Cartridge drop dispenser
10772761 ยท 2020-09-15
Assignee
Inventors
Cpc classification
A61M11/007
HUMAN NECESSITIES
A61M5/2425
HUMAN NECESSITIES
A61M5/282
HUMAN NECESSITIES
A61M11/008
HUMAN NECESSITIES
A61F9/0008
HUMAN NECESSITIES
B05B11/025
PERFORMING OPERATIONS; TRANSPORTING
International classification
A61F9/00
HUMAN NECESSITIES
B05B11/02
PERFORMING OPERATIONS; TRANSPORTING
A61M11/00
HUMAN NECESSITIES
A61M5/24
HUMAN NECESSITIES
Abstract
A cartridge droplet dosage device with a cartridge (1) and an actuation element (2), whereby the cartridge (1) includes a reservoir body (3), a cladding (5) and a plug (6), characterized in that a fluid groove (9) projects from the reservoir body (3) into an inner tube valve area (11), whereby the fluid groove (9) is releasable either by the yielding of a sealing rib (12) and/or by the yielding of a part of the cladding (5).
Claims
1. A cartridge droplet dosage device with a cartridge (1) and an actuation element (2), whereby the cartridge (1) comprises a reservoir body (3), a cladding (5) and a plug (6), wherein a fluid groove (9) projects from the reservoir body (3) into an inner tube valve area (11), whereby the fluid groove (9) is releasable either by the yielding of a sealing rib (12) and/or by the yielding of a part of the cladding (5), wherein the cartridge comprises a bayonet closure (13), whereby the bayonet closure (13) is connectable to a bayonet lock (21) of the actuation element (2), wherein the actuation element (2) comprises a piston (8), whereby the piston (8) is actively connectable to the plug (6), and wherein the actuation element (2) comprises a perforation area (19), whereby the perforation area (19) is arranged between the piston (8) and a counterpiece of the actuation element (2).
2. The cartridge droplet dosage device according to claim 1, wherein the sealing rib (12) and/or the cladding (5) is flexible under pressure and is resettable.
3. The cartridge droplet dosage device according to claim 1, wherein the cartridge (1) has a detachable product protection (20), whereby the product protection (20) also serves as protective cap.
4. A cartridge droplet dosage device with a cartridge (1) and an actuation element (2), whereby the cartridge (1) comprises a reservoir body (3), a cladding (5) and a plug (6), wherein a central bore (14) projects from the reservoir body (3) into an inner tube valve area (11), whereby the central bore (14) is releasable by the yielding of a part of the cladding (5), whereby between the cladding (5) and the central bore (14) a transverse bore (15) is arranged, wherein the cladding (5) is flexible under pressure and is resettable, wherein the actuation element (2) comprises a piston (8), whereby the piston (8) is actively connectable to the plug (6), and wherein the actuation element (2) comprises a perforation area (19), whereby the perforation area (19) is arranged between the piston (8) and a counterpiece of the actuation element (2).
5. The cartridge droplet dosage device according to claim 4, wherein the cartridge comprises a bayonet closure (13), whereby the bayonet closure (13) is connectable to a bayonet lock (21) of the actuation element (2).
6. The cartridge droplet dosage device according to claim 4, wherein the cartridge (1) has a detachable product protection (20), whereby the product protection (20) also serves as protective cap.
7. A cartridge droplet dosage device with a cartridge (1) and an actuation element (2), whereby the cartridge (1) comprises a reservoir body (3), a cladding (5) and a plug (6), wherein a fluid groove (9) projects from the reservoir body (3) into an inner tube valve area (11), whereby the fluid groove (9) is releasable either by the yielding of a sealing rib (12) and/or by the yielding of a part of the cladding (5), wherein the cartridge comprises a bayonet closure (13), whereby the bayonet closure (13) is connectable to a bayonet lock (21) of the actuation element (2), wherein the actuation element (2) comprises a piston (8), whereby the piston (8) is actively connectable to the plug (6), and wherein the piston (8) has toothing.
8. A cartridge droplet dosage device with a cartridge (1) and an actuation element (2), whereby the cartridge (1) comprises a reservoir body (3), a cladding (5) and a plug (6), wherein a central bore (14) projects from the reservoir body (3) into an inner tube valve area (11), whereby the central bore (14) is releasable by the yielding of a part of the cladding (5), whereby between the cladding (5) and the central bore (14) a transverse bore (15) is arranged, wherein the cladding (5) is flexible under pressure and is resettable, wherein the actuation element (2) comprises a piston (8), whereby the piston (8) is actively connectable to the plug (6), and wherein the piston (8) has toothing.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Further advantages, features and details of the invention can be derived from the description of preferred exemplary embodiments below and with reference to the drawings, in which
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10)
(11)
(12)
(13)
(14)
(15)
DETAILED DESCRIPTION
(16)
(17) The cartridge 1 consists of the reservoir body 3 with the valve pin 4 and the cladding 5, the plug 6 and the protective cap 7.
(18) The actuation element 2 is a single piece with the perforated connected toothed piston 8 with the return groove 24.
(19)
(20) As an additional fluid seal, circumferential sealing ribs 12 are provided around the pin diameter.
(21) In the area of the plug 6, on the cladding wall 5, the locking pin 13 is arranged between the cartridge 1 and the actuation element 2.
(22)
(23) In the inner tube valve sealing area 11, the cladding wall 5 is in full contact with a slight pre-tension on the pin diameter 4.
(24) The fluid groove 9 brings the medication to be applied to the sealing area 11, so that an annular gap is formed which allows the fluid to exit.
(25)
(26) The central bore 14 supplies the transverse bore 15 from the fluid reservoir 10 with the medication to be distributed, in order to enable it to exit the cartridge as a droplet via the sealing area 11.
(27) With the cladding geometry 16 of the cladding 5, the necessary sealing and opening forces of the inner tube valve are generated.
(28)
(29) The bayonet lock 21 is also shown.
(30)
(31)
(32)
(33)
(34)
(35) Further exemplary embodiments are designed such that the inner tube valve area can be placed onto a standard pump system or directly onto a standard squeeze bottle.
(36) The inner tube valve area according to the invention has fewer parts than the pump or squeeze system outlet valves known from the prior art.
(37) The two-part valve system with the adapted pump or squeeze bottle system acts as a tight, non return-suction droplet dosage valve without dead space that is prone to becoming infested with germs.
(38)
(39)
(40)
(41)
(42) Additionally, the plate 30 comprises a connecting piece 32, which extends from the plate 30 to the squeeze bottle 26, but which remains a part of the inner tube valve area 11. When fluid is distributed from the transfer bore 15, the bevel 31 is pushed aside by the fluid, and as soon as the pressure of the fluid lessens, the bevel 31 momentarily closes the outlet area.
(43) The inner bag 28 preferably has a lower rigidity or hardness than the squeeze bottle 26, so that air flowing in through the plate valve 29 can be distributed around the inner bag 28 and said bag is drawn together according to the decreasing quantity of fluid in the fluid reservoir 10.
(44) The system operates without air compensation in the fluid reservoir 10. Due to the vacuum created when the bottle is squeezed, the inner bag 26 is drawn together. In order to apply pressure to the inner bag 28 via the squeeze bottle 26, air or fluid flows between the inner bag and the bottle wall over a plate valve 29 integrated in the bottle wall. The plate valve 29 functions and closes off against the atmosphere, so that only medium between the inner bag and the bottle wall can flow in and not flow out.
(45) The dosage droplet generation from a fluid reservoir 10 that is sealed against the atmosphere via the inner tube valve 11 in connection with a squeeze bottle 26, and in the bottle with an inner bag 28 that can be drawn together under vacuum, and the plate valve 29 integrated in the bottle wall, functions via the squeeze pressure, triggered by the pressing together of the bottle wall and the pressure that results on the inner bag 28.
(46) The hollow space that is formed between the squeeze bottle 26 and the inner bag 28 through the removal of the droplet volume or removal of fluid from the inner bag 28 is used as a pressure store against the inner bag 28, whereby pressure is applied with compressed air due to the automatic closure of the plate valve 29 or with fluid against the bag wall through the squeezing of the bottle.
(47) The droplet generation also functions with fluid in the hollow space between the squeeze bottle 26 and the inner bag 28 and under water or in fluid media.
(48) The system with the inner tube valve area, the anchorage to the bottle and the inner bag as a fluid reservoir also remains one hundred percent tight during application and storage, so that even when applied over several weeks, no bacterial growth is possible in the system.
(49) TABLE-US-00001 List of reference numerals 1 Cartridge 2 Actuation element 3 Reservoir body 4 Valve pin 5 Cladding 6 Plug 7 Protection cap 8 Piston 9 Fluid groove 10 Reservoir 11 Inner tube valve area 12 Sealing ribs 13 Locking pin 14 Central bore 15 Transverse bore 16 Cladding geometry 17 Open system 18 Open cartridge 19 Perforation area 20 Product protection/protective cap 21 Bayonet lock 22 Separation area 23 Outlet bore 24 Return groove 25 Pump system 26 Squeeze bottle 27 Filter 28 Inner bag 29 Plate valve 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66