IP Library Granted Patent US 11,383,188
Granted Patent B2
US 11,383,188 · App. 16/434,252 · Granted Jul 12, 2022

Filter capsule and method of use

Inventors: Neil J. Walker (Waterlooville, GB); Charles N. Rothwell (Stoneleigh, GB); Robert Knowles (Southampton, GB)
Assignee: Pall Corporation
B01D35/30B01D27/08B01D2313/20
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Quick Facts
Patent No.
US 11,383,188
App. No.
16/434,252
Granted
Jul 12, 2022
Kind
B2
Abstract

A module alignment element, and a filter capsule including the module alignment element, a method of filtering fluid using the filter capsule, and a system including the filter capsule, are disclosed.

Claims (27)

1. A filter capsule comprising

(a) a hollow filter capsule housing having an upper hollow housing portion including an inlet, the upper hollow housing portion including an upper bowl portion, a secondary upper bowl portion including a secondary upper bowl portion fluid flow port and a secondary upper bowl portion inner diameter; an intermediate hollow housing portion; a lower hollow housing portion including an outlet, the lower hollow housing portion including a lower bowl portion, a secondary lower bowl portion including a secondary lower bowl portion fluid flow port; and defining a fluid flow path between the upper hollow housing portion and the lower hollow housing portion;

(b) a filter module comprising a hollow cylindrical porous filter arranged between an inner core and an outer cage, wherein the filter module is arranged in the hollow filter capsule housing across the fluid flow path, the filter module having an upper end cap with a central opening and a lower end cap with a central opening;

(c) a module alignment element, arranged in, and moveable axially in, the upper hollow housing portion and arranged to contact the upper end cap of the filter module, the module alignment element comprising an open top end, and a closed bottom end comprising a base, the open top end and the closed bottom end being connected by a plurality of spaced apart vertically arranged struts, the open top end including an outer side wall including a circumferential groove containing a resilient ring, the circumferential groove including two or more flattened portions formed in the side wall; the base comprising a plurality of horizontally arranged outwardly extending ears, the plurality of horizontally arranged outwardly extending ears extending beyond the secondary upper bowl portion inner diameter, wherein the plurality of horizontally arranged outwardly extending ears can contact an inner surface of the secondary upper bowl portion forming the inner diameter; and,

(d) a hollow cylindrical end cap, arranged in the lower hollow housing portion and contacting the lower end cap of the filter module, the hollow cylindrical end cap comprising a side wall including at least one circumferential groove containing a hollow end cap resilient ring, the hollow end cap resilient ring providing a seal when the hollow cylindrical end cap is arranged in the lower hollow housing portion.

2. The filter capsule of claim 1 , further comprising:

(e) a valve in fluid communication with the upper hollow housing portion or the lower hollow housing portion.

3. The filter capsule of claim 1 , further comprising:

(e) a first valve in fluid communication with the upper hollow housing portion and a second valve in fluid communication with the lower hollow housing portion.

4. The filter capsule of claim 2 , wherein the valve comprises a valve outlet port, a valve spindle, and an actuator knob, and operation of the actuator knob moves the valve spindle to open and close the valve without moving the valve outlet port.

5. A method of filtering fluid, the method comprising:

passing fluid through a filter capsule comprising

(a) a hollow filter capsule housing having an upper hollow housing portion including an inlet, the upper hollow housing portion including an upper bowl portion, a secondary upper bowl portion including a secondary upper bowl portion fluid flow port and a secondary upper bowl portion inner diameter; an intermediate hollow housing portion; a lower hollow housing portion including an outlet, the lower hollow housing portion including a lower bowl portion, a secondary lower bowl portion including a secondary lower bowl portion fluid flow port; and defining a fluid flow path between the upper hollow housing portion and the lower hollow housing portion;

(b) a filter module comprising a hollow cylindrical porous filter arranged between an inner core and an outer cage, wherein the filter module is arranged in the hollow filter capsule housing across the fluid flow path, the filter module having an upper end cap with a central opening and a lower end cap with a central opening;

(c) a module alignment element, arranged in, and moveable axially in, the upper hollow housing portion and arranged to contact the upper end cap of the filter module, the module alignment element comprising an open top end, and a closed bottom end comprising a base, the open top end and the closed bottom end being connected by a plurality of spaced apart vertically arranged struts, the open top end including an outer side wall including a circumferential groove containing a resilient ring, the circumferential groove including two or more flattened portions formed in the side wall; the base comprising a plurality of horizontally arranged outwardly extending ears, the plurality of horizontally arranged outwardly extending ears extending beyond the secondary upper bowl portion inner diameter, wherein the plurality of horizontally arranged outwardly extending ears can contact an inner surface of the secondary upper bowl portion forming the inner diameter; and,

(d) a hollow cylindrical end cap arranged in the lower hollow housing portion and contacting the lower end cap of the filter module, the hollow cylindrical end cap comprising a side wall including at least one circumferential groove containing a hollow end cap resilient ring, the hollow end cap resilient ring providing a seal when the hollow cylindrical end cap is arranged in the lower hollow housing portion.

6. The method of claim 5 , further comprising, after passing fluid through the filter capsule, introducing filtered air into the filter capsule, and obtaining additional filtered fluid.

7. The method of claim 6 , wherein introducing filtered air into the filter capsule comprises opening a valve in fluid communication with the upper hollow housing portion and introducing the filtered air through the valve.

8. A fluid processing system comprising

a container suitable for containing a source fluid;

the filter capsule of claim 1 , in fluid communication with the container.

9. The filter capsule of claim 3 , wherein the first and second valves each comprise a valve outlet port, a valve spindle, and an actuator knob, and operation of the actuator knob moves the valve spindle to open and close the valve without moving the valve outlet port.

10. The method of claim 5 , wherein passing fluid through the filter capsule includes integrity testing the filter capsule.

11. The filter capsule of claim 1 , wherein the filter module is moveable axially in the filter capsule, and the plurality of horizontally arranged outwardly extending ears prevent excessive movement of the filter module.

12. The filter capsule of claim 11 , wherein the upper end cap and the lower end cap of the filter module each include protrusions arranged to respectively contact at least a peripheral edge of a bottom surface of the closed bottom end of the module alignment element or a top surface of the cylindrical end cap.

13. The method of claim 5 , wherein the filter module is moveable axially in the filter capsule, and the plurality of horizontally arranged outwardly extending ears prevent excessive movement of the filter module.

14. The method of claim 13 , wherein the upper end cap and the lower end cap of the filter module each include protrusions arranged to respectively contact at least a peripheral edge of a bottom surface of the closed bottom end of the module alignment element or a top surface of the cylindrical end cap.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 22, 2023
From: PALL CORPORATION
To: CYTIVA US LLC
Reel/Frame 063144/0716 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 23, 2019
From: WALKER, NEIL; ROTHWELL, CHARLES; KNOWLES, ROBERT
To: PALL EUROPE LIMITED
Reel/Frame 049833/0760 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 23, 2019
From: PALL EUROPE LIMITED
To: PALL CORPORATION
Reel/Frame 049833/0797 →
Continuity (1)
Related Publication 20200384394A1 · Dec 10, 2020
Cited By (5)
US 1,090,779 US 1,101,900 US 12,384,585 US 12,391,421 US 12,715,643