Claims
- 1. An apparatus to separate oil from a gas in an internal combustion engine, comprising:
a rotatable member adapted to be rotatably driven by the internal combustion engine; a housing affixed to the rotatable member; at least one inlet hole disposed through one of either the rotatable member or the housing, permitting oil-containing gas to pass therethrough; at least one outlet hole disposed through one of either the housing or the rotatable member, permitting the gas to exit therefrom; and at least one labrynthine passage extending between the at least one inlet and the at least one outlet, wherein, as the rotatable member and housing rotate, the oil-containing gas within the labrynthine passage is subjected to centrifugal forces such that at least some of the oil is removed from the gas as the gas flows from the at least one inlet hole to the at least one outlet hole.
- 2. The apparatus of claim 1, further comprising:
at least one oil outlet hole disposed substantially on an outer periphery of either the housing or the rotatable member, permitting oil separated from the gas to drain from the housing.
- 3. The apparatus of claim 1, further comprising:
at least one attachment tab extending from a rear of the housing and adapted to engage at least one hole disposed through the rotatable member, wherein the at least one attachment tab engages the at least one hole to removably attach the housing to the rotatable member.
- 4. The apparatus of claim 1, wherein:
the rotatable member is a gear operatively connected to a camshaft of the internal combustion engine.
- 5. The apparatus of claim 1, wherein:
the housing is circular and the at least one inlet hole comprises a plurality of inlet holes disposed about a portion of a periphery of the housing.
- 6. The apparatus of claim 1, wherein:
the labrinthine path is defined by a plurality of walls within the housing.
- 7. The apparatus of claim 6, wherein the plurality of walls comprise:
a first circumferential wall extending around a periphery of the housing; a radial wall extending inwardly from the first circumferential wall a predetermined distance; a second circumferential wall extending at least partially around the periphery of the housing, offset inwardly a predetermined distance from the first circumferential wall; and a pair of side walls extending from the first circumferential wall toward the second circumferential wall and at least partially surrounding the at least one outlet hole.
- 8. The apparatus of claim 7, wherein:
the at least one inlet hole comprises a plurality of inlet holes disposed on either side of the at least one radial wall, between the first circumferential wall and the second circumferential wall.
- 9. The apparatus of claim 8, wherein:
the plurality of inlet holes are even in number and are symmetrically disposed on either side of the radial wall, and at least some of the plurality of inlet holes permit oil separated from the gas to drain from the housing.
- 10. The apparatus of claim 1, wherein:
oil separated from the gas drains into a crankcase of the engine.
- 11. An internal combustion engine, comprising:
a cylinder containing a reciprocating piston; a crankshaft operatively connected to the piston; a first gear connected to the crankshaft; a camshaft disposed adjacent the piston; a second gear connected to the camshaft; a timing member extending between the first gear and the second gear to operatively connect the gears to one another; a housing affixed to the second gear; at least one inlet hole disposed through one of either the second gear or the housing, permitting oil-containing gas to pass therethrough; at least one outlet hole disposed through one of either the housing or the second gear, permitting the gas to exit therefrom; and at least one labrynthine passage extending between the at least one inlet and the at least one outlet, wherein, as the second gear and housing rotate, the oil-containing gas within the labrynthine passage is subjected to centrifugal forces such that at least some of the oil is removed from the gas as the gas flows from the at least one inlet hole to the at least one outlet hole.
- 12. The engine of claim 11, further comprising:
at least one oil outlet hole disposedsubstantially on an outer periphery of either the housing or the rotatable member, permitting oil separated from the gas to drain from the housing.
- 13. The engine of claim 11, further comprising:
at least one attachment tab extending from a rear of the housing and adapted to engage at least one hole disposed through the second gear, wherein the at least one attachment tab engages the at least one hole to removably attach the housing to the second gear.
- 14. The engine of claim 11, wherein the housing is circular and the at least one inlet hole comprises a plurality of inlet holes disposed about a portion of a periphery of the housing.
- 15. The engine of claim 11, wherein the labrinthine path is defined by a plurality of walls within the housing.
- 16. The engine of claim 15, wherein the plurality of walls comprise:
a first circumferential wall extending around a periphery of the housing; a radial wall extending inwardly from the first circumferential wall a predetermined distance; a second circumferential wall extending at least partially around the periphery of the housing, offset inwardly a predetermined distance from the first circumferential wall; and a pair of side walls extending from the first circumferenital wall toward the second circumferential wall and at least partially surrounding the at least one outlet hole.
- 17. The engine of claim 16, wherein:
the at least one inlet hole comprises a plurality of inlet holes disposed on either side of the at least one radial wall, between the first circumferential wall and the second circumferential wall.
- 18. The engine of claim 17, wherein:
the plurality of inlet holes are even in number and are symmetrically disposed on either side of the radial wall, and at least some of the plurality of inlet holes permit oil separated from the gas to drain from the housing.
- 19. The engine of claim 18, wherein:
the oil-containing gas is a blow-by gas.
- 20. The engine of claim 19, further comprising:
a crankcase wherein oil separated from the blow-by gas is permitted to drain into the crankcase of the engine.
- 21. A decompressor for an internal combustion engine, comprising:
a camshaft; a rotatable member attached to the camshaft, adapted to be rotatably driven by the camshaft; a centrifugal weight pivotally attached to the rotatable member; and a pin movably connected to the centrifugal weight, extending from the centrifugal weight to a base circle of a first cam on the camshaft, wherein a tip of the pin extends to the base circle when rotation of the camshaft is below a predetermined speed, and wherein the tip is withdrawn from the base circle when rotation of the camshaft exceeds the predetermined speed.
- 22. The decompressor of claim 21, wherein:
the tip is adapted to displace a rocker arm an upward distance sufficient to keep an associated valve open for a time period long enough to result in a reduced compression by comparison with a compression achieved when the tip is withdrawn from the base circle.
- 23. The decompressor of claim 21, further comprising:
a spring biasing the centrifugal weight such that the tip extends to the base circle when rotation of the camshaft is below the predetermined speed; a groove positioned on the pin substantially at an end opposite the tip; an elongated tooth disposed on the centrifugal weight adapted to engage the groove and move the pin together with movement of the centrifugal weight.
- 24. An apparatus to separate oil from a gas in and to decompress an internal combustion engine, comprising:
a camshaft; a rotatable member attached to the camshaft, adapted to be rotatably driven by the camshaft; a housing affixed to the rotatable member; at least one inlet hole disposed through one of either the rotatable member or the housing, permitting oil-containing gas to pass therethrough; at least one outlet hole disposed through one of either the housing or the rotatable member, permitting the gas to exit therefrom; and at least one labrynthine passage extending between the at least one inlet and the at least one outlet, wherein, as the rotatable member and housing rotate, the oil-containing gas within the labrynthine passage is subjected to centrifugal forces such that at least some of the oil is removed from the gas as the gas flows from the at least one inlet hole to the at least one outlet hole; a centrifugal weight pivotally attached to the rotatable member; and a pin movably connected to the centrifugal weight, extending from the centrifugal weight to a base circle of a first cam on the camshaft; wherein a tip of the pin extends to the base circle when rotation of the camshaft is below a predetermined speed, and wherein the tip is withdrawn from the base circle when rotation of the camshaft exceeds the predetermined speed.
- 25. The apparatus of claim 24, wherein:
the centrifugal weight is disposed within the housing.
- 26. The apparatus of claim 24, wherein:
the tip is adapted to displace a rocker arm an upward distance sufficient to keep an associated valve open for a time period long enough to result in a reduced compression by comparison with a compression achieved when the tip is withdrawn from the base circle.
- 27. The apparatus of claim 24, further comprising:
a spring biasing the centrifugal weight such that the tip extends to the base circle when rotation of the camshaft is below the predetermined speed; a groove positioned on the pin substantially at an end opposite the tip; an elongated tooth disposed on the centrifugal weight adapted to engage the groove and move the pin together with movement of the centrifugal weight.
- 28. The apparatus of claim 24, further comprising:
at least one oil outlet hole disposed substantially on an outer periphery of either the housing or the rotatable member, permitting oil separated from the gas to drain from the housing.
- 29. The apparatus of claim 24, further comprising:
at least one attachment tab extending from a rear of the housing and adapted to engage at least one hole disposed through the rotatable member, wherein the at least one attachment tab engages the at least one hole to removably attach the housing to the rotatable member.
- 30. The apparatus of claim 24, wherein:
the rotatable member is a gear operatively connected to a camshaft of the internal combustion engine.
- 31. The apparatus of claim 24, wherein:
the housing is circular and the at least one inlet hole comprises a plurality of inlet holes disposed about a portion of a periphery of the housing.
- 32. The apparatus of claim 24, wherein:
the labrinthine path is defined by a plurality of walls within the housing.
- 33. The apparatus of claim 32, wherein the plurality of walls comprise:
a first circumferential wall extending around a periphery of the housing; a radial wall extending inwardly from the first circumferential wall a predetermined distance; a second circumferential wall extending at least partially around the periphery of the housing, offset inwardly a predetermined distance from the first circumferential wall; and a pair of side walls extending from the first circumferential wall toward the second circumferential wall and at least partially surrounding the at least one outlet hole.
- 34. The apparatus of claim 33, wherein:
the centrifugal weight is disposed between the pair of side walls.
- 35. The apparatus of claim 33, wherein:
the at least one inlet hole comprises a plurality of inlet holes disposed on either side of the at least one radial wall, between the first circumferential wall and the second circumferential wall.
- 36. The apparatus of claim 35, wherein:
the plurality of inlet holes are even in number and are symmetrically disposed on either side of the radial wall, and at least some of the plurality of inlet holes permit oil separated from the gas to drain from the housing.
- 37. The apparatus of claim 24, wherein:
oil separated from the gas drains into a crankcase of the engine.
- 38. An internal combustion engine, comprising:
a cylinder containing a reciprocating piston; a crankshaft operatively connected to the piston; a first gear connected to the crankshaft; a camshaft disposed adjacent the piston; a second gear connected to the camshaft; a timing member extending between the first gear and the second gear to operatively connect the gears to one another; a housing affixed to the second gear; at least one inlet hole disposed through one of either the second gear or the housing, permitting oil-containing gas to pass therethrough; at least one outlet hole disposed through one of either the housing or the second gear, permitting the gas to exit therefrom; at least one labrynthine passage extending between the at least one inlet and the at least one outlet, wherein, as the second gear and housing rotate, the oil-containing gas within the labrynthine passage is subjected to centrifugal forces such that at least some of the oil is removed from the gas as the gas flows from the at least one inlet hole to the at least one outlet hole; a centrifugal weight pivotally attached to the second gear; and a pin movably connected to the centrifugal weight, extending from the centrifugal weight to a base circle of a first cam on the camshaft; wherein a tip of the pin extends to the base circle when rotation of the camshaft is below a predetermined speed, and wherein the tip is withdrawn from the base circle when rotation of the camshaft exceeds the predetermined speed.
- 39. The engine of claim 38, wherein:
the centrifugal weight is disposed within the housing.
- 40. The engine of claim 38, wherein:
the tip is adapted to displace a rocker arm an upward distance sufficient to keep an associated valve open for a time period long enough to result in a reduced compression by comparison with a compression achieved when the tip is withdrawn from the base circle.
- 41. The engine of claim 38, further comprising:
a spring biasing the centrifugal weight such that the tip extends to the base circle when rotation of the camshaft is below the predetermined speed; a groove positioned on the pin substantially at an end opposite the tip; an elongated tooth disposed on the centrifugal weight adapted to engage the groove and move the pin together with movement of the centrifugal weight.
- 42. The engine of claim 38, further comprising:
at least one oil outlet hole disposedsubstantially on an outer periphery of either the housing or the rotatable member, permitting oil separated from the gas to drain from the housing.
- 43. The engine of claim 38, further comprising:
at least one attachment tab extending from a rear of the housing and adapted to engage at least one hole disposed through the second gear, wherein the at least one attachment tab engages the at least one hole to removably attach the housing to the second gear.
- 44. The engine of claim 38, wherein:
the housing is circular and the at least one inlet hole comprises a plurality of inlet holes disposed about a portion of a periphery of the housing.
- 45. The engine of claim 38, wherein:
the labrinthine path is defined by a plurality of walls within the housing.
- 46. The engine of claim 44, wherein the plurality of walls comprise:
a first circumferential wall extending around a periphery of the housing; a radial wall extending inwardly from the first circumferential wall a predetermined distance; a second circumferential wall extending at least partially around the periphery of the housing, offset inwardly a predetermined distance from the first circumferential wall; and a pair of side walls extending from the first circumferenital wall toward the second circumferential wall and at least partially surrounding the at least one outlet hole.
- 47. The engine of claim 46, wherein:
the centrifugal weight is disposed between the pair of side walls.
- 48. The engine of claim 46, wherein:
the at least one inlet hole comprises a plurality of inlet holes disposed on either side of the at least one radial wall, between the first circumferential wall and the second circumferential wall.
- 49. The engine of claim 48, wherein:
the plurality of inlet holes are even in number and are symmetrically disposed on either side of the radial wall, and at least some of the plurality of inlet holes permit oil separated from the gas to drain from the housing.
- 50. The engine of claim 49, wherein:
the oil-containing gas is a blow-by gas.
- 51. The engine of claim 50, further comprising:
a crankcase wherein oil separated from the blow-by gas is permitted to drain into the crankcase of the engine.
- 52. An internal combustion engine, comprising:
a cylinder containing a reciprocating piston; a crankshaft operatively connected to the piston; a first gear connected to the crankshaft; a camshaft disposed adjacent the piston; a second gear connected to the camshaft; a timing member extending between the first gear and the second gear to operatively connect the gears to one another; a centrifugal weight pivotally attached to the second gear; and a pin movably connected to the centrifugal weight, extending from the centrifugal weight to a base circle of a first cam on the camshaft; wherein a tip of the pin extends to the base circle when rotation of the camshaft is below a predetermined speed, and wherein the tip is withdrawn from the base circle when rotation of the camshaft exceeds the predetermined speed.
- 53. The engine of claim 52, wherein:
the tip is adapted to displace a rocker arm an upward distance sufficient to keep an associated valve open for a time period long enough to result in a reduced compression by comparison with a compression achieved when the tip is withdrawn from the base circle.
- 54. The engine of claim 52, further comprising:
a spring biasing the centrifugal weight such that the tip extends to the base circle when rotation of the camshaft is below the predetermined speed; a groove positioned on the pin substantially at an end opposite the tip; an elongated tooth disposed on the centrifugal weight adapted to engage the groove and move the pin together with movement of the centrifugal weight.
Parent Case Info
[0001] This application relies on the following three provisional applications for priority: (1) U.S. Provisional Patent Application Ser. No. 60/229,338, entitled “FLEX Engine 610,” which was filed on Sep. 1, 2000; (2) U.S. Provisional Patent Application Ser. No. 60/263,501, entitled “FLEX Engine 610,” which was filed on Jan. 24, 2001; and (3) U.S. Provisional Patent Application entitled “Blow-By Gas Separator for an Internal Combustion Engine,” which was filed on Aug. 31, 2001. All three applications are incorporated herein by reference.
Provisional Applications (3)
|
Number |
Date |
Country |
|
60229338 |
Sep 2000 |
US |
|
60263501 |
Jan 2001 |
US |
|
60316029 |
Aug 2001 |
US |