Claims
- 1. A high-pressure coupling interface adapter for use with a female member having a port that includes an internal surface, the adapter comprising a generally cylindrically-shaped metal body having a central longitudinal channel and an inner and outer surface, the body further including:
an external segment having an external end; an internal segment having an internal end, the internal segment configured for receipt within the port of the female member; and wherein the central longitudinal channel extends from the external end to the internal end; the body is configured to engage and secure a separate male coupling member; and the outer surface of the internal segment of the body includes a fit portion for engaging the female member.
- 2. An adapter as recited in claim 1, wherein the outer surface of the internal segment includes a lead-in chamfer adjacent the internal end that forms a chamfer angle relative to the outer surface.
- 3. An adapter as recited in claim 1, including a groove for receiving an o-ring in the outer surface of the internal segment positioned in proximity with the internal end of the body.
- 4. An adapter as recited in claim 1, wherein the fit portion includes at least one outward radially-projecting fitting protrusion.
- 5. An adapter as recited in claim 1, wherein the fit portion includes a plurality of longitudinally spaced, substantially annular fitting protrusions.
- 6. An adapter as recited in claim 5, wherein the outer radial portions of the fitting protrusions include a generally semicircular outer radius.
- 7. An adapter as recited in claim 5, wherein the protrusions are separated by flat outer surface segments.
- 8. An adapter as recited in claim 5, wherein the fitting protrusions create a series of peaks and valleys for facilitating the press fitting of the adapter within the port of the female member.
- 9. An adapter as recited in claim 1, wherein the fit portion comprises a resilient locking member received within a cavity.
- 10. An adapter as recited in claim 1, wherein the outer surface of the body includes an annular flange positioned in proximity to the internal segment of the body.
- 11. An adapter as recited in claim 1, wherein the inner surface of the external segment includes a chamfered segment adjacent the external end that forms a chamfer angle relative to the central longitudinal channel.
- 12. An adapter as recited in claim 1, wherein the inner surface of the body is configured to engage and secure one or more external features of the separate male coupling member.
- 13. An adapter as recited in claim 1, wherein the inner surface of the body includes an annular groove for receiving a locking member.
- 14. An adapter as recited in claim 1, further including an insert positioned between the body and the female member.
- 15. An adapter as recited in claim 14, wherein the insert and body are made of powder metal.
- 16. An adapter as recited in claim 14, wherein the fit portion comprises a resilient locking member received within a cavity in the body.
- 17. A high-pressure coupling interface adapter for use with a female member having a port that includes an internal surface, the adapter comprising a generally cylindrically-shaped metal body having a central longitudinal channel and an inner and outer surface, the body further including:
an external segment having an external end; an internal segment having an internal end, the internal segment configured for receipt within the port of the female member; and wherein the central longitudinal channel extends from the external end to the internal end; the inner surface of the body is configured to engage and secure one or more external features of a separate male coupling member; the inner surface of the external segment includes an external chamfered segment adjacent the external end, the external chamfered segment forming an external chamfer angle relative to the central longitudinal channel greater than about 30 degrees; the outer surface of the body includes an annular flange positioned in proximity to the internal segment of the body; and the outer surface of the internal segment of the body includes a lead-in chamfer adjacent the internal end, the chamfer forming a chamfer angle greater than about 30 degrees relative to the outer surface and a fit portion positioned behind the annular flange, the fit portion including a plurality of longitudinally spaced, outward radially-projecting annular fitting protrusions.
- 18. A female coupling assembly comprising:
a female member having a port that includes an internal surface; a separate, pre-assembled, high-pressure coupling interface adapter at least partially secured within the port, the adapter comprising a generally cylindrically-shaped metal body having a central longitudinal channel and an inner and outer surface, the body further including an external segment having an external end, an internal segment having an internal end, the internal segment secured within the port, the central longitudinal channel extending from the external end to the internal end, the inner surface of the body configured to engage and secure one or more external features of a separate male coupling member, and the outer surface of the body including an annular flange positioned in proximity to the internal segment of the body; and wherein at least one of the female member or adapter includes a fit portion engaged with either the internal segment of the body or the internal surface of the port.
- 19. A female coupling assembly as recited in claim 18, wherein the outer surface of the internal segment of the body includes the fit portion positioned behind the annular flange.
- 20. A female coupling assembly as recited in claim 19, wherein the female member comprises a material having a lesser material strength and/or a more porous nature than the material of the adapter.
- 21. A female coupling assembly as recited in claim 18, wherein the internal surface of the port includes the fit portion.
- 22. A female coupling assembly as recited in claim 21, wherein the adapter comprises a material having a lesser material strength and/or a more porous nature than the material of the female member.
- 23. A female coupling assembly as recited in claim 18, wherein the fit portion includes at least one outward radially-projecting fitting protrusion.
- 24. A female coupling assembly as recited in claim 18, wherein the inner surface of the body includes an annular groove for receiving a locking member.
- 25. A female coupling assembly, including a female member having a port that includes a substantially smooth, non-threaded, internal surface and a separate, preassembled, high-pressure coupling interface adapter at least partially secured within the port, the adapter comprising a generally cylindrically-shaped metal body having a central longitudinal channel and an inner and outer surface, the body further including:
an external segment having an external end; an internal segment having an internal end, the internal segment secured within the port; and wherein the central longitudinal channel extends from the external end to the internal end; the inner surface of the body includes an annular groove for receiving a locking ring and is configured to engage and secure one or more external features of a separate male coupling member; the inner surface of the external segment includes an external chamfered segment adjacent the external end, the external chamfered segment forming an external chamfer angle relative to the central longitudinal channel greater than about 30 degrees; the outer surface of the body includes an annular flange positioned in proximity to the internal segment of the body; and the outer surface of the internal segment of the body includes an O-ring groove positioned in the outer surface of the internal segment in proximity with the internal end, a lead-in chamfer adjacent the internal end, the chamfer forming a chamfer angle greater than about 30 degrees relative to the central longitudinal channel, and a fit portion positioned behind the annular flange, the fit portion including at least one outward radially projecting annular fitting protrusion engaged with the internal surface of the port.
- 26. A method of forming a female coupling assembly, including the steps of:
providing a female member having a port with an internal surface; providing a separate, pre-assembled, high-pressure coupling interface adapter, the adapter comprising a generally cylindrically-shaped metal body having a central longitudinal channel and an inner and outer surface, the body further including an external segment having an external end and an internal segment having an internal end; wherein the central longitudinal channel extends from the external end to the internal end; the inner surface of the body configured to engage and secure one or more external features of a separate male coupling member; the outer surface of the body includes an annular flange positioned in proximity to the internal segment of the body; and the outer surface of the internal segment of the body includes a fit portion positioned behind the annular flange; inserting a portion of the adapter into the port; and securing the fit portion of the internal segment of the adapter to the internal surface of the port.
- 27. A method as recited in claim 26, wherein the securing step comprises pressing the fit portion of the adapter into the port.
- 28. A method of forming a female coupling assembly, including the steps of:
providing a female member having a port with an internal surface; providing a separate, pre-assembled, high-pressure coupling interface adapter, the adapter comprising a generally cylindrically-shaped metal body having a central longitudinal channel and an inner and outer surface, the body further including an external segment having an external end and an internal segment having an internal end; wherein the central longitudinal channel extends from the external end to the internal end; the inner surface of the body configured to engage and secure one or more external features of a separate male coupling member; and the outer surface of the body includes an annular flange positioned in proximity to the internal segment of the body; inserting a portion of the adapter into the port; and securing the internal segment of the adapter to the internal surface of the port by substantially lowering the temperature of one or both of the adapter and female member, inserting the adapter into the port, and subsequently allowing the temperature of the adapter and female member to return to the original temperature.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application claims benefit of U.S. Provisional Application Serial No. 60/237,648, which was filed Oct. 3, 2000.
Provisional Applications (1)
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Number |
Date |
Country |
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60237648 |
Oct 2000 |
US |