Shoe, especially a sports shoe
11793275 ยท 2023-10-24
Assignee
Inventors
Cpc classification
International classification
Abstract
The invention relates to a shoe (1), especially to a sports shoe, with a shoe upper (2) and a sole (3) connected with the shoe upper (2), wherein the shoe (1) comprises a central fastener (4) for lacing the shoe (1) at the foot of a wearer, wherein the central fastener (4) comprises at least one tensioning element (5) which is arranged on or in a region of the shoe upper (2) by which a lacing force can be exerted onto the region of the shoe upper (2) and at least one gear element (6) driven by an electric motor (7), wherein a section (8) of the tensioning element (5) can be pulled against a fixed location (9) of the shoe (1) by means of the gear element (6) to create a tensioning force for lacing the shoe (1) at the foot of the wearer. To provide a compact central closure system the invention proposes that the section (8) of the tensioning element (5) is a strap which comprises a gearing (10) or a profile, wherein the gear element (6) comprises a worm (11) which engages into the gearing (10) or profile to pull the strap (8) in a translational direction (T) at the rotation of the worm (11).
Claims
1. A shoe, comprising a shoe upper and a sole connected with the shoe upper, wherein the shoe comprises a central fastener for lacing the shoe, wherein the central fastener comprises: at least one tensioning element that is positioned about a region of the shoe upper, the at least one tensioning element being configured to exert a lacing force on the region of the shoe upper; and at least one gear element coupled to at least one electric motor, wherein the at least one gear element pulls a section of the at least one tensioning element against a fixed location of the shoe to create a tensioning force for lacing the shoe, wherein the section of the at least one tensioning element is a strap comprising a gearing, wherein the gearing includes a plurality of parallel grooves, wherein the at least one gear element comprises a worm gear that rotatably engages the gearing to pull the strap in the sole in a translational direction, and wherein the plurality of parallel grooves are machined into the strap.
2. The shoe of claim 1, wherein the at least one tensioning element comprises at least one laminar part that is positioned in a plane of a surface of the shoe upper, wherein the at least one laminar part has a thickness measured perpendicular to the surface of the shoe upper and a width measured in the plane of the surface of the shoe upper, wherein the width is greater than the thickness.
3. The shoe of claim 2, wherein the at least one laminar part comprises a central section that is positioned in an instep region of the shoe.
4. The shoe of claim 3, wherein the central section is connected to at least one lateral section and at least one medial section, wherein the at least one lateral section and the at least one medial section extend from the central section to the sole.
5. The shoe of claim 4 further comprising two lateral sections and two medial sections, wherein the two lateral sections are each disposed at an angle from a lateral portion of the central section and the two medial sections are each disposed at an angle from a medial portion of the central section.
6. The shoe of claim 4, wherein the at least one lateral section attaches to a first strap and the at least one medial section attaches to a second strap.
7. The shoe of claim 6 further comprising a first worm that engages a first gearing of the first strap and a second worm that engages a second gearing of the second strap.
8. The shoe of claim 1, wherein the at least one tensioning element includes a panel sheet comprising metal.
9. The shoe of claim 8, wherein a thickness of the panel sheet is less than 2.0 mm.
10. The shoe of claim 8, wherein the panel sheet comprises aluminium or magnesium.
11. The shoe of claim 3, wherein the central section includes a switch for controlling the central fastener.
12. The shoe of claim 11, wherein the switch and the at least one tensioning element comprise a unitary element.
13. The shoe of claim 11, wherein the switch is a contact sensor having an actuation surface configured to be actuated by a finger of a user.
14. The shoe of claim 1, wherein the at least one gear element and the at least one electric motor are positioned in the sole of the shoe.
15. A shoe, comprising a shoe upper and a sole connected with the shoe upper, wherein the shoe comprises a central fastener for lacing the shoe, wherein the central fastener comprises: at least one tensioning element that is positioned about a region of the shoe upper, the at least one tensioning element being configured to exert a lacing force on the region of the shoe upper; and a gear element comprising a worm gear, wherein the at least one tensioning element comprises a first strap having a first end and a second strap having a second end, the first end of the first strap and the second end of the second strap are disposed in the sole and are spaced apart a distance from one another, wherein a first plurality of parallel grooves are machined into the first strap, wherein, when the first plurality of parallel grooves of the first strap are engaged, the first end of the first strap is moved toward the second end of the second strap in the sole to reduce the distance from one another and to exert the lacing force on the region of the shoe upper, and wherein the gear element is configured to engage at least one of the first plurality of parallel grooves or a second plurality of parallel grooves to create a tensioning force for lacing the shoe.
16. The shoe of claim 15, wherein the first plurality of parallel grooves are punched into the first strap and the second plurality of parallel grooves are punched into the second strap.
17. The shoe of claim 16, wherein the gear element is coupled to an electric motor.
18. A shoe, comprising a shoe upper and a sole connected with the shoe upper, wherein the shoe comprises a central fastener for lacing the shoe, wherein the central fastener comprises: at least one tensioning element that is positioned about a region of the shoe upper, the at least one tensioning element being configured to exert a lacing force on the region of the shoe upper, wherein the at least one tensioning element includes a central section that is positioned in an instep region of the shoe, the central section including a switch for controlling the central fastener, the switch and the at least one tensioning element comprising a unitary element, wherein the switch includes a contact surface that is configured to be actuated by a finger of a user; and a gear element comprising a worm gear, wherein the at least one tensioning element includes a strap that comprises a first plurality of parallel grooves that are machined into the strap, the strap having an end that is at least partially disposed in the sole of the shoe, wherein, in a first actuated configuration of the at least one tensioning element, the end of the strap is displaced relative to a fixed location of the shoe to exert the lacing force on the region of the shoe upper and tighten the shoe, and wherein the gear element is coupled to an electric motor and is configured to engage at least one of the first plurality of parallel grooves or a second plurality of parallel grooves for lacing the shoe.
19. The shoe of claim 18, wherein, in a second actuated configuration of the at least one tensioning element, the end of the strap is displaced relative to the fixed location of the shoe to decrease the lacing force and loosen the shoe.
Description
(1) In the drawings embodiments of the invention are shown.
(2)
(3)
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(5)
(6)
(7)
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(12)
(13) In
(14) The central fastener 4 tensions a tensioning element 5 so that a tensioning force can be exerted to the shoe upper 2 and thus to the foot of the wearer.
(15) The tensioning of the tensioning element 5 takes place by means of a gear element 6 (and more specifically by two gear elements 6 in the present embodiment). The gear element 6 is shown in
(16) Worms 11 of the mentioned kind are well known in the art. Reference is made to common worm gears consisting of a driving worm and a driven worm wheel. Such a worm which can mesh with the grooves in the strap 8 is suitable for the present solution.
(17) The electric motor 7 as well as the worm 11 are arranged at a fixed location 9 of the shoe and more specifically within the sole 3. Accordingly, when the electric motor 7 rotates the worm 11 and when the worm 11 meshes with the gearing 10 in the strap 8, the end of the strap 8 is moved in a translational direction T (see
(18) Fixed location 9 means in the above context that this is a location in the shoe against which the strap 8 is pulled at the actuation of the gear element 6. That is, while the strap 8 can be moved in translational direction T relatively to the shoe and specifically in the sole 3, the worm 11 together with the electric motor 7 is arranged stationary in the shoe 1 and specifically in the sole 3.
(19) The strap 8 is a part of the tensioning element 5 which is made of a thin sheet metal plate which is machined according to the shape as becomes apparent from
(20) The tensioning element 5 is thus produced from a thin material with a thickness t which is preferably below 1.0 mm. Compared with the thickness t the width w of the different sections of the tensioning element 5 (see
(21) As can be seen specifically from
(22) Preferably a section of the laminar part 12 and the two strip-like lateral sections 14 as well as a section of the laminar part 12 and the two medial sections 15 form a triangular structure as becomes a parent from
(23) In
(24) As can be seen from
(25) Thus, when the two electric motors 7 (not shown) of the two gear elements 6 in
(26) Coming now to
(27) In
(28) In
(29) The embodiment according to
(30) In
(31) In
(32) In
(33) In
(34) Finally, in
(35) The cables 17 (being finally a part of the tensioning element 5) can be connected with another part of the tensioning element 5 for example by soldering.
(36) As a preferred manufacturing method of the whole tensioning element 5 (with straps 8 but without cables 17) it is suggested to cut out the required shape of the tensioning element 5 from a thin (e. g. rectangular) metal plate by punching, laser cutting, electron beam cutting or the like. By this method also the grooves 10 can be cut out efficiently. This allows an economic production of the tensioning element 5.
(37) It is also possible to produce the tensioning element 5 by connecting several parts together. So, for example the straps 8 can be produced separately and then fixed to the rest of the structure of the tensioning element 5.
(38) Not shown in the figures are a battery and wires which are of course necessary for the operation of the electric motors 7.
REFERENCE NUMERALS
(39) 1 Shoe 2 Shoe upper 3 Sole 4 Central fastener 5 Tensioning element 6 Gear element 7 Electric motor 8 Section of the tensioning element (strap) 9 Fixed location of the shoe 10 Gearing/profile 11 Worm 12 Laminar part of the tensioning element 13 Central section 14 Lateral section 15 Medial section 16 Switch 17 Cable T Translational direction t Thickness w Width