Device for evacuating a container having pasty liquid
11192774 · 2021-12-07
Inventors
Cpc classification
B67C9/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
B67D7/02
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A device for evacuating a container that contains a pasty liquid to avoid air inclusions or bubbles in the liquid while the container is being filled and/or to eliminate air between the liquid surface and a follower plate until the plate contacts the liquid surface during insertion of the plate into the container before removal of the liquid. The device comprises a cover assembly to close an opening of a container in a vacuum-tight manner and which has a connection device for connecting an evacuation pump. A collapse avoidance apparatus is provided to surround at least one region of the outer faces of the container walls with a seal to connect to the wall outer face in a vacuum-tight manner and form a vacuum-tight collapse avoidance chamber. A connection device is provided for connecting an evacuation pump to evacuate the chamber and apply a vacuum on the wall outer face.
Claims
1. A device configured to evacuate a container containing a pasty liquid so as to avoid air inclusions or bubbles in the liquid while the container is being filled with the liquid and/or to eliminate air between the material surface of the liquid contained in the container and a barrel follower plate until the barrel follower plate makes contact with the liquid surface during the insertion of the barrel follower plate into the container prior to removal of the liquid, the device comprising: a cover assembly adapted to close an opening of the container in a vacuum-tight manner, the cover assembly including an outer face and a connection device arranged on the outer face of the cover assembly, the connection device configured to be connected to a first evacuation pump, and a collapse avoidance apparatus configured to surround at least one region of an outer face of a wall of the container with a seal surrounding the region, the seal adapted to contact and connect to the outer face of the wall of the container in a vacuum-tight manner and to form a vacuum-tight collapse avoidance chamber together with the outer face of the wall of the container, the vacuum-tight collapse avoidance chamber having a connection device configured to connect to a second evacuation pump such that during the evacuation of the collapse avoidance chamber the vacuum therein acts on the outer face of the wall of the container.
2. The device according to claim 1, wherein the container is a circular cylindrical container, and wherein the collapse avoidance apparatus is adapted to regions of the outer face of the wall of the circular cylindrical container.
3. The device according to claim 2, wherein the circular cylindrical container includes a cylinder jacket surface and a base, and wherein the collapse avoidance apparatus is adapted to regions of outer faces of walls of the cylinder jacket surface and/or walls the base of the container.
4. The device according to claim 2, wherein the collapse avoidance apparatus is configured to stand on a level floor and includes an overall vacuum-tight side wall assembly of the collapse avoidance chamber and an overall vacuum-tight base wall assembly which connects around the full periphery to the bottom edge of the side wall assembly in a vacuum-tight manner, the side wall assembly includes an inner face in the form of a circular cylinder jacket surface, the side wall assembly has a vertically oriented cylinder axis, an inner diameter which is at least as great as the diameter of the circular cylindrical container, and a height which is approximately as great as the height of the circular cylindrical container, the top edge of the side wall assembly has a peripheral seal which is adapted to connect in a vacuum-tight manner to the outer face of the wall of the top edge region of the circular cylindrical container in the collapse avoidance apparatus.
5. The device according to claim 4, wherein the side wall assembly has a one-, two- or multi-leafed door which, when open, exposes an opening which extends over the entire height of the side wall assembly and the width of which is greater than the diameter of the circular cylindrical container.
6. The device according to claim 4, wherein the base wall assembly has heavy-duty rollers or ball rollers on the inside.
7. The device according to claim 1, wherein the interior of the container has a cylindrical inner contour, the cover assembly including a follower plate with a seal that is arranged on a periphery of the follower plate and is adapted to be inserted into the cylindrical inner contour of the container to seal around the periphery, the follower plate is adapted to be moveably guided in a translationally vertical downward manner by a guide along a cylinder axis of the container when the container is oriented with the cylinder axis in a vertical direction, the follower plate is configured to be lowered downwards in the direction of the cylinder axis onto a liquid level of the liquid contained in the container.
8. The device according to claim 1, wherein the container is a smooth-walled cylindrical sheet steel lidded barrel or is a cylindrical plastic drum.
9. The device according to claim 2, wherein the circular cylindrical container is a sheet steel lidded barrel or a plastic drum.
Description
(1) These and other advantages and features of the invention are further described using the following illustrations of an exemplary embodiment of the invention.
(2)
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(10) The illustrated device 2 serves to evacuate a circular cylindrical container 4 (illustrated in the form of a cylindrical sheet steel lidded drum 4) containing a pasty liquid 6, in particular firstly while the container is being filled with the liquid (in order to avoid bubbles or air inclusions therein;
(11) In two exemplary applications according to
(12) The device 2 can thus be used to fill a cylindrical drum 4, whereby the fed liquid (schematically indicated by the arrows 18) is poured in through the vacuum-tight cover assembly 10 (either a cover assembly according to
(13) After this filling, the barrel follower plate 10 can then be controlled under a continuing vacuum and slowly lowered in order finally to make contact with the liquid surface 6 with its bottom side. This is also described further below (
(14) According to a further possibility (
(15) The collapse avoidance apparatus 22 is designed to stand on a level floor 33. It has an overall vacuum-tight side wall assembly 34, the inner face 36 of which overall has the approximate contour of a circular cylinder jacket surface, and an overall vacuum-tight base wall assembly 38. Set on the floor 40 as illustrated in
(16) The wall assemblies 34, 38 together forming a vacuum-tight wall connect in a vacuum-tight manner to the wall outer face 26 of the container 4 just before the top edge 32 of the container 4 by means of the seal 24: The top edge of the side wall assembly 34 has a surrounding seal 24 which is adapted to connect in a vacuum-tight manner to the wall outer face 26 of the top edge region of the circular cylindrical container 4 in the collapse avoidance apparatus 22. When configured in such a manner, the collapse avoidance apparatus 22 can cover the whole outer face of the container 4 which is therein and allow vacuum to act on the entire cylinder jacket surface and base surface of its outer faces. Only the upper face of the circular cylindrical container 4, which face is formed as a barrel opening 12, remains free from the apparatus 22 and thus accessible.
(17) In order to be able to place the container 4 in the apparatus 22, the side wall assembly 34 has a two-leafed door 44 which, when open, exposes an opening (
(18) In order to be able to push the container 4 more easily into the apparatus 22, the base wall assembly has heavy-duty ball rollers 46 on the inside. For centring in the collapse avoidance apparatus 22, prior to being pushed in the container 4 is placed on a centring plate 48 with which it fits positively with its bottom flange edge.
(19) In order now to be able to use the barrel follower plate 10 in the cylindrical container 4, the follower plate has a seal 52 which is arranged on a periphery of the follower plate 10 and is adapted such that it can be inserted into the cylindrical inner contour of the container 4 such that it seals around the periphery. The follower plate is also adapted so as to be moveably guided in a translationally vertical downward manner by a guide 54 in the direction of the cylinder axis 42 of the thus oriented container 4 in such a way that the follower plate 10 can be lowered downwards onto the liquid level 6 in the container in the direction of the cylinder axis.