The present invention relates to a refrigerating device comprising a body and two doors, where one of their respective edges is fixed to the opposite side of the opening of the body.
With such a refrigerating device, there is the problem of a beam which extends across through the opening of the body being needed in order to be able to create a support surface against which the doors, in a closed position, can rest in a sealed fashion. If such a beam is fixedly mounted in the body, it thus prevents access to the interior of the refrigerating device if both doors are open at the same time. If the beam is rigidly fastened to one of the doors, only this door can be opened if the other door is already open, which likewise prevents free access to the interior.
U.S. Pat. No. 4,711,098 discloses a two door refrigerating device, in which a beam is joined to one edge of the first door, which is opposite the fixed edge of said door. The beam can be pivoted between a first position, in which the closed second door rests tightly thereagainst, and a second position, in which it pivots completely behind the first door, so that this can be opened without having to take the second door with it. The pivoting movement of the beam is guided by means of a guiding projection of the beam, which can be displaced in a guiding groove formed on the edge of the opening of the body and compels the beam to perform a pivoting movement which is coupled to the opening movement of the first door.
One problem of this refrigerating device is that the beam must have a degree of play in its longitudinal direction in order to reliably engage it into the opening of the body when closing the first door. I.e. a gap must exist between the front faces of the beam and a surface of the body facing these front faces, in which the guiding groove is formed, as well as between the tips of the guiding projection and the base of the groove, into which it engages, the width of said gap in practice amounting to several millimeters. Provided a side wall of the projection does not rest its entire length in a sealed fashion against a side wall of the groove, when the doors are closed, air can also flow into the interior of the refrigerating device. The significant supply of heat and moisture resulting herefrom renders the energy consumption of the refrigerating device high.
It is thus important to create a two door refrigerating device with a pivotable beam, which allows reliable sealing of the doors despite play in the longitudinal direction of the beam. The object is achieved in accordance with the invention in that with a refrigerating device comprising a body, a first door and a second door, where one of their respective edges is fixed to the opposite side of the opening of the body, and a beam, which is joined to one edge of the first door which is opposite the fixed edge of said door and which can be pivoted with the aid of a guiding projection which can be displaced in a guiding groove formed on the edge of the opening, between a position adopted when the first door is closed, in which one edge of the second door, which is opposite the fixed edge of said door, is applied to the beam, and a position which is adopted when the first door is open, wherein the beam can traverse to the closed second door. The guiding projection can be displaced in relation to the first door in the direction of the pivotable axis thereof. This allows the guiding projection to avoid the pivotable axis of the door, if necessary, when closing the first door. Despite potential tolerances when suspending the door, it can thus be ensured that the tip of the guiding projection makes contact with the base of the guiding groove, so that no external air can pass through the guiding projection into the interior of the refrigerating device.
In general, provision is made for guiding projections and guiding grooves on both longitudinal ends of the beam and/or surfaces of the body facing said beam. With at least one such guiding projection, it is possible for said guiding projection to be fixedly connected to the beam and displaceable together with this in the direction of the pivotable axis of the door. In order however to keep the displacing mass small when engaging the beam into the opening of the body, the guiding projection is generally also made displaceable in relation to the beam in the direction of the pivotable axis of the first door.
The axial displaceability of the guiding projection is preferably realized by displaceably guiding the arc-shaped guiding projection in the cross-section into a channel of the beam which comprises a complementary cross-section.
To facilitate engaging the beam into the opening of the body, an insertion bevel is preferably formed on one region of the guiding projection which engages in the guiding groove when closing the first door, in which insertion bevel, when measured in the direction of the pivotable axis, the height of the guiding projection reduces towards its end.
To avoid leakages on the guiding groove, the guiding projection is to insert its entire length into the guiding groove in the position of the beam which is adopted when the first door is closed.
It is also expedient for sealing purposes for the guiding groove to have a beveled base section, which makes contact with the insertion bevel if the beam is located in the position adopted when the first door is closed.
Alternatively or in addition to an insertion bevel of the guiding projection, an insertion bevel can also be provided on the guiding groove, in which the depth of the groove increases towards one open end of the same.
The guiding projection is preferably impinged upon by a spring outwards in the direction of the pivotable axis.
Further features and advantages of the invention result from the description that follows of exemplary embodiments with reference to the appended Figures, in which;
Two guiding projections 13 are attached in a vertically displaceable fashion to the ends of the beam 7, with only the guiding projection 13 of the upper end being visible in the perspective in
As shown in
When closing the door 5, the end 21 of the guiding projection 13 which faces the observer is the first to enter into the opening of the body. The height of the guiding projection 13 is minimal at one end 21. It gradually increases from there along an insertion bevel 22, in order to remain constant on one main section 23 of the guiding projection 13. The height of the guiding projection 13 is larger over its entire length than the width of the gap, into which the door enters 5 when closing.
The configuration of the lower guiding projection 13 (not shown) is a mirror image in respect of that in
With further closure of the door 5, the side edge 29 slides along the wall 30, as a result of which the beam 7 is pivoted. At the same time, shortly before or after the stage in
In the stage in
With a fully closed door 5, as shown in
Number | Date | Country | Kind |
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10 2006 015 991 | Apr 2006 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP2007/052043 | 3/5/2007 | WO | 00 | 10/3/2008 |
Publishing Document | Publishing Date | Country | Kind |
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WO2007/115868 | 10/18/2007 | WO | A |
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