[0001] The invention relates to a footrest according to the introductory portion of claim
1.
[0002] Such a footrest is known from practice in the form of the "Basic 952" footrest commercially
available from Score B.V. in Tolbert, The Netherlands. Such footrests are particularly
used in situations where work surface height adjustment is not feasible and in particular
if the seat would otherwise be too high above the floor so that the seat would hamper
blood circulation through the legs. The "Basic 952" footrest has foot-operated instant
height adjustment with a range of 8-29 cm and a load capacity of 100 kg. The "Basic
952" has 12 height levels, which can be easily adjusted while the user is seated using
one foot to operate a pedal hinged to a base part. When the pedal is operated, the
catch is retracted from engagement with the rack while the other foot is held in a
position on top of the treadboard to counteract upward force exerted by springs urging
the treadboard upwardly. Then the foot on top of the treadboard is pushed down if
lowering of the footrest height is desired or lifted to allow the treadboard to rise
if an increase of the footrest height is desired. When the desired height is reached,
the pedal is released and the catch again engages the toothed rack to fix the footrest
height at the level reached. Because the treadboard height is adjusted by changing
the angle of mutually crossing leg structures under the treadboard, the footrest height
can be adjusted without requiring a support permanently projecting to a maximum achievable
height, which support projects above the treadboard when the footrest height is set
to a lower level. Such a support projecting above the treadboard limits freedom of
movement of the user's feet and can cause discomfort to a user when hit inadvertently
with a foot or lower leg portion of the user.
[0003] From
EP 1 351 214 another height adjustable footrest with mutually crossing leg structures is known.
In this footrest, the adjustment structure includes a threaded rod rotatably mounted
to the treadboard part and carrying an adjustment knob by which the rod can be rotated.
The thread engages a nut mounted to an end portion of one of the leg structures, while
the other leg structure is hinged to the treadboard part with its hinge axis in a
fixed position. By rotating the knob, the distance between the hinge axes at the side
of the treadboard is steplessly adjustable, so that the height of the footrest is
steplessly adjustable. However, adjusting the height can only be operated by hand.
[0004] From
WO86/06941 yet another height adjustable footrest with mutually crossing leg structures is known.
In this footrest, the leg structures are not hinged to each other between end portions
of the respective leg structures. Instead, the positions of the hinge axes at the
side of the treadboard are fixed, which allows the treadboard to tilt. The footrest
is adjustable in height by changing the distance between the lower ends of the leg
structures by selecting a hole in an adjustment member extending from one lower leg
structure end to the other lower leg structure end and engaging the selected hole
with a pin on the other lower leg structure end. In this footrest, adjusting the height
also requires manual intervention and the steps between selectable footrest heights
are rather large.
[0005] From
GB 982 538 a height adjustable platform with mutually crossing leg structures is known.
SUMMARY OF THE INVENTION
[0006] It is an object of the present invention to provide a height adjustable footrest
with no support column projecting above the footrest, of which the height can be adjusted
in small steps and with little effort, but in which the selected height is reliably
maintained even if the footrest is subjected to large loads.
[0007] According to the invention, this object is achieved by providing a footrest according
to claim 1.
[0008] Because the teeth of the rack each project from a base to a top in a direction transverse
to the engagement directions to a counter surface facing the rack and, in the protruded
position in which the catch and the rack are mutually engaged, the catch projects
into a space between the rack and the counter surface, the catch is reliably held
in engagement with the teeth even if resultant forces urge the catch away from the
rack. This in turn allows the teeth of the rack to be relatively low and/or shaped
to resist high shear forces, so that a required tooth load bearing resistance can
be achieved with fine teeth and accordingly a large number of teeth per unit of length,
which allows adjusting the height in small steps. This is of particular relevance
in height adjustment of support structures with pivotable, mutually crossing leg structures,
because in such structures, when the footrest is in a low height setting, loads exerted
on the adjustment structure are typically very high and a small adjustment at the
adjustment structure results in a relatively large height change.
[0009] Particular elaborations and embodiments of the invention are set forth in the dependent
claims.
[0010] Further features, effects and details of the invention appear from the detailed description
and the drawings.
BRIEF DESCRIPTION OF THE DRAWINGS
[0011]
Fig. 1 is a frontal view of an example of a footrest according to the invention with
a treadboard being shown in cut-away fashion;
Fig. 2 is a side view of the footrest according to Fig. 1 with the treadboard shown
in cut-away fashion;
Fig. 3 is a cross-sectional view along the line III-III in Fig. 2 without the treadboard;
Fig. 4 is a view according to Fig. 3, with the footrest in a lowered position;
Fig. 5 is a cross-sectional view along the line V-V.in Fig. 1 without the treadboard;
Fig. 6 is a top view of the footrest according to Figs. 1-5 without the treadboard;
Fig. 7 is an enlarged view of detail VII in Fig. 6;
Fig. 8 is an enlarged view of detail VIII in Fig. 3; and
Fig. 9 is an enlarged view of detail IX in Fig. 5.
DETAILED DESCRIPTION
[0012] Below, an example of a footrest according to the invention shown in the drawings
is described with a discussion of its particular features more in general. Examples
of alternatives and variants within the framework of the invention are discussed as
well.
[0013] The footrest shown in the drawings has a treadboard part 1 with a treadboard 14 and
a treadboard frame 15, and a support structure 2 under the treadboard part 1 supporting
the treadboard part 1. The support structure 2 has an adjustment structure 3 for adjusting
the height at which the treadboard 1 is supported by the support structure 2. The
treadboard 14 is pivotable relative to the treadboard frame 15 about a pivot axis
22.
[0014] The support structure 2 has two leg structures 4, 5. A first one of the leg structures
4 has two legs 6, 7 and shafts 10, 11 interconnecting its legs 6, 7. A second one
of the leg structures 5 has two legs 8, 9 and shafts 12, 13 interconnecting its legs
8, 9. It is noted that one or both of the leg structures may also have a different
number of legs, e.g. one or three legs, which may be equipped with foot members or
connecting members e.g. in T-bar form and that the legs may be of any suitable cross-section,
e.g. circular, T or I shaped or in the form of for instance (sandwich) plate shaped
members. The legs 6-9 are hinged to the frame 15 of the treadboard part 1 about mutually
parallel and spaced apart hinge axes 16, 17. As in the present example, the hinge
axes are preferably located at generally opposite ends of the treadboard part so that
relatively long leg structures can be accommodated and a large adjustment range (preferably
more than 18 or 20 cm) is obtained. The legs structures 4, 5 cross each other in a
position spaced from the hinge axes 16, 17 and are hinged to each other about a central
hinge axis 18 at the crossing and parallel to the hinge axes 16, 17. The legs structures
4, 5 are also hinged to a base part 19 about base hinge axes 20, 21 parallel to the
other hinge axes 16-18 and mutually spaced apart.
[0015] It is noted that the central hinge axis may be left out if a tilting treadboard part
is desired. Alternatively, the base hinge axes and the base part may be left out.
The leg structures do not need to intersect, but may cross along each other at a mutual
distance as mutually skew lines.
[0016] The adjustment structure 3 is coupled to and extends between end portions of the
leg structures 4, 5 at the treadboard side of the leg structures 4, 5 for adjusting
the spacing between the hinge axes 16, 17 at the treadboard side of the leg structures
4, 5. The adjustment structure 3 has a first adjustment member 23 coupled to the end
portion of the leg structure 4. The first adjustment member has toothed racks 25,
26 oriented in longitudinal directions 28. A second adjustment member 24 of the adjustment
structure 3 is coupled to the end portion of the other leg structure 5 and has a catch
27 displaceable along the racks 25, 26 and arranged for engagement with the racks
25, 26 in selectable positions along the racks 25, 26.
[0017] The catch 27 is displaceable relative to the racks 25, 26 in engagement directions
29 transverse (preferably perpendicular) to the longitudinal direction 28 between
a protruded position as shown in the drawings in which the catch 27 and the racks
25, 26 are mutually engaged and a retracted position in which the catch 27 and the
racks 25, 26 are mutually released.
[0018] By disengaging the catch 27 from the racks 25, 26 and engaging the catch 27 with
the racks 25, 26 in another position, the overall length of the adjustment structure
3, and accordingly the distance between the hinge axes 16, 17 at the treadboard side
of the leg structures 4, 5, can be changed as is illustrated by Figs. 3 and 4. With
this change, also the vertical distance between the hinge axes 16, 20 and 17, 21 is
changed so that the height setting of the footrest is changed. On one side of the
treadboard frame 15 and the base part 19, the leg structures are hinged about axes
17, 21 in fixed positions, whereas on the opposite side, the shafts 10, 13 are slidably
guided in slots 39-42 for allowing the distance between horizontally opposite hinge
axes 16, 17 and 20, 21 to be changed.
[0019] As can be seen in Fig. 4, in the lowest height setting, the leg structures 4 and
5 have been pivoted into an orientation almost parallel to the longitudinal direction
28 of the adjustment structure 3, in which direction the length of the adjustment
structure 3 is adjustable. In view of this effect, when the footrest is in a low height
setting, loads exerted on the adjustment structure are typically very high and a small
adjustment at the adjustment structure 3 results in a relatively large height change.
Therefore, a rack in which a combination of a high tooth load resistance is combined
with teeth with a small pitch is of particular relevance in height adjustment of support
structures with pivotable, mutually crossing leg structures.
[0020] The teeth 30 of the racks 25, 26 each project from a base 31 to a top 32 in a direction
33 transverse (preferably perpendicular) to the engagement directions 29 to a counter
surface 26, 25 facing the respective rack 25, 26. In the protruded position in which
the catch 27 and the racks 25, 26 are mutually engaged, the catch 27 projects into
a space 34 between the rack 25, 26 and the counter surface 26, 25 and is in contact
with the counter surface 26, 25. In the present example, the racks 25, 26 each form
the counter surface facing the other rack, but the counter surface may in principle
also be of a different design, for instance in the form of a smooth surface.
[0021] Because the catch 27 engages the racks 25, 26 in a direction transverse to the direction
in which the teeth 30 project from the respective bases thereof, tooth pressure components
urging the catch away from the respective teeth do not operate in a direction contrary
to the engagement direction, but transverse thereto and result in the catch 27 being
pressed against the counter surface. In the present example the tooth pressure components
urging the catch 27 away from the racks 25, 26 cancel each other out. Thus, the catch
27 is reliably prevented from becoming dislodged from the racks 25, 26 due to tooth
pressure urging the catch 27 away from the respective rack 25, 26. This in turn allows
the teeth 30 of the racks 25, 26 to be relatively low and/or shaped to resist high
shear forces, so that a required tooth load bearing resistance can be achieved with
fine teeth and accordingly a large number of teeth per unit of length. This allows
adjusting the height in small steps.
[0022] For bringing and keeping the catch 27 in engagement with the racks 25, 26, a bolt
35 projects from a bridge 36 of the treadboard frame 15 through strips of the first
and second adjustment members 23, 24 and carries a spring 37 biasing the strips against
each other and towards a lower side of the bridge 36. The strips extend through a
slit 38 in the bridge so that the distance over which the second adjustment 24 member
can be urged away from the first adjustment member 23 is limited.
[0023] For bringing the catch 27 out of engagement with the racks 25, 26 the second adjustment
member 24 has a release arm 43 which has an operating end projecting slightly above
the treadboard 14. By pressing the release arm 43 down, at the catch 27, the second
adjustment member 24 is pressed away from the first adjustment member 23 against a
biasing force exerted by the spring 37, so that the catch 27 is brought out of engagement
with the racks 25, 26. Since the spring 37 does not have to counteract tooth force
components perpendicular to the racks 25, 26, the spring 37 can be dimensioned to
exert a small biasing force and a small operating force is sufficient to urge the
catch 27 out of engagement with the racks 25, 26. When the catch 27 is out of engagement
with the racks 25, 26 torsion springs 44, 45 around the central hinge axis 18 and
helical springs 46, 47 tensioned between treadboard ends of the leg structures 4,
5 bias the treadboard ends of the leg structures 4, 5 towards each other so the treadboard
14 is urged in upward direction. The treadboard level can easily be controlled by
the same foot of a user with which also the release arm is operated. By pressing that
foot down or lifting it, the user can change the height of the footrest to the desired
height. By then releasing the release arm 43, the catch 27 is caused to be biased
back into engagement with the racks 25, 26 by the spring 37. Thus, releasing and locking
the adjustment structure 3 and adjusting the height of the footrest can easily be
operated with one foot.
[0024] In the present example, the catch 27 and the release arm 43 are bolted to opposite
sides of a strip of the second adjustment member 24 by bolts 49.
[0025] By providing that, as in the present example, the counter surface facing the rack
25, 26 is formed by a second toothed rack 26, 25 respectively, and that the catch
27 also engages teeth 30 of the counter surface when the catch and the other, first
toothed rack 25, 26 are mutually engaged, tooth pressure forces urging the racks 25,
26 and the catch 27 apart are balanced out generally centering the catch between the
racks and the forces exerted via the catch 27 are distributed over two racks. This
reduces the loads exerted onto each single rack 25, 26, so that a required overall
load resistance can be achieved with smaller teeth and an even finer adjustment pitch
can be achieved.
[0026] In the present example, the catch 27 has toothed faces with a plurality of teeth
48 with a pitch in the longitudinal direction 28 which, when the catch 27 and the
racks 25, 26 are mutually engaged, engage teeth 30 of the toothed racks 25, 26 with
a corresponding pitch in that longitudinal direction 28. By providing a plurality
of pairs of mutually engaged teeth with a pitch in longitudinal direction, loads exerted
via the catch 27 are distributed over a larger number of teeth, which are therefore
loaded less and can be of smaller dimensions, which further allows reducing the adjustment
pitch.
[0027] The racks 25, 26 are part of the first adjustment member 23 which is coupled to the
end portion of the first leg structure 4. Flanks 50 of the teeth 30 of the toothed
racks 25, 26 facing towards that leg structure end portion have a positive pressure
angle α. Due to this positive pressure angle α, the teeth 30 can withstand a large
load in the longitudinal direction. This also allows the teeth 30 to be dimensioned
relatively small, so that a small pitch and accordingly a small adjustment pitch can
be achieved. A positive pressure angle results in a relatively large tooth pressure
component urging the catch 27 away from the respective rack 25, 26. In the present
invention, a relatively large tooth pressure component urging the catch 27 away from
the respective rack 25, 26 can be accepted since movement of the catch 27 away from
the rack 25, 26 is limited by the counter surface (in the present example the opposite
rack). The pressure angle is preferably larger than 5° and more preferably larger
than 7°. The pressure angle is preferably smaller than 15° and more preferably smaller
than 13°.
[0028] In the present example, the flanks of the teeth 30 of the toothed racks 25, 26 facing
away from the leg structure end portion coupled to the first adjustment member 23
have a larger positive pressure angle than the positive pressure angle a of the flanks
50 that rest against teeth 48 of the catch 27 when the footrest is loaded with for
instance the weight of the legs of a user. The asymmetric tooth shape further increases
resistance of the teeth 30 against loads exerted in the longitudinal direction 28.
Essentially the same considerations, but in a contrary longitudinal direction apply
to the teeth 48 of the catch that are of a shape matching the interspaces between
successive teeth 30 of racks 25, 26 and form an essentially Christmas tree shaped
configuration.
[0029] The shape of the teeth 48 of the catch 27 is identical to the shape of the teeth
of the racks 25, 26. Thus, the teeth of the racks 25, 26 and the teeth 48 of the catch
27 are designed to the same load bearing capability and optimal use is made of the
material available at a minimal pitch and occupying a minimal space.
[0030] In the present example, the adjustment structure is mounted to the treadboard part
1, which is advantageous because it allows both direct operation of the adjustment
structure 3 and controlling the treadboard level with one foot. It is however also
conceivable to provide the adjustment structure at the base side or base part of the
support structure. The catch will then have to be operated in a different manner,
for instance via a pedal mounted to a base part of the footrest or via an operating
member mounted to the treadboard part and coupled to the catch via a flexible operating
structure, such as a Bowden cable.
[0031] In the present example, the racks are arranged on inner surfaces of a slot in a strip
of metal, preferably steel. Thus, a particularly flat construction is obtained that
can be accommodated without adding much to the minimum height of the footrest. Moreover,
such a flat construction is concealed from view particularly effectively, when mounted
to the treadboard part 1 under the treadboard 14.
[0032] It is also possible to arrange the rack and the counter surface, which may also be
a rack, in a different structure, for instance on mutually facing inner surfaces of
a U-profile.
1. A height adjustable footrest comprising:
a treadboard part (1);
a support structure (2) comprising first and second leg structures (4, 5), each comprising
at least one leg (6-9), the leg structures (4, 5) being hinged to the treadboard part
(1) about mutually parallel and spaced apart hinge axes (16, 17), wherein the leg
structures (4, 5) cross each other in a position spaced from said hinge axes (16,
17) and are at least hinged to each other about a further hinge axis (18) at said
crossing and parallel to said hinge axes (16, 17) or to a base part about base hinge
axes (20, 21) parallel to said hinge axes (16, 17) and mutually spaced apart; and
an adjustment structure (3) coupled to and extending between end portions of the leg
structures (4, 5) at a treadboard side or at a base side of the leg structures (4,
5) for adjusting the spacing between the hinge axes (16, 17) at the treadboard side
of the leg structures (4, 5), the adjustment structure (3) comprising a first adjustment
member (23) coupled to one of said end portions and having a toothed rack (25, 26)
oriented in a longitudinal direction (28) and a second adjustment member (24) coupled
to the other one of the end portions and comprising a catch (27) displaceable along
the rack (25, 26) and arranged for engagement with the rack (25, 26) in selectable
positions along the rack (25, 26), wherein at least the catch (27) or the rack (25,
26) is displaceable in engagement directions (29) transverse to said longitudinal
direction (28) between a protruded position in which the catch (27) and the rack (25,
26) are mutually engaged and a retracted position in which the catch (27) and the
rack (25, 26) are mutually released;
wherein the teeth (30) of the rack (25, 26) each project from a base (31) to a top
(32) in a tooth height direction (33) transverse to said engagement directions (29)
to a counter surface (26, 25) facing said rack (25, 26) and wherein, in the protruded
position in which the catch (27) and the rack (25, 26) are mutually engaged, the catch
(27) projects into a space (34) between the rack (25, 26) and the counter surface
(26, 25) and contacts the counter surface (26, 25).
2. A footrest according to claim 1, wherein the counter surface (26, 25) is formed by
a second rack (26, 25), the catch (27) also engaging teeth of the counter surface
(26, 25) when the catch (27) and the other, first toothed rack (25, 26) are mutually
engaged.
3. A footrest according to claim 1 or 2, wherein the catch (27) has a toothed face comprising
at least two teeth (48) with a pitch in said longitudinal direction (28) which, when
the catch (27) and the rack (25, 26) are mutually engaged, engage teeth (30) of the
toothed rack (25, 26) with a corresponding pitch in said longitudinal direction (29).
4. A footrest according to any of the preceding claims, wherein flanks (50) of the teeth
of the rack (25, 26) facing towards the leg structure end portion to which the adjustment
member (23) comprising that rack (25, 26) is coupled have a positive pressure angle
(α).
5. A footrest according to any of the preceding claims, wherein the racks (25, 26) are
arranged on inner surfaces of a slot in a strip of metal, preferably steel.
6. A footrest according to any of the preceding claims, wherein the adjustment structure
(3) is mounted to the treadboard part (1), preferably under a treadboard (14).
7. A footrest according to any of the preceding claims, wherein at least in cross-section
along a plane in longitudinal direction (28) perpendicular to the racks (25, 26),
the teeth (48) of the catch (27) and the teeth of the racks (25, 26) have the same
shape.
1. Höhenverstellbare Fußstütze, umfassend:
ein Trittbrettteil (1);
eine Stützstruktur (2), umfassend erste und zweite Beinstrukturen (4, 5) mit jeweils
mindestens einem Bein (6-9), welche Beinstrukturen (4, 5) an dem Trittbrettteil (1),
um zueinander parallele und in einem Abstand voneinander angeordnete Gelenkachsen
(16, 17) angelenkt sind, wobei die Beinstrukturen (4, 5) einander kreuzen in einer
von den Gelenkachsen (16, 17) beabstandeten Position und mindestens aneinander angelenkt
sind, um eine weitere Gelenkachse (18) an der Kreuzung und parallel zu den Gelenkachsen
(16, 17) oder zu einem Basisteil um Basisgelenkachsen (20, 21) parallel zu den Gelenkachsen
(16, 17) und in einem Abstand voneinander; und
eine Anpassungsstruktur (3), gekoppelt an und verlaufend zwischen Endabschnitten der
Beinstrukturen (4, 5) an einer Trittbrettseite oder an einer Basisseite der Beinstrukturen
(4, 5) zum Anpassen des Abstands zwischen den Gelenkachsen (16, 17) an der Trittbrettseite
der Beinstrukturen (4, 5), die Anpassungsstruktur (3) umfassend ein erstes Anpassungselement
(23), gekoppelt an einen der Endabschnitte und versehen mit einer Zahnstange (25,
26), ausgerichtet in einer Längsrichtung (28), und ein zweites Anpassungselement (24),
gekoppelt an den anderen der Endabschnitte und umfassend eine Arretierung (27), verschiebbar
entlang der Zahnstange (25, 26) und angeordnet zum Eingreifen mit der Zahnstange (25,
26) in wählbaren Positionen entlang der Zahnstange (25, 26), wobei mindestens die
Arretierung (27) oder die Zahnstange (25,26) verschiebbar ist in Eingreifrichtungen
(29) quer zu der Längsrichtung (28) zwischen einer vorspringenden Position, in der
die Arretierung (27) und die Zahnstange (25, 26) ineinander eingreifen, und einer
zurückgezogenen Position, in der die Arretierung (27) und die Zahnstange (25, 26)
voneinander gelöst sind;
wobei die Zähne (30) der Zahnstange (25, 26) jeweils von einer Basis (31) zu einer
Oberseite (32) in einer Zahnhöhenrichtung (33) quer zu den Eingreifrichtungen (29)
zu einer Gegenfläche (26, 25) gegenüber der Zahnstange (25, 26) hervorstehen, und
wobei in der vorspringenden Position, in der die Arretierung (27) und die Zahnstange
(25, 26) ineinander eingreifen, die Arretierung (27) in einen Raum (34) zwischen der
Zahnstange (25, 26) und der Gegenfläche (26, 25) hervorsteht und die Gegenfläche (26,
25) berührt.
2. Fußstütze nach Anspruch 1, wobei die Gegenfläche (26, 25) von einer zweiten Zahnstange
(26, 25) gebildet wird, die Arretierung (27) ebenfalls eingreifend in Zähne der Gegenfläche
(26, 25), wenn die Arretierung (27) und die andere erste Zahnstange (25, 26) ineinander
eingreifen.
3. Fußstütze nach Anspruch 1 oder 2, wobei die Arretierung (27) eine gezahnte Fläche
hat, umfassend mindestens zwei Zähne (48) mit einer Neigung in der Längsrichtung (28),
die, wenn die Arretierung (27) und die Zahnstange (25, 26) ineinander eingreifen,
in Zähne (30) der Zahnstange (25, 26) mit einer entsprechenden Neigung in der Längsrichtung
(29) eingreifen.
4. Fußstütze nach einem der vorhergehenden Ansprüche, wobei Flanken (50) der Zähne der
Zahnstange (25, 26), gerichtet zu dem Endabschnitt der Beinstruktur, an den das Anpassungselement
(23), das diese Zahnstange (26, 26) umfasst, gekoppelt ist, einen positiven Druckwinkel
(α) haben.
5. Fußstütze nach einem der vorhergehenden Ansprüche, wobei die Zahnstangen (25, 26)
an Innenflächen eines Schlitzes in einem Streifen aus Metall, bevorzugt Stahl, angeordnet
sind.
6. Fußstütze nach einem der vorhergehenden Ansprüche, wobei die Anpassungsstruktur (3)
an dem Trittbrettteil (1), bevorzugt unter einem Trittbrett (14), montiert ist.
7. Fußstütze nach einem der vorhergehenden Ansprüche, wobei mindestens im Querschnitt
entlang einer Ebene in Längsrichtung (28) senkrecht zu den Zahnstangen (25, 26) die
Zähne (48) der Arretierung (27) und die Zähne der Zahnstangen (25, 26) dieselbe Form
haben.
1. Repose-pieds ajustable en hauteur comprenant :
une partie de marche (1) ;
une structure de support (2) comprenant des première et seconde structures de patte
(4, 5), comprenant chacune au moins une patte (6-9), les structures de patte (4, 5)
étant articulées par rapport à la partie de marche (1) autour d'axes de charnière
mutuellement parallèles et espacés (16, 17), dans lequel les structures de patte (4,
5) se croisent dans une position espacée desdits axes de charnière (16, 17) et sont
au moins articulées entre elles autour d'un autre axe de charnière (18) au niveau
dudit croisement et parallèles auxdits axes de charnière (16, 17) ou à la partie de
base autour des axes de charnière de base (20, 21) parallèles auxdits axes de charnière
(16, 17) et mutuellement espacés ; et
une structure d'ajustement (3) couplée à et s'étendant entre des parties d'extrémité
des structures de patte (4, 5) du côté de la marche ou du côté de la base des structures
de patte (4, 5) pour ajuster l'espacement entre les axes de charnière (16, 17) du
côté de la marche des structures de patte (4, 5), la structure d'ajustement (3) comprenant
un premier élément d'ajustement (23) couplé à l'une desdites parties d'extrémité et
ayant une crémaillère dentée (25, 26) orientée dans une direction longitudinale (28)
et un second élément d'ajustement (24) couplé à l'autre des parties d'extrémité et
comprenant un cliquet (27) déplaçable de le long de la crémaillère (25, 26) et agencé
pour se mettre en prise avec la crémaillère (25, 26) dans des positions pouvant être
sélectionnées le long de la crémaillère (25, 26), dans lequel au moins le cliquet
(27) ou la crémaillère (25, 26) peut être déplacé(e) dans des directions de mise en
prise (29) transversales par rapport à ladite direction longitudinale (28) entre une
position en saillie dans laquelle le cliquet (27) et la crémaillère (25, 26) sont
mutuellement mis en prise et une position rétractée dans laquelle le cliquet (27)
et la crémaillère (25, 26) sont mutuellement libérés ;
dans lequel les dents (30) de la crémaillère (25, 26) font chacune saillie d'une base
(31) jusqu'à une partie supérieure (32) dans une direction de hauteur de dent (33)
transversale par rapport auxdites directions de mise en prise (29) vers une contre-surface
(26, 25) faisant face à ladite crémaillère (25, 26), et dans lequel, dans la position
en saillie dans laquelle le cliquet (27) et la crémaillère (25, 26) sont mutuellement
mis en prise, le cliquet (27) fait saillie dans un espace (34) entre la crémaillère
(25, 26) et la contre-surface (26, 25) et est en contact avec la contre-surface (26,
25).
2. Repose-pieds selon la revendication 1, dans lequel la contre-surface (26, 25) est
formée par une seconde crémaillère (26, 25), le cliquet (27) mettant également en
prise des dents de la contre-surface (26, 25) lorsque le cliquet (27) et l'autre première
crémaillère dentée (25, 26) sont mutuellement mis en prise.
3. Repose-pieds selon la revendication 1 ou 2, dans lequel le cliquet (27) a une face
dentée comprenant au moins deux dents (48) avec un pas dans ladite direction longitudinale
(28) qui, lorsque le cliquet (27) et la crémaillère (25, 26) sont mutuellement mis
en prise, mettent en prise des dents (30) de la crémaillère dentée (25, 26) avec un
pas correspondant dans ladite direction longitudinale (29).
4. Repose-pieds selon l'une quelconque des revendications précédentes, dans lequel les
flancs (50) des dents de la crémaillère (25, 26) orientés vers la partie d'extrémité
de structure de patte à laquelle l'élément d'ajustement (23) comprenant cette crémaillère
(25, 26) est couplé, ont un angle de pression positive (α).
5. Repose-pieds selon l'une quelconque des revendications précédentes, dans lequel les
crémaillères (25, 26) sont agencées sur des surfaces internes d'une fente dans une
bande de métal, de préférence de l'acier.
6. Repose-pieds selon l'une quelconque des revendications précédentes, dans lequel la
structure d'ajustement (3) est montée sur la partie de marche (1), de préférence sous
une marche (14).
7. Repose-pieds selon l'une quelconque des revendications précédentes, dans lequel au
moins en section transversale le long d'un plan dans la direction longitudinale (28)
perpendiculaire aux crémaillères (25, 26), les dents (48) du cliquet (27) et les dents
des crémaillères (25, 26) ont la même forme.