EP3050601B1 - Vorderbacken einer alpinskibindung - Google Patents

Vorderbacken einer alpinskibindung Download PDF

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Publication number
EP3050601B1
EP3050601B1 EP16151206.6A EP16151206A EP3050601B1 EP 3050601 B1 EP3050601 B1 EP 3050601B1 EP 16151206 A EP16151206 A EP 16151206A EP 3050601 B1 EP3050601 B1 EP 3050601B1
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EP
European Patent Office
Prior art keywords
jaw
plate
configuration
relative
lever
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EP16151206.6A
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English (en)
French (fr)
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EP3050601A1 (de
Inventor
Giovanni Indulti
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Atk Race SRL
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Atk Race SRL
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    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63CSKATES; SKIS; ROLLER SKATES; DESIGN OR LAYOUT OF COURTS, RINKS OR THE LIKE
    • A63C9/00Ski bindings
    • A63C9/08Ski bindings yieldable or self-releasing in the event of an accident, i.e. safety bindings
    • A63C9/0807Ski bindings yieldable or self-releasing in the event of an accident, i.e. safety bindings for both towing and downhill skiing
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63CSKATES; SKIS; ROLLER SKATES; DESIGN OR LAYOUT OF COURTS, RINKS OR THE LIKE
    • A63C9/00Ski bindings
    • A63C9/08Ski bindings yieldable or self-releasing in the event of an accident, i.e. safety bindings
    • A63C9/085Ski bindings yieldable or self-releasing in the event of an accident, i.e. safety bindings with sole hold-downs, e.g. swingable
    • A63C9/08507Ski bindings yieldable or self-releasing in the event of an accident, i.e. safety bindings with sole hold-downs, e.g. swingable with a plurality of mobile jaws
    • A63C9/08528Ski bindings yieldable or self-releasing in the event of an accident, i.e. safety bindings with sole hold-downs, e.g. swingable with a plurality of mobile jaws pivoting about a longitudinal axis
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63CSKATES; SKIS; ROLLER SKATES; DESIGN OR LAYOUT OF COURTS, RINKS OR THE LIKE
    • A63C9/00Ski bindings
    • A63C9/08Ski bindings yieldable or self-releasing in the event of an accident, i.e. safety bindings
    • A63C9/085Ski bindings yieldable or self-releasing in the event of an accident, i.e. safety bindings with sole hold-downs, e.g. swingable
    • A63C9/08557Details of the release mechanism
    • A63C9/08564Details of the release mechanism using cam or slide surface
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63CSKATES; SKIS; ROLLER SKATES; DESIGN OR LAYOUT OF COURTS, RINKS OR THE LIKE
    • A63C9/00Ski bindings
    • A63C9/08Ski bindings yieldable or self-releasing in the event of an accident, i.e. safety bindings
    • A63C9/085Ski bindings yieldable or self-releasing in the event of an accident, i.e. safety bindings with sole hold-downs, e.g. swingable
    • A63C9/08557Details of the release mechanism
    • A63C9/08571Details of the release mechanism using axis and lever
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63CSKATES; SKIS; ROLLER SKATES; DESIGN OR LAYOUT OF COURTS, RINKS OR THE LIKE
    • A63C9/00Ski bindings
    • A63C9/08Ski bindings yieldable or self-releasing in the event of an accident, i.e. safety bindings
    • A63C9/085Ski bindings yieldable or self-releasing in the event of an accident, i.e. safety bindings with sole hold-downs, e.g. swingable
    • A63C9/08557Details of the release mechanism
    • A63C9/08578Details of the release mechanism using a plurality of biasing elements
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63CSKATES; SKIS; ROLLER SKATES; DESIGN OR LAYOUT OF COURTS, RINKS OR THE LIKE
    • A63C9/00Ski bindings
    • A63C9/08Ski bindings yieldable or self-releasing in the event of an accident, i.e. safety bindings
    • A63C9/085Ski bindings yieldable or self-releasing in the event of an accident, i.e. safety bindings with sole hold-downs, e.g. swingable
    • A63C9/08557Details of the release mechanism
    • A63C9/08585Details of the release mechanism using transverse biasing element
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63CSKATES; SKIS; ROLLER SKATES; DESIGN OR LAYOUT OF COURTS, RINKS OR THE LIKE
    • A63C9/00Ski bindings
    • A63C9/08Ski bindings yieldable or self-releasing in the event of an accident, i.e. safety bindings
    • A63C9/086Ski bindings yieldable or self-releasing in the event of an accident, i.e. safety bindings using parts which are fixed on the shoe of the user and are releasable from the ski binding

Definitions

  • the present invention relates to the technical sector of attachments for Alpine skiing, and in particular the invention concerns a toe-piece for an Alpine ski binding.
  • a toe-piece for a binding for Alpine skiing of known type comprises: a plate fixable to a ski at the lower surface of the plate, two jaws, each comprising an external end, an internal end and a central body interposed between the external end and the internal end.
  • the two jaws are arranged above the upper surface of the plate, so as to be facing one another.
  • the two jaws are hinged to the plate by means of the relative central boy with respect to axes that are parallel to one another.
  • the external end of each jaw bears a pin conformed and arranged so as to insert internally of a hole of an Alpine ski-boot.
  • the toe-piece for Alpine skiing further comprises a joint constituted by a first part and a second part hinged to one another ("male" part and "female” part), and each connected to the internal end of a relative jaw.
  • the joint enables the jaw to move from an open configuration into a closed configuration, and vice versa, for engaging or disengaging, with the relative pins, corresponding holes made in a ski boot.
  • the toe-piece further comprises a main lever, hinged to the plate according to an axis perpendicular to the hinge axes of the jaws with the plate.
  • An end of the main lever is fork-shaped, for receiving the joint in the recess of the fork.
  • the toe-piece further comprises a safety lever, fork-hinged to the main lever on the opposite part with respect to the fork-shaped end.
  • the safety lever is hinged with respect to an axis that is parallel to the hinge axis of the main lever with the plate.
  • the toe-piece for Alpine skiing described above has however some drawbacks.
  • the joint of the toe-piece of known type comprises: a large number of components cooperating for functioning of the toe-piece: this involves a very complicated assembly of the toe-piece, as well as difficult cleaning/maintenance/replacement operations of the relative components in case of necessity.
  • the final user further encounters a practical disadvantage, as the plurality of components of the toe-piece determine a considerable weight thereof. This is a determining factor, in particular in the ambit of sporting competitions: in this specific sector the market demands ever-lighter toe-pieces.
  • Document EP 2.489.415 discloses a toe piece for touring binding according to the preamble of claim 1.
  • the aim of the present invention is to obviate the above-mentioned drawbacks.
  • the toe-piece of the invention is advantageously structurally simpler than the known toe-pieces: for this reason there are not only shorter times and lower costs for assembly and maintenance, but also in terms of overall weight, which is modest. This responds very well indeed to market demands.
  • reference numeral (1) denotes a toe-piece for Alpine skiing according to the invention.
  • the toe-piece (1) of the invention in all three possible non-limiting embodiments illustrated in the figures, comprises: a plate (2) fixable to a ski; a first jaw (3) and a second jaw (4), arranged on the plate (2) in such a way as to be opposite one another and each comprising an external end (30, 40) provided with a pin (33, 43) for engaging a hole of a ski boot;
  • the toe-piece (1) according to the invention has the second jaw (4) solidly constrained to the plate (2); therefore the second jaw (4) is fixed with respect to the plate (2).
  • the second jaw (4) might not be in a single piece with the plate but can be rigidly fixed thereto, so that the second jaw (4) is fixed with respect to the plate (2).
  • the first jaw (3) is hinged to the plate (2) at the relative internal end (31) with respect to an axis (H) that is perpendicular to the vertical plane containing the axes of the pins.
  • the first jaw (3) is mobile between a first position (P1), wherein the first jaw (3) and the second jaw are in an open configuration and the relative pins (33, 43) disengage from the corresponding hole of the ski boot; and a second position (P2) wherein the first jaw (3) and the second jaw are in a closed configuration and the relative pins (33, 43) can engage the corresponding hole of the ski boot.
  • the fact that the second jaw (4) is solidly fixed to the plate (2) advantageously enables a limited number of components for the toe-piece (1), which also has a particularly light weight with respect to known toe-pieces. This is also due to the fact that the toe-piece (1) is lacking the joint present in the prior art mentioned in the preamble.
  • the toe-piece (1) of the invention also comprises first elastic means (5), associated to the first jaw (3), in particular the toe-piece (1) comprises an abutting element (6) constrained to the plate (2) and the first elastic means (5) are interposed between the abutting element (6) and the internal end (31) of the first jaw (3).
  • the toe-piece (1) further comprises stabilising means (70, 71, 72, 9, 90, 11) configured so as to assume, when the first jaw (3) is placed in the second position (P2), i.e.
  • the stabilising means (70, 71, 72) comprise: an undercut (70), fashioned at an edge of the first portion (32) of the internal end (31) of the first jaw (3); and a slide (71).
  • the slide (71), comprises an abutting portion (7) which, when the slide (71) is in the relative first configuration (S1) of the stabilising means and the first jaw (3) is in the relative closed configuration (second position (P2)), is arranged at the undercut (70) of the first jaw (3), enabling oscillation thereof about the hinge axis (H) with the plate (2) (therefore without contacting the internal end (31) of the first jaw (3)) (see in particular figures 1-3 ).
  • the slide (71) is mobile along a parallel direction to the hinge axis of the first jaw (3) with the plate (2) (see in particular figures 1 , 4 , 7 ).
  • first configuration (S1) of the stabilising means is predisposed when the skier is about to commence a descent: in fact, since the oscillation of the first jaw (3) is enabled, as mentioned above, in opposition to the first elastic means (5), the pins (33, 43) of the first jaw (3) and the second jaw (4) are able to disengage the corresponding holes of the ski boot in a case of stress (for example if the skier falls).
  • This configuration (second configuration (S2) of the stabilising means) is predisposed when the skier is about to commence an uphill tract: in fact, in this situation, the skier is constrained to the ski only with the front part of the ski boot, fixed to the toe-piece (1) so as to enable raising of the heel from the ski for carrying out the uphill climb. Therefore, the pins (33, 43) of the first jaw (3) and the second jaw (4) must in no case disengage from the corresponding holes of the ski boots.
  • the stabilising means (70, 71, 72) comprise second elastic means (72), associated to the slide (71) (so as to maintain it in the relative second configuration) (visible in figures 3 , 6 , 9 ).
  • the toe-piece (1) can further comprise an activating lever (8), hinged to the slide (71) according to an axis (Y) that is perpendicular to the hinge axis (H) of the first jaw (3) with the plate (2), and mobile between a raised position (see for example figures 1 and 2 ) in which the slide (71) is in the relative first configuration (S1) of the stabilising means and in a lowered position ( figures 4, 5 ) in which the slide (71) is brought into the relative second configuration (S2) of the stabilising means, and vice versa.
  • an activating lever (8) hinged to the slide (71) according to an axis (Y) that is perpendicular to the hinge axis (H) of the first jaw (3) with the plate (2), and mobile between a raised position (see for example figures 1 and 2 ) in which the slide (71) is in the relative first configuration (S1) of the stabilising means and in a lowered position ( figures 4, 5 ) in which the slide (71) is brought into the relative second configuration (S2) of the stabilising means
  • the skier can predispose the toe-piece (1) for an ascent or a descent.
  • the activating lever (8) is in the relative raised position, but the abutting portion (7) of the slide (71) does not interfere in any way with the undercut (70) of the internal end (31) of the first jaw (3), because of the configuration of the first jaw (3) (see in particular figure 7 ).
  • the first elastic means (5) keep the first jaw (3) in the relative first position.
  • the stabilising means (9, 90) comprise a blocking lever (90) flanked to the first jaw (3) and hinged to the plate (2) according to an axis (Z) parallel to the hinge axis (H) of the first jaw (3) with the plate (2).
  • the blocking lever (90) comprises an appendage (901) arranged and conformed so that when the blocking lever (90) is in the relative first configuration (S1) of the stabilising means and the first jaw (3) is in the relative closed configuration (second position (P2)), the appendage (901) does not interfere with the internal end (31) of the first jaw (3), enabling oscillation of the first jaw (3) about the hinge axis (H) with the plate (2) about the hinge axis (H) with the plate (2) (see figure 11 ).
  • the appendage (901) interferes with the internal end (31) of the first jaw (3), blocking oscillation of the first jaw (3) about the hinge axis (H) with the plate (2) about the hinge axis (H) with the plate (2) (see the detail of figure 14 ).
  • This configuration (second configuration (S2) of the stabilising means) is predisposed when the skier has to make an ascent, and the pins (33, 34) of the first jaw (3) and the second jaw (4) must not disengage the holes of the ski boots (as explained for the first embodiment described in the foregoing).
  • the appendage (901) is arranged between the internal end (31) of the first jaw (3) and an abutting element (250), fixed to the plate (2), contacting both of them (see figure 14 ).
  • the blocking lever (90) is further mobile in a third configuration so that when the first jaw (3) is in the relative open configuration (first position (P1)), the appendage (901) does not interfere with the internal end (31) of the first jaw (17) (and therefore the pins (33, 34 do not engage the holes of the ski boots) (see figures 16, 17 ).
  • the stabilising means (9, 90) can further comprise a protuberance (9), solidly constrained to the first jaw (3); and the blocking lever (90) can comprise an edge (B) provided with at least a seating (91, 92) (see figure 17 in detail).
  • a protuberance (9), solidly constrained to the first jaw (3) and the blocking lever (90) can comprise an edge (B) provided with at least a seating (91, 92) (see figure 17 in detail).
  • two seatings are provided, a first seating (91) and a second seating (92).
  • the blocking lever (90) when the blocking lever (90) is in the relative first configuration (first configuration (S1) of the stabilising means) and the first jaw (3) is in the relative closed configuration (second position (P2)) (descent configuration), the first seating (91) is engaged by the protuberance (9): thus the blocking lever (90) is stabilised, without however obstructing the oscillation of the first jaw (3) about the hinge axis (H) with the plate (2) (see figures 10-12 ) when stress on the plate overcomes the action of the elastic means.
  • the blocking lever (90) When, on the other hand, the blocking lever (90) is in the relative second configuration (second configuration (S2) of the stabilising means) and the first jaw (3) is in the relative closed configuration (second position (P2)) (ascent configuration), the second seating (92) is engaged by the protuberance (9), stabilising the position of the blocking lever (90).
  • the blocking of the first jaw (3) is optimised, as it can therefore not oscillate about the hinge axis (H) with the plate (2) (see figures 13-15 ).
  • the internal end (31) of the first jaw (3) can have a semi-circular section (clearly visible in figures 12 , 15 , 18 ).
  • the toe-piece (1) further comprises a connecting arm (95) which: exhibits a first end (93) coupled to the internal end (31) of the first jaw (3) and complementary thereto so as to enable movement thereof; and exhibits a second end (94) which bears the first elastic means (5).
  • the abutting element (6) forms a housing (60) for receiving internally thereof the first elastic means (5) and the second end (94) of the connecting arm (95), and is hinged to the plate (2) according to an axis parallel to the hinge axis (H) of the first jaw (3) with the plate (2).
  • the skier acts directly on the blocking lever (90) for predisposing the toe-piece (1) for an ascent or for a descent, or to open it.
  • the toe-piece (1) of the invention is also such that the internal end (31) of the first jaw (3) has a semi-circular section (visible in figures, 21 , 25 , 29 ).
  • the toe-piece (1) further comprises a connecting arm (95) which: exhibits a first end (93) coupled to the internal end (31) of the first jaw (3) and complementary thereto so as to enable movement thereof; and exhibits a second end (94) which bears the first elastic means (5).
  • the abutting element (6) forms a housing (60) for receiving internally thereof the first elastic means (5) and the second end (94) of the connecting arm (95), and is hinged to the plate (2) according to an axis parallel to the hinge axis (H) of the first jaw (3) with the plate (2).
  • the second position (P2) of the first jaw (3) is illustrated (closed configuration of the jaws, for engaging to the ski boot) obtained following a rotation of the first jaw (3) with respect to the plate (2) about the hinge axis (H) thereof, in an anticlockwise rotation direction seen in figures 25 and 26 with respect to figure 21 , where the abutting element (6) is rotated towards the base (clockwise direction) about the hinge axis thereof.
  • the reciprocal rotation between the first jaw (3) and the abutting element (6) is made possible by the semi-circular shape of the internal end (31) of the first jaw (3), which is coupled complementarily and movably, as mentioned above, to the first end (93) of the connecting arm (95).
  • the stabilising means (11) comprise a manoeuvring lever (110), hinged to the plate (2) so as to be arranged in a plane parallel to the hinge axis (H) of the first jaw (3), i.e. the manoeuvring lever (110) is hinged to the plate (2) along a hinge axis (W) that is parallel to the movement plane of the first jaw (3) and is parallel to the plate (2).
  • the manoeuvring lever (110) is hinged to the plate (2) in such a way as to have a first end (111) facing towards inside the plate (2) and a second end (112) facing externally and frontally with respect to the plate (2) when the plate (2) is fixed to the ski.
  • the stabilising means (11), in this third embodiment of the toe-piece (1), further comprise a seating (113), realised in the first end (93) of the connecting arm (95) with the manoeuvring lever (110) which is arranged and hinged to the plate (2) in such a way that the relative first end (111) is arranged and inserted internally of the seating (113).
  • the stabilising means (11) further comprise an appendage (118), in a single piece with the plate (2) and projecting frontally of the plate (2) below the manoeuvring lever, and a command lever (115) which is hinged to the second end (112) of the manoeuvring lever (110) for stabilising and blocking the position of the manoeuvring lever (110) so as to obtain the second configuration (S2) of the stabilising means.
  • the command lever (115) is hinged to the manoeuvring lever (110) so as to exhibit a first external arm (116) and a second internal arm (117) which at a lower end thereof bears a rolling element (119), such as for example a small wheel, predisposed to roll on the appendage (118) when the command lever (115) is rotated with respect to the manoeuvring lever (110),
  • a rolling element such as for example a small wheel
  • the appendage (118) has a housing (120) having a complementary shape to the rolling element (119) realised in a position such that when the rolling element (119) inserts in the housing (120), the rotation of the command lever (115) is blocked with respect to the manoeuvring lever (110) and consequently the position of the manoeuvring lever (110) is stabilised and blocked and the position of the first jaw (3) is blocked (second configuration (S2) of the stabilising means, see figure 30 ).
  • the first elastic means (5) stabilise this configuration ( figure 21 ).
  • the rolling element (119) is rolled along the appendage (118) distancing it from the plate (2), forcing the manoeuvring lever (110) to rotate about the hinge axis thereof (W) so that the first end (111), situated in the seating (113) of the first end (93) of the connecting arm (95), is lowered (see figure 26 ).
  • the first elastic means (5) stabilise this configuration ( figures 25 and 29 ).
  • the rolling element (119) is not yet inserted in the housing (120) present in the appendage (118), and the stabilising means (11) are in the first configuration (S1), i.e. they stabilise the first jaw (3) so that the pins removably engage the holes of the ski boot, for the descent position, enabling the disengaging of the ski boot if the skier should fall.
  • the command lever (115) By further pulling the second arm (116) of the command lever (115) upwards ( figure 30 ), the command lever (115) is rotated with respect to the manoeuvring lever (110) so that the rolling element (119) further distances from the plate (2) up to when it inserts into the housing (120), blocking any other rotation of the command lever (115).
  • the rolling element (119) is inserted in the housing (120) present in the appendage (118), and the stabilising means (11) are in the second configuration (S2), i.e. they stabilise and block the position of the first jaw (3) so that the pins unremovably engage the holes of the ski boot, for the ascent position, blocking any oscillation and/or rotation of the first jaw (3) with respect to the plate (2).

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

Claims (11)

  1. Vorderbacken (1) für eine Alpinskibindung, Folgendes beinhaltend:
    eine Platte (2), die an einem Ski befestigt werden kann; eine erste Backe (3) und eine zweite Backe (4), die derart auf der Platte (2) angeordnet sind, dass sie einander gegenüberliegen, und die jeweils ein äußeres Ende (30, 40) beinhalten, das einen Dorn (33, 43) aufweist, der für den Eingriff mit einem Loch eines Skischuhs vorgesehen ist;
    wobei ein inneres Ende (41) der zweiten Backe (4) fest mit der Platte (2) verbunden ist, so dass die zweite Backe (4) in Bezug auf die Platte (2) fixiert ist;
    und die erste Backe (3) an dem entsprechenden inneren Ende (31) scharnierbeweglich um eine Achse (H) an der Platte (2) angelenkt ist, so dass sie beweglich ist zwischen einer ersten Position (P1), in der sich die erste Backe (3) und die zweite Backe (4) in einer geöffneten Konfiguration befinden und die entsprechenden Dorne (33, 43) nicht in Eingriff mit dem entsprechenden Loch des Skischuhs stehen; und einer zweiten Position (P2), in der sich die erste Backe (3) und die zweite Backe (4) in einer geschlossenen Konfiguration befinden und die entsprechenden Dorne (33, 43) mit dem entsprechenden Loch des Skischuhs in Eingriff treten können; und ferner beinhaltend erste elastische Mittel (5), die mit der ersten Backe (3) verbunden sind, dadurch gekennzeichnet, dass die erste Backe (3) an dem entsprechenden inneren Ende (31) scharnierbeweglich um eine Achse (H), die orthogonal zu der vertikalen Ebene ist, welche die Achsen der Dorne enthält, an der Platte (2) angelenkt ist, und dadurch, dass er ferner ein Anschlagelement (6) beinhaltet, das an der Platte (2) festgelegt ist; wobei die ersten elastischen Mittel (5) zwischen dem Anschlagelement (6) und dem inneren Ende (31) der ersten Backe (3) angeordnet sind.
  2. Vorderbacken (1) nach dem vorhergehenden Anspruch, wobei das innere Ende (31) der ersten Backe (3) einen halbkreisförmigen Querschnitt aufweist; der Vorderbacken ferner beinhaltend einen Verbindungsarm (95), der: ein erstes Ende (93) aufweist, das mit dem inneren Ende (31) der ersten Backe (3) gekoppelt und komplementär dazu ist, um dessen Bewegung zu ermöglichen; und ein zweites Ende (94) aufweist, das die ersten elastischen Mittel (5) trägt; und wobei das Anschlagelement (6): scharnierbeweglich um eine zu der Scharnierachse (H) zwischen der ersten Backe (3) und der Platte (2) parallelen Achse an der Platte (2) angelenkt ist; ein Gehäuse (60) bildet, um die ersten elastischen Mittel (5) und das zweite Ende (94) des Verbindungsarms (95) darin aufzunehmen.
  3. Vorderbacken (1) nach Anspruch 1 oder 2, ferner beinhaltend Stabilisierungsmittel (70, 71, 72, 9, 90, 11), die dafür ausgelegt sind, Folgendes einzunehmen: eine erste Konfiguration (S1), in der sie die erste Backe (3) in der entsprechenden geschlossenen Konfiguration stabilisieren, so dass die Dorne (33, 43) der ersten Backe (3) und der zweiten Backe (4) lösbar mit dem entsprechenden Loch des Skischuhs in Eingriff gelangen können; und eine zweite Konfiguration (S2) einzunehmen, in der sie die erste Backe (3) in der entsprechenden geschlossenen Konfiguration stabilisieren, so dass die Dorne (33, 43) der ersten Backe (3) und der zweiten Backe (4) unlösbar mit dem entsprechenden Loch des Skischuhs in Eingriff gelangen können.
  4. Vorderbacken (1) nach den Ansprüchen 1 und 3, wobei die Stabilisierungsmittel (70, 71, 72) Folgendes beinhalten: eine Aussparung (70), die an einer Kante des ersten Abschnitts (32) des inneren Endes (31) der ersten Backe (3) angefertigt ist; und einen Schlitten (71), der einen Anschlagabschnitt (7) aufweist, der, wenn der Schlitten (71) die entsprechende erste Konfiguration einnimmt und die erste Backe (3) die entsprechende geschlossene Konfiguration einnimmt, in der Aussparung (70) der ersten Backe (3) angeordnet ist, so dass deren Schwenkung um die Scharnierachse (H) mit der Platte (2) ermöglicht wird; und wobei er, wenn der Schlitten (71) die entsprechende zweite Konfiguration einnimmt und die erste Backe (3) die entsprechende geschlossene Konfiguration einnimmt, einen zweiten Abschnitt (34) des inneren Endes (31) der ersten Backe (3) berührt, an dem keine Aussparung (70) vorhanden ist, so dass deren Schwenkung um die Scharnierachse (H) mit der Platte (2) blockiert wird;
    wobei die Stabilisierungsmittel (70, 71, 72) ferner zweite elastische Mittel (72) beinhalten, die mit dem Schlitten (71) verbunden sind.
  5. Vorderbacken (1) nach dem vorhergehenden Anspruch, wobei der Schlitten (71) entlang einer Richtung parallel zu der Scharnierachse zwischen der ersten Backe (3) und der Platte (2) beweglich ist.
  6. Vorderbacken (1) nach Anspruch 4 oder 5, ferner beinhaltend einen Betätigungshebel (8), der scharnierbeweglich um eine Achse (Y), die orthogonal zu der Scharnierachse (H) zwischen der ersten Backe (3) und der Platte (2) ist, an dem Schlitten (71) angelenkt ist und beweglich ist zwischen einer angehobenen Stellung, in der der Schlitten (71) die entsprechende erste Konfiguration einnimmt, und einer abgesenkten Stellung, in der der Schlitten (71) in die entsprechende zweite Konfiguration gebracht wird, und umgekehrt.
  7. Vorderbacken (1) nach den Ansprüchen 2 und 3, wobei die Stabilisierungsmittel (9, 90) Folgendes beinhalten: einen Spannhebel (90), der seitlich neben der ersten Backe (3) angeordnet, scharnierbeweglich um eine zur Scharnierachse (H) zwischen der ersten Backe (3) und der Platte (2) parallele Achse (Z) an der Platte (2) angelenkt ist, und einen Fortsatz (901) beinhaltet, der so angeordnet und ausgelegt ist, dass, wenn der Spannhebel (90) die entsprechende erste Konfiguration einnimmt und die erste Backe (3) die entsprechende geschlossene Konfiguration einnimmt, der Fortsatz (901) die Schwenkung der ersten Backe (3) um die Scharnierachse (H) mit der Platte (2) ermöglicht; und wobei, wenn der Spannhebel (90) die entsprechende zweite Konfiguration einnimmt und die erste Backe (3) die entsprechende geschlossene Konfiguration einnimmt, der Fortsatz (901) mit dem inneren Ende (31) der ersten Backe (3) interferiert und somit die Schwenkung der ersten Backe (3) um die Scharnierachse (H) mit der Platte (2) blockiert.
  8. Vorderbacken (1) nach dem vorhergehenden Anspruch, wobei die Stabilisierungsmittel (9, 90) ferner einen Vorsprung (9) beinhalten, der fest mit der ersten Backe (3) verbunden ist; und wobei der Spannhebel (90) eine Kante (B) beinhaltet, die zumindest eine Aufnahme (91, 92) aufweist; wobei, wenn der Spannhebel (90) die entsprechende erste Konfiguration einnimmt und die erste Backe (3) die entsprechende geschlossene Konfiguration einnimmt, die Aufnahme (91, 92) mit dem Vorsprung (9) in Eingriff tritt und den Spannhebel (90) stabilisiert, so dass die Schwenkung der ersten Backe (3) um die Scharnierachse (H) mit der Platte (2) ermöglicht wird; und wenn der Spannhebel (90) die entsprechende zweite Konfiguration einnimmt und die erste Backe (3) die entsprechende geschlossene Konfiguration einnimmt, die Aufnahme (91, 92) mit dem Vorsprung (9) in Eingriff tritt und den Spannhebel (90) stabilisiert, und somit dazu beiträgt, die Schwenkung der ersten Backe (3) um die Scharnierachse (H) mit der Platte (2) zu blockieren.
  9. Vorderbacken (1) nach dem vorhergehenden Anspruch, wobei der Spannhebel (90) ferner in eine dritte Konfiguration bewegt werden kann, so dass, wenn die erste Backe (3) die entsprechende geöffnete Position einnimmt, der Vorsprung (9) nicht mit der Aufnahme (91, 92) in Eingriff tritt und der Fortsatz (901) nicht mit dem inneren Ende (31) der ersten Backe (3) interferiert.
  10. Vorderbacken (1) nach Anspruch 2 und 3, wobei die Stabilisierungsmittel (11) Folgendes beinhalten:
    einen Bedienhebel (110), der scharnierbeweglich an der Platte (2) angelenkt ist, um in einer Ebene parallel zur Scharnierachse (H) der ersten Backe (3) angeordnet zu werden, d.h. der Bedienhebel (110) ist entlang einer Scharnierachse (W) an der Platte (2) angelenkt, die parallel zu der Bewegungsebene der ersten Backe (3) und parallel zu der Platte (2) ist, wobei der Bedienhebel (110) derart scharnierbeweglich an der Platte (2) angelenkt ist, dass ein erstes Ende (111) innerhalb der Platte (2) weist und ein zweites Ende (112) außerhalb und frontal in Bezug auf die Platte (2) weist, wenn die Platte (2) am Ski befestigt ist;
    eine Aufnahme (113), die in dem ersten Ende (93) des Verbindungsarms (95) verwirklicht ist, wobei der Bedienhebel (110) derart angeordnet und scharnierbeweglich an der Platte (2) angelenkt ist, dass das entsprechende erste Ende (111) innerhalb der Aufnahme (113) angeordnet und in diese eingeführt ist;
    und einen Steuerhebel (115), der scharnierbeweglich an dem zweiten Ende (112) des Bedienhebels (110) angelenkt ist, um die Position des Bedienhebels (110) zu stabilisieren und zu blockieren, so dass die zweite Konfiguration (S2) der Stabilisierungsmittel erhalten wird.
  11. Vorderbacken (1) nach dem vorhergehenden Anspruch, wobei die Stabilisierungsmittel (11) ferner einen Fortsatz (118) beinhalten, der einteilig mit der Platte (2) ausgeführt ist und der frontal von der Platte (2) unter dem Bedienhebel (110) hervorragt, wobei der Steuerhebel (115) scharnierbeweglich an dem Bedienhebel (110) angelenkt ist, so dass er einen ersten äußeren Arm (116) und einen zweiten inneren Arm (117) aufweist, der an einem unteren Ende davon ein Rollelement (119) trägt, das dafür ausgelegt ist, auf dem Fortsatz (118) zu rollen, wenn der Steuerhebel (115) relativ zu dem Bedienhebel (110) gedreht wird, und wobei der Fortsatz (118) eine Aufnahme (120) aufweist, deren Form komplementär zu der Form des Rollelements (119) ist, und die in einer solchen Position verwirklicht ist, dass, wenn das Rollelement (119) in die Aufnahme (120) eintritt, die Drehung des Steuerhebels (115) relativ zu dem Bedienhebel (110) blockiert ist und demzufolge die Position des Bedienhebels (110) und die Position der ersten Backe (3) stabilisiert und blockiert werden, um die zweite Konfiguration (S2) der Stabilisierungsmittel zu erhalten.
EP16151206.6A 2015-01-30 2016-01-14 Vorderbacken einer alpinskibindung Active EP3050601B1 (de)

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ITTO20110075A1 (it) * 2011-01-31 2012-08-01 Marco Rigat Puntale di sicurezza per attacco da sci alpinismo.
FR2991592B1 (fr) * 2012-06-12 2016-08-26 Rossignol Sa Butee a declenchement automatique en torsion
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