EP2398347B1 - Construction de semelle pour chaussure dotée d'un dispositif de pompe à air - Google Patents

Construction de semelle pour chaussure dotée d'un dispositif de pompe à air Download PDF

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Publication number
EP2398347B1
EP2398347B1 EP10711550.3A EP10711550A EP2398347B1 EP 2398347 B1 EP2398347 B1 EP 2398347B1 EP 10711550 A EP10711550 A EP 10711550A EP 2398347 B1 EP2398347 B1 EP 2398347B1
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EP
European Patent Office
Prior art keywords
air
sole
pump device
air pump
sole body
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP10711550.3A
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German (de)
English (en)
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EP2398347A1 (fr
Inventor
Wilhelm Möhlmann
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Atmos Airwalk AG
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Atmos Airwalk AG
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Publication date
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Priority to EP10711550.3A priority Critical patent/EP2398347B1/fr
Publication of EP2398347A1 publication Critical patent/EP2398347A1/fr
Application granted granted Critical
Publication of EP2398347B1 publication Critical patent/EP2398347B1/fr
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    • AHUMAN NECESSITIES
    • A43FOOTWEAR
    • A43BCHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
    • A43B7/00Footwear with health or hygienic arrangements
    • A43B7/06Footwear with health or hygienic arrangements ventilated
    • A43B7/08Footwear with health or hygienic arrangements ventilated with air-holes, with or without closures
    • A43B7/081Footwear with health or hygienic arrangements ventilated with air-holes, with or without closures the air being forced from outside
    • AHUMAN NECESSITIES
    • A43FOOTWEAR
    • A43BCHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
    • A43B7/00Footwear with health or hygienic arrangements
    • A43B7/12Special watertight footwear
    • A43B7/125Special watertight footwear provided with a vapour permeable member, e.g. a membrane

Definitions

  • the present invention relates to a sole construction for footwear, which allows efficient air circulation in the shoe and thus directly at the foot of a wearer of the shoe at each step of the running movement.
  • shoes which are equipped in the sole with devices which promote the air circulation in the shoe, which reduces the internal moisture, whereby the foot comfort of the user is to be improved.
  • This known shoe type generally provides hollow connections, which are accommodated in the sole interior connected to one another.
  • a sole construction in which fresh air can be exchanged in the sole without mechanical parts with each step and forwarded directly to the foot.
  • a sole body is described in which a cavity is embedded, which extends continuously along the sole body and which is closed by an elastically deformable cover having openings, and in which the cavity through the openings with the shoe facing the outside of the Sole body is in communication and in which the cavity communicates with one or more first transverse passages, which open into openings in the lateral and / or rear surface / outer surface of the sole body, so that the cavity is placed in communication with the exterior of the sole body.
  • WO 03/043454 A2 a shoe is described with an air pump device and air feeds provided in the heel region, wherein the air pump device is operated while a user is walking.
  • EP 1 127 505 A1 is a shoe with an air pumping device having an air intake chamber and an air chamber in the heel area in the ball area, and which provides the air circulation in the shoe is described.
  • the efficiency of the air circulation and in particular the air inlet and the air outlet through membrane-covered openings in the sole construction, can not be considered as sufficiently satisfactory and thus can be improved.
  • the air pumping device may be provided in the heel region extending from the foot end to the joint region in the middle joint region and the ball region (forefoot region) extending from the foot front side to the joint region.
  • the second air duct may in this case be in the form of a channel in the sole body, it may also be provided only in the form of an outlet of the air pump device, in particular an air reservoir of the air pump device.
  • Outside air may be drawn in by the air pumping device depending on the walking phase, and the previously drawn in air may be discharged into a part of the sole construction in which the air pumping device is not located. If, during the appropriate walking phase, a user's foot does not bear on the air pumping device, it sucks in air from outside the sole structure via the corresponding air supply; when the foot is resting on it, it pumps the air into another part of the sole body from where it travels upwards along the Foot, for example, through openings of the sole body covering sock, is pressed for effective ventilation of the user's foot.
  • a sole construction which provides improved air circulation in a simple configuration, solely by movement during walking, without the need for significant enlargement over conventional sole constructions without air circulation.
  • the valves provided allow efficient control of the airflows over and beyond the air ducts into and out of the air pumping device.
  • the at least one first and / or the at least one second air duct may comprise a flexible hose and / or a covered duct or in each case consist of a flexible hose, for example of plastic. If a plurality of first and / or second air ducts are provided, they may all comprise or consist of a hose, or some and not all of the air ducts may each comprise or consist of a hose.
  • the air ducts can permanently and tightly in a simple and cost-effective manner, the air to the air pump device and from this for ventilation of at least a portion of the sole body and finally the shoe interior are continued.
  • the air pump device can be formed separately from the sole body as an independent entity and embedded or fastened in the sole body, in particular at least partially in the cavity of the sole body.
  • the air pump device may comprise a plastic pump reservoir. This is compressed when a user's foot rests on it, which squeezes air out of the plastic pump reservoir. If during walking the plastic pump reservoir is relieved again of the foot, it expands and pulls due to the previously formed negative pressure air through the at least one air duct with the first valve from the outside, for subsequent ventilation of the shoe interior and thus the foot of a User is freshly available.
  • the air pump device can be integrally formed in one piece with the plastic pump reservoir and the air ducts.
  • the formation of the air pump device as a separate entity allows an independent of the sole construction or the sole body material selection and in particular material strength.
  • the air pumping device is embedded in the sole body such that it forms part of the outer running surface of the sole body. In this case, it contacts, for example, by a corresponding recess of the lower sole of the sole body through the committed by a wearer of the shoe surface (the road, the way, etc.). This can improve the pumping effect.
  • the air pump device is embedded in the sole body in such a way that it forms part of the outer running surface of the sole body, it can project in the direction of the ground to be entered in relation to the remaining tread of the sole.
  • the part of the air pumping device that forms part of the outer running surface of the sole body is elastically deformed, whereby the pumping effect is achieved.
  • Above (the background facing away) of the part of the outer tread of the sole body forming part of the air pumping device is an air chamber of the air pumping device.
  • the second air duct may in this case be a channel formed within the outsole.
  • the first air guide may be formed partly within a channel formed in the outsole (which is different from the channel in which the second air guide is optionally formed).
  • the first air duct may comprise a plastic part which is arranged in the channel formed in the outsole. In this way, in particular in conjunction with a plastic hose as a further component of the first air guide, an efficient control of the suction of the air can be achieved.
  • the plastic part may be formed at right angles with one leg starting from the air chamber of the air pump device and extending along the longitudinal axis of the sole body and another leg at an angle thereto, for example at right angles to the first leg the plastic tube communicates with the second leg.
  • the first leg may in this case be connected to the air chamber of the air pump device, which is partly formed by the part of the air pump device which forms part of the outer running surface of the sole body, via a valve which allows only an air supply into the air chamber.
  • the air pumping means may comprise at least one elastic element extending into a cavity of the air pumping device and in response to the walking movement of the user moves the shoe in the cavity, for example, bent, is.
  • At least two elastic elements which extend into a cavity of the air pump device and are moved in the cavity in response to the walking motion of the user of the shoe are provided as parts of the air pump device, namely in such a way that they are pressed towards each other a user loads the part of the sole construction in which the air pump device is located.
  • the two elastic members may be in communication with or integral with the part of the air pumping means forming part of the outer raceway of the sole body.
  • the at least one first air duct, through which the air pump device draws in air may in particular be designed so that it does not communicate with the space outside of the sole body through the sole body.
  • the first air duct can be guided upwards, where it ends, for example, in a shaft region of a shoe which comprises the sole construction according to the invention, in order to allow the intake of fresh air there by the air pump device.
  • the sole construction according to the invention may laterally have openings from the cavity to the outside through which a part of the water vapor formed there may escape from the sole body.
  • the running comfort can be improved by the air pump device.
  • openings are provided from the cavity of the sole body and provided laterally in the latter, it is expedient to seal these openings with a breathable and water-impermeable membrane, for example with a GoreTex membrane, whereby in particular water vapor can be removed in order to produce a relatively dry one
  • a breathable and water-impermeable membrane for example with a GoreTex membrane
  • the GoreTex membrane is permanently waterproof, windproof and breathable at the same time as well as temperature regulating.
  • the sole construction according to the invention furthermore comprises an apertured insole which covers the air pump device and the at least one part of the sole body. Through the openings of this insole, the air expelled from the air pumping device passes through the cavity of the sole into the shoe interior of a shoe comprising the inventive sole construction, where it serves to ventilate the foot of a wearer of the shoe.
  • the insole cover of the sole body
  • the bottom of the sole body / cavity of the sole body a certain number of spacers be attached elastically deformable material, whereby the temporary approach of the cover is made possible to the ground.
  • the spacers can also be provided in the form of a plastic knit.
  • the sole construction may have more than one air pumping device.
  • it may comprise a plurality of air pumping means formed as entities. It may also have a plurality of air pumping means designed in the form of nubs, which are formed on the underside of the sole body (towards the ground under attack) or are formed in the cavity of the sole body.
  • a Sole construction in which, however, a plurality of air pumping means are arranged in the sole body, each of which is connected to at least a first air guide and at least a second air guide; in which the respective air pumping means are adapted, in response to a walking movement of a user of the shoe, to perform an air pumping function so as to alternately supply air via the respective at least one first air duct from outside the vehicle Sucking in the sole body and pressing air into at least one part of the sole body which is in communication with the respective air pump device via the at least one second air guide and which can be different from the part in which the respective air pump device is arranged; in the respective at least one first air duct, a first valve is arranged, which is designed such that it only allows air to pass in the direction from outside the sole body into the respective air pump device; and or in the respective at least one second air duct, a second valve is arranged, which is designed such that it only allows air to pass in the direction of the
  • an air pump device in the heel region and / or an air pump device in the ball region and / or an air pump device in the joint region between the heel region and the ball region of the sole body can be arranged for particularly efficient ventilation.
  • the air pump means may be arranged in a midsole between a hard outsole (which contacts the ground on the lower side) and another sole, the midsole being made of a material which is more compressible ( more elastic than that of the outsole and that of the other sole.
  • the air pumping device may be provided in a soft sole layer between hard sole layers, the soft sole layer having a shock absorbing function which is further enhanced by providing the air pumping device.
  • the air pump device may be arranged in a softer part of an otherwise hard sole layer. For example, it may be embedded in a wedge-shaped softer part inserted in the hard sole layer, such as a relatively soft wedge in the heel area of an otherwise hard sole layer.
  • the sole construction may comprise an outsole, the outsole comprising an elastically outwardly-raised part, which is pressed inwards under load by a user's foot and thereby actuates the air-pumping device so that it can air pressed through the second air duct.
  • the air pump device When relieving the raised part of, in particular otherwise hard outsole, the air pump device is actuated to the effect that it sucks air from the outside via the first air duct.
  • the present invention provides a shoe with the sole construction according to one of the preceding examples, which has a shaft for slipping a foot of a wearer of the shoe, wherein the shaft has a part close to the sole construction and a part remote from the sole construction, and in FIG the first air duct extends partially along the shaft, in particular through an inner lining of the shaft from the foot of the wearer of the shoe, from the proximal part to the far part so that air can be pumped from the remote part into the air pumping device.
  • fresh air can be drawn in from the air pump device over a relatively large area.
  • water ingress into the shoe from the outside is avoided if the end of the first air duct, through which air is drawn in from the outside, is higher from the outsole than the lowest shaft end of the shoe.
  • a soleplate according to an example of the present invention comprises in a cavity embedded therein an air pumping device 212, positioned in the heel region in the example shown, with air ducts 225 and 226 is connected in the form of elastic hoses.
  • the air ducts 225 and 226 have valves 224 and 227, which pass air in one direction only.
  • the valve 227 in the air guide 226 allows the entry of air from outside into the air pumping device 212
  • the valve 224 in the air guide 225 allows the leakage of air from the air pumping device 212 into a part of the soleplate in which the air pumping device 212 is located not located.
  • the air guide 226 is connected at one end to a port of the air pumping device 212 or it may be integrally formed as an extension of the air pumping device 212. Air is drawn in from the air pumping device 212 through the other end. This other end can in principle end in a passage of the lateral sole body to the outside. However, it is preferred that the air guide 226 be of the type described in US Pat FIG. 1 shown sole body is guided more or less vertically upwards (perpendicular to the plane of the paper of the figure shown), and in particular along a shaft of a shoe which comprises the sole body runs. For example, the air guide 226 may terminate below a lacing of a shoe comprising the sole body shown, and in particular separated by a shaft of a user's foot.
  • air can be drawn in from the air pumping device 212 over a wide area.
  • This aspiration of air may be further communicated by having the air guide 226 in the region of its other end (the end opposite the air pumping device 212) having a plurality of side openings for the air inlet.
  • a plurality of lateral openings 205 are provided in the sole body, through which a part of the air expelled from the air pump device 212 and in particular emerging water vapor can escape to the outside.
  • openings 205 which are only optionally provided in the present invention, can each be sealed with a breathable and water-impermeable membrane, for example a GoreTex membrane.
  • air is expelled from the air pumping device 212 into a portion of the sole body having a plastic knit 210.
  • This knit 210 exemplifies the provision of spacers between the sole shown and an overlying insole (insole) (not shown) having apertures to allow air from the portion of the sole with the knit 210 over the openings of the insole the foot interior of a shoe can reach the in FIG. 1 includes sole body shown.
  • the plastic knit 210 not only results in a uniform distribution of the air expelled from the air pumping device 212, but also increases running comfort.
  • the plastic knit 210 provides comfortable cushioning properties in addition to extremely homogeneous air circulation in all directions, even under load from a user's foot. In particular, it guarantees a good springback during the running movements and a high shock absorption.
  • spacers which may be substantially cylindrical and may have an annular constriction in the central region, such that the shape of an eight is formed for the spacers in the longitudinal cross-section, may be provided. It should be appreciated that also the air pump 212 increases this ride comfort by performing a shock absorber / shock absorber function.
  • the said insole of the sole construction may also comprise a plurality of dimples inserted into the cavity of the sole body, in which in the FIG. 1 shown example, the plastic knitted fabric 210 is provided, protrude, wherein at least two of the plurality of knobs are different in size and / or diameter.
  • Groups of nubs for example in the form of truncated cones, of different size and / or circumference may be arranged to further improve the circulation of air and also the wearing comfort, for example in an anatomical arrangement, ie an anatomy of the foot adapted arrangement and shape of the nubs, to increase.
  • the insole and the nubs can be made of PU or latex, for example.
  • the nubs may be arranged in groups of nubs of the same size and / or the same circumference.
  • the nubs within a respective group may be spaced apart from one another with a measure which is different from the degree of spacing of individual nubs of another group.
  • the dimples may be arranged to form channels from the heel region towards the ball region and / or channels from the ball region toward the heel region, through which one or more air guides 225 may extend.
  • the air pumping device 212 may also be disposed in the ball region (forefoot region) or the hinge region between the heel region and the ball region. Furthermore, a plurality of air pumping devices may be arranged at different locations of the sole body. In addition, more than one air guide supplying air to the air pump device and more than one air guide discharging air from the air pump device may be provided for the one or more air pump devices, respectively.
  • the air pumping device 212 comprises a part which forms part of the outer running surface of the sole body, it can protrude in the direction of the ground to be entered with respect to the remaining running surface of the sole.
  • the part of the air pumping device 212 which forms part of the outer running surface of the sole body is elastically deformed, whereby the pumping effect is achieved.
  • Above (the background facing away) of the part of the outer tread of the sole body forming part of the air pumping device 212 is an air chamber of the air pumping device 212, is sucked into the air or ejected from the air.
  • elastic elements may extend which are bent upon elastic deformation of the part of the air pumping device 212 which forms part of the outer running surface of the sole body, in particular for ejecting air from the air chamber towards each other.
  • two such elements can be provided which may be arranged substantially parallel and substantially perpendicular to the part of the outer tread of the sole body. These two elements can be formed between themselves and integrally with the part of the air pump 212, which forms part of the outer tread of the sole body, one or more other plastic elements, for. B. nubs or pins, which serve to control the bending of the two elements.
  • FIG. 2 a shoe according to the invention is shown, which the sole body according to an example of the invention, as with reference to FIG. 2 may include.
  • the shoe has a shaft with an air inlet 250 on the shaft inside (Luftansauggitter).
  • an air supply 260 to an air pumping device, which is provided for example in a heel region of the sole body.
  • the air duct for example, the air duct 226 and 227 with the valve FIG. 1 correspond.
  • FIG. 3 A detail view of the shafts with air intake of the in FIG. 2 shown example is illustrated in Figure 3. Air is drawn in from outside via the air feed 302 into the air pump device via the air grille 301. In the in FIG. 3 As shown, the air supply 302 is located between a liner 303 of the stem and an upper leather 304. The air is transmitted through the valve 305 provided in the air supply 302 to the outside of the air pumping device.

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  • Health & Medical Sciences (AREA)
  • Epidemiology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Footwear And Its Accessory, Manufacturing Method And Apparatuses (AREA)

Claims (10)

  1. Système de semelle pour une chaussure, qui comprend un corps de semelle avec une cavité, le système de semelle présentant
    un dispositif de pompage d'air (212), qui est réalisé de manière intégrale, d'un seul tenant avec un réservoir de pompage en matière plastique, un premier guide d'air (226) et un deuxième guide d'air (225) ;
    système dans lequel
    le dispositif de pompage d'air (212) est configuré pour effectuer, en réaction à un mouvement de marche d'un utilisateur de la chaussure, une fonction de pompage d'air de manière telle, qu'alternativement
    il aspire de l'air vers l'intérieur, par l'intermédiaire dudit au moins un premier guide d'air (226), à partir de l'extérieur du corps de semelle, et
    refoule de l'air dans au moins une partie du corps de semelle, qui est en liaison avec le dispositif de pompage d'air (212) par l'intermédiaire dudit au moins un deuxième guide d'air (225), et qui peut être différente d'une partie du corps de semelle dans laquelle est agencé le dispositif de pompage d'air (212) ;
    dans ledit au moins un premier guide d'air (226) est agencée une première valve (227) qui est configurée de manière à laisser passer de l'air uniquement dans le sens allant de l'extérieur du corps de semelle vers l'intérieur du dispositif de pompage d'air (212) ; et/ou
    dans ledit au moins un deuxième guide d'air (225) est agencée une deuxième valve (224), qui est configurée de manière à laisser passer de l'air uniquement dans le sens allant du dispositif de pompage d'air (212) vers ladite au moins une partie du corps de semelle, qui peut être différente de la partie dans laquelle est agencé le dispositif de pompage d'air (212) ;
    système dans lequel le dispositif de pompage d'air (212) est conçu en tant qu'entité indépendante, séparée du corps de semelle, et est encastré ou fixé dans le corps de semelle, notamment au moins partiellement dans la cavité du corps de semelle, de manière à former une partie de la surface de marche extérieure du corps de semelle, conçue de façon à se déformer élastiquement lorsqu'elle entre en contact avec le sol, de sorte que l'on obtient un effet de pompage du dispositif de pompage d'air (212).
  2. Système de semelle selon la revendication 1, dans lequel le premier et/ou le deuxième guide d'air (225, 226) comportent un tuyau flexible.
  3. Système de semelle selon l'une des revendications précédentes, dans lequel ledit au moins un premier guide d'air (226) est en liaison avec l'espace à l'extérieur du corps de semelle non pas à travers le corps de semelle.
  4. Système de semelle selon l'une des revendications précédentes, dans lequel le corps de semelle présente latéralement des ouvertures (205), à partir de la cavité vers l'extérieur.
  5. Système de semelle selon la revendication 4, dans lequel les ouvertures (205) de la cavité vers l'extérieur, sont rendues étanches à l'aide d'une membrane active respirante et imperméable à l'eau, notamment une membrane Gore-Tex.
  6. Système de semelle selon l'une des revendications précédentes, comprenant, par ailleurs, une semelle de propreté munie d'ouvertures, qui recouvre le dispositif de pompage d'air (212) et ladite au moins une partie du corps de semelle, qui est différente de la partie dans laquelle est agencé le dispositif de pompage d'air (212).
  7. Système de semelle selon l'une des revendications précédentes, dans lequel plusieurs dispositifs de pompage d'air (212) sont agencés dans le corps de semelle, dont chacun est relié à au moins un premier guide d'air (226) et à au moins un deuxième guide d'air (225) ;
    système de semelle dans lequel
    les dispositifs de pompage d'air respectifs (212) sont conçus en vue d'effectuer, en réaction à un mouvement de marche d'un utilisateur de la chaussure, une fonction de pompage d'air de manière à, alternativement, aspirer de l'air à partir de l'extérieur du corps de semelle, par l'intermédiaire dudit au moins un premier guide d'air respectif (226), et refouler de l'air dans au moins une partie du corps de semelle, qui est en liaison avec le dispositif de pompage d'air respectif (212) par l'intermédiaire dudit au moins un deuxième guide d'air (225), et qui est différente de la partie du corps de semelle dans laquelle est agencée le dispositif de pompage d'air respectif (212) ;
    dans ledit au moins un premier guide d'air respectif (226) est agencée une première valve (227), qui est configurée de manière à laisser passer de l'air uniquement dans le sens allant de l'extérieur du corps de semelle vers l'intérieur du dispositif de pompage d'air respectif (212) ; et/ou
    dans ledit au moins un deuxième guide d'air respectif (225) est agencée une deuxième valve (224), qui est configurée de manière à laisser passer de l'air uniquement dans le sens allant du dispositif de pompage d'air respectif (212) vers ladite au moins une partie du corps de semelle, qui est différente de la partie dans laquelle est agencé le dispositif de pompage d'air respectif (212).
  8. Système de semelle selon l'une des revendications précédentes, dans lequel le dispositif de pompage d'air (212) est agencé dans une semelle intermédiaire entre une semelle d'usure extérieure et une autre semelle, la semelle intermédiaire étant fabriquée en un matériau qui est plus compressible que celui de la semelle d'usure extérieure et que celui de ladite autre semelle.
  9. Système de semelle selon l'une des revendications précédentes, comprenant une semelle d'usure extérieure, la semelle d'usure extérieure comprenant une partie élastique en relief vers l'extérieur, qui, sous l'effet de la charge exercée par le pied d'un utilisateur, est pressée vers l'intérieur et actionne en conséquence le dispositif de pompage d'air (212) de manière à ce que celui-ci refoule de l'air à travers le deuxième guide d'air (225).
  10. Chaussure avec un système de semelle selon l'une des revendications précédentes, comprenant une tige qui présente une partie proche du système de semelle et une partie éloignée du système de semelle, et dans laquelle le premier guide d'air s'étend partiellement le long de la tige, de la partie proche à la partie éloignée, notamment en étant séparé du pied du porteur de la chaussure par une garniture intérieure (303) de la tige, de manière telle que de l'air puisse être pompé à partir de la partie éloignée, dans le dispositif de pompage d'air (212).
EP10711550.3A 2009-02-17 2010-02-15 Construction de semelle pour chaussure dotée d'un dispositif de pompe à air Active EP2398347B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
EP10711550.3A EP2398347B1 (fr) 2009-02-17 2010-02-15 Construction de semelle pour chaussure dotée d'un dispositif de pompe à air

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
EP09002216.1A EP2218348B1 (fr) 2009-02-17 2009-02-17 Construction de semelle pour chaussure dotée d'un dispositif de pompe à air
EP10711550.3A EP2398347B1 (fr) 2009-02-17 2010-02-15 Construction de semelle pour chaussure dotée d'un dispositif de pompe à air
PCT/EP2010/000933 WO2010094448A1 (fr) 2009-02-17 2010-02-15 Construction d'une semelle de chaussure dotée d'un dispositif de pompage d'air

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EP2398347A1 EP2398347A1 (fr) 2011-12-28
EP2398347B1 true EP2398347B1 (fr) 2015-10-07

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EP09002216.1A Active EP2218348B1 (fr) 2009-02-17 2009-02-17 Construction de semelle pour chaussure dotée d'un dispositif de pompe à air
EP10711550.3A Active EP2398347B1 (fr) 2009-02-17 2010-02-15 Construction de semelle pour chaussure dotée d'un dispositif de pompe à air

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EP09002216.1A Active EP2218348B1 (fr) 2009-02-17 2009-02-17 Construction de semelle pour chaussure dotée d'un dispositif de pompe à air

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WO (1) WO2010094448A1 (fr)

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EP2688435B1 (fr) 2011-03-24 2016-03-02 ATMOS airwalk ag Construction de semelle avec système de pompe à air
ES2537262B2 (es) * 2013-10-28 2016-03-09 Marta MONTALVO HERRERA Plantilla con silenciador para ventilación del calzado
EP3318147B1 (fr) 2016-11-04 2019-08-14 ATMOS airwalk ag Chaussure comprenant une structure de semelle et un dispositif de pompe à air destiné à injecter de l'air dans l'espace intérieur de la chaussure
EP3345499B1 (fr) 2017-01-09 2020-03-11 ATMOS airwalk ag Chaussure comprenant un dispositif de pompe à air ayant un élément de ressort entourant un soufflet
EP3461358B1 (fr) 2017-10-02 2020-08-26 ATMOS airwalk ag Procédé de fabrication d'une chaussure pourvue d'un dispositif de pompe à air pourvu d'un soufflet conçu dans une semelle intercalaire

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EP1127505A1 (fr) * 2000-02-28 2001-08-29 STONEFLY S.p.A. Structure à circulation d'air forcé pour chaussure
WO2003043454A2 (fr) * 2001-11-16 2003-05-30 C & J Clark International Limited Ameliorations apportees aux chaussures

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JPH0723802A (ja) 1993-05-12 1995-01-27 Fukuoka Kagaku Kogyo Kk 換気靴
KR200169025Y1 (ko) 1997-11-21 2000-02-01 조남석 숨 쉬는 신발
WO2000001266A1 (fr) 1998-07-07 2000-01-13 Korea Institute Of Footwear & Leather Technology Type de chaussure avec ventilation a direction variable de l'ecoulement d'air
US20020194747A1 (en) 2001-06-21 2002-12-26 Passke Joel L. Footwear with bladder filter
US20050005473A1 (en) 2003-07-07 2005-01-13 Oh Phillip J. Self-cushion airflow shoes
DE102004035086B4 (de) 2004-07-20 2008-07-03 Heraeus Quarzglas Gmbh & Co. Kg Verfahren zur Herstellung eines Hohlzylinders aus Quarzglas mit kleinem Innendurchmesser sowie zur Durchführung des Verfahrens geeignete Vorrichtung
US7331121B2 (en) 2005-01-19 2008-02-19 Chie-Fang Lo Inflatable shoe sole

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Publication number Priority date Publication date Assignee Title
EP1127505A1 (fr) * 2000-02-28 2001-08-29 STONEFLY S.p.A. Structure à circulation d'air forcé pour chaussure
WO2003043454A2 (fr) * 2001-11-16 2003-05-30 C & J Clark International Limited Ameliorations apportees aux chaussures

Also Published As

Publication number Publication date
EP2218348A1 (fr) 2010-08-18
EP2218348B1 (fr) 2013-08-14
WO2010094448A1 (fr) 2010-08-26
EP2398347A1 (fr) 2011-12-28

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