Technical field
[0001] The present invention relates to a closure device for a sports footwear. More particularly,
the present invention relates to a closure device for sports footwear of the kind
comprising a substantially rigid outer shell, such as ski boots and the like.
[0002] The present invention further relates to a sports footwear, more particularly of
the kind comprising a substantially rigid outer shell, which is provided with one
or more above-mentioned closure devices.
Prior art
[0003] As is known, ski boots and other sports footwear provided with a substantially rigid
outer shell have a longitudinal opening, allowing to widen said outer shell for letting
the user insert his/her foot into the footwear and remove it therefrom, and are provided
with a plurality of closure devices which are transversely arranged across said longitudinal
opening, by means of which devices it is possible to close the footwear so as to immobilize
the user's foot inside the footwear during the sports practice.
[0004] More particularly, closure devices are known which comprise a supporting plate, suitable
for being rigidly fastened on a first side of the longitudinal opening of the shell,
an actuating lever, which is "U"-shaped and is pivotably connected to said supporting
plate, and a tensioning member which at a first end is pivotably connected to a middle
portion of the actuating lever and at a second end is provided with hooking means
for engaging with an anchoring plate (e.g. a rack) which is rigidly fastened on a
second, opposite side of said opening of said shell.
[0005] Such closure device can switch from an open position, in which the hooking means
of the tensioning member are disengaged from the anchoring plate and the distance
between the two sides of the longitudinal opening of the shell can be varied, to a
closed position, in which the hooking means of the tensioning member are firmly constrained
to the anchoring plate and the distance between the supporting plate and the anchoring
plate - and therefore the distance between the two sides of the longitudinal opening
of the shell - is fixed, and vice versa. When switching from the open position to
the closed position, the actuating lever pivots relative to the supporting plate and,
while pivoting, draws the tensioning member and the hooking means, which in turn draw
the anchoring plate, thus allowing the two sides of the longitudinal opening of the
shell to be brought closer to each other.
[0006] Closure devices of the above-mentioned kind are known, for instance from documents
EP 659 360,
US 5 586 367,
EP 1 958 539 and
EP 1 985 196. Besides carrying out the relevant technical function described above, the closure
devices - namely the actuating levers of said closure devices - give a significant
contribution to the overall appearance of a sports footwear, which can represent a
relevant element for the user when evaluating his / her purchase.
[0007] In general, in known closure devices the actuating levers are made of plastic material
and are manufactured by moulding.
[0008] Moulding is a manufacturing technique which utilizes a mould, in which the material
(for instance, plastic material) is injected or otherwise introduced for obtaining
components having the desired shape and size. In the known moulding processes, moulds
having predetermined shapes and sizes are used, which moulds therefore allow to manufacture
components all having the same shape and the same size.
[0009] If the manufacturer wished to create a component having a new, different design,
he/she should replace the mould, which would involve an important increase of the
manufacturing costs due to the production and/or purchase of the new mould.
[0010] In the specific case of the actuating levers of the closure devices for sports footwear,
it is evident that the constant manufacturing and/or purchase of new moulds for obtaining
components with different shapes and sizes would involve a high costs, which would
unsustainably affect the overall manufacturing costs of the sports footwear.
[0011] Accordingly, the main object of the present invention is to overcome the drawbacks
of prior art, by conjugating the possibility of obtaining closure devices with different
shapes and sizes and the need of maintaining the manufacturing costs as low as possible.
[0012] Another object of the present invention is to provide a closure device which in any
case shows satisfying performances, namely with reference to its handiness and ease
of use.
[0013] These and other objects are achieved by the closure device for sports footwear as
claimed in the appended claims.
Summary of the invention
[0014] In a manner known per se, the closure device of the present invention comprises a
supporting plate, an actuating lever pivotably connected to said supporting plate,
a tensioning member, which at a first end is pivotably connected to the actuating
lever and at a second end is provided with hooking means, and an anchoring member
provided with retaining means (for instance made as an anchoring plate having a rack)
in which said hooking means can engage.
[0015] Said closure device can be used as closure device for sports footwear, and it is
particularly suitable for being used as closure device for sports footwear of the
kind comprising a substantially rigid outer shell (for instance made of rigid plastic
material), such as ski boots and the like.
[0016] According to the invention, the actuating lever of said closure device consists of
a lever arm and of one or more ancillary elements rigidly connected to said lever
arm.
[0017] Said lever arm is pivotably connected to the supporting plate and the tensioning
member is pivotably connected, at one of its ends, to said lever arm, which therefore
carries out the technical functions of the lever. On the other hand, said ancillary
elements give a substantial contribution for determining the overall appearance of
the closure lever.
[0018] Due to the fact that the functional features and the aesthetical features of the
lever of the closure device according to the invention are largely independent from
each other, a high versatility can be obtained.
[0019] More particularly, it is possible to envisage a plurality of closure devices in which
the lever arm is invariant in shape and the ancillary element(s) rigidly fastened
to said lever arm is/are different each time, which allows to obtain a plurality of
products having significantly different aesthetical features with low manufacturing
costs.
[0020] More particularly, the lever arm can be obtained by moulding, by using a single mould,
always the same, and the ancillary elements can be obtained by technologies other
than moulding, with lower costs. The lever arm can be made of metal or plastic material.
The ancillary element can be made of the same material as the lever arm or of a different
material and it can preferably be made of a material which can be worked with limited
costs, such as a metal.
[0021] In a preferred embodiment of the invention, the lever arm is "Y"-shaped, with the
free ends of the wings pivotably connected to the supporting plate.
[0022] Advantageously, if compared to conventional "U"-shaped lever arms, the "Y"-like shape
of the present invention allows remarkable saving of the used material, which contributes
to keep the overall manufacturing costs low.
[0023] Still according to said preferred embodiment of the invention, said ancillary elements
are made as elements made of metal wire, suitably shaped and rigidly fastened to said
lever arm.
[0024] Due to the fact that the ancillary elements are made as elements made of metal wire,
the manufacturing costs can be further reduced.
[0025] Moreover, by using elements made of metal wire, the ancillary elements can be shaped
with such a shape and size that a great handiness can be conferred to the actuating
lever of the closure device, which lever can be grasped with high ease of use during
the opening and closing operations of the device itself, even in uncomfortable situations,
such as while wearing gloves or in the presence of snow and ice.
[0026] In an embodiment of the invention, the ancillary element(s) is/are irremovably connected
to the lever arm during the manufacturing process.
[0027] In an alternative embodiment of the invention, the ancillary element(s) is/are removably
fastened to the lever arm during the manufacturing process.
[0028] Advantageously, according to this particular embodiment the user has the possibility
of replacing said ancillary element(s) during the lifespan of the sports footwear,
thus modifying the overall appearance of the closure devices without modifying the
other components.
Brief description of the drawings
[0029] Further features and advantages of the invention will become more evident from a
detailed description of a preferred embodiment of the invention itself, given by way
of non-limiting example with reference to the attached drawings, in which:
Figure 1 shows a sports footwear provided with a plurality of closure devices according
to the invention;
Figure 2 shows in greater detail a closure device according to the invention;
Figures 3a e 3b show two possible manufacturing variants of the lever of the closure
device of Figure 2.
Detailed description of a preferred embodiment
[0030] With reference initially to Figure 1, a ski boot 101 is schematically shown. In general
said ski boot 101 comprises an inner liner 103 made of substantially soft material
and a shell 105 made of substantially rigid material. Both said inner liner and said
outer shell comprise a lower portion for receiving the user's foot and a cuff for
receiving the user's ankle and the lower part of the user's calf (only the lower portion
105a and the cuff 105b of the shell being visible in Figure 1).
[0031] The outer shell 105 comprises a longitudinal opening 107 extending along said lower
portion 105a and said cuff 105b. Thanks to the presence of said longitudinal opening,
the inner volume defined inside the outer shell 105 can be varied.
[0032] The boot 101 further comprises a plurality of closure devices 1 according to the
invention, which are arranged along said longitudinal opening and transversely across
it.
[0033] In Figure 2 a closure device 1 according to the invention is shown in greater detail.
[0034] Said closure device 1 comprises a supporting plate 5 intended to be fastened to the
shell 105 of the boot 101, on a first side of the longitudinal opening 107. To this
aim, said supporting plate 5 will be provided with through-holes for the passage of
corresponding means for fastening to the shell.
[0035] An actuating lever 3 is pivotably connected to the supporting plate 5 by means of
rotation pins 7.
[0036] Such device 1 further comprises a tensioning member 9, which has, at a first end
thereof, a connecting portion 9a, which portion is articulated to the actuating lever
3 by means of pins 11 with the interposition of an elastic resistance element 13 (such
as a spring), and, at a second, opposite end thereof, a hooking portion 9b, said connecting
portion and said hooking portion being preferably connected to each other in an articulated
way through a swivel joint 9c.
[0037] The hooking portion 9b of the tensioning member 9, at its end farther from the connecting
portion 9a, is provided with hooking means 15 which are suitable for engaging with
retaining means 17a of an anchoring element - namely an anchoring plate 17 - which
is fastened to the shell 105 of the boot 101, on a second, opposite side of the longitudinal
opening 107.
[0038] By acting upon said actuating lever 3 - and more particularly by rotating said lever
about the rotation pins 7 - the closure device 1 can be switched from a closed position
(shown in Figure 2), in which the hooking means 15 of the tensioning member 9 are
firmly engaged with the retaining means 17a of the anchoring plate 17, to an open
position, in which said hooking means of said tensioning member are disengaged from
said retaining means of said anchoring plate 17, and vice versa.
[0039] According to the invention, the actuating lever 3 of the closure device 1 consists
of a lever arm 19 and of at least one ancillary element 21 rigidly connected to said
lever arm 19.
[0040] As can be seen in Figure 1, both the supporting plate 5 and the tensioning member
9 are connected to the lever arm 19 of the actuating lever 3, so that said lever arm
performs the main functional features of said lever.
[0041] In the illustrated example, the lever arm 19 has a "Y"-like shape and it includes
a pair of wings 19a and a stem 19b, which joins the free end of the lever 3 to the
bifurcation point of said wings.
[0042] Herein, "Y"-like shape means that the lever arm 19 comprises a first elongated element
or stem 19b and two further elongated elements or wings 19a, the stem 19b and the
wings 19a lying in a same plane, the wings 19a being parallel to each other and parallel
to the stem 19b, and arranged on either sides of said stem 19b, substantially at the
same distance therefrom, the wings 19a facing each other and being arranged offset
relative to the stem 19b by a distance greater than or equal to the length of the
stem 19b and the end of said stem closer to said wings is joined to the ends of said
wings closer to said stem through respective joining sections.
[0043] The end of said stem 19b opposite to the end joined to the wings 19a is the above-mentioned
free end of the lever 3.
[0044] The wings 19a of the lever arm 19 comprise, at their free ends (opposite to the ends
joined to the stem 19b), respective bores for connecting pins 7 for the connection
to the supporting plate 5, and said wings further comprise, at a middle portion thereof,
respective bores for the passage of the pins 11 for the connection to the tensioning
member 9.
[0045] The lever arm 19 can be made of any suitable material according to the knowledge
of the person skilled in the art, more particularly of metal or plastic material.
Preferably, said lever arm 19 is made of plastic material and is obtained by moulding
techniques.
[0046] One or more ancillary elements 21 are rigidly connected to the lever arm 19.
[0047] In the example shown in Figure 2, a single accessory element 21 is provided, which
is shaped as a circumference arc, is fastened at its opposite ends to respective wings
19a of the lever arm 19 and passes through the stem 19b of said lever arm, which stem
is correspondingly provided with a through-hole.
[0048] Still with reference to Figure 2, it is evident that it could also be possible to
provide two distinct ancillary elements 21, both having the shape of a circumference
arc and fastened at one of their ends to the stem 19b of the lever arm 19 and at the
other one of their ends to a respective wing 19a of said lever arm.
[0049] According to the illustrated preferred embodiment, the ancillary element 21 is made
as an element made of metal wire. The material and thickness of said metal wire are
selected so that the ancillary element 21 is sufficiently rigid and non-deformable.
[0050] Advantageously, thanks to the fact that the ancillary element 21 is made of metal
wire, it can be obtained with reduced manufacturing costs and it can be shaped in
a wide variety of different shapes, as it will be disclosed in detail below.
[0051] Advantageously, as can be seen in Figure 2, the shape and size of the ancillary element
21 can be selected so as to give the actuating lever 3 a high handiness and ease of
use and, in particular, to allow to easily grasp said lever: due to the fact that
the ancillary element 21 is rigidly connected to the lever arm 19, said ancillary
element 21 can be grasped by the user for actuating the rotation of the lever 3, making
it switch from the closed position (shown in Figure 2) to the open position.
[0052] The ancillary elements 21 can be rigidly connected to the lever arm 19 through any
technique within the reach of the person skilled in the art.
[0053] More particularly, said ancillary elements 21 can be connected to the lever arm 19
either irremovably- for instance by gluing or welding - or removably - for instance
by providing, in the body of the lever arm 19, adequate seats in which the ends of
said ancillary elements 21 can be removably inserted.
[0054] The advantages of the invention will be immediately evident to the person skilled
in the art.
[0055] First of all, thanks to the fact that the lever 3 of the closure device 1 comprises
a lever arm 19 and one or more separate ancillary elements 21, a wide variety of closure
devices with different appearance can be obtained by starting from the same lever
arm 19 and using each time different ancillary elements.
[0056] More particularly, if the lever arm 19 is made as a moulded piece of plastic material
and the ancillary elements 21 are made as elements made of metal wire, a wide variety
of closure devices with different appearance can be obtained without the need for
modifying said mould or using different moulds.
[0057] In this respect, two possible manufacturing variants of the lever 3 of the closure
device 1 are shown in Figures 3a and 3b, which variants only differ in the ancillary
elements 21', 21" used, the lever arm 19 being unchanged and equal to that of the
lever of Figure 2.
[0058] As can be seen from Figures 3a and 3b, the overall appearance of the actuating lever
3 - and, as a consequence, of the closure device 1 and, in turn, of the sports footwear
101 - can be significantly changed by using, instead of the ancillary elements 21
shaped as circumference arcs of Figure 2, ancillary elements 21' shaped as a broken
line (Figure 3a) or ancillary elements 21" shaped as an ellipse arc (Figure 3b).
[0059] Secondly, the amount of plastic material used during the moulding step for the manufacturing
of the lever arm 19 only is considerably smaller than the amount used for manufacturing
the "U"-shaped actuating levers of the conventional closure devices, which involves
material and money saving.
[0060] Thirdly, since the ancillary elements 21 are not involved, or scarcely involved,
in the functional features of the lever 3 and the only requirement they have to fulfil
is not to be deformed, such ancillary elements can be made of cheaper materials and/or
by manufacturing techniques less expensive than moulding.
[0061] Moreover, by using different materials and manufacturing techniques it is possible
to obtain shapes that could hardly be obtained by moulding. More particularly, it
is possible to manufacture ancillary elements which improve the handiness and the
ease of grasping of the actuating lever of the closure device with respect to the
known devices.
[0062] Fourthly, if the ancillary elements are removably connected to the lever arm, it
can be provided that the user can separately purchase different ancillary elements
and thus customize his/her sports footwear and/or modify its appearance during its
lifespan.
[0063] It will be also evident to the person skilled in the art that the above detailed
description has been given by way of non-limiting example and several modifications
and variants are possible without departing from the scope of protection as defined
by the appended claims.
1. Closure device (1) comprising a supporting plate (5), an actuating lever (3) pivotably
connected to said supporting plate (5), a tensioning member (9) connected at one of
its ends to said lever (3) and provided at its opposite end with hooking means (15),
and an anchoring member (17) provided with retaining means (17a), wherein said hooking
means (15) of said tensioning member are intended to selectively engage said retaining
means (17a) of said anchoring member, characterized in that said actuating lever (3) consists of a lever arm (19) and of at least one or more
ancillary elements (21; 21'; 21") rigidly connected to said lever arm (19) and in that said supporting plate (5) and said tensioning member (9) are connected to said actuating
lever (3) at said lever arm (19).
2. Closure device (1) according to claim 1, wherein said lever arm (19) has a "Y"-like
shape and comprises a pair of wings (19a) and a stem (19b), said supporting plate
(5) being connected to said actuating lever (3) at the free ends of said wings (19a)
of said lever arm (19) and said tensioning member (9) being connected to said actuating
lever (3) at a middle portion of said wings (19a) of said lever arm (19).
3. Closure device (1) according to claim 2, wherein a single ancillary element (21; 21';
21 ") is provided, which ancillary element (21; 21'; 21 ") is fastened at its opposite
ends to respective wings (19a) of said lever arm (19) and passes through said stem
(19b) of said lever arm (19).
4. Closure device (1) according to claim 2, wherein a pair of ancillary elements are
provided, each of said ancillary elements being fastened at one of its ends to said
stem (19b) of said lever arm (19) and at its opposite end to a respective wing (19a)
of said lever arm (19).
5. Closure device (1) according to any of the claims 1 - 4, wherein said lever arm (19)
is made of metal or plastic material.
6. Closure device (1) according to any of the claims 1 - 5, wherein said one or more
ancillary elements (21; 21'; 21") are elements made of metal wire.
7. Closure device (1) according to any of the claims 1 - 6, wherein said one or more
ancillary elements (21; 21'; 21") are irremovably fastened to said lever arm (19).
8. Closure device (1) according to any of the claims 1 - 6, wherein said one or more
ancillary elements (21; 21'; 21") are removably fastened to said lever arm (19).
9. Sports footwear (101), of the kind comprising an outer shell (105) made of a substantially
rigid material and provided with a longitudinal opening (107) that extends along said
shell, characterized in that it comprises one or more closure devices according to any of the claims 1 - 8 arranged
transversely across said longitudinal opening (107), said supporting plate (5) and
said anchoring member (17) being fastened to said shell on the opposite sides of said
longitudinal opening (107).
10. Method for manufacturing a closure device (1), of the kind comprising a supporting
plate (5), an actuating lever (3) pivotably connected to said supporting plate (5),
a tensioning member (9) connected at one of its ends to said lever (3) and provided
at its opposite end with hooking means (15), and an anchoring member (17) provided
with retaining means (17a),
characterized in that it comprises the steps of:
- moulding a lever arm (19);
- shaping one or more ancillary elements (21, 21'; 21"); and
- rigidly fastening said one or more ancillary elements (21, 21'; 21") to said lever
arm (19) for obtaining said actuating lever (3).
11. Method according claim 10, wherein said one or more ancillary elements (21; 21'; 21
") are made as elements made of metal wire.