EP1277500B1 - Trägerplatte und Gleitbrett mit solch einer Trägerplatte - Google Patents

Trägerplatte und Gleitbrett mit solch einer Trägerplatte Download PDF

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Publication number
EP1277500B1
EP1277500B1 EP02356140A EP02356140A EP1277500B1 EP 1277500 B1 EP1277500 B1 EP 1277500B1 EP 02356140 A EP02356140 A EP 02356140A EP 02356140 A EP02356140 A EP 02356140A EP 1277500 B1 EP1277500 B1 EP 1277500B1
Authority
EP
European Patent Office
Prior art keywords
platform
board
longitudinal parts
ski
longitudinal
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.)
Expired - Lifetime
Application number
EP02356140A
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English (en)
French (fr)
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EP1277500A1 (de
Inventor
Jérôme Noviant
Denis Redor
Jean-Christophe Godde
Johan Vailli
Alain Zanco
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.)
Skis Rossignol SA
Original Assignee
Skis Rossignol SA
Rossignol SA
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Priority claimed from FR0109462A external-priority patent/FR2827184B1/fr
Priority claimed from FR0113779A external-priority patent/FR2831453B3/fr
Application filed by Skis Rossignol SA, Rossignol SA filed Critical Skis Rossignol SA
Publication of EP1277500A1 publication Critical patent/EP1277500A1/de
Application granted granted Critical
Publication of EP1277500B1 publication Critical patent/EP1277500B1/de
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Classifications

    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63CSKATES; SKIS; ROLLER SKATES; DESIGN OR LAYOUT OF COURTS, RINKS OR THE LIKE
    • A63C9/00Ski bindings
    • A63C9/003Non-swivel sole plate fixed on the ski

Definitions

  • the present invention relates to a platform for raising the attachments of a shoe of a user of a board for gliding on snow.
  • the present invention also relates to a board for gliding on snow, such as a ski, a monoski or a surf, equipped with a platform for raising the fastenings of a shoe.
  • a platform of elevation of the bindings is reported in the skid zone of a gliding board, at its upper surface.
  • the platform is fixed to the board either directly by screws to obtain a rigid connection, or by means of resilient return means in the form, for example, of a layer of a material having properties of amortization.
  • EP-1.023.926 a platform in the form of two central support elements, on which are placed cantilever two separate longitudinal uprights. At each of the two ends of the two longitudinal uprights are screwed two rigid plates connecting the two uprights in pairs.
  • the object of the invention is to provide a board for gliding on snow with a platform that is lighter thanks to a choice of shape, and that allows in addition to separate left and right supports, to transmit the applied efforts by the user on the board and the forces generated more directly at the left edge or the right edge.
  • the platform of the invention also allows to give the gliding board a new aesthetic, very slender, which can allow to leave visible the protective layer and decoration of the gliding board.
  • a raising platform is intended to be mounted on the upper surface of a snow-slide board for receiving and raising fasteners securing a shoe of a user to the snow-sliding board.
  • the raising platform is characterized in that it is divided into two longitudinal parts.
  • At least one of the two longitudinal portions may comprise at least one recess.
  • This or these recesses will be located at its contact surface with the upper surface of the snow sliding board.
  • This or these recesses can be filled with one or more materials having elasticity and damping properties.
  • a spacing may be provided between the two longitudinal parts. This spacing can be left free. This spacing can also be filled by a convex zone of the snow sliding board, protruding from the upper surface of the upper layer of protection and decoration of the snow gliding board. This spacing may also be filled by a material having elastic properties.
  • At least one of the two longitudinal parts of the platform may itself be divided transversely into at least two transverse pieces.
  • the space or spaces between at least one of the cross pieces can be filled with one or more materials having elastic properties.
  • the two longitudinal portions may advantageously be in a fourth embodiment secured to a snow sliding board which may have a thickness at the front portion of the mounting area of the platform greater than the thickness at level of the rear portion of the deck mounting area.
  • At least one of the two longitudinal parts of the platform can advantageously include two different anchoring zones.
  • At least one first anchoring zone may allow a fixed positioning relative to the snow sliding board.
  • At least one second anchoring zone, different from the first zone, may allow positioning with sliding relative to the snow sliding board.
  • At least one of the two longitudinal parts of the platform may have a tubular structure.
  • This tubular structure may be provided over part or all of its length and over part or all of its width.
  • At least one of the two longitudinal portions may extend laterally by at least one lateral portion.
  • the lateral portion or portions may descend on each of the two lateral sides toward the edges of the snowboard. And the two lateral portions may possibly be supported on the snow sliding board above the side edges.
  • the lower edge of the lateral portion or portions of at least one of the two longitudinal portions may have, in a longitudinal plane, a non-zero angle of inclination with respect to the the snowboard on snow.
  • At least one of the two longitudinal parts being able to extend laterally by a lateral portion positioned at the zone of implantation of the abutment before the binding of the boot on the ski, or with at least one of the two longitudinal portions being able to extend laterally by a lateral portion positioned at the level of the implantation zone of the rear heel piece of the binding of the boot on the ski.
  • At least one of the two longitudinal portions may extend very preferably laterally by a lateral portion positioned at the zone of implantation of the abutment before the attachment of the boot to the ski and by a lateral portion positioned at the level of the implantation area of the heel piece behind the binding of the boot on the ski.
  • the platform may have asymmetry between the two longitudinal parts.
  • the platform may have an asymmetry in length between the two longitudinal parts.
  • the platform may have an asymmetry of width between the two longitudinal parts.
  • the platform may have an asymmetry of the mounting means between the two longitudinal parts.
  • the platform may have asymmetry in number of cross pieces between the two longitudinal parts.
  • the platform may have structural and material asymmetry between the two longitudinal parts.
  • the asymmetries mentioned above are intended to improve the behavior of the two skis in bends, the rider being in support on his two skis.
  • the asymmetries mentioned above are intended to offer two types of behavior, if the skier puts his pair of ski left-right, or vice versa right-left. This allows the average skier to benefit from two pairs of skis in one, that is to say a ski more specifically dedicated to big curves and a ski specifically dedicated to short turns.
  • a snow sliding board is equipped with a platform as described above.
  • the gliding board may have on at least one of the two sides a lateral notch located above the edges. This notch may allow positioning of the two respective lateral portions of at least one of the two longitudinal parts of the platform. More preferably, the board may have on at least one of the two sides two lateral notches located above the edges. These two indentations may allow positioning of the two respective lateral portions of at least one of the two longitudinal parts of the platform.
  • the upper surface of the gliding board can come substantially flush with the rigid upper face of at least one of the two longitudinal parts of the platform.
  • the upper surface of the snow-sliding board may comprise one or two ribs separated by a central hollow, the one or both ribs being in the forward and / or rearward extension of the one or both longitudinal parts of the platform.
  • the gliding board may advantageously comprise a height recess between the front portion of the deck mounting area and the rear portion of the deck mounting area. In this way, the thickness of the snow gliding board in the front portion of the deck mounting area will be greater than the thickness of the snow board in the rear portion of the snowboard area. mounting of the platform.
  • a snowboarding board of the conventional type such as an alpine ski (1), comprises a front zone comprising a spatula, a median zone called a skate zone (2). , a rear zone, an upper surface (3) formed by an upper layer of protection and decoration (3a), and a gliding sole (4).
  • a platform (6) for raising the elements of the binding. Unlike the state of the art, this platform does not need supports or holding parts.
  • the elements of the binding that is to say the front stop (7) and the heel (8) are screwed on the platform elevation (6).
  • the reference sign (A) designates the front part of the platform (6) oriented towards the spatula, that is to say the part or zone to which the front stop is more particularly implanted. 7) of the binding of the boot on the ski (1).
  • the platform (6) is divided in two along the median longitudinal axis of the ski (1), and thus comprises two rigid longitudinal portions (9 and 11).
  • the possibility of having two distinct longitudinal portions (9 and 11) will make that the support exerted by the skier on one or the other of the two longitudinal parts (9 or 11) will be transmitted directly to the edge (31). ) which is associated with it and located just below, when in turn the skier rocks his ski on this edge (31).
  • the platform (61) comprises two rigid and distinct longitudinal portions (9 and 111). However, this platform (61) has a shape asymmetry between the two longitudinal portions (9 and 111).
  • the first longitudinal portion (9) has a length corresponding to the length of the two longitudinal portions (9 and 11) of the first embodiment.
  • the second longitudinal portion (111) has a length less than that of the first longitudinal portion (9).
  • the first longitudinal portion (9), the longest, is preferably on the side of the inner edge (31) of the ski (1).
  • the second longitudinal portion (111), the shortest, is preferably mounted on the side of the outer edge (31) of the ski (1). Both skis, internal and external to the turn, bend differently and thus achieve different turning radii.
  • FIG. 4A The transmission of forces is more particularly represented in FIG. 4A, in which the skier, being in abutment on the left edge (31), generates the force (FL) with his force transmission line (LL) (in dashed lines) leaving the first longitudinal portion (9) and joining the left edge (31).
  • FIG. 4B the skier, bearing on the right edge (31), generates the force (FR) with his force transmission line (LR) (in dotted lines) starting from the second longitudinal portion (11) joining the right edge (31).
  • the platform (62) comprises two rigid and distinct longitudinal portions (92 and 112). However, this platform (62) has a shape asymmetry between the two longitudinal portions (92 and 112).
  • the first longitudinal portion (92) has a width greater than that of the two longitudinal portions (9 and 11) of the first embodiment.
  • the second longitudinal portion (112) has a width smaller than that of the two longitudinal portions (9 and 11) of the first embodiment.
  • the second longitudinal portion (112) is preferably mounted on the side of the outer edge (31) of the ski (1). This makes it possible to obtain the inner ski at the turn different from the outside ski at the turn and thus to have different turning radii.
  • each of these two longitudinal portions is secured directly on the upper surface (3) of the ski (1).
  • Screws or other securing means pass through through holes formed through each of the two longitudinal portions (9 and 11). The screws are perpendicular to the plane constituted by the upper surface (3) of the ski (1).
  • Each of the two longitudinal portions (9 and 11) comprises four different anchoring zones (see Figure 6).
  • Two first anchoring zones or securing means allow a fixed positioning relative to the ski.
  • These first two anchoring zones are constituted by round holes (12). With these round holes (12), sized and having a diameter substantially equal to the diameter of the fixing screw, no movement of the two longitudinal portions (9 and 11) relative to the rest of the ski (1) is possible. Two round holes (12) have thus been provided towards the center of each of the two longitudinal portions (9 and 11).
  • Two second anchoring zones or securing means allow positioning with sliding relative to the ski (1).
  • These two second anchoring zones consist of elongated holes (13).
  • elongate holes (13) having a width substantially equal to the diameter of the fixing screw, and dimensioned in length to allow a movement of the two longitudinal portions (9 and 11), only a longitudinal sliding of the two parts longitudinal (9 and 11) compared to the rest of the ski is possible.
  • Two elongated holes (13) have thus been provided towards the two front and rear ends of each of the two longitudinal portions (9 and 11).
  • the two fixed anchoring zones (12) add stiffness to the stiffness of the ski (1).
  • the ski (1) is thus free to deform without being subjected to constraints of the platform. The same platform thus allows to obtain different behaviors, by a simple adjustment made by the end user.
  • the platform (63) comprises two rigid and distinct longitudinal portions (9 and 113). However, this platform (63) has an anchoring asymmetry or an asymmetry of the fastening means between the two longitudinal portions (9 and 113).
  • the first longitudinal portion (9) has the two anchoring zones (12 and 13) corresponding to the two anchoring zones (12 and 13) described above.
  • the second longitudinal portion (113) has no anchoring zones, or these are not used.
  • This second longitudinal portion (113) is glued to the ski (1).
  • each of the two longitudinal portions (9 and 11) comprises three recesses (14, 16 and 17) located at its contact face with the upper surface (3) of the ski ( 1). Between the recesses (14, 16 and 17), the two longitudinal portions (9 and 11) comprise rigid sectors connected to the rigid upper face (20) of each of the two longitudinal portions (9 and 11).
  • the recess (14) is located at the front of the two longitudinal parts (9 and 11) of the platform.
  • the recess (16) is located at the center of the two longitudinal parts (9 and 11) of the platform.
  • the recess (17) is located at the rear of the two longitudinal parts (9 and 11) of the platform.
  • the shape of the central recess (16) is also arranged to substantially notch the rigid upper face (20) of the two longitudinal portions (9 and 11).
  • the recesses (14, 16 and 17) may be filled with one or more materials having elasticity and damping properties.
  • Elastomers such as natural rubbers, polychloroprenes, butyl rubbers, EPDM, will be suitable materials for these uses.
  • the platform comprises two rigid and distinct longitudinal portions.
  • this platform has a structural asymmetry between the two longitudinal parts.
  • Two different materials can be used for each of the two longitudinal parts. Different stiffnesses will be considered with a first longitudinal portion made by way of example, polyamide and a second longitudinal portion made of aluminum.
  • one of the longitudinal parts with its recesses may have damping properties, while the other longitudinal parts with its recesses may have rebounding properties.
  • each of the two longitudinal portions (9 and 11) of the platform (64) is itself divided transversely into two transverse parts (18 and 19). Each of these transverse pieces (18 and 19) is separated from one another, with a certain distance between them.
  • the spaces between the transverse pieces (18 and 19) are filled with one or more materials (21) having elasticity and / or damping properties. This or these materials (21) physically secures the transverse parts (18 and 19), while allowing them freedom of movement.
  • the platform (65) comprises two rigid and distinct longitudinal portions. However, this platform (65) has an asymmetry in the number of component parts between the two longitudinal parts.
  • the first longitudinal portion (9) has the same dimensional and structural characteristics as the longitudinal portions (9 and 11) of the first embodiment.
  • the second longitudinal portion is itself divided into two transverse pieces (181 and 191). The two transverse pieces (181 and 191) of this second longitudinal portion are preferably mounted on the side of the outer edge (31) of the ski (1).
  • Each of these transverse pieces (181 and 191) is separated from one another, with a certain distance between them.
  • the spaces between the crosspieces (181 and 191) can be filled with one or more materials having elasticity and / or damping properties. This or these materials can physically secure the transverse parts (181 and 191), while allowing freedom of movement.
  • the outer edge will thus have less stiffness relative to the inner edge, the effects being substantially similar to those described above for the second embodiment.
  • the two longitudinal portions (9 and 11) are of the type described above in the first embodiment.
  • the ski (22) on which they are fixed has a step of height in the middle of its pad zone (23).
  • the ski (22) will have in its front pad area (23) a thickness greater than the thickness of the rear pad area (24).
  • the two longitudinal parts (9 and 11) of the platform (66) can be mounted at the rear cantilever, or they can rest at the back on a thickness of a material (26) having elasticity properties.
  • the spacing (34) may also be filled by one or more materials, in the form of an element reported, transparent or optionally having a color, and preferably a material with low flexural stiffness.
  • the spacing (34) is filled by a convex zone (36) of the ski.
  • This convex zone (36) projects between the two longitudinal portions (9 and 11) with respect to the upper surface (3) of the upper protective and decorative layer (3a). This makes it possible, for example, to avoid jams of snow and ice in the zone of the spacing (34), while maintaining the mechanical decoupling of the two longitudinal portions (9 and 11).
  • each of the two longitudinal portions (37 and 38) extends laterally by a lateral portion or an appendage respectively (39 and 41).
  • the two lateral portions (39 and 41) descend on each of the two lateral sides of the ski towards the edges (31).
  • the ski comprises laterally two recessed zones, that is to say two lateral indentations (44) situated above the edges (33), having a shape similar to and complementary to the two lateral portions (39 and 41), and which allow positioning of these two lateral portions (39 and 41) of the two longitudinal portions (37 and 38).
  • the two side portions (39 and 41) are more directly supported by their flange or lower edge (43) on the ski, above the side edges (33).
  • the lower rim (43) is only located in a portion (41) of the lateral rim of the two longitudinal portions (38), extending downward towards the edges (31).
  • the flanges (43) of the two side portions (39 and 41) may be parallel to the sliding surface (4) of the ski.
  • the flanges (43) of the two lateral portions (39 and 41) may also not be parallel to the sliding surface (4) of the ski, and in this case, a lower flange (43) of the two longitudinal portions (38) n is not parallel to the surface of the gliding sole (4).
  • the lower rim (43) then has, in a longitudinal plane, a non-zero angle of inclination ( ⁇ ) with respect to the surface of the gliding sole (4) or with respect to the upper surface (3) of the layer upper protection and decoration (3a) of the ski (1).
  • This angle ( ⁇ ) is between 1 and 20 °, and preferably between 2 and 5 °.
  • This lateral portion (29) is positioned substantially in the middle of the two longitudinal portions (28). This allows to transfer the right and left pulses given by the skier directly towards the edges (31) right and left of the ski.
  • each of the two longitudinal portions (38) comprises a lateral portion (41).
  • These two lateral portions (41) are more particularly positioned at the zone of implantation of the abutment before the attachment of the boot on the ski of each of the two longitudinal portions (38). This makes it possible to more efficiently transfer the pulses towards the front part of the right and left edges of the ski (31) given by the skier at the turn entrance.
  • each of the two longitudinal portions (38) comprises a lateral portion (41).
  • These two lateral portions (41) are more particularly positioned at the implantation zone of the rear heel of the binding of the boot on the ski of each of the two longitudinal portions (38). This makes it possible to more effectively transfer the pulses towards the rear part of the right and left edges of the ski (31) given by the skier at the end of the turn.
  • each of the two longitudinal portions (38) comprises two side portions (41a and 41b). These four lateral portions (41a and 41b) are more particularly positioned at the zones of implantation of the front stop and the heel piece of the shoe attachments on the ski of each of the two longitudinal portions (38). This makes it possible to transfer the pulses both forward and backwardly from the right and left edges (31), given by the skier at the entrance and exit of the turn.
  • each of the two longitudinal portions (38) comprises two lateral portions (41a and 41b) which are more particularly positioned at the implantation zones of the front stop and the rear heel of the bindings of the boot on the ski of each of the two longitudinal portions (38).
  • the upper surface (3) of the ski (1) comprises two ribs (27 and 28) separated by a central hollow (29). ).
  • the two ribs (27 and 28) are in the extension in the forward direction towards the spatula and towards the rear of each of the two longitudinal parts (18, 19 and 38) of the platform.
  • the upper surface (3) of the ski comes substantially flush with the rigid upper face (20) of the two longitudinal portions (37 and 38). ) of the platform.
  • FIG. 19 also shows a ski of the "Dualtec ®" type comprising two lateral partial edges (33), the upper surface (3) of the upper protective and decorative layer (3a) then forming a partial hull.
  • the platform can be mounted on all types of ski, “Dualtec ®” style skis, “rectangular section” skis and “shell structure” skis.

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  • Footwear And Its Accessory, Manufacturing Method And Apparatuses (AREA)
  • Vehicle Step Arrangements And Article Storage (AREA)
  • Casting Support Devices, Ladles, And Melt Control Thereby (AREA)
  • Pallets (AREA)

Claims (23)

  1. Erhöhungsplatte, die dazu bestimmt ist, auf der oberen Oberfläche (3) eines Schnee-Gleitbretts montiert zu werden und Bindungen (7,8) aufnehmen und erhöhen kann, welche einen Schuh eines Benutzers an dem Schnee-Gleitbrett (1) befestigen, dadurch gekennzeichnet, daß sie in zwei Längsteile (9,11) aufgeteilt ist.
  2. Platte nach Anspruch 1, dadurch gekennzeichnet, daß mindestens einer der Längsteile (9,11) mindestens eine Aushöhlung (14,16,17) aufweist, die im Bereich seiner Kontaktfläche mit der oberen Oberfläche (3) des Schnee-Gleitbretts angeordnet ist.
  3. Platte nach Anspruch 2, dadurch gekennzeichnet, daß die Aushöhlung(en) (14,16,17) durch ein oder mehrere Material(ien) gefüllt ist/sind, welche(s) Elastizitätseigenschaften und Dämpfungseigenschaften aufweist/aufweisen.
  4. Platte nach einem der vorangehenden Ansprüche, dadurch gekennzeichnet, daß ein Zwischenraum (34) zwischen den zwei voneinander getrennten Längsteilen (9,11) vorgesehen ist.
  5. Platte nach einem der vorangehenden Ansprüche, dadurch gekennzeichnet, daß mindestens einer der zwei Längsteile (9,11) der Platte (64) seinerseits in Querrichtung in mindestens zwei Querteile (18,19) aufgeteilt ist.
  6. Platte nach Anspruch 5, dadurch gekennzeichnet, daß der Zwischenraum oder die Zwischenräume, welche/r zwischen mindestens einem der voneinander getrennten Querteilen (18,19) angeordnet ist/sind, durch ein oder mehrere Material(ien) (21) aufgefüllt ist/sind, welche/s elastische und dämpfende Eigenschaften aufweist/aufweisen.
  7. Platte nach einem der vorangehenden Ansprüche, dadurch gekennzeichnet, daß sie eine erste Dicke im Bereich des vorderen Abschnitts (23) der Platte und eine zweite Dicke im Bereich des hinteren Abschnitts (24) der Platte aufweist.
  8. Platte nach einem der vorangehenden Ansprüche, dadurch gekennzeichnet, daß mindestens einer der zwei Längsteile (9,11) zwei Verankerungszonen (12,13) umfaßt, nämlich mindestens eine erste Verankerungszone (12), welche eine feste Anordnung in bezug auf das Schnee-Gleitbrett erlaubt, und mindestens eine zweite Verankerungszone (13), welche eine in bezug auf das Schnee-Gleitbrett verschiebbare Positionierung erlaubt.
  9. Platte nach einem der vorangehenden Ansprüche, dadurch gekennzeichnet, daß mindestens einer der zwei Längsteile eine röhrenartige Struktur über einen Teil oder die Gesamtheit seiner Länge und über einen Teil oder über die Gesamtheit seiner Breite aufweist.
  10. Platte nach einem der vorangehenden Ansprüche, dadurch gekennzeichnet, daß mindestens einer der zwei Längsteile (37,38) seitlich durch mindestens einen Seitenabschnitt (39,41) verlängert ist, der auf jeder der zwei seitlichen Seiten in Richtung der Kanten (31) des Schnee-Gleitbretts abwärts verläuft.
  11. Platte nach Anspruch 10, dadurch gekennzeichnet, daß der untere Rand (43) des oder der Seitenabschnitte (41) mindestens eines der zwei Längsteile (38) in einer Längsebene einen Neigungswinkel (α) ungleich Null in bezug auf den Gleitbelag (4) des Schnee-Gleitbretts aufweist.
  12. Platte nach Anspruch 10 oder 11, dadurch gekennzeichnet, daß mindestens eins der zwei Längsteile (37,38) seitlich durch einen Seitenabschnitt (39,41) verlängert ist, der im Bereich der Einsetzzone für den Vorderbacken der Bindung für den Schuh auf dem Ski angeordnet ist.
  13. Platte nach Anspruch 10 oder 11, dadurch gekennzeichnet, daß mindestens einer der zwei Längsteile (37,38) seitlich durch einen Seitenabschnitt (39,41) verlängert ist, der im Bereich der Einsetzzone des hinteren Fersenautomaten der Bindung für den Schuh auf dem Ski angeordnet ist.
  14. Platte nach Anspruch 10 oder 11, dadurch gekennzeichnet, daß mindestens einer der zwei Längsteile (37,38) seitlich durch einen Seitenabschnitt (41a) verlängert ist, der im Bereich der Einsetzzone für den Vorderbacken der Bindung des Schuhs auf dem Ski angeordnet ist, und durch einen Seitenabschnitt (41b), der im Bereich der Einsetzzone für den hinteren Fersenautomaten der Bindung des Schuhs auf dem Ski angeordnet ist.
  15. Platte nach einem der vorangehenden Ansprüche, dadurch gekennzeichnet, daß sie eine Asymmetrie zwischen den zwei Längsteilen aufweist.
  16. Platte nach Anspruch 15, dadurch gekennzeichnet, daß sie eine Längenasymmetrie zwischen den zwei Längsteilen (9,111) und/oder eine Breitenasymmetrie zwischen den zwei Längsteilen (92, 112) und/oder eine Asymmetrie der Montagemittel zwischen den zwei Längsteilen (9,113) und/oder eine Asymmetrie der Anzahl der Querteile zwischen den zwei Längsteilen (9,181,191) und/oder eine Asymmetrie der Struktur und der Materialien zwischen den zwei Längsteilen aufweist.
  17. Schnee-Gleitbrett, dadurch gekennzeichnet, daß es mit einer Platte (6) gemäß einem der vorangehenden Ansprüche ausgerüstet ist.
  18. Schnee-Gleitbrett nach Anspruch 17, dadurch gekennzeichnet, daß es an mindestens einer der zwei Seiten eine seitliche Aussparung (32,44) aufweist, die oberhalb der Seitenwangen (33) angeordnet ist und die Anordnung des jeweiligen Seitenabschnitts (39,41) mindestens eines der zwei Längsteile (37,38) der Platte erlaubt.
  19. Schnee-Gleitbrett nach Anspruch 17, dadurch gekennzeichnet, daß es zumindest auf einer der zwei Seiten zwei seitliche Aussparungen (44) aufweist, die oberhalb der Seitenwangen (33) angeordnet sind und eine Anordnung der zwei jeweiligen Seitenabschnitte (39,41) mindestens eines der zwei Längsteile (37,38) der Platte erlauben.
  20. Schnee-Gleitbrett nach einem der Ansprüche 17 bis 19, dadurch gekennzeichnet, daß seine obere Oberfläche (3) im wesentlichen mit der starren Oberseite (20) wenigstens einer der zwei Längsteile (37,38) der Platte fluchtet.
  21. Schnee-Gleitbrett nach einem der Ansprüche 17 bis 20, dadurch gekennzeichnet, daß seine obere Oberfläche (3) eine oder zwei Rippen (27,28) aufweist, die voneinander durch einen mittleren Hohlraum (29) getrennt sind, wobei die (zwei) Rippe(n) (27,28) in der Verlängerung nach vorne und/oder nach hinten des Längsteils oder der zwei Längsteile (18,19) der Platte ist/sind.
  22. Schnee-Gleitbrett nach einem der Ansprüche 17 bis 21, dadurch gekennzeichnet, daß es einen Höhenversatz zwischen dem vorderen Abschnitt (23) der Montagezone der Platte und dem hinteren Abschnitt (24) der Montagezone der Platte umfaßt, so daß die Dicke des Schnee-Gleitbretts in dem vorderen Abschnitt (23) der Montagezone der Platte größer als die Dicke des Schnee-Gleitbretts in dem hinteren Abschnitt (24) der Montagezone der Platte ist.
  23. Gleitbrett nach Anspruch 17, dadurch gekennzeichnet, daß der Zwischenraum (34) mit einer konvexen Zone (36) des Schnee-Gleitbretts ausgefüllt ist, die in bezug auf die obere Oberfläche (3) der oberen Schutz- und Dekorationsschicht (3a) des Schnee-Gleitbretts vorkragt, oder durch ein oder mehrere Material(ien) mit geringer Biegesteifigkeit ausgefüllt ist.
EP02356140A 2001-07-16 2002-07-10 Trägerplatte und Gleitbrett mit solch einer Trägerplatte Expired - Lifetime EP1277500B1 (de)

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
FR0109462 2001-07-16
FR0109462A FR2827184B1 (fr) 2001-07-16 2001-07-16 Plate-forme de rehaussement des fixations d'une chaussure, et planche de glisse sur neige equipee d'une telle plate-forme
FR0113779 2001-10-25
FR0113779A FR2831453B3 (fr) 2001-10-25 2001-10-25 Plate-forme de rehaussement des fixations d'une chaussure, et planche de glisse sur neige equipee d'une telle plate-forme

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EP1277500A1 EP1277500A1 (de) 2003-01-22
EP1277500B1 true EP1277500B1 (de) 2006-03-15

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FR2820983B1 (fr) 2001-02-20 2004-04-16 Rossignol Sa Planche de glisse
FR2820982B1 (fr) 2001-02-20 2003-03-28 Rossignol Sa Planche de glisse
FR2820984B1 (fr) * 2001-02-20 2003-06-06 Rossignol Sa Plateforme de rehaussement de la fixation d'une planche de glisse, et planche de glisse equipee d'une telle plateforme
EP1277500B1 (de) * 2001-07-16 2006-03-15 Skis Rossignol S.A. Trägerplatte und Gleitbrett mit solch einer Trägerplatte
FR2831829B1 (fr) * 2001-11-06 2003-12-19 Rossignol Sa Plate-forme de rehaussement des fixations d'une chaussure, et planche de glisse sur neige equipee d'une telle plate-forme
FR2838062B1 (fr) * 2002-04-03 2004-07-09 Salomon Sa Engin de glisse ou de roulage comprenant une planche
FR2841479B1 (fr) * 2002-06-26 2007-04-13 Salomon Sa Engin de glisse comprenant deux parois
FR2842745B1 (fr) * 2002-07-23 2004-08-27 Rossignol Sa Ensemble de planches de glisse sur neige et procede de fabrication
DE10254471A1 (de) * 2002-11-21 2004-06-03 Madsus A/S Ski mit Bindungs-Montagehilfe, Verfahren zur Herstellung eines solchen Ski sowie entsprechende Montagehilfe
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US7267346B2 (en) * 2004-01-28 2007-09-11 Zejdlik Donald A Snowboard accessory
DE102004050696A1 (de) * 2004-10-18 2006-04-20 Kneissl Holding Gmbh Vorrichtung zum Befestigen einer Skibindung auf einem Ski
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DE502005006970D1 (de) * 2005-01-10 2009-05-07 Rottefella As Ski oder dergleichen schneegleitgerät mit bindungs-montagehilfe
FR2881356B1 (fr) * 2005-01-31 2007-04-13 Salomon Sa Dispositif d'accueil d'un pied ou d'une chaussure sur un engin de sport
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Also Published As

Publication number Publication date
EP1277500A1 (de) 2003-01-22
US20030025299A1 (en) 2003-02-06
US6923464B2 (en) 2005-08-02
ATE320289T1 (de) 2006-04-15
DE60209868D1 (de) 2006-05-11
DE60209868T2 (de) 2006-10-19

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