Scavenger Valve Method and Device
20190284970 ยท 2019-09-19
Assignee
Inventors
- Justin K. Russell (Needville, TX, US)
- Gregory Ricknold (Houston, TX, US)
- Ryan Miller (Manvel, TX, US)
- Christopher Rojas (Pearland, TX, US)
Cpc classification
F02B75/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L3/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02B2075/025
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L2003/251
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L9/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F01L1/38
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02B75/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01L3/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A scavenger valve and method of directing gas in a two stroke engine are provided involving poppet elements in a scavenger valve with specific multiple, different flow paths from individual poppet heads.
Claims
1. A method of directing intake gas in a multiple-poppet-element scavenger valve in a two stroke engine, the valve comprising a seat plate disposed opposite a guard plate, with at least one line of poppet elements having substantially circular poppet heads, the poppet elements being mounted in the guard plate, the guard plate also having at least one exit port, the method comprising: receiving a poppet opening pressure from the intake gas; and directing over of gas particles flowing across at least one poppet head directly into the engine.
2. A method as in claim 1, wherein said directing comprises directing particles across the at least one poppet head through at least three separate flow paths into directly into the engine.
3. A method as in claim 2, wherein said directing comprises directing particles across the at least one other poppet head through at least four separate flow paths into directly into the engine.
4. A device for directing intake gas in a multiple-poppet-element scavenger valve in a two stroke engine, the device comprising: means for receiving a poppet opening pressure from the intake gas; and means for directing over of gas particles flowing across at least one poppet head directly into the engine.
5. A device as in claim 4, wherein said means for receiving comprises a seat plate and a set of poppet elements biased against said seat plate to open when the opening pressure exceeds the bias of the poppets against the seat plate.
6. A device as in claim 5, wherein said means for directing comprises a guard plate, with at least one line of the set of poppet elements, having substantially circular poppet heads, mounted in the guard plate, the guard plate also having at least three exit ports each defining a distinct flow path into the engine, wherein over of the circumference of at least some of the set of poppet elements is disposed directly over the three distinct exit paths.
7. A scavenger valve comprising: a guard plate including: at least one line of poppet elements having substantially round poppet heads, at least one exit port having four poppet elements partially disposed in line with the exhaust port, wherein at least some of the gas flowing over the poppet head flows directly into the exit port without flowing over any part of the guard plate; wherein an angle of exposure of each of four poppet elements is more than about 43 degrees; a seat plate including a valve seat positioned and arranged to engage the poppet head.
8. A valve as in claim 7, wherein the guard plate further comprises a spacer portion integrally formed in said guard plate and determining the lift of the poppet elements.
9. A valve as in claim 7, wherein the poppet elements are biased against said seat plate.
10. A valve as in claim 9, wherein the poppet elements are biased by springs located in said guard plate.
11. A scavenger valve comprising: a guard plate including: at least one line of poppet elements having substantially round poppet heads; wherein at least some of the poppets have four exposed sections such that, for each exposed section: at least some of the gas flowing over the exposed section flows directly into an exit port located in said guard plate without flowing over any part of the guard plate and each of the four exposed sections is exposed to a different exit port than the other three exposed sections of any individual poppet head; a seat plate including a valve seat positioned and arranged to engage the poppet head.
12. A valve as in claim 11, wherein the guard plate further comprises a spacer portion integrally formed in said seat plate and determining the lift of the poppet elements.
13. A valve as in claim 11, wherein at least some of the poppet have three exposed sections such that, for each exposed section, at least some of the gas flowing over the exposed section flows directly into an exit port without flowing over any part of the guard plate and each of the three exposed sections is exposed to a different exit port than the other two exposed sections of any individual poppet head.
14. A valve as in claim 13, wherein the total angle of exposure of each of a majority of the poppets is between about 180 degrees and about 225 degrees.
15. A valve as in claim 14, wherein the total angle of exposure of some of the poppets is about 183 degrees.
16. A valve as in claim 14, wherein the total angle of exposure of some of the poppets is about 225 degrees.
17. A valve as in claim 16, wherein the total angle of exposure of some of the poppets is about 183 degrees.
18. A valve as in claim 11, wherein said exit port is substantially circular in cross-section.
19. A valve as in claim 11, wherein the diameter of at least one poppet is greater than about one inch.
20. A valve as in claim 19 wherein the diameter of a plurality of the poppets is about 1.325 inches.
21. A valve as in claim 19 wherein the diameter of a plurality of the poppets is about 1.345 inches.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
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DETAILED DESCRIPTION OF EXAMPLES OF THE INVENTION
[0025] Referring to
[0026] Referring again to
[0027] In some such examples, the total angle of exposure of each of a majority of the poppets 108 is between about 180 degrees and about 225 degrees.
[0028] As used in this document, angle of exposure refers to the angle measured from the center of a poppet head to its circumference at the points where the circumference is shaded from an exit port by the guard plate. For example, as seen in
[0029] In a further example, the total angle of exposure of some of the poppets 108 is about 183 degrees. As used in this document, total angle of exposure means the total, in degrees of the angle of exposure of each exposed segment. In the illustrated example, the exit port is substantially circular in cross-section, with the exception of the exit ports at the perimeter of guard plate 114 (e.g., port 532 of
[0030] As seen in
[0031] Again as seen in
[0032] Referring again to
[0033] In some examples, the valve includes a maximum free lift area of about 43.8 square inches. In further examples, an effective flow area of between about 13.3 and about 58.0 square inches is obtained for between about 24 and about 90 poppet elements. In still further examples, an effective force area of between about 23.9 and 89.5 square inches is obtained for between about 24 and 90 poppet elements.
[0034] Is some examples of the invention, a method is provided for directing intake gas in a multiple-poppet-element scavenger valve in a two stroke engine, wherein the valve comprises: a seat plate 106 disposed opposite a guard plate 114, with at least one line of poppet elements 108 having substantially circular poppet heads 116, the poppet elements 108 being mounted in the guard plate 114 in holes 124 (
[0035] In a further example, the method of directing comprises directing gas particles the poppet head 116 through at least four separate flow paths defined by exit ports 300 directly into the engine 600.
[0036] In still a further example of the invention, a device is provided for directing intake gas in a multiple-poppet-element scavenger valve in a two stroke engine. In at least one example, the device includes: a means for receiving a poppet opening pressure from the intake gas; and means for directing over of gas particles flowing across at least one poppet head directly into the engine. In one example, the means for receiving comprises a seat plate 106 and a set of poppet elements biased against said seat plate 106 to open when the opening pressure exceeds a bias force of the poppets 108 by springs 110 against the seat area 118. In one example, said means for directing comprises a guard plate 114, with at least one line of the set of poppet elements 108, having substantially circular poppet heads 116, mounted in the guard plate 114, the guard plate 114 also having at least three exit ports 300 each defining a distinct flow path into the engine, wherein over of the circumference of at least some of the set of poppet elements 108 is disposed directly over the three distinct exit paths.
[0037] The above description is by way of example only, and variants from the above will occur to those of ordinary skill that are within the spirit of the invention; nothing in this section or previous sections should be interpreted to limit the scope of the invention beyond that defined by the claims below, unless a term is specifically defined.