[0001] The present invention relates to a locking device, particularly for ski boots composed
of a shell to which a quarter is articulated.
[0002] In conventional ski boots, there is a strongly felt problem related to the possibility
to achieve a limited backward oscillation of the quarter during sports practice and
at the same time a free oscillation of the quarter once sports practice has ended,
in order to allow the user to walk easily. Several systems have been devised for that
purpose. For example,according to one of the conventional systems, adapted members
on the boot quarter which can be activated, for example by levers, and can be positioned
selectively so as to allow the free oscillation of the quarter or limit its oscillation
by means of protrusions or other members which protrude at the shell externally thereto.
[0003] All the conventional systems entail the presence, at the quarter, of suitable devices
and mechanisms which interact with the shell to limit or allow the free mutual oscillation
of the two components.
[0004] All the conventional systems have the considerable drawback of requiring the provision
of particular molds for inserting these devices in the boot. In addition to being
possibly affected by malfunctions , the inserts cause an increase in the cost of the
boot, since they must be manufactured and then assembled to the boot.
[0005] Furthermore, the activation of these devices is not always easy, since the skier
usually wears gloves and therefore encounters difficulties in gripping levers and
other devices especially in low-temperature conditions.
[0006] An aim of the present invention is therefore to eliminate the above drawbacks and
thus solve the above described technical problems by providing a device which allows
the user to quickly and easily achieve the free oscillation of the quarter or a limitation
of its oscillation.
[0007] A further object is to allow the skier to achieve these two different conditions
for the oscillation of the quarter with respect to the shell without having to act
directly at any device applied at the boot.
[0008] A further important object is to provide a device which associates with the preceding
characteristics that of having low manufacturing costs which allow to reduce the manufacturing
costs.
[0009] A further important object is to provide a device whose activation when skiing and
deactivation when walking can be achieved without any direct intervention of the skier
on the boot.
[0010] A further objet of the invention is to provide a highly reliable locking device.
[0011] This aim, these objects and others which will become apparent from the description
that follows are achieved by a locking device, as claimed in the appended claims.
[0012] Further objects will become apparent in the description that follows, which must
be considered in combination with the accompanying drawings, which illustrate by way
of non-limitative example a particular embodiment and in which:
Fig. 1 is a side view of a ski boot provided with the locking device, according to
the invention;
Fig. 2 is a view, similar to Fig. 1, of a further embodiment of the device;
Fig. 3 is a perspective view of the embodiment of Fig. 2;
Fig. 4 is a partially sectional side view of a heel unit of a ski binding with the
device according to a further aspect of the invention;
Figs. 5, 6 and 7 are schematic views of a manner in which ligament rupture can occur
while skiing;
Fig. 8 is a side view of a ski boot with a further embodiment of the locking device;
Fig. 9 is a sectional view of the device of Fig. 8.
[0013] With reference to the above figures, and bearing in mind that they illustrate examples
of particular embodiments and are in variable scales and that identical or equivalent
parts correspond to individual reference numerals, Figs. 5, 6 and 7 schematically
show how ligaments often rupture whilst skiing.
[0014] Step 1 shows the condition in which the skier, after a jump, touches the snow with
the rear ends of his skis; then, in step 2, the tips of the skis increase their rate
of descent due to the impact of the rear ends with the snow. In step 3, the boot,
through the quarter, forces the tibia to increase its rate of descent and therefore
to travel at the very high speed of the tips of the ski.
[0015] During this step, the rest of the body, owing to its inertia, is unable to instantly
travel at the same speed as the tibia and a brief critical step (lasting approximately
200-400 thousandths of a second) thus begins.
[0016] During this critical step, the tibia pulls the knee forward, whilst the inertia of
the body pulls the knee backward, thus spraining the ligaments.
[0017] The numeral 1 designates a ski boot constituted by a shell 2 to which a quarter 4
is articulated by a pivot 3.
[0018] The oscillation of the quarter 4 can be limited by means of an optional tongue 5
associated, in a front region, with the shell 2 and surrounded by the front flaps
of the quarter 4. A fastening means, such as for example levers 6, is provided on
the quarter and on the shell.
[0019] The numeral 7 designates the device for blocking the backward oscillation of the
quarter 4 according to the invention. The device is constituted by a strut member
8 which can be for example essentially U-shaped and accordingly forms a supporting
base 9 and a pair of wings 10.
[0020] The strut 8 is associated at a heel unit 11 which constitutes a binding for a ski
12. Strut 8 can thus be associated, for example, at the ends of the pair of wings
10 laterally to the body or bracket 13 of the heel unit 11, which locks the heel 14
of the shell 2, the supporting base 9 of the strut being directed toward the quarter
4.
[0021] The arrangement of the quarter 8 entails configuring it so that it has a chosen inclination
with respect to the snow-covered surface on which the ski 12 rests and therefore so
that when the boot is fitted onto the binding the supporting base 9 interacts for
example at the facing lower perimetric edge 15 of the quarter 4.
[0022] The illustrated embodiment has achieved the intended aim and all the objects, since
a device has been obtained which automatically locks the quarter with respect to the
shell in the skiing condition and therefore in the condition in which the boot is
associated at the binding.
[0023] The device therefore allows the forward oscillation of the quarter 4 and therefore
allows skiing, but prevents a backward oscillation of the quarter, thus ensuring that
the boot has the rear retention that is indispensable for skiing.
[0024] The device therefore automatically solves the problems for the skier, since once
skiing has ended and the boot has accordingly been removed from the binding, the quarter
can automatically oscillate backward, thus allowing the skier to walk easily.
[0025] The quarter can in fact assume a vertical position with respect to the shell, making
it easier to walk.
[0026] The illustrated embodiment can be subjected to numerous variations, within the scope
of the appended claims. Thus, for example, the strut 8 can be constituted by a single
member which is rigidly coupled at the bracket 13 in a region which is arranged approximately
on a longitudinal median plane thereof or can be constituted by two or more variously
coupled members which protrude from the bracket 13.
[0027] As an alternative, the strut 8 can be associated, at its ends, at a point of the
heel unit which is stable once the heel unit has been closed, thus allowing to maintain
a very precise and unchanging position for the strut 8.
[0028] As shown in Figs. 2 and 3, the strut can be rotatably associated, at its end, at
the body or bracket 13 and be forced toward the shell and therefore the quarter 4
by flexible means, such as for example a cylindrical helical compression spring 16.
[0029] The spring can be interposed, for example, between the supporting base 9 of the strut
8 and the body or bracket 13.
[0030] This embodiment has a further advantage for the user, since the presence of the spring
can, by forcing the strut 8 toward the shell, ensure the close contact thereof with
the boot. If, for example, the strut affects, during the fastening of the boot and
of the heel unit, the rear surface of the quarter 4 proximate to the lower perimetric
edge 15, the first forward flexing performed by the skier flexes the quarter 4 and
therefore the spring forces the strut 8 to rotate until it is in contact with the
shell and therefore allows its interaction with the lower perimetric edge 15 of the
quarter 4.
[0031] Fig. 4 illustrates a further variation, in which the strut 8 is associated, at the
free ends of the pair of wings 10, on a cam 17 which belongs to the internal mechanism
of the heel unit 11. The strut accordingly does not interact at the body or bracket
13.
[0032] The cam 17 is pivoted, at one end, to the structure 19 of the heel unit by means
of a first pivot 18. Proximate to the ends of the cam that interact with the strut
8, the cam interacts with a contrast cam 20 which can slide in contrast with a second
spring 21.
[0033] This embodiment differs from the preceding ones in that the second spring 21 can
be set so that, beyond a certain preset load, it allows the movement of the contrast
cam 20 and therefore a slight rotation of the cam 17, which thus allows the quarter
4 to rotate slightly backward, so as to protect against possible rupture of the skier's
leg ligaments if the skier falls with a combined backward and sideways movement.
[0034] Figs. 8 and 9 illustrate still a further embodiment, in which the strut 208 is essentially
constituted by a lever in which a first end 50 is freely pivoted, by means of a transverse
pivot, at the heel unit 11 that constitutes the binding for the ski 12.
[0035] The lever has a second end 209 which protrudes toward the quarter 4 of the ski boot
1 and constitutes a supporting base which interacts with the lower perimetric edge
15 of the quarter 4.
[0036] When the boot is fastened to the heel unit, the lower perimetric edge 15 of the quarter
4 accordingly rests on the end 209 of the strut 208 and the quarter is thus inclined
forward and is therefore in a correct position for skiing.
[0037] The lever is pivoted in a lower region, proximate to the first end 50, to a second
cam 51, which is shaped like a wedge in which the apex is directed toward the ski.
The second cam is associated with the heel unit and is again pushed upward, since
one of it sides interacts with the contrast cam 20.
[0038] On the opposite side with respect to the one that interacts with the contrast cam
20, the second cam 51 has a tooth 52 which engages a complementarily shaped tab 53
which is provided to the rear of the cam 17.
[0039] In this embodiment, the second spring 21, which controls the sliding of the contrast
cam 20, can be set so that beyond a preset load it allows the movement of the contrast
cam 20 and therefore the lowering of the second cam 51 and therefore the oscillation
of the lever that constitutes the strut 8, the second end 9 of which performs a counterclockwise
rotation so as to allow the lowering of the quarter 4.
[0040] This slight backward rotation of the quarter allows to protect against the possible
rupture of the ligaments of the user's leg.
[0041] The materials and the dimensions that constitute the individual components of the
device may of course be the most pertinent according to the specific requirements.
[0042] Where technical features mentioned in any claim are followed by reference signs,
those reference signs have been included for the sole purpose of increasing the intelligibility
of the claims and accordingly, such reference signs do not have any limiting effect
on the scope of each element identified by way of example by such reference signs.
1. A locking device, particularly for ski boots having a shell 2 and a quarter 4 is articulated
thereto, characterized in that it comprises at least one strut member (8,108,208)
associated with a ski (11, 12) so as to be able to oscillate and to abut with said
quarter 4, which is freely articulated to said shell 2.
2. The device according to claim 1, characterized in that said strut member (8,108,208)
is essentially U-shaped and forms a supporting base 9,109,209 and a pair of lateral
wings 10,110.
3. The device according to one or more of the preceding claims characterized in that
said strut member (8,108,208) is associated at a heel unit 11 of a ski binding.
4. The device according to one or more of the preceding claims characterized in that
said strut member (8,108,208) is associated at the ends of said pair of wings 10 laterally
to a fixed body or bracket 13 of said heel unit (11).
5. The device according to one or more of the preceding claims, characterized in that
said supporting base 9,109,209 of said strut member (8,108,208) is directed toward
said quarter 4.
6. The device according to one or more of the preceding claims, characterized in that
said strut member (8,108,208) has a selected inclination with respect to the surface
on which said ski 12 rests, said supporting base 9,109,209 interacting by abutment,
when said boot is fitted onto said binding, at a facing lower perimetric edge 15of
said quarter 4.
7. The device according to one or more of the preceding claims, characterized in that
said strut member (8,108,208) automatically blocks the articulation of said quarter
4 with respect to said shell 2 in the skiing condition.
8. The device according to one of more of the preceding claims, characterized in that
said strut member (8,108,208) does not interact with said quarter 4 when the boot
is removed from said binding 11.
9. The device according to one or more of the preceding claims, characterized in that
said strut member (8) is constituted by a single part which is rigidly coupled at
said body or bracket 13 in a region located approximately along a longitudinal median
plane thereof.
10. The device according to one or more of the preceding claims, characterized in that
said strut member (8,108,208) is associated, at its ends, at a point of said heel
unit 11 which is stable once said heel unit has been closed, accordingly allowing
to maintain a very precise and unchanging position for said strut.
11. The device according to one or more of the preceding claims, characterized in that
said strut member (8) is rotatably associated, at one end, at said body or bracket
(13) and is biased toward said shell 2 and quarter 4 by an elastic means (16).
12. The device according to claim 11, characterized in that said elastic means is a spring
16 arranged between said supporting base 9 of said strut and said body or bracket
13.
13. The device according to one or more of the preceding claims, characterized in that
said strut member (108) is associated, at the free ends of said pair of wings 110,
on a cam 17 which belongs to the internal mechanism of said heel unit 11, said cam
being pivoted to said heel unit 11 at one end by a first pivot 18, in the vicinity
of the ends of said cam that interact with said strut, said cam 17 interacting with
a contrast cam 20 which can slide in contrast with a second spring 21.
14. The device according to claim 13, characterized in that said second spring 21 is set
so that beyond a preset load it allows the movement of said contrast cam 20 and therefore
a slight rotation of said cam 17 which allows said quarter 4 to rotate slightly backward,
so as to avoid the possible rupture of the skier's leg ligaments when falling with
a combined backward and sideways motion.
15. The locking device, according to claims 1, characterized in that said strut member
(208) is constituted by a lever which has a first end 50 freely pivoted at a heel
unit 11 which constitutes the binding for the ski, said lever having a second end
209 which protrudes toward said quarter 4 of said ski boot 1 so as to constitute a
supporting base which interacts with a lower perimetric edge 15 of said quarter 4
when the boot is engaged with said heel unit 11.
16. The device according to one or more of the preceding claims, characterized in that
said lever is pivoted in a lower region, proximate to said first end 50, to a second
cam 51 which is shaped like a wedge with the apex directed toward the ski, said second
cam (51) being associated with said heel unit 11 and being biased upward, one of its
sides interacting with said contrast cam 20.
17. The device according to one of more of the preceding claims characterized in that
on the opposite side with respect to the one that interacts with said contrast cam
20, said second cam 51 has a tooth 52 which engages a complementarily shaped tab 53
provided to the rear of said cam 17.
18. The device according to one of more of the preceding claims, characterized in that
said second spring 21, which controls the sliding of said contrast cam 20, can be
set so that beyond a preset load it allows the movement of said contrast cam 20 and
therefore the lowering of said second cam 51 and therefore the oscillation of said
lever, the second end of which performs a counterclockwise rotation to allow the downward
movement of said quarter 4.