This application is a 371 of PCT/EP2007/001836 filed Mar.3, 2007, which claims the priority of DE 20 2006 003 491.9 filed Mar. 6, 2006, both of which are hereby incorporated by reference.
The invention relates to a shoe, in particular a sports shoe, having a shoe upper and an outsole connected thereto and having a heel shell, which at least partially encloses the heel of the person wearing the shoe.
Shoes, in particular sports shoes, of this type are known in general. In order for the wearer's foot to be gripped securely in the shoe, a heel shell is usually provided, and this encloses and accommodates the heel of the wearer's foot in three dimensions. The heel shell is usually fixed in the shoe, in particular adhesively bonded therein.
As the shoe is used, rubbing between the wearer's foot and the heel shell results in wear, in which case the service life of the shoe may be limited.
It is also disadvantageous that it is not possible, at least in a cost-effective manner, for the shoe, and in particular the heel shell, to be configured in accordance with individual requirements. With the exception of the special case of a custom-made shoe, the person wearing the shoe is dependent on a commercially available design of the heel shell. This is disadvantageous, in particular, when, in the case of inserts being used, the commercially available heel shell is not particularly favorable and it is desirable to elevate the guiding shaft of the heel shell.
It is further disadvantageous that it is not possible, or it is only possible with high outlay, to adapt the shoe, and in particular the heel shell, to particular requirements of the person wearing the shoe, in particular as far as the breathability or the stability of the heel shell is concerned. In many cases, the wearer has special requirements relating to the stiffness or softness of the heel shell.
It is known from DE 10 2004 014 807 B3 to provide, for ski boots, an inner boot which is arranged in an interchangeable manner in an outer boot shell. The inner boot here has protrusions which are directed outwards in different regions and engage in recesses of the ski boot. However, the principle which is disclosed in this prior-art document is not structurally suitable for, for example, sports shoes, where there is not the same amount of installation space available as in the case of a ski boot.
The object of the invention is to develop a shoe, in particular a sports shoe, of the type mentioned in the introduction so as to overcome the above-mentioned disadvantages. It should therefore be possible, in particular in a straightforward and cost-effective manner, to adapt the shoe to individual requirements. It should also be possible, in the case of wear, to provide a solution which allows continued use of the shoe. Much importance is placed on the functionality of the shoe not being restricted in any way, and this is extremely important in particular for use in sports, especially in competitive sports.
The way in which the invention achieves this object is characterized in that the heel shell is arranged in an interchangeable manner in the shoe upper, wherein in a surface region it has at least one protrusion or a recess, which interacts with a recess or a protrusion in the shoe upper for securing the heel shell in a form-fitting manner in the shoe upper, wherein the heel shell is connected to an insole, and that the heel shell and the insole are formed in one piece.
Although it is also possible for the heel shell to have a recess in which a protrusion of the shoe upper engages, it is preferably provided that the protrusion is arranged on the heel shell and engages in a recess in the shoe upper. Furthermore, the at least one protrusion or the at least one recess of the, or in the, heel shell advantageously has a shape adapted to the shape of the recess or of the protrusion in the shoe upper. A further development provides that two protrusions or recesses are arranged in the side region of the heel shell. In this case, it may be provided that the two protrusions or recesses are arranged in the region of the ankle of the person wearing the shoe.
The heel shell can be secured in the shoe upper to good effect, albeit with low levels of pressure being applied, if each protrusion or each recess, as seen in lateral projection of the shoe, has a surface area which is at least 25%, preferably at least 33%, of the surface area of the heel shell, as seen in lateral projection.
The at least one protrusion or the at least one recess of the, or in the, heel shell may have an elongate or essentially oval shape, and this prevents rotation of the heel shell relative to the shoe upper about a horizontal axis in a direction transverse to the longitudinal direction of the shoe.
It is particularly preferably provided that the at least one protrusion or the at least one recess is arranged only in the region of the heel shell, in particular in the side regions thereof.
A development of the invention provides that the heel shell and possibly the insole has at least one further protrusion which extends in the direction of the ground through a recess in the shoe upper.
The shoe upper and/or the outsole and/or the heel shell advantageously consist of plastic, in particular of thermoplastic material. It is conceivable here to use, in particular, polyethylene, polypropylene, polybutane, polyamide, polyurethane or a mixture of at least two of these plastics.
The shoe upper may be described, within the context of the invention, as a chassis which is provided with the heel shell preferably with the insole connected thereto. The shoe upper may consist both of hard material and of soft material. It is particularly preferably produced by injection molding, or may at least be preformed. Use is made here both of plastics and of classic shoe materials (leather, textiles, etc.).
The proposed configuration easily makes it possible for the heel shell, in the case of wear, to be changed over, in which case the shoe can still be used. This is highly advantageous, in particular, in the case of high-price sports shoes.
Furthermore, the shoe can be adapted individually, i.e. it is possible to insert into the shoe upper a heel shell which is geared to specific requirements. Only the heel shell has to be adapted for this purpose; modifications to the shoe are not necessary. It is therefore possible for a shoe, in particular sports shoe, which is adapted to the wearer's requirements to be realized very much more cost-effectively than has been the case up until now.
This applies especially when the person wearing the shoe requires inserts. In this case, the heel shell can be designed optimally for the inserts without the (upper part of the) shoe itself having to be modified. Specifically, the height of the heel shell can be selected optimally in dependence on the inserts used.
The fit of the shoe can thus be configured ideally for the wearer's foot.
A further advantage is that the solution according to the invention allows materials to be selected freely, in which case it is possible to use any desired materials. The material of the shoe upper and that of the heel shell are adapted to individual requirements, for example so as to achieve the desired stability or breathability of the shoe.
Exemplary embodiments of the invention are illustrated in the drawing, in which:
A heel shell 4 (inner shell) is inserted in an interchangeable manner into the shoe upper 2. In the inserted state, the heel shell 4 extends beyond the top side of the shoe upper 2, i.e. it has a corresponding shaft 12, of which the extent is selected in accordance with the requirements of the person wearing the shoe 1 so as to ensure optimum guidance and grip of the foot.
It can be seen in
It can be seen in
Dashed lines are used in
The size selected for the surface area of the protrusions 6, 7 and of the corresponding recesses 8, 9 is important. In order that, on the one hand, it is ensured that the heel shell 4 is gripped securely in the shoe upper 2, this also providing sufficient resistance to torsional movement of the heel shell 4 about a horizontal axis in a direction transverse to the longitudinal direction of the shoe, and, on the other hand, the ankle region of the person wearing the shoe 1 is not subjected to any lateral pressure, provision is made for the following:
The protrusion 6, 7 and the recess 8, 9 are non-round, i.e., in the present case, they are elongate or oval. Furthermore, the lateral projection surface area AV of the protrusion 6, 7 is at least 25% of the lateral projection surface area AF of the heel shell 4, as can be gathered from
It can be seen, for example in
Number | Date | Country | Kind |
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20 2006 003 491 U | Mar 2006 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP2007/001836 | 3/3/2007 | WO | 00 | 9/5/2008 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2007/101629 | 9/13/2007 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
3810318 | Epstein | May 1974 | A |
5397141 | Hoshizaki et al. | Mar 1995 | A |
5878513 | Annovi et al. | Mar 1999 | A |
6023859 | Burke et al. | Feb 2000 | A |
6226898 | Trimble et al. | May 2001 | B1 |
6457265 | Lepage et al. | Oct 2002 | B1 |
6993859 | Martin et al. | Feb 2006 | B2 |
7377058 | Elkington et al. | May 2008 | B2 |
7578076 | Pawlus et al. | Aug 2009 | B2 |
7730636 | Auger et al. | Jun 2010 | B2 |
7954259 | Antonelli et al. | Jun 2011 | B2 |
20060010718 | Auger et al. | Jan 2006 | A1 |
Number | Date | Country |
---|---|---|
28 52 867 | Jun 1979 | DE |
0 841 017 | May 1998 | EP |
0 970 629 | Jan 2000 | EP |
1048233 | Nov 2000 | EP |
1402796 | Mar 2004 | EP |
9619127 | Jun 1996 | WO |
2004103105 | Dec 2004 | WO |
Number | Date | Country | |
---|---|---|---|
20090071039 A1 | Mar 2009 | US |