IP Library Granted Patent US 11,268,483
Granted Patent B2
US 11,268,483 · App. 16/705,788 · Granted Mar 8, 2022

Compact double shut-off valve

Inventors: Russell David Jensen (Modesto, CA); Gary A. Garcia (Modesto, CA)
Assignee: Parker-Hannifin Corporation
F02M37/48B01D29/52B01D35/12B01D35/157B01D35/1573B01D35/303B01D36/003F02M37/24F16K11/02F16K11/076F16K11/0856F16K27/065Y10T137/86558
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Quick Facts
Patent No.
US 11,268,483
App. No.
16/705,788
Granted
Mar 8, 2022
Kind
B2
Abstract

A valve member having a first flow path and a second flow path, and configured to control both flow paths through a filter assembly. The valve member allows control of the two flow streams in a compact space compared to traditional valves. The valve member may require less space to operate due to its compact nature as compared to traditional external valves with multiple handles that each require space to rotate. The valve member may also be used to easily shut-off flow to a filter of a filter assembly without limiting use of another filtration assembly in the same filtration system. Alternatively, the valve member may shut off flow to a corresponding filter of a stand-alone filter assembly that is not connected to another filter assembly. Also, the valve member allows less expensive and more lightweight filtration systems.

Claims (32)

1. A filter assembly comprising:

a manifold module having a portion of a supply line, a portion of a discharge line, and a valve passage fluidly connecting the portion of the supply line to the portion of the discharge line; and

a valve member extending along a longitudinal axis and having an unfiltered inlet fluidly connected to the portion of the supply line and an unfiltered outlet, and having a filtered inlet fluidly connected to the portion of the discharge line and a filtered outlet,

wherein the valve member is configured to allow a first fluid flow from the unfiltered inlet to the unfiltered outlet and from the unfiltered outlet to a filter, and allow a second fluid flow from the filter to the filtered inlet and from the filtered inlet to the filtered outlet when the valve member is in an open position, wherein in a closed position of the valve member, fluid is blocked from flowing through the unfiltered outlet, and fluid is blocked from flowing through the filtered outlet and

wherein the first fluid flow and the second fluid flow do not inter-mix.

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

a filter housing having the filter, the filter being fluidly connected to the valve member.

3. The filter assembly of claim 1 , wherein the portion of the supply line extends parallel to the portion of the discharge line.

4. The filter assembly of claim 1 , wherein the portion of the supply line is fluidly disconnected from the filter, and wherein the portion of the discharge line is fluidly disconnected from the filter when the valve member is in a closed position.

5. The filter assembly claim 1 , wherein the valve member further includes a flow through passage configured to allow fluid flow through the valve member and the portion of the supply line.

6. The filter assembly of claim 5 , wherein the fluid flow through the flow through passage is separate from the first and second fluid flows.

7. The filter assembly of claim 5 , wherein the fluid flow through the flow through passage does not flow through the unfiltered inlet or the filtered inlet.

8. The filter assembly of claim 5 , wherein fluid flow enters through a portion of the flow through passage, a first part of the flow enters the unfiltered inlet and flows out the unfiltered outlet, a second part of the flow enters the filtered inlet and flows out of the filtered outlet and a third part of the flow flows out of the flow through passage.

9. The filter assembly of claim 5 , wherein when the valve is in a closed position, fluid flows through the flow through passage to flow through the portion of the discharge line, and fluid does not flow through the unfiltered inlet or the filtered inlet to reach the portion of the discharge line.

10. The filter assembly of claim 1 , wherein the valve member is tubular.

11. The filter assembly of claim 1 , wherein the unfiltered inlet is disposed centrally within the valve member between the flow through passage and the unfiltered outlet.

12. The filter assembly of claim 1 , further including a valve control configured to rotate the valve member.

13. A filtration system comprising:

the filter assembly of claim 1 ; and

a connecting element for fluidly connecting the portion of the supply line of the filter assembly to a second portion of the supply line.

14. The filtration system of claim 13 , wherein the filter assembly is a first filter assembly and the filtration system includes at least one second filter assembly in a stacked relationship with the first filter assembly; and

wherein the second filter assembly includes:

another manifold module having another portion of another supply line, another portion of another discharge line, and another valve passage fluidly connecting the another portion of the another supply line to the another portion of the another discharge line; and

another valve member extending along another longitudinal axis and having another unfiltered inlet fluidly connected to the another portion of the another supply line and another unfiltered outlet, and having another filtered inlet fluidly connected to the another portion of the another discharge line and another filtered outlet,

wherein the another valve member is configured to allow another first fluid flow from the another unfiltered inlet to the another unfiltered outlet and from the another unfiltered outlet to the another filter, and allow another second fluid flow from the another filter to the another filtered inlet and from the another filtered inlet to the another filtered outlet when the another valve member is in an open position, and

wherein the another first fluid flow and the another second fluid flow do not inter-mix.

15. A filter assembly comprising:

a manifold module having a portion of a supply line, a portion of a discharge line, and a valve passage fluidly connecting the portion of the supply line to the portion of the discharge line; and

a valve member extending along a longitudinal axis and having an unfiltered inlet fluidly connected to the portion of the supply line and an unfiltered outlet, and having a filtered inlet fluidly connected to the portion of the discharge line and a filtered outlet, wherein the valve member further includes a flow through passage configured to allow fluid flow through the valve member and the portion of the supply line

wherein the valve member is configured to allow a first fluid flow from the unfiltered inlet to the unfiltered outlet and from the unfiltered outlet to a filter, and allow a second fluid flow from the filter to the filtered inlet and from the filtered inlet to the filtered outlet when the valve member is in an open position,

wherein when the valve is in a closed position, fluid flows through the flow through passage to flow through the portion of the discharge line, and fluid does not flow through the unfiltered inlet or the filtered inlet to reach the portion of the discharge line, and

wherein the first fluid flow and the second fluid flow do not inter-mix.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 12, 2023
From: PARKER-HANNIFIN CORPORATION
To: PARKER INTANGIBLES LLC
Reel/Frame 064256/0238 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 24, 2020
From: JENSEN, RUSSELL DAVID; GARCIA, GARY A.
To: PARKER-HANNIFIN CORPORATION
Reel/Frame 051906/0043 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 6, 2019
From: JENSEN, RUSSELL DAVID; GARCIA, GARY A.
To: PARKER-HANNIFIN CORPORATION
Reel/Frame 051203/0941 →
Continuity (4)
Division 14732178 · Jun 5, 2015
Provisional Application 62088989 · Dec 8, 2014
Provisional Application 62008120 · Jun 5, 2014
Related Publication 20200116265A1 · Apr 16, 2020