Claims
- 1. A gear system for driving roll stands, comprising:
- at least one non-metal driver gear, a driven gear, keyless locking means for securing said gears to shafts, said driver gear having teeth with increased addendum relative to standard gearing, and said driven gear having teeth with addendum decreased in magnitude equal to said increase in addendum of said driver gear, all relative to standard gearing; and
- wherein said driven gear has a first set of teeth, each tooth of said first set of teeth having range groove means disposed on a facing surface thereon, said groove means for assuring proper selection of said driven gear.
- 2. The gear system of claim 1, wherein said increase in driver gear addendum is two-fold relative to standard gearing, and said driven gear addendum is decreased in magnitude equal to said two-fold increase in addendum of said driver gear; and
- wherein said non-metal driver gear has a second set of teeth, each tooth of said second set of teeth having a tip thereon such that said proper selection of said driven gear is confirmed when said tip is within said range groove means.
- 3. The gear system of claim 1, wherein said driver gear is an all addendum gear and said driven gear is an all dedendum gear.
- 4. The gear system of claim 1, wherein said driver gear has teeth which have increased base thickness relative to standard gearing.
- 5. The gear system of claim 1, wherein said driven gear has teeth which have reduced base thickness relative to standard gearing.
- 6. The gear system of claim 1, wherein said driver gear is comprised of a self-lubricating plastic.
- 7. The gear system of claim 6, wherein said driver gear is comprised of a self-lubricating plastic selected from the group consisting of nylon 12, lauramid, nyaltron, delrin, phenolic composites and combinations thereof.
- 8. The gear system of claim 1, wherein said driver gear and said driven gear are spur gears.
- 9. The gear system of claim 1, wherein said driver gear and said driven gear are helical gears.
- 10. A gear system for driving roll stands, comprising:
- a self-lubricating plastic driver gear, a metal driven gear, keyless locking means for securing said gears to shafts, and said driver gear having teeth with increased addendum relative to standard gearing, and said driven gear having teeth with addendum decreased in magnitude equal to said increase in addendum of said driver gear, all relative to standard gearing;
- and wherein said metal driven gear has a first set of teeth, each tooth of said first set of teeth having range groove means disposed on a facing surface thereon, said groove means for assuring proper selection of said metal driven gear.
- 11. The gear system of claim 10, wherein said increase in said plastic driver gear addendum is two-fold relative to standard gearing, and said metal driven gear addendum is decreased in magnitude equal to said two-fold increase in addendum of said driver gear; and
- wherein said self-lubricating plastic driver gear has a second set of teeth, each tooth of said second set of teeth having a tip thereon such that said proper selection of said metal driven gear is confirmed when said tip is within said range groove means.
- 12. The gear system of claim 10, wherein said plastic driver gear is an all addendum gear and said metal driven gear is an all dedendum gear.
- 13. The gear system of claim 10, wherein said driver gear has teeth which have increased base thickness relative to standard gearing, and said driven gear has teeth which have reduced base thickness relative to standard gearing.
- 14. The gear system of claim 10, wherein said self-lubricating plastic gear is selected from the group consisting of nylon 12, lauramid, nyaltron, delrin, phenolic composites and combinations thereof.
- 15. The gear system of claim 10, wherein said driver gear and said driven gear are spur gears.
- 16. The gear system of claim 10, wherein said driver gear and said driven gear are helical gears.
- 17. A method of assuring proper selection of a metal driven gear in a gear system having a self-lubricating plastic driver gear, comprising the steps of:
- selecting a first metal driven gear from a set of metal driven gears each having a different number of a first set of teeth, each tooth of said first set of teeth having range groove means disposed on a facing surface thereon, said range groove means having an upper and a lower range limit;
- installing said first metal driven gear onto said gear system having said self-lubricating plastic driver gear, said self-lubricating plastic driver gear having a second set of teeth, each tooth of said second set of teeth having a tip thereon;
- visually inspecting said tip on said tooth on said self-lubricating plastic driver gear with reference to said range groove means on said facing surface on said metal driven gear;
- and determining appropriate alignment when said tip is within said range such that said tip located below said lower range limit requires a second metal driven gear from said set of metal driven gears with less teeth, and said tip located above said upper range limit requires a third metal driven gear from said set of metal driven gears with more number teeth.
RELATED APPLICATIONS
This application is a continuation-in-part of Ser. No. 141,381 filed Oct. 22, 1993 now U.S. Pat. No. 5,423,232.
US Referenced Citations (21)
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
141381 |
Oct 1993 |
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