IP Library › Granted Patent US 11,788,527
Granted Patent B2
US 11,788,527 · App. 17/902,328 · Granted Oct 17, 2023

Fluid end

Inventors: Mark S. Nowell (Ardmore, OK); Kelcy Jake Foster (Ardmore, OK); Christopher Todd Barnett (Stratford, OK); Brandon Scott Ayres (Ardmore, OK); Michael Eugene May (Ardmore, OK); Guy J. Lapointe (Sulphur, OK); Micheal Cole Thomas (Ardmore, OK)
Assignee: Kerr Machine Co.
F04B53/16E21B43/2607F04B37/12F04B53/007F04B53/164E21B43/26F04B53/22
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Quick Facts
Patent No.
US 11,788,527
App. No.
17/902,328
Granted
Oct 17, 2023
Kind
B2
Abstract

A flangeless fluid end comprising a fluid end body releasably attached to a connect plate. The connect plate is attached to a power source using stay rods. The flow bores of the fluid end are sealed without threading a retainer nut into the walls of each bore. Instead, the flow bores are sealed by bolting a retainer to the fluid end body. Plungers to drive fluid through the fluid end body are installed within removable stuffing box sleeves. These sleeves are maintained within the plunger bores by the bolted retainers. A number of features, including the location of seals within bore walls and carbide inserts within valve structures, aid in reducing or transferring wear.

Claims (32)

1. A method of assembling a high pressure pump comprising a fluid end and a power end, the fluid end comprising:

a fluid end body having a plurality of bore pairs formed therein, in which a given bore pair of the plurality of bore pairs comprises intersecting horizontal and vertical bores; in which the fluid end body is a single, integrally formed piece and comprises:

a plurality of threaded studs, each threaded stud attached to and projecting from a rear surface of the fluid end body; and

a connect plate having a plurality of bores formed therein, each bore configured to align with a corresponding one of the horizontal bores formed in the fluid end body; and in which the connect plate comprises opposed front and rear surfaces interconnected by a plurality of through-bores, in which the rear surface faces the power end;

the power end comprising:

a frame housing a crankshaft; and

a plurality of stay rods projecting from at least a portion of the frame;

the method comprising:

attaching the connect plate to the plurality of stay rods; and

thereafter, attaching the fluid end body to the connect plate such that at least a portion of the connect plate is in flush engagement with the fluid end body; in which the fluid end body is attached to the connect plate by:

inserting the plurality of threaded studs into the plurality of through-bores formed in the connect plate in a one-to-one relationship; and

securing a threaded nut onto the end of each of the plurality of threaded studs at the rear surface of the connect plate.

2. The method of claim 1 , in which the connect plate does not include a flange configured to attach to the plurality of stay rods.

3. The method of claim 1 , in which the connect plate further comprises a plurality of stay rod through-bores, each stay rod through-bore configured to receive a corresponding one of the stay rods.

4. The method of claim 1 , in which the fluid end body further comprises:

a plurality of discharge valves, each discharge valve installed within one of the vertical bores; and

a plurality of suction valves, each suction valve installed within one of the vertical bores.

5. The method of claim 1 , in which the fluid end further comprises:

a plurality of stuffing boxes, each stuffing box installed within a corresponding one of the bores formed in the connect plate.

6. The method of claim 1 , in which the connect plate is a single, integrally formed piece.

7. The method of claim 1 , in which the stay rods hold the connect plate and the frame of the power end in a spaced-relationship.

8. The method of claim 1 , in which the fluid end body and the connect plate have the same height and width.

9. A kit, comprising:

a fluid end body having a plurality of bore pairs formed therein, in which a given bore pair of the plurality of bore pairs comprises intersecting horizontal and vertical bores; in which the fluid end body is a single, integrally formed piece;

a connect plate configured to be attached to the fluid end body such that at least a portion of the connect plate is in flush engagement with the fluid end body; in which the connect plate is configured to attach to a power end using a plurality of stay rods; and in which the connect plate does not include a flange configured to attach to the plurality of stay rods; and

a plurality of threaded studs, the threaded studs configured to attach the fluid end body to the connect plate such that each threaded stud is installed within both the fluid end body and the connect plate.

10. An apparatus, comprising:

the kit of claim 9 , in which the connect plate is attached to the fluid end body using the plurality of threaded studs.

11. The kit of claim 9 , in which the connect plate is a single, integrally formed piece.

12. The kit of claim 11 , in which the connect plate is made of a harder material than that of which the fluid end body is made.

13. The kit of claim 9 , further comprising a plurality of valves, each valve configured to be installed within one of the vertical bores formed in the fluid end body.

14. The kit of claim 9 , in which the fluid end body and the connect plate have the same height and width.

Continuity (5)
Continuation 17194461 · Mar 8, 2021
Continuation 16708773 · Dec 10, 2019
Provisional Application 62859256 · Jun 10, 2019
Provisional Application 62777705 · Dec 10, 2018
Related Publication 20220412346A1 · Dec 29, 2022
Cited By (3)
US 12,345,334 US 12,480,483 US 12,607,289