The present application relates to containers for receiving frangible objects such as eggs, and to structural components of such containers.
Egg containers of all kinds have been developed for the transportation and sale of eggs. As eggs are relatively fragile, the egg containers must protect the eggs from the various manipulations involved from the packaging of the eggs to the consumer's refrigerator.
One significant improvement in egg containers is the use of thermoformed plastics as material for the egg containers. Thermoformed plastics are typically transparent, which allows the eggs to be visible, and are relatively inexpensive to produce. As they can inspect the eggs by seeing through the material of the egg container, the consumers do not need to open the egg container, as is the case with cardboard egg containers, for instance. In the case of cardboard boxes, it may occur that the boxes are not closed properly after inspection. This may cause the breakage of eggs if the improperly closed egg container is subsequently manipulated by another consumer.
It is therefore an aim of the present disclosure to provide a novel egg container.
Therefore, in accordance with the present application, there is provided a container for receiving frangible items comprising: a sheet of polymer formed/cut into a base portion having item receiving cavities for supporting frangible items, and a base peripheral flange defining a periphery of the base portion; an intermediate cover portion having item covering cavities for covering the frangible items in the item receiving cavities, the intermediate cover portion having an intermediate peripheral flange defining a periphery of the intermediate cover portion; a first hinge between a first longitudinal edge of the base portion and the intermediate cover portion for rotating the intermediate cover portion onto the base portion to hold the frangible items captive in sets of the item receiving cavities and item covering cavities; a top cover portion having at least one concavity and a top peripheral flange defining a periphery of the top cover portion; a second hinge between a second longitudinal edge of the base portion, and the top cover portion for rotating the top cover portion onto the intermediate cover portion to hold the base portion, the intermediate cover portion and the top cover portion closed together; and a cut-out in the intermediate peripheral flange at each corner of the intermediate cover portion away from the first hinge, each said cut-out defining a cut-out edge being non-parallel to the longitudinal edges and having a dimension greater than a corresponding lateral flange portion of the top peripheral flange in a longitudinal dimension of the container.
Referring to the drawings and more particularly to
The egg container 10 of
Referring to
In order to close the egg container 10′, the intermediate cover portion 15 is firstly hinged into contact with the base container 12, as illustrated by arrow A. The top cover portion 13 is then hinged onto the intermediate cover portion 15, as illustrated by arrow B.
If the hinging movement along arrow B is performed before the movement along arrow A is completed, the top cover portion 13 may impede the movement of the intermediate cover portion 15. Referring to
Therefore, according to
An arched protrusion 29 may be provided in the corners 21 having a cut-out 23. The arched protrusion 29 extends from a main flat surface of the intermediate cover portion 15 to the planar surface of the peripheral flange 20. The arched protrusions 29 strengthen the corners 21 of the flange 20. The arched protrusion 29 may be a frustoconical segment (
The edge 24 may have outlines other than a straight one. The edge 24 may have more than one straight segment, or may have arcuate portions. However, as shown concurrently in
In manufacturing the egg container 10′ with the cut-outs 23, it is considered to die-cut the egg container 10′ when in an unfolded flat and open condition, thereby defining the outline of the egg container 10′. The egg container 10′ may be molded with the cut-outs 23 as an alternative.
The egg containers 10 and 10′ may have one of more of the elements described above. Although the egg containers 10 and 10′ are preferably made of a transparent thermoplastic that is molded (e.g., vacuum molded, thermoformed), it is considered to provide some of the above-referred embodiments in other materials.
The egg containers of the present disclosure may contain any suitable number of egg receiving cavities. One suitable material for the egg containers of the present application is polyethylene terephthalate (PET). PET has many advantages, as this material can be transparent or opaque and can be produced at high volume and at low cost. Wall thicknesses of PET cases in a contemplated embodiment are of 0.0175 inch in thickness, but other thicknesses as low as 0.014 to as high as 0.022 inch are also contemplated.