(19) |
 |
|
(11) |
EP 2 857 074 A1 |
(12) |
EUROPEAN PATENT APPLICATION |
|
published in accordance with Art. 153(4) EPC |
(43) |
Date of publication: |
|
08.04.2015 Bulletin 2015/15 |
(22) |
Date of filing: 22.05.2013 |
|
(51) |
International Patent Classification (IPC):
|
(86) |
International application number: |
|
PCT/ES2013/070323 |
(87) |
International publication number: |
|
WO 2013/175042 (28.11.2013 Gazette 2013/48) |
|
(84) |
Designated Contracting States: |
|
AL AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC MK MT NL
NO PL PT RO RS SE SI SK SM TR |
|
Designated Extension States: |
|
BA ME |
(30) |
Priority: |
24.05.2012 ES 201230562
|
(71) |
Applicant: Bernal Bascuñana, Juan Miguel |
|
46011 Valencia (ES) |
|
(72) |
Inventor: |
|
- Bernal Bascuñana, Juan Miguel
46011 Valencia (ES)
|
(74) |
Representative: Sahuquillo Huerta, Jesús |
|
Apartado de Correos, 30 28300 Aranjuez 28300 Aranjuez (ES) |
|
|
|
(54) |
ATTACHMENT FOR SLIDING BOARDS |
(57) The invention comprises: a stationary part connected to the board (1), forming a
rotating body, and provided with retaining and fastening means; and a moving part
(4) provided with attachment and retaining means for attaching and retaining same
in relation to the retaining and fastening means of the stationary part. The retaining
and fastening means of the stationary part are formed by peripherally arranged flanges
(31) separated from the board, as well as including portions with no flanges. The
moving part (4) comprises a boot securing means including a cavity (46), which can
also rotate, provided with internal ridges (43), said cavity (46) having a diameter
approximately equal to that of the rotating body of the stationary part together with
the flanges (31), such that the connection between the stationary part and the moving
part (4) takes the form of a bayonet coupling obtained by means of insertion and rotation.
|

|
[0001] This invention consists of a binding for a sliding board, for example for sliding
on snow or the boards known as "snowboards", which allow an easy and quick release
of the anchoring mechanism located in the boot through a rotation and bayonet clamping
mechanism.
[0002] The sport of snowboarding or sliding through the snow on board, requires that both
feet of the user are placed immobile on the board, so that the user can perform the
required maneuvers while being able to maintain the balance on the board.
[0003] The immobile placement is performed in many different ways. A common way is to have
a body embracing the boot as a sandal so that the athlete must sit down in order to
place each boot on the corresponding binding; one example is shown in
ES 2 357 338.
[0004] ES 2 261 095 describes a release system for ski boots and snowboard bindings, comprising an electronic
device with an emitter and a receiver electronic device which performs the opening
of the binding. This requires that both the board and the emitter, possibly holding
the handle of a ski pole, comprises an energy source, which increases the weight and
complexity of the binding.
[0005] ES 2 341 825 describes a magnetic binding device of a boot to a ski board or snowboard. This binding
may be unstable when usual skiing or snowboarding impacts occur, for example in jumps,
being difficult its separation.
[0006] WO 96/23557 describes an adjustable binding device in angular position.
[0007] ES 2 188 403 describes a binding for snowboards comprising plates with protuberances susceptible
of binding to several components installed in the boots' base with binding elements
by longitudinal displacement.
[0008] ES 2 330 600 describes an autonomous pneumatic control system securing boots to snowboards or
skis by vacuum suction, which requires that the athlete carries a suction pump.
Description of the Invention
[0009] As pointed out previously, this invention is a bond system of a boot to a sliding
board by means of an assembly of binding elements (herein referred to as "binding");
snowboard comprises a plurality of perforations on which there is a fixed part with
retaining and locking means; consisting of a revolution body, usually a solid disc
with many longitudinally elongated holes, allowing longitudinal adjustments of the
position of such disc on the holes and; according to the particular embodiment, several
holes run along the board allowing different base sites of the disc. Over the mentioned
disc there is a second disc also comprising a set of elongated holes forming circumference
arches, with which an angular positional adjustment of the disc is possible. The invention
also comprises outer projections separated from the board, and arranged at regular
or irregular intervals along the disc periphery. The second disc, once placed over
the first one, is fixed to the board by screws running through the corresponding holes
of the said discs and those of the board, which are properly positioned before finally
being tightened. It is expected that one of the discs includes a projection and the
other one a recess in accordance for an appropriate assembly.
[0010] For the fastening of the boot to the board, a support has been designed, which may
be susceptible to the binding of the boot or be part thereof, comprising a circular
disc according to the second hole. Such gap comprises inner projections of no longer
than the distance between the outer projections of the second disc; such inner projections
will be located in a lower position, so that when the circular gap of the support
is introduced on the second disc, the projections are displayed downwardly.
[0011] At least the second disc or the circular hole is provided with an elastic retaining
mean, so that when the insertion and corresponding rotation, bayonet-type, occurs,
the binding will be firm, until manual action takes place on such elastic mean by
means of, for example, a button or a lever laterally located. Thus a quick and easy
binding is achieved, and a quick release if required, allowing a very comfortable
and versatile use.
Brief Description of the drawings
[0012] To illustrate the following explanation, we enclose herein, three sheets of drawings
in which the essence of the invention is represented in three figures in which:
Figure 1 shows an explosion view of the assembly of elements forming the binding device
of the invention;
Figure 2 shows a perspective view of the binding device of Figure 1 mounted on the
board;
Figure 3 shows a view of the binding of Figures 1 and 2, in which a first assembly
of elements is mounted on the board;
Figure 4 shows a view of a section of the board with the mounted binding;
Figure 5 shows a view of an angled section on the section of Figure 4;
Figure 6 shows a plan view of the binding mounted on the table;
Figure 7 shows a perspective view of a detail of a release component of the binding.
Figure 8 shows a perspective view of a mounted binding device according with a compact
embodiment.
Figure 9 shows a lateral view of the binding device of figure 8.
Figure 10 shows a lateral view of the external binding arc, usually joined to the
boot support.
Figure 11 shows a lateral transparent view of the clamping bolt of the binding elements.
Figure 12 shows an upper transparent view of the clamping bolt of figure 11.
Figure 13 shows a perspective view of the clamping bolt before its mounting in the
binding device.
Description of preferred embodiment
[0013] As noted above, this invention consists in a binding for sliding boards, particularly
designed for snowboards (1). The board has sets of holes (11) arranged linearly, which
allow the binding of the invention to be arranged in different positions along the
board (1). Over these holes (11) in each of the sets, there is a first disc (2) with
holes linearly grooved (22). Thus, the said first disc (2) can be placed in at least
three different positions (according to the representation of Figure 1), on the holes
of one end, on the holes of the other end or on the set of the central holes; according
to the needs, there will be more or less number of holes (11) in the board (1). For
an acute adjustment, grooved holes (22) are arranged so that, once the corresponding
screws (35) are mounted, the disc can still move to either side until it is fully
satisfactory for the user. Preferably, the first disc (2) comprises a peripheral ledge
(21).
[0014] On top of the first disc (2) there is a second disc (3). This disc has a set of grooved
holes (32) in the form of an arc of circumference, which are topped at the top by
a recess (33) of the same general form, but with greater width than the grooved holes
(32). These grooved holes (32) are pierced by the screws (35) with the head clamped
in the recess (33). Given the form of arc, it is possible to provide the second disc
(3) with the desired rotation position for an adequate comfort of the user, which
will subsequently determine the corresponding anchoring position.
[0015] Once the first (2) and the second discs (3) are placed in the correct position, proceed
to tighten the screws and leave the fixed part of the binding in a permanent position
of the board.
[0016] The second disc (3) includes side flanges (31) on the outer contour of the disc,
which, at least in one side, is topped by a beveled portion (34), and also includes
other portions of the said contour without flanges.
[0017] The binding further comprises a mobile part (4) which is attached or by any suitable
means to the user's boot. Such mobile portion (4) comprises a support surface (41)
and side walls (42). For example, straps for holding the boot may be installed in
these side walls. The mobile part (4) comprises a hollow area (46) with an inner diameter
which is substantially equal to the outer diameter of the second disc comprising the
side flanges (31).
[0018] In some portions of the hollow area (46), there are inner projections (43) comprising
an upper surface (44) and a beveled stopper (45). The mobile part (4) is placed on
the second disc (3) with a certain rotation angle, so that the inner projections (43)
pierce the portions without flanges of such second disc (3). By rotating the mobile
portion in the right direction, the projections (43) can remain below the side flanges
(31), until the beveled stopper reaches the corresponding beveled portion of the second
disc (3), in locking position of the fixed and mobile parts.
[0019] The retainer in a locking position takes place by a latch (6) acting against the
action of at least one spring (9). The latch (6) runs through an inner hole (52) formed
in one component (5), in turn arranged in a hole (47) transversely practiced in the
wall of the hollow area (46); such piece (5) comprises outer binding flanges (51)
with perforations (53) for the passage of screws (72).
[0020] The latch (6) consists of an essentially prismatic component, with projections (62)
on its outer face which in turn comprise cross-holes (61). In the holes (61) of such
projections (62), a first transverse shaft of one component in double "T" (86). The
latch (6), the component (5) and the springs (9) are externally supported by a shield
(7) provided with holes (71) through which it is fastened by screws (72). The shield
comprises a central window (74) allowing the passage of beam (863) connecting transverse
shafts (861, 862) of the component in double "T" (86). Respect to the said component
in double "T" (86), the first transverse shaft (862), normally shorter than the second
transverse shaft (863) is fastened to the holes (61) of the projections (62) and pushed
by springs (9) towards the inside of the hollow region (46) of the mobile part (4),
the crossbar (863) runs through the window (74) of the shield (7) and the second transverse
shaft (861), normally longer than the first one, is secured in the holes (84) of an
outer lever (8). The outer lever (8) comprises a pulsation area (82) and a driving
area (81), possibly provided with a trim. The driving area comprises holes (84) in
which the second transverse shaft (861) is fixed to the component in double "T" (86).
Moreover, the lever (8) also comprises second holes (83) in which a shaft (831) is
placed, which in turn is fastened on supportive supports (73) to the shield (7) and
externally arranged, provided with the corresponding holes for a secure binding of
such shaft (831).
[0021] Thus, in a rest position, the latch (6) partially emerges in the hollow area (46)
of the mobile part (4) so when such latch (6) is in the use position to prevent the
reverse rotation for the extraction of the mobile part relative to the fixed part,
for it prevents displacement with respect to the side flanges (31) forcing its introduction
placing the mobile part (4) on the fixed part during rotation the latch (6) is pushed
by the beveled portion (34) of the flanges (31), forcing its introduction in the inner
hole (52) of the component (5), which will slide along such flange until the end,
when the latch will return to the rest position.
[0022] To release, simply retract the latch (6) by oppression the pulsation area (82) of
the lever (8), so that the component in double "T" (86) will be stretched and so will
the latch (6), thereby allowing rotation of the mobile part (4) and its removal in
the correct position.
[0023] In a simplified embodiment, the discs (2, 3) are only one piece, forming a solid
assembly and reducing the manufacturing costs.
[0024] According with an optimized embodiment, a locking bar or locking latch (10) is used
for the binding. Said locking latch (10) is formed by two parts, an upper part (115)
and a lower part (116), between which is defined a gap (12) through which a latch
(1251) slides; the upper part (115) supports a shaft (104) supporting a first specie
lever, with a push actuator (182) at one end and a countersink hole with a drive shaft
(120) of the latch (1251), with a return spring (172) installed inside the hole. At
least one part of the locking latch (10) is inserted in a location cutout (49) formed
in the disc that forms the mobile part (4) in such a way that can be easily mounted
independently of the other elements.
[0025] In summary, a bayonet-type lock with a retaining device when in use position, and
releasing means of the retention mean in the locking and releasing phases of the binding.
1. Binding for sliding board,
characterized by comprising:
- A fixed part attached to the board (1), which forms a revolution body, provided
with means of retention and locking; and
- A mobile part (4) provided with fastening and retention systems to the retention
and locking systems of the fixed part; in which the retention and locking systems
of the fixed part form fins (31) arranged peripherally and spaced from the board,
with portions without fins, and
wherein the mobile part (4) comprises a fastening system of a boot, with a hollow
area (46), also revolutionary, provided with inner projections (43);
wherein the hollow zone (46) has a diameter approximately equal to the revolution
body of the fixed part with the fins (31); so that the clamping union between the
fixed part and the mobile part (4) is done as a bayonet by insertion and rotation.
2. Binding for sliding board according to claim 1, characterized in that the board comprises for each fastening hole assemblies (11) linearly arranged on
the fixed portion of each of the fasteners may be secured in different positions along
the board (1).
3. Binding for sliding board according to any of claims 1 to 2, characterized by a fixed part consisting of two disks, a first disk (2) of separation, and a second
disc (3) carrying fins (31).
4. Binding for sliding board according to claim 3, characterized by a first disc (2), nearest to the board, (1) which comprises a set of linearly grooved
holes (22) aligned with the fastening screws.
5. Binding for sliding board according to claim 3, characterized by a first disc (2) comprising a peripheral ledge (21).
6. Binding for sliding board according to any of the claims 3 to 5, characterized by a second disc (3) having a number of grooved holes (32) in the form of circumference
arc.
7. Binding for sliding board according to claim 6, characterized by grooved holes (32) which are surmounted on the upper part by a recess (33) of the
same general form but greater width than the said grooved holes (32).
8. Binding for sliding board according to any of the claims 3 to 7, characterized by in that the side flanges (31) are arranged on the outer contour of the second disc
(3),
9. Binding for sliding board according to any of claims 1 to 8, characterized by side flanges (31) which are topped by a beveled portion (34).
10. Binding for sliding board according to any of 10 claims 1 to 9, characterized by a mobile part (4) which comprises an attachment surface (41) and side walls (42).
11. Binding for sliding board according to claim 10, characterized by comprising fastening straps of the boot in the side walls (42).
12. Binding for sliding board according to any of claims from 1 to 11, characterized by some portions of the hollow area (46) which show inner projections (43).
13. Binding for sliding board according to claim 12, characterized by the inner projections (43) comprising a top surface (44) and a beveled stopper (45)
according to the projections (31).
14. Binding for sliding board according to any of the claims from 1 to 13, characterized by a mobile part (4) comprising a gap (47) formed transversely in the wall of the hollow
area (46).
15. Binding for sliding board according to claim 14 characterized by the retention in locking position takes place by a pin push (6) acting against the
action of at least one spring (9).
16. Binding for sliding board according to claim 15, characterized by a part (5) including inside the latch (6), the said part (5) inside the gap (47).
17. Binding for sliding board according to claim 16, characterized by a component (5) comprising outer fastening flanges (51) with perforations (53) for
the passage of screws (72).
18. Binding for slide board according to any of claims from 15 to 17, characterized by a latch (6) consisting of an essentially prismatic component, with projections (62)
on its outer face which in turn comprise diagonal (61) holes.
19. Binding for sliding board according to any of claims from 15 to 18, characterized by an outer lever (8) that activates the latch (6).
20. Binding for sliding board according to claim 19, characterized by an outer lever in that the outer lever (8) comprising a pulsation area (82) and an
operating area (81).
21. Binding for sliding board according to claim 20, characterized by an enable area comprising holes (84) and second holes (83).
22. Binding for sliding board according to any of the claims from 15 to 21 characterized by the latch (6), the component (5), and springs (9) externally attached by a shield
(7) provided with holes (71) through which it is fastened by means of screws (72);
the shield comprises a central window (74) which allows passage of the crossbar (863)
connecting the transversal shafts (861 ,862) of a 15double "T" component (86).
23. Binding for sliding board according to claims 21 and 22, characterized by the first transversal shaft (862) of the component in double "T" (86) being shorter
than 20 the second transverse shaft (863), and is attached in the holes (61) of the
projections (62) and pushed by springs (9) towards the inside of the hollow area (46)
of the mobile part (4), wherein the crossbar (863) through the window (74) of the
shield (7) and the second transversal shaft (861) is fastened in the holes (84) of
the outer slab (8).
24. Binding for sliding board according to claim 23, characterized by comprising a shaft (831) secured in the second holes (83), which is in turn fastened
in holes performed in supports (73) holding shields (7) and externally displayed.
25. Binding for sliding board according to any of claims from 1 to 13, characterized by the mobile part (4) comprising a location cutout (49) of a locking latch (10).
26. Binding for sliding board according to claim 25, characterized by the locking latch (10) consisting of two parts, an upper part (115) and a lower part
(116), between which is defined a gap (12) through which a latch (1251) slides; the
upper part (115) supports a shaft (104) supporting a first specie lever, with a push
actuator (182) at one end and a countersink hole with a drive shaft (120) of the latch
(1251), with a return spring (172) installed inside the hole.
Amended claims under Art. 19.1 PCT
1. Binding for sliding board,
characterized by comprising:
- A fixed part attached to the board (1), which forms a revolution body, provided
with means of retention and locking; and
- A mobile part (4) provided with fastening and retention systems to the retention
and locking systems of the fixed part; in which the retention and locking systems
of the fixed part form fins (31) arranged peripherally and spaced from the board,
with portions without fins, and
wherein the mobile part (4) comprises a fastening system of a boot, with a hollow
area (46), also revolutionary, provided with inner projections (43);
wherein the hollow zone (46) has a diameter approximately equal to the revolution
body of the fixed part with the fins (31); so that the clamping union between the
fixed part and the mobile part (4) is done as a bayonet by insertion and rotation,
and in which the retention in locking position takes place by a pin push (6) acting
against the action of at least one spring (9).
2. Binding for sliding board according to claim 1, characterized in that the board comprises for each fastening hole assemblies (11) linearly arranged on
the fixed portion of each of the fasteners may be secured in different positions along
the board (1).
3. Binding for sliding board according to any of claims 1 to 2, characterized by a fixed part consisting of two disks, a first disk (2) of separation, and a second
disc (3) carrying fins (31).
4. Binding for sliding board according to claim 3, characterized by a first disc (2), nearest to the board, (1) which comprises a set of linearly grooved
holes (22) aligned with the fastening screws.
5. Binding for sliding board according to claim 3, characterized by a first disc (2) comprising a peripheral ledge (21).
6. Binding for sliding board according to any of the claims 3 to 5, characterized by a second disc (3) having a number of grooved holes (32) in the form of circumference
arc.
7. Binding for sliding board according to claim 6, characterized by grooved holes (32) which are surmounted on the upper part by a recess (33) of the
same general form but greater width than the said grooved holes (32).
8. Binding for sliding board according to any of the claims 3 to 7, characterized by in that the side flanges (31) are arranged on the outer contour of the second disc
(3),
9. Binding for sliding board according to any of claims 1 to 8, characterized by side flanges (31) which are topped by a beveled portion (34).
10. Binding for sliding board according to any of 10 claims 1 to 9, characterized by a mobile part (4) which comprises an attachment surface (41) and side walls (42).
11. Binding for sliding board according to claim 10, characterized by comprising fastening straps of the boot in the side walls (42).
12. Binding for sliding board according to any of claims from 1 to 11, characterized by some portions of the hollow area (46) which show inner projections (43).
13. Binding for sliding board according to claim 12, characterized by the inner projections (43) comprising a top surface (44) and a beveled stopper (45)
according to the projections (31).
14. Binding for sliding board according to any of the claims from 1 to 13, characterized by a mobile part (4) comprising a gap (47) formed transversely in the wall of the hollow
area (46).
15. Binding for sliding board according to any of the claims from 1 to 14, characterized by a part (5) including inside the latch (6), the said part (5) inside the gap (47).
16. Binding for sliding board according to claim 15, characterized by a component (5) comprising outer fastening flanges (51) with perforations (53) for
the passage of screws (72).
17. Binding for slide board according to any of claims from 1 to 16, characterized by a latch (6) consisting of an essentially prismatic component, with projections (62)
on its outer face which in turn comprise diagonal (61) holes.
18. Binding for sliding board according to any of claims from 1 to 17, characterized by an existing operating lever (8) of the latch (6).
19. Binding for sliding board according to claim 18, characterized by an outer lever in that the outer slab (8) comprising a pulsation area (82) and an
operating area (81).
20. Binding for sliding board according to claim 19, characterized by an enable area comprising holes (84) and second holes (83).
21. Binding for sliding board according to any of the claims from 1 to 20 characterized by the latch (6), the component (5), and springs (9) externally attached by a shield
(7) provided with holes (71) through which it is fastened by means of screws (72);
the shield comprises a central window (74) which allows passage of the crossbar (863)
connecting the transversal shafts (861 ,862) of a 15 double "T" component (86).
22. Binding for sliding board according to claims 20 and 21, characterized by the first transversal shaft (862) of the component in double "T" (86) being shorter
than 20 the second transverse shaft (863), and is attached in the holes (61) of the
projections (62) and pushed by springs (9) towards the inside of the hollow area (46)
of the mobile part (4), wherein the crossbar (863) through the window (74) of the
shield (7) and the second transversal shaft (861) is fastened in the holes (84) of
the outer slab (8).
23. Binding for sliding board according to claim 22, characterized by comprising a shaft (831) secured in the second holes (83), which is in turn fastened
in holes performed in supports (73) holding shields (7) and externally displayed.
24. Binding for sliding board according to any of claims from 1 to 13, characterized by the mobile part (4) comprising a location cutout (49) of a locking latch (10).
25. Binding for sliding board according to claim 24, characterized by the locking latch (10) consisting of two parts, an upper part (115) and a lower part
(116), between which is defined a gap (12) through which a latch (1251) slides; the
upper part (115) supports a shaft (104) supporting a first specie lever, with a push
15actuator (182) at one end and a countersink hole with a drive shaft (120) of the
latch (1251), with a return spring (172) installed inside the hole.
REFERENCES CITED IN THE DESCRIPTION
This list of references cited by the applicant is for the reader's convenience only.
It does not form part of the European patent document. Even though great care has
been taken in compiling the references, errors or omissions cannot be excluded and
the EPO disclaims all liability in this regard.
Patent documents cited in the description