EP2752225B1 - Planche de surf sur neige - Google Patents

Planche de surf sur neige Download PDF

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Publication number
EP2752225B1
EP2752225B1 EP13199707.4A EP13199707A EP2752225B1 EP 2752225 B1 EP2752225 B1 EP 2752225B1 EP 13199707 A EP13199707 A EP 13199707A EP 2752225 B1 EP2752225 B1 EP 2752225B1
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EP
European Patent Office
Prior art keywords
board body
sliding board
width
sliding
axis
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP13199707.4A
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German (de)
English (en)
Other versions
EP2752225A1 (fr
Inventor
Tobias Heil
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.)
Volkl Sports GmbH and Co KG
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Volkl Sports GmbH and Co KG
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Publication date
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Publication of EP2752225A1 publication Critical patent/EP2752225A1/fr
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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
    • A63C5/04Structure of the surface thereof
    • A63C5/0405Shape thereof when projected on a plane, e.g. sidecut, camber, rocker
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63CSKATES; SKIS; ROLLER SKATES; DESIGN OR LAYOUT OF COURTS, RINKS OR THE LIKE
    • A63C5/00Skis or snowboards
    • A63C5/04Structure of the surface thereof
    • A63C5/052Structure of the surface thereof of the tips or rear ends

Definitions

  • the invention relates to a snow sliding board according to the preamble of claim 1.
  • the DE 201 80 055 U1 relates to a snow sliding board, in particular a snowboard, comprising a raised area extending from a front area to a rear area.
  • the ends of the raised area taper sharply and widen towards the center of the snowboard to form a receptacle for binding.
  • the raised area is surrounded by an area of lesser height that determines the shape of the snowboard.
  • the WO 99/43397 A1 relates to a ski having a core having regions of different height extent in a direction transverse to the skiing direction.
  • the core extends over the entire length and width of the ski.
  • the DE 102 50 020 A1 relates to a snow sliding board which is molded in a mold.
  • the gliding board may have partial reinforcements, for example to dampen unwanted vibrations that occur during driving.
  • FR 2 804 335 discloses a snow glider with a bump over the entire length of the gliding board.
  • the object of the invention is to show a snow sliding board, which has a larger Gleitbrettbreite with reduced weight perpendicular to its longitudinal extent and is therefore particularly suitable for driving in deep snow.
  • the essential aspect of the ski according to the invention is that the part of the gliding board body width occupied by the two lateral sections is greater than the width of the raised area and / or that the thickness which is the lateral sections in the third axial direction (Z-axis). approximately equal to two or three times the maximum dimension at the longitudinal sides of the gliding board body have intended steel edges in this axial direction.
  • the snow sliding board is designed in particular as a freestyle ski as well as touring skis, which despite its low weight has an advantageous width for driving in deep snow.
  • the ski is formed in a second gliding board body area outside the first gliding board body area and between it and a front gliding board body end and / or a rear gliding board body end having the raised portion and the side portions.
  • the sliding board body is formed between the first sliding board body region and the second sliding board body region, each having a third sliding board body region forming a transition.
  • the first gliding board body area together with the third gliding board body areas occupies 30% to 40%, preferably about 35%, of the total length of the gliding board body.
  • the second gliding board body area extending to the front sliding board body end occupies 35% to 45%, preferably about 40%, of the total length of the gliding board body, and / or the second gliding board body area extending to the rear gliding board body end is 20% to 30%, preferably about 24% % of the total length of the gliding board body.
  • the gliding board body width of the gliding board body in the first gliding board body region is formed by the raised portion or substantially by the raised portion.
  • the ski is further characterized by a core which extends over the entire length of the gliding board body or substantially the entire length of the gliding board body and whose width in the second axial direction determines the width of the raised portion and the course of this width.
  • the ski is characterized by a core extending over the entire length of the gliding board body or substantially the entire length of the ski
  • the sliding board body extends, wherein the core between a top of the sliding board body forming layer or shell and the sliding surface or disposed between the core and the sliding surface bottom chord is arranged, and wherein the lateral portions extend laterally from the core.
  • an additional reinforcing layer is provided between the layer or shell forming the upper side of the gliding board body.
  • the lateral sections are advantageously formed in each case from a plurality of interconnected layers which comprise at least the layer forming the upper side of the gliding board body, the lower flange and a sliding lining of the sliding surface.
  • the sliding board body is formed both at its front and at its rear sliding board body end with a scoop-like upwardly curved portion.
  • X, Y and Z are indicated in the figures with X, Y and Z, of which the X-axis is the longitudinal axis L of the ski body and of which the Y-axis of the width B and the Z-axis of the height of the ski body 2 correspond.
  • the ski generally referred to as 1 in the figures, or its ski body 2 is made, for example, using conventional skiboot materials, with a front rounded and scoop-like upward, i.e., upwards. on the upper side of the ski body concavely arched ski body end 2.1 and with a rearward also rounded and scoop-like upward, i. on the upper side of the ski body concavely arched ski body 2.2, with a central binding and ski body 2.3 for attachment of a binding or binding plate, not shown, with adjoining the ski body area 2.3 ski body areas 2.4 and formed on these subsequent Ski stresses Suite 2.5, at the front or rear end of the ski body 2.1 or 2.2 end.
  • a front rounded and scoop-like upward i.e., upwards. on the upper side of the ski body concavely arched ski body end 2.1
  • a rearward also rounded and scoop-like upward i. on the upper side of the ski body concavely arched ski body 2.2
  • a special feature of the ski 1 is that the ski body 2 over its entire length perpendicular to the ski body longitudinal axis L and X-axis has an increased width B, for example, a width greater than 100 mm, with a reduced weight of the ski body 2, so that the ski 1 is suitable as a freestyle ski as well as touring skis in particular also for driving in deep snow.
  • the ski body 2 on its underside extending over the entire width B running or sliding surface 3, which consists in a known manner from the Gleit vombelag 4 and the two, along the longitudinal sides of the ski body 2 extending steel edges 5.
  • the core 6 which consists for example of wood and / or other suitable as a body core material, such as foamed plastic, eg plastic foam and over the entire length of the ski body 2 from the front end of the ski body 2.1 bis extends to the rear ski body end 2.2.
  • FIG. 2 can be seen, in the middle ski body area 2.3 of the core 6 is laterally provided with a side cheek 7, which is supported with its arranged in the XY plane underside directly or indirectly to the relevant steel edge 5 and at least at this the respective steel edge 5 adjacent bottom in the direction of the Y-axis has a cross-sectional width which is equal to the local width of the steel edge 5 and which in any case is greater than 50% of the cross-sectional dimension which the side cheek 7 has on its core 6 adjacent surface in the Z-axis direction ,
  • the side wall 7 are made of a suitable plastic.
  • a lower flange 8 is arranged, which extends over the entire length of the ski body 2 between the steel edges 5 and is formed in the illustrated embodiment of a carbon fiber reinforced layer or layer of plastic.
  • the upper side of the ski body 1 is formed by a reinforced by carbon fibers layer or shell 9 made of plastic, which extends over the entire width B and length of the ski body 2 and in the embodiment shown at the same time also necessary for the stability of the ski body 2 upper chord forms.
  • a reinforcing layer 10 made of carbon fibers and plastic is further provided, which is connected flat with the shell 9, also extending over the entire width B and length of the ski body 2 and in the illustrated embodiment, where the core 6 is present, immediately adjacent to the top of the core 6.
  • the width B of the ski body 2 is determined by the distance that the two side cheeks 7 exposed there on the longitudinal sides of the ski body 2 have in the Y axis from one another. Furthermore, shell 9 as well as the reinforcing intermediate layer 10 in the middle ski body region 2.3 respectively terminate at the upper side of the respective side cheek 7 and are connected there to the side cheek 7 in a suitable manner. Furthermore, in the middle ski body region 2.3, the cross section and in particular also the width B of the ski body 2 are essentially determined by the cross section of the core 6.
  • the core 6 is facing in the illustrated embodiment at its Skioberseite Top is shaped so that the cross-sectional dimension of the core 6 in the Z-axis, starting from that of a side wall 7 initially increases, then over the vast majority of the width of the ski body 2 is constant or substantially constant and to the other side cheek 7 again decreases accordingly.
  • the ski body 2 is formed in terms of its cross section and in terms of the components used and their arrangement mirror-symmetrical to a arranged in the XZ plane and the longitudinal axis L enclosing center plane M.
  • the FIG. 3 shows the cross section of the ski body 2 at the ski body areas 2.5.
  • the width B of the ski body 2 is not determined by the width of the core 6, but the core has a relation to the ski body width B significantly reduced width in the direction of the Y-axis, ie the width of the core 6 is outside the binding area significantly less than 50% of the ski body width B, for example 40% - 50% of the ski body width B.
  • the shell 9 as well as the reinforcing intermediate layer 10 are here guided over the extending in the direction of the X-axis longitudinal sides of the core 6 and laterally from this with the lower flange 8 and the Sliding layer 4 is connected flat to a multilayer laminate structure.
  • the sections 12 are essentially formed by the laminate structure of the shell 9, of the intermediate layer 10, of the lower flange 8 and of the sliding lining 4. Furthermore, in the illustrated embodiment, the sections 12 each have a constant or essentially constant thickness in the direction of the Z-axis over their entire width oriented in the direction of the Y-axis as well as over the entire length oriented in the direction of the X-axis.
  • the core 6 is shaped so that the ski body 2 at the ski body areas 2.5 even at section 11 in the direction of the Z-axis has a thickness which is smaller than the corresponding thickness in the ski body area 2.3 or binding area, ie at In the illustrated embodiment, the corresponding thickness of the ski body 2 outside the ski body area is only about 70 to 85 of the thickness in the binding area.
  • ski body 2 results in a large ski body width B, a substantial reduction of the total weight of the ski body 2, wherein the ski body 2 in terms of torsional stiffness and flexural rigidity, also with respect to bending or flexing about axes parallel to the Y-axis, as well as in terms its mechanical strength not only corresponds to a ski body which is very narrow in the ski body area 2.3 or in the binding area and the ski body areas 2.5 corresponding to the section 11, but also the wing-like portions 12 contribute to the torsional rigidity and bending stiffness and create the for the Driving necessary ski body width B especially in deep snow.
  • the two ski body regions 2.4 which directly adjoin the middle ski body region 2.3, respectively form transition regions to the ski body regions 2.5, i.
  • the sections 12 are increasingly formed, or vice versa, the width b of the raised section 11 is reduced steadily there from the width B in the ski body area 2.3 to the width b at the ski body areas 2.5.
  • the ski body area 2.3 together with the ski body areas 2.4 occupies about 30% to 40%, preferably about 35%, of the total length of the ski body 2.
  • the ski body region 2.5 extending to the front ski body end 2.1 has a length which corresponds to approximately 35% to 45%, preferably approximately 40%, of the total length of the ski body 2.
  • the ski body region 2.5 extending to the rear ski body end 2.2 has a length which corresponds to approximately 20% to 30%, preferably approximately 24% of the total length of the ski body 2.
  • the ski body 2 has on its longitudinal sides a certain sidecut, in the form that the width B in the middle of the ski body 2 is smaller than the two ski body ends 2.1 and 2.2. Furthermore, the width b of the raised area also changes 11 in the longitudinal direction of the body of the ski to a certain extent and the height or the thickness of the raised area 11 in the direction of the Z-axis decreases starting from the respective ski body area 2.4 toward the front or rear end of the ski body 2.1 or 2.2.
  • Table 1 below shows the progression of the widths B and b as a function of the distance X (distance location) from the rear end of the ski body 2.2.
  • the distance X is in each case given as a percentage relative to the total length of the ski body 2, the width B as a percentage of the maximum width B, the ski body 2 at its front ski body end 2.1 or at the local blade area, and the width b in terms of percentage the width B, which has the ski body at the respective Abstandsort.
  • the invention has been described above by means of an embodiment. It is understood that numerous changes and modifications are possible without thereby departing from the inventive concept underlying the invention.
  • further elements or components in the latter for example to surround the core 6 with a torsion box formed from a fiber-reinforced plastic material and / or additionally to cover the upper shell 9 to provide an outer decorative layer and / or, for example, perform the intermediate layer at least in sections multi-layered.

Landscapes

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

Claims (10)

  1. Ski avec un corps de planche de glisse (2) formant un corps de planche de glisse avant et arrière (2.1, 2.2) avec une première zone de corps de planche de glisse (2.3) formant une zone de liaison (2.3) pour la fixation d'au moins une liaison et/ou plaque de liaison, le corps de planche de glisse (2) étant au moins formé sur sa face supérieure opposée à une glisseace de glissement (3), dans une zone partielle en trois dimensions avec une section en saillie (11) s'étendant dans une première direction axiale (axe X ; axe longitudinal L) correspondant à une direction longitudinale de planche de glisse (L), section à laquelle se raccordent, dans une deuxième direction axiale (axe Y ; largeur B) vers les faces longitudinales du corps de planche de glisse (2) des sections latérales (12) qui présentent dans une troisième direction axiale (axe Z ; épaisseur) perpendiculairement par rapport à
    la première et à la deuxième directions axiales (axe X, axe Y) ainsi que perpendiculairement par rapport à la glisseace de glissement (3) une épaisseur réduite, la largeur du corps de planche de glisse (B) étant déterminée dans la deuxième direction axiale (axe Y) par la somme des largeurs de la section profilée (11) et des sections latérales (12),
    dans lequel la partie de la largeur du corps de planche de glisse (B) pris des deux sections latérales (12) est plus grande que la largeur (b) de la section en saillie (11) et/ou l'épaisseur que les sections latérales (12) présentent dans la troisième direction axiale (axe Z), est environ égale au double ou au triple de la dimension maximale que les arêtes en acier (5) prévues sur les faces longitudinales du corps de planche de glisse (2) possèdent,
    le corps de planche de glisse (2) dans une deuxième zone du corps de planche de glisse (2.5) en dehors de la première zone du corps de planche de glisse (2.3) et entre celle-ci et une extrémité du corps de planche de glisse avant (2.1) et/ou une extrémité du corps de planche de glisse arrière (2.2) étant formé avec la section en saillie (11) et les sections latérales (12), caractérisé en ce que
    la largeur (b) de la section en saillie (11) est essentiellement constante dans la deuxième zone du corps de planche de glisse (2.5).
  2. Ski selon la revendication 1, caractérisé en ce que le corps de planche de glisse (2) entre la première zone du corps de planche de glisse (2.3) et la deuxième zone du corps de planche de glisse (2.5) est formé dans chaque cas avec une troisième zone du corps de planche de glisse (2.4) formant une transition.
  3. Ski selon la revendication 2, caractérisé en ce que la première zone du corps de planche de glisse (2.3) occupe, avec les troisièmes zones du corps de planche de glisse (2.4) 30% à 40%, de préférence environ 35% de la longueur totale du corps de planche de glisse (2).
  4. Ski selon la revendication 2 ou 3, caractérisé en ce que la deuxième zone du corps de planche de glisse (2.5) allant jusqu'au corps de planche de glisse avant (2.1) occupe 35% à 45%, de préférence environ 40% de la longueur totale du corps de planche de glisse (2) et/ou en ce que la deuxième zone du corps de planche de glisse (2.5) s'étendant jusqu'au corps de planche de glisse arrière (2.2) occupe 20% à 30%, de préférence environ 24% de la longueur totale du corps de planche de glisse (2).
  5. Ski selon l'une des revendications précédentes, caractérisé en ce que la largeur du corps de planche de glisse (B) du corps de planche de glisse (2) dans la première zone du corps de planche de glisse (2.3) est formée par la section saillie (11) ou essentiellement par la section profilée (11).
  6. Ski selon l'une des revendications précédentes, caractérisé en ce qu'est prévu un noyau (6) qui s'étend sur la totalité de la longueur du corps de planche de glisse (2) ou essentiellement sur la totalité de la longueur du corps de planche de glisse (2) et dont la largeur dans la deuxième direction axiale (axe Y) détermine la largeur (b) de la section profilée (11) et l'évolution de cette largeur (b).
  7. Ski selon l'une des revendications précédentes, caractérisé en ce qu'est un noyau (6) qui s'étend sur la totalité de la longueur du corps de planche de glisse (2) ou essentiellement sur la totalité de la longueur du corps de planche de glisse (2), le noyau (6) étant disposé entre une couche ou coque (9) formant la face supérieure du corps de planche de glisse (2) et la glisseace de glissement (3) ou entre une membrure inférieure (8) disposée entre le noyau (6) et la glisseace de glissement (3), les sections latérales (12) s'étendant latéralement depuis le noyau (6).
  8. Ski selon la revendication 7, caractérisé en ce qu'entre la couche ou coque (9) formant la face supérieure du corps de planche de glisse (2), une couche de renforcement supplémentaire (10) est prévue.
  9. Ski selon l'une des revendications précédentes, caractérisé en ce que les sections latérales (12) sont formées de plusieurs couches reliées les unes aux autres qui entourent au moins la couche (9) formant la face supérieure du corps de planche de glisse (2), la membrure inférieure (8), de même qu'un revêtement glissant (4) de la glisseace de glissement (3).
  10. Ski selon l'une des revendications précédentes, caractérisé en ce que le corps de planche de glisse (2) est formé tant à son corps de planche de glisse avant qu'à son corps planche de glisse arrière (2.1, 2.2) avec une section bombée à la manière d'une pelle.
EP13199707.4A 2013-01-08 2013-12-27 Planche de surf sur neige Active EP2752225B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102013100110.6A DE102013100110A1 (de) 2013-01-08 2013-01-08 Schneegleitbrett

Publications (2)

Publication Number Publication Date
EP2752225A1 EP2752225A1 (fr) 2014-07-09
EP2752225B1 true EP2752225B1 (fr) 2017-09-06

Family

ID=49886771

Family Applications (1)

Application Number Title Priority Date Filing Date
EP13199707.4A Active EP2752225B1 (fr) 2013-01-08 2013-12-27 Planche de surf sur neige

Country Status (3)

Country Link
US (1) US9180358B2 (fr)
EP (1) EP2752225B1 (fr)
DE (1) DE102013100110A1 (fr)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
RU2016122250A (ru) * 2016-06-07 2017-12-12 Геворг Сережаевич Нороян Лыжи быстроходные
US11883736B2 (en) * 2022-01-31 2024-01-30 The Moss Companies Device and method of manufacturing for a snow and water sport sliding device with a pneumatic core

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2002504410A (ja) * 1998-02-24 2002-02-12 ケー − 2 コーポレーション 幾何学的に制御された捻れと可撓性を備えるスキーボード
FR2804335B1 (fr) * 2000-01-28 2002-04-19 Salomon Sa Planche de glisse destinee a la pratique du surf sur neige
DE10250020B4 (de) * 2002-10-25 2015-07-02 Völkl Sports GmbH & Co. KG Verfahren zum Herstellen eines Schneegleitbretts, beispielweise Ski mit strukturierter Oberseite sowie nach diesem Verfahren hergestelltes Schneegleitbrett

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
None *

Also Published As

Publication number Publication date
US9180358B2 (en) 2015-11-10
US20140191495A1 (en) 2014-07-10
DE102013100110A1 (de) 2014-07-10
EP2752225A1 (fr) 2014-07-09

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