Claims
- 1. An internal combustion engine comprising:
- a housing defining a cylindrical working chamber having inlet ports and exhaust ports; first and second interdigitated piston assemblies rotatably movable in said cylindrical working chamber, each of the piston assemblies including at least one pair of diametrically opposed radial vanes forming pistons in the working chamber and dividing the working chamber into a plurality of pairs of diametrically opposed compartments; and,
- a braking mechanism for controlling the motion of the piston assemblies to cause intermittent rotation of the first and second piston assemblies in the same direction during recurrent periods of rotation with each of said first and second piston assemblies being stopped between said periods of rotation, the braking mechanism including a first and second set of cam surfaces on the first and second piston assemblies respectively and a set of movable members adapted to alternately engage the first set of cam surfaces to stop the rotation of the first piston assembly while permitting the second piston assembly to rotate freely and then engage the second set of cam surfaces to stop the rotation of the second piston assembly while permitting the first piston assembly to rotate freely.
- 2. An internal combustion engine comprising:
- a housing defining a cylindrical working chamber having inlet ports and exhaust ports;
- first and second interdigitated piston assemblies rotatable movable in said cylindrical working chamber, each of the piston assemblies including at least one pair of diametrically opposed radial vanes forming pistons in the working chamber and dividing the working chamber into a plurality of pairs of diametrically opposed compartments; and,
- a braking mechanism for controlling the motion of the piston assemblies to cause intermittent rotation of the first and second piston assemblies in the same direction during recurrent periods of rotation with each of said first and second piston assemblies being stopped between said periods of rotation, the braking mechanism including:
- a first and second set of cam surfaces on the first and second piston assemblies respectively and a set of movable members adapted to alternately engage the first set of cam surfaces to stop the rotation of the first piston assembly while permitting the second piston assembly to rotate freely and then engage the second set of cam surfaces to stop the rotation of the second piston assembly while permitting the first piston assembly to rotate freely;
- a first elongate pivotable member having first and second ends, the first end of the first pivotable member being adapted to engage said first set of cam surfaces on the first piston assembly;
- a second elongate pivotable member having first and second ends, the first end of the second pivotable member being adapted to engage said second set of cam surfaces on the second piston assembly; and,
- a slidable member disposed between the first pivotable member and the second pivotable member for transmitting motion between the second end of the first pivotable member and the second end of the second pivotable member.
- 3. The internal combustion engine according to claim 2 wherein: said first set of cam surfaces on the first piston assembly includes a first pair of ramp surfaces and a first pair of stop blocks; and,
- said second set of cam surfaces on the second piston assembly includes a second pair of ramp surfaces and a second pair of stop blocks.
- 4. The internal combustion engine according to claim 3 wherein:
- said first pair of stop blocks are adapted to selectively engage first end of the first pivotable member when the first pivotable member is in a first position and stop said rotation of the first piston assembly when the first end of the first pivotable member is engaged with a one of said first pair of stop blocks; and,
- said second pair of stop blocks are adapted to selectively engage the first end of the second pivotable member when the second pivotable member is in a first position and stop said rotation of the second piston assembly when the first end of the second pivotable member is engaged with a one of said second pair of stop blocks.
- 5. The internal combustion engine according to claim 4 wherein:
- the first pair of ramp surfaces are adapted to engage the first end of the first pivotable member when the first pivotable member is in a second position opposite said first position and simultaneously urge i) the first pivotable member from said second position to said first position; and, ii) together with said slidable member, said second pivotable member into said second position; and,
- the second pair of ramp surfaces are adapted to engage the first end of the second pivotable member when the second pivotable member is in a second position opposite said first position and simultaneously urge i) the second pivotable member from said second position to said first position; and, ii) together with said slidable member, said first pivotable member into said second position.
- 6. The internal combustion engine according to claim 5 wherein the slidable member includes first and second rod members extending between the second end of the first pivotable member and the second end of the second pivotable member, the first and second rod members being connected together by an intermediate damping spring member to permit relative slidable motion between the first and second rod members.
- 7. The internal combustion engine according to claim 6 wherein:
- said first pair of ramp surfaces are formed on opposite sides of said first piston assembly;
- said first pair of stop blocks are formed on opposite sides of said first piston assembly;
- said second pair of ramp surfaces are formed on opposite sides of said second piston assembly; and,
- said second pair of stop blocks are formed on opposite sides of said second piston assembly.
- 8. An internal combustion engine comprising:
- a housing defining a cylindrical working chamber having inlet ports and exhaust ports;
- first and second interdigitated piston assemblies rotatable in said cylindrical working chamber about a longitudinal axis, each of the piston assemblies including at least one pair of diametrically opposed radial vanes forming pistons in the working chamber and dividing the working chamber into a plurality of pairs of diametrically opposed compartments;
- a braking mechanism for controlling the motion of the piston assemblies to cause intermittent rotation of the first and second piston assemblies in the same direction during recurrent periods of rotation with each of said first and second piston assemblies being stopped between said periods of rotation;
- an elongate output shaft connected to said first and second piston assemblies, the output shaft being disposed along said longitudinal axis and defining a set of connection areas arranged on said output shaft to extend in directions transverse to said longitudinal axis; and,
- a set of link elements engagable with said set of connection areas, each link element of said set of link elements being simultaneously slidably engagable with both of said first and second piston assemblies to transmit rotational motion from the first and second piston assemblies to said output shaft and to permit relative rotation between the first and second piston assemblies about said longitudinal axis within a predetermined range.
- 9. The internal combustion engine according to claim 8 wherein each link element of said set of link elements includes a first group of link areas adapted for slidable engagement with said first piston assembly and a second group of link areas adapted for slidable engagement with said second piston assembly to permit said relative rotation between the first and second piston assemblies about said longitudinal axis within said predetermined range.
- 10. The internal combustion engine according to claim 9 wherein each link element of said set of link elements are rotatably engaged with said set of connection areas.
- 11. The internal combustion engine according to claim 10 wherein:
- said set of connection areas includes at least one connection axle-member extending from the output shaft in a direction substantially perpendicular to said longitudinal axis;
- said set of link elements includes at least one link member rotatably carried on said at least one connection axle member;
- said first group of link areas includes at least one first link pin adapted for slidable movement in an arcuate groove provided in said first piston assembly; and,
- said second group of link areas includes at least one second link pin adapted for slidable movement in an arcuate groove provided in said second piston assembly.
- 12. The internal combustion engine according to claim 11 wherein:
- said at least one connection axle member includes a spherical bearing surface extending from the output shaft and a circular tab member extending from the spherical bearing surface; and,
- said at least one link member is rotatably carried on said circular tab member.
- 13. The internal combustion engine according to claim 12 wherein said predetermined range is substantially between 0 and 70 degrees.
- 14. The internal combustion engine according to claim 10 wherein:
- said set of connection areas includes a pair of connection axle members extending in substantially diametrically opposite directions from the output shaft substantially perpendicular to said longitudinal axis;
- said set of link elements includes first and second link members rotatably carried on said pair of connection axle members;
- said first group of link areas includes a first link pin carried on a first connection axle member of said pair of connection axle members and a second link pin carried the second connection axle member of said pair of connection axle members, the first and second link pins being adapted for slidable movement in an arcuate groove provided in said first piston assembly; and,
- said second group of link areas includes a third link pin carried said first connection axle member and a fourth link pin carried the second connection axle member, the third and fourth link pins being adapted for slidable movement in an arcuate groove provided in said second piston assembly.
- 15. The internal combustion engine according to claim 14 wherein:
- said first connection axle member includes a first spherical bearing surface extending from the output shaft and a first circular tab member extending from the first spherical bearing surface;
- said second connection axle member includes a second spherical bearing surface extending from the output shaft and a second circular tab member extending from the second spherical bearing surface;
- said first link member is rotatably carried on said first circular tab member; and,
- said second link member is rotatably carried on said second circular tab member.
- 16. The internal combustion engine according to claim 15 wherein said predetermined range is substantially between 0 and 70 degrees.
- 17. An internal combustion engine comprising:
- a housing defining a cylindrical working chamber having inlet ports and exhaust ports;
- first and second interdigitated piston assemblies rotatable in said cylindrical working chamber about a longitudinal axis, each of the piston assemblies including at least one pair of diametrically opposed radial vanes forming pistons in the working chamber and dividing the working chamber into a plurality of pairs of diametrically opposed compartments;
- a braking mechanism for controlling the motion of the piston assemblies to cause intermittent rotation of the first and second piston assemblies in the same direction during recurrent periods of rotation with each of said first and second piston assemblies being stopped between said periods of rotation, the braking mechanism including a first and second set of cam surfaces on the first and second piston assemblies respectively and a set of-movable members adapted to alternately engage the first set of cam surfaces to stop the rotation of the first piston assembly while permitting the second piston assembly to rotate freely and then engage the second set of cam surfaces to stop the rotation of the second piston assembly while permitting the first piston assembly to rotate freely;
- an elongate output shaft connected to said first and second piston assemblies, the output shaft being disposed along said longitudinal axis and defining a set of connection areas arranged on said output shaft to extend in directions transverse to said longitudinal axis; and,
- a set of link elements engagable with said set of connection areas, each link element of said set of link elements being simultaneously slidably engagable with both of said first and second piston assemblies to transmit rotational motion from the first and second piston assemblies to said output shaft and to permit relative rotation between the first and second piston assemblies about said longitudinal axis within a predetermined range.
- 18. The internal combustion engine according to claim 17 wherein said braking mechanism includes:
- a first elongate pivotable member having first and second ends, the first end of the first pivotable member being adapted to engage said first set of cam surfaces on the first piston assembly;
- a second elongate pivotable member having first and second ends, the first end of the second pivotable member being adapted to engage said second set of cam surfaces on the second piston assembly; and,
- a sidable member disposed between the first pivotable member and the second pivotable member for transmitting motion between the second end of the first pivotable member and the second end of the second pivotable member.
- 19. The internal combustion engine according to claim 18 wherein:
- said first set of cam surfaces on the first piston assembly include a first pair of ramp surfaces and a first pair of stop blocks;
- said second set of cam surfaces on the second piston assembly include a second pair of ramp surfaces and a second pair of stop blocks;
- each link element of said set of link elements is rotatably engaged with said set of connection areas and includes a first group of link areas adapted for slidable engagement with said first piston assembly and a second group of link areas adapted for slidable engagement with said second piston assembly to permit said relative rotation between the first and second piston assemblies about said longitudinal axis within said predetermined range.
- 20. The internal combustion engine according to claim 19 wherein:
- said first pair of stop blocks are adapted to selectively engage the first end of the first pivotable member when the first pivotable member is in a first position and stop said rotation of the first piston assembly when the first end of the first pivotable member is engaged with a one of said first pair of stop blocks;
- said second pair of stop blocks are adapted to selectively engage the first end of the second pivotable member when the second pivotable member is in a first position and stop said rotation of the second piston assembly when the first end of the second pivotable member is engaged with a one of said second pair of stop blocks;
- the first pair of ramp surfaces are adapted to engage the first end of the first pivotable member when the first pivotable member is in a second position opposite said first position and simultaneously urge i) the first pivotable member from said second position to said first position; and, ii) together with said slidable member, said second pivotable member into said first position;
- the second pair of ramp surfaces are adapted to engage the first end of the second pivotable member when the second pivotable member is in a second position opposite said first position and simultaneously urge i) the second pivotable member from said second position to said first position; and, ii) together with said slidable member, said first pivotable member into said first position;
- said set of connection areas includes a pair of connection axle members extending in substantially diametrically opposite directions from the output shaft substantially perpendicular to said longitudinal axis; said set of link elements includes first and second link members rotatably carried on said pair of connection axle members;
- said first group of link areas includes a first link pin carried on a first connection axle member of said pair of connection axle members and a second link pin carried the second connection axle member of said pair of connection axle members, the first and second link pins being adapted for slidable movement in an arcuate groove provided in said first piston assembly;
- said second group of link areas includes a third link pin carried said first connection axle member and a fourth link pin carried the second connection axle member, the third and fourth link pins being adapted for slidable movement in an arcuate groove provided in said second piston assembly; and,
- said predetermined range is substantially between 0 and 70 degrees.
- 21. An expansible chamber apparatus comprising:
- a housing defining a cylindrical working chamber having inlet ports and exhaust ports; first and second interdigitated piston assemblies rotatably movable in said cylindrical working chamber, each of the piston assemblies including at least one radial vane forming pistons in the working chamber and dividing the working chamber into at least one pair of diametrically opposed compartments; and,
- a braking mechanism for controlling the motion of the piston assemblies to cause intermittent rotation of the first and second piston assemblies in the same direction during recurrent periods of rotation with each of said first and second piston assemblies being stopped between said periods of rotation, the braking mechanism including a first and second set of cam surfaces on the first and second piston assemblies respectively and a set of movable members adapted to alternately engage the first set of cam surfaces to stop the rotation of the first piston assembly while permitting the second piston assembly to rotate freely and then engage the second set of cam surfaces to stop the rotation of the second piston assembly while permitting the first piston assembly to rotate freely.
- 22. An expansible chamber apparatus comprising:
- a housing defining a cylindrical working chamber having inlet ports and exhaust ports;
- first and second interdigitated piston assemblies rotatable movable in said cylindrical working chamber, each of the piston assemblies including at least one radial vane forming pistons in the working chamber and dividing the working chamber into at least one pair of diametrically opposed compartments; and,
- a braking mechanism for controlling the motion of the piston assemblies to cause intermittent rotation of the first and second piston assemblies in the same direction during recurrent periods of rotation with each of said first and second piston assemblies being stopped between said periods of rotation, the braking mechanism including:
- a first and second set of cam surfaces on the first and second piston assemblies respectively and a set of movable members adapted to alternately engage the first set of cam surfaces to stop the rotation of the first piston assembly while permitting the second piston assembly to rotate freely and then engage the second set of cam surfaces to stop the rotation of the second piston assembly while permitting the first piston assembly to rotate freely;
- a first elongate pivotable member having first and second ends, the first end of the first pivotable member being adapted to engage said first set of cam surfaces on the first piston assembly;
- a second elongate pivotable member having first and second ends, the first end of the second pivotable member being adapted to engage said second set of cam surfaces on the second piston assembly; and,
- a slidable member disposed between the first pivotable member and the second pivotable member for transmitting motion between the second end of the first pivotable member and the second end of the second pivotable member.
- 23. The expansible chamber apparatus according to claim 22 wherein:
- said first set of cam surfaces on the first piston assembly includes a first pair of ramp surfaces and a first pair of stop blocks; and,
- said second set of cam surfaces on the second piston assembly includes a second pair of ramp surfaces and a second pair of stop blocks.
- 24. The expansible chamber apparatus according to claim 23 wherein:
- said first pair of stop blocks are adapted to selectively engage the first end of the first pivotable member when the first pivotable member is in a first position and stop said rotation of the first piston assembly when the first end of the first pivotable member is engaged with a one of said first pair of stop blocks; and,
- said second pair of stop blocks are adapted to selectively engage the first end of the second pivotable member when the second pivotable member is in a first position and stop said rotation of the second piston assembly when the first end of the second pivotable member is engaged with a one of said second pair of stop blocks.
- 25. The expansible chamber apparatus according to claim 24 wherein:
- the first pair of ramp surfaces are adapted to engage the first end of the first pivotable at member when the first pivotable member is in a second position opposite said first position and simultaneously urge i) the first pivotable member from said second position to said first position; and, ii) together with said slidable member, said second pivotable member into said second position; and,
- the second pair of ramp surfaces are adapted to engage the first end of the second pivotable member when the second pivotable member is in a second position opposite said first position and simultaneously urge i) the second pivotable member from said second position to said first position; and, ii) together with said slidable member, said first pivotable member into said second position.
- 26. The expansible chamber apparatus according to claim 25 wherein the slidable member includes first and second rod members extending between the second end of the first pivotable member and the second end of the second pivotable member, the first and second rod members being connected together by an intermediate damping spring member to permit relative slidable motion between the first and second rod members.
- 27. The expansible chamber apparatus according to claim 26 wherein:
- said first pair of ramp surfaces are formed on opposite sides of said first piston assembly;
- said first pair of stop blocks are formed on opposite sides of said first piston assembly;
- said second pair of ramp surfaces are formed on opposite sides of said second piston assembly; and,
- said second pair of stop blocks are formed on opposite sides of said second piston assembly.
- 28. An expansible chamber apparatus comprising:
- a housing defining a cylindrical working chamber having inlet ports and exhaust ports;
- first and second interdigitated piston assemblies rotatable in said cylindrical working chamber about a longitudinal axis, each of the piston assemblies including at least one radial vane forming pistons in the working chamber and dividing the working chamber into at least one pair of diametrically opposed compartments;
- a braking mechanism for controlling the motion of the piston assemblies to cause intermittent rotation of the first and second piston assemblies in the same direction during recurrent periods of rotation with each of said first and second piston assemblies being stopped between said periods of rotation;
- an elongate output shaft connected to said first and second piston assemblies, the output shaft being disposed along said longitudinal axis; and,
- a piston synchronizing system including:
- a set of connection areas arranged on said output shaft to extend in directions transverse to said longitudinal axis; and,
- a set of link elements engagable with said set of connection areas, each link element of said set of link elements being simultaneously slidably engagable with both of said first and second piston assemblies to transmit rotational motion from the first and second piston assemblies to said output shaft and to permit relative rotation between the first and second piston assemblies about said longitudinal axis within a predetermined range.
- 29. The expansible chamber apparatus according to claim 28 wherein each link element of said set of link elements includes a first group of link areas adapted for slidable engagement with said first piston assembly and a second group of link areas adapted for slidable engagement with said second piston assembly to permit said relative rotation between the first and second piston assemblies about said longitudinal axis within said predetermined range.
- 30. The expansible chamber apparatus according to claim 29 wherein each link element of said set of link elements are rotatably engaged with said set of connection areas.
- 31. The expansible chamber apparatus according to claim 30 wherein:
- said set of connection areas includes at least one connection axle member extending from the output shaft in a direction substantially perpendicular to said longitudinal axis;
- said set of link elements includes at least one link member rotatably carried on said at least one connection axle member;
- said first group of link areas includes at least one first link pin adapted for slidable movement in an arcuate groove provided in said first piston assembly; and,
- said second group of link areas includes at least one second link pin adapted for slidable movement in an arcuate groove provided in said second piston assembly.
- 32. The expansible chamber apparatus according to claim 31 wherein:
- said at least one connection axle member includes a spherical bearing surface extending from the output shaft and a circular tab member extending from the spherical bearing surface; and,
- said at least one link member is rotatably carried on said circular tab member.
- 33. The expansible chamber apparatus according to claim 30 wherein:
- said set of connection areas includes a pair of connection axle members extending in substantially diametrically opposite directions from the output shaft substantially perpendicular to said longitudinal axis;
- said set of link elements includes first and second link members rotatably carried on said pair of connection axle members;
- said first group of link areas includes a first link pin carried on a first connection axle member of said pair of connection axle members and a second link pin carried the second connection axle member of said pair of connection axle members, the first and second link pins being adapted for sidable movement in an arcuate groove provided in said first piston assembly; and,
- said second group of link areas includes a third link pin carried said first connection axle member and a fourth link pin carried the second connection axle member, the third and fourth link pins being adapted for slidable movement in an arcuate groove provided in said second piston assembly.
- 34. The expansible chamber apparatus according to claim 33 wherein:
- said first connection axle member includes a first spherical bearing surface extending from the output shaft and a first circular tab member extending from the first spherical bearing surface;
- said second connection axle member includes a second spherical bearing surface extending from the output shaft and a second circular tab member extending from the second spherical bearing surface;
- said first link member is rotatably carried on said first circular tab member; and,
- said second link member is rotatably carried on said second circular tab member.
- 35. An expansible chamber apparatus comprising:
- a housing defining a cylindrical working chamber having inlet ports and exhaust ports;
- first and second interdigitated piston assemblies rotatable in said cylindrical working chamber about a longitudinal axis, each of the piston assemblies including at least one at least one radial vane forming pistons in the working chamber and dividing the working chamber into a of pair of diametrically opposed compartments;
- a braking mechanism for controlling the motion of the piston assemblies to cause intermittent rotation of the first and second piston assemblies in the same direction during recurrent periods of rotation with each of said first and second piston assemblies being stopped between said periods of rotation, the braking mechanism including a first and second set of cam surfaces on the first and second piston assemblies respectively and a set of movable members adapted to alternately engage the first set of cam surfaces to stop the rotation of the first piston assembly while permitting the second piston assembly to rotate freely and then engage the second set of cam surfaces to stop the rotation of the second piston assembly while permitting the first piston assembly to rotate freely;
- an elongate output shaft connected to said first and second piston assemblies, the output shaft being disposed along said longitudinal axis; and,
- a piston synchronizing system including:
- a set of connection areas arranged on said output shaft to extend in directions transverse to said longitudinal axis; and,
- a set of link elements engagable with said set of connection areas, each link element of said set of link elements being simultaneously slidably engagable with both of said first and second piston assemblies to transmit rotational motion from the first and second piston assemblies to said output shaft and to permit relative rotation between the first and second piston assemblies about said longitudinal axis within a predetermined range.
- 36. The expansible chamber apparatus according to claim 35 wherein said braking mechanism includes:
- a first elongate pivotable member having first and second ends, the first end of the first pivotable member being adapted to engage said first set of cam surfaces on the first piston assembly;
- a second elongate pivotable member having first and second ends, the first end of the second pivotable member being adapted to engage said second set of cam surfaces on the second piston assembly; and,
- a slidable member disposed between the first pivotable member and the second pivotable member for transmitting motion between the second end of the first pivotable member and the second end of the second pivotable member.
- 37. The expansible chamber apparatus according to claim 36 wherein:
- said first set of cam surfaces on the first piston assembly include a first pair of ramp surfaces and a first pair of stop blocks;
- said second set of cam surfaces on the second piston assembly include a second pair of ramp surfaces and a second pair of stop blocks;
- each link element of said set of link elements is rotatably engaged with said set of connection areas and includes a first group of link areas adapted for slidable engagement with said first piston assembly and a second group of link areas adapted for slidable engagement with said second piston assembly to permit said relative rotation between the first and second piston assemblies about said longitudinal axis within said predetermined range.
- 38. The expansible chamber apparatus according to claim 37 wherein:
- said first pair of stop blocks are adapted to selectively engage the first end of the first pivotable member when the first pivotable member is in a first position and stop said rotation of the first piston assembly when the first end of the first pivotable member is engaged with a one of said first pair of stop blocks;
- said second pair of stop blocks are adapted to selectively engage the first end of the second pivotable member when the second pivotable member is in a first position and stop said rotation of the second piston assembly when the first end of the second pivotable member is engaged with a one of said second pair of stop blocks;
- the first pair of ramp surfaces are adapted to engage the first end of the first pivotable member when the first pivotable member is in a second position opposite said first position and simultaneously urge i) the first pivotable member from said second position to said first position; and, ii) together with said slidable member, said second pivotable member into said first position;
- the second pair of ramp surfaces are adapted to engage the first end of the second pivotable member when the second pivotable member is in a second position opposite said first position and simultaneously urge i) the second pivotable member from said second position to said first position; and, ii) together with said slidable member, said first pivotable member into said first position;
- said set of connection areas includes a pair of connection axle members extending in substantially diametrically opposite directions from the output shaft substantially perpendicular to said longitudinal axis;
- said set of link elements includes first and second link members rotatably carried on said pair of connection axle members;
- said first group of link areas includes a first link pin carried on a first connection axle member of said pair of connection axle members and a second link pin carried the second connection axle member of said pair of connection axle members, the first and second link pins being adapted for slidable movement in an arcuate groove provided in said first piston assembly; and,
- said second group of link areas includes a third link pin carried said first connection axle member and a fourth link pin carried the second connection axle member, the third and fourth link pins being adapted for slidable movement in an arcuate groove provided in said second piston assembly.
CROSS-REFERENCE TO RELATED APPLICATIONS
This application claims the benefit of U.S. provisional application Ser. No. 60/051,647, filed Jul. 3, 1997.
US Referenced Citations (8)