METHOD FOR PRODUCING A SHOE WITH AN AIR PUMP DEVICE, COMPRISING A BELLOWS WHICH IS FORMED IN A MIDSOLE
20200281324 · 2020-09-10
Inventors
Cpc classification
B29D35/0009
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
The invention relates to a method for producing a shoe with an air pump device bellows which is arranged in the heel region, wherein an upper (2), a midsole (3), and an outsole (4) are first provided. The lower face (32) of the midsole (3) has a recess (36) for forming a cavity for the bellows and a surface which surrounds the recess on all sides and which comprises a surface profile, and the upper face (41) of the outsole (4) has a surface with a surface profile which complements the surface profile of the lower face of the midsole. The horizontal extension of the upper face (41) of the outsole (4) and of a sole section (22) of the upper (2) is greater than the horizontal extension of the midsole (3) such that the outsole (4) and the upper (2) protrude beyond the centered midsole (3) on all sides. In order to connect the upper (2), the midsole (3), and the outsole (4), the midsole (3) is first adhered onto the sole section (22) in a centered manner, and the upper (2) together with the midsole (3) are pressed onto the outsole (4) which is provided in the base element (6) of an injection mold. In the process, the complementary surfaces are adhered such that the cavity of the recess (36) is completely enclosed. The upper (2), the midsole (3), and the outsole (4) are then enclosed by an injection mold, and the outsole (4) upper face (41) surface regions which are not covered by the midsole (3), the outer surfaces of the midsole (3), and the lower face and adjacent lateral surface regions of the upper (2) are overmolded with an edge sole region plastic.
Claims
1. A method for producing a shoe comprising an air pump device arranged in the heel region comprising at least one bellows, into which at least one air intake duct opens and to which at least one air-guiding duct which opens into the interior of the shoe is connected, an upper (2) having an upper material section (21) and a sole section (22) having a lower face, a midsole (3) having an upper face (31) and a lower face (32), and an outsole (4) having an upper face (41) being provided, wherein either the lower face (32) of the midsole (3) has a surface having a first surface profile and at least one recess (36) adjacent to this surface for receiving the at least one bellows of the air pump device, and the upper face (41) of the outsole (4) has a surface having a second surface profile which is complementary to the first surface profile at least in part such that the complementary surface regions of the second surface profile of the outsole (4) and the first surface profile of the midsole (3) completely surround the at least one recess (36), or the upper face (31) of the midsole (3) has a surface having a first surface profile and at least one recess (36) adjacent to this surface for receiving the at least one bellows of the air pump device, and the lower face of the sole section (22) of the upper (2) has a surface having a second surface profile which is complementary to the first surface profile at least in part such that the complementary surface regions of the second surface profile of the sole section (22) and the first surface profile of the midsole (3) completely surround the at least one recess (36), wherein the horizontal extension of the upper face (41) of the outsole (4) and the horizontal extension of the sole section (22) of the upper (2) are greater than the horizontal extension of the midsole (3) such that the midsole (3) can be positioned so as to be centered between the outsole (4) and the upper (2) such that the outsole (4) and the upper (2) protrude beyond the outer edge of the midsole (3) on all sides, wherein, for connecting the upper (2), the midsole (3) and the outsole (4), a) first either a1-1) the midsole (3) is applied in a centered manner to the lower face of the sole section (22) of the upper (2) and a1-2) the upper (2) having the applied midsole (3) is pressed onto the upper face (41) of the outsole (4), the outsole (4) previously being provided in a base element (6) of an injection mold, or a2-1) the midsole (3) is applied in a centered manner to the upper face (41) of the outsole (4) and a2-2) the outsole (4) having the applied midsole (3) is applied to the lower face of the upper (2), and wherein the complementary surface regions of the first surface profile of the upper face (31) or the lower face (32) of the midsole (3) and the second surface profile of the lower face of the sole section (22) or the upper face (41) of the outsole (4) are adhered such that the at least one recess (36; 36) for receiving the at least one bellows of the air pump device is completely enclosed, and b) then the upper (2), the midsole (3) and the outsole (4) are enclosed by an injection mold and the surface regions of the upper face (41) of the outsole (4) not covered by the midsole (3), the lateral outer surfaces of the midsole (3) and the lower face and adjacent lateral surface regions of the upper (2) are overmolded with an edge sole region plastic in order to interconnect the outsole (4), the midsole (3) and the upper (2) by forming an edge sole region (5).
2. The method according to claim 1, characterized in that the injection pressure in step b) is selected depending on the material of the midsole (3) such that the cavity formed by the recess (36; 36) for receiving the at least one bellows of the air pump device is not compressed or is only slightly compressed.
3. The method according to claim 1, characterized in that, in step a1-1) or in step a2-2), the upper (2) is positioned on a last such that the lower face of the sole section (22) points upwards.
4. The method according to claim 1, characterized in that, in step a1-1) or in step a2-1), the midsole (3) is applied in a centered manner by it being positioned using markings or projections on the lower face of the sole section (22) of the upper or on the upper face (41) of the outsole (4).
5. The method according to claim 1, characterized in that an upper (2) is provided which has a first air intake duct (24) extending from the sole section (22) along its upper material section (21) comprising an air intake opening spaced apart from the sole section (22) and a first connecting element (25) arranged on the sole section (22), a midsole (3) is provided which has, on its upper face (31), a second connecting element (34) connected to a second air intake duct of the air pump device, and steps a1-1) and a1-2) are carried out, wherein, in step a1-1), the first (25) and the second (34) connecting element are interconnected in order to connect the second air intake duct of the midsole (3) to the first air intake duct (24) of the upper (2).
6. The method according to claim 5, characterized in that an upper (2) is provided which has a first air intake duct (24) extending along its heel region.
7. The method according to claim 5, characterized in that the upper face (31) of the midsole (3) comprises the surface having the first surface profile and the lower face of the sole section (22) of the upper (2) comprises the surface having the second surface profile, such that the complementary surface regions of the first surface profile of the upper face (31) of the midsole (3) and the second surface profile of the lower face of the sole section (22) are adhered in step a1-1).
8. The method according to claim 7, characterized in that the sole section (22) of the upper (2) comprises an insole which is reinforced in the heel region above the at least one recess (36) containing the at least one bellows of the air pump device and is designed as a rigid pressure plate which covers the at least one recess (36).
9. The method according to claim 5 or 6, characterized in that the lower face (32) of the midsole (3) comprises the surface having the first surface profile and the upper face (41) of the outsole (4) comprises the surface having the second surface profile, such that the complementary surface regions of the first surface profile of the lower face (32) of the midsole (3) and the second surface profile of the upper face (41) of the outsole (4) are adhered in step a1-2) when the upper (2) having the applied midsole (3) is pressed onto the upper face (41) of the outsole (4).
10. The method according to claim 9, characterized in that, in step a1-1), the midsole (3) is adhered to the lower face of the sole section (22).
11. The method according to claim 9, characterized in that the outsole (4) is provided in the base element (6) of the injection mold by the outsole (4) being produced in the base element (6) by injection molding or casting.
12. The method according to claim 1, characterized in that an outsole (4) is provided which projects beyond the outer edge of the midsole (3) on all sides such that the distance between the outer edge of the outsole (4) and the outer edge of the midsole (3) is between 5% and 20% of the length of the shoe (1).
13. The method according to claim 1, characterized in that a midsole (3) is provided which consists of a plastics foam having a Shore A hardness of between 40 and 60 Shore.
14. The method according to claim 1, characterized in that a midsole (3) is provided comprising a recess (36; 36) arranged in the heel region for receiving a bellows of the air pump device, wherein the recess (36; 36) extends horizontally laterally and extends, at the back of the shoe, by a distance of approximately 1-5% of the length of the shoe (1) from the edge of the midsole (3), wherein the bellows are formed by the recess (36; 36) that is covered by the lower face of the sole section (22) or the upper face (41) of the outsole (4) and wherein a section of the at least one air intake duct and a section of the at least one air-guiding duct opening into the interior of the shoe are formed in the midsole (3).
15. A method for producing a shoe comprising an air pump device arranged in the heel region the air pump device comprising at least one bellows, into which at least one air intake duct opens and to which at least one air-guiding duct which opens into the interior of the shoe is connected, wherein an upper having an upper material section and a sole section having a lower face, a midsole having an upper face and a lower face, and an outsole having an upper face are provided, wherein either the lower face of the midsole has a surface having a first surface profile and at least one recess adjacent to this surface for receiving the at least one bellows of the air pump device, and the upper face of the outsole has a surface having a second surface profile which is complementary to the first surface profile at least in part such that the complementary surface regions of the second surface profile of the outsole and the first surface profile of the midsole completely surround the at least one recess, or the upper face of the midsole has a surface having a first surface profile and at least one recess adjacent to this surface for receiving the at least one bellows of the air pump device, and the lower face of the sole section of the upper has a surface having a second surface profile which is complementary to the first surface profile at least in part such that the complementary surface regions of the second surface profile of the sole section and the first surface profile of the midsole completely surround the at least one recess, wherein the horizontal extension of the upper face of the outsole and the horizontal extension of the sole section of the upper are greater than the horizontal extension of the midsole such that the midsole can be positioned so as to be centered between the outsole and the upper such that the outsole and the upper protrude beyond the outer edge of the midsole on all sides, wherein, for connecting the upper, the midsole and the outsole, a-1) the midsole is applied in a centered manner to the upper face of the outsole and a-2) the outsole having the applied midsole is applied to the lower face of the upper, and wherein the complementary surface regions of the first surface profile of the upper face or the lower face, respectively, of the midsole and the second surface profile of the lower face of the sole section or the upper face of the outsole, respectively, are adhered such that the at least one recess for receiving the at least one bellows of the air pump device is completely enclosed, and b) then the upper, the midsole and the outsole are enclosed by an injection mold and the surface regions of the upper face of the outsole not covered by the midsole, the lateral outer surfaces of the midsole and the lower face and adjacent lateral surface regions of the upper are overmolded with an edge sole region plastic in order to interconnect the outsole, the midsole and the upper by forming an edge sole region.
16. The method according to claim 15, characterized in that the injection pressure in step b) is selected depending on the material of the midsole such that the cavity formed by the recess for receiving the at least one bellows of the air pump device is not compressed or is only insignificantly compressed.
17. The method according to claim 15, characterized in that in step a-2) the upper is positioned on a last such that the lower face of the sole section points upwards.
18. The method according to claim 15, characterized in that in step a-1) the midsole is applied in a centered manner by it being positioned using markings or projections on the upper face of the outsole.
19. The method according to claim 15, characterized in that an outsole is provided which projects beyond the outer edge of the midsole on all sides such that the distance between the outer edge of the outsole and the outer edge of the midsole is between 5% and 20% of the length of the shoe.
20. The method according to claim 15, characterized in that a midsole is provided which consists of a plastics foam having a Shore A hardness of between 40 and 60 Shore.
21. The method according to claim 15, characterized in that a midsole is provided comprising a recess arranged in the heel region for receiving a bellows of the air pump device, wherein the recess extends horizontally laterally and extends, at the back of the shoe, by a distance of approximately 1-5% of the length of the shoe from the edge of the midsole, wherein the bellows are formed by the recess that is covered by the lower face of the sole section or the upper face of the outsole and wherein a section of the at least one air intake duct and a section of the at least one air-guiding duct opening into the interior of the shoe are formed in the midsole.
22. A method for producing a shoe comprising an air pump device arranged in the heel region the air pump device comprising at least one bellows, into which at least one air intake duct opens and to which at least one air-guiding duct which opens into the interior of the shoe is connected, wherein an upper having an upper material section and a sole section having a lower face, a midsole having an upper face and a lower face, and an outsole having an upper face are provided, wherein the upper face of the midsole has a surface having a first surface profile and at least one recess adjacent to this surface for receiving the at least one bellows of the air pump device, and the lower face of the sole section of the upper has a surface having a second surface profile which is complementary to the first surface profile at least in part such that the complementary surface regions of the second surface profile of the sole section and the first surface profile of the midsole completely surround the at least one recess, wherein the horizontal extension of the upper face of the outsole and the horizontal extension of the sole section of the upper are greater than the horizontal extension of the midsole such that the midsole can be positioned so as to be centered between the outsole and the upper such that the outsole and the upper protrude beyond the outer edge of the midsole on all sides, wherein, for connecting the upper, the midsole and the outsole, a) first a-1) the midsole is applied in a centered manner to the lower face of the sole section of the upper and a-2) the upper having the applied midsole is pressed onto the upper face of the outsole, the outsole previously being provided in a base element of an injection mold, and wherein the complementary surface regions of the first surface profile of the upper face of the midsole and the second surface profile of the lower face of the sole section are adhered such that the at least one recess for receiving the at least one bellows of the air pump device is completely enclosed, and b) then the upper, the midsole and the outsole are enclosed by an injection mold and the surface regions of the upper face of the outsole not covered by the midsole, the lateral outer surfaces of the midsole and the lower face and adjacent lateral surface regions of the upper are overmolded with an edge sole region plastic in order to interconnect the outsole, the midsole and the upper by forming an edge sole region.
23. The method according to claim 22, characterized in that the injection pressure in step b) is selected depending on the material of the midsole such that the cavity formed by the recess for receiving the at least one bellows of the air pump device is not compressed or is only insignificantly compressed.
24. The method according to claim 22, characterized in that in step a-1) the upper is positioned on a last such that the lower face of the sole section points upwards.
25. The method according to claim 22, characterized in that in step a-1) the midsole is applied in a centered manner by it being positioned using markings or projections on the lower face of the sole section of the upper.
26. The method according to claim 22, characterized in that an upper is provided which has a first air intake duct extending from the sole section along its upper material section comprising an air intake opening spaced apart from the sole section and a first connecting element arranged on the sole section, a midsole is provided which has, on its upper face, a second connecting element connected to a second air intake duct of the air pump device, and steps a-1) and a-2) are carried out, wherein, in step a-1), the first and the second connecting element are interconnected in order to connect the second air intake duct of the midsole to the first air intake duct of the upper.
27. The method according to claim 26, characterized in that an upper is provided which has a first air intake duct extending along its heel region.
28. The method according to claim 22, characterized in that the sole section of the upper comprises an insole which is reinforced in the heel region above the at least one recess containing the at least one bellows of the air pump device and is designed as a rigid pressure plate which covers the at least one recess.
29. The method according to claim 22, characterized in that an outsole is provided which projects beyond the outer edge of the midsole on all sides such that the distance between the outer edge of the outsole and the outer edge of the midsole is between 5% and 20% of the length of the shoe.
30. The method according to claim 22, characterized in that a midsole is provided which consists of a plastics foam having a Shore A hardness of between 40 and 60 Shore.
31. The method according to claim 22, characterized in that a midsole is provided comprising a recess arranged in the heel region for receiving a bellows of the air pump device, wherein the recess extends horizontally laterally and extends, at the back of the shoe, by a distance of approximately 1-5% of the length of the shoe from the edge of the midsole, wherein the bellows are formed by the recess that is covered by the lower face of the sole section or the upper face of the outsole and wherein a section of the at least one air intake duct and a section of the at least one air-guiding duct opening into the interior of the shoe are formed in the midsole.
32. A method for producing a shoe comprising an air pump device arranged in the heel region the air pump device comprising at least one bellows, into which at least one air intake duct opens and to which at least one air-guiding duct which opens into the interior of the shoe is connected, wherein an upper having an upper material section and a sole section having a lower face, a midsole having an upper face and a lower face, and an outsole having an upper face are provided, wherein the lower face of the midsole has a surface having a first surface profile and at least one recess adjacent to this surface for receiving the at least one bellows of the air pump device, and the upper face of the outsole has a surface having a second surface profile which is complementary to the first surface profile at least in part such that the complementary surface regions of the second surface profile of the outsole and the first surface profile of the midsole completely surround the at least one recess, wherein the horizontal extension of the upper face of the outsole and the horizontal extension of the sole section of the upper are greater than the horizontal extension of the midsole such that the midsole can be positioned so as to be centered between the outsole and the upper such that the outsole and the upper protrude beyond the outer edge of the midsole on all sides, wherein, for connecting the upper, the midsole and the outsole, a) first a-1) the midsole is applied in a centered manner to the lower face of the sole section of the upper and a-2) the upper having the applied midsole is pressed onto the upper face of the outsole, the outsole previously being provided in a base element of an injection mold, and wherein the complementary surface regions of the first surface profile of the lower face of the midsole and the second surface profile of the upper face of the outsole are adhered such that the at least one recess for receiving the at least one bellows of the air pump device is completely enclosed, and b) then the upper, the midsole and the outsole are enclosed by an injection mold and the surface regions of the upper face of the outsole not covered by the midsole, the lateral outer surfaces of the midsole and the lower face and adjacent lateral surface regions of the upper are overmolded with an edge sole region plastic in order to interconnect the outsole, the midsole and the upper by forming an edge sole region.
33. The method according to claim 32, characterized in that the injection pressure in step b) is selected depending on the material of the midsole such that the cavity formed by the recess for receiving the at least one bellows of the air pump device is not compressed or is only insignificantly compressed.
34. The method according to claim 33, characterized in that in step a-1) the upper is positioned on a last such that the lower face of the sole section points upwards.
35. The method according to claim 32, characterized in that in step a-1) the midsole is applied in a centered manner by it being positioned using markings or projections on the upper face of the outsole.
36. The method according to claim 32, characterized in that an upper is provided which has a first air intake duct extending from the sole section along its upper material section comprising an air intake opening spaced apart from the sole section and a first connecting element arranged on the sole section, a midsole is provided which has, on its upper face, a second connecting element connected to a second air intake duct of the air pump device, and steps a-1) and a-2) are carried out, wherein, in step a-1), the first and the second connecting element are interconnected in order to connect the second air intake duct of the midsole to the first air intake duct of the upper.
37. The method according to claim 36, characterized in that an upper is provided which has a first air intake duct extending along its heel region.
38. The method according to claim 32, characterized in that the outsole is provided in the base element of the injection mold by the outsole being produced in the base element by injection molding or casting.
39. The method according to claim 32, characterized in that an outsole is provided which projects beyond the outer edge of the midsole on all sides such that the distance between the outer edge of the outsole and the outer edge of the midsole is between 5% and 20% of the length of the shoe.
40. The method according to claim 32, characterized in that a midsole is provided which consists of a plastics foam having a Shore A hardness of between 40 and 60 Shore.
41. The method according to claim 32, characterized in that a midsole is provided comprising a recess arranged in the heel region for receiving a bellows of the air pump device, wherein the recess extends horizontally laterally and extends, at the back of the shoe, by a distance of approximately 1-5% of the length of the shoe from the edge of the midsole, wherein the bellows are formed by the recess that is covered by the lower face of the sole section or the upper face of the outsole and wherein a section of the at least one air intake duct and a section of the at least one air-guiding duct opening into the interior of the shoe are formed in the midsole.
Description
[0023] The invention is explained in greater detail in the following on the basis of preferred embodiments shown in the drawings, in which:
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
[0035]
[0036] A first embodiment of the method according to the invention for producing a shoe comprising an air pump device arranged in the heel region is to be described with reference to
[0037]
[0038] The upper 2 comprises an upper material section 21 and a sole section 22. The sole section 22 is to be understood here to mean the part of the upper which faces the ground and to which the sole construction described below is attached. The upper material section 21 is then the remaining part of the upper 2. The sole section 22 usually comprises an insole and can also include further sole layers, for example soles inserted in the interior. In some embodiments, a separate insole can also be omitted and, for example, the leather of the upper can be guided around the foot from the upper material section downwards, as is the case with a moccasin, for example.
[0039] The midsole 3 is preferably produced in one piece from a compressible plastics material and contains, on its lower face 32, a recess 36 which can be seen in a separate view of the midsole 3 in
[0040] The sole section 22 (not shown in detail here) contains openings in the forefoot region which extend from its lower face as far as the interior of the shoe 1 and are arranged such that they are aligned with the openings 33 on the upper face 31 of the midsole 3. Air which is pressed from the recess 36 into the air-guiding ducts 38 and then through the openings 33 thereof via the one-way valve 37 thus enters the interior of the shoe 1 through the openings in the sole section 22 of the upper. The upper also contains an air intake duct 24 comprising a connecting element 25 which is connected to the connecting element 34 of the air intake duct of the midsole 3 when the midsole 3 is attached to the upper 2. At its upper end, the air intake duct 24 contains an air intake opening (not shown in detail here), which is preferably covered with a grid or a coarse-mesh fabric. The air intake duct 24, on the back of the upper 2, may also be designed (for example in a meandering shape) such that the air is deflected into its flow direction when it is suctioned in before it is guided downwards into the midsole. This deflection of the suctioned-in air flow can be used to separate water droplets and/or dirt particles contained in the air. The air intake duct 24 can also comprise a plurality of air intake ducts that are guided in parallel. In the embodiment shown in
[0041] A third shoe component shown in
[0042]
[0043] As can be seen in
[0044] The result after connecting the midsole 3 to the outsole 4 is shown in
[0045]
[0046] With reference to
[0047] The plastics material of the edge sole region 5 is selected such that it adheres well to the surfaces of the upper 2, the midsole 3 and the upper face of the outsole 4. Furthermore, the edge sole region plastic has good compressibility in the hardened state, the compressibility being selected in conjunction with the compressibility of the midsole 3 such that when the wearer of the shoe 1 takes normal steps during the walking process, the cavity of the recess 36 is compressed as completely as possible. In addition, the plastics material of the edge sole region 5 is selected such that the resilience is sufficient to restore the shape of the midsole 3 as completely as possible, i.e. to expand the cavity of the recess 36 as completely as possible, within the short period of pressure relief of the foot during a step.
[0048]
[0049] An alternative embodiment of the method according to the invention for producing a shoe comprising an air pump device arranged in the heel region is to be described with reference to
[0050]
[0051] Individual phases of the production method are again shown in
[0052] When the midsole 3 is adhered to the sole section 22, a connection is simultaneously made between the connecting element 34 and the connecting element 25 of the upper-side part of the air intake duct 24. It is made easier to mount the midsole 3 on the upper 2, including connecting the connecting elements of the air intake duct, in that, as already mentioned, the lower face of the upper is arranged upwards.
[0053] After the midsole 3 has been adhered to the sole section 22 of the upper 2, the last having the clamped upper 2 is rotated such that the lower face 32 of the midsole 3 faces the upper face 41 of the outsole 4. This is shown in
[0054]
[0055]
[0056]
[0057]
[0058]
[0059]
[0060] As already mentioned, the use of the shoe components upper 2, midsole 3, outsole 4 and edge sole region 5 allows the materials used for the components to be adapted to their respective functions. A compressible material (i.e. that can be easily pressed together) having sufficient resilience, for example a PUR foam, is used for the midsole 3. A compressible and resilient PUR foam material is also preferably used for the edge sole region. The materials of the midsole 3 and the edge sole region 5 preferably have a Shore A hardness of between 40 and 60 Shore, preferably of between 45 and 55 Shore. In the embodiments described above, the bellows of the air pump device is preferably formed by the cavity of the recess 36, covered by the lower face of the sole section 22 or the upper face 41 of the outsole 4, without an additional plastics bubble needing to be used. Of course, it is conceivable in alternative embodiments for such a plastics bubble to be inserted into the cavity, which is usually carried out during the pre-assembly of the midsole.