IP Library Granted Patent US 7,461,642
Granted Patent B2
US 7,461,642 · App. 11/332,082 · Granted Dec 9, 2008

Rotary-actuated exhaust gas recirculation valve having a seating force attenuator

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Quick Facts
Patent No.
US 7,461,642
App. No.
11/332,082
Granted
Dec 9, 2008
Kind
B2
Abstract

Means for attenuating the seating force of a cam-actuated poppet valve such as an exhaust gas recirculation valve in an internal combustion engine including a shock-absorber disposed between the valve stem and valve head. In a currently preferred embodiment, the shock-absorber is a wave washer disposed around the valve stem and captured between the valve stem and the valve head, between which axial motion is allowed. After the valve head engages the valve seat to close the valve, any further travel of the actuator cam and valve stem is absorbed by compression of the wave washer, thus attenuating additional force on elements of the valve actuation train. In opening the valve, the reverse occurs, in that initial motion of the actuator cam and valve stem serves to relieve compression of the wave washer, followed by removal of the valve head from the valve seat.

Claims (46)

1. An internal combustion engine having an intake system and an exhaust system, the engine comprising an exhaust gas recirculation valve assembly for metering exhaust gas from said exhaust system into said intake system, wherein said exhaust gas recirculation valve assembly includes:

a) a valve body defining a first chamber in communication with one of said exhaust system and said intake system and a second chamber in communication with the other of said exhaust system and said intake system, wherein said first and second chambers are joined by a common port surrounded by a valve seat, said body further defining a first bore in a wall of one of said first and second chambers;

b) a poppet valve having a stem and a head, said stem being slidably disposed in said first bore and said head being selectively inatable with said seat to define a valve for regulating flow of material between said first and second chambers across said seat; and

c) a shock-absorber disposed between said stem and said head to attenuate closing force of said valve, wherein said shock-absorber is mounted in surrounding relationship on said stem.

2. A poppet valve assembly comprising:

a) a valve body defining a chamber having an outlet defined by a port surrounded by a valve seat, said body further defining a first bore in a wall of said chamber;

b) a poppet valve having a stem and a head, said stem being slidably disposed in said first bore and said head being selectively matable with said seat to define a valve for regulating flow of material across said seat; and

c) a shock-absorber disposed between said stem and said head to attenuate closing force of said valve, wherein said shock-absorber is mounted in surrounding relationship on said stem.

3. A poppet valve assembly in accordance with claim 2 further comprising a retainer for retaining said shock-absorber on said valve stem.

4. A poppet valve assembly in accordance with claim 2 wherein said shock-absorber is a wave washer.

5. A poppet valve assembly comprising:

a) a valve body defining a chamber having an outlet defined by a port surrounded by a valve seat, said body further defining a first bore in a wall of said chamber;

b) a poppet valve having a stem and a head, said stem being slidably disposed in said first bore and said head being selectively matable with said seat to define a valve for regulating flow of material across said seat; and

c) a shock-absorber disposed between said stem and said head to attenuate closing force of said valve, wherein said shock-absorber is a wave washer mounted in surrounding relationship on said valve stem on a side of said valve head adjacent said first bore.

6. A poppet valve assembly in accordance with claim 5 further comprising a retainer for retaining said wave washer on said valve stem and a first plate for retaining said wave washer end said valve stem on said valve head such that said wave washer defines an axially-compressible element between said valve head and said valve stem.

7. A poppet valve assembly in accordance with claim 6 further comprising a second force plate fixedly mounted to said valve head.

8. A poppet valve assembly comprising:

a) a valve body defining a chamber having an outlet defined by a port surrounded by a valve seat, said body further defining a first bore in a wall of said chamber;

b) a poppet valve having a stem and a head, said stem being slidably disposed in said first bore and said head being selectively matable with said seat to define a valve for regulating flow of material across said seat;

c) an axial second bore through said valve bead for sliding passage of said valve stem;

d) a shock-absorber disposed between said stem and said head to attenuate closing force of said valve, wherein said shock absorber is a wave washer mounted in surrounding relationship on said valve stem on a side of said valve head opposite said first bore; and

e) a retainer for retaining said wave washer on said valve stem.

9. A poppet valve assembly in accordance with claim 8 wherein said retainer includes a first force plate mounted on said valve stem adjacent said wave washer.

10. A poppet valve assembly in accordance with claim 9 further comprising a recess formed in said side of said valve head for receiving said wave washer.

11. A poppet valve assembly in accordance with claim 10 wherein said recess is formed to a depth in said head such that when said wave washer is disposed without axial compression within said recess said first force plate is off-spaced from said side of said valve head opposite said first bore.

12. A poppet valve assembly in accordance with claim 8 further comprising an actuator operable upon said valve stem for opening and closing said valve.

13. A poppet valve assembly in accordance with claim 12 wherein said actuator comprises:

a) a cam plate rotatable about an axis orthogonal to an axis of said valve stem, said cam plate having a slot comprising first and second substantially parallel sides formed in spiral relationship to said cam plate axis;

b) a roller rotatably disposed on said valve stem and positioned within said slot; and

c) a driver for rotating said cam plate about said cam plate axis.

14. A poppet valve assembly in accordance with claim 13 wherein said driver is an electric motor.

15. An exhaust gas recirculation valve assembly for metering exhaust gas from an exhaust system into an intake system of an internal combustion engine, comprising:

a) a valve body defining a first chamber in communication with one of said exhaust system and said intake system and a second chamber in communication with the other of said exhaust system and said intake system, wherein said first and second chambers are joined by a common port surrounded by a valve seat, said body further defining a first bore in a wall of one of said first and second chambers;

b) a poppet valve having a stem and a head, said stem being slidably disposed in said first bore and said head being selectively matable with said seat to define a valve for regulating flow of material between said first and second chambers across said seat; and

c) a shock-absorber disposed between said stem and said head to attenuate closing force of said valve, wherein said shock-absorber is mounted in surrounding relationship on said stem.

16. An exhaust gas recirculation valve assembly in accordance with claim 15 further comprising actuator means including:

a) a cam plate rotatable about an axis orthogonal to an axis of said valve stem, said cam plate having a slot comprising first and second substantially parallel sides formed in spiral relationship to said cam plate axis;

b) a roller rotatably disposed on said valve stem and positioned within said slot; and

c) a driver for rotating said cam plate about said cam plate axis.

17. An exhaust gas recirculation valve assembly in accordance with claim 15 further comprising a retainer for retaining said shock-absorber on said valve stem.

18. An exhaust gas recirculation valve assembly in accordance with claim 15 wherein said shock-absorber is a wave washer.

19. An exhaust gas recirculation valve assembly in accordance with claim 15 wherein said shock-absorber comprises:

a) an axial second bore through said valve head for sliding passage of said valve stem;

b) a wave washer mounted in surrounding relationship on said valve stem on a side of said valve head opposite said first bore; and

c) a first force plate mounted on said valve stem adjacent said wave washer.

20. An exhaust gas recirculation valve assembly in accordance with claim 19 further comprising a recess formed in said side of said valve head for receiving said wave washer.

Assignments (3)
RELEASE OF SECURITY INTEREST Recorded Apr 15, 2011
From: THE BANK OF NEW YORK MELLON
To: DELPHI CONNECTION SYSTEMS HOLDINGS LLC; DELPHI PROPERTIES MANAGEMENT LLC; DELPHI TECHNOLOGIES, INC.; DELPHI AUTOMOTIVE SYSTEMS LLC; DELPHI CONNECTION SYSTEMS LLC; DELPHI CORPORATION; DELPHI HOLDINGS LLC; DELPHI INTERNATIONAL SERVICES COMPANY LLC; DELPHI MEDICAL SYSTEMS LLC; DELPHI TRADE MANAGEMENT LLC
Reel/Frame 026138/0574 →
SECURITY AGREEMENT Recorded Nov 13, 2009
From: DELPHI TECHNOLOGIES, INC.
To: BANK OF NEW YORK MELLON, AS ADMINISTRATIVE AGENT, THE
Reel/Frame 023510/0562 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 13, 2006
From: BIRCANN, RAUL A.; HAINES, JOSHUA M.
To: DELPHI TECHNOLOGIES, INC.
Reel/Frame 017486/0877 →