Claims
- 1. A ball-worm transmission assembly comprising:
a worm; and a gear coupled to the worm via a plurality of spherical balls; wherein the worm defines a ball recirculation path; and wherein the gear comprises a plurality of teeth each having a thickness in a central plane of the gear and a lesser thickness towards both sides of the gear, so that a gap is defined between the teeth which is larger towards both sides of the gear than in the central plane of the gear.
- 2. The ball-worm transmission assembly according to claim 1, wherein the worm comprises a hyperboloidal helix.
- 3. The ball-worm transmission assembly according to claim 2, wherein a ball path of the spherical balls comprises: (i) an active path along which the balls roll between the worm and the gear, between the hyperboloidal helix of the worm and the teeth of the gear, so as to engage the gear and the worm; (ii) a passive path along which the balls roll on the hyperboloidal helix of the worm outside the teeth of the gear; and (iii) the ball recirculation path, defined by the worm, along which the balls pass through the worm between the active path and the passive path.
- 4. The ball-worm transmission assembly according to claim 3, further comprising an outer race to constrain the balls on the passive path.
- 5. The ball-worm transmission assembly according to claim 4, wherein the ball race comprises an internal revolute hyperboloidal surface for maintaining contact of the balls on the hyperboloidal helix of the worm.
- 6. The ball-worm transmission assembly according to claim 1, wherein the worm comprises a worm part and a peg part which are concentrically coupled to each other.
- 7. The ball-worm transmission assembly according to claim 6, wherein the worm part comprises at least one recirculation port.
- 8. The ball-worm transmission assembly according to claim 7, wherein an oblique hole is formed in the worm part, and the at least one recirculation port comprises a deflection boss formed on the worm part for forcing the spherical balls into the oblique hole and onto the recirculation path.
- 9. The ball-worm transmission assembly according to claim 8, wherein the deflection boss has a circular cross section of slightly smaller radius than the spherical balls, and is adapted to pass along teeth of the gear without interference.
- 10. The ball-worm transmission assembly according to claim 8, wherein the at least one recirculation port also comprises a fillet that smoothens entry of the spherical balls into the oblique hole.
- 11. The ball-worm transmission assembly according to claim 8, wherein the peg part comprises a U shaped helical channel, and the oblique hole continues into the U shaped helical channel.
- 12. The ball-worm transmission assembly according to claim 6, wherein the worm part and the peg part are coupled by a dowel pin which sets a relative orientation of the worm part and the peg part.
- 13. A ball-worm transmission assembly comprising:
a worm having a worm part and a peg part which are concentrically coupled to each other, and which together define a ball recirculation path; and a gear coupled to the worm via a plurality of spherical balls which are recirculated along the recirculation path; and wherein the peg part is positioned entirely within the worm part.
- 14. The ball-worm transmission assembly according to claim 11, wherein the worm part comprises bearing supports on which the worm is mounted in the ball worm transmission.
- 15. A ball worm transmission assembly comprising:
a worm having a worm part and a peg part which are concentrically coupled to each other, and which together define a ball recirculation path; and a gear coupled to the worm via a plurality of spherical balls which are recirculated along the recirculation path; and at least one recirculation port built into the worm part of the worm; wherein the at least one recirculation port comprises a path deflection boss for forcing the spherical balls to enter the recirculation path.
- 16. The ball-worm transmission assembly according to claim 15, wherein the deflection boss has a circular cross section of slightly smaller radius than the spherical balls, and is adapted to pass along teeth of the gear without interference.
- 17. The ball-worm transmission assembly according to claim 15, wherein the at least one recirculation port also comprises a fillet that smoothens transition of the spherical balls into the recirculation path.
- 18. A ball worm transmission assembly comprising:
a worm; and a gear coupled to the worm via a plurality of spherical balls; wherein the worm defines a ball recirculation path; and wherein the gear comprises a plurality of teeth having a double circular profile defined by two circular profiles of different diameters.
Parent Case Info
[0001] This application claims the benefit of U.S. Provisional Application No. 60/339,247 filed Nov. 13, 2001, the entire contents of which are incorporated herein by reference.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60339247 |
Nov 2001 |
US |