the compressor housing, wherein the valve plate, the suction valve retainer, and the posts are integrally formed as a unitary body.

8. The valve plate assembly of claim 7 , further comprising an annular projection disposed about an outer perimeter of the valve plate and configured to project from the valve plate toward a mounting surface of the compressor to which the valve plate is configured to be mounted, wherein the valve plate, the suction valve retainer, the posts, and the annular projection are integrally formed as a unitary body.

9. The valve plate assembly of claim 1 , wherein the at least one suction valve has a first surface configured to face a piston within one of the cylinders and a second surface opposite of the first surface, and the second surface of the at least one suction valve is configured to engage the suction valve retainer.

10. The valve plate assembly of claim 1 , wherein the at least one suction valve seat is recessed relative to a mounting surface of the compressor housing to which the valve plate is configured to be mounted.

11. The valve plate assembly of claim 1 , wherein:

the at least one suction valve includes multiple suction valves; and

the at least one suction valve seat includes multiple suction valve seats.

12. The valve plate assembly of claim 1 , wherein the suction valve retainer is configured to extend radially outward from the central longitudinal axis of each of the cylinders without extending radially beyond a suction passage of the compressor housing.

13. A compressor assembly, comprising:

a compressor housing defining multiple cylinders, suction valve seats, and a mounting surface, wherein each of the suction valve seats is disposed about a central longitudinal axis of one of the cylinders;

a valve plate configured to mount to the mounting surface of the compressor housing and to separate suction-pressure working fluid entering the cylinders of the compressor housing in a first direction from discharge-pressure working fluid exiting the cylinders of the compressor housing in a second direction, the valve plate defining discharge valve seats and having a bottom surface configured to mount to the compressor housing; and

a suction valve retainer configured to mount to the mounting surface of the compressor housing and to retain suction valves within the suction valve seats of the compressor housing, wherein:

the suction valve retainer has a bottom surface configured to sealingly contact outer perimeters of the suction valves to limit movement of the suction valves in the second direction when discharge-pressure working fluid is expelled from the cylinders of the compressor housing;

the bottom surface of the valve plate is coplanar with the bottom surface of the suction valve retainer;

the suction valve retainer includes interconnected annular disk portions that are each configured to be disposed about the central longitudinal axis of one the cylinders; and

the valve plate and the suction valve retainer are integrally formed as a unitary body.

14. The compressor assembly of claim 13 , wherein the suction valve seats are recessed relative to the mounting surface.

15. The compressor assembly of claim 13 , further comprising posts disposed between the valve plate and the suction valve retainer and configured to hold the suction valve retainer in place when discharge-pressure working fluid is expelled from the cylinders of the compressor housing, wherein the valve plate, the suction valve retainer, and the posts are integrally formed as a unitary body.

16. The compressor assembly of claim 13 , wherein the valve plate includes a flat portion and hollow conical frustum portions projecting from the flat portion and configured to extend toward the cylinders when the valve plate is mounted to the compressor housing, the hollow conical frustum portions defining the discharge valve seats.

17. The compressor assembly of claim 16 , wherein each of the hollow conical frustum portions of the valve plate is concentric with a corresponding one of the annular disk portions of the suction valve retainer.

18. The compressor assembly of claim 13 , wherein each of the suction valves has a first surface configured to face a piston within one of the cylinders and a second surface opposite of the first surface, and the second surface of each of the suction valves is configured to engage the suction valve retainer.

19. The compressor assembly of claim 13 , wherein the suction valve retainer is configured to extend radially outward from the central longitudinal axis of each of the cylinders without extending radially beyond a suction passage of the compressor housing.

Assignments (6)
SECURITY INTEREST Recorded Jul 9, 2024
From: COPELAND LP
To: U.S. BANK TRUST COMPANY, NATIONAL ASSOCIATION, AS NOTES COLLATERAL AGENT
Reel/Frame 068241/0264 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 27, 2024
From: DEVANAWAR, SIDDHARTH DHANPAL; KOLPE, JANARDHAN SAKHAHARI; MORE, RAJESH VASANT
To: EMERSON CLIMATE TECHNOLOGIES, INC.
Reel/Frame 066568/0368 →
SECURITY INTEREST Recorded Jul 17, 2023
From: COPELAND LP
To: ROYAL BANK OF CANADA, AS COLLATERAL AGENT
Reel/Frame 064278/0598 →
SECURITY INTEREST Recorded Jul 17, 2023
From: COPELAND LP
To: U.S. BANK TRUST COMPANY, NATIONAL ASSOCIATION, AS NOTES COLLATERAL AGENT
Reel/Frame 064279/0327 →
SECURITY INTEREST Recorded Jul 17, 2023
From: COPELAND LP
To: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 064280/0695 →
ENTITY CONVERSION Recorded Jun 22, 2023
From: EMERSON CLIMATE TECHNOLOGIES, INC.
To: COPELAND LP
Reel/Frame 064058/0724 →