Claims
- 1. A continuously variable transmission system comprising:
an input means for an input shaft wherein said input shaft is connected to an inside of a hemisphere wheel; a housing having a mounting and means to attach to said hemisphere wheel at two opposing pivot points; a control lever means attached to said hemisphere wheel; an output means for an output shaft wherein said output shaft is connected to a second wheel by connection means; a circumference of said second wheel engaged with the outside of said hemisphere wheel; said control lever means having the ability to swing the hemisphere wheel around the pivot points of the mounting to change the engaged diameter of the hemisphere wheel.
- 2. A continuously variable transmission system comprising:
an input means for an input shaft wherein said input shaft is a flexible constant velocity device connected to a hemisphere wheel on the inside center of said hemisphere wheel; said hemisphere wheel having a bearing located on the outside circumference of the hemisphere wheel; a housing having a mounting attached to said hemisphere wheel at two pivot points located at the hemispheres major diameter; a control lever having a joint attachment to the outer race of the bearing, perpendicular to the pivot points of the mounting; an output means for an output shaft wherein said output shaft is connected to a second wheel at the center of said second wheel; the circumference of said second wheel is engaged with the outside of said hemisphere wheel; said control lever having the ability to swing the hemisphere wheel around the pivot points of the mounting to change the engaged diameter of the hemisphere wheel.
- 3. A continuously variable transmission system comprising:
an input means for an input shaft wherein said input shaft is a flexible constant velocity device connected to a first hemisphere wheel on the inside center of said first hemisphere wheel; said first hemisphere wheel having a first bearing located on the outside circumference of the first hemisphere wheel; a housing having a first mounting attached to said first hemisphere wheel at two pivot points located at the first hemispheres major diameter; a first control lever having a joint attachment to an outer race of the first bearing, perpendicular to the pivot points of the first mounting; an output means for an output shaft wherein said output shaft is connected to a second hemisphere wheel with a flexible and movable connection on the inside center of said second hemisphere wheel; said second hemisphere wheel having a second bearing located on the outside circumference of the second hemisphere wheel; the housing having a second mounting attached to said second hemisphere wheel at two pivot points located at the second hemispheres major diameter a second control lever having a joint attachment to the second outer race of the second bearing, perpendicular to the pivot points of the second mounting; an outer circumference of said second hemisphere wheel engaged with an outer circumference of said first hemisphere wheel; said control levers having the ability to swing both hemisphere wheels around the pivot points of the mountings to change the engaged diameters of both of the hemisphere wheels.
- 4. The transmission of claim 2, wherein the bearing is located on the outside circumference of the hemisphere wheel at the hemispheres major diameter and the two pivot points are located on an outer race of said bearing.
- 5. The transmission of claim 3, wherein the first and second bearings are located on the outside circumference of both first and second hemisphere wheels at the hemispheres major diameters and the first and second two pivot points are located on an outer race of the first and second bearings respectively.
- 6. The transmission of claim 2, wherein the hemisphere wheel is engaged by friction to the second wheel.
- 7. The transmission of claim 2, wherein a ratio of input to output is not fixed.
- 8. The transmission of claim 2, wherein the output means are attached to the input means of a conventional transmission.
- 9. The transmission of claim 2, wherein the output means are attached to input means of a second transmission comprising:
the input means having an input shaft wherein said input shaft is a flexible and movable shaft connected to a hemisphere wheel on the inside center of said hemisphere wheel; said hemisphere wheel having a bearing located on the outside circumference of the hemisphere wheel; a housing having a mounting attached to said hemisphere wheel at two pivot points located at the hemispheres major diameter; a control lever having a joint attachment to the outer race of the bearing, perpendicular to the pivot points of the mounting; an output means for an output shaft wherein said output shaft is connected to a second wheel at the center of said second wheel; the circumference of said second wheel is engaged with the outside of said hemisphere wheel; said control lever having the ability to swing the hemisphere wheel around the pivot points of the mounting to change the engaged diameter of the hemisphere wheel.
- 10. The transmission of claim 3, wherein the output means are attached to input means of a second transmission comprising:
the input means having an input shaft wherein said input shaft is a flexible and movable shaft connected to a hemisphere wheel on the inside center of said hemisphere wheel; said hemisphere wheel having a bearing located on the outside circumference of the hemisphere wheel; a housing having a mounting attached to said hemisphere wheel at two pivot points located at the hemispheres major diameter; a control lever having a joint attachment to the outer race of the bearing, perpendicular to the pivot points of the mounting fork; an output means for an output shaft wherein said output shaft is connected to a second wheel at the center of said second wheel; the circumference of said second wheel is engaged with the outside of said hemisphere wheel; said control lever having the ability to swing the hemisphere wheel around the pivot points of the mounting to change the engaged diameter of the hemisphere wheel.
- 11. The transmission of claim 2, wherein the output means are attached to input means of a second transmission comprising:
the input means for an input shaft wherein said input shaft is a first flexible and movably connected to a first hemisphere wheel on the inside center of said first hemisphere wheel; said first hemisphere wheel having a first bearing located on the outside circumference of the first hemisphere wheel; a housing having a first mounting attached to said first hemisphere wheel at two pivot points located at the first hemispheres major diameter; a first control lever having a joint attachment to an outer race of the first bearing, perpendicular to the pivot points of the first mounting; an output means for an output shaft wherein said output shaft is connected to a second hemisphere wheel with a second flexible and movable connection on the inside center of said second hemisphere wheel; said second hemisphere wheel having a second bearing located on the outside circumference of the second hemisphere wheel; the housing having a second mounting attached to said second hemisphere wheel at two pivot points located at the second hemispheres major diameter; a second control lever having a joint attachment to the second outer race of the second bearing, perpendicular to the pivot points of the second mounting; an outer circumference of said second hemisphere wheel engaged with an outer circumference of said first hemisphere wheel; said control levers having the ability to swing both hemisphere wheels around the pivot points of the mounting to change the engaged diameters of both of the hemisphere wheel.
- 12. The transmission of claim 3, wherein the output means are attached to input means of a second transmission comprising:
the input means for an input shaft wherein said input shaft is a first flexible and movably connected to a first hemisphere wheel on the inside center of said first hemisphere wheel; said first hemisphere wheel having a first bearing located on the outside circumference of the first hemisphere wheel; a housing having a first mounting attached to said first hemisphere wheel at two pivot points located at the first hemispheres major diameter; a first control lever having a joint attachment to an outer race of the first bearing, perpendicular to the pivot points of the first mounting; an output means for an output shaft wherein said output shaft is connected to a second hemisphere wheel with a second flexible and movable connection on the inside center of said second hemisphere wheel; said second hemisphere wheel having a second bearing located on the outside circumference of the second hemisphere wheel; the housing having a second mounting attached to said second hemisphere wheel at two pivot points located at the second hemispheres major diameter; a second control lever having a joint attachment to the second outer race of the second bearing, perpendicular to the pivot points of the second mounting; an outer circumference of said second hemisphere wheel engaged with an outer circumference of said first hemisphere wheel; said control levers having the ability to swing both hemisphere wheels around the pivot points of the mounting to change the engaged diameters of both of the hemisphere wheel.
- 13. The transmission of claim 2, wherein the flexible constant velocity device is a double universal joint.
- 14. The transmission of claim 2, wherein the flexible constant velocity device is a single universal joint.
- 15. The transmission of claim 2, wherein the flexible constant velocity device is a flexible shaft.
- 16. The transmission of claim 2, wherein the input means is an engine or a motor.
- 17. A continuously variable transmission system comprising:
an input means for an input shaft wherein said input shaft is a flexible constant velocity device connected to a hemisphere wheel on the inside center of said hemisphere wheel; said hemisphere wheel having a bearing located on the inside circumference of the hemisphere wheel; a housing having a mounting fork attached to said hemisphere wheel at two opposing pivot points located at the hemispheres major diameter; a control lever having a joint attachment to the inner race of the bearing, perpendicular to the pivot points of the mounting fork; an output means for an output shaft wherein said output shaft is connected to a second wheel at the center of said second wheel; the circumference of said second wheel is engaged with the outside of said hemisphere wheel; said control lever having the ability to swing the hemisphere wheel around the pivot points of the mounting fork to change the engaged diameter of the hemisphere wheel.
- 18. The transmission of claim 17, wherein the flexible constant velocity device is a single universal joint.
- 19. The transmission of claim 2, wherein the control lever is controlled by one of the following:
a. an hydraulic cylinder, or b. a pneumatic cylinder, or c. an actuator, or d. manually.
- 20. The transmission of claim 17, wherein the constant velocity device is a motor mounted on a stationary race of the bearing, with a shaft of the motor connected to the hemisphere wheel.
- 21. A continuously variable transmission system comprising:
an input means for an input shaft wherein said input shaft is connected to an input wheel: said input wheel is engaged via friction or gears with more than one sub input wheel; said sub input wheels are connected to sub input shafts; said sub input shafts being connected to an inside of hemisphere wheels through constant velocity devices; a housing having a mounting and means to attach to said hemisphere wheels at two opposing pivot point mountings for each hemisphere wheel; a control lever means attached to said hemisphere wheel on one end of said control lever means; said control lever means being attached to a control plate on a second end of said control lever means; an output means for an output shaft wherein said output shaft is connected to an output wheel by connection means; a circumference of said output wheel engaged with the outside of said hemisphere wheels; said control plate being attached to an input signal means; said control plate having the ability to swing the hemisphere wheels around the pivot points of the mountings to change the engaged diameter of the hemisphere wheels.
CROSS-REFERENCES TO RELATED APPLICATIONS
[0001] This application is related to commonly-owned U.S. Pat. No. 6,467,374 entitled “A CONTINUOUSLY VARIABLE MECHANICAL TRANSMISSION” issued Oct. 22, 2002 with inventor Gregory Kaplun.