| (19) |
 |
|
(11) |
EP 0 965 294 B1 |
| (12) |
EUROPEAN PATENT SPECIFICATION |
| (45) |
Mention of the grant of the patent: |
|
08.01.2003 Bulletin 2003/02 |
| (22) |
Date of filing: 08.06.1998 |
|
| (51) |
International Patent Classification (IPC)7: A47C 23/06 |
|
| (54) |
A slatted base and a slat for use therein
Lattenrost und Latten dafür
Sommier à lattes et lattes pour un tel sommier
|
| (84) |
Designated Contracting States: |
|
AT BE CH DE ES FR IT LI LU NL |
| (43) |
Date of publication of application: |
|
22.12.1999 Bulletin 1999/51 |
| (73) |
Proprietor: Sleypen, Charles |
|
3600 Genk (BE) |
|
| (72) |
Inventor: |
|
- Sleypen, Charles
3600 Genk (BE)
|
| (74) |
Representative: Van Reet, Joseph et al |
|
Gevers & Vander Haeghen,
Hollidaystraat 5 1831 Diegem 1831 Diegem (BE) |
| (56) |
References cited: :
CH-A- 268 125 FR-A- 1 092 256 FR-A- 1 569 242
|
FR-A- 370 517 FR-A- 1 253 004
|
|
| |
|
|
|
|
| |
|
| Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
|
[0001] The present invention relates to a slatted base for a bed, a seat or other seating
or lying furniture comprising a frame and slats mounted thereon, the slats comprising
a top portion forming a supporting surface of the slatted base, and at least one of
the slats being made of wood or a synthetic material and extended, at both extremities
of the supporting surface forming top portion, by a portion curved over an angle of
at least 90°. The invention also relates to a slat for use in such a slatted base
[0002] In practice, there is always looked for new types of slatted bases. One of the important
properties of slatted bases is the resiliency thereof which is determining for the
comfort properties. In order to improve the resiliency, different supporting elements
for fixing the slats to the frame of the slatted base have already been proposed.
The resilient properties of the slats themselves are, however, only determined by
the material, thickness, and cross-section of the slats.
[0003] DE-A-196 32 960 discloses for example slats for a slatted base, in particular for
a bed, which are extended at their extremities with an integral curved, more particular
U-shaped portion. These known slats are made from an elastic synthetic material. They
are not supported by separate resilient supporting elements but the curved portions
are directly attached to the frame. These curved portions have such a reduced thickness,
compared to the thickness of the top portions of the slats, and are so flexible that
they are compressed resiliently when a weight is resting on the slats. In other words,
the curved portions of the slats disclosed in DE-A-196 32 960 act like the usual resilient
supporting elements and do not influence the resilient properties of the top portions
of the slats. In other words, notwithstanding the fact that the resilient supporting
elements form an integral portion of the slats, the resilient properties of the supporting
surface forming top portions of the slats are still only determined by the material,
thickness, and cross-section of these portions. A similar slat for a slatted base
is disclosed in FR-A-1 569 242, the curved extremities of which showing not a U-shape
but rather a Z-shape.
[0004] An object of the present invention is to provide a new type of slat which enables
to achieve substantially higher resilient properties, especially dynamic spring properties,
for the supporting surface forming top portions compared to the conventional slats,
in particular slats of a wood laminate.
[0005] To this end, the slatted base according to the invention is characterised in that
the ends of the curved portions, opposite the supporting surface forming top portion
of the slat, are substantially irrotatably connected to one another by a bottom element
or portion extending between the two curved portions to form, together with these
two curved portions and the supporting surface forming top portion, a closed loop,
the curved portions themselves having a limited flexibility to exert tensile forces
onto the top portion of the slat upon depression of this top portion.
[0006] Due to the limited flexibility of the curved portions of the slats, and due to the
fact that the ends thereof are prevented from rotating, a high tensile force is exerted
by the curved portions on the top portion of the slat when this slat is loaded and
bends through downwards. As a result of the tensional stresses thus created in the
slat, a thinner and hence more flexible slat can be used for supporting a same weight.
It has been found that the thickness of the slat can be reduced to such an extend
that it will be depressed over a larger distance when loaded with a same weight and
will enable in other words larger dynamic spring properties. Without the considerable
tensile forces exerted by the curved portions on the top portion of the slat, a slat
of such a reduced thickness would not be able to support the usual weights which are
to be supported thereby.
[0007] A further consequence of the limited flexibility of the curved portions is that the
slat is nearly not compressible and thus not resilient at its extremities. Since the
curved portions are however mutually connected substantially irrotatably by a bottom
element or portion, the slats according to the invention can be fixed in the same
way as the conventional wooden slats to the frame of the slatted base, more particularly
through the intermediary of resilient supporting elements in order to provide also
a resilient support in the side areas of the slatted base.
[0008] In an advantageous embodiment of the slatted base or the slats according to the invention,
the ends of the curved portion of the slat are connected to one another by an integral
bottom portion of the slat.
[0009] Such a slat is easy to be made either from a synthetic material or especially also
from a wood laminate without having to connect the curved portions in an additional
production step by means of a separate bottom element.
[0010] Other particularities and advantages of the invention will become apparent from the
following description of some particular embodiments of the slatted base and slats
according to the present invention. This description is only given by way of illustrative
example and is not intended to limit the scope of protection. The reference numerals
relate to the annexed drawings wherein:
Figure 1 shows schematically a top plan view of a slatted base according to the invention.
Figure 2 shows a schematic cross-section according to line II-II of the slatted base
shown in Figure 1 ; and
Figures 3 to 5 show schematic cross-sections corresponding to the cross-section shown
in Figure 2 but relating to variant embodiments.
[0011] The slatted base shown in Figure 1 comprises a frame 1 and slats 2 mounted thereon.
The shape of the illustrated base is rectangular and is especially designed for a
bed, i.e. for supporting a mattress, but all kinds of other shapes are possible, in
particular for other applications such as seating furniture. These shapes are however
not an essential feature of the invention and will thus not further be described.
[0012] Although preference is given to slats made of a wood laminate comprising several,
for example 7, wood layers which are glued together, the material the slats are made
of is also not an essential feature of the invention. In practice, it is for example
possible to make the slats from a synthetic material, in particular from a glass,
carbon or other type of fibre reinforced synthetic material. According to the lateral
views of Figures 2 to 5, the slats 2 comprise first of all a top portion 3 forming
a supporting surface of the slatted base, similar to the conventional slats made of
a wood laminate. An essential difference with these conventional slats is however
that, at both extremities of the top portion 3, they are extended by a portion 4 curved
over an angle of at least 90°.
[0013] In Figure 2, the portions 4 of the slat 2 are for example curved over an angle of
180°. The free ends of the curved portions 4 are irrotatably fixed to one another,
in particular by means of a cross-bar or lath 5 screwed or otherwise fixed, for example
glued, to the free ends of the curved portions 4. An essential feature of the slats
according to the invention is further that the curved portions 4 have only a limited
flexibility. The curved portions 4 are more particularly so rigid or inflexible that
considerable tensile forces are exerted by these curved portions 4 on the top portion
3 when this top portion 3 is depressed according to arrow 6. As a result of these
tensile forces, the top portion 3 of the slat 2 may be much more flexible or thinner
than conventional wooden slats. In this way, the top portion 3 can be depressed over
a larger distance resulting thus in larger dynamic spring properties. At both extremities
of the top portion, the slat 2 is, however, just like the conventional wooden slats,
still substantially incompressible due to the limited flexibility of the curved portions
4. In order to achieve also a sufficient resiliency of the slatted base in the area
of the curved portions, the slats 2 can be mounted onto the frame 1 in the usual way
through the intermediary of resilient supporting elements 9.
[0014] The required limited flexibility of the curved portions can be achieved by means
of a synthetic material suitably reinforced by means of fibres or by thickened portions.
According to the invention it has further been found that the required rigidity of
the curved portions can also easily be obtained by means of a wood laminate. It has
more particularly been found that the curved portions and the top portions and the
top portions of the slats can be made of the same wood laminate so that the slats
may have in particular a uniform thickness thus simplifying the production thereof.
[0015] As mentioned hereinabove, the ends of the slat shown in Figure 2, are curved over
180°. According to the invention, these ends should be curved over an angle of at
least 90°. Preferably, this angle is however larger, especially larger than 120°,
in order to increase the dynamic spring properties of the slat to a larger extend.
Instead of an angle of 180°, the angle over which the ends of the slat 2 are curved,
could comprise for example 270°. In that case, these ends could be attached to the
end faces of the cross-bars or laths 5.
[0016] In an advantageous embodiment of the invention, the slats 2 do not have any free
ends but the ends of both curved portions 4 are irrotatably connected to one another
by means of a further extension of the slat, more particularly by an integral bottom
portion 7, which extends opposite the top position 3, between the two curved portions
4. In this way, the slat 2 forms an integral closed loop.
[0017] A preferred embodiment of a closed loop slat 2 is shown in Figure 3. In this embodiment,
the curved portions 4 are curved over an angle of about 270° so that these curved
portions 4 considerably increase the spring properties of the slat 2. After the curved
portions 4, the bottom portion 7 of the slat 2 diverges again from the top portion
3 so that the movement of the top portion is not hampered by the bottom portion when
being depressed. As shown in Figure 3, upwardly bulged portions 8 are thus formed
in the bottom portion of the slat. In the recesses formed by these bulged portions
8, the slat 2 is fixed through the intermediary of the resilient supporting elements
9 on top of the frame 1. An advantage of the bulged portions 8 is that the curved
portions 4 are curved over a greater angle so that a larger amount of potential energy
can be stored therein when depressing the slat and that the top surface of the slat
extends at a lower level above the frame 1 of the slatted base.
[0018] In Figure 3, it can further be noticed that the bottom portion 7 of the slat 2 forms
an additional, smaller upwardly bulged portion 10 which is intended to give an extra
support to the top portion of the slat when this top portion is depressed under a
too large, in particular a too localised load.
[0019] The embodiment shown in Figure 4 differs from the embodiment of Figure 3 in that
it comprises no bulged portion so that the top portion can be depressed only over
a shorter distance. Moreover, the angle over which the curved portions are curved
is somewhat smaller and comprises about 225°.
[0020] In the embodiment of Figure 5 this angle comprises about 180° and the top portion
extends at a relatively high level above the frame 1. In order to lower the top level
of the slats, they could possibly be supported by the supporting elements 9 underneath
the top instead of the bottom portion. Of course, this is also possible in the embodiments
of the previous figures.
[0021] According to the invention, it has been found that not only the angle over which
the curved portions of the slats are curved is an important feature but also the curvature
radius of these curved portions. It has more particularly been found that the inner
curvature radius is preferably comprised between 3 and 10 cm and most preferably between
4 and 7 cm, depending on the desired spring properties and on the properties, in particular
the flexibility, of the material of the slat. The curvature radius should especially
be sufficiently large in order to enable the curved portions to give the desired additional
dynamic spring properties to the slats but should on the other hand be sufficiently
small to be able to exert the required tensile forces to the top portions of the slats.
[0022] As to these top portions, it should be noted that in all the shown embodiments, the
slats 2 have always a somewhat convex upper surface. Such a shape is preferred according
to the invention in view of the following effect obtained in combination with the
curved portions. When the slats 2 are depressed, the length of the top portions 3
will initially increase so that the curved portions 4 will be urged outwards and a
tension will be created therein. Upon further depressing the slats 1, the length of
the top portions 3 will decrease again as they bend through and the tension or potential
energy stored initially in the curved portions will be released so that the force
required for depressing the slats is reduced. In other words, the slats are apparently
softer in this phase due to this effect.
[0023] Subsequently, the curved portions take in their initial rest position and, upon further
depression of the slat, are drawn towards one another. In the phase, a tension is
built up again in the curved portions and increasing tensile forces are exerted into
the top portion 3 providing an additional, progressive resistance against depression
of this portion 3. When the top portion 3 of the slat is allowed to rise again, the
potential energy stored in the previous phase in the curved portions is released again
thus contributing to the dynamic spring properties of the slat.
[0024] From the above, it will be clear that, compared to the conventional slats of wood
laminate, special spring properties are obtained with the slats according to the invention.
[0025] Further, it will be clear that the invention is not limited to the above described
embodiments but that many modifications can still be applied thereto without leaving
the scope of the present invention as defined in the appended claims.
1. A slatted base comprising a frame (1) and slats (2) mounted thereon, the slats (2)
comprising a top portion (3) forming a supporting surface of the slatted base, and
at least one of the slats (2) being made of wood or a synthetic material and extended,
at both extremities of the supporting surface forming top portion (3), by a portion
(4) curved over an angle of at least 90°, characterized in that the ends of the curved portions (4), opposite the supporting surface forming top
portion (3) of the slat, are substantially irrotatably connected to one another by
a bottom element (5) or portion (7) extending between the two curved portions (4)
to form, together with these two curved portions (4) and the supporting surface forming
top portion (3), a closed loop, the curved portions (4) themselves having a limited
flexibility to exert tensile forces onto the top portion (3) of the slat (2) upon
depression of this top portion (3).
2. A slatted base according to claim 1, characterized in that said curved portions (4) are curved over an angle of at least 120° and preferably
over an angle equal to or greater than 180°.
3. A slatted base according to claim 1 or 2, characterized in that said ends of the curved portion (4) of the slat (2) are connected to one another
by an integral bottom portion (7) of the slat.
4. A slatted base according to claim 3, characterized in that said bottom portion (7) of the slat (2) shows, at both ends thereof, a portion (8)
bulged towards the supporting surface forming top portion (3) of the slat (2), the
slat being supported by said frame (1) in these bulged portions (8).
5. A slatted base according to any one of the claims 1 to 4, characterized in that said curved portions (4) are substantially incompressible in a direction perpendicular
to said supporting surface.
6. A slatted base according to any one of the claims 1 to 5, characterized in that the slats (2) are mounted on said frame (1) through the intermediary of resilient
supporting elements (9).
7. A slatted base according to any one of the claims 1 to 6, characterized in that the curved portions (4) show an inner curvature radius of between 3 and 10 cm, preferably
of between 4 and 7 cm.
8. A slat for use in a slatted base according to any one of the claims 1 to 7, the slat
(2) comprising a top portion (3) forming a supporting surface of the slatted base,
and being extended, at both extremities of the supporting surface forming top portion
(3), by a portion (4) curved over an angle of at least 90°, preferably over an angle
of at least 120° and most preferably over an angle of at least 180°, characterized in that the ends of the curved portions, opposite the supporting surface forming top portion
(3) of the slat, are irrotatably connected to one another and the curved portions
(4) themselves have a limited flexibility to exert tensile forces onto the top portion
(3) of the slat (2) upon depression of this top portion (3).
9. A slat according to claim 8, characterized in that the curved portions (4) show an inner curvature radius of between 3 and 10 cm, preferably
of between 4 and 7 cm.
10. A slat according to any one of the claims 8 to 9, characterized in that said ends of the curved portion (4) of the slat (2) are connected to one another
by an integral bottom portion (7) of the slat, the supporting surface forming top
portion (3), the two curved portions (4) and the bottom portion (7) of the slat (2)
forming a closed loop.
11. A slat according to any one of the claims 8 to 10, characterized in that it has a substantially uniform thickness.
12. A slat according to any one of the claims 8 to 11, characterized in that said curved portions (4) are substantially incompressible in a direction perpendicular
to said supporting surface.
13. A slat according to any one of the claims 8 to 12, characterized in that said slat (2) is made of a wood laminate.
1. Ein Lattenrost bestehend aus einem Rahmen (1) und darauf montierten Latten (2), wobei
die Latten (2) einen oberen Teil (3) umfassen, der eine stützende Fläche des Lattenrostes
bildet, und zumindest eine der Latten (2) aus Holz oder einem synthetischen Material
gefertigt ist und an beiden Enden des oberen Teils (3), der die stützende Fläche bildet,
um einen Teil (4), der über einen Winkel von mindestens 90° gebogen ist, verlängert
ist, dadurch gekennzeichnet, dass die Enden der gebogenen Teile (4), gegenüber der durch den oberen Teil (3) gebildeten
stützenden Fläche der Latte, durch ein Bodenelement (5) oder einen unteren Teil (7),
das oder der sich zwischen den beiden gebogenen Teilen (4) ausstreckt, substanziell
nicht rotierbar miteinander verbunden sind, um, gemeinsam mit diesen beiden gebogenen
Teilen (4) und dem oberen Teil (3), der die stützende Fläche bildet, eine geschlossene
Schleife zu bilden, wobei die gebogenen Teile (4) selbst eine begrenzte Flexibilität
haben, um Zugkräfte auf den oberen Teil (3) der Latte (2) auszuüben, wenn dieser obere
Teil (3) eingedrückt wird.
2. Ein Lattenrost nach Anspruch 1, dadurch gekennzeichnet, dass die erwähnten gebogenen Teile (4) über einen Winkel von mindestens 120° und vorzugsweise
über einen Winkel von 180° oder mehr gebogen sind.
3. Ein Lattenrost nach Anspruch 1 oder 2, dadurch gekennzeichnet, dass die erwähnten Enden des gebogenen Teils (4) der Latte (2) durch einen integralen
Bodenteil (7) der Latte miteinander verbunden sind.
4. Ein Lattenrost nach Anspruch 3, dadurch gekennzeichnet, dass der erwähnte Bodenteil (7) der Latte (2) an seinen beiden Enden einen Teil (8) aufweist,
der zum oberen Teil (3) der Latte (2), der eine stützende Fläche bildet, hin gewölbt
ist, wobei die Latte durch den erwähnten Rahmen (1) in diesen gewölbten Teilen (8)
gestützt wird.
5. Ein Lattenrost nach einem der Ansprüche 1 bis 4, dadurch gekennzeichnet, dass die erwähnten gebogenen Teile (4) in eine Richtung senkrecht zur erwähnten stützenden
Fläche substanziell nicht komprimierbar sind.
6. Ein Lattenrost nach einem der Ansprüche 1 bis 5, dadurch gekennzeichnet, dass die Latten (2) auf dem erwähnten Rahmen (1) über elastische Stützelemente (9) befestigt
sind.
7. Ein Lattenrost nach einem der Ansprüche 1 bis 6, dadurch gekennzeichnet, dass die gebogenen Teile (4) einen inneren Krümmungsradius von zwischen 3 und 10 cm, vorzugsweise
von zwischen 4 und 7 cm aufweisen.
8. Eine Latte zur Verwendung in einem Lattenrost nach einem der Ansprüche 1 bis 7, wobei
die Latte (2) einen oberen Teil (3) umfasst, der eine stützende Fläche des Lattenrostes
bildet, und an beiden Enden des oberen Teils (3), der die stützende Fläche bildet,
um einen Teil (4), der über einen Winkel von mindestens 90°, vorzugsweise über einen
Winkel von mindestens 120° und im besten Fall über einen Winkel von mindestens 180°
gebogen ist, verlängert ist, dadurch gekennzeichnet, dass die Enden der gebogenen Teile, gegenüber der durch den oberen Teil (3) gebildeten
stützenden Fläche der Latte, nicht rotierbar miteinander verbunden sind, und die gebogenen
Teile (4) selbst eine begrenzte Flexibilität haben, um Zugkräfte auf den oberen Teil
(3) der Latte (2) auszuüben, wenn dieser obere Teil (3) eingedrückt wird.
9. Eine Latte nach Anspruch 8, dadurch gekennzeichnet, dass die gebogenen Teile (4) einen inneren Krümmungsradius von zwischen 3 und 10 cm, vorzugsweise
von zwischen 4 und 7 cm aufweisen.
10. Eine Latte nach einem der Ansprüche 8 bis 9, dadurch gekennzeichnet, dass die erwähnten Enden des gebogenen Teils (4) der Latte (2) durch einen integralen
Bodenteil (7) der Latte miteinander verbunden sind, wodurch der obere Teil (3), der
die stützende Fläche bildet, die beiden gebogenen Teile (4) und der Bodenteil (7)
der Latte (2) eine geschlossene Schleife bilden.
11. Eine Latte nach einem der Ansprüche 8 bis 10, dadurch gekennzeichnet, dass sie eine substanziell gleichförmige Dicke hat.
12. Eine Latte nach einem der Ansprüche 8 bis 11, dadurch gekennzeichnet, dass die erwähnten gebogenen Teile (4) in eine Richtung senkrecht zur erwähnten stützenden
Fläche substanziell nicht komprimierbar sind.
13. Eine Latte nach einem der Ansprüche 8 bis 12, dadurch gekennzeichnet, dass die erwähnte Latte (2) aus Holzlaminat hergestellt ist.
1. Sommier à lattes comprenant un châssis (1) et des lattes (2) montées dessus, les lattes
(2) comprenant une partie supérieure (3) formant une surface de support du sommier
à lattes, et au moins une des lattes (2) étant en bois ou en matière synthétique et
étant prolongée, aux deux extrémités de la partie supérieure (3) formant une surface
de support, par une partie (4) incurvée sur un angle d'au moins 90°, caractérisé en ce que les extrémités des parties incurvées (4), situées à l'opposé de la partie supérieure
(3) formant une surface de support de la latte, sont reliées l'une à l'autre d'une
manière ne permettant sensiblement pas de rotation par un élément inférieur (5) ou
une partie (7) qui s'étend entre les deux parties incurvées (4) pour former, conjointement
avec ces deux parties incurvées (4) et la partie supérieure (3) formant une surface
de support, une boucle fermée, les parties incurvées (4) elles-mêmes ayant une flexibilité
limitée pour exercer des forces de traction sur la partie supérieure (3) de la latte
(2) lors d'une dépression de cette partie supérieure (3).
2. Sommier à lattes suivant la revendication 1, caractérisé en ce que lesdites parties incurvées (4) sont incurvées sur un angle d'au moins 120°, et de
préférence sur un angle égal ou supérieur à 180°.
3. Sommier à lattes suivant l'une des revendications 1 et 2, caractérisée en ce que lesdites extrémités de la partie incurvée (4) de la latte (2) sont reliées l'une
à l'autre par une partie inférieure solidaire (7) de la latte.
4. Sommier à lattes suivant la revendication 3, caractérisé en ce que ladite partie inférieure (7) de la latte (2) montre, à ses deux extrémités, une partie
(8) renflée vers la partie supérieure (3) formant une surface de support de la latte
(2), la latte étant supportée par le châssis (1) dans ces parties renflées (8).
5. Sommier à lattes suivant l'une quelconque des revendications 1 à 4, caractérisé en ce que lesdites parties incurvées (4) sont sensiblement incompressibles dans une direction
perpendiculaire à la surface de support.
6. Sommier à lattes suivant l'une quelconque des revendications 1 à 5, caractérisé en ce que les lattes (2) sont montées sur le châssis (1) par l'intermédiaire d'éléments de
support flexibles (9).
7. Sommier à latte suivant l'une quelconque des revendications 1 à 6, caractérisé en ce que les parties incurvées (4) montrent un rayon de courbure interne compris entre 3 et
10 cm, de préférence entre 4 et 7 cm.
8. Latte à utiliser dans un sommier à lattes suivant l'une quelconque des revendications
1 à 7, la latte (2) comprenant une partie supérieure (3) formant une surface de support
du sommier à lattes et étant prolongée, aux deux extrémités de la partie supérieure
(3) formant une surface de support, par une partie (4) incurvée sur un angle d'au
moins 90°, de préférence sur un angle d'au moins 120° et très préférentiellement sur
un angle d'au moins 180°, caractérisée en ce que les extrémités des parties incurvées, situées à l'opposé de la partie supérieure
(3) formant une surface de support de la latte, sont reliées l'une à l'autre d'une
manière ne permettant pas de rotation et en ce que les parties incurvées (4) elles-mêmes ont une flexibilité limitée pour exercer des
forces de traction sur la partie supérieure (3) de la latte (2) lors d'une dépression
de cette partie supérieure (3).
9. Latte suivant la revendication 8, caractérisée en ce que les parties incurvées (4) présentent un rayon de courbure interne compris entre 3
et 10 cm, de préférence entre 4 et 7 cm.
10. Latte suivant l'une quelconque des revendications 8 et 9, caractérisée en ce que lesdites extrémités de la partie incurvée (4) de la latte (2) sont mutuellement reliées
par une partie inférieure (7) solidaire de la latte, la partie supérieure (3) formant
une surface de support, les deux parties incurvées (4) et la partie inférieure (7)
de la latte (2) formant une boucle fermée.
11. Latte suivant l'une quelconque des revendications 8 à 10, caractérisée en ce qu'elle présente une épaisseur sensiblement uniforme.
12. Latte suivant l'une quelconque des revendications 8 à 11, caractérisée en ce que les parties incurvées (4) sont sensiblement incompressibles dans une direction perpendiculaire
à la surface de support.
13. Latte suivant l'une quelconque des revendications 8 à 12, caractérisée en ce que ladite latte (2) est réalisée en un stratifié à base de bois.

