FR2838613A1 - Shoe bottom comprises upper and lower sheet in heel area with elastic element between sheets and intermediate sheet extending transversely between lateral edge of upper and lower sheet - Google Patents
Shoe bottom comprises upper and lower sheet in heel area with elastic element between sheets and intermediate sheet extending transversely between lateral edge of upper and lower sheet Download PDFInfo
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- FR2838613A1 FR2838613A1 FR0205101A FR0205101A FR2838613A1 FR 2838613 A1 FR2838613 A1 FR 2838613A1 FR 0205101 A FR0205101 A FR 0205101A FR 0205101 A FR0205101 A FR 0205101A FR 2838613 A1 FR2838613 A1 FR 2838613A1
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- A—HUMAN NECESSITIES
- A43—FOOTWEAR
- A43B—CHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
- A43B13/00—Soles; Sole-and-heel integral units
- A43B13/02—Soles; Sole-and-heel integral units characterised by the material
- A43B13/026—Composites, e.g. carbon fibre or aramid fibre; the sole, one or more sole layers or sole part being made of a composite
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- A—HUMAN NECESSITIES
- A43—FOOTWEAR
- A43B—CHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
- A43B13/00—Soles; Sole-and-heel integral units
- A43B13/02—Soles; Sole-and-heel integral units characterised by the material
- A43B13/12—Soles with several layers of different materials
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- A—HUMAN NECESSITIES
- A43—FOOTWEAR
- A43B—CHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
- A43B21/00—Heels; Top-pieces or top-lifts
- A43B21/24—Heels; Top-pieces or top-lifts characterised by the constructive form
- A43B21/26—Resilient heels
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- Engineering & Computer Science (AREA)
- Materials Engineering (AREA)
- Footwear And Its Accessory, Manufacturing Method And Apparatuses (AREA)
Abstract
Description
SEMELAGE DE CHAUSSURESHOE SOLE
La presente invention concerne une chaussure destinee notamment a la marche ou la course The present invention relates to a shoe intended in particular for walking or running
en montagne et plus particulierement une semelle pour une telle chaussure. in the mountains and more particularly a sole for such a shoe.
Les chaussures de course a pied vent con,cues generalement avec des moyens d'amortissement, notamment au niveau du talon, pour amortir les chocs repetes se produisant lors de la foulee ou aux endroits qui vent les plus sollicites par les chocs, et eviter les micro Running shoes with a cone foot, generally designed with cushioning means, in particular at the heel, to absorb repeated shocks occurring during crowds or in places which are most affected by shocks, and avoid microphone
traumatismes sur les articulations de l'utilisateur. trauma to the user's joints.
Plus recemment ont ete egalement proposees des chaussures visant a limiter les effete de proration ou supination excessive du pied et d'adaptant mieux a la biomecanique et au More recently, shoes have also been proposed aiming to limit the effects of excessive proration or supination of the foot and adapting better to biomechanics and to
mouvement du deroule du pied.movement of the foot.
Les chaussures de course connues vent en general concues surtout pour cooperer avec des The known running shoes are generally designed especially to cooperate with
sols plans sur lesquels se deroulent en general les epreuves. flat floors on which the tests are generally held.
Or, le developpement de competitions sportives de t.vpe "raid", incluant differentes activites sportives se deroulant dans un contexte montagneux et incluant notamment des However, the development of sports competitions of t.vpe "raid", including various sporting activities taking place in a mountainous context and including in particular
courses en montagne, impliquent de nouvelles contraintes sur les chaussures et utilisateurs. mountain races imply new constraints on shoes and users.
En effet, les courses en montagne se deroulent generalement sur des sols accidentes, en pente, non "plans", c'est-a-dire comportant de nombreuses asperites, rocailles, et pouvant meme presenter de s devers, c 'e st- adire de s p entes transvers ales par rapp ort a l'axe de l a course. 2 0 Comme il n'existe actuellement sur le marche que peu de chaussure de course reellement prevues pour de telles conditions, il s'ensuit pour les coureurs de nombreux problemes In fact, mountain races generally take place on uneven, sloping, non-"flat" soils, that is to say with many asperites, rockeries, and may even have slopes, it is admire transverse sp entes in relation to the axis of the race. 2 0 As there are currently only a few running shoes on the market that are really intended for such conditions, there are many problems for runners.
traumatiques et risques d'accidents. trauma and risk of accidents.
Le but de la presente invention est de remedier a ces inconvenients et de fournir une chaussure notamment de course comportant un semelage adapte permettant d'ameliorer 2 5 l'accroche de la chaussure sur terrain accidente, en pente, en devers et permettant egalement The object of the present invention is to remedy these drawbacks and to provide a shoe, in particular a running shoe, comprising an adapted sole making it possible to improve the grip of the shoe on uneven terrain, on slopes, on slopes and also allowing
d'amortir les accidents et inegalites de terrain. to absorb accidents and uneven ground.
Un autre but de la presente invention est egalement d'eviter les problemes dus a une Another object of the present invention is also to avoid the problems due to a
proration ou supination excessive du pied de l'utilisateur. excessive proration or supination of the user's foot.
Ce but est atteint dans la chaussure selon ['invention qui est du type comportant une tige et un semelage externe par le fait que le semelage externe comporte dans la zone du talon une plaque superieure, une plaque inferieure et au moins un element elastique interpose entre les deux plaques de chaque cote lateral et medial du semelage, chaque element elastique etant This object is achieved in the shoe according to the invention which is of the type comprising an upper and an external sole assembly by the fact that the external sole assembly comprises in the heel area an upper plate, a lower plate and at least one elastic element interposed between the two plates on each lateral and medial side of the sole, each elastic element being
apte a etre sollicite lors d'un effort s'exer,cant essentiellement en direction verticale. able to be used during an exertion effort, cant mainly in the vertical direction.
Par cette construction le semelage reagira a tout effort s'exercant essentiellement en direction verticale soit du cOte medial, soit du cote lateral audit semelage, et s'adaptera parfaitement a une configuration en devers au terrain, ou a toute asperite de celui-ci dans une By this construction the sole assembly will react to any effort exerted essentially in the vertical direction either from the medial side, or from the side lateral to said sole assembly, and will perfectly adapt to a configuration in slope to the ground, or to any asperity of the latter in a
direction transversale a la direction de la marche. direction transverse to the direction of travel.
De preference, chaque element elastique a une forme d'epingle s'etendant en direction Preferably, each elastic element has a shape of a pin extending in the direction
transversale de la chaussure entre la plaque superieure et la plaque inferieure. transverse of the shoe between the upper plate and the lower plate.
Selon un mode de realisation prefere, les deux epingles ont une branche commune, ce qui ameliore lthomogeneite et la stabilite du semelage. En fait, le semelage externe comporte dans la zone du talon un element elastique en forme de Z (ou de Z inverse) s'etendant transversalement a la direction longitudinale de la chaussure et apte a repondre a des sollicitations exercees soit sur un cate medial, soit sur un cote lateral de la chaussure. De toute facon, ['invention sera mieux comprise et d'autres caracteristiques de celle-ci According to a preferred embodiment, the two pins have a common branch, which improves the homogeneity and the stability of the sole assembly. In fact, the outer sole assembly comprises in the heel area an elastic element in the form of a Z (or inverse Z) extending transversely to the longitudinal direction of the shoe and capable of responding to stresses exerted either on a medial pad, either on a lateral dimension of the shoe. In any case, the invention will be better understood and other characteristics of it
seront mises en evidence a ['aide de la description qui suit en reference au dessin schematique will be highlighted using the following description with reference to the schematic drawing
annexe en representant a titre d'exemple non limitatifs plusieurs modes de realisation preferes appendix by representing by way of nonlimiting example several preferred embodiments
et dans lequel: - la figure 1 est une vue en perspective arriere d'une partie de semelage selon ['invention incorpore dans une chaussure, - la figure 2 est une vue de profil de la partie de semelage de la figure 1, la figure 3 est une vue en coupe transversale d'un semelage selon l'art anterieur sur un terrain en devers, - la figure 4 est une vue en coupe transversale d'un semelage conforme aux figures 1 et 2, - la figure 5 est une vue similaire a la figure 4 du semelage sur un terrain en devers, - la figure 6 est une vue similaire a la figure 5 dans un autre exemple de devers, - les figures 7 et 8 vent des vues similaires aux figures 5 et 6 illustrant le comportement du semelage selon ['invention en presence d'asperites, and in which: - Figure 1 is a rear perspective view of a sole part according to the invention incorporated in a shoe, - Figure 2 is a side view of the sole part of Figure 1, Figure 3 is a cross-sectional view of a sole assembly according to the prior art on a slope land, - FIG. 4 is a cross-sectional view of a sole assembly according to FIGS. 1 and 2, - FIG. 5 is a view similar to FIG. 4 of the sole assembly on a slope land, - FIG. 6 is a view similar to FIG. 5 in another example of slope, - FIGS. 7 and 8 show views similar to FIGS. 5 and 6 illustrating the behavior sole assembly according to the invention in the presence of asperites,
2 0 - la figure 9 est une vue similaire a la figure 4 selon un autre mode de realisation. FIG. 9 is a view similar to FIG. 4 according to another embodiment.
Les figures 1 et 2 illustrent un premier mode de realisation du semelage 1 selon ['invention associe a une tige 2 de chaussure, indiquee en traits mixtes sur la figure 1. Dans ['ensemble Figures 1 and 2 illustrate a first embodiment of the sole assembly 1 according to the invention associated with a shoe upper 2, indicated in phantom in Figure 1. In ['together
des figures c'est le semelage d'une chaussure de pied droit qui est representee. of the figures it is the sole assembly of a right foot shoe which is represented.
Le semelage 1 comporte un insert forme par une plaque 10 en materiau rigide et elastique s'etendant sensiblement sur toute la longueur du semelage, c'est-a-dire depuis une extremite 12 arriere destinee a recevoir le talon, jusqu'a une extremite avant 13 destinee a recevoir les The sole assembly 1 comprises an insert formed by a plate 10 of rigid and elastic material extending substantially over the entire length of the sole assembly, that is to say from a rear end 12 intended to receive the heel, up to an end before 13 intended to receive
orteils, et une semelle externe ou de marche 14, indiquee en traits mixtes sur la figure 1. toes, and an outer or walking sole 14, shown in phantom in Figure 1.
Cette plaque 10 est en un materiau sensiblement rigide et elastique tel qu'un composite a base de fibres tissees ou non tissees tel que fibre de verre, carbone, poly-paraphenylene terephthalamide (KEVLAR), fibres metalliques,etc., et dont la matrice est une resine This plate 10 is made of a substantially rigid and elastic material such as a composite based on woven or nonwoven fibers such as glass fiber, carbon, poly-paraphenylene terephthalamide (KEVLAR), metallic fibers, etc., and whose matrix is a resin
polymere thermodurcissable ou thermoplastique. thermosetting or thermoplastic polymer.
A titre d'exemples de fibres pouvant etre utilisees dans ces composites, on peut citer celles donnees dans le tableau ci-apres qui fait mention du type de nappes de tissage et des As examples of fibers which can be used in these composites, mention may be made of those given in the table below which mentions the type of weaving plies and the
caracteristiques mecaniques de ces reseaux ou nappes fibreuses. mechanical characteristics of these networks or fibrous layers.
Fibres Tissage Contraire a la rupture superieure a Module superieur a Verre Unidirectionnel 700 MPa 25000 Mpa Verre Multidirectionnel 350 MPa 12000 Mpa Carbone Unidirectionnel 1500 MPa 70000 Mpa Carbone Multidirectionnel 700 MPa 35000 MPa Au niveau de la zone talon 12, la plaque 10 forme une plaque superieure 20, a cette plaque superieure est reliee une plaque inferieure 30 qui peut etre dans le meme materiau que la plaque superieure ou dans un materiau ayant des proprietes equivalentes ou differentes selon Weaving fibers Contrary to upper breakage Upper module with Unidirectional Glass 700 MPa 25000 Mpa Multidirectional Glass 350 MPa 12000 Mpa Unidirectional Carbon 1500 MPa 70000 Mpa Multidirectional Carbon 700 MPa 35000 MPa At the heel area 12, the plate 10 forms an upper plate 20, to this upper plate is connected a lower plate 30 which may be in the same material as the upper plate or in a material having equivalent or different properties depending on
l'effet recherche.the research effect.
Entre les deux plaques superieure 20 et inferieure 30 s'etend une troisieme plaque 40 intermediaire s'etendant en direction transversale par rapport a la direction longitudinale L du semelage et reliant le bord lateral 21 de la plaque superieure 20 au bord medial 31 de la plaque Between the two upper 20 and lower 30 plates extends a third intermediate plate 40 extending in transverse direction relative to the longitudinal direction L of the sole assembly and connecting the lateral edge 21 of the upper plate 20 to the medial edge 31 of the plate
inferieure 30, en formant un Z en direction transversale (cf. figure 4). lower 30, forming a Z in transverse direction (cf. FIG. 4).
Bien entendu dans le cas de la chaussure du pied gauche, le Z sera inverse. Of course in the case of the shoe of the left foot, the Z will be opposite.
1 0 En fait, quel que soit le pied droit ou gauche considere, le sens du Z importe peu, ce qui est important est qu'un element elastique ou epingle soit prevu et actif de chaque cote medial, lateral de la chaussure. En fait, une forme differente d'un Z ou Z inverse pourrait etre concevable pour ['ensemble elastique 50, 60, dans la mesure ou les exigences ci-avant vent remplies. Ces trots plaques 20, 30, 40 forment ainsi une double epingle elastique respectivement laterale 50 et mediale 60, chaque epingle elastique 50, 60 etant apte a etre sollicitee lors d'un effort s'exer,cant essentiellement en direction verticale, soit du cote medial, soit du cote lateral 1 0 In fact, whatever the right or left foot considered, the direction of the Z does not matter, what is important is that an elastic element or pin is provided and active on each medial, lateral side of the shoe. In fact, a different form of a reverse Z or Z could be conceivable for the elastic assembly 50, 60, provided that the above requirements are met. These trotting plates 20, 30, 40 thus form a double elastic pin respectively lateral 50 and medial 60, each elastic pin 50, 60 being able to be stressed during an exerted effort, cant essentially in the vertical direction, either on the side medial, either on the lateral side
de la chaussure.of the shoe.
En d'autres termes, le semelage externe comporte dans la zone du talon un element elastique 50, 60 en forme de Z ou de Z inverse s'etendant transversalement a la direction longitudinale L de la chaussure et apte a repondre a des sollicitations exercees soit sur un cote In other words, the outer sole assembly comprises in the heel area an elastic element 50, 60 in the form of a Z or a reverse Z extending transversely to the longitudinal direction L of the shoe and capable of responding to stresses exerted either on a side
medial, soit sur un cote lateral de la chaussure. medial, either on a lateral side of the shoe.
De preference, comme le montre la figure 4, l'espace entre chaque plaque respectivement superieure 20 et inferieure 30 est rempli par un element ou materiau amortisseur 75, 76 de Preferably, as shown in FIG. 4, the space between each respectively upper 20 and lower 30 plate is filled by an element or damping material 75, 76 of
2 5 type mousse ou similaire et par exemple en mousse, EVA, polyethylene, polyurethane,...etc. Foam type or similar and for example foam, EVA, polyethylene, polyurethane, ... etc.
La densite de la mousse pourra etre differente cote medial et cote lateral selon l'effet recherche. On appellera 75 ['element amortisseur associe a l'epingle laterale 50, et 76 ltelement The density of the foam may be different on the medial and lateral sides depending on the desired effect. 75 will be called the damping element associated with the side pin 50, and 76 element
amortisseur associe a l'epingle mediale 60. shock absorber associated with medial pin 60.
Ainsi, si l'on recherche un semelage permettant un amortissement maximum du choc lors de ['impact du talon sur le sol, qui se produit normalement sur le cote lateral du talon, ['element amortisseur 76 situe cote lateral sera plutot amortissant tandis que 1'element amortisseur 75 situe cote medial sera plus elastique puisque c'est 1'element amortisseur 76 situe cote lateral qui sera comprime par la deformation de l'epingle mediale 60 lors de cet impact. L'interet du semelage selon ['invention est surtout mis en evidence lors de l'utilisation en devers ou sur terrain accidente. La figure 3 illustre le comportement d'un semelage traditionnel constitue d'une semelle intermediaire 100 et d'une semelle externe 101 en cas de devers. Dans ce cas, la semelle intermediaire 100 etant en un materiau homogene, relativement rigide, aucune adaptation au devers n'est possible et l'appui du pied materialise sur la figure par la surface superieure 102 de la semelle se retrouve perpendiculaire a la pente du terrain T et done non horizontal d'ou des risques de blessures, entorses, etc. Comme le montre la figure 5, en cas de devers cote lateral, c'est-a-dire que le terrain T est en pente (ou devers) du haut vers le teas, du cote lateral vers le cote medial, l'epingle mediale 60 sera sollicitee et se fermera plus ou moins selon ['angle du devers tandis que ltepingle laterale 50 restera ouverte en fournissant ainsi une surface superieure 20 quasiment Thus, if we are looking for a sole assembly allowing maximum shock absorption during the impact of the heel on the ground, which normally occurs on the lateral side of the heel, the shock absorbing element 76 situated on the lateral side will be rather damping while The damping element 75 located on the medial side will be more elastic since it is the damping element 76 situated on the lateral side which will be compressed by the deformation of the medial pin 60 during this impact. The advantage of the sole assembly according to the invention is especially highlighted during use on slopes or on uneven terrain. FIG. 3 illustrates the behavior of a traditional sole assembly consisting of an intermediate sole 100 and an external sole 101 in the event of slopes. In this case, the intermediate sole 100 being of a homogeneous, relatively rigid material, no adaptation to the reverse is possible and the support of the foot materialized on the figure by the upper surface 102 of the sole is found perpendicular to the slope of the terrain T and therefore non-horizontal or from the risk of injury, sprains, etc. As shown in Figure 5, in the case of a side slope, that is to say the terrain T slopes (or slopes) from the top to the teas, from the lateral side to the medial side, the medial pin 60 will be stressed and will close more or less depending on the angle of the slope while the lateral pin 50 will remain open, thus providing an upper surface almost 20
horizontale pour le pied.horizontal for the foot.
En cas de devers dans l'autre sees, c'est-a-dire cote medial comme montre a la figure 6, c'est au contraire l'epingle laterale 50 qui sera sollicitee et ltepingle mediale 60 qui restera 1 0 ouverte en fournissant un appui sensiblement horizontal pour le pied. Les risques de blessure In the event of a slope in the other side, that is to say the medial side as shown in FIG. 6, it is on the contrary the lateral pin 50 which will be requested and the medial pin 60 which will remain 1 0 open while providing a substantially horizontal support for the foot. Risk of injury
vent done sensiblement reduits.wind therefore significantly reduced.
La double epingle 50, 60 en direction transversale selon ['invention, permet done de compen ser le s efforts asvmetriques se produi sant dans la direction transv ersal e du seme l age The double pin 50, 60 in transverse direction according to the invention therefore makes it possible to compensate for the asymmetric forces occurring in the transverse direction of the sowing.
lors de l'utilisation.when using.
1 5 Le comportement du semelage selon ['invention est similaire en cas d'asperites 1 5 The behavior of the sole assembly according to the invention is similar in the case of asperites
(cailloux,...etc.) se trouvant plutot cote lateral ou medial comme illustre par les figure 7 et 8. (pebbles, ... etc.) located rather lateral or medial side as illustrated by figures 7 and 8.
Dans le cas ou l'asperite est plutat cote medial (figure 7) c'est l'epingle laterale superieure In the case where the asperitis is rather medial side (figure 7) it is the upper lateral pin
et ['element amortisseur associe 75 qui kavaillent le plus. and the damping element combines 75 which work the most.
Dans tous les cas les epingles 50, 60 permettent de compenser l'inegalite de terrain et de In all cases the pins 50, 60 make it possible to compensate for the unevenness of the ground and of
2 0 garantir un appui sensiblement horizontal pour le pied. 2 0 ensure a substantially horizontal support for the foot.
Dans le cas inverse ou l'asperite se trouve plutot lateral (figure 8) c'est l'epingle mediale In the opposite case where the asperitis is rather lateral (figure 8) it is the medial pin
inferieure 60 et ['element amortisseur 76 associe qui travaillent le plus. lower 60 and the shock absorber element 76 which work the most.
Les degree de raideur de chaque epingle 50, 60 et d'amortissement de chaque element d'amortissement associe respectivement 75, 76 peuvent etre similaires ou differents selon les The degrees of stiffness of each pin 50, 60 and of damping of each associated damping element respectively 75, 76 may be similar or different depending on the
2 5 effete recherches.2 5 effete research.
Ainsi, comme explique precedemment, ['element d'amortissement 76 pourra etre choisi plus amortissant que ['element 75 et l'epingle associee 60 sera eventuellement moins raide que l'epingle 50 pour permettre d'obtenir un amortissement maximum des chocs lors de ['impact Thus, as explained above, the damping element 76 can be chosen to be more damping than the element 75 and the associated pin 60 will eventually be less stiff than the pin 50 to allow maximum shock absorption to be obtained during ['impact
du semelage avec le sol, qui se produit generalement cote lateral. seeding with the soil, which generally occurs on the lateral side.
3 0 Une telle construction permet egalement d'eviter le phenomene d'hyper proration a ['impact Such a construction also makes it possible to avoid the phenomenon of hyperproration on impact.
du talon.heel.
Les elements d'amortissement 75, 76 peuvent egalement etre choisis sous la forme de blocs interchangeables en fonction du poids de l'utilisateur, vitesse de course, forme du terrain,...etc. La figure 9 illustre un autre mode de realisation de ['invention dans lequel des pastes elastiques supplementaires 80 s'etendent transversalement depuis la plaque superieure 20, respectivement inferieure 30 jusquta la branche transversale 40. L'extremite des ces pastes elastiques 80 est libre et coulisse sur ladite branche transversale 40. Ces pastes elastiques 80 servent a donner au semelage une stabilite supplementaire en direction transversale, sans pour The damping elements 75, 76 can also be chosen in the form of interchangeable blocks according to the weight of the user, running speed, shape of the terrain, etc. FIG. 9 illustrates another embodiment of the invention in which additional elastic steps 80 extend transversely from the upper plate 20, respectively lower 30 to the transverse branch 40. The end of these elastic steps 80 is free and slides on said transverse branch 40. These elastic steps 80 serve to give the sole assembly additional stability in the transverse direction, without
autant gener le fonctionnement de liepingle double SO, 60. both generate the operation of the double SO rod, 60.
Wiles peuvent etre realisees de differentes facons, par exemple sous la forme de pastes elastiques 80 issues de chacune des plaques respectivement superieures 20, inferieures 30 ou sous la forme d' elem ents independents en PU ou autre materi au ayant la raideur et lt elastic it e souhaites. Dans les cas representes la plaque 10 est solidaire de la plaque superieure 20 et realisee Wiles can be produced in different ways, for example in the form of elastic steps 80 coming from each of the plates respectively upper 20, lower 30 or in the form of independent elements made of PU or other material having the stiffness and elasticity. e wishes. In the cases shown, the plate 10 is integral with the upper plate 20 and produced
dans le meme materiau que celle-ci.in the same material as this one.
L'interet d'avoir une plaque 10 elastique egalement a ['avant du pied est que celle-ci fournit The advantage of having an elastic plate 10 also at the front of the foot is that it provides
un effet de propulsion / relance lorsque le pied quitte le sol. a propulsion / revival effect when the foot leaves the ground.
Une plaque 10 s'etendant sensiblement sur toute la longueur du semelage fournit egalement la rigidite en torsion et stabilite en direction transversale recherchee et constitue done une A plate 10 extending substantially over the entire length of the sole assembly also provides the torsional rigidity and stability in the desired transverse direction and therefore constitutes a
sorte de chassis empechant les deformations d'ensemble du semelage. sort of chassis preventing overall deformation of the sole assembly.
L'interet d'avoir ['ensemble plaque lO, epingles 50, 60 en une seule piece permet egalement The advantage of having the plate assembly 10, pins 50, 60 in one piece also allows
une grande homogeneite de realisation de ['ensemble du semelage. a great homogeneity of realization of the whole sole assembly.
Cependant, pour des questions de facilite de fabrication, de modularite des caracteristiques ou autres, il peut etre sonhaitable de realiser la plaque elastique 10 et ltensemble elastique talon, constitue des epingles SO, 60, en des blocs distincts solidarises ensemble lors de la However, for reasons of ease of manufacture, modularity of the characteristics or others, it may be advisable to produce the elastic plate 10 and the elastic heel assembly, consisting of pins SO, 60, in separate blocks fastened together during the
realisation du semelage final.realization of the final sowing.
De meme, chaque epingle 50, 60 peut etre realisee independamment et etre assemblee a Likewise, each pin 50, 60 can be made independently and be assembled at
l'autre epingle en phase finale.the other pin in the final phase.
Enfin le bloc elastique talon 50, 60 peut etre prevu independamment de toute plaque elastique 10, dans le cas ou l'on recherche senlement lteffet d'elasticite transversale au niveau Finally the elastic block heel 50, 60 can be provided independently of any elastic plate 10, in the case where we are only looking for the effect of transverse elasticity at the level
du talon.heel.
2 5 Bien entendu, la presente invention n'est pas limitee aux modes de realisation decrits mais 2 5 Of course, the present invention is not limited to the embodiments described but
englobe tous les modes de realisation similaires ou equivalents. includes all similar or equivalent embodiments.
Claims (14)
Priority Applications (4)
Application Number | Priority Date | Filing Date | Title |
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FR0205101A FR2838613B1 (en) | 2002-04-19 | 2002-04-19 | SHOE SOLE |
PCT/FR2003/001042 WO2003088777A2 (en) | 2002-04-19 | 2003-04-03 | Shoe bottom |
EP03740558A EP1496763A2 (en) | 2002-04-19 | 2003-04-03 | Shoe bottom |
AU2003262419A AU2003262419A1 (en) | 2002-04-19 | 2003-04-03 | Shoe bottom |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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FR0205101A FR2838613B1 (en) | 2002-04-19 | 2002-04-19 | SHOE SOLE |
Publications (2)
Publication Number | Publication Date |
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FR2838613A1 true FR2838613A1 (en) | 2003-10-24 |
FR2838613B1 FR2838613B1 (en) | 2004-09-24 |
Family
ID=28686316
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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FR0205101A Expired - Lifetime FR2838613B1 (en) | 2002-04-19 | 2002-04-19 | SHOE SOLE |
Country Status (4)
Country | Link |
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EP (1) | EP1496763A2 (en) |
AU (1) | AU2003262419A1 (en) |
FR (1) | FR2838613B1 (en) |
WO (1) | WO2003088777A2 (en) |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2006049754A1 (en) * | 2004-10-27 | 2006-05-11 | Kerrigan D Casey | Cantilevered shoe construction |
US7418790B2 (en) | 2001-04-03 | 2008-09-02 | Kerrigan D Casey | Cantilevered shoe construction |
Families Citing this family (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
GB2437698B (en) * | 2005-09-02 | 2010-10-13 | Healus Ltd | Heelless sports shoe with force transmission |
WO2007026175A1 (en) * | 2005-09-02 | 2007-03-08 | Healus Ltd. | Footwear with sole force distribution and sense enhancement |
HUP0800101A2 (en) * | 2008-02-18 | 2011-11-28 | Laszlo Solymosi | Shoes with unstable sole construction |
Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US3738373A (en) * | 1971-08-11 | 1973-06-12 | J Glancy | Shoe heel with cushion wedge |
US4566206A (en) * | 1984-04-16 | 1986-01-28 | Weber Milton N | Shoe heel spring support |
US5595002A (en) * | 1994-12-05 | 1997-01-21 | Hyde Athletic Industries, Inc. | Stabilizing grid wedge system for providing motion control and cushioning |
US20020133977A1 (en) * | 2001-03-20 | 2002-09-26 | Kung-Sheng Pan | Shoe having an elastic heel |
Family Cites Families (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE10112821B9 (en) * | 2001-03-16 | 2004-10-28 | Adidas International Marketing B.V. | Sole and shoe |
-
2002
- 2002-04-19 FR FR0205101A patent/FR2838613B1/en not_active Expired - Lifetime
-
2003
- 2003-04-03 EP EP03740558A patent/EP1496763A2/en not_active Withdrawn
- 2003-04-03 WO PCT/FR2003/001042 patent/WO2003088777A2/en not_active Application Discontinuation
- 2003-04-03 AU AU2003262419A patent/AU2003262419A1/en not_active Abandoned
Patent Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US3738373A (en) * | 1971-08-11 | 1973-06-12 | J Glancy | Shoe heel with cushion wedge |
US4566206A (en) * | 1984-04-16 | 1986-01-28 | Weber Milton N | Shoe heel spring support |
US5595002A (en) * | 1994-12-05 | 1997-01-21 | Hyde Athletic Industries, Inc. | Stabilizing grid wedge system for providing motion control and cushioning |
US20020133977A1 (en) * | 2001-03-20 | 2002-09-26 | Kung-Sheng Pan | Shoe having an elastic heel |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US7418790B2 (en) | 2001-04-03 | 2008-09-02 | Kerrigan D Casey | Cantilevered shoe construction |
WO2006049754A1 (en) * | 2004-10-27 | 2006-05-11 | Kerrigan D Casey | Cantilevered shoe construction |
Also Published As
Publication number | Publication date |
---|---|
WO2003088777A2 (en) | 2003-10-30 |
AU2003262419A1 (en) | 2003-11-03 |
WO2003088777A3 (en) | 2004-04-01 |
AU2003262419A8 (en) | 2003-11-03 |
FR2838613B1 (en) | 2004-09-24 |
EP1496763A2 (en) | 2005-01-19 |
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