Claims
- 1. A method of operatively, fluidly and concentrically interconnecting adjoining proximate ends of self-contained subassemblies comprised of first and second coaxial coupling halves, with the distal end of each of said coupling halves being operatively, fluidly interconnected with a separate hose assembly that includes a flexible hose assembly having multiple conduits, each of said conduits being, in turn, connected with an individual hose fitting, said coupling halves, together with their respective hose assemblies which, upon being finally fluidly connected, form a coupling assembly between a driving member and a driven member, said method comprising the steps of:
a. initially maintaining an operative fluid connection between concentric inner and outer passages of said first coupling half, connected, via separate ones of said multiple conduits and hose fittings, to said driving member, while concurrently isolating concentric inner and outer passages of said second coupling half, connected, via further separate ones of said multiple conduits and hose fittings, to said driven member, said coupling halves being coaxially aligned; b. fluidly connecting one of said second coaxial coupling member inner and outer passages with one of said first coaxial coupling member inner and outer passages in order to relieve any residual pressure buildup in said second coaxial coupling member; and c. finally fluidly interconnecting said first and second coaxial coupling member inner passages and said first and second coaxial coupling member outer passages, thereby empowering said driven member.
- 2. A method of fluidly connecting a first coaxial coupling (50) and a second coaxial coupling (130), both having a concentric inner (26, 166) and outer passage (53, 151) respectively, said method comprising the steps of:
d. initially fluidly connecting said first coaxial coupling inner (26) and outer passages (53) with each other while isolating both of said second coaxial coupling inner (166) and outer passages (151); then e. fluidly connecting one of said second coaxial coupling inner (166) and outer (151) passages with one of said first coaxial coupling inner (26) and outer (53) passages; and f. finally fluidly connecting said first coaxial coupling inner passage (26) with said second coaxial coupling inner passage (166) and said first coaxial coupling outer passage (53) with said second coaxial coupling outer passage (151).
- 3. The method as in claim 2 further including the steps of:
a. conducting high pressure fluid via said first and second coupling inner passages (26, 166); and b. conducting low pressure fluid via said first and second coupling outer passages (53, 151).
- 4. A method of fluidly connecting coaxially aligned first and second couplings (50, 130), wherein said first coupling (50) has an inner high pressure passage (26) and a coaxial outer lower pressure passage (53), and said second coupling (130) has an inner high pressure passage (166) and a coaxial outer lower pressure passage (151), said method comprising the steps of:
a. firstly fluidly connecting said first coupling inner high pressure passage (26) with said first outer lower pressure passage (53) while isolating said second coupling inner high pressure passage (166) and said coaxial outer lower pressure passage (151); then b. fluidly connecting said first coupling inner high pressure passage (26) and one of said second coupling inner high pressure passage (166) and said second coupling coaxial outer lower pressure passage (151) with said first coupling coaxial outer lower pressure passage (53) while isolating the other of said second coupling inner high pressure passage (166) and said second coupling coaxial outer lower pressure passage (I 51); and c. finally fluidly connecting said first coupling inner high pressure passage (26) with said second coupling inner high pressure passage (166) and said first coupling coaxial outer lower pressure passage (53) with said second coupling coaxial outer lower pressure passage (151).
- 5. A method of fluidly connecting a first coaxial coupling (50) and a second coaxial coupling (130), wherein said first coaxial coupling (50) has an inner high pressure passage (26) and an outer lower pressure passage (53), and said second coaxial coupling (130) has an inner high pressure passage (166) and an outer lower pressure passage (151), said method comprising the steps of:
a. initially fluidly connecting said first coupling inner high pressure passage (26) with said first coupling coaxial outer lower pressure passage (53) while isolating said second coupling inner high pressure passage (166) and said second coupling coaxial outer lower pressure passage (151); then b. fluidly connecting both of said second coaxial coupling high and coaxial lower pressure passages (166, 151) with said first coaxial coupling coaxial outer lower pressure passage (53); and c. finally fluidly connecting said first coaxial coupling inner high pressure passage (26) with said second coaxial coupling inner high pressure passage (166) and said first coaxial coupling outer low pressure passage (53) with said second coaxial coupling outer low pressure passage (151).
- 6. A method of providing a continuous flow of high pressure fluid through a first coaxial coupling half (50) while fluidly connecting said first coaxial coupling half (50) to a second coaxial coupling half (130), wherein said first coaxial coupling (50) includes said high pressure passage (26) and a coaxial lower pressure passage (53), and said second coaxial coupling half (130) includes a high pressure passage (166) and a coaxial lower pressure passage (151), said method comprising the steps of:
a. initially maintaining the fluid connection between said first coaxial coupling half high pressure passage (26) and said first coaxial coupling half lower pressure passage (53) while isolating said second coaxial coupling half high pressure passage (166) and said second coaxial coupling half lower pressure passage (151); then b. additionally fluidly connecting said first coaxial coupling half high pressure passage (26) and at least one of said second coaxial coupling half high pressure passage (166) and said second coaxial coupling half lower pressure passage (151) with said first coaxial coupling half coaxial lower pressure passage (53); then c. fluidly connecting said first coaxial coupling half inner high pressure passage (26) with said second coaxial coupling half inner high pressure passage (166) and said first coaxial coupling half coaxial outer lower pressure passage (53) with said second coaxial coupling half coaxial outer lower pressure passage (151).
- 7. A coaxial coupler (10) having a male half (130) for connection with a female half (50), comprising:
said male half (130) having an inner passage (166), a concentric outer passage (151) and:
a cylindrical plug (146) having a flat front face (148), a rear section (172) having a plurality of flow passages (167) longitudinally extending therethrough, and a locking groove (153) formed on an outer surface of plug (146) for receiving a series of locking balls (82) when said male half (130) is connected with said female half (50); a cylindrical outer sleeve (161), received within and axially moveable relative to said cylindrical plug (146), having a flat frontal face, and an external surface sealingly abutting the internal surface of said cylindrical plug (146) when said male half (130) is separated from said female half (50); a spring (163) urging said outer sleeve (161) forwardly in said cylindrical plug (146); a cylindrical inner valve body (170) received within said outer sleeve (161) having a forward end (177) with an external surface sealingly abutting the internal surface of said cylindrical outer sleeve (161) when said male half (130) is separated from said female half (50) and having a rearward end (179) attached within said cylindrical plug rear section (172); a valve element (182), received within and axially moveable relative to said inner valve body (170), having a flat frontal face, and an external surface sealingly abutting the internal surface of said inner valve body (170) when said male half (130) is separated from said female half (50); and a spring (198) urging said valve element (182) forwardly in said inner valve body (170), located within said inner passage (166); said female half (50) having an inner passage (26), a concentric outer passage (53) and:
a cylindrical body (54) having a forward end, a rearward end and a series of circular openings (56) for receiving said series of locking balls (82); a locking collar (70) surrounding and axially moveable relative to said cylindrical body (54), from an unlocked position to a locked position in which said collar (70) is secured to said cylindrical plug (146) via said locking balls (82); a spring (74) urging said locking collar (70) forwardly on said cylindrical body (54), located in a cavity (41) formed between said locking collar (70) and said cylindrical body (54); a face sleeve (80), received within and axially moveable relative to said cylindrical body (54), having a front flange (91) engageable with said cylindrical plug flat face (148) when said male half (130) is inserted into said female half (50); a spring (66) urging said face sleeve (80) forwardly within said cylindrical body (54); a cylindrical sealing sleeve (84) received within and axially moveable relative to said face sleeve (80), having a forward end with a front face engageable with said outer sleeve (161) when said male half (130) is inserted into said female half (50) and a rearward annular shoulder (85) attached within said cylindrical body (54) rearward end; a cylindrical valve body (86) received within and axially moveable relative to said cylindrical sealing sleeve (84), having a valve head (87) with a front face engageable with said female valve body head (177) when said male half (130) is inserted into said female half (50), an external surface sealingly abutting the internal surface of said cylindrical sealing sleeve (84) when said male half (130) is separated from said female half (50), and an internal surface sealingly abutting an inner valve (68) when said male half (130) is separated from said female half (50); a spring (98) urging said cylindrical valve body (86) forwardly within said sealing sleeve (84), located within said outer passage (53); and said inner valve (68) having:
a forward end (24) with a front face engageable with said male valve element (182) when said male half (130) is inserted into said female half (50) and a plurality of side passages (27) that connect said inner passage (26) with said outer passage (53) when said male half (130) is separated from said female half (50) and connect said inner passage (26) with said male inner passage (166) when said male half (130) is fully connected with said female half (50); and a rearward end (31) received in and attached to said cylindrical sealing sleeve (84), with at least one longitudinal fluid passage (32) extending therethrough.
- 8. The coaxial coupler (10) as in claim 7 wherein said cavity (41) is formed between said locking collar (70), said cylindrical body (54), an annular locking sleeve (81), and an annular washer (61) and is thereby effectively isolated from outside contaminants.
- 9. The coaxial coupler (10) as in claim 8 wherein said washer (61) has an outer surface contour which matches the abutting inner surface of said collar (70) and is free to rotate with collar (70) about said cylindrical body (54).
- 10. The coaxial coupler (10) as in claim 7 wherein said male (130) and female (50) halves are both connectable with coaxial hose assemblies.
- 11. The coaxial coupler (10) as in claim 10 wherein said coaxial hose assemblies are capable of undergoing repeated assembly and disassembly operations.
- 12. The coaxial coupler (10) as in claim 7 wherein said male (130) and female (50) halves are both connectable with twin-line hose assemblies.
- 13. The coaxial coupler (10) as in claim 7 wherein said valve element (182) is substantially cup-shaped and has a continuous, uninterrupted, outer surface.
- 14. The coaxial coupler (10) as in claim 7 wherein at least one of the attachments of:
said rearward end (179) of said cylindrical inner valve body (170) with said cylindrical plug rear section (172); said rearward annular shoulder (85) of said cylindrical sealing sleeve (84) with said cylindrical body (54); and said rearward end (31) of said inner valve (68) with said cylindrical sealing sleeve (84) is accomplished via a press-fitted attachment.
- 15. A quick disconnect assembly comprised of:
a. a male half (130) having an inner passage (166), a concentric outer passage (151), and further including:
i. a cylindrical plug (146) having a flat front face (148), a rear section (172) having a plurality of flow passages (167) longitudinally extending therethrough, and a locking groove (153) formed on an outer surface of plug (146) for receiving a series of locking balls (82) when said male half (130) is connected with said female half (50); ii. a cylindrical outer sleeve (161), received within and axially moveable relative to said cylindrical plug (146), having a flat frontal face, and an external surface sealingly abutting the internal surface of said cylindrical plug (146) when said male half (130) is separated from said female half (50); iii. a spring (163) urging said outer sleeve (161) forwardly in said cylindrical plug (146); iv. a cylindrical inner valve body (170) received within said outer sleeve (161) having a forward end (177) with an external surface sealingly abutting the internal surface of said cylindrical outer sleeve (161) when said male half (130) is separated from said female half (50) and having a rearward end (179) attached within said cylindrical plug rear section (172); v. a valve element (182), received within and axially moveable relative to said inner valve body (170), having a flat frontal face, and an external surface sealingly abutting the internal surface of said inner valve body (170) when said male half (130) is separated from said female half (50); and vi. a spring (198) urging said valve element (182) forwardly in said inner valve body (170) located within said inner passage (166); b. a female half (50) having an inner passage (26), a concentric outer passage (53), and further including:
i. a cylindrical body (54) having a forward end, a rearward end and a series of circular openings (56) for receiving said series of locking balls (82); ii. a locking collar (70) surrounding and axially moveable relative to said cylindrical body (54), from an unlocked position to a locked position in which said collar (70) is secured to said cylindrical plug (146) via said locking balls (82); iii. a spring (74) urging said locking collar (70) forwardly on said cylindrical body (54), located in a cavity (41) formed between said locking collar (70) and said cylindrical body (54); iv. a face sleeve (80), received within and axially moveable relative to said cylindrical body (54), having a front flange (91) engageable with said cylindrical plug flat face (148) when said male half (130) is inserted into said female half (50); v. a spring (66) urging said face sleeve (80) forwardly within said cylindrical body (54); vi. a cylindrical sealing sleeve (84) received within and axially moveable relative to said face sleeve (80), having a forward end with a front face engageable with said outer sleeve (161) when said male half (130) is inserted into said female half (50) and a rearward annular shoulder (85) attached within said cylindrical body (54) rearward end; vii. a cylindrical valve body (86) received within and axially moveable relative to said cylindrical sealing sleeve (84), having a valve head (87) with a front face engageable with said male valve body head (177) when said male half (130) is inserted into said female half (50), an external surface sealingly abutting the internal surface of said cylindrical sealing sleeve (84), when said male half (130) is separated from said female half (50), and an internal surface sealingly abutting an inner valve (68) when said male half (130) is separated from said female half (50); viii. a spring (98) urging said cylindrical valve body (86) forwardly within said sealing sleeve (84), located within said outer passage (53); and ix. said inner valve (68) having: a forward end (24) with a front face engageable with said male valve element (182) when said male half (130) is inserted into said female half (50) and a plurality of side passages (27) that connect said inner passage (26) with said outer passage (53) when said male half (130) is separated from said female half (50) and connect said inner passage (26) with said male inner passage (166) when said male half (130) is fully connected with said female half (50); and a rearward end (31) received in and sealingly attached to said cylindrical sealing sleeve (84), with at least one longitudinal fluid passage (32) extending therethrough; c. a first high pressure hose assembly attachable to said female half (50) including:
i. a first hose fitting (58) having a first end sealingly attachable to said inner valve (68), a longitudinal passage (59) extending therethrough which is axially aligned with and fluidly connected with said inner passage (26) when said fitting (58) is attached to said female half (50), and having a second end; and ii. a first conduit having a first end, sealingly attachable to said second end of said first hose fitting (58), and having a second end; d. a first low pressure hose assembly attachable to said female half (50) including:
i. a second hose fitting (63) having a first end sealingly attachable to said cylindrical body (54), a longitudinal passage (64) extending therethough which is axially aligned with and fluidly connected with said female half passage (53) when said fitting (63) is attached to said female half (50) and having a second end; and ii. a second conduit having a first end, sealingly attachable to said second end of said second hose fitting (63), and having a second end; e. a second high pressure hose assembly attachable to said male half (130) including:
i. a third hose fitting (138) having a first end sealingly attachable to said inner valve body (170), a longitudinal passage (159) extending therethrough and being axially aligned with and fluidly connected with said inner passage (166) when said fitting (138) is attached to said male half (130) and having a second end; ii. a third conduit having a first end sealingly attachable to said second end of said third hose fitting (138) and having a second end; and f. a second low pressure hose assembly attachable to said male half (130) including:
i. a fourth hose fitting (143) having a first end sealingly attachable to said cylindrical plug (146), a longitudinal passage (174) extending therethrough and being aligned with and fluidly connected to said passage (151) when said fitting (143) is attached to said male half (130) and having a second end; and ii. a fourth conduit having a first end, sealingly attachable to said second end of said fourth hose fitting (143), and having a second end.
- 16. The quick disconnect assembly as in claim 15 wherein each of said first high pressure hose assembly, said first low pressure hose assembly, said second high pressure hose assembly and said second low pressure hose assembly are capable of undergoing repeated assembly and disassembly operations.
- 17. The quick disconnect assembly as in claim 15 wherein said cavity (41) is formed between said locking collar (70), said cylindrical body (54), an annular locking sleeve (81), and an annular washer (61) and is thereby effectively isolated from outside contaminants.
- 18. The quick disconnect assembly as in claim 15 wherein at least one of the attachments of:
said rearward end (179) of said cylindrical inner valve body (170) with said cylindrical plug rear section (172); said rearward annular shoulder (85) of said cylindrical sealing sleeve (84) with said cylindrical body (54); said rearward end (31) of said inner valve (68) with said cylindrical sealing sleeve (84); and said first end of said third hose fitting (138) with said inner valve body (170) is accomplished via a press-fitted attachment.
- 19. A quick disconnect coupler (10), having a male half (130) for connection with a female half (50), comprising:
a. said male half (130) including an inner passage (166), a concentric outer passage (151) and further including:
i. an outer cylindrical plug (146) having a plurality of flow passages (167) longitudinally extending therethrough; ii. a cylindrical outer sleeve (161), received within and axially moveable relative to said cylindrical plug (146); iii. a cylindrical valve body (170) positioned within and axially moveable relative to said cylindrical outer sleeve (161) from a first position in which the outer surface of said valve body (170) is sealed against the inner surface of said sleeve (161) to a second position in which the outer surface of said valve body (170) is out of contact with the inner surface of said sleeve (161); and iv. an inner valve element (182) positioned within and axially moveable relative to said valve body (170) from a first position in which the outer surface of said inner valve element (182) is sealed against the inner surface of said valve body (170) to a second position in which the outer surface of said inner valve element (182) is out of contact with the inner surface of said valve body (170); b. said female half (50) including an inner passage (26), a concentric outer passage (53) and further including:
i. a cylindrical body (54) having a locking mechanism (82); ii. a face sleeve (80), received within and axially moveable relative to said cylindrical body (54), engageable with said cylindrical plug (146) when said male half (130) is inserted into said female half (50); iii. a cylindrical sealing sleeve (84) received within and axially moveable relative to said face sleeve (80), engageable with said cylindrical outer sleeve (161) when said male half (130) is inserted into said female half (50); iv. a cylindrical valve body (86), positioned within and axially moveable relative to said cylindrical sealing sleeve (84) from a first position in which the outer surface of said cylindrical valve body (86) is sealed against the inner surface of said cylindrical sealing sleeve (84) to a second position in which the outer surface of said cylindrical valve body (86) is free of being sealed against the inner surface of said sealing sleeve (84), engageable with said valve body (170) when said male half (130) is inserted into said female half (50); and v. an inner valve (68) positioned within and axially moveable relative to said cylindrical valve body (86) having a forward end (24), with a front face engageable with said valve element (182) when said male half (130) is inserted into said female half (50), and a plurality of side passages (27), said inner valve (68) being moveable from a first position, in which the outer surface of said forward end (24) is sealed against the inner surface of valve body (86), to a second position, in which the outer surface of said forward end (24) is out of contact with said valve body (86); wherein in said first position, said male half inner passage (166) and said male half concentric outer passage (151) are each isolated from all other passages, and said female inner passage (26) is fluidly connected with said female half concentric outer passage (53); in a position between said first and said second positions, said female half inner passage (26) and at least one of said male half inner passage (166) and said male half concentric outer passage (151) are fluidly connected with said female half concentric outer passage (53); and in said second position, said female half inner passage (26) is fluidly connected with said male half inner passage (166), and said female half concentric outer passage (53) is fluidly connected with said male half concentric outer passage (151).
- 20. The quick disconnect coupler (10) as in claim 19 wherein said female half inner passage (26) is a high pressure passage.
- 21. The quick disconnect coupler (10) as in claim 19 wherein said female half inner passage (26) is a high pressure passage, said female half concentric outer passage (53) is a low pressure passage, said male half inner passage (166) is a high pressure passage, and said male half concentric outer passage (151) is a low pressure passage.
- 22. The quick disconnect coupler (10) as in claim 19 herein said male half inner valve element (182) is substantially cup-shaped and has a continuous, uninterrupted outer surfaces.
- 23. The quick disconnect coupler (10) as in claim 19 wherein said valve body (170) is attached to said cylindrical body (146) via press-fitting.
- 24. The quick disconnect coupler as in claim 19 wherein said cylindrical sealing sleeve (84) is attached to said cylindrical body (54) via press-fitting.
- 25. The quick disconnect coupler as in claim 19 wherein said inner valve (68) is attached to said cylindrical sealing sleeve (84) via press-fitting.
- 26. A quick disconnect coupler (10), having a male half (130) for connection with a female half (50), comprising:
a. said male half (130) including an inner passage (166), a concentric outer passage (151) and further including:
i. an outer cylindrical plug (146) having a plurality of flow passages (167) longitudinally extending therethrough; ii. a cylindrical outer sleeve (161), received within and axially moveable relative to said cylindrical plug (146); iii. a cylindrical valve body (170) positioned within and axially moveable relative to said cylindrical outer sleeve (161) from a first position in which the outer surface of said valve body (170) is sealed against the inner surface of said sleeve (161) to a second position in which the outer surface of said valve body (170) is out of contact with the inner surface of said sleeve (161); and iv. an inner valve element (182) positioned within and axially moveable relative to said valve body (170) from a first position in which the outer surface of said inner valve element (182) is sealed against the inner surface of said valve body (170) to a second position in which the outer surface of said inner valve element (182) is out of contact with the inner surface of said valve body (170); b. said female half (50) including an inner passage (26), a concentric outer passage (53) and further including:
i. a cylindrical body (54) having a locking mechanism (82); ii. a face sleeve (80), received within and axially moveable relative to said cylindrical body (54), engageable with said cylindrical plug (146) when said male half (130) is inserted into said female half (50); iii. a cylindrical sealing sleeve (84), received within and axially moveable relative to said face sleeve (80), engageable with said cylindrical outer sleeve (161) when said male half (130) is inserted into said female half (50); iv. a cylindrical valve body (86), positioned within and axially moveable relative to said cylindrical sealing sleeve (84) from a first position in which the outer surface of said cylindrical valve body (86) is sealed against the inner surface of said cylindrical sealing sleeve (84) to a second position in which the outer surface of said cylindrical valve body (86) is free of being sealed against the inner surface of said sealing sleeve (84), engageable with said valve body (170) when said male half (130) is inserted into said female half (50); and v. an inner valve (68) positioned within and axially moveable relative to said cylindrical valve body (86) having a forward end (24), with a front face engageable with said valve element (182) when said male half (130) is inserted into said female half (50), and a plurality of side passages (27), said inner valve (68) being moveable from a first position in which the outer surface of said forward end (24) is sealed against the inner surface of valve body (86) to a second position in which the outer surface of said forward end (24) is out of contact with said valve body (86).
- 27. A quick disconnect coupler as in claim 26 wherein:
in said first position, said male half inner passage (166) and said male half concentric outer passage (151) are each isolated from all other passages, and said female inner passage (26) is fluidly connected with said female half concentric outer passage (53); in a position between said first and said second positions, at least one of said male half inner passage (166), said male half concentric outer passage (151), and said female half inner passage (26) are fluidly connected with said female half concentric outer passage (53); and in said second position, said female half inner passage (26) is fluidly connected with said male half inner passage (166), and said female half concentric outer passage (53) is fluidly connected with said male half concentric outer passage (151).
- 28. A quick disconnect coupler as in claim 26 wherein said cylindrical valve body (170) has a front head portion (177) with a first seal (194) located on its outer surface and a second seal (196) located on its inner surface.
- 29. A quick disconnect coupler as in claim 28 wherein said first and second seals (194, 196) are axially aligned.
- 30. A quick disconnect coupler as in claim 28 wherein said first seal (194) and said second seal (196) are axially offset from each other.
- 31. A quick disconnect coupler as in claim 30 wherein:
in said first position, said first seal (194) sealingly abuts the inner surface of said cylindrical outer sleeve (161), said second seal (196) sealingly abuts the outer surface of said inner valve element (182); in a position between said first and said second positions, the outer surface of said first seal (194) is free of any mating contact, while said second seal (196) is in sealing contact with the outer surface of said inner valve forward end (24); and in said second position, the outer surface of said first seal (194) is free of any mating contact, while said second seal (196) sealingly abuts the outer surface of said inner valve (68).
- 32. A quick disconnect coupler as in claim 31 wherein:
in said first position, said first seal (194) sealingly abuts the inner surface of said cylindrical outer sleeve (161), said second seal (196) sealingly abuts the outer surface of said inner valve element (182); in a position between said first and second positions, the outer surface of said first seal (194) is free of any mating contact, while said second seal (196) is axially aligned with said plurality of side passages (27); and in said second position, the outer surface of said first seal (194) is free of any mating contact, while said second seal (196) sealingly abuts the outer surface of said inner valve (68).
- 33. A quick disconnect coupler as in claim 30 wherein:
in said first position, said first seal (194) sealingly abuts the inner surface of said cylindrical outer sleeve (161), while said second seal (196) sealingly abuts the outer surface of said inner valve element (182); in a position between said first and second positions, said first seal (194) sealingly abuts the inner surface of said cylindrical sealing sleeve (84), while said second seal (196) is axially aligned with said plurality of side passages (27); and in said second position, the outer surface of said first seal (194) is free of any mating contact, while said second seal (196) sealingly abuts the outer surface of said inner valve (68).
- 34. A quick disconnect assembly comprising:
a. a male half (130) including an inner passage (166), a concentric outer passage (151) and further including:
i. an outer cylindrical plug (146) having a plurality of flow passages (167) longitudinally extending therethrough; ii. a cylindrical outer sleeve (161), received within and axially moveable relative to said cylindrical plug (146); iii. a cylindrical valve body (170) positioned within and axially moveable relative to said cylindrical outer sleeve (161) from a first position in which the outer surface of said valve body (170) is sealed against the inner surface of said sleeve (161) to a second position in which the outer surface of said valve body (170) is free of contact with the inner surface of said sleeve (161); and iv. an inner valve element (182) positioned within and axially moveable relative to said valve body (170) from a first position in which the outer surface of said inner valve element (182) is sealed against the inner surface of said valve body (170) to a second position in which the outer surface of said inner valve element (182) is free of contact with the inner surface of said valve body (170); b. a female half (50) including an inner passage (26), a concentric outer passage (53) and further including:
i. a cylindrical body (54) having a locking mechanism (82); ii. a face sleeve (80), received within and axially moveable relative to said cylindrical body (54), engageable with said cylindrical plug (146) when said male half (130) is inserted into said female half (50); iii. a cylindrical sealing sleeve (84), received within and axially moveable relative to said face sleeve (80), engageable with said cylindrical outer sleeve (161) when said male half (130) is inserted into said female half (50); iv. a cylindrical valve body (86), positioned within and axially moveable relative to said cylindrical sealing sleeve (84) from a first position in which the outer surface of said cylindrical valve body (86) is sealed against the inner surface of said cylindrical sealing sleeve (84) to a second position in which the outer surface of said cylindrical valve body (86) is free of being sealed against the inner surface of said sealing sleeve (84), engageable with said valve body (170) when said male half (130) is inserted into said female half (50); and v. an inner valve (68) positioned within and axially moveable relative to said cylindrical valve body (86) having a forward end (24), with a front face engageable with said valve element (182) when said male half (130) is inserted into said female half (50), and a plurality of side passages (27), said valve (68) moveable from a first position in which the outer surface of said forward end (24) is sealed against the inner surface of valve body (86) to a second position in which the outer surface of said forward end (24) is free of contact with said valve body (86); c. a first high pressure hose assembly, attachable to said female half (50), including:
i. a first hose fitting (58) having a first end sealingly attachable to said inner valve (68), a longitudinal passage (59) extending therethrough which is axially aligned with said inner valve inner passage (26) when said fitting (58) is attached to said female half (50), and having a second end; and ii. a first conduit having a first end sealingly attachable to said second end of said hose fitting (58), and having a second end; d. a first low pressure hose assembly attachable to said female half (50) including:
i. a second hose fitting (63) having a first end sealingly attachable to said cylindrical body (54), a longitudinal passage (64) extending therethrough which is axially aligned with said female half outer passage (53) when said fitting (63) is attached to said female half (50), and having a second end; ii. a second conduit having a first end sealingly attachable to said second end of said second hose fitting (63) and having a second end; e. a second high pressure hose assembly attachable to said male half (130) including:
i. a third hose fitting (138) having a first end sealingly attachable to said inner valve body (170), a. longitudinal passage (159) extending therethrough and being axially aligned with inner passage (166) when said fitting (138) is attached to said male half (130) and having a second end; ii. a third conduit having a first end, sealingly attachable to said second end of said third hose fitting (138), and having a second end; and f. a second low pressure hose assembly attachable to said male half (130) including:
i. a fourth hose fitting (143) having a first end sealingly attachable to said cylindrical plug (146), a longitudinal passage (174) extending therethrough and being aligned with passage (151) when said fitting (143) is attached to said male half (130) and having a second end; and ii. a fourth conduit having a first end sealingly attachable to said second end of said fourth hose fitting (143), and having a second end.
- 35. The quick disconnect assembly as in claim 34 wherein said hose fittings (58, 63, 138, 143) are capable of repeated assembly and disassembly relative to respective ones of said female (50) and male (130) halves.
- 36. The quick disconnect assembly as in claim 34 wherein said first high pressure hose assembly, said first low pressure hose assembly, said second high pressure hose assembly, and said second low pressure hose assembly are capable of repeated assembly and disassembly relative to respective ones of said female (50) and male (130) halves.
- 37. The quick disconnect assembly as in claim 34 wherein said valve body (170) is attached to said cylindrical plug (146) via press-fitting.
- 38. The quick disconnect assembly as in claim 34 wherein said cylindrical sealing sleeve (84) is attached to said cylindrical body (54) via press-fitting.
- 39. The quick disconnect assembly as in claim 34 wherein said inner valve (68) is press-fittedly attached to said cylindrical sealing sleeve (84) via press-fitting.
- 40. The quick disconnect assembly as in claim 34 wherein the attachment of said hose fitting (138) to said inner valve body (170) is via press-fitting.
CROSS-REFERENCE TO RELATED CASES
[0001] The present application claims the benefit of the filing date of U. S. Provisional Application Ser. No. 60/475,289 filed Jun. 3, 2003, and U. S. Provisional Application Ser. No. 60/491,657 filed Jul. 29, 2003, the disclosure of which is expressly incorporated herein by reference.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60475289 |
Jun 2003 |
US |
|
60491657 |
Jul 2003 |
US |