EP4228776A1 - Dispositif de verrouillage d'une fixation à une planche des neiges comprenant un levier de blocage pivotant - Google Patents
Dispositif de verrouillage d'une fixation à une planche des neiges comprenant un levier de blocage pivotantInfo
- Publication number
- EP4228776A1 EP4228776A1 EP21823795.6A EP21823795A EP4228776A1 EP 4228776 A1 EP4228776 A1 EP 4228776A1 EP 21823795 A EP21823795 A EP 21823795A EP 4228776 A1 EP4228776 A1 EP 4228776A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- base
- lever
- locking
- axial direction
- opening
- 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
Links
Classifications
-
- A—HUMAN NECESSITIES
- A63—SPORTS; GAMES; AMUSEMENTS
- A63C—SKATES; SKIS; ROLLER SKATES; DESIGN OR LAYOUT OF COURTS, RINKS OR THE LIKE
- A63C10/00—Snowboard bindings
- A63C10/16—Systems for adjusting the direction or position of the bindings
- A63C10/18—Systems for adjusting the direction or position of the bindings about a vertical rotation axis relative to the board
Definitions
- the invention relates to a device for locking a binding to a snowboard, more particularly comprising a disc, a base of which is fixed to the snowboard and housed in an opening of a base of the fixing, locking means, movable with respect to the base, from a locking position, in which they lock the base in an axial direction of the disc by overlapping the opening, to an unlocking position, in which they fit into the opening and a clamping means, for exerting, in the blocking position, a clamping force on the base via the blocking means, in any angular position of the base relative in the axial direction.
- a device of this type is disclosed by document FR 2 829034, according to which the locking means comprise two bolts, guided in translation relative to the base of the disc, from the unlocking position to the locking position. cage.
- the overlap in the locking position comprises a surface, inclined with respect to the axial direction, formed at one end of each bolt and intended to cooperate by complementarity, with an inclined surface formed on the periphery of the opening of the base .
- the bolts are controlled in opposite directions by a pinion or a cam of the clamping means, to transmit the clamping force to the base via the complementary inclined surfaces.
- cylindrical teeth are formed on the base of the disc, the teeth extending in the axial direction.
- the base is inserted in the axial direction in a complementary toothing, formed on the periphery of the opening of the base.
- the document FR 2 627097 discloses a device of a different type in that, in the blocking position, the two bolts block the base in rotation around an axial direction of the disc, by means of a toothing formed at the end of each bolt, complementary to a cylindrical toothing of the opening.
- the bolts make it possible to unlock the binding, to rotate it around the axial direction, in a new angular position.
- the bolts are controlled in translation in opposite directions, by a lever of the clamping means, articulated to one of the bolts.
- the object of the invention is to provide an alternative to this locking device.
- the subject of the invention is a device for locking a binding to a snowboard, comprising a disc, a base of which is fixed to the snowboard and housed in an opening of a base of the attachment, locking means, movable with respect to the base, from a locking position, in which they lock the base in an axial direction of the disc by overlapping the opening, to an unlocking position, in which they fit into the opening and a clamping means, for exerting, in the blocking position, a clamping force on the base via the blocking means, in any angular position of the base by relative to the axial direction, characterized in that the locking means comprise a lever, hinged to the base of the disc, pivoting from the unlocking position, in which the lever fits into the opening of the base, the blocking position, in which the lever is controlled in rotation ion by the clamping means, to transmit the clamping force to the base.
- the lever In the blocking position, the lever blocks any axial movement of the base and transmits the clamping force in the manner of a jaw by biting on the opening, while in the unlocking position, it releases the binding to remove it from the snowboard, by passing the lever through the base opening. In this position, the lever also allows you to modify the angular position of the base in relation to the snowboard.
- the pivoting lever carries a set of teeth whose teeth extend along a radius of curvature of the lever.
- the lever In the locking position, the lever can thus reproduce the toothing of an ordinary removable fixing disc, for which the teeth protrude in a plane perpendicular to the axial direction of the disc, so that the device is suitable for any standard fixing , for which the complementary toothing, formed on the periphery of the opening, also extends perpendicularly to the axial direction of the opening.
- the teeth of the lever can be inclined with respect to the axial direction of the disc, forming a conical crown centered on the axial direction. The same applies to the complementary toothing formed in the opening of the base.
- the locking means may comprise a second lever, the two pivoting levers from the unlocking position to the locking position, about two pivot axes carried by the base of the disc and parallel to each other.
- the locking means may also comprise a second and a third lever, the three levers pivoting from the unlocking position to the locking position, about three pivot axes carried by the base of the disc, perpendicular to three secant planes, making between them an angle preferably equal to 120°.
- the clamping means may comprise a lever, articulated at the base of the disc, about a pivot axis, engaged in grooves formed in the base, to slide relative to the base and exert, in the position of blocking, the force of clamping via the pivot axis engaged with a heel of the lever.
- the clamping means may also comprise two bolts, controlled in translation with respect to the base by a cam, movable in rotation around the axial direction, to exert, in the blocking position, the clamping force by means of one heel of each of the two levers, in engagement with the two bolts.
- the clamping means may further comprise a clamping ring, movable in rotation around the axial direction, to exert, in the locking position, the clamping force by means of a bearing surface engaged with a complementary bearing surface of one and the other lever, the two por tees forming a helical thread.
- the clamping means may further comprise a clamping ring, rotatable around the axial direction, to exert, in the locking position, the clamping force by means of a radial arm or a tangential notch engaging with a lug of the lever.
- [0015] has an inclination with respect to the axial direction.
- FIG.1 is a view of a first embodiment of the invention, in an unlocking position of a pivoting lever.
- FIG. 2 is a view of the first embodiment of the invention, in a locking position of a pivoting lever.
- FIG. 3 is a sectional view of the first embodiment of the invention, in the locking position of the pivoting lever.
- FIG. 4 is a view of a variant of the first embodiment of the invention, in the unlocking position of the pivoting lever.
- FIG. 5 is a view of the variant of the first embodiment of the invention, in the locking position of the pivoting lever.
- FIG. 6 is a sectional view of the variant of the first embodiment of the invention, in the locking position of the pivoting lever.
- FIG. 7 is an exploded view of a second embodiment of the invention, in a locking position of two pivoting levers.
- FIG. 8 is a sectional view of the second embodiment of the invention, in the locking position of the two pivoting levers.
- FIG. 9 is a perspective view of a first variant of the second embodiment of the invention, the two pivoting levers being in the release position.
- FIG. 10 is a top view of the first variant of the second embodiment of the invention, the two pivoting levers being in the locking position.
- FIG. 11 is a sectional view of the first variant of the second embodiment, the two pivoting levers being in the release position.
- FIG. 12 is a sectional view of the first variant of the second embodiment, the two pivoting levers being in the locking position.
- FIG. 13 is a side view of the first variant of the second embodiment of the invention, the two pivoting levers being in the unlocked position.
- FIG. 14 is a top view of a second variant of the second embodiment of the invention, the two pivoting levers being in the locking position, before tightening.
- FIG. 15 is a top view of the second variant of the second embodiment of the invention, the two pivoting levers being in the locking position, after tightening.
- FIG. 16 is a sectional view of the second variant of the second embodiment of the invention, the two pivoting levers being in the locking position, after tightening.
- FIG. 17 is a top view of a third embodiment of the invention, three pivoting levers being in an unlocked position.
- FIG. 18 is a perspective view of the third embodiment of the invention, the three pivoting levers being in a locking position.
- FIG. 19 is a sectional view of the third embodiment of the invention, the three levers being in the locking position.
- FIG. 20 is a perspective view of a variant of the third embodiment of the invention, the three levers being in the locking position.
- FIG. 21 is a perspective view of the variant of the third embodiment of the invention, the three pivoting levers being in an unlocked position.
- FIG. 22 is a sectional view of the variant of the third embodiment of the invention, the three levers being in the locking position.
- a device for locking a binding to a snowboard comprises a disc 1, a base 3 of which is fixed to the snowboard 5 and housed in an opening 7 of a base 9 of the binding.
- a lever 11 is hinged to the base 3 of the disc 1, to pivot from an unlocking position, Fig. 1, in which the lever 11 fits into the opening 7 of the base 9, in a locking position, FIG. 2, in which the lever 11 overlaps the opening 7 and is controlled in rotation by a clamping screw 13, to transmit a clamping force on the base 9, in any angular position of the base 9 with respect to the axial direction A of disc 1.
- the base 3 of the disc 1 is fixed to the snowboard 5 by screws 15.
- the lever 11 pivots around an axis of rotation RI carried by the base 3 of the disc 1, in a plane perpendicular to the axial direction A.
- the overlap in the locking position is ensured by a shoulder 17, formed on a circular periphery 19 of the lever 11 and cooperating by complementarity, with a shoulder 21, formed on the circular periphery of the opening 7 of the base 9.
- the circular periphery 19 of the lever 11 is truncated along truncations 23 to fit into the opening 7 in the unlocked position.
- the lever 11 comprises a housing 14 to receive the base 3 of the disc 1 in the blocking position.
- the lever 11 blocks the base 9 in the axial direction A of the disc 1 and transmits the clamping force in the manner of a jaw, biting on the opening 7, while in the unlocking position, it allows the binding to be unlocked in order to remove it from the snowboard 5, by passing the lever 11 through the opening 7 of the base 9.
- the clamping force can be transmitted via an elastomeric seal 25 arranged on one of the two shoulders 17, 21 which overlap in the locking position.
- the shoulders 17, 21 can be provided with a rough relief.
- FIGs 4 to 6 illustrate a variant of the first embodiment of the invention, which is distinguished by the clamping means.
- the latter comprises an operating lever 27, articulated to the base 3 of the disc 1 by a pivot axis 29.
- the operating lever 27 forms a toggle joint with a follower lever 33 to which it is articulated by an articulation axis 35, the follower lever 33 being itself articulated to the base 3 of the disc 1, around a pivot axis 31, engaged in grooves 37 formed in the base 3, to slide in a direction D perpendicular to the axis of RI rotation of the lever 11 of the locking means.
- the toggle In the unlocked position, FIG. 4, the toggle is open, the operating lever 27 and the follower lever 33 being raised relative to the base 3 of the disc 1.
- the housing 14 of the lever 11 provided to receive the base 3 of the disc 1 in the locking position , is here open to allow the lever to pivot in this position, without exerting any force on the operating lever 27 and the follower lever 33, in their raised position.
- the operating lever 27 is lowered into a housing 28 of the base 3 of the disc 1, by sliding of the pivot pin 31 in the grooves 37.
- the pivot pin 31 comes into engagement with a heel 39 of the lever 11 to control it in rotation around the axis RI, preferably, in proportion to a slope 41 formed on the heel 39.
- the slope 41 allows the lever 11 to transmit the tightening force more progressively, as the operating lever 27 is lowered into the closed position of the g nouillère.
- the clamping force reaches a maximum when the hinge pin 35 crosses the plane passing through the pivot pin 31, engaged in the grooves 37, and the pivot pin 29 , to lock the knee lever in the open position.
- FIGs 7 and 8 illustrate a second embodiment of the invention, in which the locking means comprise a second lever 10, analogous to the first lever 11 described above.
- the two levers 10, 11 pivot in opposite directions, from the unlocking position to the locking position, around two pivot axes R0, RI carried by the base 3 of the disc 1 and parallel to each other, in a plane perpendicular to the axial direction A.
- the latter are provided with teeth 43 forming a gear.
- the housing 14 of each lever 10, 11, provided to receive the base 3 of the disc 1 in the locking position, is here open to accommodate the clamping means.
- the latter comprises a clamping ring 45, rotatable around the axial direction A of the base 3 of the disc 1.
- the clamping ring 45 is pinched on the base 3 of the disc 1 via a lip 47 opposite a shoulder 49.
- the first and second levers 10, 11 are engaged by a helical thread, comprising a bearing surface 51 formed in the clamping ring 45 and a complementary bearing surface 52, formed in one and the other lever 10, 11, in a wall of their housing 14, in opposition to the circular periphery 19 of each lever.
- the clamping ring 45 In the unlocked position, the complementary bearing surfaces 51, 52 are disengaged with respect to each other.
- the clamping ring 45 is turned around the axial di rection A, to engage the bearing surfaces 51, 52 following the helical screw pitch.
- the clamping ring 45 controls the levers 10, 11 in rotation around their pivot axis R0, RI so that they transmit the clamping force on the opening 7 of the base 9 by through the overlap of the shoulders 17, 21.
- a washer, 53 arranged between the lip 47 and the base 3 of the disc 1 to facilitate the rotation of the ring of tightening 45.
- This second embodiment with two levers offers a greater overlapping area than that of the first mode and a symmetrical distribution of the tightening force, on the periphery of the opening of the base.
- FIG. 9 to 13 illustrate a first variant of the second embodiment of the invention, which is distinguished by another clamping means.
- This is again a toggle joint comparable to that described above, but adapted to the two levers 10, 11.
- the operating lever 27 is also articulated at the base 3 of the disc 1, by a pivot axis 29 engaged in the grooves 37 formed in the base 3, to slide, in the opposite direction to the slide ment of the follower lever 33, in the direction D perpendicular to the pivot axes R0, RI of the levers 10, 11.
- the toggle In the unlocking position, FIG. 9 and 11, the toggle is open, the operating lever 27 and the follower lever 33 being raised relative to the base 3 of the disc 1.
- each lever 10, 11 provided to receive the base 3 of the disc 1 in the locked position, is here open to allow the levers to pivot in this position, without exerting any force on the operating lever 27 and the follower lever 33, in their raised position.
- FIGs 14 to 16 illustrate a second variant of the second embodiment of the invention, which is distinguished by another clamping means.
- These are two bolts 22, 24 sliding relative to the base 3 of the disc 1, in the direction D and guided in translation by rods 26 fixed to the base 3 and housed in two slots 32 of the bolts.
- the latter are controlled, against an elastic return means (not shown) by a cam 34, retained by a screw 36 at the base 3 of the disc 1 and rotatable around the axial direction A.
- the two bolts are in an open position, remote from each other of a width of the cam 34, to allow the pivoting of the levers in the locking position.
- the cam is turned around the axial direction A to cause the two bolts 22, 24 to slide in two opposite directions, in a closed position, separated by a length from the cam 34, greater than the width .
- FIGs 17 to 19 illustrate a third embodiment of the invention, according to which the locking means comprise a third lever 12, analogous to the levers 10, 11 described above.
- the three levers 10, 11, 12 pi vote, from the unlocking position to the locking position, around three pivot axes R0, RI, R2 carried by the base 3 of the disc 1, in a plane perpendicular to the direction axial A and perpendicular to three secant planes, making between them an angle preferably equal to 120°.
- a housing 16 of the base 3 of the disc 1 is provided to receive each lever 10, 11, 12 in the blocking position.
- the clamping means comprises a clamping ring 55, rotatable around the axial direction A of the base 3 of the disc 1.
- the clamping ring 55 is pinched on the base 3 of the disc 1 via of a rivet 57. It com takes three radial arms 61 which each have an inchné edge 63 with respect to the axial direction A. In the unlocking position, the clamping ring 55 is in a position for which the three arms 61 s extend between the housings 16 of the base 3 of the disc 1 to allow the pivoting of the three levers 10, 11, 12 in the locking position.
- the clamping ring 55 is rotated around the axial direction A to clamp the three levers using the three radial arms 61.
- the inclined edge 63 of each arm 61 makes it possible to transmit the clamping force more progressively, as the ring rotates around the axial direction A.
- the tightening ring 55 controls the levers 10, 11, 12 in rotation around their pivot axis R0, RI, R2 so that they transmit the clamping force to the opening 7 of the base 9 via the overlapping of the shoulders 17, 21.
- This third embodiment with three levers offers a distribution of the effort tightening, on three sectors of the periphery of the opening of the base, preferably at 120° from each other.
- Figures 20 to 22 illustrate a variant of the third embodiment of the invention, which is distinguished by the clamping means.
- the latter comprises a clamping ring 65, movable in rotation around the axial direction A of the base 3 of the disc 1, with which each of the three levers 10, 11, 12, in the locking position, is engaged by the intermediary of a lug 67 engaged in one of the three tangential notches 69 of the clamping ring 65.
- the clamping ring 65 is housed in a shoulder 71 of the base 3 of the disc 1 and each of the three tangential notches 69 has a slope 73 with respect to the axial direction A.
- the clamping ring 65 In the unlocked position, the clamping ring 65 is in a position for which the three tangential notches 69 have an opening 75, arranged in the secant plane perpendicular to the pivot axis R0, RI, R2 and passing through the lug 67 fixed to the three levers 10, 11, 12, to allow them to pivot into the locking position.
- the slope 73 makes it possible to transmit the clamping force more progressively, as the rotation of the clamping ring 65 around the axial direction A.
- the clamping ring 65 controls the levers 10, 11 , 12 in rotation around their pivot axis R0, RI, R2 so that they transmit the clamping force to the opening 7 of the base 9 via the overlap of the shoulders 17, 21.
- the invention advantageously provides for providing these levers and this opening with complementary teeth.
- the teeth 77 extend along a radius of curvature of the lever 10, 11, 12 or of the opening 7 of the base 9.
- the curvature of the lever or opening is circular.
- the lever thus reproduces the toothing of an ordinary removable fixing disc, for which the teeth 77 protrude in a plane perpendicular to the axial direction A of the base 3 of the disc 1, so that the device is suitable for any standard binding, for which the teeth 79 of the additional toothing, formed on the periphery of the opening 7, also extend perpendicular to the axial direction A of the opening.
- the teeth 77 of the lever can be inclined with respect to the axial direction A, forming a conical ring centered on this direction. The same applies to the teeth 79 of the complementary toothing formed in the opening 7 of the base 9.
Landscapes
- Clamps And Clips (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| FR2012263 | 2020-11-27 | ||
| PCT/EP2021/083254 WO2022112538A1 (fr) | 2020-11-27 | 2021-11-26 | Dispositif de verrouillage d'une fixation a une planche des neiges comprenant un levier de blocage pivotant |
Publications (3)
| Publication Number | Publication Date |
|---|---|
| EP4228776A1 true EP4228776A1 (fr) | 2023-08-23 |
| EP4228776C0 EP4228776C0 (fr) | 2024-03-13 |
| EP4228776B1 EP4228776B1 (fr) | 2024-03-13 |
Family
ID=78844947
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP21823795.6A Active EP4228776B1 (fr) | 2020-11-27 | 2021-11-26 | Dispositif de verrouillage d'une fixation à une planche des neiges comprenant un levier de blocage pivotant |
Country Status (3)
| Country | Link |
|---|---|
| US (1) | US12257490B2 (fr) |
| EP (1) | EP4228776B1 (fr) |
| WO (1) | WO2022112538A1 (fr) |
Family Cites Families (11)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| FR2627097B1 (fr) | 1988-02-11 | 1991-08-30 | Duret Michel | Fixations pour planche a neige |
| US5277635A (en) * | 1991-12-19 | 1994-01-11 | Connelly Skis, Inc. | Water skiboard with rotatable binding |
| DE19700291A1 (de) | 1997-01-08 | 1998-07-09 | Sam Sport And Marketing Ag | Schnellwechsel-Snowboardbindung |
| US6786502B2 (en) * | 1997-07-28 | 2004-09-07 | Stephen R. Carlson | Longitudinally adjustable mount for a snowboard binding |
| ITMI20010218A1 (it) * | 2001-02-05 | 2002-08-05 | Maxvis Ag | Supporto per attacco da snowboard e attacco da snowboard |
| AT411016B (de) | 2001-08-29 | 2003-09-25 | Atomic Austria Gmbh | Bindungseinrichtung für sportgeräte, insbesondere für ein snowboard |
| DE10313342B4 (de) * | 2003-03-25 | 2007-06-28 | Goodwell International Ltd., Tortola | Snowboardbindung |
| US8128117B2 (en) | 2007-06-14 | 2012-03-06 | Flow Sports, Inc. | Tool-free adjustable binding for sports board |
| AT505715B1 (de) * | 2007-09-12 | 2012-02-15 | Atomic Austria Gmbh | Bindungseinrichtung für brettartige gleitgeräte |
| FR2988616B1 (fr) * | 2012-03-29 | 2016-03-18 | Rossignol Sa | Dispositif de fixation pour planche de glisse et planche equipee d’un tel dispositif |
| ES1077542Y (es) * | 2012-05-24 | 2012-11-08 | Bascunana Juan Miguel Bernal | Fijación para tabla de deslizamiento. |
-
2021
- 2021-11-26 WO PCT/EP2021/083254 patent/WO2022112538A1/fr not_active Ceased
- 2021-11-26 EP EP21823795.6A patent/EP4228776B1/fr active Active
- 2021-11-26 US US18/250,376 patent/US12257490B2/en active Active
Also Published As
| Publication number | Publication date |
|---|---|
| US12257490B2 (en) | 2025-03-25 |
| EP4228776C0 (fr) | 2024-03-13 |
| WO2022112538A9 (fr) | 2022-07-28 |
| EP4228776B1 (fr) | 2024-03-13 |
| US20230415022A1 (en) | 2023-12-28 |
| WO2022112538A1 (fr) | 2022-06-02 |
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