Claims
- 1. A core lock and speed slipping shaft system for mounting cores for rolling sheet material, comprising a tube shaft with end journals, said shaft configured with an internal fluid operated core locking mechanism and a multiplicity of roller bearing assemblies with roller bearings oriented parallel to the axis of said shaft and uniformly distributed around and protruding through slots in said shaft to slightly above the surface of said shaft so as to provide rolling support to said cores for free rotation about said shaft, said roller bearing assemblies being extendible outward from said shaft under fluid pressure applied by said core locking mechanism so as to introduce resistance to said free rotation of said cores.
- 2. The core lock and speed slipping shaft system of claim 1, further comprising an expandable collet system that fits within said cores and over said shaft and said roller bearing assemblies, against which said roller bearing assemblies bear when under said pressure, said collet system being expandable into locking engagement with said core.
- 3. The core lock and speed slipping shaft system of claim 2, said expandable collet system comprising:
- a one piece inner sleeve the ends of which are abutted at an angle other than perpendicular,
- a collet comprising at least three semicircular segments abutted end to end in a circular relationship, and
- means for containing said semicircular segments in said circular relationship prior to the application of said pressure.
- 4. The core lock and slipping shaft system of claim 3, said means for containing said semicircular segments comprising an outer elastic band.
- 5. The core lock and slipping shaft system of claim 1, each said roller bearing assembly comprising at least one roller bearing and a supporting lug, said multiplicity of roller bearing assemblies comprising at least three longitudinal lines of spaced apart said assemblies, said lines spaced equidistant about the circumference of said shaft.
- 6. The core lock and slipping shaft system of claim 5, said multiplicity of roller bearing assemblies comprising six said longitudinal lines, each said line comprising uniformly spaced apart said assemblies the spacing of which is less than the length of one said assembly, adjacent said lines being longitudinally offset from each other by more than one said spacing and less than one said length of a said assembly.
- 7. The core lock and slipping shaft system of claim 6, each said supporting lug protruding through a said slot and having attached at its base a spring and a base flange, said base flange contacting said core locking mechanism, said spring sized and biased so as to be compressed against the inner surface of said shaft on either side of said slot when said roller bearing assembly is extended.
- 8. An airlock core shaft with speed slipping capability for mounting cores for rolling sheet material, comprising a tube shaft with end journals and an internal airlock mechanism, said shaft configured with a uniformly distributed array of roller bearing assemblies extendible from the surface of said shaft by actuation of said internal airlock mechanism, said roller bearing assemblies oriented to provide free rotation of said cores on said shaft when said airlock mechanism is not actuated, said roller bearing assemblies introducing limited resistance to said rotation when said airlock mechanism is actuated.
- 9. The airlock core shaft with speed slipping capability of claim 8, further comprising an expandable collet system that fits within said cores and over said shaft and said roller bearing assemblies, against which said roller bearing assemblies bear when said airlock mechanism is actuated thereby expanding said collet system into locking engagement with said core.
- 10. The airlock core shaft with speed slipping capability of claim 9, said expandable collet system comprising:
- a one piece inner sleeve the ends of which are abutted at an angle other than perpendicular,
- a collet comprising at least three semicircular segments abutted in a circular relationship, and
- means for containing said semicircular segments in a circular relationship prior to the application of said pressure.
- 11. The airlock core shaft with speed slipping capability of claim 10, said means for containing said semicircular segments comprising an outer elastic band for containing said segments in said circular relationship.
- 12. The airlock core shaft with speed slipping capability of claim 9, said roller bearing assemblies comprising at least one roller bearing mounted on a supporting lug, said multiplicity of roller bearing assemblies comprising an array of at least three longitudinal lines of uniformly spaced apart said assemblies, said lines spaced equidistant about the circumference of said shaft.
- 13. The airlock core shaft with speed slipping capability of claim 12, said multiplicity of roller bearing assemblies comprising six said longitudinal lines, each said line comprising uniformly spaced apart said assemblies the spacing of which is less than the length of one said assembly, adjacent said lines being longitudinally offset from each other by more than one said spacing and less than one said length of a said assembly.
- 14. The airlock core shaft with speed slipping capability of claim 13, each said supporting lug protruding through a said slot and having attached at its base a spring and a base flange, said base flange contacting said airlock mechanism, said spring sized and biased so as to be compressed against the inner surface of said shaft on either side of said slot when said roller bearing assembly is extended.
- 15. An airlock core shaft and expandable collet combination with core speed slipping capability comprising:
- a tube shaft with end journals and an internal airlock mechanism, said shaft configured with a uniformly distributed array of roller bearing assemblies extendible from the surface of said shaft by actuation of said internal airlock mechanism, said roller bearing assemblies oriented parallel to the axis of said shaft,
- at least one expandable collet that fits within a core and over said shaft and said roller bearing assemblies, against which said roller bearing assemblies bear when said airlock mechanism is actuated thereby expanding said collet into locking engagement with said core, said roller bearing assemblies providing free rotation of said collet on said shaft when said airlock mechanism is not actuated, said roller bearing assemblies introducing limited resistance to said rotation of said collet and said core when said airlock mechanism is actuated.
- 16. The airlock core shaft with speed slipping capability of claim 15, said expandable collet comprising:
- a one piece inner sleeve the ends of which are abutted at an angle other than perpendicular,
- a segmented collar comprising at least three semicircular segments abutted in a circular relationship, and
- means for containing said semicircular segments in a circular relationship prior to the application of said pressure.
- 17. The airlock core shaft with speed slipping capability of claim 16, said means for containing said semicircular segments comprising an outer elastic band for containing said segments in said circular relationship.
- 18. The airlock core shaft with speed slipping capability of claim 15, said roller bearing assemblies comprising at least one roller bearing mounted on a supporting lug, said multiplicity of roller bearing assemblies comprising an array of at least three longitudinal lines of uniformly spaced apart said assemblies, said lines spaced equidistant about the circumference of said shaft.
- 19. The airlock shaft with speed slipping capability of claim 18, said multiplicity of roller bearing assemblies comprising six said longitudinal lines, each said line comprising uniformly spaced apart said assemblies the spacing of which is less than the length of one said assembly, adjacent said lines being longitudinally offset from each other by more than one said spacing and less than one said length of a said assembly.
- 20. The airlock shaft with speed slipping capability of claim 19, each said supporting lug protruding through a said slot and having attached at its base a spring and a base flange, said base flange contacting said airlock mechanism, said spring sized and biased so as to be compressed against the inner surface of said shaft on either side of said slot when said roller bearing assembly is extended.
Parent Case Info
This application relates and claims priority to pending U.S. patent application Ser. No. 60/117,520, filed Jan. 28, 1999, by the same inventor.
US Referenced Citations (13)