[0001] This invention relates to a ski boot toe ferrule particularly for cross-country ski
boots.
[0002] Known are several types of ferrules for cross-country skiing boots which generally
comprise a small block carried forwardly on the boot and supporting a pair of metal
pegs or inserts in a variety of configurations for engagement with the ski bindings.
[0003] Usually such metal pegs or inserts have different shapes to meet the skier's own
requirements, and this in order to provide improved convenience and better utilization
of the skier's exertion on the skiso
[0004] There are metal pegs or inserts which do not allow the boot to pivot about the attachment
point of the boot to the ski binding, thereby the sole of the boot is deformed elastically
during the striding and boot flexing movements performed by the skier.
[0005] There are also metal pegs or inserts which permit only partial rotation of the boot
about the attachment point with successive flexing of the sole.
[0006] In practice, a skier will select the type of ski bindings in conformity with personal
preferences and the conditions which he/she is expecting to meet while skiing.
[0007] However, such prior toe ferrules are not devoid of drawbacks, such as total dependence
upon the type of bindings to which the boot is to be mounted.
[0008] Another drawback is that the toe ferrule cannot be re-used in the event of it, or
a single one of the metal pegs or inserts, being accidentally broken, or wearing out.
[0009] It is a primary object of this invention to provide a toe ferrule for attaching the
boot to the ski which is not compulsorily related to the type of ski bindings to be
adopted, thereby allowing a wider choise for the skier, which best suits his/her preferenoes
and demands.
[0010] Another object of the invention is to enable worn out or broken metal pegs or inserts
to be replaced with new metal pegs or inserts without incurring the necessity to replace
the whole toe ferrule or even the whole ski boot.
[0011] These and other objects are achieved by a ski boot toe ferrule particularly for cross-country
skis, characterized in that it comprises a cylindrical seat defined in a small block
carried forwardly on the ski boot and pivotally accommodating therein a small internally
threaded cylinder having a substantially perpendicular axis with respect to the longitudinal
axis of the boot and lying parallel to a plane defined by the top face of the ski
for releasable engagement with metal pegs or inserts adapted for coupling with various
ski bindings.
[0012] Further features and advantages will become apparent from the detailed description
of a toe ferrule according to the invention, with reference to the accompanying illustrative
drawing, where
Figure 1 is a partly sectional top plan view of a toe ferrule according to the invention;
Figure 2 is an example of different configuration pegs which may be carried on a toe
ferrule according to the invention;
Figure 3 is a partly sectional side view of a toe ferrule according to the invention,
with a fragmentary view of the ski binding;
Figure 4 is a partly sectional side view of a toe ferrule according to the invention
showing the movement during the stride;
Figure 5 is a plan view of a toe ferrule with a U-like element partly embedded therein;
Figure 6 is a perspective side view of a toe ferrule according to the invention having
enhanced flexibility; and
Figure 7 is a perspective side view of the same toe ferrule of Figure 6, according
to the invention, during the flexing thereof.
[0013] With reference to the drawing figures, a toe ferrule according to the invention,
generally designated with the reference numeral 1, comprises a small block 2 of an
elastically deformable material which is carried forwardly on a ski boot.
[0014] Internally of the block there may be noticed a foil 3 which at an end portion thereof,
has a cylindrical seat 4 according to the invention.
[0015] This cylindrical seat has an axis which extends substantially perpendicular to the
boots' longitudinal axis and parallel to the top face of the ski, it being adapted
for accommodating, according to the invention,a small cylinder or barrel 5 which is
rotatable about its own axis relatively to the cylindrical seat.
[0016] The cylinder 5 has two threaded portions 6a and 6b, respectively, on its interior,
which portions extend from each end of the cylinder 5, towards the centre portion
thereof.
[0017] Advantageously, of the two threads, one is right- handed and the other left-handed
to facilitate opposite threading in of the metal pegs or inserts 7, when the block
2 has been introduced into a ski binding, including lateral walls 100 having axially
aligned holes formed therein for introduction of the threaded portions of said metal
pegs or inserts, for threaded engegement with said threaded portions of said cylindrical
seat.
[0018] Further, and as shown in Figure 5, the toe ferrule of this invention may carry a
substantially U-like element 8 which has a straight portion 9 partly embedded in the
small block 2. This straight portion 9 extends along a direction extending substantially
perpendicular to the boot longitudinal axis and parallel to the ski top face, it having
its ends overhanging the side faces of the block 2 on opposite sides thereof. From
the ends of this straight portion there extend two co-directional arms 10a and 10b
which are equidistant from the side faces of the block 2 and have their free ends
connected to the boot sole. Each of the ends of the straight portion supports a bushing
11 rotatably thereon which releasably engages with the ski binding.
[0019] Advantageously, the block 2 defines a first dimension, as measured parallel to the
axis of the cylindrical seat, which is substantially equal to that of the ski binding
seat which is adapted to receive it, and a second dimension, measured perpendicularly
to the plane defined by the boot sole, which is substantially larger than 1/3 of the
first dimension.
[0020] The ferrule 1, moreover, may have at the top thereof a recess 12 Which extends in
a substantially perpendicular direction to the longitudinal axis of the boot, and
at the bottom, an inclined surface adapted for utilizing, during the first portion
of the stride, the rotation of the ferrule relatively to the binding and subsequently
the flexing of the ferrule itself as shown in Figure 6.
[0021] The operation of the inventive ferrule will be apparent from the foregoing description.
[0022] Depending upon the bindings carried on the skis, metal pegs or inserts are selected
for threading into the cylinder 5. Thus, irrespective of the binding types, there
will always occur a partial rotation of the boot and subsequent flexing of the ferrule.
[0023] In the event of even a single peg or insert wearing out or becoming broken, it would
be sufficient to unthread the damaged peg and replace it with a new one.
[0024] It has been found in actual practice that a toe ferrule according to the invention
enables one and the same boot to be used with different bindings for cross-country
skis by merely replacing either both pegs or one insert.
[0025] In practicing the invention, the materials used and the dimensions may be any selected
ones contingent on requirements and the state of the art.
1. A ski boot toe ferrule particularly for cross-country ski boots, characterized
in that it comprises a cylindrical seat (4) defined in a small block (2) carried forwardly
on the ski boot and accommodating. therein a small internally threaded cylinder (5)
having a substantially perpendicular axis with respect to the longitudinal axis of
the boot and lying parallel to a plane defined by the top face of the ski for releasable
engagement with metal pegs or inserts (7) adapted for coupling to various ski bindings.
2. A ski boot toe ferrule according to claim 1, characterized in that said cylindrical
seat (4) is carried on an insert embedded in the boot toe portion.
3. A ski boot toe ferrule according to claim 1, characterized in that said small cylinder
(5) has two threaded portions (6a,6b) on its interior each extending from one end
of said small cylinder (5).
4. A ski boot toe ferrule, characterized in that said two threaded portions (6a,6b)
have oppositely handed threads.
5. A ski boot toe ferrule according to one or more of the preceding claims, characterized
in that it comprises a substantially U-like element (8) having a straight portion
(9) partly embedded in said small block (2) and extending along an axis which lies
substantially perpendicular to the boot longitudinal axis and substantially parallel
to said top face of the ski.
6. A ski boot toe ferrule, according to one or more of the preceding claims, characterized
in that said substantially U-like element (8) has two arms (10a,10b) extending from
the ends of said straight portion (9) in parallel with the side faces of said small
block (2) and having their free ends connected to'the boot sole.
7. A ski boot toe ferrule, according to one or more of the preceding claims, characterized
in that it comprises a pair of bushings (11) each in pivotal engagement with one of
the ends of said straight portion (9) protruding from said small block (2).
8. A ski boot toe ferrule, according to one or more of the preceding claims, characterized
in that said small block (2) has a first dimension, measured parallel to the cylindrical
seat (4) axis, which is substantially equal to the dimension of the seat in said ski
binding which receives it, and a second dimension, measured perpendicularly to the
plane defined by the ski boot sole, which is substantially greater than 1/3 of said
first dimension.
9. A ski boot toe ferrule, according to claim 1, characterized in that said small
block (2) has at the top a recess extending in a substantially parallel direction
to the axis of said cylindrical seat (4).
10. A ski boot toe ferrule, according to one or more of the preceding claims, characterized
in that said small block is made of an elastically deformable material.