EP2781242B1 - Schnittstellenplatte für Ski - Google Patents

Schnittstellenplatte für Ski Download PDF

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Publication number
EP2781242B1
EP2781242B1 EP14000995.2A EP14000995A EP2781242B1 EP 2781242 B1 EP2781242 B1 EP 2781242B1 EP 14000995 A EP14000995 A EP 14000995A EP 2781242 B1 EP2781242 B1 EP 2781242B1
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EP
European Patent Office
Prior art keywords
board
interface plate
force
slope
assembly
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.)
Not-in-force
Application number
EP14000995.2A
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English (en)
French (fr)
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EP2781242A1 (de
Inventor
Gilles Silva
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.)
Salomon SAS
Original Assignee
Salomon SAS
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
Application filed by Salomon SAS filed Critical Salomon SAS
Publication of EP2781242A1 publication Critical patent/EP2781242A1/de
Application granted granted Critical
Publication of EP2781242B1 publication Critical patent/EP2781242B1/de
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63CSKATES; SKIS; ROLLER SKATES; DESIGN OR LAYOUT OF COURTS, RINKS OR THE LIKE
    • A63C5/00Skis or snowboards
    • A63C5/003Structure, covering or decoration of the upper ski surface
    • 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 invention relates to the field of assemblies comprising a snow sliding board and an interface plate to partially ensure at least the retention of a shoe on the board.
  • Such sets are for example for cross-country skiing, downhill skiing, monoski, skwal or any other kind of ski, or even snowboarding (snowboarding).
  • assemblies comprising a gliding board, an interface intended to be disposed on an outer face of the board and to accommodate a device for retaining a shoe.
  • This type of assembly has the main advantage of allowing a final fixing of the interface plate on the board at the manufacturer while allowing a subsequent adjustment of the position of the retainer according in particular to the dimensions of the retainer.
  • the document FR 2,812,210 discloses a gliding board provided with a movable platform for raising shoe attachments which aims a direct transfer of forces between the foot of the user and the edge of the board. Such a solution is bulky and very heavy. On the other hand the construction of the ski is largely affected by the establishment of the cavity in the ski.
  • the document DE 103 03 056 describes a gliding board whose attachment mounting interface rests solely on lateral ribs placed at the edges. This solution allows the transfer of the weight of the skier to the edges of the ski. However, it is only valid in cases where interface and ski have substantially the same width.
  • the present invention aims to meet this need.
  • the assembly further comprises at least one force conversion device configured to convert said support force into a force having a component inclined relative to the perpendicular to the outer face so as to oppose a raising of the square to the outer face of the board.
  • the invention allows to create a torque opposing the recovery of the edges and their clearance from the ground.
  • the grip and responsiveness of the ski in the turn initiation phase are therefore considerably improved.
  • the force conversion device is configured to convert at least a portion of the abutment force applied to the interface plate into an effort whose point application on the board is, relative to the point of application of the bearing force, close to the edge in a lateral direction which is perpendicular to the transverse direction.
  • the force converting device is configured to convert at least a portion of the abutment force applied to the interface plate into a torque at the edge and tending to oppose a bearing of the square.
  • the invention thus tends to "tile" at least one edge when the skier bears on the conversion device, that is to say to deform the lateral end of the sole to bring the edge beyond a plane containing the sole at rest.
  • a gliding board comprising at least one edge and an outer face comprising a reception area for an interface plate intended to participate in the joining of a shoe to the board, the external face having at least two cavities extending in a longitudinal direction, cavities having a slope inclined in a transverse direction and housing at least partly a movable member.
  • the movable element is intended to receive a transverse force from the interface plate and is able to bear on the slope so as to slide on the slope while approaching the edge when the force exceeds a given threshold.
  • the movable element and the cavity are shaped so that the force having a perpendicular component is applied by the interface especially when a user is directly or indirectly supported on the latter.
  • the cavity is disposed to the right of the reception area.
  • the board comprises elastic means disposed between an abutment wall integral with the board and the movable member and configured to exert on the movable member a return force tending to slide the movable member on the slope so as to to move it away from the edge.
  • an interface plate comprises a fixed part configured to be secured to the board according to the invention and a movable part transversely to the fixed part.
  • the movable portion is configured to receive a user-generated bearing force and to drive the movable member into the cavity when the bearing force exceeds a given threshold.
  • the invention relates to an assembly comprising a interface plate and at least one board, preferably a board set according to the above paragraphs.
  • the force conversion device comprising the slope, the movable element, the movable portion of the interface plate and preferably the elastic element, makes it possible to bring the support force closer to the edge.
  • the support effort provided by the skier is therefore more directly transmitted to the edge which allows to improve the reactivity of the ski especially in turns.
  • the invention makes it possible to counter the natural bearing of the edge under the effect of the support of the skier.
  • the assembly 100 comprises a sliding board 1.
  • a board 1 sliding for skiing This example is not, however, limiting and the invention also covers boards 1 glide for snowboard for example.
  • the board 1 comprises a soleplate for sliding on the substrate typically snow.
  • the sole extends mainly in a longitudinal direction 101. It is delimited at each of its lateral ends by a square 3 which extends over all or part of the length of the board 1.
  • the lateral direction is a perpendicular direction 103 to the longitudinal direction 101 and corresponds to the width of the board 1.
  • the longitudinal and lateral directions are referenced 101 and 103 on the figures 1 and 2 .
  • the board 1 also has an outer face 2 opposite to the sole and comprising a receiving zone of an interface plate 10.
  • the interface plate 10 is shaped to be fixed on the board 1 and to receive restraining devices of a shoe.
  • an interface plate 10 receives a rear portion of a retainer for hooking a rear shoe portion.
  • the interface plate 10 also receives a front portion of a retainer for attaching a front portion of a shoe.
  • the interface plate 10 comprises a movable main part 14 which has a certain mobility with respect to the board and fixed parts 13.
  • the fixed parts 13 are configured to be made integral with the outer face 2 of the board 1. Typically, these fixed parts 13 have through holes 20 for screws 15 to be screwed into the board 1, the head of the screw 15 bearing on the fixed part 13. Once fixed to the board 1, the fixed part 13 then admits no play with respect to the board 1.
  • the transverse direction 102 is perpendicular to the longitudinal 101 and lateral directions referenced 103 in the figures.
  • the transverse direction 102 corresponds to the vertical.
  • the interface plate 10 also has at least one movable main portion 14 which is partially movable transversely.
  • the interface plate is secured to the board with the screws 15 ', without any play.
  • the movable part can move vertically relative to the gliding board.
  • the ends of the movable portion 14 transversely has abutment zones 141 complementary to abutment areas 131 carried by the fixed portion 13. These two abutment zones are shaped to limit the distance, in the transverse direction 102, of the moving part. 14 relative to the outer face 2 of the board 1.
  • the movable portion 14 has an upper face 11 for receiving a user-generated bearing force. More specifically, this support force generated by the user is transmitted by the latter to the shoe, then to the retainer, then to the movable portion 14 transversely of the interface plate 10. This support force is illustrated in figure 4 and is referenced F1.
  • the movable portion 14 also comprises a lower face 12 intended to transmit to the board 1 the support force applied to the upper face 11.
  • the lower face 12 In the central part, the lower face 12 is directly in contact with the gliding board while the at both ends this lower face 12 is slightly raised.
  • the figure 3 represents a section along the plane III-II of the figure 1 , that is to say at the level of the fixed parts 13 of the interface 10.
  • the distance between the outer face 2 of the board 1 and the abutment zone 131 of the fixed part 13 of the interface plate 10 on the one hand and the distance between the lower face 12 of the interface plate 10 and the the stop zone 141 of the interface plate 10 on the other hand are chosen so as to provide a clearance J1 allowing a vertical clearance of the movable portion 14 of the interface plate 10 relative to the board 1.
  • the clearance J1 is present between the outer face 2 of the plate 1 and the lower face 12 of the movable portion 14 of the interface plate 10 is illustrated in FIG. figure 3 .
  • the lower face 12 is held in contact with two elements mounted movable relative to the board 1.
  • These movable elements 31 are in contact with the interface plate 10 and with the slopes 6 integral with the 1.
  • these slopes 6 can be formed in the board 1, for example in its external face 2.
  • these slopes 6 are formed by an insert on the board 1 and made integral with the latter.
  • the slopes 6 are directly formed on the outer face 2 of the board 1.
  • the two movable elements 31, the slopes 6 are symmetrical to each other with respect to the median plane of the ski, it will be content in the remainder of this presentation to describe only one.
  • the slope 6 is inclined relative to the lateral direction 103. Thus, when the board is flat, the slope 6 is neither vertical nor horizontal. Since the bearing force F1 is generally in the transverse direction 102, this slope 6 is also inclined relative to the direction of the bearing force F1.
  • the slope 6 is inclined to approach the edge 3 of which it is the closest as the slope 6 away from the outer face 2 of the board 1. In other words, as the we approach the board 1, the slope 6 is close to the square 3 which it is closest.
  • the movable member 31 has an inclined face 32 corresponding to the inclination of the slope 6 carried by the board 1.
  • the transverse movement of the interface plate 10 is thus transformed into a sloping movement according to the slope 6.
  • the invention converts the transverse movement of the interface plate 10 in a movement having a transverse component and a lateral component directed towards the nearest square 3.
  • the sliding of the movable element 31 along the slope 6 is illustrated in FIG. figure 4 and referenced d.
  • the board 1 is also integral with a stop wall 7 shaped to stop the sliding of the movable member 31 under the effect of the support force F1.
  • this abutment wall 7 is formed in the outer face 2 of the board 1.
  • the outer face 2 provides at least one cavity 4 formed by the slope 6, the inclined wall and optionally a bottom wall connecting the slope 6 to the abutment wall 7.
  • the cavity 4 is formed by a piece fixed without degrees of freedom to the board 1.
  • the F1 support force applied by the user, referenced F1 in figure 4 is transmitted to the movable element 31, which then transmits it to the slope 6 and then to the abutment wall 7.
  • the latter being inclined with respect to the transverse direction 102, any effort that is applied to it therefore generates, at the level of the nearest square 3, a C pair referenced on the figure 4 , which tends to fold the edge 3 towards the inside of the board 1, that is to say to bring it beyond a plane containing the sole.
  • This couple thus tends to "tile” the sole at least at one of its lateral ends, that is to say to push more strongly the square 3 in the snow.
  • the grip of the edge 3 is then improved and the responsiveness in cornering is increased.
  • the invention makes it possible to move the point of application of the support force F1 into bringing it closer to the nearest square 3. The point of application of the force is then closer to the vertical passing by the edge 3. The invention thus makes it possible to limit or even eliminate the natural tendency to raise the edge 3.
  • the F1 support force exerted on the interface plate 10 is therefore converted into a force having a component F3 which is applied near the edge 3.
  • the force conversion means also comprise an elastic element 35 configured to slide the movable element 31 along the slope 6 by returning it to its rest position.
  • the position of rest is the position in which a support force of zero or less than a threshold value is applied to the interface plate 10.
  • this elastic element 35 is arranged in part at least between the abutment wall 7 and the movable member 31.
  • this elastic member 35 works in compression. Thus, it compresses when a compressive force greater than a threshold value is applied to the interface plate 10 and relaxes when this force drops.
  • the elastic member 35 is an elastomer piece.
  • the movable element 31 is illustrated in figure 3 in rest configuration.
  • a zero or low support force is applied to the interface plate 10. This is typically the case when the skier distributes his weight homogeneously on both his legs, and / or when he undergoes no vertical acceleration and / or when maintaining the soleplate flat.
  • the elastic element 35 pushes or keeps the movable element 31 upwards. This latter plate then the mobile part 14 of the interface plate 10 against the abutment zone carried by the fixed part 13 of the plate. interface 10.
  • the figure 4 illustrates the configuration where the user exerts on the interface plate 10 a support force greater than a predetermined threshold. This is typically the case when the skier transfers some of his weight on only one of his legs and / or when he experiences a vertical acceleration and / or when the sole is not flat on the snow.
  • the bearing force F1 makes the moving part 14 of the interface plate 10 descend downwards, which also pushes down the movable member 31 by sliding it along the slope 6 to compress the elastic member 35.
  • the game J2 remaining between the lower face 12 of the interface plate 10 and the outer face 2 of the board is significantly lower than the game J1 as illustrated on the figure 4 .
  • the movable element 31, via the elastic element 35, transmits a portion of the abutment force against the abutment wall 7 to improve the grip of the edge 3 closest to said abutment wall 7.
  • the dimensions, the stiffness and the elasticity of the elastic element 35 are chosen to define the threshold of support force from which the movable element 31 is moved downwards.
  • the elastic means also form damping means shaped at least to absorb at least a portion of the vibrations and shocks received by the ski. These vibrations and shocks tend to be transmitted to the shoe.
  • the elastomeric element filters vibrations and shocks and improves the control and comfort of the ski.
  • the inclination of the slope 6 forms with the lateral direction, that is to say the horizontal if the ski is flat, an angle of between 30 and 60 ° and preferably between 35 and 55 °. This makes it possible to improve the grip of the ski and the responsiveness to the turn initiation particularly effectively.
  • the abutment wall 7 forms with the transverse direction 102, that is to say the vertical if the ski is flat, an angle ⁇ less than the angle ⁇ . This makes it possible to ensure efficient transmission of the support force while limiting or even preventing creep of the elastic element 35.
  • the angle ⁇ is between 15 and 35 °. It is preferably equal to 20 °.
  • the slope 6 extends in the longitudinal direction 101 of the board 1, over a length that corresponds to at least a portion of the interface plate 10.
  • the movable member 31 extends longitudinally over a length greater than 80% and advantageously equal to the length of the slope 6.
  • the board 1 has at least two slopes 6, each disposed on one side of a longitudinal median plane of the board 1.
  • two cavities 4 disposed on either side of the screws 15 for fixing the plate interface 10 to the board 1 each have a slope 6 extending longitudinally.
  • a single movable element 31 and a single cavity 4 are arranged on each side of the longitudinal median plane.
  • this embodiment is preferred when the portions of the interface plate 10 receiving the rear and front portions of the shoe retainer are integral as shown in FIG. figure 1 .
  • This embodiment simplifies the assembly assembly 100 and improve reliability.
  • each cavity 4 housing a resilient element 35 and a movable element 31.
  • the two cavities 4 disposed on the same side of the longitudinal median plane respectively correspond to a front portion 18 and to a rear portion 19 of the interface plate 10.
  • This embodiment is preferred when the portions of the interface plate 10 intended to receive the front and rear portions of the shoe retainer are not integral as illustrated in FIG. figure 2 .
  • the front portion 18 is connected to the rear portion 19 by a part 16 easily deformable. There is therefore no transmission of force between the two parts 18, 19 of the interface plate 10.
  • Each portion 18, 19 of the interface plate 10 therefore has a different behavior. This has the advantage of improving the behavior of the ski including bending around a lateral median axis.
  • This flexible connection 36 allows the two bars of the same pair to move away or approach one another without constraint.
  • the moving elements are then in the form of a set of strips per board 1 as illustrated in FIG. figure 1 or in the form of several sets of bars per board 1 as illustrated in figure 2 .
  • the interface plate includes a front portion and a rear portion as in the mode described in FIG. figure 2 . But only one of the front or rear parts is equipped with conversion means.
  • the invention allows the use of interface plates 10 of the same size, including lateral, for skis of different widths and while maintaining a high level of performance.
  • the interface plate may have a contact width in contact with the ski of between 44 and 55 millimeters.
  • Such an interface plate can then be mounted on relatively narrow skis, typically runway skis, having for example a shoe width of between 60 and 75 millimeters.
  • the invention also makes it possible to use this same interface plate with wider skis, typically off-piste skis which, moreover, have a shoe width greater than 80 millimeters and while maintaining the performance of this ski.

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  • Footwear And Its Accessory, Manufacturing Method And Apparatuses (AREA)
  • Road Paving Structures (AREA)

Claims (11)

  1. Einheit (100) für ein Schneegleitbrett (1), die enthält:
    - ein Gleitbrett (1), das mindestens eine Außenseite (2) und mindestens eine Kante (3) aufweist,
    - mindestens eine Schnittstellenplatte (10), die konfiguriert ist, zur festen Befestigung eines Schuhs am Gleitbrett (1) beizutragen und eine Auflagekraft (F1) aufzunehmen, die im Wesentlichen lotrecht zur Außenseite (2) ausgerichtet ist,
    - eine Kraftumwandlungsvorrichtung (30), die konfiguriert ist, die Auflagekraft (F1) in eine Kraft umzuwandeln, die eine bezüglich einer Lotrechten zur Außenseite (2) geneigte Komponente aufweist, um sich einem Anheben der Kante (3) zur Außenseite (2) des Bretts (1) zu widersetzen,
    dadurch gekennzeichnet, dass
    die Kraftumwandlungsvorrichtung (30) mindestens zwei fest mit dem Brett (1) verbundene Schrägen (6) und mindestens zwei bewegliche Elemente (31) aufweist, die gestaltet sind, um von der Schnittstellenplatte (10) mindestens einen Teil der Auflagekraft (F1) aufzunehmen und um je auf einer der Schrägen (6) in einer ersten Richtung zu gleiten, die sich von der Mittelebene entfernt, wobei die Schrägen (6) bezüglich einer Querrichtung (102) geneigt sind, die lotrecht zur Außenseite (2) ist,
    und dass die mindestens zwei Schrägen (6) je in einem Hohlraum (4) eingerichtet sind, der mindestens eine die Schräge (6) bildende geneigte Wand und eine Anschlagwand (7) aufweist, die gestaltet ist, um das Gleiten des beweglichen Elements (31) in der ersten Richtung zu stoppen.
  2. Einheit (100) nach dem vorhergehenden Anspruch, wobei die Schrägen (6) einen Winkel α zwischen 30° und 60° mit einer seitlichen Richtung (103) bilden, die lotrecht zur Querrichtung (102) ist und sich gemäß der Breite des Bretts (10) erstreckt.
  3. Einheit (100) nach einem der zwei vorhergehenden Ansprüche, wobei die Kraftumwandlungsvorrichtung (30) elastische Einrichtungen aufweist, die zwischen einer fest mit dem Brett (1) verbundenen Anschlagwand (7) und dem beweglichen Element (31) angeordnet und konfiguriert sind, die vom Brett (10) erfahrenen und vom Brett (1) zur Schnittstellenplatte (10) übertragenen Stöße zu absorbieren oder zu dämpfen.
  4. Einheit (100) nach einem der drei vorhergehenden Ansprüche, wobei die Kraftumwandlungsvorrichtung (30) elastische Einrichtungen aufweist, die zwischen einer fest mit dem Brett (1) verbundenen Anschlagwand (7) und dem beweglichen Element (31) angeordnet und konfiguriert sind, auf das bewegliche Element (31) eine Rückstellkraft auszuüben, die dahin tendiert, das bewegliche Element (31) auf der Schräge (6) in einer zweiten Richtung entgegengesetzt zur ersten gleiten zu lassen, um das bewegliche Element (31) in eine Ruhestellung zurückzubringen.
  5. Einheit (100) nach der Kombination der Ansprüche 1 und 2, wobei die Anschlagwand (7) mit der Querrichtung (102) einen Winkel β kleiner als der Winkel α bildet.
  6. Einheit (100) nach einem der vorhergehenden Ansprüche, wobei die beweglichen Elemente (31) Stäbe bilden, die sich in einer Längsrichtung (101) des Bretts (1) erstrecken.
  7. Einheit (100) nach einem der vorhergehenden Ansprüche, wobei die Einheit (100) konfiguriert ist, damit die vom Benutzer auf die Schnittstellenplatte (10) ausgeübte Auflagekraft (F1) sich vollständig auf das mindestens eine bewegliche Element (31) überträgt.
  8. Einheit (100) nach einem der vorhergehenden Ansprüche, wobei die Schnittstellenplatte (10) einen hinteren Teil (19), der dazu bestimmt ist, eine Haltevorrichtung für einen hinteren Abschnitt eines Schuhs aufzunehmen, und einen vorderen Teil (18) enthält, der dazu bestimmt ist, eine Haltevorrichtung für einen vorderen Abschnitt des Schuhs aufzunehmen, wobei die vorderen und hinteren Teile (18, 19) der Schnittstellenplatte (10) fest miteinander verbunden sind, und wobei die Schnittstellenplatte (10) gestaltet ist, um auf nur zwei beweglichen Elementen aufzuliegen, die zu beiden Seiten einer Längsmittelebene angeordnet sind und die sich von einem Teil (18) zum anderen (19) der Schnittstellenplatte (10) erstrecken.
  9. Einheit (100) nach einem der Ansprüche 1 bis 7, wobei die Schnittstellenplatte (10) einen hinteren Teil (19), der dazu bestimmt ist, eine Haltevorrichtung für einen hinteren Abschnitt eines Schuhs aufzunehmen, und einen vorderen Teil (18) enthält, der dazu bestimmt ist, eine Haltevorrichtung für einen vorderen Abschnitt des Schuhs aufzunehmen, wobei die vorderen und hinteren Teile (18, 19) der Schnittstellenplatte (10) sich voneinander unterscheiden, und wobei jeder Schnittstellenteil (18, 19) gestaltet ist, um auf zwei beweglichen Elementen aufzuliegen, die zu beiden Seiten einer Längsmittelebene angeordnet sind, wobei die dem vorderen Teil (18) zugeordneten beweglichen Elemente (31, 31) sich von den dem hinteren Teil (19) zugeordneten beweglichen Elementen (31, 31) unterscheiden.
  10. Schneegleitbrett (1), das mindestens eine Kante (3) und eine Außenseite (2) enthält, die eine Aufnahmezone für eine Schnittstellenplatte (10) aufweist, die dazu bestimmt ist, an der festen Verbindung eines Schuhs mit dem Brett (1) mitzuwirken, wobei die Außenseite (2) mindestens zwei Hohlräume (4) aufweist, die sich in einer Längsrichtung (101) erstrecken, wobei die Hohlräume je eine Schräge (6) aufweisen, die gemäß einer Querrichtung (102) geneigt ist, die lotrecht zur Außenseite (2) ist, und mindestens zum Teil ein bewegliches Element (31) aufnehmen, wobei die beweglichen Elemente (31) dazu bestimmt sind, von der Schnittstellenplatte (10) eine Querkraft zu empfangen, und konfiguriert sind, auf der Schräge (6) aufzuliegen, um auf der Schräge (6) zu gleiten, indem sie sich der Kante (3) nähern, wenn die Kraft eine gegebene Schwelle überschreitet, wobei jeder Hohlraum (4) mindestens eine geneigte Wand, die die Schräge (6) bildet, und eine Anschlagwand (7) aufweist, die gestaltet ist, um das Gleiten des beweglichen Elements (31) in der ersten Richtung zu stoppen.
  11. Brett (1) nach dem vorhergehenden Anspruch, das elastische Einrichtungen enthält, die zwischen einer fest mit dem Brett (1) verbundenen Anschlagwand (7) und dem beweglichen Element (31) angeordnet und konfiguriert sind, auf das bewegliche Element (31) eine Rückstellkraft auszuüben, die dahin tendiert, das bewegliche Element (31) auf der Schräge (6) gleiten zu lassen, um es von der Kante (3) zu entfernen.
EP14000995.2A 2013-03-18 2014-03-18 Schnittstellenplatte für Ski Not-in-force EP2781242B1 (de)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
FR1300627A FR3003179B1 (fr) 2013-03-18 2013-03-18 Plaque d'interface pour ski

Publications (2)

Publication Number Publication Date
EP2781242A1 EP2781242A1 (de) 2014-09-24
EP2781242B1 true EP2781242B1 (de) 2016-09-14

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Application Number Title Priority Date Filing Date
EP14000995.2A Not-in-force EP2781242B1 (de) 2013-03-18 2014-03-18 Schnittstellenplatte für Ski

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FR (1) FR3003179B1 (de)

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2785548B1 (fr) * 1998-11-09 2000-12-15 Rossignol Sa Plate forme de surelevation des fixations de la chaussure, pour ski de neige
FR2812210B1 (fr) * 2000-07-26 2002-10-04 Rossignol Sa Planche de glisse sur neige munie d'une plate-forme mobile de surelevation des fixations de chaussure
AT411152B9 (de) * 2000-12-18 2004-01-26 Fischer Gmbh Verbindungseinrichtung zum anschluss einer skibindung an den ski
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
DE10303056A1 (de) * 2003-01-27 2004-08-12 Kneissl & friends Ges.m.b.H Ski oder dergleichen Schneegleitgerät mit Bindungsbrücke
FR2873043B1 (fr) * 2004-07-15 2008-10-03 Skis Rossignol Sa Sa Perfectionnement pour planche de glisse sur neige
AT507579B1 (de) * 2008-12-11 2011-01-15 Atomic Austria Gmbh Schi oder snowboard mit einem plattenartigen kraftübertragungselement

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FR3003179B1 (fr) 2016-08-26
FR3003179A1 (fr) 2014-09-19
EP2781242A1 (de) 2014-09-24

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