IP Library Granted Patent US 7,621,728
Granted Patent B2
US 7,621,728 · App. 11/146,695 · Granted Nov 24, 2009

Pump inlet manifold

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Quick Facts
Patent No.
US 7,621,728
App. No.
11/146,695
Granted
Nov 24, 2009
Kind
B2
Abstract

A reciprocating piston/plunger pump inlet manifold includes an elongated cylindrical manifold member closable at opposite ends by transverse end caps connected to the manifold member by releasable couplings. A rubber or polymer liner formed with nitrogen filled closed cells is disposed within the manifold member. Spaced apart fluid discharge guide and mixing tubes are connected to the manifold member and include flanges for securing the manifold to inlet valve housings of a pump. The fluid flow guide and mixing tubes include partitions and a mixing chamber portion of the tubes. Improved fluid flow characteristics with minimal solids separation and minimal fluid velocity or acceleration induced pressure losses are exhibited by the manifold.

Claims (41)

1. A fluid inlet manifold for a reciprocating piston/plunger pump, said manifold comprising:

an elongated manifold member having a substantially central axis, a first end closed by a transverse end member, a second end closed by a transverse end member, one of said end members being adapted for connection to a fluid inlet conduit, said manifold member defining a fluid chamber therewithin;

spaced apart transversely extending fluid discharge tubes connected to said manifold member and extending within said chamber, each of said discharge tubes being adapted for connection to a fluid inlet member of said pump;

partitions disposed within respective ones of said tubes and forming plural flow passages within said tubes for discharging fluid and entrained particulates to said pump; and

a resilient liner disposed in said chamber and formed of one of natural rubber, synthetic rubber and polymer which includes plural gas filled closed cells within the structure of said liner, said liner being responsive to pressure changes of fluid flowing through said manifold to stabilize velocities of fluid flow in said chamber and said tubes and minimize acceleration induced pressure variations,

wherein said liner is delimited by opposed edges defining a slot whereby said liner may be inserted in and removed from said manifold member by removing a member closing at least one end of said manifold member.

2. The manifold set forth in claim 1 wherein:

said tubes extend within said chamber substantially to said central axis of said manifold member.

3. The manifold set forth in claim 1 wherein:

said partitions are formed as relatively thin walled plate members dividing said tubes into said plural flow passages, the orientation of said plate members being at an acute angle with respect to a longitudinal axis of said manifold member.

4. The manifold set forth in claim 1 wherein:

said tubes each include a fluid mixing chamber interposed said partitions and a discharge end of said tubes, respectively.

5. A fluid inlet manifold for a reciprocating piston/plunger pump, said manifold member having a substantially central axis, a first end closed by a transverse end member, a second end closed by a transverse end member, one of said end members being adapted for connection to a fluid inlet conduit, said manifold member defining a fluid chamber therewithin;

spaced apart transversely extending fluid discharge tubes connected to said manifold member and extending within said chamber, each of said discharge tubes being adapted for connection to a fluid inlet member of said pump; and

a resilient liner disposed in said chamber and operable to flex in response to pressure changes of fluid flowing through said manifold to substantially prevent collection of solids in said chamber and to reduce the viscosity of shear thinning fluids flowing through said chamber to minimize pressure losses of said shear thinning fluids flowing to and through said pump, said liner is formed of one of natural rubber, synthetic rubber and a polymer which is provided with plural gas filled closed cells within the structure of said liner and has a share conforming to a wall surface of said manifold member delimiting said chamber, and said liner is configured to be inserted in or removed from one end of said manifold member.

6. A fluid inlet manifold for a reciprocating piston/plunger pump, said manifold member comprises a generally cylindrical tube member having a substantially central axis, a first end closed by a transverse end member, a second end closed by a transverse end member, one of said end members being adapted for connection to a fluid inlet conduit, said manifold member defining a fluid chamber therewithin;

spaced apart transversely extending fluid discharge tubes connected to said manifold member and extending within said chamber, each of said discharge tubes being adapted for connection to a fluid inlet member of said pump;

partitions disposed within respective ones of said tubes and forming plural flow passages within said tubes for discharging fluid and entrained particulates to said pump;

a resilient liner having a shape conforming to a wall surface of said manifold member delimiting said chamber and configured to be inserted in or removed from one end of said manifold member, and having plural gas filled closed cells within the structure of said liner, and said liner is delimited by opposed edges defining a slot whereby said liner may be inserted in and removed from said manifold member by removing a member closing at least one end of said manifold member, wherein said liner is disposed in said chamber and operable to flex in response to pressure changes of fluid flowing through said manifold.

7. The manifold set forth in claim 6 wherein:

said partitions extend within said chamber beyond a fluid inlet end of said tubes, respectively.

8. The manifold set forth in claim 7 wherein:

said partitions have an arcuate edge at portions which extend beyond said inlet end of said tubes.

9. The manifold set forth in claim 5 wherein:

said tubes extend within said chamber substantially to said central axis of said manifold member.

10. The manifold set forth in claim 5 wherein:

said tubes are integrally formed with said manifold member.

11. The manifold set forth in claim 5 wherein:

said tubes are formed as separate members and are secured to said manifold member at junctions with a wall of said manifold member, respectively.

12. The manifold set forth in claim 6 wherein:

said liner having said plural gas filled closed cells is formed of one of natural rubber, synthetic rubber and a polymer.

13. The manifold set forth in claim 6 wherein:

said tubes extend within said chamber substantially to said central axis of said manifold member.

14. The manifold set forth in claim 6 wherein:

said tubes are integrally formed with said manifold member.

15. The manifold set forth in claim 6 wherein:

said tubes are formed as separate members and are secured to said manifold member at junctions with a wall of said manifold member, respectively.

16. The manifold set forth in claim 6 wherein:

said partitions are formed as relatively thin walled plate members dividing said tubes into said plural flow passages, the orientation of said plate members being at an acute angle with respect to a longitudinal axis of said manifold member.

17. The manifold set forth in claim 6 wherein:

said tubes include a mixing chamber interposed between said partitions and a fluid discharge end of said tubes, respectively.

Assignments (3)
RELEASE OF SECURITY INTEREST Recorded Dec 9, 2018
From: MILLER, JAMES D
To: AHLGREN, TAMMY; AHLGEN, JASON
Reel/Frame 047715/0825 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 24, 2012
From: MILLER, JAMES DAVIS
To: AHLGREN, JASON; AHLGREN, TAMMY
Reel/Frame 027587/0609 →
SECURITY AGREEMENT Recorded Jan 10, 2012
From: AHLGREN, JASON R.; AHLGREN, TAMMY Z.
To: MILLER, JAMES DAVIS
Reel/Frame 027506/0419 →
Continuity (2)
Provisional Application 6057868700 · Jun 10, 2004
Related Publication 20050276708A1 · Dec 15, 2005