Claims
- 1. An emission control module comprising:a valve body having a passage connecting a first port to a second port, the passage having a first passage portion extending from the first port along a first central axis, a second passage portion extending from the second port along a second central axis, and a third passage portion extending along a third central axis, the third passage portion connecting the first and second passage portions at respective first and second points along the third axis; and a seat extending along the third central axis and located between the first and second points, the seat having a first rim lying in a first plane oriented orthogonally with respect to the third central axis and a second rim lying in a second plane oriented obliquely with respect to the third central axis.
- 2. The emission control module according to claim 1, wherein the first and second axes lie in respective parallel planes that are orthogonal to the third central axis, and the first and second points are separated along the third central axis.
- 3. The emission control module according to claim 2, wherein an intersection of the second plane and the parallel plane including the second axis defines a line that is perpendicular to the second axis, and the line intersects a portion of the second axis that extends from the second point through the second port.
- 4. The emissions control module according to claim 3, wherein the valve body also has a conduit extending along a fourth central axis, and the conduit is in fluid communication with the second passage portion.
- 5. The emissions control module according to claim 4, wherein the conduit connects to the second passage portion at the second point.
- 6. The emissions control module according to claim 4, wherein the fourth central axis lies in the parallel plane including the second axis.
- 7. The emissions control module according to claim 6, wherein the second, third, and fourth central axes lie in a common plane, and the second and fourth central axes are coaxial.
- 8. An exhaust gas recirculation passage for an internal combustion engine, the passage comprising:an inlet; an outlet; and an orifice between the inlet and the outlet, the orifice defining a portion of the passage and extending along a central axis between a first rim and a second rim, the first rim lying in a first plane oriented orthogonally with respect to the central axis, and the second rim lying in a second plane oriented obliquely with respect to the central axis.
- 9. The passage according to claim 8, wherein the orifice comprises a surface connecting the first rim to the second rim, and the surface generally confronts the central axis.
- 10. The passage according to claim 9, wherein the surface comprises a first portion proximate the first rim and a second portion proximate the second rim, the first portion generally has a substantially constant cross-section, and the second portion tapers in at a first angle with respect to the third central axis from the second rim toward the first portion.
- 11. The passage according to claim 10, wherein the second plane is oriented with respect to first plane at a second angle, and a ratio of the first angle to the second angle is approximately 1.5:1.
- 12. The passage according to claim 10, wherein the surface further comprises a third portion connecting the first and second portions, the third portion tapering between the second and first portions at a third angle that is greater than the first angle.
- 13. The passage according to claim 12, wherein the surface further comprises a chamfer connecting the first portion to the first rim.
- 14. The passage according to claim 8, wherein the second plane is oriented with respect to the first plane at an angle less than 15°.
- 15. The passage according to claim 14, wherein the angle is between 5° and 10°.
- 16. A method of recirculating an exhaust gas flow from an exhaust port to an intake port of an internal combustion engine, the method comprising:providing a valve regulating the exhaust gas flow, the valve including a body defining a passage between an inlet port and an outlet port, the body including: a seat disposed along the passage, the seat having a rim providing an outlet for the exhaust gas flow through the seat, the rim lying in a plane that is oriented obliquely with respect to a first axis; and a valve movable with respect to the seat, the valve reciprocating along the first axis between a first configuration prohibiting the exhaust gas flow through the seat and a second configuration permitting the exhaust gas flow through the seat; and flowing the exhaust gas flow through the seat such that a multiplication product of manifold absolute pressure and differential pressure on opposite sides of the valve increases as the exhaust gas flow increases.
- 17. The method according to claim 16, wherein a portion of the passage connected to the outlet port extends along a second axis perpendicular to the first axis, and wherein the seat is oriented in the passage such that a smallest distance between the rim and the second axis is closest to the outlet port.
- 18. A method of recirculating exhaust gas flow from an exhaust port to an intake port of an internal combustion engine, the method comprising:providing a valve interposed between the exhaust and intake ports; measuring a differential pressure on opposite sides of the valve; measuring a manifold absolute pressure in the intake manifold, calculating a multiplication product of the differential pressure and the manifold absolute pressure; and determining a unique value of the exhaust gas flow for every multiplication product.
- 19. The method according to claim 18, wherein the providing the valve comprises providing:a valve body having a passage connecting a first port to a second port, the passage having a first passage portion extending from the first port along a first central axis, a second passage portion extending from the second port along a second central axis, and a third passage portion extending along a third central axis, the third passage portion extending orthogonally with respect to the first and second passage portions and connecting the first and second passage portions at respective first and second points separated along the third axis; and a seat extending along the third passage portion, the seat having a first rim lying in a first plane oriented orthogonally with respect to the third central axis, and the second rim lying in a second plane oriented obliquely with respect to the third central axis.
CROSS REFERENCE TO CO-PENDING APPLICATIONS
This application claims the benefit of the earlier filing date of U.S. Provisional Application No. 60/160,605, filed Oct. 20, 1999, the disclosure of which is incorporated by reference herein in its entirety.
US Referenced Citations (13)
Foreign Referenced Citations (1)
Number |
Date |
Country |
42 04 434 |
Aug 1993 |
DE |
Provisional Applications (1)
|
Number |
Date |
Country |
|
60/160605 |
Oct 1999 |
US |