IP Library Granted Patent US 11,654,452
Granted Patent B2
US 11,654,452 · App. 17/403,152 · Granted May 23, 2023

Apparatuses and methods using high pressure dual check valve

Inventors: Jocemar Ramina (Lexington, MA); Marco G. Catalani (Burlington, MA); John M. Bernard (Stoughton, MA); Michael P. Ratigan (Scituate, RI); David G. Harney (Stoneham, MA)
Assignee: MICROFLUIDICS INTERNATIONAL CORPORATION
B05C17/00553B05C17/00576B05C21/00F16K11/105F16K15/042F16K15/044
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Quick Facts
Patent No.
US 11,654,452
App. No.
17/403,152
Granted
May 23, 2023
Kind
B2
Abstract

Apparatuses and methods related to a high pressure fluid processing device having a dual check valve setup that can be quickly and easily maintained with replacement parts are disclosed herein. In a general example embodiment, a high pressure processing device includes a body including a first surface having a first recess, a second surface having a second recess, and a third surface having a third recess, a first subassembly at least partially inserted into the first recess of the body, the first subassembly including a first check valve, a second subassembly at least partially inserted into the second recess of the body, the second subassembly including a second check valve, and a third subassembly at least partially inserted into the third recess of the body, the third subassembly coupling the body to a fluid driving mechanism, wherein the first subassembly, second subassembly and third subassembly are configured to be independently attachable to and detachable from the first recess, second recess and third recess, respectively.

Claims (38)

1. A method of repairing a high pressure processing device including a body having a first surface with a first recess and a second surface with a second recess, a first subassembly inserted into the first recess and a second subassembly inserted into the second recess, the first subassembly including a first plug configured to form a one-way valve in combination with a first valve seat, the second subassembly including a second plug configured to form a one-way valve in combination with a second valve seat, and a third removable subassembly coupling the body to a fluid driving mechanism via a threaded connection, wherein the fluid driving mechanism is a pressure pump including a piston housing and a piston actuatable within an inner compartment of the piston housing, the method comprising:

removing one of the first subassembly and second subassembly from the body independently of the other of the first subassembly and second subassembly and independently of the third subassembly;

replacing a part of the removed first subassembly or second subassembly; and

reattaching the removed first subassembly or second subassembly that includes the replacement part.

2. The method of claim 1 , wherein the first recess is fluidly connected to the second recess by a connecting channel such that the first recess, second recess and connecting channel form an aperture extending through the body from the first outer surface to the opposite second outer surface.

3. The method of claim 1 , wherein replacing the part of the removed first subassembly includes replacing one or more of a first biasing element retainer, a first biasing element, a first plug, a first deformable material, a first valve seat, and a first subassembly gland of the first subassembly.

4. The method of claim 1 , wherein replacing the part of the removed second subassembly includes replacing one or more of a second valve seat, a second deformable material, a second plug, a second biasing element, a second biasing element retainer, a second channel member, and a second subassembly gland of the second subassembly.

5. The method of claim 1 , further comprising identifying the part to be replaced prior to removing one of the first subassembly and second subassembly.

6. The method of claim 1 , wherein the part of the removed first subassembly or second subassembly is replaced while the other of the first subassembly and second subassembly remains inserted into the first recess or second recess respectively.

7. The method of claim 1 , wherein removing one of the first subassembly and the second subassembly includes unthreading the first subassembly from interior threading of the first recess of the body or unthreading the second subassembly from interior threading of the second recess of the body.

8. A method of repairing a high pressure processing device including a body, a first subassembly including a first check valve, a second subassembly including a second check valve, and a third subassembly coupling the body to a fluid driving mechanism, the method comprising:

removing one of the first subassembly, second subassembly and third subassembly from the body independently of the others of the first subassembly, second subassembly and third subassembly;

replacing a part of the removed first subassembly, second subassembly or third subassembly; and

reattaching the removed first subassembly, second subassembly or third subassembly that includes the replacement part, wherein the fluid driving mechanism is a pressure pump including a piston housing and a piston actuatable within an inner compartment of the piston housing.

9. The method of claim 8 , wherein removing one of the first subassembly, second subassembly and third subassembly from the body includes unthreading the one of the first subassembly, second subassembly and third subassembly from an inner surface of a recess of the body.

10. The method of claim 8 , wherein reattaching the removed first subassembly, second subassembly or third subassembly with the replacement part includes threading the removed first subassembly, second subassembly or third subassembly to an inner surface of a recess of the body.

11. The method of claim 8 , which includes removing the first subassembly from the body independently of the second subassembly and the third subassembly, and wherein replacing a part of the first subassembly includes replacing one or more of a first biasing element retainer, a first biasing element, a first plug, a first deformable material, a first valve seat and a first subassembly gland of the first subassembly.

12. The method of claim 11 , wherein removing the first assembly includes unthreading the first subassembly gland of the first subassembly from an inner surface of a recess of the body.

13. The method of claim 8 , which includes removing the second subassembly from the body independently of the first subassembly and the third subassembly, and wherein replacing a part of the second subassembly includes replacing one or more of a second valve seat, a second deformable material, a second plug, a second biasing element, a second biasing element retainer, a second channel member and a second subassembly gland of the second subassembly.

14. The method of claim 13 , wherein removing the second assembly includes unthreading the second subassembly gland of the second subassembly from an inner surface of a recess of the body.

15. The method of claim 8 , which includes removing the third subassembly from the body independently of the first subassembly and the second subassembly and wherein replacing a part of the third subassembly includes replacing one or more of a piston, a piston housing and a coupling of the third assembly.

16. A method of repairing a high pressure processing device including a body, a first subassembly including a first check valve, a second subassembly including a second check valve, and a third subassembly coupling the body to a fluid driving mechanism, the method comprising:

removing the third subassembly from the body independently of the first subassembly and second subassembly wherein removing the third subassembly includes unthreading a coupling of the third subassembly from an inner surface of a recess of the body;

replacing a part of the removed first subassembly, second subassembly or third subassembly; and

reattaching the removed first subassembly, second subassembly or third subassembly that includes the replacement part.

17. A method of repairing a high pressure processing device including a body, a first subassembly including a first check valve, a second subassembly including a second check valve, and a third subassembly coupling the body to a fluid driving mechanism, the method comprising:

removing the third subassembly from the body independently of the first subassembly and second subassembly wherein removing the third subassembly includes unthreading the body from a coupling of the third subassembly while leaving the third subassembly attached to a fluid driving mechanism at an end of the third subassembly different than the coupling;

replacing a part of the removed first subassembly, second subassembly or third subassembly; and

reattaching the removed first subassembly, second subassembly or third subassembly that includes the replacement part.

18. A method of repairing a high pressure processing device including a body, a first subassembly including a first check valve, a second subassembly including a second check valve, and a third subassembly coupling the body to a fluid driving mechanism, the method comprising:

removing the third subassembly from the body independently of the first subassembly and second subassembly;

replacing a part of the removed third subassembly, wherein replacing the part of the removed third subassembly includes detaching a piston housing of the third subassembly from a coupling of the third subassembly; and

reattaching the removed third subassembly that includes the replacement part.

19. The method of claim 16 , wherein the fluid driving mechanism is a pressure pump including a piston housing and a piston actuatable within an inner compartment of the piston housing.

20. A method of repairing a high pressure processing device including a body, a first subassembly including a first check valve, a second subassembly including a second check valve, and a third subassembly coupling the body to a fluid driving mechanism, wherein the fluid driving mechanism is a pressure pump including a piston housing and a piston actuatable within an inner compartment of the piston housing, the method comprising:

removing the third subassembly from the body independently of the first subassembly and second subassembly wherein the piston remains entirely within the inner compartment of the piston housing during suction or discharge strokes of the piston thereby enabling the third subassembly to be removed from the body independently of the first subassembly and the second subassembly;

replacing a part of the removed first subassembly, second subassembly or third subassembly; and

reattaching the removed first subassembly, second subassembly or third subassembly that includes the replacement part.

Assignments (2)
MERGER Recorded Aug 21, 2024
From: MICROFLUIDICS INTERNATIONAL CORPORATION
To: IDEX MPT INC.
Reel/Frame 068353/0958 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 17, 2022
From: RAMINA, JOCEMAR; CATALANI, MARCO G.; BERNARD, JOHN M.; RATIGAN, MICHAEL P.; HARNEY, DAVID G.
To: MICROFLUIDICS INTERNATIONAL CORPORATION
Reel/Frame 059289/0909 →