Claims
- 1. A dispenser for discharging media to be used in conjunction with a pressure chamber comprising:
- a medium outlet defined by a first duct end of a linear end duct including a second duct end remote from said first duct end;
- an outlet channel leading into said medium outlet, said outlet channel defining a medium flow with a flow direction toward said medium outlet in operation, said outlet channel, at a distance from said medium outlet, having a channel portion provided to connect to said pressure chamber and operable for producing a delivery pressure in a range of increasing medium pressures, from a relatively lower medium pressure to a relatively higher medium pressure, said outlet channel having adjustable passage cross-sections; and,
- control means including a control member, said control member being unidirectionally moveable from an initial control position to a control end position in a first control direction for increasing said passage cross-sections to a relatively larger cross-section at said relatively lower medium pressure and to constrict said passage cross-sections smaller than said relatively larger cross-section at said relatively higher medium pressure, said control member entirely closing said passage cross-sections when said control member is in said initial control position and is in said control end position.
- 2. The dispenser according to claim 1, further comprising:
- a core body bounding said outlet channel commonly with said control member, said core body being operationally movable for varying the medium flow, in said first control direction said core body being movable in a first core motion for modifying the medium flow together with the increasing medium pressure to thereby vary at least one of said passage cross-sections; and,
- means for moving said core body in a second core motion defining a second control direction substantially distinct from said first control direction, said control means controlling said core body as a function of the delivery pressure, said second duct end traversing a recessed seat end face opposing a core end face of said core body, at said medium outlet the medium being dispensed free of said dispenser, when in said control end position said core end face abutting against said seat end face around said second duct end while said passage cross-sections are constricted but open between said seat end face and said core end face and while said passage cross-sections are closed upstream of said core end face.
- 3. The dispenser according to claim 2, wherein the medium flow includes a partial medium flow nearest to said core body and flowing toward said medium outlet in a partial flow direction, an opposing direction being defined and oriented counter to said partial flow direction, with the increasing medium pressure, said core body being movable in said first control direction distinct from said opposing direction, said core body directly connecting to the medium flow and providing a boundary of said outlet channel.
- 4. The dispenser according to claim 2, further comprising:
- a discharge closure including a valve member for closing said passage cross-sections when said control member is in said initial position, said discharge closure being openable together with an actuating motion provided for producing the delivery pressure; and,
- a displacing spring for displacing said core body, said displacing spring being located upstream of said valve member, said control member including said valve member.
- 5. The dispenser according to claim 2, further comprising a discharge valve having an operationally movable valve member for opening and closing said outlet channel upstream of said core end face, said core body defining a motion path extending from said initial control position up to said control end position, said core body being entirely movable over said motion path substantially synchronously with said valve member, said control member including said core body and said valve member in one part.
- 6. The dispenser according to claim 5, wherein said control member includes a control stem projecting upstream over said valve member, said valve member including a valve seat face located radially outside said control stem, said valve seat face closing said outlet channel when in said initial control position and at a closing location downstream of said control stem.
- 7. The dispenser according to claim 6, wherein said valve member comprises an end face, said at least one core body being disposed at said end face, said end face closing said outlet channel when in said control end position.
- 8. The dispenser according to claim 6, wherein said control member has a circumferential extension, and said outlet channel issues from upstream of said circumferential extension radially inwardly against said control member only over part of said circumferential extension and downstream of said discharge valve closing said pressure chamber with respect to said medium outlet only when in said initial control position and in said control end position.
- 9. The dispenser according to claim 2, further comprising at least two flow throttles including first and second flow throttles commonly bounded by said core body, said first flow throttle including a closing throttle located mostly upstream of said core body and mostly upstream of said second flow throttle, said closing throttle having a circumferentially extending throttle gap, said throttle gap being variable for tightly closing said outlet channel when in said initial control position, said first flow throttle being located downstream of said second flow throttle, and said second flow throttle closing said outlet channel when said second flow throttle is in said control end position.
- 10. The dispenser according to claim 1, further comprising an end wall traversed by said end duct and bounding said end duct in one part, said control member being disposed directly adjacent to and entirely upstream of said second duct end when in said control end position.
- 11. The dispenser according to claim 10, wherein from said medium outlet the medium is dispensed free of said dispenser, said end wall including a seat face traversed by said second duct end and opposing said control member, said control member including a core body directly opposing said second duct end and defining a core length extension and a core width extension, said end duct defining a duct length extension smaller than said core length extension and a duct width extension smaller than said core width extension.
- 12. The dispenser according to claim 1, wherein said control means are included for moving said control member counter to said first motion direction, said moving means including a spring member resiliently urging said control member towards said initial control position, said control member including a valve member closing said outlet channel when in said initial control position, said spring member being located upstream of said valve member.
- 13. The dispenser according to claim 1, further comprising a closure insert exclusively annular and having a closure seat closing said passage cross-sections together with said control member when in said initial control position, said at least one control member being supported against said closure insert when said initial control position, said closure seat and said control member including first and second seat face interengaged when closing said passage cross-sections, at least one of said seat faces being conically widened in said first control direction, said control member including a third seat face closing said outlet channel commonly with a fourth seat face when said control end position, said fourth seat face being located between and spaced from both said end duct and said first seat face of said closure insert.
- 14. The dispenser according to claim 13, wherein said closure insert is made in one part and directly supports against a neck of said pressure chamber, radially outside of said first and second seat faces said closure insert providing a seal for the pressure chamber, said control member entirely traversing said closure insert.
- 15. The dispenser according to claim 1, further comprising at least two flow throttles including first and second flow throttle for said outlet channel bounded by said control member, said first flow throttle being located downstream of said second flow throttle, when in said control end position said second flow throttle closing said outlet channel, said at least two throttles simultaneously and reciprocally widening and narrowing said passage cross-sections.
- 16. The dispenser according to claim 15, wherein said at least two throttle provide frontal throttle gaps, said second flow throttle including an upstream throttle and a downstream throttle separated from and located downstream of said upstream throttle, said upstream throttle closing said outlet channel when said upstream throttle is in said control end position and said downstream throttle being constricted but open for passing the medium.
- 17. The dispenser according to claim 1, wherein said outlet channel comprises two separate outlet ducts including first and second outlet ducts for separate first and second media flows, said outlet ducts being separately connected to said pressure chamber and commonly discharging the first and second media flows, said control member closing said first outlet duct when in said control end position at a closing location, said second outlet duct issuing into said first outlet duct only downstream of said closing location.
- 18. The dispenser according to claim 17, wherein at said closing location said first outlet duct extends annularly around said control member, when in said control end position said second outlet duct being open with respect to said end duct.
- 19. A dispenser for discharging media to be used in conjunction with a pressure chamber, said dispenser comprising:
- a medium outlet;
- an outlet channel having at least two spray nozzles spaced in a medium flow direction, said outlet channel leading into said medium outlet, said outlet channel defining said medium flow in operation, said outlet channel, at a distance from said medium outlet, having a channel portion provided to connect to said pressure chamber and operable for producing a delivery pressure in a range of increasing medium pressures, from a relatively lower medium pressure to a relatively higher medium pressure, said outlet channel having adjustable passage cross-sections; and,
- control means for increasing said passage cross-sections to a relatively larger cross-section at said relatively lower medium pressure and to constrict said passage cross-sections smaller than said relatively larger cross-section at said relatively higher medium pressure.
- 20. The dispenser according to claim 19, further comprising a turbulence chamber, said at least two spray nozzles including a first spray nozzle located upstream of a second spray nozzle having an inlet end and issuing into said turbulence chambers said turbulence chamber being widened with respect to both said first and second spray nozzles and being located upstream of said inlet end of said second spray nozzle.
- 21. The dispenser according to claim 19, wherein said at least two nozzles include a first spray nozzle located upstream of a second spray nozzle, said first spray nozzle having a nozzle duct with an inlet end, said at least one core body controlling said first spray nozzle at said inlet end.
- 22. A dispenser for discharging media to be used in conjunction with a pressure chamber, comprising:
- a medium outlet defined by a first duct end of a linear end duct including a second duct end remote from said first duct end;
- an outlet channel leading into said end duct, said outlet channel defining a medium flow with a flow direction toward said medium outlet during dispensing operation, said outlet channel having a channel portion directly connecting to said end duct, said channel portion including channel boundaries including an inner circumferential surface and a recessed end face directly connecting to said inner circumferential surface, said channel portion connecting to said pressure chamber and being operable for producing a delivery pressure in an increasing range between a relatively lower medium pressure and a relatively higher medium pressure, said channel portion determining passage cross-sections;
- a core body operatively bounding said channel portion opposite to said channel boundaries, said core body being operationally unidirectionally movable from an initial control position to a control end position in a first control direction defined by a first core motion for varying the medium flow and for modifying the medium flow together with the increasing medium pressure to thereby vary said passage cross-sections,
- wherein said core body has outer faces including an outer circumferential face and a free end face, said outer faces directly facing said channel boundaries, in said initial control position of said core body and of said dispenser, said outer faces and said channel boundaries commonly bounding an angular passage gap for passing the medium, said angular passage gap including an axial gap lea defining first flow cross-sections, said first flow cross-sections being constant during said first core motion and said dispensing operation, said passage grap including a transverse gap leg directly connecting to said axial gap leg at an angle and defining second flow cross-sections, said second flow cross-sections varying substantially continuously during said first core motion and said dispensing operation, said transverse gap lea being oriented transverse to said first control direction and being located downstream of said axial gap leg, said transverse gap leg being bounded by a groove.
- 23. A dispenser for discharging media to be used in conjunction with a pressure chamber, comprising:
- a medium outlet defined by a first duct end of a linear end duct including a second duct end remote from said first duct end;
- an outlet channel leading into said end duct, said outlet channel defining a medium flow with a flow direction toward said medium outlet during dispensing operation, said outlet channel having a channel portion at a distance upstream from said medium outlet, said channel portion connecting to said pressure chamber and being operable for producing a delivery pressure in an increasing range from a relatively lower medium pressure to a relatively higher medium pressure, said outlet channel determining passage cross-sections;
- a core body operatively associated with said outlet channel and movable during said dispensing operation in a first control direction from an initial control position to a control end position by a first core motion for varying the medium flow, said core body being movable in said first core motion for modifying the medium flow together with the increasing delivery pressure to thereby vary at least one of said passage cross-sections;
- said core body having a circumferential face and an end face connecting to said circumferential face; and,
- said channel portion including at least one angular channel groove, said at least one angular channel groove including an axial groove leg located at said circumferential face and a transverse groove leg downstream angularly directly connecting to said axial groove leg, said transverse groove leg being oriented transverse to said first control direction and located at said end face.
- 24. The dispenser according to claim 23, wherein said transverse groove leg is recessed in said end face including a center chamber, said transverse groove guiding the medium flow radially inwardly into said center chamber.
- 25. A dispenser for discharging media to be used in conjunction with a pressure chamber, comprising:
- a medium outlet defined by a first duct end of a linear end duct including a second duct end remote from said first duct end;
- an outlet channel leading into said end duct, said outlet channel defining a medium flow with a flow direction toward said medium outlet during dispensing operation, said outlet channel having a channel portion at a distance upstream from said medium outlet, said channel portion connecting to said pressure chamber and being operable for producing a delivery pressure in an increasing range from a relatively lower medium pressure to a relatively higher medium pressure, said outlet channel determining passage cross-sections;
- a core body operatively bounding said channel portion, said core body being operationally unidirectionally movable from an initial control position to a control end position in a first control direction defined by a first core motion for varying the medium flow, said core body being movable in said first core motion for modifying the medium flow together with the increasing delivery pressure to vary at least one of said passage cross-sections;
- opposing end faces including a most downstream end face on said core body being included, said end face being bounded by a circumferential face defining an imaginary circumferential envelope, said opposing end faces further including a counter face directly opposing said end face, said end face approaching said counter face during said first core motion; and,
- flow control means recessed in one of said end faces, said flow control means including at least one depression located within said circumferential envelope, said flow control means imparting a turbulence to the medium flow.
- 26. A dispenser for discharging media, comprising:
- a squeeze bottle bounding said pressure chamber;
- a medium outlet;
- an outlet channel leading into said medium outlet said outlet channel defining a medium flow during dispensing operation, said outlet channel having a channel portion at a distance from said medium outlet, connected to said pressure chamber and operable for producing a delivery pressure in an increasing range of pressure, said outlet channel determining passage cross-sections;
- a holding spring for said at least one core body, said holding spring engaging inside said pressure chamber and said squeeze bottle bounding said pressure chamber;
- at least one core body operatively associated with said outlet channel, said at least one core body being operationally movable for varying the medium flow, said at least one core body being movable in a first core motion for modifying the medium flow together with the increasing delivery pressure to vary at least one of said passage cross-sections; and,
- means for moving said at least one core body in a second core motion substantially distinct from said first core motion.
Priority Claims (1)
Number |
Date |
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Kind |
44 17 488.8 |
May 1994 |
DEX |
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CROSS-REFERENCE TO RELATED APPLICATION
This application is a continuation of U.S. patent application Ser. No. 08/433,832, filed May 4, 1995 now abandoned.
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Continuations (1)
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Number |
Date |
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Parent |
433832 |
May 1995 |
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