Shoe, in particular a sports shoe
10588379 ยท 2020-03-17
Assignee
Inventors
Cpc classification
A43B3/0047
HUMAN NECESSITIES
A43B13/181
HUMAN NECESSITIES
International classification
A43B13/12
HUMAN NECESSITIES
Abstract
A shoe having a sole connected with a shoe upper part. The sole includes: a first sole part having a ground plate, wherein a plurality of first damping elements which extend in a direction of loading are integrally shaped at the ground plate, a second sole part having a cover plate, wherein a plurality of second damping elements which extend in the direction of loading are integrally shaped at the cover plate, a connection part which includes a plurality of interconnected plugin connections. Each plug-in connection has a first plug connector extending downwards in the direction of loading and a second plug connector extending upwards in the direction of loading. The first plug connection frictionally engages into the hollow-cylindrical section of the first damping element and wherein the second plug connection frictionally engages into the hollow-cylindrical section of the second damping element.
Claims
1. A shoe, which comprises a sole and a shoe upper part, wherein the sole is connected with the shoe upper part, wherein the sole comprises: a first sole part which comprises a ground plate, wherein a plurality of first damping elements which extend in a direction of loading are integrally shaped at the ground plate, the direction of loading being perpendicular to a ground when the shoe is flat on the ground, wherein the first damping elements are respectively formed as hollow bodies and comprise a hollow-cylindrical section in an upper end region of the respective first damping element; a second sole part which comprises a cover plate, wherein a plurality of second damping elements which extend in the direction of loading are integrally shaped at the cover plate, wherein the second damping elements are respectively formed as hollow bodies and comprise a hollow-cylindrical section in a lower end region of the respective second damping element; a connection part which comprises a plurality of plug-in connections which are directly connected with one another such that the connection part including all plug-in connections is a one-piece formed part, wherein each plug-in connection comprises a first plug connector which extends downwards in the direction of loading and a second plug connector which extends upwards in the direction of loading, wherein the first plug connector is designed for frictionally engaging into the hollow-cylindrical section of the first damping element and wherein the second plug connector is designed for frictionally engaging into the hollow-cylindrical section of the second damping element, wherein, in a relaxed state of the shoe, a lowermost extent of each first plug connector is vertically above and spaced away from a lowermost extent of the ground plate.
2. The shoe according to claim 1, wherein each hollow-cylindrical section of the first damping elements of the plurality of first damping elements has an inner diameter, and each hollow-cylindrical section of the second damping elements of the plurality of second damping elements has an inner diameter, wherein the first plug connector and the second plug connector are each dimensioned so as to fit in each respective inner diameter of each respective hollow-cylindrical section in a press fit manner, wherein the first sole part including all the first damping elements is a one-piece formed part, and wherein the second sole part including all the second damping elements is a one-piece formed part.
3. The shoe according to claim 1, wherein the first sole part is surrounded by an edge which extends laterally upwards when the shoe is flat on the ground.
4. The shoe according to claim 1, wherein the second sole part has an extension so that the second sole part covers a rear region of the sole and leaves a front region of the sole uncovered by the second sole part.
5. The shoe according to claim 4, wherein the connection part comprises the plug-in connections only in the rear region which is covered by the second sole part.
6. The shoe according to claim 5, wherein the connection part comprises at least one flat footrest in the front region which is not covered by the second sole part.
7. The shoe according to claim 1, wherein each of the first damping elements consists of two partial hollow bodies, including an upper partial hollow body and a bottom partial hollow body, which are connected together by a connection section which extends laterally to the direction of loading, wherein the upper partial hollow body is formed by the hollow-cylindrical section in the upper region end of the respective first damping element.
8. The shoe according to claim 7, wherein the outer dimension of the upper partial hollow body is smaller than the outer dimension of the bottom partial hollow body.
9. The shoe according to claim 1, wherein each of the second damping elements consists of two partial hollow bodies, including an upper partial hollow body and a bottom partial hollow body, which are connected with another by a connection section which extends laterally to the direction of loading, wherein the bottom partial hollow body is formed by the hollow-cylindrical section in the lower end region of the respective second damping element.
10. The shoe according to claim 9, wherein the outer dimension of the bottom partial hollow body is smaller than the outer dimension of the upper partial hollow body.
11. The shoe according to claim 1, wherein the plug-in connections of the connection part are connected with another by a plurality of connection rods.
12. The shoe according to claim 11, wherein two adjacent ones of the plurality of plug-in connections of the connection part are connected to one another with one of the connection rods.
13. The shoe according to claim 1, wherein the shoe upper part is connected with the first sole part.
14. The shoe according to claim 1, wherein the shoe upper part is connected with the sole by a form-fit connection.
Description
BRIEF DESCRIPTION OF THE DRAWING
(1)
(2)
(3)
DETAILED DESCRIPTION OF THE INVENTION
(4) In
(5) From
(6) The sole has a first, bottom sole part 4 as well as a second, upper sole part 8. Both sole parts 4, 8 are connected with another by a connection part 12, namely as a plug-in connection and without the use of an adhesive. As can be seen in
(7) At the bottom side of the first sole part 4 an outer sole 23 is arranged.
(8) The first sole part 4 as well as the second sole part 8 comprise respective first damping elements 6 and second damping elements 10 respectively. The first damping elements 6 of the first sole part 4 extend from a ground plate 5 of the first sole part 4 upwards while the second damping elements 10 of the second sole part 8 extend from a cover plate 9 downwards.
(9) The first damping elements 6 as well as the second damping elements 10 are designed as a kind of piston-cylinder damping system. Accordingly it is provided that a hollow section of the damping element with smaller outer dimensions (piston) enters into a region being designed as hollow body with bigger outer dimensions (cylinder) and thus develops a damping effect.
(10) With respect to the design of those damping elements reference is made to WO 03/092423 A1 explicitly.
(11) Insofar it should be mentioned that the first damping element 6 as well as the second damping element 10 are designed in the kind of a piston-cylinder unit, wherein a connection section 20 and 21 respectively creates the connection between the piston and the cylinder.
(12) Accordingly the first damping element 6 comprises in its upper region a hollow cylindrical section 7 while the second damping element 10 comprises in its lower region a hollow cylindrical section 11.
(13) The lower first damping element 6 is connected with the upper second damping element 10 via a plug-in connection which is realized by the connection part 12. For this, the connection part 12 comprises a plurality of plug-in connections 13 which comprise first plug connectors 14 and second plug connectors 15 which align in the direction of loading R.
(14) Though the second sole element 8 comprises an extension which covers substantially only the rear sole region 17 and as the case may be also the central sole region; however, the front sole region remains free from the second sole element.
(15) It can be seen from
(16) So that however for the resting of the foot a well pressure distribution is ensured the connection part 12 has therefore in its region which is arranged in the front sole region 18 an enlarged saucer-shaped footrest 19.
(17) The connection part 12 consists of single plug-in connections 13 with respective lower first plug connectors 14 and upper second plug connectors 15, wherein the single plug-in connections 13 are connected with another via connection rods 22. So a lattice-shaped structure results for the connection part 12 which can be assembled as a whole.
(18) So the proposed concept is basing on two layers of piston-cylinder-like damping elements which are arranged on top of each other, i. e. in series, wherein the connection of those damping elements which are arranged on top of each other is effected by the connection part 12.
(19) Here, only a connection via friction engagement and without adhesive is provided. Rather a sticking together of the first and the second sole part occurs by means of the connection part.
(20) If the shoe upper part is directly arranged at the first sole part it is beneficial that springing movements of the shoe causes a reduced relative movement between shoe upper part and foot.
(21) Generally, the connection of the shoe upper part 3 with the sole 2 can take place in different ways:
(22) The shoe upper part 3 can be designed as closed (sock-like) structure which runs around the sole of the foot of the wearer, wherein for example the lower ending is realized by a Strobel sole which is sewed with the shoe upper part. In the Strobel sole openings (cuttings) can be machined which correspond to the position of the plug connectors (i.e. the hole pattern) of the connection part 12. At the assembly of the sole 2 then the so prepared shoe upper part is placed between the single sole parts in such a manner that the Strobel sole and thus the shoe upper part 3 is form-fitted connected with the sole 2.
(23) It can also be provided that at the injection moulding process of one of the sole parts a textile material section is placed in the injection moulding tool, wherein said material section forms the Strobel sole and a part of the shoe upper part 3 respectively. So, then a firm connection which is produced by the injection moulding process exists between one of the sole parts and the textile material section and thus a connection between sole 2 and shoe upper part 3 after the assembly of the sole 2. The mentioned sole part can thereby be especially the connection part 12 or the second sole part 8.
(24) It can also be provided at the injection of the sole part in the mentioned manner that the textile material is provided before with a respective perforation according to the hole pattern of the pins and is so inserted into the injection moulding tool.
(25) Furthermore, as a variation of this concept it can be provided that the mentioned textile material section which forms the Strobel sole functions quasi as carrier material which is inserted into the injection moulding tool and on which then only the lattice structure is applied by the injection moulding process which is required for the production of the described plug-in connection. Therefore, especially the second sole part 8 can be taken in consideration.
(26) If by the described way the second sole part 8 is provided with the textile material section it can beneficially be done without the use of an inserted sole as the case may be because this function is then realized by the Strobel sole which is produced in that manner. The part which is produced in such a manner is thus used as Strobel sole and comprises the plug-in connections for the described sole.
(27) Beneficially, a very flexible and light composite material results which can be easily sewed.
(28) Beneficially, then it can also be done without a circumferential edge 16 at the first sole part 4.
(29) Thereby, it can also be provided that lacing bandages are a part of the textile material section which is inserted into the injection moulding tool.
(30) With a respective design it can be reached beneficially that again a flexible and light construction is created which can be produced in an easy manner. The basis of the plastic lattice of the sole is here clearly defined, properly designed and well sealed. Furthermore, reinforcements (for example heel caps) can be integrated in an easy manner.
(31) It can also be provided that the above described variations are used in combination insofar as they are each only used in a defined region of the sole (that is for example in the forefoot region, the midfoot region or the heel region). For example the lattice which is required for the plug-in connection is injected only in the forefoot region directly at the Strobel sole while this is not the case in the joint (i. e. midfoot) region; thus the connection of the shoe upper with the sole would take place here only as plug connection (by means of the mentioned hole pattern in the Strobel sole).
(32) It is the benefit of this variation that no plastic areas are present in the shoe and no damping movement takes place in the shoe. Furthermore, the assembly of the shoe and the sole respectively is very easy.
(33) As a further variation of the described concept it can be provided that it is namely done substantially without an edge 16 at or in the first sole part 4 but that however edge regions in the kind of the edge 16 are provided (only) in the region of the tip of the sole and in the region of the heel of the sole.
(34) Preferably the single parts of the sole are made of polyolefin elastomers (e. g. TPE-S, TPU or PA).
(35) Also, as the shoe upper part a knitted material can be provided.
LIST OF REFERENCES
(36) 1 Shoe 2 Sole 3 Shoe upper part 4 First sole part 5 Ground plate 6 First damping element 7 Hollow-cylindrical section 8 Second sole part 9 Cover plate 10 Second damping element 11 Hollow-cylindrical section 12 Connection part 13 Plug-in connection 14 First plug connector 15 Second plug connector 16 Edge 17 Rear sole region 18 Front sole region 19 Footrest 20 Connection section 21 Connection section 22 Connection rod 23 Outer sole R Direction of loading