Container closure for a beverage can
11465827 · 2022-10-11
Assignee
Inventors
Cpc classification
B65D85/73
PERFORMING OPERATIONS; TRANSPORTING
B65D2517/0014
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A container closing device for a beverage can having an opening tab which is disposed on a can lid and pivotable about a pivot reception formed in a lid bottom, the opening tab being provided with a reactive surface on its underside facing the lid bottom for contact with a liquid pouring from the pouring opening, a sealed space being realized in the area of the reactive surface and a closing piece disposed in the lid bottom between a pouring protrusion and the lid bottom so that the reactive surface is disposed at least partially in the sealed space and is sealed against the environment.
Claims
1. A container closing device for a beverage can having an opening tab which is disposed on a can lid, is pivotable about a pivot reception formed in a lid bottom and comprises a push opener on one side of a pivot axis received in the pivot reception and an actuating end on an opposite side of the pivot axis for handling, the lid bottom comprising a closing piece, which is divided from the surrounding lid bottom via a rupture inducing score, below the push opener in such a manner that the closing piece is pressurized via the push opener as a result of a pivoting movement of the opening tab and is detached from the connection to the surrounding lid bottom along the rupture inducing score for releasing a pouring opening, the container closing device having a pouring protrusion which is disposed on the same side of the pivot axis as the push opener, covers the closing piece and comprises a support end for supporting the pouring protrusion at the lid bottom during the pivoting movement of the opening tab, the opening tab being provided with a reactive surface on its underside facing the lid bottom for contact with a liquid pouring from the pouring opening, a sealed space being realized in the area of the reactive surface and the closing piece between the pouring protrusion and the lid bottom so that the reactive surface is disposed at least partially in the sealed space and is sealed against an environment.
2. The container closing device according to claim 1, wherein an elastic sealing device is provided for sealing the sealed space between the pouring protrusion and the lid bottom.
3. The container closing device according to claim 1, wherein the rupture inducing score realized in the lid bottom is disposed entirely in the sealed space.
4. The container closing device according to claim 1, wherein the reactive surface realized on the underside of the pouring protrusion is disposed entirely in the sealed space.
5. The container closing device according to claim 1, wherein the sealing device comprises sealing receptions which are disposed in the lid bottom and/or on the underside of the pouring protrusion and serve to receive a seal.
6. The container closing device according to claim 5, wherein the sealing receptions are at least partially realized as receiving beads realized in the underside of the pouring protrusion and/or in the lid bottom.
7. The container closing device according to claim 1, wherein the support end of the pouring protrusion is realized as a rim web which is supported at the lid bottom having the seal sandwiched therebetween.
8. The container closing device according to claim 7, wherein the sealing device has a lid-bottom seal and a pouring-protrusion seal, a radially outer bead section, which extends parallel to the rim web of the pouring protrusion and extends in the circumferential direction of the lid bottom, and two bead sections, which are directed inward and each extend transversally to the circumference from the ends of the radially outer bead section, being provided for realizing the lid-bottom seal in the lid bottom, a radially inner bead section being realized in the underside of the pouring protrusion for realizing the pouring-protrusion seal, the radially inner bead section extending between free end areas of the bead sections, which are directed inward and realized in the lid bottom, in such a manner that a seal, which is disposed in the radially inner bead section of the pouring protrusion, covers axial sealing ends of the seal disposed in the bead sections of the lid-bottom seal, which are directed inward, with axial sealing ends.
9. The container closing device according to claim 7, wherein the sealing device is realized as a sealing frame disposed at the lid bottom and having a circumferential bead in the lid bottom.
10. The container closing device according to claim 1, wherein the support end of the pouring protrusion is realized as a rim web which is supported at the lid bottom adjacent to the seal disposed on the underside of the pouring protrusion.
11. The container closing device according to claim 10, wherein the sealing device is realized as a sealing frame disposed in the pouring protrusion and having a circumferential bead in the underside of the pouring protrusion.
12. The container closing device according to claim 1, wherein the reactive surface is provided with a surface for encouraging bubble nucleation and bubble growth in a liquid which is received in the beverage can and contains oversaturated nitrogen or a gas mixture comprising dissolved nitrogen.
13. The container closing device according to claim 1, wherein the reactive surface is provided with an anodically produced aluminum oxide coating of a partial area of the underside of the pouring protrusion.
14. A beverage can having a container closing device according to claim 1.
Description
(1) In the following, preferred embodiments of the disclosure are described in more detail by means of the drawing.
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(13) Container closing device 12 comprises an opening tab 13 and a pouring protrusion 14. Opening tab 13 comprises a pivot axis 15 which is borne in a pivot reception 16 realized in lid bottom 11. An actuating end 17 is located on one side of pivot axis 15 and can be pivoted about pivot axis 15 by a pivoting movement 18 so that a push opener 19 of opening tab 13 which is realized on the other side of pivot axis 15 opposite actuating end 17 is pivoted against a closing piece 20 realized in the lid bottom, and closing piece 20 is detached from its connection to surrounding lid bottom 11 and pivoted down (
(14) After performing an opening movement 18 until actuating end 17 is pivoted open (not illustrated) to an essentially vertical position with respect to lid bottom 11, a position of closing piece 20 illustrated in
(15) During opening movement 18, pouring protrusion 14 of container closing device 12 realized on the same side of pivot axis 15 as push opener 19 is supported on lid bottom 11 with a rim web 25 realized on the outer circumference of pouring protrusion 14 so that as a result of opening movement 18 between actuating end 17 of opening tab 13 and pouring protrusion 14, an opening angle α illustrated in
(16) As
(17) Preferably, the reactive surface 30 is designed such that it has a porous surface which is produced in particular by an aluminum oxide coating of underside 27 of pouring protrusion 14 and has a pore size of 40 nm, for example. When producing the container closing device and/or pouring protrusion 14 of container closing device 12 from an aluminum sheet, reactive surface 30 can be produced via an anodizing process, a locally defined formation of reactive surface 30 on underside 27 being able to be enabled by surface areas of underside 27 of pouring protrusion 14 and/or of container closing device 12 not to be provided with an aluminum oxide coating but instead being provided with a suitable passivation, for example a lacquer coating.
(18) If the liquid received in a beverage can provided with the exemplarily illustrated can lid 10 contains oversaturated nitrogen or a gas mixture having dissolved nitrogen, reactive surface 30 can serve to produce bubble nucleation and/or growth in the liquid coming into contact with reactive surface 30 while being poured in order to enable and/or encourage a desired foam growth.
(19) As a synopsis of
(20) For realizing pouring-protrusion seal 32, a radially inner bead section 36 is realized in underside 27 of pouring protrusion 14 and extends between free end areas 37 of bead sections 34, 35, which are directed inward and are formed in lid bottom 11, in such a manner that a sealing means, which is disposed in the radially inner bead section of pouring protrusion 14 and realized as a silicone strand, for example, is disposed with axial sealing ends 40 so as to cover axial sealing ends of a sealing means 39 disposed in bead sections 34, 35 of lid-bottom seal 31, which are directed inward, and preferably realized congruently with sealing means 38.
(21) In
(22) As in particular
(23) Moreover, until container closing device 41 has been opened, contact between reactive surface 52 and a medium surrounding lid bottom 48 is only possible after container closing device 41 has been opened.
(24) In
(25) Comparable to sealing device 29 on lid bottom 10 illustrated in
(26) In contrast to pouring protrusion 14 of container closing device 12 having rim web 25, which is supported on lid bottom 11, at a distance a from radially outer bead section 33 of sealing device 29 so that rim web 25 is supported directly on lid bottom 11, pouring protrusion 61 comprises a rim web 76, as in particular