Claims
- 1. An orbiting piston combustion engine comprising:
- (a) a toroidal cylindrical block with a continuous toroidal cylinder;
- (b) a continuously orbiting piston assembly within the continuous toroidal cylinder including a compression piston slidably mounted on a guidance and push shaft with a compression chamber therebehind in the direction of rotation within the cylinder, the compression chamber formed by the cylinder, the compression piston and a power piston, the power piston being rigidly connected to the shaft ahead of the compression piston in the direction of rotation within the cylinder and a combustion chamber behind the power piston in the direction of rotation within the cylinder, the combustion chamber formed by the cylinder, the power piston and the compression piston; and
- (c) a power transfer mechanism engageable with the continuously orbiting piston assembly for power transfer from the engine.
- 2. The engine of claim 1, further comprising a power shaft adjacent the block and connected to the power transfer mechanism.
- 3. The engine of claim 1, wherein the continuously orbiting piston assembly comprises more than one power piston, each of which are interconnected by the guidance and push shaft and separated from the adjacent power piston by one compression piston slideably movable on the push shaft.
- 4. The engine of claim 1, further comprising inlet ports through the cylinder block for adding air and fuel into the compression and combustion chambers.
- 5. The engine of claim 1, further comprising a plurality of compression chambers before each power piston and behind each compression piston in the direction of rotation with the cylinder and a plurality of combustion chambers after each power piston and before each compression piston in the direction of rotation within the cylinder.
- 6. The engine of claim 1, wherein the pistons have teeth thereon which will engagingly mesh with the power transfer mechanism comprised of a gear in a gear port within the cylinder block.
- 7. The engine of claim 1, wherein the continuously orbiting piston assembly comprises a plurality of power pistons each interconnected by a guidance and push shaft and separated from the adjacent power piston by one compression piston slideably movable on the push shaft with a compression piston stop assembly mounted in the cylinder and a stop ring on the shaft to limit rear movement and push forward the compression piston.
- 8. The engine of claim 1, wherein the orbital cylindrical block further comprises an air inlet, a fuel inlet, and an ignition for the compression chamber.
- 9. An orbiting piston combustion engine comprising:
- (a) a ring-like cylindrical block with a continuous ring-like cylinder;
- (b) a continuously orbiting piston assembly within the continuous cylinder, wherein the continuous orbiting piston assembly comprises more than one power piston with a combustion chamber behind each power piston in the direction of rotation within the cylinder, the combustion chamber formed by the cylinder, the power piston and a compression piston, the power pistons are interconnected by guidance and push shafts and separated from the adjacent power piston by one compression piston slideably movable on the push shaft with a compression chamber behind each compression piston in the direction of rotation within the cylinder, the compression chamber formed by the cylinder, the compression piston and the power piston; and
- (c) a power transfer mechanism engageable with the continuously orbiting piston assembly for power transfer from the engine.
- 10. The engine of claim 9, further comprising a power shaft adjacent the block and connected to the power transfer mechanism.
- 11. The engine of claim 9, further comprising inlet ports through the cylinder block for adding air and fuel into the compression and combustion chambers.
- 12. The engine of claim 9, further comprising a plurality of compression chambers before each power piston and after each compression piston, relative to the direction of rotation of the piston and a plurality of combustion chambers after each power piston and before each compression piston, relative to the direction of rotation of the piston.
- 13. The engine of claim 9, wherein the cylinder block is of a toroidal shape.
- 14. The engine of claim 9, wherein the pistons have teeth thereon which will engagingly mesh with the power transfer mechanism comprised of a gear in a gear port within the cylinder block.
- 15. The engine of claim 9, wherein power pistons are interconnected by a guidance and push shaft and separated from the adjacent power piston by one compression piston slideably movable on the push shaft with a compression piston stop assembly mounted in the cylinder and a stop ring on the shaft to limit rear movement and pull forward the compression piston.
- 16. An orbiting piston combustion engine comprising:
- (a) a ring-like cylindrical block with a continuous ring-like cylinder;
- (b) a continuously orbiting piston assembly within the continuous cylinder including compression pistons with compression chambers therebehind in the direction of rotation within the cylinder, each compression chamber formed by the cylinder, one compression piston and a power piston and further power pistons with combustion chambers therebehind in the direction of rotation within the cylinder, each combustion chamber formed by the cylinder, one combustion piston and one compression piston, wherein the power pistons are each interconnected by a guidance and push shaft and separated from the adjacent power pistons by one compression piston slideably movable on the push shaft with a compression piston stop assembly mounted in the cylinder and a stop ring on the orbiting shaft to limit rear movement and pull forward in the direction of orbit the compression piston; and
- (c) a power transfer mechanism engageable with the continuously orbiting piston assembly for power transfer from the engine.
- 17. The engine of claim 16, further comprising a power shaft adjacent the block and connected to the power transfer mechanism.
- 18. The engine of claim 16, further comprising inlet ports through the cylinder block for adding air and fuel into the compression and combustion chambers.
- 19. The engine of claim 16, wherein the cylinder block is of a toroidal shape.
- 20. The engine of claim 16, wherein the pistons have teeth thereon which will engagingly mesh with the power transfer mechanism comprised of a gear in a gear port within the cylinder block.
Parent Case Info
This is a continuation of U.S. patent application Ser. No. 08/369,740, filed Jan. 6, 1995, now abandoned.
US Referenced Citations (4)
Foreign Referenced Citations (1)
Number |
Date |
Country |
1227082 |
Feb 1960 |
FRX |
Continuations (1)
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Number |
Date |
Country |
Parent |
369740 |
Jan 1995 |
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