Claims
- 1. A gear drive transmission apparatus, comprising:
a) a housing having a forward housing portion, a rear housing portion, and a longitudinal axis; b) an output shaft mounted in said housing for rotation about said longitudinal axis, said shaft having a forward shaft portion mounted in said forward housing portion, a rear shaft portion mounted in said rear housing portion, and a central shaft portion; c) a drive transmission positioned around the central portion of the shaft, said drive transmission comprising:
i) a drive input; ii) a drive output operatively connected to said shaft; iii) a drive gear section positioned around said shaft for rotation about a drive axis offset from said longitudinal axis, and having an operative drive connection with said drive input; iv) a ring gear section positioned around said shaft having an operative drive connection with said drive output; v) said drive gear section and said ring gear section being arranged to drive said shaft at a lower rotational speed relative to rotational speed of said drive input.
- 2. The apparatus as recited in claim 1, wherein the forward portion of the shaft is arranged to function as a shaft power output portion of said shaft.
- 3. The apparatus as recited in claim 1, wherein the forward and rear shaft portions are arranged to function as forward and rear shaft power output portions of the shaft.
- 4. The apparatus as recited in claim 1, further comprising a feedback resolver to control movement of the shaft.
- 5. The apparatus as recited in claim 4, comprising at least one drive motor mounted to said housing, said feedback resolver having an operative connection to said drive motor.
- 6. The apparatus as recited in claim 4, wherein said feedback resolver has an operative drive connection to said ring gear section.
- 7. The apparatus as recited in claim 4, wherein said feedback resolver has an operative connection to said shaft.
- 8. The apparatus as recited in claim 7, wherein there is at least one drive motor mounted to a rear portion of said housing, and said feedback resolver is mounted to the rear portion of the shaft and in operative engagement with said motor.
- 9. The apparatus as recited in claim 8, wherein said feedback resolver has an adjustable connection to said shaft to enable adjustments to be made between the feedback resolver and position of the shaft.
- 10. The apparatus as recited in claim 1, wherein said drive input comprises an input gear concentrically mounted around said shaft.
- 11. The apparatus as recited in claim 10, wherein there is a drive gear support section positioned around said shaft and having a drive gear engaging surface portion concentric with said drive gear axis to cause orbiting rotational movement of the drive gear axis about said longitudinal axis.
- 12. The apparatus as recited in claim 1, wherein said drive input comprises an input gear concentrically position around said drive shaft, and a drive gear support section connected to said input gear and mounted for rotation about said longitudinal axis, said drive gear support section having a drive gear engaging surface portion which is concentric with said drive gear axis to cause orbiting rotational movement of said drive gear section about the drive gear axis.
- 13. The apparatus as recited in claim 12, wherein said ring gear section comprises a first ring gear which has a stationary mounting to said housing, and said drive gear section engages said first ring gear in a manner to cause the orbiting rotational movement of the drive gear section about the longitudinal axis.
- 14. The apparatus as recited in claim 13, wherein said ring gear section comprises a second ring gear in operative engagement with said drive gear section so that movement of the drive gear section causes a rotation of the second ring gear, with said second ring gear causing rotational movement of the shaft.
- 15. The apparatus as recited in claim 1, wherein said drive transmission comprises a drive sleeve positioned around said shaft so as to be able to rotate about said longitudinal axis, said drive sleeve having an outer bearing surface having a curved configuration and being in bearing engagement with a corresponding surface portion of said drive gear section, said drive sleeve having an operative connection to said drive input so that the drive input causes rotation of said drive sleeve which in turn causes orbiting rotation of said drive gear section.
- 16. The apparatus as recited in claim 15, wherein said drive sleeve has a forward end portion and a rear end portion, and said drive sleeve has bearing support at said forward and rear drive sleeve portions.
- 17. The apparatus as recited in claim 16, wherein said drive input comprises a drive input gear mounted for rotation about said longitudinal axis and connected to said drive sleeve.
- 18. The apparatus as recited in claim 1, wherein said drive gear section comprises first and second drive gear portions connected to one another and concentrically mounted on said drive gear axis, and said ring gear section comprises a first ring gear which is mounted to said housing so as to be stationary relative to said housing, and a second ring gear mounted so as to be rotatable relative to said housing, said first drive gear portion being in engagement with said first ring gear so that rotational movement of said first drive gear portion and the resulting rotation of said second drive gear portion causes rotational movement of said second ring gear which in turn causes rotation of said shaft, said drive gear section and said ring gear section being configured and dimensioned so that the rotational movements of the drive gear section causes a relatively slow rotation of the second ring gear relative to rotational speed of the drive input.
- 19. The apparatus as recited in claim 18, wherein said first ring gear is mounted to said housing so as to be able to rotate relative to said housing when a load above a predetermined load level is placed upon said first ring gear, whereby if the shaft encounters an overload condition, said first ring gear is able to rotate to permit the shaft to remain stationary.
- 20. A method of providing a rotary drive input of a relatively high rotational speed through a drive transmission to cause a rotary output of a relatively slow rotational speed said method comprising:
a) providing a housing having a forward housing portion, a rear housing portion, and a longitudinal axis; b) mounting an output shaft in said housing for rotation about said longitudinal axis and supporting said shaft at a forward shaft portion mounted in said forward housing portion and at a rear shaft portion mounted in said rear housing portion; c) positioning a drive transmission around the central portion of the shaft; d) rotating a rotary drive input to rotate a drive gear section of said transmission positioned around said shaft to cause rotation of said drive gear section about a drive axis offset from said longitudinal axis; e) causing a ring gear section positioned around said shaft to rotate by engagement with said drive gear section output to cause said ring gear section to drive said shaft at a lower rotational speed relative to rotational speed of said drive input.
CROSS RELATED REFERENCES
[0001] This application claims priority of U.S. Provisional Application Serial No. 60/186,265 filed Mar. 1, 2000.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60186265 |
Mar 2000 |
US |