[0001] The present invention relates to a tip-up seat of the type pointed out in the preamble
of the first claim.
[0002] In particular, the invention consists of a tip-up seat to be used in installations
for manifestations, i.e. buildings/structures designed to be used for theatre performance,
film shows and sport manifestations, such as stadiums, theatres, cinemas, conference
rooms, etc.
[0003] It is known that one of the most important components of an installation for manifestations
is surely represented by the seat, i.e. the chair/armchair in which the user sits
for attending the manifestation over the whole duration of same and therefore said
seat must ensure comfort, correct sitting position and practical use. Up to now suitable
armchairs or other similar elements have been manufactured in which it is possible
to identify a series of base components: a bearing structure adapted to absorb the
stresses acting on the seat, a base seat defining the horizontal rest surface, a back
constituting the rest surface for the bust, and the armrests delimiting the lateral
seat ends and on which the arms rest.
[0004] An important feature of these seats is represented by the possibility of mutually
moving the base seat and back in order to reduce the overall dimensions. In detail,
by moving said components it is possible to close the seat upon itself so that its
bulkiness is reduced and people's passage between two adjacent rows is improved.
[0005] In particular, two configurations are provided: a closed one in which the base seat
and back are disposed close to each other so as to reduce bulkiness as much as possible;
and an open one in which the base seat and back are perpendicular or inclined to each
other so as to enable the user to have a comfortable sitting position. To this aim
seats that when opened have an inclined and not a vertical back are important.
[0006] Some seats, in an attempt to further reduce bulkiness in the closed configuration,
are also provided, in addition to movable base seat and back, with movable armrests
that can therefore pass from an almost horizontal position belonging to a seat in
the open configuration, to an oblique/vertical position typical of a seat in the closed
configuration. Some examples of these tip-up seats can be found in the Japanese patents
JP-H-1125845 of 1999 and
JP-H-10155587 of 1998 or in the international patent application
WO-A-2007034007.
[0008] In particular, in the international patent application
WO-A-2007034007 the back and base seat are suitably connected and their movements can be governed
simultaneously, while the armrests are independent of the remaining part of the structure
and can be moved by themselves.
[0009] In the two other patents mentioned above the three components (armrests, base seat
and back) are kinematically linked to each other and therefore can be moved simultaneously
when passing from the closed configuration to the open one and vice versa.
[0010] The known art mentioned above has some important drawbacks.
[0011] In particular, the most comfortable seats provided with base seat, back and armrest
that are all movable between the open and closed configurations are not provided with
an optimal closed configuration which in addition is not very steady. Another problem
connected with the imperfect closed configuration is represented by the tip-up seat
bulkiness in the closed position, i.e. the non optimal arrangement of the different
seat components. Therefore, there is an important increase in the forwarding and handling
costs for the seat and an increase in the required space for storage.
[0012] Under this situation, the technical task underlying the present invention is to conceive
a tip-up seat provided with movable base seat, back and armrest which is capable of
substantially obviating the mentioned drawbacks.
[0013] Within the scope of this technical task it is an important aim of the invention to
manufacture a tip-up seat of the aforesaid type that is particularly steady in the
closed configuration.
[0014] In particular, the present invention aims at obtaining a tip-up seat the transport
and replacement of which are particularly easy.
[0015] Another important aim of the invention is to obtain a seat with reduced bulkiness
as compared with those presently on the market and therefore having particularly reduced
costs for handling and storage.
[0016] According to the present invention there is provided a chair as claimed in claim
1. The technical task mentioned and the aims specified are achieved by a tip-up seat
as claimed in the appended claim 1.
[0017] Preferred embodiments are highlighted in the sub-claims.
[0018] The features and advantages of the invention are hereinafter clarified by the detailed
description of a preferred embodiment of the invention, with reference to the accompanying
drawings, in which:
Fig. 1 is a scale view of the tip-up seat represented in an open configuration;
Fig. 2 shows a second configuration in which the tip-up seat of the invention is completely
closed;
Fig. 3 is a side view of the seat when it is in the configuration seen in Fig. 1;
Fig. 4 shows a side view of the tip-up seat when it is in the second configuration seen
in Fig. 2;
Fig. 5 shows a section of a portion of the seat taken along line I-I; and
Fig. 6 reproduces a section of a second portion of the seat taken along line II-II.
[0019] With reference to the drawings, the tip-up seat according to the invention is generally
identified by reference numeral
1.
[0020] It briefly comprises a bearing structure
2 adapted to absorb stresses acting on said tip-up seat 1, a base seat
3 and a back
4 substantially defining the lower supporting surface
3a and rear supporting surface
4a and at least one armrest
5 substantially defining a supporting surface for the arms
5a acting as a support for the user's arms. The base seat 3 and back 4 can comprise,
in known manner, a padding so as to make use of seat 1 more comfortable. Likewise,
anatomic cavities and similar conformations can be provided.
[0021] The bearing structure 2 has at least one supporting leg
6 suitably fastened to the ground so as to keep the seat 1 steady during its use. Preferably,
structure 2 comprises two supporting legs 6, one on each side of seat 1 and a horizontal
section member
7 or other similar element can be provided between the two legs, for connecting the
two legs 6 and steadily joining them.
[0022] Each leg 6 is adapted to support almost the whole of the stresses acting on the tip-up
seat 1 and comprises at least one first columnar element
6a which extends along a first preferred extension direction
6b passing through the centre of gravity of the columnar element itself.
[0023] In the example shown in Figs. 1-6, each leg 6 comprises in addition to said first
columnar element 6a, a second columnar element
6c rigidly connected to the first one and extending along a second preferred extension
direction
6d substantially parallel to the first preferred extension direction
6b, over a length shorter than that of the first columnar element 6a.
[0024] The columnar elements 6a and 6c consist of two section members suitably fastened
to each other through joint means such as screws and/or welding, for example.
[0025] In detail, the first columnar element 6a is at the front portion of the tip-up seat
1, i.e. that portion where the user's lower limbs are when he/she is sitting in seat
1, while the second columnar element 6c is at the rear portion, i.e. where the chair
back is. Preferably, the mutual positioning of the two columnar elements 6a and 6c
places the extension directions 6b and 6d in a plane almost perpendicular to the rear
supporting surface 4a and, more preferably, to all supporting surfaces 3a, 4a and
5a.
[0026] The armrest 5 further comprises at least one lateral side portion 5b suitably shaped
so as to define together with said arm supporting surface 5a, an open cavity, i.e.
shown a suitable opening adapted to enable partial introduction of the supporting
leg 6 into said open cavity, as better explained in the following. Preferably, the
portion of lateral side 5b defines an L-shapes section with the arm supporting surface
5a or, more preferably, two lateral side portions 5b are provided which define with
the arm supporting surface 5a, a C-shaped configuration extending along a major extension
direction
5c substantially parallel to the arm supporting surface 5a.
[0027] Practically, the armrest 5 is preferably a substantially box-shaped element or an
element with an open section member.
[0028] The armrest 5, in order to avoid cuts to the user, comprises a plate or other similar
element frontally closing said cavity and defining the front edge 5d, and a projecting
portion substantially having the same section as that of portion 5b and extending
in the vicinity of the front edge 5d, in a direction perpendicular to the extension
direction 5c.
[0029] The tip-up seat in addition to the aforesaid elements comprises a kinematic mechanism
8 adapted to enable the base seat 3, back 4 and armrest 5 to be mutually moved thus
defining a closed configuration in which seat 1 is closed upon itself and has a minimum
bulkiness, and an open configuration of the tip-up seat 1 in which the seat is opened
and is ready for use.
[0030] In the open configuration (Figs. 1 and 3) the tip-up seat is opened and made ready
for use and the lower supporting surface 3a and rear supporting surface 4a define
an opening angle preferably included between 90° and 120° and more preferably the
opening angle is almost equal to 100°. In detail, in this configuration the armrest
5 encloses the upper portion of the first columnar element 6a inside it, i.e. the
portion of the first columnar element 6a placed at the face spaced apart the greatest
distance from the ground.
[0031] In the closed configuration (Figs. 2 and 4), the lower supporting surface 3a, rear
supporting surface 4a and arm supporting surface 5a are substantially parallel to
each other. In detail, in this closed configuration said supporting surfaces 3a, 4a
and 5a are substantially parallel to the first preferred extension direction 6b and
preferably the base seat 3 and back 4 are almost adjacent, i.e. the lower supporting
surface 3a and rear supporting surface 4a are substantially in contact with each other.
[0032] In addition, in said closed configuration, as shown in Fig. 4, in the tip-up seat
1 the surfaces constituting the columnar element of the seat itself are substantially
in mutual alignment.
[0033] In detail, the upper face
4b, i.e. the back surface placed to a greater distance from the ground, and the front
surface
3b, i.e. the surface of the base seat 3 placed to a greater distance from the back 4
in the closed configuration, almost lie in the same upper plane, as shown in Fig.
4. In addition, the front edge 5d lies in the same plane as the upper face 4b and
the front surface 3b.
[0034] Preferably, the upper face 4b, front surface 3b, front edge 5d define a single plane
that is substantially perpendicular to the first preferred extension direction 6b
and, more preferably, the upper face 4b, front surface 3b and front edge 5d define
a single plane substantially perpendicular to the first extension direction 6b. At
the same time, at the front, the outer front face of the first columnar element 6a
and the surface of the base seat 3 opposite to the lower supporting surface 3a define
a single front plane of seat 1, while at the rear, the face of the second columnar
element 6b and the surface of the back 4 opposite to the supporting surface 4a belong
to the same plane and therefore define a single rear plane. In detail, the front and
rear planes are parallel to the first preferred extension direction 6a and, therefore,
perpendicular to said upper plane.
[0035] In the closed configuration, the armrest 5 is therefore placed with its major extension
direction 5d substantially parallel to the second preferred extension direction 6d
and, more preferably, these directions 5d and 6d are almost coincident.
[0036] In addition, in this configuration, the armrest 5 encloses at least the end portion
of the second columnar element 6c. Alternatively, it encloses at least part of the
portion of the first columnar element 6a extending beyond the second columnar element
6c. Preferably, the armrest 5, in the closed configuration, encloses both said portion
of the second columnar element 6c and said portion of the first columnar element 6a.
[0037] In order to obtain the above described particular closed configuration, the kinematic
mechanism 8 advantageously consists of an articulated quadrilateral, as shown in Fig.
3 where it is highlighted by a chain line.
[0038] Therefore it constitutes a mechanism made up of four members (base seat 3, back 4,
armrest 5 and first columnar element 6a) connected with each other so as to admit
of motion by four turning pairs consisting for example of hinges, pivots, articulated
joints or other similar elements adapted to enable a rotation motion between two adjacent
members.
[0039] Mechanism 8 is adapted to enable the user to manually and simultaneously move the
base seat 3, back 4, armrest 5 relative to the columnar element 6a and then relative
to leg 6, from the above described positions taken during the closed configuration
to those of the open configuration and vice versa. In detail, the base seat 3 and
armrest 5 carry out a mere rotation relative to the first columnar element 6a, while
the back 4 carries out both a mere rotation relative to the base seat 3 and armrest
5 and a rotation-translation relative to the first columnar element 6a.
[0040] Mechanism 8 has two fixed articulated joints or turning pairs
8a and
8b, i.e. that do not translate during rotation, in engagement with the first columnar
element 6a, and two movable turning pairs
8c and
8d in engagement with the back 4, which also translate during rotation.
[0041] In detail, the first and second turning pairs 8a and 8b are respectively adapted
to link the armrest 5 and base seat 3 to the first columnar element in a motion-admitting
manner; while the first and second fixed turning pairs 8c and 8d link the armrest
5 and base seat 3 to the back 4 in a motion-admitting manner. In more detail, said
linkages can be made either directly, i.e. without interposition of any element, or
indirectly, i.e. with interposition of plates or other similar elements.
[0042] The fixed turning pairs 8a and 8b when the tip-up seat 1 is in the closed configuration
(Fig. 4) are placed to different minimum distances relative to the arm supporting
surface 5a substantially disposed vertically. By "minimum distance" it is intended
the distance of the axis of each fixed turning pair from the surface 5a measured along
the segment starting from said axis and orthogonally intersecting the arm supporting
surface 5a. Therefore, the two fixed turning pairs 8a and 8b, as better described
hereinafter, are advantageously disposed in such a manner that the two relative-rotation
axes, defined by said pairs, lie in a plane that is not parallel to the supporting
surface 5a when the seat is in the closed configuration.
[0043] In detail, it is possible to distinguish a first fixed turning pair 8a placed to
a shorter distance from the arm supporting surface 5a and a second fixed turning pair
8b placed to a greater distance from said supporting surface 5a.
[0044] The first fixed turning pair 8a is then placed to a greater distance from the ground
relative to the second fixed turning pair 8b and the armrest 5 is pivotally mounted
thereon, while the base seat 3 is engaged on the second fixed turning pair 8b. Preferably
the first and second fixed turning pairs 8a and 8b are placed on the opposite side
relative to the first preferred extension direction 6b. In detail, the first and second
fixed turning pairs 8a and 8b relative to the first direction 6b are respectively
located in the rear part and front part of the tip-up seat 1 and, in more detail,
the first turning pair 8a is placed, relative to said first direction 6b, to a greater
minimum distance than the second pair 8b.
[0045] The second fixed turning pair 8b mainly extends from the face of the first columnar
element 6a facing the base seat 3 and is linked through screws, welding, fittings
or other similar solutions, directly to the first columnar element 6a, i.e. it has
not intermediate elements interposed between the pair or joint 8b and the first columnar
element 6a (Fig. 6).
[0046] On the contrary, the first turning pair 8a is preferably linked at a spaced position
and projecting from the first columnar element 6a, i.e. it is linked to said element
6a indirectly, a plate or other similar element being interposed between the two components
(Fig. 5).
[0047] The movable turning pairs 8c and 8d rigidly connected to the back 4, are advantageously
disposed in such a manner that the two relative-rotation axes defined thereby are
at different minimum distances from the rear supporting surface 4a and therefore lie
in a plane that is not parallel to such a surface 4a. Then, in detail, the movable
turning pairs consist of a first movable turning pair
8c placed to a greater distance from said supporting surface 4a and a second movable
turning pair
8d that is closer to said surface 4a. The first movable turning pair 8c is located to
a greater distance from the ground than the second one 8d.
[0048] Provided in the kinematic mechanism 8 are two suitable connections adapted to rigidly
connect the first turning pairs 8a and 8c and the second turning pairs 8b and 8d with
each other.
[0049] This connection is suitably obtained by means of two levers
8e each of them consisting of a shaped plate which enables the first and second turning
pairs to be linked to each other. This lever 8e is preferably an L-shaped lever.
[0050] In detail, in the mechanism 8 it is provided that, in place of lever 8e alone, connection
between the first turning pairs 8a and 8c be carried out through the armrest 5 or
the armrest 5 and lever 8e.
[0051] The distances between the axes defined between the first pairs 8a and 8c and those
between the two fixed turning pairs 8a and 8b are suitably included between 75 mm
and 225 mm and between 150 mm and 300 mm, respectively. Preferably, said two distances
are included between 125 mm and 175 mm and between 200 mm and 250 mm.
[0052] In detail, the first ratio, i.e. that between the distance of the axes defined by
the first pairs 8a and 8c and the distance between the axes of the second pairs 8b
and 8d and the second ratio, i.e. between the distance of the axes defined by the
fixed pairs 8a and 8b and the distance of the movable pairs 8c and 8d are both included
between 0.8 and 1.3. Preferably the first ratio is included between 1.0 and 1.1, while
the second ratio is included between 1.1. and 1.2.
[0053] Finally, the mechanism 8 can be provided with a control apparatus adapted to enable
the seat to be locked in a steady and safe manner in both the closed and open configurations.
[0054] This apparatus can be for example positioned at lever 8e connecting the two turning
pairs 8b and 8d, and can consist of a pin
8f or other similar element adapted to be fitted in a suitable slit
8g formed in the supporting leg 6 and, more specifically, in the first columnar element
6a (see Fig. 3). In detail, during movement of the back, the base seat and the armrest,
pin 8f slides in said slit 8g during passage between the open or closed configurations
and, through abutment against the ends of slit 8g, allows the seat to be locked in
one of said configurations.
[0055] Slit 8g has the shape of an annulus portion having an angular extension included
between 135° and 45° and preferably between 85° and 125°.
[0056] Finally, an actuating apparatus, not shown in the figures, can be provided for the
tip-up seat 1 between the supporting leg 6 and the ground, for moving the tip-up seat
1 preferably through a rotation, thereby defining a use position in which the first
direction 6b is substantially perpendicular to the ground and a rest position in which
this first direction 6b is substantially parallel to the ground. In detail, the rotation
apparatus consists of a pivot adapted to enable said rotation about an axis parallel
to the ground; a locking system consisting for example of springs is also present
for maintaining seat 1 in its use position.
[0057] The invention enables important advantages to be achieved.
[0058] In fact, the tip-up seat 1 is characterised by a high handling ease. This advantage
is obtained due to the particular closed configuration characterising the tip-up seat
1.
[0059] In fact, in this configuration, the parallelism between the different supporting
surfaces 3a, 4a and 5a and in particular the fact that the back 4 and base seat 3
are adjacent ensure a minimum bulkiness to the seats.
[0060] Easy handling of the seat is also obtained due to the advantageous arrangement of
the various elements thereof when it is in the closed configuration. In fact, in this
position the seat 1 is delimited by three planes (an upper plane, a front plane and
a rear plane parallel to the front one and perpendicular to the upper one) defining
the shape of a rectangular parallelepiped that can be easily grasped and handled both
manually during positioning of the seat for example, and automatically such as during
manufacture of said seat 1.
[0061] Another advantage is represented by the high transport simplicity and safety, both
due to the above mentioned geometry of the closed seat, and to the armrest 5 that,
being partly fitted in the columnar elements 6a and 6c, in this configuration locks
the seat avoiding undesirable opening of same.
[0062] Another advantage is the reduced cost of the seat in terms both of manufacture and
storage, due to the reduced space taken up by the closed seat 1. In fact, the lower
storage cost is obtained by virtue of the particular closed configuration that ensures
a reduced bulkiness to the innovative seat 1 as compared with those presently used,
the sizes and bulkiness of the components and the seat in an open configuration being
the same.
1. Kippbarer Sitz (1), der Folgendes umfasst: eine Trägerstruktur (2), die darauf ausgelegt
ist, auf den genannten kippbaren Sitz (1) wirkende Belastungen zu absorbieren und
mindestens ein erstes Säulenelement (6a) umfasst, das eine erste Verlaufsrichtung
(6b) aufweist; einen Basissitz (3), der im Wesentlichen eine untere Trägerfläche (3a)
definiert; eine Rückenlehne (4), die im Wesentlichen eine rückseitige Trägerfläche
(4a) definiert; mindestens eine Armlehne (5), die im Wesentlichen eine Armträgerfläche
(5a) definiert; wobei das genannte erste Säulenelement (6a) und die genannte erste
Armlehne (5) in einem seitlichen Verhältnis nebeneinander zu dem genannten Basissitz
(3) und der genannten Rückenlehne (4) angeordnet sind; und einen kinematischen Mechanismus
(8), der darauf ausgelegt ist, den genannten Sitz (3), die genannte Rückenlehne (4)
und die genannte Armlehne (5) in Bezug auf das genannte Säulenelement (6a) zu bewegen,
um eine geschlossene Konfiguration zu bilden, in der der genannte kippbare Sitz (1)
minimale Sperrigkeit aufweist und eine offene Konfiguration, in der die genannte untere
Trägerfläche (3a) und die genannte rückseitige Trägerfläche (4a) einen offenen Winkel
bilden, der im Wesentlichen zwischen 90° und 120° liegt, wobei der kinematische Mechanismus
(8) ein gegliedertes Viereck ist und zwei feste Drehpaare (8a, 8b) umfasst, die sich
mit dem ersten Säulenelement (6a) im Eingriff befinden und ein erstes festes Drehpaar
(8a) umfassen, das an der genannten Armlehne (5) befestigt ist und ein zweites festes
Drehpaar (8b), das an dem genannten Basissitz (3) befestigt ist; und zwei bewegliche
Drehpaare (8c, 8d), die sich mit der genannten Rückenlehne (4) im Eingriff befinden
und ein erstes bewegliches Drehpaar (8c) umfassen, das an der genannten Armlehne (5)
befestigt ist und ein zweites bewegliches Drehpaar (8b), das an dem genannten Basissitz
(3) befestigt ist; wobei das genannte erste Drehpaar (8a) sich am oberen Ende des
genannten ersten Säulenelements (6a) und in einer Position befindet, die von dort
aus in die Richtung des ersten beweglichen Drehpaars (8c) gerichtet ist, um es der
genannten Armlehne (5) zu ermöglichen, aus einer quer über dem genannten ersten Säulenelement
(6a) liegenden Position in eine Position in einem seitlich nebeneinander und parallel
zu dem ersten Säulenelement (6a) liegenden Verhältnis zu drehen, wenn der genannte
Sitz (1) sich in der genannten offenen Konfiguration befindet; wobei in der genannten
geschlossenen Konfiguration die genannte untere Trägerfläche (3a), die genannte rückseitige
Trägerfläche (4a) und die genannte Armträgerfläche (5a) sowie die genannte erste Verlaufsrichtung
(6b) des genannten ersten Säulenelements (6a) sich im Wesentlichen parallel zueinander
befinden und in der genannten geschlossenen Konfiguration eine obere Fläche (4b) der
genannten Rückenlehne (4) und eine Vorderfläche (3b) des genannten Basissitzes (3)
in derselben Ebene liegen, dadurch gekennzeichnet, dass in der genannten geschlossenen Konfiguration die genannte Armlehne (5) eine obere
Kante (5d) aufweist, die in derselben Ebene liegt wie die genannte obere Fläche (4b)
der genannten Rückenlehne (4) und der genannten Vorderfläche (3b) des genannten Basissitzes
(3), wobei die genannte Trägerstruktur (2) eine zweites Säulenelement (6c) umfasst,
das steif mit dem ersten Säulenelement (6a) verbunden ist und an dieses angrenzt und
sich entlang einer zweiten bevorzugten Verlaufsrichtung (6d) parallel zu der genannten
ersten bevorzugten Verlaufsrichtung (6b) erstreckt und eine geringere Ausdehnung als
das genannte erste Säulenelement (6a) aufweist, wobei das genannte zweite Säulenelement
(6c) im Querschnitt Maße aufweist, die im Wesentlichen denen des genannten ersten
Säulenelements (6a) und der genannten Armlehne (5) entsprechen und in der genannten
geschlossenen Konfiguration die genannte Armlehne mit dem genannten zweiten Säulenelement
(6c) ausgerichtet ist.
2. Klappbarer Sitz (1) nach Anspruch 1, bei dem in der genannten geschlossenen Konfiguration
das genannte erste feste Drehpaar (8a) einen geringeren Abstand von der genannten
Armträgerfläche (5a) als das genannte zweite feste Drehpaar (8b) aufweist.
3. Klappbarer Sitz (1) nach einem oder mehreren der vorangegangenen Ansprüche, bei dem
der genannte Basissitz (3) und die genannte Rücklehne (4) Stärken ähnlich wie jeweils
das genannte erste Säulenelement (6a) und die genannte Armlehne (5) aufweisen.
4. Klappbarer Sitz (1) nach einem oder mehreren der vorangegangenen Ansprüche, bei dem
das genannte erste Säulenelement (6a) und das genannte zweite Säulenelement (6b) jeweils
ein Vorderteil und ein Rückteil der genannten Trägerstruktur (2) bilden und bei dem
die genannten bevorzugten Verlaufsrichtungen (6b, 6d) in einer Ebene quer zu der genannten
rückseitigen Trägerfläche (4a) liegen.
5. Klappbarer Sitz (1) nach einem oder mehreren der vorangegangenen Ansprüche, bei dem
die genannte Armlehne (5) einen offenen Hohlraum aufweist, der darauf ausgelegt ist,
das Einführen des oberen Teils des genannten ersten Säulenelements (6a) in den genannten
offenen Hohlraum zu gestatten.
6. Klappbarer Sitz (1) nach einem oder mehreren der vorangegangenen Ansprüche, bei dem
sich in der genannten geschlossenen Konfiguration die genannte untere Trägerfläche
(3a) und die genannte rückseitige Trägerfläche (4a) im Wesentlichen in Kontakt miteinander
befinden.