EP3595784B1 - Plate-forme pour le montage d'une fixation de ski sur un ski ou un snowboard - Google Patents

Plate-forme pour le montage d'une fixation de ski sur un ski ou un snowboard Download PDF

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EP3595784B1
EP3595784B1 EP18721511.6A EP18721511A EP3595784B1 EP 3595784 B1 EP3595784 B1 EP 3595784B1 EP 18721511 A EP18721511 A EP 18721511A EP 3595784 B1 EP3595784 B1 EP 3595784B1
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Prior art keywords
ski
connecting member
bearing plate
eye
snowboard
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German (de)
English (en)
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EP3595784A1 (fr
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Franc Sitar
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Individual
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Individual
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    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63CSKATES; SKIS; ROLLER SKATES; DESIGN OR LAYOUT OF COURTS, RINKS OR THE LIKE
    • A63C5/00Skis or snowboards
    • A63C5/06Skis or snowboards with special devices thereon, e.g. steering devices
    • A63C5/075Vibration dampers
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63CSKATES; SKIS; ROLLER SKATES; DESIGN OR LAYOUT OF COURTS, RINKS OR THE LIKE
    • A63C9/00Ski bindings
    • A63C9/007Systems preventing accumulation of forces on the binding when the ski is bending
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63CSKATES; SKIS; ROLLER SKATES; DESIGN OR LAYOUT OF COURTS, RINKS OR THE LIKE
    • A63C2203/00Special features of skates, skis, roller-skates, snowboards and courts
    • A63C2203/20Shock or vibration absorbing

Definitions

  • the invention refers to a platform for mounting of a ski binding onto a ski or snowboard.
  • Pursuant to the International Patent Classification (IPC 9 ) such inventions belong to Class, namely to the field of skis and/or ski bindings, namely to elements, which are intended for dampening of vibrations generated by sliding the ski along each ground.
  • the invention refers to a platform, which can be subsequently mounted onto a top surface of a previously finalized ski or a mono-ski (to those skilled in the art also known under English expression snowboard ), and on such platform then a ski binding can be mounted, namely a front part and a rear part of the ski binding, by means of which then during the use of the ski a ski shoe is held in its position above said top surface in the central area of the ski.
  • said ski or snowboard is practically all the time bent like a bending beam of certain thickness, which results in deformations on its surface, namely in contractions and extensions of its bottom sliding surface as well as on its top surface, on which, or at least proximal to which said platform, both parts of the ski binding and said ski shoe are located.
  • said bending deformations or also any other mechanical influences often result in vibrations with negative influences with respect to guiding performances of the ski in each desired direction.
  • said platform is also exposed to said stresses and deformations. Since the weight of the platform should be as low as possible, mechanic stresses therein may be relatively high, which in combination with a dynamic nature of said stresses during the time results in local defects of the material of the platform, in particular cracks.
  • the purpose of the present invention is to create a platform, which should after mounting thereof onto the top surface of the ski or snowboard provide each desired - optionally even a relatively small - standing height, and allow unhindered bending of the ski or snowboard by simultaneously dampening of vibrations, so that such platform would have to contribute to better guiding performances and impulsiveness of the ski or snowboard by turning, but at the same time such platform should also be able to withstand during its whole lifetime to all aforementioned mechanical stresses.
  • a ski is disclosed, on the upper side of which a platform is fixed, which consists of rigid and viscoelastic layers placed one above the other, with the viscoelastic layer being the bottom one.
  • a platform consists of rigid and viscoelastic layers placed one above the other, with the viscoelastic layer being the bottom one.
  • Such a platform facilitates the fixing of both parts of the ski binding at the suitable distance from the upper ski surface and thus ensures the desired standing height.
  • the latter can also be very small, which is convenient for racing skis which have to comply with the regulations.
  • such a platform facilitates the damping of some vibrations, those which are transferred from the ski to the skier's leg thereby applying pressure on the skier.
  • the bending deformations of the ski on the upper surface of said ski and also on the surface of such a platform result in an elongated or contracted distance between the front and rear part of the ski binding.
  • Such deformations in the longitudinal direction during the extreme bending pressure on the ski can amount up to 1 centimeter and should in principle be compensated for by at least the most perfected ski bindings. Theoretically this is true, but in practice e.g. during a race such deformations follow each other so quickly that springloaded elements of ski bindings cannot keep up with the changes, which results in a disconnection between the ski boot and the ski binding, thus separating the ski boot from the ski.
  • JP 8257199 OGASAKA SKI SEISAKUSHO
  • a platform which is also fixable to the finalized ski and provides for the desired standing height, which can be relatively small, and the fixing of both parts of the binding as well as an unobstructed bending of the ski.
  • Such a platform is basically designed as a plate made of a material based on synthetic resins which in the central area between the locations for the fixing of both ski binding parts includes a zigzag weak spot consisting of lateral ribs and grooves. Even though such a platform actually facilitates an unobstructed bending of the ski and thus a corresponding distribution of pressure along the whole active length of each active edge, the problem of the compensation of bending deformations on the ski surface despite all other advantages still persists.
  • EP 1 031 360 (Bünter R .) proposes a platform which consists of a rigid plate and a pair of axial vibration dampers each of which has an articulated connection to said plate on one side and to the corresponding flange, which is fixed on the upper ski surface in its central part, on the other side. Said plate extends longitudinally along the ski and the dampers are situated in said direction one after another. Thanks to a two-point anchorage of the platform, such a design should facilitate an unobstructed bending of the ski and an efficient damping of vibrations and at the same time a possible tilt of the platform in the downward and forward directions. The latter can be favourable in certain skiing styles or disciplines, especially e.g. downhill. However, the problem of the compensation of bending deformations during the extreme bending of the ski remains unsolved with this platform.
  • SI 21309 A (Sitar F.) there is a solution of the platform consisting of a pair of fixing elements spaced apart in the longitudinal direction of the ski which are separately screwed to the ski and over which a connective plate is placed with the front and the rear part of the ski binding being fixed to it.
  • the connective plate is fixed to said elements fixed in elastic assemblies each of which is comprised of an elastic insertion and a fixing screw. Said assemblies are intended for damping of vibrations which are transferred from the ski to the skier's legs.
  • the connective plate is pivotally connected on one side to one of the fixing elements fixed to the ski which is linked to said connective plate on one side and corresponding fixing element on the other side using articulated rocker arms.
  • the connective plate is turnably linked to the corresponding fixing element with a suitable bolt.
  • the elastic assemblies for vibration damping are available in fixing elements while the articulated linkage between the plate and the fixing element facilitates, at least in limited extent, a compensation of deformations on the upper surface of the ski.
  • a platform for fixing the ski binding to the ski is disclosed in EP 2 285 457 B1 and consists of a fixing assembly, which is comprised of at least a base plate which is adapted to be fixed to the upper surface of the ski in each selected area for fixing the ski binding, while said fixing assembly is adapted to hold the ski boot in the desired position of the intended front assembly and rear assembly of the ski binding.
  • a fixing assembly which is comprised of at least a base plate which is adapted to be fixed to the upper surface of the ski in each selected area for fixing the ski binding, while said fixing assembly is adapted to hold the ski boot in the desired position of the intended front assembly and rear assembly of the ski binding.
  • the elastically deformable base plate is adapted to receive the front positioning plate and the rear positioning plate whose positions on said base plate can be selected depending on each desired position of both ski binding assemblies, especially depending on the size of each available ski boot.
  • a front bearing plate is foreseen which receives the front ski binding assembly and is linked with the front positioning plate with a pair of levers which are pivotally connected via pivot joints to the corresponding positioning plate on one side and via pivot joints to said bearing plate on the other side, namely the inner and outer levers.
  • the rear bearing plate is intended, adapted to receive the rear ski binding assembly and is linked with the rear positioning plate with a pair of levers which are pivotally connected via pivot joints to the corresponding positioning plate on one side and via pivot joints to said bearing plate on the other side, namely the inner and outer levers.
  • the inner lever pivot joint and the outer lever pivot joint on the front positioning plate are preferentially situated on the line which extends in the longitudinal direction of the ski, the outer lever pivot joint on the front bearing plate is situated below said line while the inner lever pivot joint on the front bearing plate is situated below said line of the bend-undeformed ski and above said line of the bend-deformed ski.
  • the inner lever pivot joint and the outer lever pivot joint on the rear positioning plate are situated on the line which extends at least approximately in the longitudinal direction of the ski, the outer lever pivot joint on the rear bearing plate is situated below said line while the inner lever pivot joint on the rear bearing plate is situated below said line of the bend-undeformed ski and above said line of the bend-deformed ski.
  • each lever is designed either as a suitably rigid uniform lever or it consists of at least two rigidly connected blades or levers, which are and at the same time pivotable around the same axes.
  • said one-piece or multi-piece base plate of the platform according to the invention preferentially consists of at least one longitudinal guide in whose area the front positioning plate and the rear positioning plate, which can be moved along said guide and then fixed to each selected position, are fixed to the base plate.
  • a series of suitably placed holes in the base plate is preferentially intended which are adjusted to receive suitable screws to fix each positioning plate.
  • the present invention refers to a platform for mounting of a ski binding onto a ski or snowboard, wherein such platform is suitable for attachment onto a top surface of each disposable ski or snowboard, which is faced away from the ground, wherein said platform consists of a front bearing plate and a rear bearing plate, so that said front bearing plate is adapted to receive a front part of a ski binding for attachment of a ski shoe onto said ski or snowboard, and said rear bearing plate is analogously adapted to receive a rear part of a ski binding for attachment of a ski shoe onto said ski or snowboard.
  • Each of said bearing plates is furnished with a central area, an outer terminal area as well as an inner terminal area, wherein said inner terminal areas are arranged at smaller distance apart of each other, while the outer terminal areas are arranged at larger distance apart from each other.
  • At least one connecting member is pivotally around a transversal axis linked to each of said bearing plate in the outer terminal area thereof, and is optionally in the area of at least one bore attachable to the top surface of the ski or snowboard.
  • the platform according to the invention is characterized in that a pivot lever, which is pivotable around the transversal axis, is pivotally attached to the central area of said front bearing plate and is on its end portion furnished with an outer eye and an inner eye, and that analogously a pivot lever, which is rotatable around the transversal axis, is pivotally attached to the central area of said rear bearing plate and is on its end portion furnished with an outer eye and an inner eye.
  • Said front pivot lever is by means of its outer eye pivotally connected to the front bearing plate, while said rear pivot lever is by means of its outer eye pivotally connected to the rear bearing plate, and the front connecting member, which is attachable to the top surface of the ski or snowboard, is by means of its outer eye pivotally connected to the inner eye of the front pivot lever, while the rear connecting member, which is attachable to the top surface of the ski or snowboard, is by means of its outer eye pivotally connected to the inner eye of the rear pivot lever.
  • Said platform is furthermore furnished with an intermediate connecting member, which comprises a front eye, which is arranged on the side of the front connecting member, as well as a rear eye, which is arranged on the side of the rear connecting member, so that said front eye of the intermediate connecting member is pivotally connected to the inner eye of the front connecting member and said rear eye of the intermediate connecting member is pivotally connected to the inner eye of the rear connecting member, wherein said pivotal connection of the outer eye of the front pivot lever with the front bearing plate enables pivoting around said transversal axis, and said pivotal connection of the outer eye of the rear pivot lever with the rear bearing plate, enables pivoting around said transversal axis.
  • an intermediate connecting member which comprises a front eye, which is arranged on the side of the front connecting member, as well as a rear eye, which is arranged on the side of the rear connecting member, so that said front eye of the intermediate connecting member is pivotally connected to the inner eye of the front connecting member and said rear eye of the intermediate connecting member is pivotally connected to the inner eye of
  • pivotal connection between said inner eye of the front pivot lever and the outer eye of the front connecting member enables pivoting around a transversal axis
  • pivotal connection between said inner eye of the rear pivot lever and the outer eye of the rear connecting member enables pivoting around a transversal axis
  • Said transversal axis are arranged at a distance apart from the bottom surface of the front bearing plate, or the rear bearing plate respectively, which is enlarged for a predetermined distance, and consequently, the front and rear connecting member are on the front and rear pivot lever embedded eccentrically with regard to embedding of each pivot lever on the front and rear bearing plate, and said front and rear bearing plate are arranged in mutual alignment at certain distance apart from each other, and are moreover pushed apart from each other by means of at least one spring, which is embedded within corresponding guides on the front and rear bearing plate.
  • Such platform is furthermore characterized in that, in its loaded state the front and rear pivot lever and also the front and rear connecting member, which are attachable to a ski or a snowboard, and the intermediate connecting member are coplanar with respect to the bottom surfaces of the front and rear bearing plate, which are faced towards the ski or snowboard, while in its unloaded state said connecting members and said intermediate connecting member are spaced apart from the plane defined by the bottom surfaces of the bearing plates, by which the pivot levers are correspondingly pivoted around their transversal axis.
  • said front connecting member is attached to the top surface of the ski or snowboard by means of a screw
  • said rear connecting member is attached to the top surface of the ski or snowboard by means of a screw
  • each spring is a compression helical spring, which extends along said bearing plates and is with each of its end portions inserted into a guide on the front bearing plate and into a guide on the rear bearing plate of the platform.
  • Each desired tension of said spring is adjusted by means of a regulating screw, which extends through each neighboring guides on said bearing plates and also through said spring as such.
  • said spring intended for pushing the bearing plates apart from each other is a tubular spring and consists of rubber, and is moreover arranged transversally and embedded within corresponding guides. Also in such case each desired tension of said spring is adjusted by means of a regulating screw, which extends there-through.
  • Platform according to Fig. 1 - 13 is suitable for attachment onto a top surface of each disposable ski or snowboard, which is faced away from the ground.
  • the basic concept of a platform intended for mounting onto a ski substantially corresponds to a platform intended for mounting onto a snowboard, however a platform used on a ski is usually narrower than the platform used on a snowboard, since a ski is usually narrower than a snowboard.
  • such platform consists of a front bearing plate 1 and a rear bearing plate 2, which are on the one hand mutually aligned along the ski or snowboard and spaced apart from each other, and on the other hand pivotally connected both to the ski or snowboard and also with each other in a manner, which will be later-on described in some more detail.
  • Said front bearing plate 1 is adapted to receive a front part of a not shown ski binding for attachment of a ski shoe onto said ski or snowboard
  • said rear bearing plate 2 is analogously adapted to receive a rear part of said ski binding for attachment of a ski shoe onto said ski or snowboard.
  • threaded bores 19, 29 can optionally be prepared on said parts 1, 2 of the platform.
  • Each of said bearing plates 1, 2 is furnished with a central area 10, 20, an outer terminal area 11, 21 as well as an inner terminal area 12, 22, wherein said inner terminal areas 12, 2) are arranged at smaller distance apart of each other, while the outer terminal areas 11, 21 are arranged at larger distance apart from each other.
  • At least one connecting member 13, 23 is pivotally around the transversal axis 130, 230 linked to each of said bearing plates 1, 2 in the outer terminal area 11, 21 thereof, and is optionally in the area of at least one bore 131, 231 attachable to the top surface of the ski or snowboard.
  • Said front pivot lever 14 is by means of its outer eye 141 pivotally connected to the front bearing plate 1, while said rear pivot lever 24 is by means of its outer eye 241 pivotally connected to the rear bearing plate 2.
  • Said platform is furthermore furnished with an intermediate connecting member 16, which comprises a front eye 161, which is arranged on the side of the front connecting member 15, as well as a rear eye 162, which is arranged on the side of the rear connecting member 55, so that said front eye 161 of the intermediate connecting member 16 is pivotally connected to the inner eye 152 of the front connecting member 15 and said rear eye 162 of the intermediate connecting member 16 is pivotally connected to the inner eye 252 of the rear connecting member 25.
  • an intermediate connecting member 16 which comprises a front eye 161, which is arranged on the side of the front connecting member 15, as well as a rear eye 162, which is arranged on the side of the rear connecting member 55, so that said front eye 161 of the intermediate connecting member 16 is pivotally connected to the inner eye 152 of the front connecting member 15 and said rear eye 162 of the intermediate connecting member 16 is pivotally connected to the inner eye 252 of the rear connecting member 25.
  • the pivotal connection of the outer eye 141 of the front pivot lever 14 with the front bearing plate 1 enables pivoting around said transversal axis 100 and said pivotal connection of the outer eye 241 of the rear pivot lever 24 with the rear bearing plate 1 enables pivoting around said transversal axis 200.
  • the pivotal connection between said inner eye 142 of the front pivot lever 14 and the outer eye 151 of the front connecting member 15 enables pivoting around a transversal axis 140
  • the pivotal connection between said inner eye 242 of the rear pivot lever 24 and the outer eye 251 of the rear connecting member 25 enables pivoting around a transversal axis 240.
  • said transversal axis 140, 240 are arranged at a distance apart from the bottom surface 1', 2' of the front bearing plate 1, or the rear bearing plate 2 respectively, which is enlarged for a predetermined distance, which is in fig. 8 marked as ⁇ . Consequently, the front and rear connecting member 15, 25 are on the front and rear pivot lever 14, 24 embedded eccentrically with regard to embedding of each pivot lever 14, 24 on the front and rear bearing plate 1, 2.
  • Figs 8 and 9 and also 2 and 7, the platform is presented in its loaded state, in which the front and rear pivot lever 14, 24 and also the front and rear connecting member 15, 25, which are attachable to a ski or a snowboard, as well as the intermediate connecting member 16, are coplanar with respect to the bottom surfaces 1', 2' of the front and rear bearing plate 1, 2, which are faced towards the ski or snowboard.
  • Platform is in its unloaded i.e. released state presented in Figs 10 and 11 .
  • said connecting members 15, 25 and said intermediate connecting member 16 are spaced apart from the plane defined by the bottom surfaces 1', 2' of the bearing plates 1, 2, by which the pivot levers 14, 24 are correspondingly pivoted around their transversal axis 100, 200.
  • the front connecting member 15 in connection with the front pivot lever 14 and/or the rear connecting member 25 in connection with the rear pivot lever 24 must pass a dead point, which in the first stage gradually decelerates such movement, but in the subsequent stage after passing said dead point said movement is accelerated.
  • said front and rear bearing plate 1, 2 are arranged in mutual alignment at certain distance apart from each other, and are moreover pushed apart from each other by means of at least one spring 17, 17', which is embedded within corresponding guides 18, 28; 18', 28' on the front and rear bearing plate 1, 2.
  • said spring 17, 17' is a compression helical spring, which extends along said bearing plates 1, 2 and is with each of its end portions inserted into a guide 18, 18' on the front bearing plate 1 and into a guide 28, 28' on the rear bearing plate 2 of the platform.
  • Each desired tension of said spring 17, 17' is adjusted by means of a regulating screw 170, 170', which extends through each neighboring guides 18, 28; 18', 28' on said bearing plates 1, 2 and also through said spring 17, 17' as such.
  • said spring 17 is a tubular spring consisting of rubber, which is arranged transversally and embedded within corresponding guides 181, 182, and each desired tension of said spring 17, 17' can be adjusted by means of a regulating screw 170, which extends there-through.

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Claims (9)

  1. Plate-forme pour le montage d'une fixation de ski sur un ski ou un snowboard, dans laquelle ladite plate-forme est adaptée afin d'être fixée sur une surface supérieure de chaque ski ou snowboard disponible, qui est orientée dos au sol, dans laquelle ladite plate-forme est constituée d'une plaque de support avant (1) et d'une plaque de support arrière (2), de sorte que ladite plaque de support avant (1) soit apte à recevoir une partie avant d'une fixation de ski pour fixation d'une chaussure de ski sur ledit ski ou snowboard, et ladite plaque de support arrière (2) soit apte, de manière analogue, à recevoir une partie arrière d'une fixation de ski pour fixation d'une chaussure de ski sur ledit ski ou snowboard, et dans laquelle chacune desdites plaques de support (1, 2) est dotée d'une zone centrale (10, 20), d'une zone d'extrémité extérieure (11, 21) ainsi que d'une zone d'extrémité intérieure (12, 22), dans laquelle lesdites zones d'extrémité intérieures (12, 22) sont agencées à une distance inférieure l'une de l'autre, tandis que les zones d'extrémité extérieures (11, 21) sont agencées à une distance supérieure l'une de l'autre, et dans laquelle au moins un élément de raccordement (13, 23) pivote autour d'un axe transversal (130, 230) lié à chacune desdites plaques de support (1, 2), dans la zone d'extrémité extérieure (11, 21) correspondante, et pouvant être fixé éventuellement à la surface supérieure du ski ou du snowboard dans la zone d'au moins un alésage (131, 231), caractérisée en ce qu'un levier pivotant (14), qui peut pivoter autour de l'axe transversal (100), est fixé en pivotement à la zone centrale (10) de ladite plaque de support avant (1) et est doté, sur sa partie d'extrémité, d'un œillet extérieur (141) et d'un œillet intérieur (142), et en ce que, de même, un levier pivotant (24), qui peut tourner autour de l'axe transversal (200), est fixé en pivotement à la zone centrale (20) de ladite plaque de support arrière (2) et est doté, sur sa partie d'extrémité, d'un œillet extérieur (241) et d'un œillet intérieur (242), dans laquelle ledit levier pivotant avant (14) est raccordé en pivotement, au moyen de son œillet extérieur (141), à la plaque de support avant (1), tandis que ledit levier pivotant arrière (24) est raccordé en pivotement, au moyen de son œillet extérieur (241), à la plaque de support arrière (2), et dans laquelle un élément de raccordement avant (15), qui peut être fixé à la surface supérieure du ski ou du snowboard, est raccordé en pivotement, au moyen de son œillet extérieur (151), à l'œillet intérieur (142) du levier pivotant avant (14), tandis que l'élément de raccordement arrière (25), qui peut être fixé à la surface supérieure du ski ou du snowboard, est raccordé en pivotement, par le biais de son œillet extérieur (251), à l'œillet intérieur (242) du levier pivotant arrière (24), et dans laquelle ladite plate-forme est en outre dotée d'un élément de raccordement intermédiaire (16), qui comprend un œillet avant (161), qui est disposé sur le côté de l'élément de raccordement avant (15), ainsi qu'un œillet arrière (162), qui est agencé sur le côté de l'élément de raccordement arrière (25), de sorte que ledit œillet avant (161) de l'élément de raccordement intermédiaire (16) soit raccordé en pivotement à l'œillet intérieur (152) de l'élément de raccordement avant (15) et ledit œillet arrière (162) de l'élément de raccordement intermédiaire (16) soit raccordé en pivotement à l'œillet intérieur (252) de l'élément de raccordement arrière (25), et dans laquelle ledit raccordement pivotant de l'œillet extérieur (141) du levier pivotant avant (14) avec la plaque de support avant (1) permet le pivotement autour dudit axe transversal (100) et ledit raccordement pivotant de l'œillet extérieur (241) du levier pivotant arrière (24) avec la plaque de support arrière (2) permet le pivotement autour dudit axe transversal (200), tandis que d'autre part, le raccordement pivotant entre ledit œillet intérieur (142) du levier pivotant avant (14) et l'œillet extérieur (151) de l'élément de raccordement avant (15) permet le pivotement autour d'un axe transversal (140) et le raccordement pivotant entre ledit œillet intérieur (242) du levier pivotant arrière (24) et l'œillet extérieur (251) de l'élément de raccordement arrière (25) permet le pivotement autour d'un axe transversal (240), dans laquelle lesdits axes transversaux (140, 240) sont agencés à une distance de la surface inférieure (1', 2') de la plaque de support avant (1), ou de la plaque de support arrière (2) respectivement, qui est agrandie sur une distance prédéterminée (Δ), et par conséquent, les éléments de raccordement avant et arrière (15, 24) sont sur les leviers pivotants avant et arrière (14, 24) intégrés de manière excentrique relativement à l'intégration de chaque levier pivotant (14, 24) sur les plaques de support avant et arrière (1, 2), et dans laquelle lesdites plaques de support avant et arrière (1, 2) sont agencées en alignement réciproque à une certaine distance l'une de l'autre, et sont en outre poussées en éloignement l'une de l'autre au moyen d'au moins un ressort (17, 17'), qui est intégré dans des guides correspondants (18, 28 ; 180, 28') sur les plaques de support avant et arrière (1, 2).
  2. Plate-forme selon la revendication 1, caractérisée en ce que, dans leur état chargé, les leviers pivotant avant et arrière (14, 24) et également les éléments de raccordement avant et arrière (15, 25), qui peuvent être fixés à un ski ou à un snowboard, et l'élément de raccordement intermédiaire (16) sont coplanaires par rapport aux surfaces inférieures (1', 2') des plaques de support avant et arrière (1, 2), qui sont orientées face au ski ou au snowboard.
  3. Plate-forme selon la revendication 1, caractérisée en ce que, dans leur état déchargé, lesdits éléments de raccordement (15, 25) et ledit élément de raccordement intermédiaire (16) sont espacés du plan défini par les surfaces inférieures (1', 2') des plaques de support (1, 2), par lesquelles les leviers pivotants (14, 24) pivotent de manière correspondante autour de leur axe transversal (100, 200).
  4. Plate-forme selon l'une quelconque des revendications 1 à 3, caractérisée en ce que ledit élément de raccordement avant (15) est fixé à la surface supérieure du ski ou du snowboard au moyen d'une vis (155).
  5. Plate-forme selon l'une quelconque des revendications 1 à 4, caractérisée en ce que ledit élément de raccordement arrière (25) est fixé à la surface supérieure du ski ou du snowboard au moyen d'une vis (255).
  6. Plate-forme selon l'une quelconque des revendications 1 à 5, caractérisée en ce que chaque ressort (17, 17') est un ressort hélicoïdal de compression, qui s'étend le long desdites plaques de support (1, 2) et est, avec chacune de ses parties d'extrémité, inséré dans un guide (18, 18') sur la plaque de support avant (1) et dans un guide (28, 28') sur la plaque de support arrière (2) de la plate-forme.
  7. Plate-forme selon la revendication 6, caractérisée en ce que chaque tension souhaitée dudit ressort (17, 17') est ajustée au moyen d'une vis de réglage (170, 170'), qui s'étend à travers chaque guide voisin (18, 28 ; 18', 28') sur lesdites plaques de support (1, 2) et également à travers ledit ressort (17, 17') en tant que tel.
  8. Plate-forme selon l'une quelconque des revendications 1 à 5, caractérisée en ce que ledit ressort (17) est un ressort tubulaire constitué de caoutchouc, qui est agencé de manière longitudinale et intégré dans des guides correspondants (181, 182).
  9. Plate-forme selon la revendication 8, caractérisée en ce que chaque tension souhaitée dudit ressort (17, 17') est ajustée au moyen d'une vis de réglage (170) s'étendant à travers lui.
EP18721511.6A 2017-03-17 2018-03-14 Plate-forme pour le montage d'une fixation de ski sur un ski ou un snowboard Active EP3595784B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
SI201700084A SI25390B (sl) 2017-03-17 2017-03-17 Platforma za pritrditev smučarske vezi na smučko ali snežno desko
PCT/SI2018/000005 WO2018169494A1 (fr) 2017-03-17 2018-03-14 Plate-forme pour le montage d'une fixation de ski sur un ski ou une planche à neige

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EP3595784A1 EP3595784A1 (fr) 2020-01-22
EP3595784B1 true EP3595784B1 (fr) 2021-06-23

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Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2786403B1 (fr) * 1998-11-27 2001-02-16 Salomon Sa Ski equipe d'un dispositif interface prevu pour supporter des elements de retenue de la chaussure
US6513826B1 (en) * 1998-12-02 2003-02-04 Andreas Hangl Device for connecting a snow glider to the boot of a person using a snow glider
DE602007003522D1 (de) * 2006-07-17 2010-01-14 Matteo Belfrond Bindungsplatte für Skibindungen zum Ermöglichen der Durchbiegung des Skis
SI22740A (sl) * 2008-03-31 2009-10-31 Alu-B D.O.O. Platforma za pritrditev smučarske vezi na smučko

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Publication number Publication date
WO2018169494A1 (fr) 2018-09-20
SI25390B (sl) 2021-11-30
EP3595784A1 (fr) 2020-01-22
SI25390A (sl) 2018-09-28

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