[0001] This invention relates to professional-style seating, more specifically, to seating
for use in conference rooms, classrooms or other areas that require a large number
of seats as well as the facility to move and store such seating in another area so
the room can be used differently or for other events that require free space but do
not need seating.
[0002] Conferences and other types of events or mass gatherings require the presence and
use of a large number of individual, stackable seats that can be stacked vertically,
one on top of the other, or individual, folding seats that that can also be stacked
vertically, one on top of the other, thereby creating large, tall stacks enabling
both efficient storage and the saving of space.
[0003] In both cases, the preparation and clearing of event halls is a particularly arduous
and time-consuming process and requires the moving of stacks of seats which are heavy
and, on account of their height, hard to balance, and the placing of individual seats,
one by one, in the correct position. Due to regulations on upright arrangement, straightening
of the seating is often also required, using additional tools such as a plumb line
(Kravaritis N K, 1992 Professional Tourism: Conference Organisation in Hotels, Interbooks,
Athens, Greece). This causes additional delays.
[0004] In view of the above, this invention aims to create an expanding seating system,
arranged in straight lines and stacking horizontally, for use at conference-type events
with an emphasis on the rapid and easy installation, removal and transport of the
system by its handlers. 'Handler' here describes the person who is responsible for
installing, removing and transporting the system to and from the event hall.
[0005] The present invention relates to an expanding seating system consisting of an expandable
assembly of two or more seats in line, specifically, to the shell of the seating consisting
of the back and base of the seats and the frame of the system that includes the legs
of the seats and the system's folding mechanism.
[0006] Operation of the system is based on its folding mechanism, consisting of a single
linear, scissor-like structure. Revolving bars are attached to this structure which
rotate on it according to its movement, the shells being attached to these bars. The
shells have the facility to rotate round the revolving bars. Together, the scissor-like
structure can change its geometry from open to closed in such a way as to carry with
it the entire assembly and can change from one geometry to the other in a synchronised,
smooth, linear movement. The system can be secured (locked) in the two extreme geometries
of the scissor-like structure i.e. the open and closed geometry.
[0007] The system may be described as having three configurations. These are the fully open,
deployed configuration, during which the scissor-like structure has an open geometry
and the shells are turned such that the plane of the base of the seat is parallel
to the plane of the floor and is secured in this position; the fully closed, folded
configuration, during which the scissor-like structure has a closed geometry and the
shells are turned such that the plane of the base of the seat is perpendicular to
the plane of the floor and the intermediate configuration during which the scissor-like
structure has an open geometry and the shells are turned such that the plane of the
base of the seat is perpendicular to the plane of the floor.
[0008] Care must be taken not to confuse the open geometry of the scissor-like structure
with the fully open, fully deployed, configuration of the system.
[0009] When in use, in order to deploy the expanding seating system according to the invention,
the handler opens the geometry of the scissor-like structure and then turns and secures,
one by one, the shells of the seats that make up the system so as to bring it to its
fully open, fully deployed, configuration. The opposite procedure is followed in order
to fold the expanding seating system into its fully closed, fully folded, configuration.
[0010] In its fully open, fully expanded, configuration the system forms a completely straight
row of seats which can support the weight of those seated. In its fully closed, fully
folded, configuration, the system is capable of stacking horizontally or vertically.
[0011] Taken as a whole, the system could be described as total horizontally stacking seating
that obviates the need for handlers to lift heavy weights in the form of seats when
laying them out and removing them from the conference area. Due to its horizontal
deployment and folding, the system remains at a convenient height for its handler.
Since the system consists of more than one seat, the time for preparing and for clearing
the hall is significantly reduced since the need to move the seats one by one is eliminated.
[0012] According to the invention, a system consisting of no more than ten seats at most
is proposed otherwise its weight would exceed forty kg when, as a result, its lifting
by a single individual would be considered dangerous on the basis of ergonomic restrictions.
Ideally a system consisting of five seats is proposed, a size considered to achieve
the optimum balance between utility, ease of use and safety.
[0013] An advantage of this invention is that it comprises a mobile seating system which
has the capability of simultaneous and synchronised deployment and positioning in
a straight line together with the facility to fold and store more than one seat, in
a simple fashion, with few movements, without the need for the handler to lift heavy
weights and without the need for complex movements or use of additional tools for
in-line positioning. As a result the work required is less taxing and the time needed
is reduced.
[0014] The invention is described below with the help of an example and with reference to
the attached drawings:
Figure 1 shows a plan view of the deployed seating system according to the present
invention in its three different configurations viz. the fully open, fully deployed,
configuration (a), the fully closed, fully folded configuration (c) and the intermediate
configuration (b).
Figure 2 shows a plan view of the common scissor-like structure (d) and one of the
several scissor-like elements (e) that are used in the present invention also showing
the attachment of the revolving bar (4).
Figure 3 shows a side view (f) and the front view (g) of an assembled seat.
Figure 4 gives a perspective view of an end leg and its joint to a straight bar (A)
at the nodal point (5). Since this point is an end, the scissor-like element to which
the straight bar A (9) belongs is not connected to another scissor-like element. This
also shows the support function of the spacer (14).
[0015] A single seat assembly (n=1) consists of the shell (2) of the seat and the frame
(1) of the seat. The frame (1) is made up of a scissor-like element (e), a revolving
bar (4), four legs (11), four spacers (14), two pivoting joints (15) and two snap-fit
catches (3).
[0016] To assemble a system of n seats, n shells (2), n scissor-like elements (e), n revolving
bars (4), 2n+2 seat legs, four spacers (14), 2n pivoting joints (15) and 2n snap-fit
catches (3) are required.
[0017] Each scissor-like element (e) consists of two straight bars of different shape. Straight
bar B (10) has a round hole at one end, the point of connection (12) which is used
to attach the revolving bar (4). Straight bar A (9) has an oblong hole which is also
a guide for movement of the revolving bar. All the scissor-like elements in the system
are known collectively as the'scissor-like structure' (d) and can simultaneously open
and close, linearly and smoothly.
[0018] It is clear that this linkage provides the capability to assemble not just a single
seat but also any number of seats, without restriction. It is however proposed five
seats be connected on considerations mainly relating to the weight of the structure.
Connection of less than five seats along with the seating units may be useful in cases
where extension of the rows in a room's arrangement by less than five seats is required.
At the other extreme, use of two systems of five seats rather than one system of ten
is proposed.
[0019] Assembly can be easily done by following the steps below:
- 1. Join straight bars A (9) and B (10) into scissor-like elements.
- 2. Attach two pivoting joints (15) and two snap-fit catches (3) to each shell (2).
- 3. Place the ready-assembled shells on the revolving bars (4) in such a way that the
revolving bar (4) is secured within the pivoting joint (15) so that the shell (2)
can rotate around the revolving bar (4).
- 4. Connect the revolving bars (4), together with the shells (2) assembled on them,
to the scissor-like elements (e) so that the revolving bar (4) is connected to bar
B (10) and can revolve around an imaginary axis at the point of connection (12) and
is joined to and can travel in a straight line along the straight bar A (9).
- 5. Connect the scissor-like elements (e) to the legs (11) of the system's seats.
- 6. The use of spacers (14) on the end seats (i.e. the first and last seats) of the
system is needed in order for the structure to remain straight.
1. An expanding seating system consisting of n linked deployable seats which include
n shells (2) consisting of the base and back of the seat to each of which are attached
two snap-fit catches (3), and each of which is connected to a revolving bar (4) the
ends of which are connected near the node points (5) of a single straight scissor-like
structure (d) which consists of 2n straight bars (9), (10) which form n scissor-like
elements (e) and of n+2 seat legs (11) which connect to it at the nodal points (5)
of the scissor-like structure (d) and characterised by each shell (2) being able to rotate around its revolving bar (4) and by each end
of each revolving bar being connected to a scissor-like element (e) and, in particular,
one end of the revolving bar (4) to one end of one of the two straight bars (10) in
such a way that it can rotate about an imaginary axis at the point of connection (12)
and the other end of the revolving bar with the end of the other straight bar (9)
of the scissor-like element, in such a way that it can move linearly along the straight
bar (9) in a direction parallel to that of the bar and by the scissor-like structure
(d) being able to open and close, making a linear, smooth, movement with simultaneous
opening and closing of all the individual scissor-like elements (e) of which it consists.
2. An expanding seating system, according to claim 1, characterised by the snap-fit catch connectors (3) being attached to the shells (2) of the seats in
the part under the base of the seats in such an arrangement so that they can be secured
to the straight bars (9), (10) that make up the scissor elements (e) when the system
is in its fully open, fully deployed, configuration (a).
3. An expanding seating system, according to claim 2, characterised by the scissor-like structure (d), which it includes, being made up of n scissor-like
elements (e) consisting of 2n straight bars (9), (10) and, more specifically, of n
straight bars A (9) and n straight bars B (10), which are connected in pairs forming
scissor-like elements (e) in such a way that each scissor-like element consists of
one straight bar A (9) and one straight bar B (10) and such that the revolving bar
(4) is connected and can rotate around an imaginary axis at a point of connection
(12) with bar B (10) and is connected to and can move linearly on straight bar A (9).
4. An expanding seating system, according to claim 3, characterised by the straight bar A (9) having a shape such as to allow the linear movement of the
revolving bar (4) along its length up to point C (13) and to prevent it moving at
point C (13) or beyond, such that when the revolving bar (4) reaches point C (13)
its movement is checked and deployment of the entire structure (d) is interrupted
and stops.
5. An expanding seating system, according to claim 4, characterised by the system being an assembly of bars (4), (9), (10), legs (11), snap-fit catches
(3), spacers (14), pivoting joints (15) and shells (2) and by a single seat having
the capability of being assembled from a shell (2) and two snap-fit catches (3) and
four spacers (14) and two pivoting joints (15) and four legs (11) and one revolving
bar (4) and of two straight bars, i.e. one straight bar A (9) and one straight bar
B (10).
6. An expanding seating system, according to claim 5, characterised by the system consisting of an assembly of an indeterminate number of seats, where n
seats require the assembly of n shells (2) and 2n snap-fit catches (3) and n revolving
bars (4) and 2n+2 seat legs (11) and n straight bars A (9) and n straight bars B (10)
and four spacers with the exception of the case where n=1 when the combination of
elements as described in claim 5 is to be followed.