Device for rinsing a container with a rinsing medium
10576513 ยท 2020-03-03
Assignee
Inventors
Cpc classification
B08B15/00
PERFORMING OPERATIONS; TRANSPORTING
B08B5/02
PERFORMING OPERATIONS; TRANSPORTING
B08B5/04
PERFORMING OPERATIONS; TRANSPORTING
B08B9/093
PERFORMING OPERATIONS; TRANSPORTING
B08B9/20
PERFORMING OPERATIONS; TRANSPORTING
B08B9/28
PERFORMING OPERATIONS; TRANSPORTING
International classification
B08B15/00
PERFORMING OPERATIONS; TRANSPORTING
B08B9/28
PERFORMING OPERATIONS; TRANSPORTING
B08B9/093
PERFORMING OPERATIONS; TRANSPORTING
B08B9/20
PERFORMING OPERATIONS; TRANSPORTING
B08B5/02
PERFORMING OPERATIONS; TRANSPORTING
B08B9/34
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A device for rinsing a container with a rinsing medium is described. The device includes a nozzle for introducing the rinsing medium into the container that is to be rinsed and a suction extractor for extracting by suction at least a portion of the rinsing medium that flows back out of the container. The nozzle has a medium outlet through which the rinsing medium enters the container that is to be rinsed. The nozzle is displaceably guided in a guide and is displaceable between a withdrawn position for positioning the container and a position in which it is inserted in the container for rinsing the container with the rinsing medium. A guide is disposed between the medium outlet of the nozzle and at least a region of the suction extractor.
Claims
1. A device for rinsing a container with a rinsing medium comprising: a nozzle configured to introduce the rinsing medium into the container, wherein the nozzle comprises an outlet through which the rinsing medium enters the container that is to be rinsed, and is configured to be displaceable between a withdrawn position for positioning the container and a position in which the nozzle is inserted in the container for rinsing the container with the rinsing medium; a suction extractor configured to extract by suction at least a portion of the rinsing medium that flows back out of the container; and a guide disposed between the outlet and at least a region of the suction extractor, wherein: the nozzle is displaceably guided in the guide, and the guide encircles and contacts a portion of the nozzle in the position in which the nozzle is inserted in the container.
2. The device of claim 1, wherein the guide comprises a guide surface and the guide surface comprises a slide bearing that is formed between the guide and the nozzle.
3. The device of claim 2, wherein the suction extractor is configured to enable extraction by suction at least partially below the guide surface.
4. The device of claim 1, wherein the suction extractor comprises a suction chamber and an extraction connecting piece, and the guide is further disposed between the outlet and the suction chamber.
5. The device of claim 1, wherein the suction extractor surrounds the guide.
6. The device of claim 1, wherein the guide is entirely disposed in an area in which extraction by suction is carried out by the suction extractor.
7. The device of claim 1, wherein the suction extractor comprises a suction aperture configured to extract rinsing medium that flows back out of the container by suction.
8. The device of claim 7, wherein the suction aperture is oriented in a direction of the outlet.
9. The device of claim 1, wherein the nozzle further comprises a nozzle piston configured to displace the nozzle by an application of a rinsing medium pressure from the withdrawn position to the position in which the nozzle is inserted in the container.
10. The device of claim 1, wherein the nozzle is pretensioned in the withdrawn position using a pretensioning device.
11. The device of claim 10, wherein the pretensioning device comprises a helical spring, an elastomer and/or a pair of magnets.
12. The device of claim 11, wherein the pair of magnets are oriented such that the pair of magnets repel each other.
13. The device of claim 12, wherein a first one of the pair of magnets is disposed on a body of the nozzle and a second one of the pair of magnets is disposed on a nozzle piston.
14. A device for rinsing a container with a rinsing medium comprising: a nozzle configured to introduce the rinsing medium into the container, wherein the nozzle comprises an outlet through which the rinsing medium enters the container that is to be rinsed, and is configured to be displaceable between a withdrawn position for positioning the container and a position in which the nozzle is inserted in the container for rinsing the container with the rinsing medium, and wherein the nozzle further comprises a nozzle piston configured to displace the nozzle by an application of a rinsing medium pressure from the withdrawn position to the position in which the nozzle is inserted in the container; a suction extractor configured to extract by suction at least a portion of the rinsing medium that flows back out of the container; and a guide disposed between the outlet and at least a region of the suction extractor, wherein the nozzle is displaceably guided in the guide and the suction extractor is integrated with the guide.
15. The device of claim 14, wherein the suction extractor surrounds the guide.
16. The device of claim 14, wherein the suction extractor comprises a suction aperture configured to extract rinsing medium that flows back out of the container by suction.
17. The device of claim 14, wherein the nozzle is pretensioned in the withdrawn position using a pretensioning device.
18. The device of claim 17, wherein the pretensioning device comprises a helical spring, an elastomer and/or a pair of magnets.
19. A device for rinsing a container with a rinsing medium comprising: a nozzle body comprising a nozzle configured to introduce the rinsing medium into the container, wherein the nozzle comprises an outlet through which the rinsing medium enters the container that is to be rinsed, and is configured to be displaceable between a withdrawn position for positioning the container and a position in which the nozzle is inserted in the container for rinsing the container with the rinsing medium; and a mouth attachment attached to the nozzle body comprising: an outer wall surrounding: a suction aperture configured to extract rinsing medium that flows back out of the container by suction, and a guide comprising a guide surface that encircles and contacts a portion of the nozzle in the position in which the nozzle is inserted in the container, wherein: the outer wall defines a suction chamber, and the suction chamber is disposed below the guide.
20. The device of claim 19, wherein: the suction aperture is disposed between the guide and the outer wall along a transverse axis of the mouth attachment, and the mouth attachment further comprises a crosspiece configured to attach the guide to the outer wall.
Description
BRIEF DESCRIPTION OF THE FIGURES
(1) Further embodiments of the present invention are more fully explained by the description below of the figures.
(2)
(3)
(4)
(5)
DETAILED DESCRIPTION
(6) Examples of embodiments are described below with the aid of the figures. In the figures, elements which are identical or similar, or have identical effects, are designated with identical reference signs. In order to avoid redundancy, repeated description of these elements is in part dispensed with in the description below.
(7)
(8) The nozzle 2 can be advanced in the direction indicated by the arrow, and in this manner inserted into the container that is to be rinsed, in order thereby to reach a position in which it is inserted in the container. The rinsing medium thereby passes through a medium channel 22 in the nozzle 2, in order that it can exit from the medium outlet 20.
(9) In
(10) The nozzle 2 is guided in a guide 3, wherein the nozzle 2 is displaceable relative to the guide 3, in particular between the withdrawn position that is shown in
(11) Between the guide 3 and the nozzle 2 a guide surface 4 is formed, along which the guide 3 guides the nozzle 2. The guide surface 4 is designed here as a slide bearing, so that the outside of the nozzle 2 thus slides along the inside of the guide 3. During the process of sliding the nozzle 2 relative to the guide 3 between the withdrawn position shown in
(12) In order to prevent such introduction of particles into the container that is to be rinsed, a suction extractor 5 is provided, which is connected by means of an extraction connecting piece 50 to an underpressure device or suction extraction device (neither of which is shown). In the example embodiment shown in
(13) Because the guide 3, and in particular the guide surface 4, is disposed between the medium outlet 20 and the suction extractor 5, a volume flow is directed towards the suction extractor 5, i.e. towards the extraction connecting piece 50, which conveys away any particles that are detached or set free from the guide 3 or the nozzle 2. These particles, which are in particular detached at the guide surface 4, are then sucked away, and cannot be introduced into the interior of the container that is to be treated or rinsed. In this case, these particles also do not contaminate the surroundings, with the result that not only the hygiene of the rinsing device itself but also the hygiene of the beverage filling plant as a whole can be improved.
(14) In the example embodiment that is shown, the suction extractor 5 comprising the suction chamber 52 and the extraction connecting piece 50 is integrated with the guide 3. An appropriate mouth attachment 6 can be seen in
(15) In the mouth attachment 6, the guide 3 is fixedly attached by at least one crosspiece 60 to an outer wall 56 that defines the suction chamber 52. The mouth attachment 6 can be formed as a single piece, for example as an injection molded part or casting.
(16) In
(17) A pretensioning device 7, shown here in the form of a helical spring 74, is also provided, and applies a force to the rear of the nozzle piston 26 that counteracts the pressure that displaces it.
(18) Accordingly, the nozzle 2 can be displaced from the withdrawn position, into which it is pressed by means of the pretensioning device 7, to the position in which it is inserted in the container, in that an appropriate rinsing medium pressure is applied to the nozzle piston 26 via the rinsing medium intake 28, such that the rinsing medium pressure is exerted on the nozzle piston 26. The force thereby arising compresses the pretensioning device 7, so that the nozzle 2 is pushed in the direction of the interior of the container.
(19) Ambient air or ambient atmosphere, along with the rinsing medium that flows back out of rinsed container, flows into the suction extractor 5 via the suction aperture 54, which is oriented in the direction of the medium outlet 20. If the rinsing is carried out with a gas, for example air, sterile air or ionized air, when the container has been rinsed the air accordingly flows back out of its mouth and enters the suction extractor via the suction aperture 54. Together with the rinsing medium, particles that are flushed out of the rinsed container are also sucked out via the suction extractor 5. At the same time, due to the flow of rinsing medium directed to the suction extractor 5 and the suction extractor itself, the extraction by suction takes place of particles that may have detached from the guide surface 4, the guide 3 and/or the exterior of the nozzle 2. Thus, an improved removal takes place of the particles that are flushed out of the rinsed container, as well as the particles that are produced within the device for rinsing. Furthermore, these particles are not released into the surroundings, but are, at least in part, extracted via the suction extractor 5.
(20)
(21)
(22) The mouth 110 of the container that is to be rinsed is disposed over the nozzle 2, i.e. the nozzle 2 is inserted in the mouth 110 of the container 100. The dimensions of the nozzle 2 are such that an annular gap, through which the rinsing medium can leave the container 100, remains between the nozzle 2 and the mouth 110 of the container 100.
(23) It can be seen by means of the schematically shown arrows that the rinsing medium that flows out of the container 100 passes into the suction extractor 5 via the suction aperture 54 that is disposed on its face, in order then to be sucked via the suction chamber 52 into the extraction connecting piece 50. In the process the rinsing medium also flows around the guide 3, the guide surface 4 and/or the nozzle 2, so that the guide 3 is surrounded by the suction extractor, and accordingly particles that are detached in the area of the guide 3 in the region of the guide surface 4 or on the outside of the nozzle 2, can be extracted via the suction extractor 5.
(24) To the extent applicable, all individual features described in the individual example embodiments can be combined with each other and/or exchanged, without departing from the field of the invention.