IP Library Granted Patent US 7,938,958
Granted Patent B2
US 7,938,958 · App. 12/371,948 · Granted May 10, 2011

De-aeration system

Assignee: Parker Hannifin (UK) Limited
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Quick Facts
Patent No.
US 7,938,958
App. No.
12/371,948
Granted
May 10, 2011
Kind
B2
Abstract

A de-aeration system for a fuel system, the fuel system having a housing for containing a fuel filter element, a fuel inlet and a fuel outlet is disclosed. The de-aeration system includes a de-aeration valve having a valve inlet in a lower face of the valve for connection to the housing for purging the air trapped in the housing. The de-aeration valve also includes a valve outlet in an upper face of the valve and a ball. The ball is configured to lift between the lower face and the upper face in response to an air pressure differential acting on the ball. This opens the valve to purge air trapped in the housing. The ball is further configured to close the valve by sealing against the valve outlet in the upper face in response to a pressure differential across the ball created by unfiltered fuel entering the valve.

Claims (37)

1. A fuel filter system comprising a fuel filter having a housing for containing a fuel filter element, a fuel inlet and a fuel outlet, and a de-aeration system for the fuel filter system, said de-aeration system including:

a de-aeration valve having:

a valve inlet in a lower face of said valve for connection to said housing;

a valve outlet in an upper face of said valve, said valve outlet is in fluid communication with a filtered fuel outlet line for receiving filtered fuel from a clean fuel side of said fuel filter element, the filtered fuel outlet line including a fuel outlet valve; and

a ball having a relatively higher density than fuel in said filter system, wherein said ball is configured to lift between said lower face and said upper face in response to an air pressure differential acting on said ball for opening said valve to purge air trapped in said housing, and wherein said ball is further configured to close said valve by sealing against said valve outlet in said upper face in response to a pressure differential across said ball created by unfiltered fuel entering said valve.

2. A fuel filter system according to claim 1 wherein said housing comprises a filter head including said fuel inlet, said fuel outlet and said de-aeration valve, and a filter receptacle selectively engageable with said filter head for containing said fuel filter element.

3. A fuel filter system according to claim 1 wherein said de-aeration valve is adapted to provide purging of air trapped between said filter element and the internal walls of said housing.

4. A fuel filter system according to claim 1 wherein said ball is configured to seal against the valve inlet in said lower face when the fuel flow cycle through said filter system is not running.

5. A fuel filter system according to claim 1 wherein said system is adapted such that when the fuel flow cycle through said filter system ceases, gravity returns said ball to said lower face and a portion of said filtered fuel contained in said outlet moves into said valve, sealing said ball against said lower face.

6. A fuel filter system according to claim 1 wherein said ball is configured to move between said lower face and said upper face in response to air re-accumulating in said valve to purge said air trapped in said valve.

7. A fuel filter system according to claim 1 wherein said valve inlet is approximately 1-15 mm in diameter.

8. A fuel filter system according to claim 7 wherein said valve inlet is approximately 5 mm.

9. A fuel filter system according to claim 1 wherein said valve outlet is approximately 1-15 mm in diameter.

10. A fuel filter system according to claim 9 wherein said valve outlet is approximately 5 mm.

11. A fuel filter system according to claim 1 wherein said ball is approximately 2-20 mm in diameter.

12. A fuel filter system comprising a final fuel filter outlet, and a de-aeration system for the fuel filter system, said de-aeration system including:

i) a de-aeration valve having:

ii) a valve inlet in a lower face of said valve for connection to said housing;

iii) a valve outlet in an upper face of said valve; and

a ball having a relatively higher density than fuel in said filter system, wherein said ball is configured to lift between said lower face and said upper face in response to an air pressure differential acting on said ball for opening said valve to purge air trapped in said housing, and wherein said ball is further configured to close said valve by sealing against said valve outlet in said upper face in response to a pressure differential across said ball created by unfiltered fuel entering said valve, and

a final filtered fuel outlet valve in fluid communication with an injector gallery.

13. A fuel filter system according to claim 12 , wherein said fuel outlet valve is a ball valve, resiliently biased in a closed configuration.

14. A fuel filter system according to claim 13 wherein said resilient bias is provided by a spring.

15. A fuel filter system according to claim 13 wherein said resilient bias is provided by the weight of said ball.

16. A fuel filter system as in claim 12 , wherein said valve outlet is in fluid communication with a fuel tank.

17. A fuel filter system comprising a fuel filter having a housing for containing a fuel filter element, a fuel inlet and a fuel outlet, and a de-aeration system for the fuel filter system, said de-aeration system including:

a de-aeration valve having:

a valve inlet in a lower face of said valve for connection to said housing on a dirty fuel side of said filter element;

a valve outlet in an upper face of said valve, said valve outlet is in fluid communication with a filtered fuel outlet line for receiving filtered fuel from a clean fuel side of said fuel filter element;

a ball having a relatively higher density than fuel in said filter system, wherein said ball is configured to lift between said lower face and said upper face in response to an air pressure differential acting on said ball for opening said valve to purge air trapped in said housing, and wherein said ball is further configured to close said valve by sealing against said valve outlet in said upper face in response to a pressure differential across said ball created by unfiltered fuel entering said valve; and

a filtered fuel outlet valve in fluid communication with said filtered fuel outlet line.

18. A fuel filter system comprising a fuel filter having a housing for containing a fuel filter element, a fuel inlet and a fuel outlet, and a de-aeration system for the fuel filter system, said de-aeration system including:

a de-aeration valve having:

a valve inlet in a lower face of said valve for connection to said housing on a dirty fuel side of said fuel filter element;

a valve outlet in an upper face of said valve, said valve outlet is in fluid communication with a fuel tank;

a ball having a relatively higher density than fuel in said filter system, wherein said ball is configured to lift between said lower face and said upper face in response to an air pressure differential acting on said ball for opening said valve to purge air trapped in said housing, and wherein said ball is further configured to close said valve by sealing against said valve outlet in said upper face in response to a pressure differential across said ball created by unfiltered fuel entering said valve; and

a filtered fuel outlet valve in fluid communication with a filtered fuel outlet line.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 11, 2022
From: PARKER HANNIFIN MANUFACTURING (UK) LIMITED
To: PARKER HANNIFIN MANUFACTURING LIMITED
Reel/Frame 059556/0462 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 1, 2009
From: CORE, PHIL, MR.; ASHTON, JAMES, MR.; WILSON, STEVEN, MR.
To: PARKER HANNIFIN (UK) LIMITED
Reel/Frame 022481/0633 →
Continuity (2)
Continuation PCTGB2007003130 · Aug 16, 2007
Related Publication 20090178977A1 · Jul 16, 2009