Closure system and container having a closure system
10293990 ยท 2019-05-21
Assignee
Inventors
Cpc classification
B65D47/20
PERFORMING OPERATIONS; TRANSPORTING
B65D41/62
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65D47/20
PERFORMING OPERATIONS; TRANSPORTING
B65D41/62
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The closure system includes an applicator having a closing member (7) which is realized for closing an outlet opening (11) as a result of the restoring force of a resilient restoring element. A blocking element (19) is movable such that, in a blocking position, it retains the closing member (7) in the closed position, but in the open position allows the outlet opening (11) to open.
Claims
1. A closure system for a container (1) of paste or liquid media, which container is realized as a tube or bottle and includes an output neck (1a), said closure system comprising an applicator which is connectable to the output neck (1a) and includes a channel with a container-side inlet opening (15) and at least one through-opening (17a, 17b), a valve with a valve cover, the at least one through-opening leading to a chamber (37) which is delimited on an outside by the valve cover (9), said valve cover (9) comprises an outlet opening (11) with a valve seat, and a closing member (7) of the valve is fastened on the applicator and is movable between an open position, in which a pressure of the paste or liquid media in the chamber acting on a chamber side surface of the closing member (7) elastically deforms the closing member and releases the outlet opening (11), and a closing position, in which the closing member is pressed from an inside surface of the chamber (37) against the valve seat by a restoring force of a resiliently deformable restoring element and, as a result, closes the outlet opening (11), and a mechanical blocking element (19), a relative position of which with respect to the closing member (7) is modifiable between a releasing position and a blocking position, wherein the blocking element (19) prevents the valve from opening in the blocking position, but not in the releasing position.
2. The closure system as claimed in claim 1, wherein the applicator includes an applicator inside part (5a) and an applicator outside part (5b), the applicator inside part (5a) is fastenable on the output neck (1a) and includes the blocking element (19), the valve cover (9) and the closing member (7) are fastened on the applicator outside part (5b), and the applicator outside part (5b) is mounted so as to be movable relative to the applicator inside part (5a) such that the position of the blocking element (19) relative to the closing member (7) is modifiable between the blocking position and the releasing position.
3. The closure system as claimed in claim 2, wherein the channel is a tubular portion of the applicator inside part (5a), and the blocking element (19) is a locking bolt which projects axially at an end-face end of said tubular portion.
4. The closure system as claimed in claim 3, wherein the applicator outside part (5b) includes a tubular portion which encases the applicator inside part (5a), a guide opening (25), through which the locking bolt projects, is provided on an end-face of the applicator outside part (5b), and the applicator outside part (5b) is movable axially relative to the applicator inside part (5a) between the blocking position and the releasing position.
5. The closure system as claimed in claim 4, further comprising radially projecting threaded cams (21) on the applicator inside part (5a), said threaded cams (21) engage with corresponding threaded groove portions (23) on an inside surface of the applicator outside part (5b), and the applicator outside part (5b) is adjustable relative to the applicator inside part (5a) due to a pitch of the threaded groove portions (23) as a result of rotation between the blocking position and the releasing position.
6. The closure system as claimed in claim 4, further comprising a retaining ring (27) that projects on the end-face end of the applicator outside part (5b) coaxially and peripherally with respect to the guide opening (25), and the closing member (7) includes a resilient membrane cover, and a bottom edge region of said cover is fastened on the retaining ring (27).
7. The closure system as claimed in claim 4, wherein the blocking element (19), in the blocking position, is in abutment with the closing member (7) and presses said closing member against the valve seat on the valve cover (9), and the blocking element (19), in the releasing position, is at such a spacing with respect to the closing member (7) that said closing member is movable as a result of overpressure on a side of the chamber (37) in order to release the outlet opening (11).
8. The closure system as claimed in claim 6, wherein the applicator outside part (5b) includes secondary through-openings (17b) which open out into the chamber (37) peripherally with respect to the retaining ring (27) and connect said chamber (37) to a space (39) which is connected to the channel of the applicator inside part (5a) by primary through-openings (17a).
9. The closure system as claimed in claim 1, wherein the applicator includes an applicator inside part (5a) and an applicator outside part (5b), and the valve cover (9) is non-rotatably connected to the applicator outside part (5b).
10. A container (1) for paste or liquid media comprising an output neck (1a) and a closure system as claimed in claim 1 connected to the output neck (1a).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) A preferred embodiment of the closure system according to the invention is described in more detail by way of some figures, in which
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(15)
(16) The closure system 3 includes an applicator 5 with an inside part 5a and an outside part 5b. The inside part 5a is shown in perspective in
(17) In the view from below of the applicator outside part 5b in
(18) The outside part 5b is realized in a cover-like manner. It encases the inside part 5a and on its end-face end includes a guide opening 25, through which the blocking element 19 projects. The guide opening 25 or the inside edge of the applicator outside part 5c which adjoins the blocking element 19 are realized such that the blocking element 19 abuts tightly against said inside edge and can be both displaced axially in the direction of the rotational axis A and rotated about the rotational axis A relative to the applicator outside part 5b. Several secondary through-openings 17b are provided peripherally with respect to the guide opening 25 on the end-face end of the outside part 5b. Between said secondary through-openings 17b and the centrally arranged guide opening 25, the outside part 5b includes an axially protruding retaining ring 27.
(19) The closing member 7 is shown in perspective in
(20) In the blocking position shown in
(21) In addition to the closing member 7, the valve cover 9 is also connected non-rotatably in a non-positive locking and/or positive locking manner to the applicator outside part 5b. When the closure system is produced, the valve cover 9 is inverted from the side with the closing member 7 over the applicator outside part 5b. In this case, resilient latching elements 28 with steps that are arranged on the inside surface of the valve cover 9 are pressed outward through a conical ring-shaped collar 29 on the outside surface of the applicator outside part 5b. After overcoming said ring-shaped collars 29, the latching elements 28 spring back. Due to the undercut of the latching elements 28 and of the ring-shaped collar 29, the valve cover 9 is retained on the applicator outside part 5b. The bottom edge of the valve cover 9, in the mounted state, rests on a shoulder 31 in the bottom region of the applicator outside part 5b and is additionally supported radially on the inside surface by a support ring 33. The non-rotatable connection between the valve cover 9 and the applicator outside part 5b can be effected as a result of non-positive locking abutment and/or as a result of portions that engage behind in a positive locking manner. In particular, for example, the outside surface of the support ring 33 and the inside surface of the valve cover can be interlocked together (not shown).
(22) The bottom region of the applicator outside part 5b is preferably realized adjoining the shoulder 31 as an apron 32 with fluting on the outside which improves the grip when the outside part 5b and the parts non-rotatably connected thereto are rotated.
(23) A ring-shaped bead 35, which is pressed onto the outside wall of the applicator outside part 5b, is realized on the inside surface of the valve cover 9 in the region of the top edge of the tubular portion of the applicator outside part 5b. This connection is at the same time tight and impermeable to the filler in the container 1.
(24) The topmost region of the valve cover 9 and the outside surface of the closing member 7 delimit a chamber 37 into which the secondary through-openings 17b of the applicator outside part 5b open out. The secondary through-openings 17b are connected to the primary through openings 17a and consequently via the tubular portion of the applicator inside part 5a to the interior of the container 1 via a space 39 between the end-face end of the applicator outside part 5b and the end-face end of the applicator inside part 5a.
(25) If, in the blocked state, pressure is exerted onto the media in the container 1, it does pass into the chamber 37 but cannot escape through the outlet opening 11 from the valve cover 9 as the closing member 7 is pressed against the valve seat by the blocking means 19. A further ring-shaped bead 36, which protrudes slightly radially beyond the outer lateral surface of the tubular portion in the region of the end-face end of the applicator inside part 5a, abuts against the inside wall of the applicator outside part 5b. This contact zone is sealed to the media in the space 39, even if it is slightly pressurized. The ring-shaped bead 36 is additionally a guide means which allows a relative translational movement and rotational movement of the outside part 5b and of the inside part 5a of the applicator in or about the rotational axis A.
(26) When the closure system is not in use, the protective cover 13 can be inverted over the valve cover 9 and connected to the same so as to be re-detachable, for example by means of a snap-on connection. Two or several portions of a ring-shaped rib 41 protrude inward and a corresponding retaining groove 43 is realized on the outside surface of the valve cover for this purpose on the inside surface on the protective cover 13.
(27)
(28) The closure system is then moved back into the blocking position as a result of rotating the valve cover 9 in the opposite direction. At the same time, the volume of the space 39 becomes somewhat smaller again. The medium is lightly pressurized again as a result. This causes part of the medium displaced in such a manner to be pressed back in the direction of the container 1 and part of the medium to be pressed out of the closure system through the outlet opening 11 that is not yet blocked. Possible contaminants in the medium in the region of the outlet opening 11 are thus reliably expelled, as a result of which the risk of contaminating the medium in the chamber 37 can be minimized.
(29) The closure system, in conjunction with containers 1 which are elastically or plastically deformable, is suitable for pressing the medium out of the container through the outlet opening 11. As an alternative to this, the closure system can also be used with rigid containers where the medium is pressurized in another manner, for example, by a piston or by a suitable gas.
(30) If it is necessary to certain media for surrounding air to flow into the chamber 37 and/or into the cavity under the membrane-like closing member 7, corresponding ventilation ducts can be provided (not shown). These are preferably realized and arranged such that the air is not sucked into the valve cover 9 via the outlet opening 11 as otherwise germs or dirt particles could pass into the chamber 37. Where required, such air ducts can include filters and/or one-way valves which ensure that only clean air is able to enter and that the medium is not able to escape though said ducts.
KEY TO THE REFERENCES
(31) 1 Container
(32) 1a Output neck
(33) 3 Closure system
(34) 5 Applicator
(35) 5a Applicator inside part
(36) 5b Applicator outside part
(37) 7 Closing member
(38) 8 Closing body
(39) 9 Valve cover
(40) 11 Outlet opening
(41) 13 Protective cap
(42) 15 Inlet opening
(43) 17a Primary through-openings
(44) 17b Secondary through-openings
(45) 19 Blocking element
(46) 21 Threaded cams
(47) 23 Threaded groove portions
(48) 25 Guide opening
(49) 27 Retaining ring
(50) 28 Latching elements
(51) 29 Ring-shaped collar
(52) 31 Shoulder
(53) 33 Support ring
(54) 35 Ring-shaped bead
(55) 37 Chamber
(56) 39 Space
(57) 41 Rib