EP2046464A2 - Rondelle de bâton de ski avec surface d'appui ajustable - Google Patents

Rondelle de bâton de ski avec surface d'appui ajustable

Info

Publication number
EP2046464A2
EP2046464A2 EP07720217A EP07720217A EP2046464A2 EP 2046464 A2 EP2046464 A2 EP 2046464A2 EP 07720217 A EP07720217 A EP 07720217A EP 07720217 A EP07720217 A EP 07720217A EP 2046464 A2 EP2046464 A2 EP 2046464A2
Authority
EP
European Patent Office
Prior art keywords
plate
area
attachment according
dish
attachment
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.)
Granted
Application number
EP07720217A
Other languages
German (de)
English (en)
Other versions
EP2046464B1 (fr
Inventor
Klaus Lenhart
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.)
Lekisport AG
Original Assignee
Lekisport AG
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 Lekisport AG filed Critical Lekisport AG
Publication of EP2046464A2 publication Critical patent/EP2046464A2/fr
Application granted granted Critical
Publication of EP2046464B1 publication Critical patent/EP2046464B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63CSKATES; SKIS; ROLLER SKATES; DESIGN OR LAYOUT OF COURTS, RINKS OR THE LIKE
    • A63C11/00Accessories for skiing or snowboarding
    • A63C11/22Ski-sticks
    • A63C11/24Rings for ski-sticks
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63CSKATES; SKIS; ROLLER SKATES; DESIGN OR LAYOUT OF COURTS, RINKS OR THE LIKE
    • A63C11/00Accessories for skiing or snowboarding
    • A63C11/22Ski-sticks
    • A63C11/228Accessories

Definitions

  • the invention relates to an attachment for a ski pole, in particular for alpine skiing or for cross-country skiing, with a top attachment, which has an upwardly directed receiving area for a pole tube, a downwardly directed pole tip, and a rigid, substantially in a plane perpendicular or at an angle of between 60 - 120 ° to the axis of the pole tube extending plate area.
  • poles are used to support themselves on the ground on the one hand and on the other hand to trigger the forward movement.
  • the sticks have for this purpose a handle, an actual tube and a tip, this tip also has a plate.
  • the tip is intended to penetrate into the ground, such as snow or ice, and the plate serves to limit this intrusion by the plate provides a large support surface for resting on the ground.
  • Such plates can take different forms, the classic form consists for example of a ring, which is connected via connecting elements with the floor. It is also known to provide a construction at the tip of the pole, with which different plates of different size, color, etc. can be attached.
  • constructions in which the plate can be folded, that is, there is a first position in which the plate is active and prevents sinking of the stick in the soft material, as well as a second folded or folded position at which the stick plate essentially has no effect.
  • constructions are known (see, for example, FR 2249686, DE 2027461, DE 2952149 or US 3645553), in which the plate can be opened to some extent like a screen for a supporting position, and can be folded for a retracted position.
  • the invention is i.a. the object of providing such an improved construction.
  • an attachment for a stick e.g. for alpine skiing or for cross-country skiing (eg Nordic or skating), but also for hiking poles or Nordic Walking poles, with a top attachment, which preferably has an upwardly directed Aufhahme Suite for a stick tube, a downwardly directed pole tip, and a stiff, extending substantially in a plane perpendicular or at an angle of between 60 - 120 ° to the axis of the pole tube plate area extending.
  • Such essays are for example made of (hard) plastic in an injection molding process produced.
  • the plane of the plate is substantially perpendicular to the direction of the pole tube, but it is also possible to provide a slight inclination if necessary. This in particular such that the plane of the plate is tilted about an axis perpendicular to the direction of rotation and perpendicular to the pole tube, for example by being slightly raised behind.
  • such an inclination is normally small, and the deviation from the pipe perpendicular position is normally less than 30 °, preferably less than 10 or 15 °.
  • a separately formed and additional plate plate is arranged on the plate area such that it can be fixed both in a first position, as well as in at least a second, with respect to the first position substantially in the plane of the plate area shifted position, wherein in the second position, a larger bearing surface is effective on the ground than in the first position.
  • a larger contact surface is to be understood that preferably at least over a peripheral region of the plate of 90 °, more preferably of at least 180 °, the plate plate is beyond the plate area out and by moving the plate plate and this peripheral area is increased.
  • the displacement also means that the enlargement is preferably asymmetric, that is, by moving the plate plate, the plate is substantially enlarged in one direction. It is typically the case with respect to the direction of backward side, which is enlarged.
  • the core of the invention is therefore to carry out the construction in two parts, so to speak, wherein a first part, the plate area, is rigid and to a certain extent provides the rigidity.
  • a second part, the plate plate is now fastened to this plate area in such a way that at least the said two or more positions with a different contact surface are possible.
  • the attachment is characterized in that the dish plate is arranged on the underside of the plate area.
  • the dish plate is arranged on the underside of the plate area.
  • the plate plate must be fixed only from below to the plate area, and the plate area above it stabilizes the dish plate.
  • the plate itself does not have to be completely stiff then, but may consist of a partially flexible material.
  • the dish plate can also be made of a flex-resistant material, such as e.g. Hard plastic exist.
  • a particularly preferred embodiment of the article is characterized in that the plate area has on its underside a concave curvature, and that the plate plate is fixed from below in such a curvature that the plane itself
  • Dish plate substantially the arched shape of the plate area in at least one of the two, preferably in both positions at least partially continues respectively takes over. Furthermore, this configuration results in a curvature of the dish plate in the attachment to the bottom, which on the one hand allows the
  • Dish plate to form plan, and to some extent produce the final shape only by the connection to the plate area, and further results from the curvature of the dish plate after mounting a stabilization.
  • Dish plate can bend much less after being attached by the curvature at a load.
  • Such on the underside concave or to some extent formed with a recess plate are known in particular in cross-country skiing. Typically, they are additionally formed asymmetrically, that is, the plate extends to some extent essentially only in the running direction to the rear.
  • the curved shape of the plate leads to an optimal behavior in the ground when the stick is introduced obliquely into the ground to repel.
  • Dish plate can be provided from a self-level material available.
  • the plate plate from a flat plastic plate of thickness in the range of a few millimeters (cut, punch), and the actual three-dimensional optimal shaping is then specified only by the attachment of the dish plate on the plate area from below.
  • the means for attachment are preferably not arranged at the edge of the plate area but in the middle, ie slightly offset in the depth region, so that the plate plate effectively takes over the curvature of the plate area.
  • the plate area is preferably designed asymmetrically. In this case, he is in particular to the front substantially not available and the main extension of the plate area is directed to the back.
  • the plate area is particularly preferably circular, elliptical or approximately lens-shaped.
  • the plate plate may consist of a rigid material and already have their own three-dimensional shape.
  • the dish plate may be made of a substantially flexure-resistant material, such as e.g. Hard plastic, be formed, and thus be substantially rigid or hard.
  • the plate plate consists of the same material as the plate area, wherein it is preferred that the plate plate has substantially the same curvature as the plate area.
  • it may, as already mentioned, preferably consist simply of a flat plate which is optionally flexible, so that its shape is predetermined on the pole by the attachment to the plate region.
  • the plate plate has a particular preferably unilaterally open recess for the pole tip, respectively, an extension supporting the pole top.
  • this recess may be a U-shaped or V-shaped recess.
  • the dish plate can be made of a plastic material, preferably made of PE, PET, PP, PU, PA or other thermoplastics or mixtures thereof, in particular preferably with a thickness in the range of 0.1-0.4 cm.
  • the plate area according to another preferred embodiment is the plate area according to another preferred embodiment
  • Embodiment of the invention at least one, but preferably two or more
  • the plate plate at least one front bore, but preferably a pair of front holes and at least one rear hole, but preferably a pair of rear holes, and wherein through these holes cross-fasteners, particularly preferably in the form of screws (or rivets, staples, pins, etc.) are provided, with which the plate plate on Plate area are attached.
  • cross-fasteners particularly preferably in the form of screws (or rivets, staples, pins, etc.) are provided, with which the plate plate on Plate area are attached.
  • the plate plate has only a pair of holes and the plate area over at least two successively arranged pairs of holes.
  • the version in which the plate plate over several pairs (also more than two pairs possible for a plurality of different positions) of holes has, since then the plate area is not weakened by holes and also in a mounted plate plate from the straight unused holes are not visible from above.
  • the plate region has only one bore, which is preferably arranged centrally.
  • the dish plate and / or the plate area preferably has at least one means for preventing rotation of the dish plate on the plate area.
  • the number of holes in the dish plate corresponds to the number of adjustment positions of the dish plate on the plate area.
  • the at least one means for preventing rotation of the dish plate on the plate area may be, for example, a ribbed area or a toothing, wherein preferably the ribbing or toothing in the dish plate advantageously engages in a corresponding ribbing or perforation in the plate area.
  • the ribbing or perforation can be provided in a peripheral edge of the plate area, which runs in the rear area. Such a ribbing brings along with the stabilization and anti-rotation has the further advantage that the stick plate in the snow or other soft ground gives a better grip or grip.
  • it is preferably a hard or rigid or substantially flexible dish plate.
  • the screws are screws in which a first screw in the screw pin has an internal thread and a second screw on the screw pin has a corresponding external thread, which engage in one another in the bore (s). It is possible that the first screw is rotatably mounted fixed in the plate area.
  • An anti-rotation can also be achieved by alternative means, such as ribbing or perforation in plate plate and / or plate area.
  • the dish plate in the first position at the front edge directed to the front substantially does not protrude beyond the plate area, and laterally respectively at the rear edge directed towards the rear it protrudes between 0.2-1.5 cm above the plate area. If the plate in the second position is moved to the back, it protrudes at the rear edge directed to the rear between 0.5-2.5cm on the plate area.
  • the tip attachment according to a preferred embodiment
  • Hard plastic embodiment for example PE, PET, PP, PU, PA or others
  • the tip attachment particularly preferably has on top at least one substantially vertically extending Stiffening rib between the plate area and the Aufhahme Suite.
  • the present invention relates to a method for adapting a ski pole, in particular for alpine skiing or for cross-country skiing, with an attachment, as described above, to different conditions in the ground, in particular different snow conditions.
  • the method is i.a. characterized in that for relatively hard ground, the dish plate is arranged in the first position, and that arranged for relatively soft ground, the dish plate in the second position
  • FIG. 1 shows different views of the pole tip according to a first embodiment of the invention for a situation in which the dish plate is mounted in the forward position, wherein in a) a view from the rear, in b) a view from below, in c ) is a view from above and in d) a view or a section along the line AA in Figure 1 c) is shown; and FIG. 2 shows different views of the pole tip according to the embodiment of FIG.
  • FIG. 4 shows different views of the pole tip according to the embodiment of FIG. 3 for a situation in which the dish plate is mounted in a middle of three possible positions, in a) a view from the side, in b) a view from the rear, in FIG c) a view from the front, in d) a view from above, in e) a view from below, in f) a section along the line AA, in g) a section along the line BB, and in h) a three-dimensional view is shown.
  • FIG. 1 different views of the pole top of a cross-country pole according to a first embodiment of the invention are shown. Only the lower part of the stick is shown, the upper part with the handle is not visible for easier viewing.
  • Fig. 1a there is shown a rear view, by "rear", which refers to the rearwardly-directed side.
  • the floor 2 comprises a pole tube 1 which is inserted into a tip attachment 3.
  • the pole tube 1 is for this purpose in a receiving area 4 screwed, glued or pressed in.
  • the top attachment 3 consists for example of plastic and comprises on the one hand the already mentioned upwardly directed Aufhahme Scheme 4 and down over an extension 7 for receiving a pole tip 8.
  • the stick tip 8 is configured as a hardened, preferably asymmetrically shaped metal tip (eg sintered carbide) or ceramic tip, which glued into this extension 7, pressed or is trapped.
  • the tip attachment 3 comprises a plate region 5, which is arranged substantially perpendicular to the direction of the pole tube 1.
  • the plate area is designed asymmetrically, i. towards the front 13 towards this plate area 5 is not available, while it has the rear side 14 its maximum extent. This is also apparent from the view from below (according to Fig. Ib and from the view from above (according to Fig. Ic).)
  • a stiffening rib 6 is arranged, which extends substantially vertically and is arranged between the receiving area 4 designed as a hollow cylinder and the plate area 5 on the upper side of the plate area 5.
  • This top attachment 3 is preferably formed in one piece, ie the receiving area 4, the plate area 5, according to FIG
  • the rear-directed stiffening rib 6 and the extension 7 are configured as a single casting, and this casting made of hard plastic (for example injection molding made of a plastic such as PE, PET, PP, PU, PA or other thermoplastics or mixtures thereof) is now on the Bottom attached to at least a certain extent flexible plate plate 9.
  • Die The plate plate 9 is shown in Fig. 1 in a first position in which the plate plate barely protrudes beyond the outer contour of the plate area 5. This first position is designated by the reference numeral 15 and named as the front position. As can be seen in particular from Fig. Ic, the plate plate 9 is in this position to the front not at all on the outer contour of the plate area 5 out, on the side and to the rear but a little.
  • the plate area 5 is on its underside, ie on the Stick tip 8 facing side, with an inner curvature, that is designed with a trough-shaped depression, ie it is three-dimensional conical shaped. This leads to an optimal intervention in the underground. As can also be seen from Fig. Id, the plane of the plate portion 5 is not exactly perpendicular to the direction of the pole tube, but pulled slightly backwards. This is only an option.
  • Fig. Id represents a section along the line A-A in Fig. Ic
  • the fastening screws 10 are arranged symmetrically on both sides in two holes in the plate area 5.
  • the plate plate 9 in turn has corresponding holes, through a pair of front holes 12 and a pair of rear holes 17.
  • the screws 10 pass through both the holes in the plate area as well as either the front or the rear holes in the plate plate.
  • the screws 10 are designed so that, as shown by way of example in Fig. Id, the upper screw 10 'at its screw pin has an internal thread and the lower screw 10 "with its screw, which has an external thread, in this internal thread This prevents the end of a screw protruding outwards and prevents the risk of contamination.
  • the plate plate 9 is now pressed as a result of the attachment in the concave region of the underside of the plate portion 5 by the screws 10 to the underside of the plate portion 5 that the per se flat plate plate 9 is bent and the concave shape of the plate area 5 takes over.
  • the plate plate 9 may alternatively or additionally be preformed.
  • the plate plate 9 has a recess 11 for the extension 7. In this way it is possible, a very simple construction of such Dish plate 9 to provide.
  • the plate plate 9 can be punched or cut out as a plastic plate from a large plate, and must first have no three-dimensional shape.
  • the three-dimensional shaping is determined only by the attachment to the plate area 5, but it can also already be easily preformed or produced by injection molding.
  • the plate plate 9 or 9b has a sufficient flexibility to take over this imposed form in the attachment to the plate area 5, but is sufficiently intrinsically stiff, so that in the edge region, in particular in the illustrated in Fig. 2 rear position 16 in the use no significant deformation results.
  • the plate plate 9 is shown in Fig. 1 in the front position 15. This means that the plate plate 9 is attached via the two rear holes 17 on the plate area.
  • the second possible position is shown in corresponding representations a - d, in which the plate plate 9 is fixed in the rear position 16 on the plate area 5.
  • the plate plate 9 is fixed with the two front holes 12 via the screws 10 on the plate area 5.
  • the plate plate 9 is thus displaced by approximately 0.5-1.5 cm to the rear and is now in particular on the rear side substantially over the outer contour of the plate area 5 before.
  • this second position 16 so a much larger bearing surface of the plate is provided.
  • the plane of the plate is displaced by the displaced to the rear plate plate substantially in a position perpendicular to the pole tube, which is very beneficial for soft surfaces.
  • the plate plate 9 protrudes about 0.5-1.5 cm beyond the outer contour to the rear side 14.
  • the gain in contact area is about 10-40%.
  • the dish plate 9 can also be completely removed if the substrate, e.g. is very hard, then the weight load is minimal.
  • FIGS. 3, 4 and 5 show different views of a second embodiment of the invention. In each case only the plate attachment without stick is shown.
  • the canopy axis S extends to a certain extent through the receiving area 4.
  • a dish plane E runs essentially perpendicularly to it.
  • the dish plate 9 or 9a shown in FIGS. 3-5 is formed rigidly or hard from hard plastic and has substantially the same concave curvature downwards like the plate area 5.
  • An adjustment mark 23 is marked with S (small) in FIG. 3, since the plate has the smallest diameter or the smallest surface in relation to the three possible adjustment positions when the disk plate 9 or 15 is fixed through the front bore 12.
  • the mean adjustment position shown in Figure 4 is marked on the Verstellmark ists Scheme 23 with the letter M (medium), since the adjustment in the central bore 20 an intermediate plate size of the plate area 5 together with the outstanding below the plate area 5 area of the plate plate 9 and 19 respectively between the small and the large plate size allows.
  • the rearmost position of the three possible adjustment positions is shown, wherein the rear bore 17 is used for the determination.
  • This rear adjustment position is marked on the adjustment mark 23 with L (large), since the fixed in the rear position plate plate 16 causes the largest of the three plate sizes.
  • the lateral edge regions of the dish plate 9 shown in FIGS. 3-5 have a transverse continuous or interrupted in the middle in a section
  • Ribbing consisting of ribs 21, and grooves 22, which, in the essay on the
  • Plate area 5 in a provided in a downwardly projecting and rear peripheral edge toothing of the plate area 5, which also from corresponding
  • the Adjustment marking 23 is preferably arranged in the rear area of the dish plate, in particular preferably in a central position substantially parallel to the course of the stiffening rib 6 and substantially perpendicular to the bar axis A.
  • the bore in the plate area is preferably arranged centrally in this second embodiment, particularly preferably in one Escape with the stiffening rib 6 and the optionally arranged Verstellmark ists Suite 23.
  • the recess 18 for the mandrel of the pole tip is clearly visible in Figures 3b, e, f, 4b, e, f and 5b, e, f.

Abstract

La présente invention concerne un élément rapporté destiné à un bâton de ski, en particulier pour le ski alpin ou le ski de fonds, comprenant un élément rapporté à pointe (3) qui présente une zone de réception (4) orientée vers le haut et destinée à un tube de bâton (1), une pointe de bâton (7,8) orientée vers le bas, et une zone de rondelle (5) rigide qui s'étend sensiblement dans un plan ou forme un angle compris entre 60 et 120° avec l'axe du tube de bâton (1). Une adaptation particulièrement simple à différentes conditions de neige est possible lorsqu'une rondelle (9) est mise en place sur la zone de rondelle (5) de sorte qu'elle peut être fixée aussi bien dans une première position (15) que dans au moins une seconde position (16) décalée par rapport à la première position sensiblement dans le plan de la zone de rondelle (5), la seconde position (16) offrant une surface d'appui active sur le sol supérieure à celle de la première position (15).
EP07720217.4A 2006-06-30 2007-06-29 Rondelle de bâton de ski avec surface d'appui ajustable Active EP2046464B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CH10592006 2006-06-30
PCT/CH2007/000320 WO2008000109A2 (fr) 2006-06-30 2007-06-29 Rondelle de bâton de ski

Publications (2)

Publication Number Publication Date
EP2046464A2 true EP2046464A2 (fr) 2009-04-15
EP2046464B1 EP2046464B1 (fr) 2016-07-27

Family

ID=37943846

Family Applications (1)

Application Number Title Priority Date Filing Date
EP07720217.4A Active EP2046464B1 (fr) 2006-06-30 2007-06-29 Rondelle de bâton de ski avec surface d'appui ajustable

Country Status (6)

Country Link
US (1) US7926849B2 (fr)
EP (1) EP2046464B1 (fr)
JP (1) JP5149286B2 (fr)
CN (1) CN101484215B (fr)
NO (1) NO340884B1 (fr)
WO (1) WO2008000109A2 (fr)

Families Citing this family (15)

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Publication number Priority date Publication date Assignee Title
CH701380B1 (de) * 2008-04-11 2011-01-14 Lekisport Ag Stock mit Beleuchtungsvorrichtung.
CA2783395A1 (fr) * 2008-12-15 2010-06-24 Sidestix Ventures Inc. Dispositif d'assistance aux personnes a mobilite reduite
EP2432894B1 (fr) 2009-05-18 2016-01-27 Lightship Medical Limited Méthode de calibrage de capteur glucose
NO330833B1 (no) * 2009-10-09 2011-07-25 Swix Sport As Festing av trinse
DE202009016923U1 (de) * 2009-12-15 2011-04-28 Salewa Sport Ag Schneeteller und Sportstock mit Schneeteller
US9168449B2 (en) 2011-02-04 2015-10-27 Lekisport Ag Pole baskets for ski poles for the touring sector, which pole baskets can be folded in the direction of the pole tip
US8636306B2 (en) * 2011-04-25 2014-01-28 Stephen L. McBride Skate board paddle
CN102553207A (zh) * 2012-01-19 2012-07-11 西南交通大学 滑雪杖杖尖
US9713759B2 (en) 2015-02-02 2017-07-25 Andrew D. Liebner Ski pole accessories
CA2982805C (fr) * 2015-04-27 2023-06-27 Lekisport Ag Systeme de changement de rondelle pour la randonnee
USD774613S1 (en) * 2015-05-18 2016-12-20 Basket Buds, Llc Ski pole basket
CN106422280B (zh) * 2016-11-29 2018-05-25 吉林大学 一种仿生滑雪杖
EP3456395B1 (fr) * 2017-09-18 2020-06-03 KV2 Sagl Panier pour bâton de ski et bâton de ski muni d'un tel panier
CN107616589A (zh) * 2017-09-27 2018-01-23 宁海县木马人户外用品有限公司 一种登山杖
USD1000563S1 (en) * 2022-10-28 2023-10-03 Zhouyang Zheng Ski pole tip

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DE1478108A1 (de) 1965-02-12 1969-08-07 Heinz Fesser Sicherheits-Skistockteller
AT296113B (de) * 1968-09-16 1972-01-25 Hans Hinterholzer Schneeteller für einen Skistock
DE2027461C3 (de) 1970-06-04 1979-02-01 Otto 7571 Haueneberstein Huckenbeck Skistock-Schneeteller
FR2249686A1 (en) 1973-11-06 1975-05-30 Ramillon Rene Ski stick with flexible body replacing disc at bottom end - has flexible oblong synthetic body with two coaxial bores of conical shape
JPS527257Y2 (fr) * 1973-12-20 1977-02-16
FI55298C (fi) * 1977-10-03 1979-07-10 Exel Oy Trissa foer skidstav
DE2952149A1 (de) 1979-12-22 1981-07-02 Benner - Ski GmbH & Co, 7184 Kirchberg Skistockteller
IT1148775B (it) 1980-02-29 1986-12-03 Attilio Pronzati Bastoncini da sci dotati di rotelle intercambiabili
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Also Published As

Publication number Publication date
US20090194986A1 (en) 2009-08-06
JP5149286B2 (ja) 2013-02-20
WO2008000109A2 (fr) 2008-01-03
EP2046464B1 (fr) 2016-07-27
CN101484215B (zh) 2012-08-22
NO340884B1 (no) 2017-07-03
CN101484215A (zh) 2009-07-15
WO2008000109A3 (fr) 2008-03-06
US7926849B2 (en) 2011-04-19
JP2009540967A (ja) 2009-11-26
NO20084894L (no) 2009-03-06

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