This is the United States National Stage of PCT Application No. PCT/EP2016/000221, filed Feb. 10, 2016, the entire contents of which are incorporated herein by reference.
The invention relates to a set consisting of at least two containers each having different internal volumes, wherein the containers each have:
wherein at least one wall portion of the respective casing runs at an inclination in relation to a vertical axis of the container, said vertical axis running perpendicularly to the base, in such a manner that an internal cross section of the container that is defined in each case by the casing decreases continuously from the opening cross section as far as the base, and the opening cross sections of all of the containers of the set are identical.
Containers are used for many purposes and serve in particular for storing, transporting, collecting and disposing of substances or materials, wherein containers are known in any size and shape. Waste containers which are provided for use in hospitals, veterinary clinics, and doctor and dentist practices and also in medical research and development laboratories where in particular infectious waste arises are only used once and are disposed of together with the waste located therein after they have been closed in a suitable manner. For this reason, it is necessary in these use sectors to store a correspondingly high number of new empty containers which, for space reasons, have to be stackable, i.e. placeable one inside another. A problem which arises during the stacking of containers is that stacked containers can often only be unstacked, i.e. separated from one another, with extreme difficulty. This can be attributed to the fact that the casing surfaces of containers stacked one inside another lie against one another in an encircling manner over a certain height and also slide along one another as they are being pulled apart, and therefore, firstly, a frictional resistance arises, and, secondly, a vacuum arises in the intermediate space between the containers.
A second problem with the storage of the filled and closed containers arises because of the requirement of storing and transporting said containers in as space-saving a manner as possible. For this purpose, containers of different sizes have to be able to be stacked securely on one another. This means that the bottom surfaces of the upper containers of any size are centred neatly on the lid surfaces of the lower containers of any size.
Consequently, it is the object of the present invention to provide a set of containers of the type mentioned at the beginning, which set overcomes the aforementioned disadvantages and is distinguished by space-saving stackability and simple unstackability.
This object is achieved in that even the bases of all of the containers of the set are identical, and the at least one wall portion of the respective casing of all of the containers of the set in each case have
It is already customary in the prior art to design the opening cross section of containers of different internal volumes identically, and therefore identical lids can be used for closing the containers. According to the invention, however, the base of the various containers is also configured identically, which has the advantage that good stackability of closed containers, i.e. containers provided with a lid, is achieved, wherein the containers can have different internal volumes. By this means, flexibility is provided in the storage and use of containers of various sizes, which permits an optimum choice of the respectively required container size.
The fact that the at least one wall portion of the respective casing of all of the containers of the set in each case has a rectilinear portion in which, in each vertical projection plane parallel to a vertical axis of the container, the wall portion leaves behind two trace lines which diverge towards the opening cross section and each enclose an angle of at least 2 degrees or between 2 degrees and 5 degrees with the vertical axis, means that the cross section of the base of the containers is smaller in this region than the respective opening cross section of same. The vertical axis of the containers typically coincides with the vertical, and the term “rectilinear portion” should be understood as meaning a surface.
With this inclined profile of the wall portion, it has been shown that, when the containers are stacked one inside another, only a very small part of the relevant inner or outer casing surface of stacked containers comes to lie against one another, and therefore the frictional resistance during the unstacking is only small. With regard to the vacuum which arises during the unstacking of conventional containers, is has furthermore been shown that, because of the inclination according to the invention of the casing surfaces, even a small relative displacement of the stacked container suffices in order to provide a slot for ambient air flowing in, and therefore a vacuum cannot arise. Stacked containers according to the invention can therefore be released again from one another or unstacked without great effort. Accordingly, an angle has been found which, firstly, is as large as possible, in order to ensure a sufficient cross section for ventilation during the unstacking of the nested containers, and, secondly, is not too large since otherwise, in particular in the case of the large containers, with the opening cross section being the same the base standing surface would turn out to be inappropriately small.
The positive effect of the inclined wall portion can be increased if the containers of the set have a plurality of such wall portions. It is also possible for the entire casing surface to be correspondingly inclined, and therefore the casing surface of the containers encloses an angle of at least 2 degrees, preferably of between 2 degrees and 5 degrees, with the vertical in an encircling manner.
In order to make it possible at all for containers in each case having different internal volumes to have an identical opening cross section on the upper side and an identical base, the containers of the set, with the rectilinear portions in each case inclined identically, have to have a transition portion which in each case differs in design and is located between the rectilinear portion and the base and therefore provides a connection between the rectilinear portion and the base. The transition portion merges tangentially both into the rectilinear portion and into the base, wherein the profile of the transition portion can consist or be composed of arcs, circular arcs, elliptical arcs and straight lines. However, any other profile is also conceivable, wherein advantageously there should not be any bends or turning points. This should be taken into consideration primarily in respect of high stability.
Alternatively, containers having different internal volumes and an identical opening cross section on the upper side and with an identical base can also be obtained by the fact that the containers of the set have an identical transition portion and rectilinear portions with different inclinations.
For the provision of different internal volumes, the containers of the set according to the invention therefore have a different height which is compensated for by the different design of the respective transition portion. The at least two containers here can have any desired internal volume, but in practice internal volumes of 30 liters, 50 liters and 60 liters have proven particularly useful. With regard to the stability and tightness of the containers, the latter can be manufactured from plastic.
It goes without saying that the containers can have any desired cross section, i.e. for example, can have a polygonal, round or elliptical cross section. Mixed forms of round and angular cross sections are also possible, for example a rectangular cross section with rounded corners. Owing to the fact that at least one portion of the container is inclined in relation to the vertical, an upper cross-sectional area is greater than a cross-sectional area located below. The casing can also be inclined overall in relation to the vertical.
According to the invention, the transition portion is composed of two arc portions, wherein an arc portion adjacent to the rectilinear portion has a larger radius than an arc portion adjacent to the base, and the two arc portions merge tangentially into each other. The transition portion as such therefore does not have any bend either.
In this regard, it is furthermore of advantage if the arc portion adjacent to the base has the same curvature in all of the containers of the set. This means that the transition from the base into the transition portion is of identical design in all of the containers of the set, which is expedient in respect of the use of a standard lid of the containers, onto which lid a full container which is to be stacked comes to stand. Owing to the different internal volumes of the containers of the set, said internal volumes typically being achieved by rectilinear portions of different length, the arc length of the arc portions which are adjacent to the base, of the various containers differs while the curvature is identical.
At least one portion can be designed as a circular arc portion, wherein it has proven advantageous if a circular arc portion adjacent to the base has a radius of between 12 mm and 18 mm, preferably a radius of 15 mm.
Furthermore, it is conceivable for the transition portion to be composed of two arc portions which preferably connect by means of a straight line.
According to a variant embodiment of the set according to the invention, an upper side of all of the containers of the set, said upper side surrounding the opening cross section, is in each case provided with an encircling edge flange which is provided in an encircling manner with latching openings which are each spaced apart from one another in a spread out manner. Accordingly, the containers of such a set are suitable as waste containers in hospitals or other medical sectors in which the containers are permanently closed after filling with corresponding lids. The known lids are distinguished by snap hooks which are arranged in an encircling manner and are introduced into the aforementioned latching openings.
With regard to closing at least one container of the set, it is of advantage if the set according to the invention comprises a lid with a surface matched to the base of the containers, and with an elevation which is matched to the transition portion of the at least one wall portion and starts from a supporting surface, wherein, in a stacked state of two containers, of which the lower is provided with a lid, regions of the transition portion are supported on contact surfaces of the elevation. The elevation can also be understood as a bead or step. The lid designed in such a manner ensures that any container of the set can be closed, wherein another container of the set can be positioned on the container closed with the lid. The corresponding design of a lower side of the container and an upper side of the lid gives rise, during the stacking of two containers, to a stable and precisely predefined position of the container located uppermost. Of course, the set according to the invention can include a number of identically designed lids corresponding to the number of containers of the set. In the event that the containers have a plurality of wall portions with a rectilinear portion and transition portion and the lid is accordingly provided with a plurality of elevations, a particularly positionally precise stacking of two containers is ensured. According to an advantageous refinement of the set, the containers have in an encircling manner a transition portion and the lid or the lids has or have an encircling elevation.
Furthermore, it is of advantage if the base of the at least two containers has an encircling flat standing surface and a preferably centrally arranged depression in the direction of the internal volume, said depression preferably having an approximately rectangular cross section. This is advantageous in particular since the lid in this case can be provided with a centrally arranged handle without adversely affecting the stackability of closed containers. The geometry of the depression in the base of the containers is then matched to the geometry of the handle on the lid.
Finally, it should be noted that the various features of the dependent claims can be realized individually per se or a plurality of said features can be realized in any desired combinations in variants of the invention.
The above-described invention is explained in more detail below with reference to exemplary embodiments which are illustrated in the figures.
An exemplary embodiment for a set 1 according to the invention consisting of a plurality of containers 2 each having different internal volumes is shown as a three-dimensional view in
On opposite short sides, the three containers 2 are likewise each provided on their upper side 3 with a carrying tab 10. In order to permit comfortable engagement in the carrying tabs 10 and to increase the stability of the container 2 in the region of the carrying tabs 10, the containers 2 on their short side surfaces have an indentation 11 which runs vertically and the width B of which at the upper side 3 of the containers 2 approximately corresponds to a length L of the carrying tab 10, whereas the width Bu thereof on the base 5 of the containers 2 is larger. Consequently, two opposite ribs 12 of the indentation 11 run obliquely with respect to each other. A bottom 13 of the indentation 11 is designed as a rectilinear surface, wherein the bottom 13 of the indentation 11 adjoins the base 5 likewise in an arcuate manner. The geometry of the remaining casing surface of the containers 2 is discussed in more detail in the following figures.
Located between the base 5 and the rectilinear portions 15 is in each case a transition portion 16, the intersection curve of which with each intersection plane parallel to the vertical axis 8 of the container 2 merges tangentially into the rectilinear portion 15 and into a respective trace line of the base 5. Accordingly, the rectilinear portion 15 merges without a bend into the transition portion 16 and the transition portion 16 merges without a bend into the base 5.
It can be seen in
In
The composition of the transition portions 16 from two circular arc portions R15 and Rvar can also be readily gathered from
In the region of the holding handle 22 shaped in the form of a tab, the lid 14 has a recessed grip 23 which permits the holding handle 22 to be gripped with one hand. The standing surface 20 of the container 2a is supported on a flat, horizontally running supporting surface 24 of the lid 14, wherein both the standing surface 20 and the supporting surface 24 forms an encircling strip. In the vertical section parallel to the longitudinal sides, the supporting surface 24 of the lid 14 is of such a wide design that the entire standing surface 20 visible there of the container 2a has space thereon. In the vertical section parallel to the short sides, the supporting surface 24 is of significantly thinner design, and therefore only an outer half of the respective standing surface 20 finds space on the associated supporting surface 24.
In an edge region, the lid 14 has an encircling elevation 25 which forms a contact surface 26 facing the first container 2a. Said contact surface 26 is arcuate, wherein the geometry of the elevation 25 is selected in such a manner that the containers 2 of the set 1 can all be supported in an encircling manner on the contact surface 26 by means of the transition portions 16 of differing design. The elevation 25 serves firstly for centering the container 2a positioned thereon and secondly for a certain positional fixing of same.
The statements made with respect to the first container 2a regarding the geometry of the base 5 and of the lid 14 also apply to the remaining containers 2b, 2c of the set, the base 5 and lid 14 of which are of identical design.
Furthermore, the geometry of the indentation 11 of the container 2a, the bottom 13 of which indentation encloses an angle β of 6.3° with the vertical, can be seen in
From the vertical section running parallel to the longitudinal sides, the two bottoms 13 of the indentations 11 can be seen, said bottoms running parallel to each other and being at a distance a from each other. In the vertical section running parallel to the short sides, the rectilinear portions 15 of the wall portions 6 of the two containers 2a likewise run parallel to each other, but do not have a spacing from one another. On the contrary, the rectilinear portions 15 lie against each other. Furthermore, the geometry of the edge flange 9 of the containers 2a can be seen, said edge flange being composed of a web 30 protruding from the rectilinear portion 15 and a short limb 31 running approximately vertically.
Finally,
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PCT/EP2016/000221 | 2/10/2016 | WO |
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WO2017/137053 | 8/17/2017 | WO | A |
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International Search Report for International Application No. PCT/EP2016/000221, dated Oct. 13, 2016. |
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20210188483 A1 | Jun 2021 | US |