EP2617475B1 - Taillierung eines Gleitbretts - Google Patents

Taillierung eines Gleitbretts Download PDF

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Publication number
EP2617475B1
EP2617475B1 EP13151095.0A EP13151095A EP2617475B1 EP 2617475 B1 EP2617475 B1 EP 2617475B1 EP 13151095 A EP13151095 A EP 13151095A EP 2617475 B1 EP2617475 B1 EP 2617475B1
Authority
EP
European Patent Office
Prior art keywords
curvature
board
line
zone
radius
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
EP13151095.0A
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English (en)
French (fr)
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EP2617475A1 (de
Inventor
Adrien Reguis
Arnaud Repa
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
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Skis Rossignol SA
Rossignol SA
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Publication of EP2617475A1 publication Critical patent/EP2617475A1/de
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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

Definitions

  • the invention relates to the field of snow sliding sports. It is more specifically boards gliding whose side line has a particular geometry to improve the handling and ease of use of the board. This invention is applicable to various types of gliding boards, whether skiing or snowboarding.
  • a snowboard whether it is a ski or a snowboard, has a side line, defined in a standardized way as the line which represents the lateral contour of the ski in the area between the points of maximum rear width and front.
  • the side line of a ski is dug, so that the width of the ski at mid-length, or for example near the level of the mid-shoe line, is less than the width at the points of width maximum front and / or rear.
  • this dimension line makes it possible to define a radius of curvature, which may be of the order of a few meters or even a few tens of meters. Due to the digging of the dimension line, this curvature is oriented towards the outside of the board. Depending on the geometry sought, this radius of curvature may be substantially constant, or more generally, scalable along the dimension line, generally reaching a minimum value at the middle of the board.
  • the ski described in this document has two rectilinear zones in alignment, and located near the widest areas ahead and behind the ski. More specifically, such a ski has a central zone which has a curvature classically oriented towards outside. Forward and backward of this central zone, the dimension line has rectilinear portions, which are arranged in alignment with one another, and which thus form a line slightly inclined with respect to the longitudinal axis of the ski.
  • the connection between the central zone with external curvature and the rectilinear zones is done by short portions whose curvature is oriented towards the interior of the ski and which terminate at the beginning of the rectilinear portion, that is to say below the area of greatest width.
  • the invention therefore relates to a board for sliding on snow, having lines of greater width before and / or back, and having side lines including a central area having a curvature oriented outwardly of the board.
  • this board is defined by the independent claims 1 and 2.
  • the boards according to the invention are designed such that the areas of greater width before and / or back are located in an area where curvature of the dimension line is facing inwards.
  • This inwardly curvature zone begins in front of the pad, and well below the wide point. Therefore, when the ski is inclined laterally, for example in turn initiation, the forces are transmitted to the ground by a fraction of the inverted curvature area, for a length sufficient for the pressure exerted is reduced. It follows that the grip exerted by the edge is lower in the end zones of the board. Of course, the length of this adjacent zone must be sufficient to generate this effect on the pressure exerted by the edge.
  • This adjacent zone must therefore begin sufficiently far below the widest point to extend to this wide point and even beyond. It can not therefore be confused with a simple connection zone situated in the immediate vicinity of the wide point, where the curvature oriented outwards at the level of the pad is reversed to move inwards, beyond the point wider.
  • the front contact line may be located in the adjacent zone, having an inverted curvature, and for example close to the front line of greater width, for a low spatula board. This can be mainly the case for an evolution on track, on snow groomed, to obtain a board easier and more manageable in its use.
  • the front and / or rear contact line may also be located in the adjacent zone, having an inverted curvature dimension line, but in an intermediate region of this adjacent zone, in the length direction. This allows for a favorable behavior for a multipurpose board, on snow and powder snow.
  • the front contact line may be located below the adjacent zone, that is to say within the central zone where the curvature of the dimension line is oriented towards outside.
  • This board is particularly dedicated to an evolution on powdery snow.
  • the length of the adjacent zone located below the wide point must be sufficient to significantly reduce the existing overpressure usually at the widest points of the dimension line.
  • the length of the adjacent zone, measured parallel to the longitudinal axis of the board is greater than 100, or even 120 mm. Thanks to such a length, when the ski is inclined, the pressure distribution in the adjacent zone is decreased compared to traditional skis, and in particular in the corresponding area of the edge, the skier does not feel an exaggerated snag that could to disturb him in the handling of the ski.
  • the presence of the adjacent zone, whose curvature is oriented inwards, over a sufficient length results in a widening of the plank between the point of inflection of the coastline, where curvature passes from outside to inner orientation, and the widest point, which is located within this adjacent area.
  • this increase in width on one side of the board, between these two points is greater than 5 millimeters, and can reach 10 mm or more depending on the configuration of the board. This widening can be evaluated separately from one side to the other of the board by a measurement vis-à-vis the longitudinal axis of the board.
  • the length of the adjacent zone below the wide point is greater than 10% of the length measured between the front and rear wide points of the board. sideline.
  • the central zone ie the zone having an outward curvature
  • the central zone is reduced in length, since part of the dimension line is in the so-called adjacent zones, having a curvature inverted, so that it is possible to adopt radii of curvature in the central zone which are lower than the rays conventionally observed for planks of similar length.
  • the radius of curvature of the central zone is between 5 and 20 meters. In the particular case of alpine skiing, this radius can be advantageously less than 15 meters. In the case of a snowboard, this radius of curvature of the central zone is advantageously less than or equal to 8 meters.
  • the radius of curvature of the adjacent zone is greater than the radius of curvature of the central zone, and advantageously between 15 and 30 meters.
  • the ski 1 has a front end 2 and a rear end 3. This ski also has side lines 4, 5 which are symmetrical with respect to the median longitudinal axis 6 of the board.
  • this ski 1 has a central zone 10, which extends longitudinally between two lines 15, 16, situated forwardly and rearward respectively of the implantation zone of the binding.
  • the dimension line 4, 5 has an outwardly oriented curvature.
  • the length of the central zone measured parallel to the median longitudinal axis is between 50 and 90% of the length measured between the wide points 20, 21
  • the curvature of the dimension line in the zone 10 is oriented outwards, and the value of the radius of curvature R3 can be constant, with a relatively low value, of the order of 15 meters or less than the median level of the central area.
  • This radius of curvature can still be variable along the length of the central zone, it being understood that the average radius calculated from the two extreme points of the central zone and the narrowest point of the plank is of the order of 15. meters.
  • a relatively small radius of curvature with this inverted curvature dimension line can be considered for all skis with a minimum width of 55 to 180 mm. This type of sidecut is particularly interesting for skis wider than 100 mm. In this way, the relatively wide skis, the width of which is mainly intended for powder snow practice, then becomes easier for track changes where the snow is harder because it is dammed.
  • the ski In front of the central zone 10, the ski has an adjacent zone 11, in which the side line 4 has a curvature oriented towards the inside of the board. This adjacent area extends from line 16 to the front end 2 of the board.
  • the point of connection between the central zone 10 and the adjacent zone 11 corresponds to the point of inflection 17, where the curvature of the dimension line changes direction.
  • the dimension line may have no meaning in the case where the end of the board is equipped with end pieces, or has a specific geometry.
  • the zone adjacent to 11 encompasses the region of greatest width located at the front of the plank, and materialized by line 20 at the figure 1 .
  • the radius of curvature R2 in the portion of the adjacent zone 11 located below the wide point 20 is greater than that R3 observed in the central zone 10, and for a ski is typically between 15 and 30 meters. As for the central zone, this radius R2 can be constant over the entire length of the adjacent zone or preferentially be variable. Beyond the wide point 20, the adjacent zone has a radius of curvature which may be smaller.
  • the portion of the adjacent zone 11 located behind the line of greater width 20 has a length greater than 120 mm, up to 300 mm depending on the overall geometry of the board.
  • the length of the adjacent zone is generally greater than 10% of the length measured between the two wide points 20,21.
  • the ski widens, between its start, corresponding to the point of inflection 17 of the dimension line, and the wide point 20.
  • this widening ⁇ l measured transversely to the longitudinal axis, is greater than 5 millimeters, and can reach values of 10 mm or more.
  • the ski has an adjacent zone 12, behind the central zone 10, also having a curvature of the inwardly facing dimension line.
  • This rear adjacent zone connects to the central zone 10 and starts at the line 15, where the inflection point 18 of the dimension line is located, and extends rearward at least to the rear wide point. 21.
  • the presence of such an adjacent rear zone with inverted curvature is not absolutely mandatory.
  • the ski 1 has a front contact line 22, defined in a standardized manner when the board is loaded at its center, and is plated on a horizontal plane.
  • This line of contact 22 is slightly behind the line of greatest width 20 in the area adjacent to the dimension line, where the radius of curvature is inverted. More specifically, this front contact line 22 is closer to the line of greater width 20 than the line 16 inversion of the direction of the curvature.
  • the rear contact line 23 is slightly forward of the line 21 of greater width.
  • the forward contact line 32 is further back than the line of contact before 22 of the board of the figure 2 . More specifically, this front contact line 32 is closer to the line 16 of inversion of the direction of curvature than to the point of the line of greatest width 20. Thus, in the embodiments of FIG. Figures 2 and 3 it will be noted that the front contact line 22 , 32 is beyond the line 16 inverting the direction of the curvature.
  • the forward contact line 42 lies within the central zone, i.e. behind the reversal line 16 of the curvature of the dimension line.
  • the rear contact lines 33 and 43 are located similarly to the front contact line, that is to say near the front and / or rear 15 of the reversing line of the direction of curvature.
  • the different embodiments illustrated in Figures 2, 3 and 4 can be combined without departing from the scope of the invention.
  • FIG 5 corresponds to a snowboard.
  • a surf 51 has a front end 52 and a rear end 53.
  • This surf also has side lines 54, 55 which are symmetrical with respect to the median longitudinal axis 56 of the board.
  • this snowboard 51 has a central zone 60 which extends longitudinally between two lines 65, 66, situated respectively close to the zones 57, 58 for the implantation of the fastenings, represented in the figure by the position metal inserts mounting mounting.
  • this central zone 60 the dimension line 54, 55 has an outwardly oriented curvature.
  • the length of this central zone 60 is preferably between 40 and 90% of the length measured between the wide points 70, 71.
  • the curvature of the dimension line 54, 55 in the central zone 60 is oriented outwards, and the value of the radius of curvature R52 can be constant, with a value of the order of a few meters and typically less than 8 meters, or even less than 6 meters.
  • the value of the radius of curvature can also be variable along the length of the central zone.
  • the surf Forward of the central zone 60, the surf has an adjacent area before 61, in which the side line 64 has a curvature oriented towards the inside of the surf.
  • This adjacent zone 61 extends from the line 66 where the curvature of the dimension line is reversed and up to the front end 52 of the surf.
  • the characteristics of the invention related to the definition of the dimension line may not have a significance in the case where the extreme zone of the board has a shape defined for aesthetic reasons, insofar as this zone is not in contact with the snow when the board is inclined.
  • the zone 61 includes the region of greater width located at the front of the board, and materialized by the line 70 to the figure 5 .
  • the radius of curvature R52 in the adjacent zone 61 is greater than that R53 observed in the central zone, and for a surf typically between 15 and 25 meters. As for the central zone 60, this radius R53 may be constant over the entire length of the adjacent zone 61 or preferably be variable.
  • the portion of the adjacent forward zone 61 behind the highest width line 70 has a length greater than about 10% of the length measured between the wide points 70,71.
  • the length of this zone is greater than 120 mm, up to 300 mm depending on the overall geometry of the board.
  • the plank widens, between its start, corresponding to the point of inflexion 67 of the dimension line, and the wide point 70.
  • this widening ⁇ l measured transversely to the longitudinal axis, is greater than 5 millimeters, and can reach values of 10 mm or more.
  • the rear of the board has an adjacent zone 62 similar to the zone 61.
  • the board has two adjacent zones located on either side of the zone. central, although the modes of embodiment with a single zone adjacent to inverted curvature fall within the scope of the invention.
  • snowboard 51 has a front line 72 defined in a standardized manner, when the board is loaded at its center and plated on a horizontal plane.
  • this forward contact line 72 is slightly behind the line of greatest width 70, and therefore in the adjacent area before 61 of the dimension line.
  • the rear contact line 73 is slightly forward of the line 71 of greater width, and therefore in the adjacent rear area 62 of the dimension line.
  • the forward contact line 82 is further back than the line of contact before 72 of the board of the figure 6 . More specifically, this forward contact line 82 is located near the line of separation between the central zone 60 and the adjacent zone 61, in the region of installation of the fastener. According to different variants, the front contact line 82 may be located in the adjacent zone or in the central zone.
  • the boards according to the invention have the advantage of limiting the deletions exerted at the widest points of the side line when the board is inclined to the edge, which facilitates the driving and the handling of the board.
  • the overpressure is further reduced if the length of the adjacent zone is large.

Landscapes

  • Road Paving Structures (AREA)
  • Blinds (AREA)
  • Particle Accelerators (AREA)
  • Cleaning Of Streets, Tracks, Or Beaches (AREA)

Claims (14)

  1. Schneegleitbrett (1, 51), mit breiteren vorderen Linien (20, 70), und mit Seitenlinien (4, -5, 54, 55), die eine zentrale Zone (10, 60) umfassen, deren Krümmung zur Außenseite des Bretts hin orientiert ist, dadurch gekennzeichnet, dass diese zentrale Zone (10, 60) sich nach vorne durch eine angrenzende Krümmungszone (11, 12, 61, 62) verlängert, die nach innen orientiert ist und die sich zwischen einem Wendepunkt, der hinter der breitesten Linie liegt, bis zur breitesten vorderen Linie (20, 70) erstreckt, wobei die Länge des Teilstücks der angrenzenden Zone (11, 12, 61, 62) das jenseits der breitesten Linie (20,21) liegt, die parallel zur Längsachse des Brettes gemessen wird, größer als 120 mm ist.
  2. Schneegleitbrett (1, 51), mit einer breiteren hinteren Linie (21, 71), und mit Seitenlinien (4, -5, 54, 55), die eine zentrale Zone (10, 60) umfassen, deren Krümmung zur Außenseite des Bretts orientiert ist, dadurch gekennzeichnet, dass dieser Zentralbereich (10, 60) sich nach hinten durch eine angrenzende Krümmungszone (11, 12, 61, 62) verlängert, die nach innen orientiert ist und die sich zwischen einem Wendepunkt, der vor der breitesten Linie liegt, bis zur breitesten hinteren Linie (21, 71) erstreckt, wobei die Länge des Teilstücks der angrenzenden Zone (11, 12, 61, 62) das jenseits der breitesten Linie (20,21) liegt, die parallel zur Längsachse des Brettes gemessen wird, größer als 120 mm ist.
  3. Gleitbrett gemäß Anspruch 1 oder 2, mit einer Kontaktlinie vorne (42, 82) und/oder hinten (43, 83), die in der zentralen Zone liegt (10, 60).
  4. Gleitbrett gemäß Anspruch 1 oder 2, mit einer Kontaktlinie vorne (22, 32, 72) und/oder hinten (21,31, 71), die in der angrenzenden Zone liegt.
  5. Gleitbrett gemäß Anspruch 1 oder 2, bei dem die Länge der angrenzenden Zone (11, 12, 61, 62) jenseits der breitesten Linie, die parallel zur Längsachse des Brettes gemessen wird, größer ist als 10 % der Länge, die zwischen den breitesten Linien (20,21,70,71) gemessen wird.
  6. Gleitbrett gemäß Anspruch 1 oder 2, bei dem der Krümmungsradius (R3, R53) der Zentralzone kleiner als der Krümmungsradius (R2, R1, R52, R53) der angrenzenden Zone ist.
  7. Gleitbrett gemäß Anspruch 1 oder 2, bei dem der Krümmungsradius (R3, R53) der Zentralzone zwischen 5 m und 20 m beträgt.
  8. Gleitbrett gemäß Anspruch 1 oder 2, bei dem der Krümmungsradius (R2, R1, R52, R53) der angrenzenden Zone jenseits der breitesten Linien zwischen 15 m und 30 m beträgt.
  9. Gleitbrett gemäß einem der vorstehenden Ansprüche, das einen Alpin-Ski bildet, bei dem der Krümmungsradius (R3) der Zentralzone kleiner oder gleich 15 m ist.
  10. Gleitbrett gemäß einem der vorstehenden Ansprüche, das ein Snowboard bildet, bei dem der Krümmungsradius (R53) der Zentralzone kleiner oder gleich 8 m ist.
  11. Gleitbrett gemäß Anspruch 9, bei dem die angrenzende(n) Zone(n), deren Krümmung nach innen orientiert ist, sich vorne an der Kufe befindet/befinden.
  12. Gleitbrett gemäß Anspruch 9, mit angrenzenden Zonen, deren Krümmung nach innen orientiert ist, die sich vorne und hinten an der Kufe befinden.
  13. Gleitbrett gemäß Anspruch 9, bei dem die Kufenbreite größer als 100 mm ist.
  14. Gleitbrett gemäß Anspruch 9, bei dem der Anschlusspunkt (17,18) zwischen der Zentralzone (10) und der angrenzenden Zone (11, 12), und dem breitesten Punkt (20, 21) um mindestens 5 mm quer versetzt sind.
EP13151095.0A 2012-01-19 2013-01-12 Taillierung eines Gleitbretts Active EP2617475B1 (de)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
FR1250568A FR2985914B1 (fr) 2012-01-19 2012-01-19 Planche de glisse

Publications (2)

Publication Number Publication Date
EP2617475A1 EP2617475A1 (de) 2013-07-24
EP2617475B1 true EP2617475B1 (de) 2017-07-19

Family

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EP13151095.0A Active EP2617475B1 (de) 2012-01-19 2013-01-12 Taillierung eines Gleitbretts

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US (1) US8919790B2 (de)
EP (1) EP2617475B1 (de)
FR (1) FR2985914B1 (de)

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101974194B1 (ko) * 2012-11-14 2019-04-30 이지하 스노우 슬라이딩 장치
US10780830B2 (en) * 2017-03-27 2020-09-22 Anderson & Wood Construction Co., Inc. Mounted retractable catwalk for trucks, utility, construction, and industrial vehicles and equipment
US10780831B2 (en) * 2017-03-27 2020-09-22 Anderson & Wood Construction Co., Inc. Mounted retractable catwalk for trucks, utility, construction, and industrial vehicles and equipment
FR3138044A1 (fr) 2022-07-20 2024-01-26 Skis Rossignol Ski alpin a ligne de cote amelioree

Family Cites Families (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE4112950A1 (de) 1990-05-04 1991-11-07 Rohrmoser Alois Skifabrik Schi mit einem trapezfoermigen breitenverlauf
FR2786108B1 (fr) * 1998-11-25 2001-02-16 Salomon Sa Ski
WO2003072207A2 (fr) 2002-02-28 2003-09-04 Radiguet Stephane Ski a rayon court associe a une spatule longue
DE202004005784U1 (de) 2004-04-08 2004-06-24 Elan, D.D. Snowboard
US7690674B2 (en) * 2006-08-10 2010-04-06 Armada Skis, Inc. Snow riding implement
US20080106068A1 (en) * 2006-11-01 2008-05-08 Drake Powderworks, Llc Ski and Snowboard
FR2908665B1 (fr) * 2006-11-22 2009-03-20 Salomon Sa Ski
FR2910336B1 (fr) * 2006-12-20 2011-04-22 Salomon Sa Planche de glisse ou de roulage
FR2955035B1 (fr) * 2010-01-08 2012-12-28 Rossignol Sa Ski alpin

Non-Patent Citations (1)

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

Also Published As

Publication number Publication date
FR2985914A1 (fr) 2013-07-26
FR2985914B1 (fr) 2014-01-03
US20130187351A1 (en) 2013-07-25
US8919790B2 (en) 2014-12-30
EP2617475A1 (de) 2013-07-24

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