The present invention relates to a storage container for mounting in a door of a refrigerator.
These storage containers generally have the shape of substantially rectangular boxes open at the top which are substantially provided to receive chilled goods packed in bottles or glasses. In general, these storage containers are provided with locating means which allow a detachable fixing to the inner surface of the door of a refrigerator at different heights.
Known from DE 101 17 762 A1 is a storage container for a refrigerator where a container box has a cut-out on a visible side and one or two metal rods extend transversely through the cut-out and engage respectively in two drillings on opposing edges of the cut-out.
The metal rods are usually displaceable by a certain distance in their longitudinal direction in the drillings since it is very expensive to adapt the length of the metal rods so that they fit in the drillings free from play. The metal rods are therefore axially displaceable to a certain extent wherein, when they hit a stop, they produce a clattering sound which can give the user the impression of poor finishing quality.
It is certainly possible to eliminate the longitudinal displaceability of the rods by gluing them respectively in at least one of the drillings into which they engage. However, this requires an additional processing step during the assembly of the storage container and thus increases its manufacturing costs. It is also feasible to fix the rods by clamping between their circumferential surface and the drilling but tight dimensional tolerances are required for this and insertion of the rod into the drilling is rendered difficult which in turn increases production expenditure and costs.
It is thus the object of the invention to provide a storage container of the type known from DE 101 17 762 A1 where the movability of the rods is eliminated without this being associated with increased production expenditure.
The object is solved by a storage container having the features of claim 1. By means of the spring element the rod is fixed in its longitudinal direction without particularly tight manufacturing tolerances of the container box or the rods being required for this.
The stop in the second drilling against which the rod is pressed is preferably also implemented as a spring element. As a result, even larger variations in the length of the rod or the dimensions of the container box can be compensated than if only one spring element is provided and in addition, the manufacture of the container box is simplified if the surroundings of the two drillings have the same shape.
The spring element is preferably a tongue which projects from an edge area of the container box transversely to the longitudinal direction of the rod, against which one end of the rod can come to rest.
In order to simplify the assembly of the storage container, preferably at least one of the drillings, preferably both drillings are formed in respectively one head piece which is clipped into a locating recess of the container box.
This locating recess is preferably open towards the inside of the container box so that the head piece clipped therein is not visible from outside.
Especially favourable for the manufacture of the head piece by injection moulding is a shape where the head piece comprises an outer wall and a side flank offset from the outer wall in which at least one drilling is formed and the spring element or the stop protrudes from the outer wall.
Further features and advantages of the invention are obtained from the following description of exemplary embodiments with reference to the appended figures. In the figures:
If the head piece 16 is used on a high storage container such as the container 5 for example, a rod 11 is inserted in each drilling 17 and the arrangement thus formed from two rods 11 and two head pieces 16 is inserted from the interior of the container box 7 into the two locating recesses 15 in the direction of the arrow A.
When used together with a low container box, as in the case of the storage containers 2, 4, only the upper drilling 17 of the head piece 16 is provided with a rod 11; the lower drilling can be closed with a plastic stopper (not shown) so that it does not attract the attention of an observer and cannot collect any dirt. This stopper, the head piece 16 and the container box 7 preferably consist of the same plastic material.
It can be seen that the drillings 17 are blind holes which each contain spring elements in a rear area in the form of buffer members 25 made of an elastic foam material. The width of the cut-out 9, the depth of the drillings 17 and the length of the rods 11 are matched to one another such that the buffer members 25 are compressed by the rods 11 when the head pieces 16 are mounted in their locating recesses 15. The rods 11 are thus held in the drillings 17 free from play in their longitudinal direction and thus cannot cause any noise.
A second preferred embodiment of the invention is shown with reference to
The head piece 16 has an approximately rectangular shape with an outer wall 20 facing away from the observer in the diagram in
Two tongues 24 protrude at right angles from the outer wall 20 parallel to the side flanks 21, 22 and there between. The material thickness of the tongues 24 is less than that of the side flanks 21, 22 so that said tongues are flexible unlike the latter. In the mounted state the tongues 24 are elastically bent by the contacting tips of the rods 11 and press these in each case in the direction of the opposing head piece 16. Like the buffer members 25 the tongues 24 compensate for variations in the dimensions of the rods 11 or the container box 7 and hold the rods 11 free from play.
The head piece 16 is symmetrical in relation to a horizontal plane extending between the two drillings 17. Thus, the head piece 16 can be used in identical shaping in the mirror-symmetrically opposed locating recesses 15 on both sides of the cut-out 9.
Number | Date | Country | Kind |
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103 22 675.3 | May 2003 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP04/05443 | 5/19/2004 | WO | 7/5/2006 |