Claims
- 1. An end connector for permanent attachment to reinforced hose, comprising:
a stem having a fitting end, a hose end and an outside; a ferrule secured to said stem near said fitting end wherein said ferrule has an inside and extends concentrically about said stem towards said hose end thereof, and, means for sinusoidally gripping the reinforced hose formed within said inside of said ferrule and on said outside of said stem.
- 2. An end connector for permanent attachment to reinforced hose, comprising:
a stem having a fitting end and a hose end; a ferrule secured to said stem near said fitting end extending concentrically about said stem towards said hose end thereof and further having an inside; and, sinusoidal gripping means formed within said inside of said ferrule.
- 3. The end connector of claim 2 wherein said stem further has an outside further comprising:
sinusoidal gripping means formed on said outside of said stem.
- 4. An improved end connector for permanent attachment to reinforced hose in which the end connector has a stem having a fitting end, a hose end and an outside and a ferrule secured to the stem with the ferrule having an inside and extending concentrically about the stem towards the hose end thereof thereby forming an open end, in which the stem has a plurality of barbs formed on the outside of the stem adapted to grip the inside of the reinforced hose and in which the ferrule has a plurality of ridges formed within the ferrule adapted to grip the outside of the reinforced hose, wherein the improvement comprises:
sinusoidal gripping means formed within inside of said ferrule.
- 5. The improvement of claim 4 wherein said sinusoidal gripping means extends from within the open end of the ferrule towards the point at which the ferrule is secured to the stem.
- 6. The improvement of claim 5 wherein sinusoidal gripping means replaces between 25 and 40 percent of the ridges.
- 7. A method for permanently attaching an end connector having a ferrule and stem both incorporating a sinusoidal grip for permanent attachment to reinforced hose, comprising:
a) ensuring that the ferrule is secured to the stem; b) placing the end connector onto an end of the rubber hose; c) ensuring that the stem is in place within the inside of the hose and that the ferrule extends about the hose leaving room for expansion of the hose; and, d) swaging the ferrule to the hose thereby forcing the sinusoidal grip into the hose and thereby permanently attaching the end connector to the hose.
- 8. The method of claim 7 wherein the following step is added after step c) and before step d):
cl) expanding the stem thereby forcing the sinusoidal grip into the hose.
- 9. The method of claim 7 wherein the following step is added after step a) and before step b):
a1) skiving the hose by removing the outer rubber to expose the reinforcement.
- 10. The method of claim 8 wherein the following step is added after step a) and before step b):
a1) skiving the hose by removing the outer rubber to expose the reinforcement.
- 11. The method of claim 9 wherein the following step is added after step a1) and before step b):
a2) placing a copper sleeve over the exposed reinforcement.
- 12. The method of claim 10 wherein the following step is added after step a1) and before step b):
a2) placing a copper sleeve over the exposed reinforcement.
- 13. The end connector of claim 1 wherein said stem further has an inside and further comprising:
a step formed within said inside of stem extending radially into said inside thereof, extending laterally along said inside of said stem from said hose end thereof towards said fitting end terminating in an angled transition.
- 14. The end connector of claim 13 wherein said step extends radially into said stem such when an expansion plug is drawn through said step, the outside portion of said stem collocated about said step expands by a radial range between 0.001 inches and 0.2 inches.
- 15. The end connector of claim 13 wherein said angled transition lays at a point between one-third and one-half of the axial distance between said hose end and said fitting end of said stem.
- 16. The end connector of claim 13 wherein said end connector is permanently attached to the reinforced hose by first externally expanding said stem and then swaging said ferrule and wherein said step, when internally expanded acts to produce less expansion of said outside of said stem thereby reducing the compression of said reinforced hose in contact with said outside of stem lying radially over said step.
- 17. The end connector of claim 1 wherein said end connector is permanently attached to the reinforced hose by first internally expanding said stem and then externally swaging said ferrule and wherein when said end connector is permanently attached to the hose by internally expanding said stem and swaging said ferrule and when and said hose is submitted to high pressure thereby creating a pump off force said stem will carry a portion of tensile load of said pump off force.
- 18. The end connector of claim 1 wherein said ferrule and said stem, both having dimensions, are both manufactured from materials and wherein said end connector is permanently attached to the reinforced hose by externally expanding said stem and externally swaging said ferrule and wherein when said end connector is permanently attached to the hose by internally expanding said stem said materials and said dimensions thereof are carefully engineered to minimize the expected reduction in axial length of said stem and wherein when said end connector is permanently attached to the hose by externally swaging said ferrule said materials and said dimensions thereof are carefully engineered to minimize the expected elongation in axial length of said ferrule thereby minimizing the induced stress in said reinforced hose caused by the permanent attachment of the end connector thereto.
- 19. The end connector of claim 18 wherein the standoff distance between said inside of said ferrule and the hose is minimized by setting the standoff distance such that said hose almost touches said inside of said ferrule prior to permanent attachment thereto.
- 20. The end connector of claim 2 wherein said ferrule further has a closed end and an open end such that said closed end is opposite said open end and said open end lies concentrically about said hose end of said stem and wherein said inside of said ferrule lies along an axial circumferential plane and wherein means for sinusoidally gripping the reinforced hose further comprises:
a plurality of lands and nodes having a sine wave-like shape extending from near said closed end of said ferrule towards said open end thereof said lands and nodes lying along said axial solid circumferential plane.
- 21. The end connector of claim 3 wherein said stem has a location for securing said ferrule said outside of said stem lies along an axial circumferential plane and wherein means for sinusoidally gripping the reinforced hose further comprises:
a plurality of flutes and grooves having a sine wave-like shape extending from near said location for securing said ferrule towards said hose end of said stem said flutes and grooves lying along said axial solid circumferential plane.
- 22. The end connector of claim 21 wherein said ferrule further has a closed end and an open end such that said closed end is opposite said open end and said open end lies concentrically about said hose end of said stem and wherein said inside of said ferrule lies along an axial circumferential plane and wherein means for sinusoidally gripping the reinforced hose further comprises:
a plurality of lands and nodes having a sine wave-like shape extending from near said closed end of said ferrule towards said open end thereof said lands and nodes lying along said axial solid circumferential plane.
- 23. The end connector of claim 1 wherein said ferrule further has a closed end and an open end such that said closed end is opposite said open end and said open end lies concentrically about said hose end of said stem, wherein said inside of said ferrule lies along an axial circumferential plane, wherein said stem has a location for securing said ferrule and wherein said outside of said stem lies along an axial circumferential plane and wherein means for sinusoidally gripping the reinforced hose further comprises:
a plurality of lands and nodes having a sine wave-like shape extending from near said closed end of said ferrule towards said open end thereof said lands and nodes lying along said ferrule axial solid circumferential plane. a plurality of flutes and grooves having a sine wave-like shape extending from near said location for securing said ferrule towards said hose end of said stem said flutes and grooves lying along said axial solid circumferential plane along said stem axial solid circumferential plane.
- 24. The end connector of claim 20 wherein said hose can further experience a pump off force and wherein when said end connector is permanently attached to the hose by externally swaging said ferrule said plurality of lands and nodes move into the reinforced rubber hose causing the hose to assume a corresponding sine wave-like shape thereby minimizing stress in the attached reinforced hose and allowing the pump off force to be transferred to said lands and nodes.
- 25. The end connector of claim 22 wherein said hose can further experience a pump off force and wherein when said end connector is permanently attached to the hose by first internally expanding said stem and then externally swaging said ferrule said plurality of flutes and grooves and corresponding said plurality of lands and nodes interact to cause the hose to assume a corresponding sine wave-like shape thereby minimizing stress in the attached reinforced hose and allowing the pump off force to be transferred to said lands and nodes.
- 26. The end connector of claim 23 wherein said hose can further experience a pump off force and wherein when said end connector is permanently attached to the hose by first internally expanding said stem and then externally swaging said ferrule said plurality of flutes and grooves and corresponding said plurality of lands and nodes interact to cause the hose to assume a corresponding sine wave-like shape thereby minimizing stress in the attached reinforced hose and allowing the pump off force to be transferred to said lands and nodes.
- 27. The end connector of claim 20 further having a ferrule slope.
- 28. The end connector of claim 21 further having a stem slope.
- 29. The end connector of claim 23 further having a ferrule slope and a stem slope.
Parent Case Info
[0001] This application claims the benefit of U.S. Provisional Application No. 60/377,393, filed on May 3, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
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60377393 |
May 2002 |
US |