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EP 2 909 397 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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06.05.2020 Bulletin 2020/19 |
(22) |
Date of filing: 11.09.2013 |
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(51) |
International Patent Classification (IPC):
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International application number: |
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PCT/GB2013/052377 |
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International publication number: |
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WO 2014/041348 (20.03.2014 Gazette 2014/12) |
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ROSTRUM SUPPORT STRUCTURE AND METHOD OF STACKING THEROF
TRÄGERSTRUKTUR FÜR PODIUM UND STAPELMETHODTHE HIERFÜR
STRUCTURE DE SUPPORT DE TRIBUNE ET METHODE DE SUPERPOSER DE LA STRUCTURE
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Designated Contracting States: |
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AL AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC MK MT NL
NO PL PT RO RS SE SI SK SM TR |
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Priority: |
11.09.2012 CA 2789576 11.09.2012 US 201213609386
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Date of publication of application: |
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26.08.2015 Bulletin 2015/35 |
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Proprietor: Steeldeck Industries Limited |
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London SE16 3DH (GB) |
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Inventor: |
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- PARKER, Nigel Matthew
London E15 3DX (GB)
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(74) |
Representative: Lamb, Martin John Carstairs |
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Marks & Clerk LLP
15 Fetter Lane London EC4A 1BW London EC4A 1BW (GB) |
(56) |
References cited: :
EP-A1- 0 789 118 WO-A2-2008/149077
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EP-A1- 0 969 166 US-A1- 2012 124 914
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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).
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[0001] The present invention relates to a rostrum and a support structure for a rostrum.
In the rostrum of the invention, a plurality of decks are received upon respective
frame units which are retractable together so that, when not in use, the rostrum can
be stored in a smaller space than would be represented by the rostrum in its position
in use. Rostra of this type are described for example in International Patent Application
No.
WO 2008/149077 and International Patent Application No.
WO 2011/042709.
[0002] Such rostra typically include a latching mechanism for locking frame units with respect
to one another in the extended position. A latching mechanism is described in
WO 2011/042709 which comprises a movable blade which is engageable with a latch surface. Each frame
unit has a respective movable blade and latch surface and is configured so that, during
retraction, the smallest frame unit is first of all unlatched and moved into the next
largest frame unit, unlatching it in the process. As a result, the frame units are
unlatched and retracted one by one from the smallest to the second largest.
[0003] The present inventor has realised that this system, though very widely used, has
a practical problem. In particular, in order to ensure that the frame units are snugly
and safely received within one another, they have to be guided carefully during retraction.
There can be a tendency to misalign slightly. During retraction, operators have to
be careful to guide the rostra and correct any misalignments. Attention is also drawn
to the disclosures of
US2012/124914,
EP0789118 and
EP0969166.
[0004] The present inventors have realised that a latching mechanism as described in
WO 2011/042709 has the disadvantage that, as retraction proceeds, the number of frame units which
require guiding increases. This means that the total mass which requires guiding increases,
so that, at the end of the retraction process it can be very difficult and requires
a lot of effort to ensure that the frame units are stacked smoothly one inside another.
[0005] The present inventors have set out to overcome this problem.
[0006] The present inventors have realised that a support structure for a rostrum can be
provided in which retraction of the frame units starts with retracting the second
largest frame unit into the largest frame unit. Although the moving mass is the same
as in prior art systems, only one frame unit is actually being moved into the retracted
position at any one time, so that only it needs to be controlled, thereby simplifying
the procedure of retraction.
[0007] Accordingly, the present invention provides a support structure for a rostrum according
to Claim 1.
[0008] According to the invention, a latching mechanism is provided which prevents the third
frame unit from being moved into the second frame unit until the second frame unit
has been retracted. Accordingly, the operator has to align only the second frame unit
as it is retracted into the first frame unit and can then turn their attention to
aligning the third frame unit when the second frame unit has been appropriately aligned.
[0009] Preferably, there are four or more frame units, including a largest frame unit and
a plurality of smaller frame units, each smaller frame unit being retractable into
an immediately larger frame unit, each frame unit being only retractable into the
immediately larger frame unit when the immediately larger frame unit has been retracted
into the frame unit which is immediately larger than it.
[0010] For example, there may be five or more, preferably six or more, frame units. There
may be up to twelve frame units, more typically up to about ten frame units. The frame
units may be of any suitable design, provided that each frame unit which is smaller
than the largest frame unit is retractable into an immediately larger frame unit.
In this way, the frame units may form a nestable set. By "retracted" it is meant that
a smaller frame unit is at least partially enclosed by a larger frame unit, preferably
being substantially completely enclosed.
[0012] It is particularly preferred that each frame unit comprises at least one structural
member which extends generally in the retraction direction. The at least one structural
member is preferably a foot member. The foot member is preferably configured to move
over a floor surface. Preferably, the foot member comprises at least one roller or
sliding surface, for moving over a floor surface.
[0013] It is possible that the foot members may extend at an angle to the retraction direction,
but it is most preferable from the point of view of efficient stacking that the foot
members extend substantially parallel to the retraction direction.
[0014] The frame units may be made of any suitable material, for example structural steel
members. They may be assembled in any suitable manner, for example by welding, bolting
or any other suitable method.
[DELETED]
[0015] The latching mechanism may prevent movement of the third frame unit until after the
second frame unit has completed a certain proportion of its movement in the retraction
direction into the first frame unit. Preferably, the latching mechanism permits movement
of the third frame unit after the second frame unit has completed at least 75%, more
preferably at least 90% and most preferably at least 95% of its movement in the retraction
direction.
[0016] The support structure may comprise a latching member operator mounted on the second
frame unit which is engageable with a control member mounted on the first frame unit
when the second frame unit is retracted into the first frame unit. In an alternative
embodiment, the latching member operator is configured to move the latching member
from the first position to the second position when the latching member operator ceases
to engage with a control member of the first frame unit.
[0017] In a preferred embodiment, the second frame unit comprises a blocking member which
is biased into contact with a blocking surface formed on the first frame unit and
which is displaceable along the blocking surface, the blocking member being movable
when it reaches a terminal portion of the blocking surface, the blocking member and
the latching member being operably connected so that, when the blocking member moves
upon reaching the terminal portion of the blocking surface, the latching member is
moved into its second position.
[0018] Preferably, the third frame unit comprises a latching surface, which is engageable
with the latching member when the latching member is in its first position, in such
a manner as to prevent movement of the third frame unit with respect to the second
frame unit. In a preferred embodiment, the latching member comprises a roller which
is configured so that, in a first position, it prevents movement of the third frame
unit but, in moving from the first position to the second position, the roller allows
a smooth movement of the third frame unit with respect to the second frame unit.
[0019] Preferably, the latching surface comprises an end surface of a foot member of the
third frame unit.
[0020] In a preferred embodiment, the blocking member or latching member operator is located
at a first position on the second frame unit and the latching member is located at
a second position on the second frame unit which is displaced from the first position
in the retraction direction.
[0021] Preferably, the blocking member comprises a roller for moving smoothly with respect
to the blocking surface of the first frame unit. Preferably, the blocking surface
comprises a longitudinally extending surface of a foot member of the first frame unit.
Preferably, the terminal portion of the blocking surface corresponds to an end of
the foot member in the retraction direction.
[0022] Preferably, the latching member is mounted on an arm which is pivotally mounted with
respect to the second frame unit. Preferably, the blocking member comprises an arm
which is pivotally mounted with respect to the second frame unit. Preferably, there
is a linking member linking the blocking member and the latching member so that when
the blocking member moves upon coming into contact with the terminal portion of the
blocking surface, the latching member is moved to its second position. Preferably,
the linking member extends in the retraction direction.
[0023] Each frame unit may comprise a first position definer for defining its extended position
with respect to the immediately larger frame unit. Preferably, there is a second position
definer for defining the extended position of each frame unit with respect to its
immediately smaller frame unit. For example, the first position definer may comprise
a projection which is receivable into a second position definer in the form of a notch
of the immediately larger/smaller frame unit.
[0024] A second latching mechanism may be provided for allowing the second frame unit to
be retracted into the first frame unit. The second latching mechanism may have a first
position for preventing movement of the second frame unit with respect to the first
frame unit and a second position for allowing the second frame unit to be retracted
into the first frame unit. The second latching mechanism may be movable from its first
position to its second position by any suitable mechanism. It may be manually operable.
There may be an operating member extending from the second latching mechanism to a
position where it is convenient for an operator to operate the operating member. The
second latching mechanism may be switchable electronically.
[0025] The rostrum of the present invention comprises a support structure for a rostrum
according to the invention, with a respective deck engaged with each respective frame
unit.
[0026] The present invention further provides a method of stacking a support structure for
a rostrum according to Claim 15.
[DELETED]
BRIEF DESCRIPTION OF THE DRAWINGS
[0027]
Figure 1 is a schematic drawing of a support structure for a rostrum according to
the present invention.
Figure 2 is a sketch isometric view from the right-hand side of a foot member of a
first frame unit or second frame unit as shown in Figure 1.
Figure 3 is a sketch isometric view from the left-hand side of the foot member of
Figure 2.
Figure 4 is a sketch view at the level of the foot member of Figure 2 showing four
frame units being engaged.
Figure 5 is a sketch view, without detail, of the method of retraction of a support
structure for a rostrum according to the invention.
DETAILED DESCRIPTION OF THE DRAWINGS
[0028] Figure 1 shows a support structure for a rostrum 1. The support structure for a rostrum
1 is substantially as shown in International Patent Application No.
WO 2008/149077 and will not be described in detail. It comprises two pairs of A-frames, each pair
comprising a first frame unit 20, a second frame unit 30 and a third frame unit 40.
The second frame unit 30 is retractable in a retraction direction marked by the arrow
A from the extended position shown in Figure 1 into the first frame unit 20. The third
frame unit 40 is retractable in the retraction direction A from the extended position
shown in Figure 1 into the second frame unit 30. The first frame unit 20 comprises
a pair of foot members 21 and 22. The second frame unit 30 comprises a pair of foot
members 31 and 32. The third frame unit 40 comprises a pair of foot members 41 and
42. In the retracted position, the foot members 31 and 32 of the second frame unit
are received inside and adjacent to the foot members 21 and 22 of the first frame
unit. In the retracted position, the foot members 41 and 42 of the third frame unit
40 are received between and within the foot members 31 and 32 of the second frame
unit 30.
[0029] At least the second foot member 32 of the second frame unit 30 is used to mount components
of a latching mechanism as shown in Figures 2 and 3. The second foot member 32 of
the second frame unit 30 is described with respect to Figures 2 and 3, but it will
be seen that this latching mechanism can be deployed on other foot members if there
are more frame units, as explained with respect to Figure 4.
[0030] As shown in Figure 2, the second foot member 32 comprises a longitudinally extending
member. A plurality of rollers 33, 34, 35 and 36 are provided for rolling along a
floor surface. The lower part 37 of the A-frame of the second frame unit 30 and a
cross member 38 of the second frame unit 38 can also be seen in part.
[0031] A blocking member 50 in the form of a roller 51 mounted on an arm 52 is provided
at the end of the foot member 32 which is outermost in the retraction direction. The
lever 52 is pivotally mounted about a pivot 53 which is formed within the framework
of the foot member 32. The opposite end 54 of the lever is connected by a link rod
55 extending in the retraction direction A.
[0032] There is an auxiliary roller 39 for allowing smooth movement of the foot member 32
along the inside vertical surface 95 of the second foot member 22 of the first A-frame
20.
[0033] A blocking member 60 is provided at the end which is furthest in the retraction direction
A. It comprises a roller 61 mounted on an arm 62 which is pivotally mounted to the
foot member 32. The linking rod 55 is pivotally connected to the arm 62 at a position
63 which is on the same side of the fulcrum 64 of the arm 62 at the roller 61. Biasing
means (not shown) bias the arm 62 in an anticlockwise direction as explained below.
[0034] It should be noted that there is a second linking rod 56 which is parallel to the
first linking rod 55 and connected in the same manner. It has exactly the same function
as the linking rod 55 and is provided for security, in case the first linking rod
55 is damaged.
[0035] A position definer 70 is provided which, in the extended position engages with a
position defining member 80 of the first frame 20 to define the extended position
in a reliable manner. A corresponding position defining member 81 is also provided
at the end of the foot member 32 which is outermost in the retraction direction for
engaging a similar position definer slot 71 of the third frame unit which can be seen
in Figure 4.
[0036] The operation of the latching mechanism of the present invention will be further
described with reference to Figure 4.
[0037] In Figure 4, the second foot member 22 of the first frame unit 20 can be seen, with
the second foot member 32 of the second frame unit 30 alongside it and the second
foot member 42 of the third frame member 40 alongside the second foot member 32 of
the second frame unit 30. A fourth frame unit 90 is shown, having a respective second
foot member 92. A part of a fifth frame unit 93 is provided which also has a foot
member 94 (partially shown). Each of the foot member 32, foot member 42, foot member
92 and foot member 94 is provided with exactly the same design of latching mechanism
as the second foot member of the second frame unit as shown in Figures 2 and 3.
[0038] The inside vertical surface 95 of the foot member 22, the inside vertical surface
96 of the foot member 32, the inside vertical surface 97 of the foot member 42 and
the inside vertical surface 98 of the foot member 92 each provides a blocking surface.
It can be seen that the roller 61' of the foot member 92 is in contact with and is
biased into contact with the respective blocking surface 97 of the foot member 42.
The blocking surface 97 prevents the arm 62' pivoting in an anticlockwise direction.
As a result, the linking member 55' holds the lever arm 52' in a position in which
the roller 51' is held in a position in which it blocks movement in the retraction
direction A of the foot member 94 which can be seen in Figure 4.
[0039] It should be noted that the respective components 61, 60, 55, 52 and 51 are shown
in the same configuration in Figures 2 and 3. The arm 62 is shown in the position
shown in Figures 2 and 3 in which it is held by the blocking surface 95 although the
blocking surface cannot be seen in Figures 2 and 3. In contrast, in Figure 4, it can
be seen that the second frame unit 30 has been completely retracted with respect to
the first frame unit 20. As a result, the roller 61 has travelled all the way to the
terminal portion 99 of the blocking surface 55. As a result, it has been enabled to
move under the force of the biasing means in an anticlockwise direction to adopt the
position which can be seen in Figure 4. As a result, the linking arm 55 has been moved
in a direction opposite to the retraction direction A to rotate the arm 52 in an anticlockwise
direction so that the roller 51 has moved out of engagement with the end 100 of the
second foot member 42 of the third frame unit 40. That is, the latching member was
placed in its second position which allowed the third frame unit 40 to be retracted
with respect to the second frame unit 30. It should be noted in Figure 4 that the
foot member 94 is shown in its fully extended position with respect to the foot member
92. As a result, the position definer notch 101 of the foot member 94 has engaged
the position defining member 102 of the foot member 92 so that they are held in the
extended position with respect to one another.
[0040] Figure 5 summarises in schematic form the method of the present invention. Foot members
of the first frame unit 20, second frame unit 30 and third frame unit 40 are shown
in the extended position in Figure 5a. In Figure 5b, according to the present invention,
the second frame unit 30 has been retracted with respect to the first frame unit 20.
Retraction of the third frame unit 40 is not possible until the second frame unit
30 has been retracted into the first frame unit 20. Only when this retraction has
been completed can the support structure be moved into the fully retracted position
shown in Figure 5c.
[0041] Movement of the second frame unit 30 in all of the figures above with respect to
the first frame unit 20 is prevented by a latching mechanism which is not shown in
the drawings but which can comprise any suitable latching mechanism.
1. A support structure for a rostrum (1), comprising:
a plurality of frame units (20, 30, 40) comprising at least a first frame unit (20),
a second frame unit (30) which is retractable in a retraction direction from an extended
position into the first frame unit (20), and a third frame unit (40), which is retractable
in the retraction direction from an extended position into the second frame unit (30);
and
wherein a latching mechanism comprises a latching member having a first position for
preventing the third frame unit (40) moving with respect to the second frame unit
(30) and a second position in which the third frame unit (40) is permitted to move
with respect to the second frame unit (30), wherein the latching mechanism being configured
so that movement of the second frame unit (30) into the first frame unit (20) causes
the latching member to be moved from its first position to its second position, characterized in that the latching mechanism prevents the third frame unit (40) from being retracted from
the extended position into the second frame unit (30) until the second frame unit
(30) has been retracted from the extended position into the first frame unit (20).
2. A support structure according to Claim 1, wherein there are four or more frame units
(20, 30, 40), including a largest frame unit (20) and a plurality of smaller frame
units (30, 40), each smaller frame unit (30, 40) being retractable into an immediately
larger frame unit (20, 30), each frame unit (30, 40) being only retractable into the
immediately larger frame unit (20, 30) when the immediately larger frame unit (30)
has been retracted into its immediately larger frame unit (20).
3. A support structure according to Claim 1 or 2, wherein each frame unit (20, 30, 40)
comprises at least one structural member which extends in the retraction direction,
and
wherein, preferably, the at least one structural member is a foot member (21, 22,
31, 32, 41, 42).
4. A support structure according to any of Claims 1 to 3, wherein the support structure
comprises a latching member operator mounted on the second frame unit (30) which is
engageable with a control member mounted on the first frame unit (20) when the second
frame unit (30) is retracted into the first frame unit (20).
5. A support structure according to any of Claims 1 to 4, wherein the support structure
comprises a latching member operator which is configured to move the latching member
from the first position to the second position when the latching member operator ceases
to engage with a control member of the first frame unit (20).
6. A support structure according to any preceding Claim, wherein the second frame unit
(30) comprises a blocking member (60) which is biased into contact with a blocking
surface (95) formed on the first frame unit (20) and which is displaceable along the
blocking surface (95), the blocking member (60) being movable when it comes into contact
with a terminal portion of the blocking surface (95), the blocking member (60) and
the latching member being operably connected so that, when the blocking member (60)
moves upon coming into contact with the terminal portion of the blocking surface (95),
the latching member is moved into its second position.
7. A support structure according to any preceding Claim, wherein the third frame unit
(40) comprises a latching surface, which is engageable with the latching member when
the latching member is in its first position, in such a manner as to prevent movement
of the third frame unit (40) with respect to the second frame unit (30).
8. A support structure according to Claim 7, wherein, the latching surface comprises
an end surface of a foot portion of the third frame unit (40).
9. A support structure according to Claim 4 or 5, or any preceding Claim dependent thereon,
wherein, the latching member operator is located at a first position on the second
frame unit (30) and the latching member is located at a second position on the second
frame unit (30) which is displaced from the first position in the retraction direction.
10. A support structure according to Claim 6, or any preceding Claim dependent thereon,
wherein the blocking surface (95) comprises a longitudinally extending surface of
a foot of the first frame unit (20) and the terminal portion of the blocking surface
(95) corresponds to an end of the foot.
11. A support structure according to Claim 6, or any preceding Claim dependent thereon,
wherein there is a linking member (55) linking the blocking member (60) and the latching
member so that when the blocking member (60) moves upon coming into contact with the
terminal portion of the blocking surface (95), the latching member is moved to its
second position.
12. A support structure according to any preceding Claim, further comprising a second
latching mechanism provided for allowing the second frame unit (30) to be retracted
into the first frame unit (20).
13. A support structure according to Claim 11, or any preceding claim dependent thereon,
wherein the linking member (55) extends in the retraction direction.
14. A rostrum, comprising a support structure according to any preceding Claim.
15. A method of stacking a support structure for a rostrum (1), the support structure
comprising a first frame unit (20), a second frame unit (30) which is retractable
in a retraction direction from an extended position into the first frame unit (20),
and a third frame unit (40) which is retractable in the retraction direction from
an extended position into the second frame unit (30), comprising retracting the second
frame unit (30) into the first frame unit (20) and then retracting the third frame
unit (40) into the second frame unit (30),
wherein a latching mechanism comprises a latching member having a first position for
preventing the third frame unit (40) moving with respect to the second frame unit
(30) and a second position in which the third frame unit (40) is permitted to move
with respect to the second frame unit (30), wherein the latching mechanism being configured
so that movement of the second frame unit (30) into the first frame unit (20) causes
the latching member to be moved from its first position to its second position, characterized in that the latching mechanism prevents the third frame unit (40) from being retracted from
the extended position into the second frame unit (30) until the second frame unit
(30) has been retracted from the extended position into the first frame unit (20),
the method further comprising the step of operating the latching mechanism to permit
movement of the third frame unit (40) into the second frame unit (30) when the second
frame unit (30) has been retracted into the first frame unit (20).
1. Trägerstruktur für ein Podium (1), die Folgendes umfasst:
mehrere Rahmeneinheiten (20, 30, 40), die wenigstens eine erste Rahmeneinheit (20),
eine zweite Rahmeneinheit (30), die in einer Einzugsrichtung aus einer ausgefahrenen
Stellung in die erste Rahmeneinheit (20) einziehbar ist, und eine dritte Rahmeneinheit
(40), die in der Einzugsrichtung aus der ausgefahrenen Stellung in die zweite Rahmeneinheit
(30) einziehbar ist, umfassen, und
wobei ein Verriegelungsmechanismus ein Verriegelungselement umfasst, das eine erste
Stellung zum Verhindern, dass sich die dritte Rahmeneinheit (40) in Bezug auf die
zweite Rahmeneinheit (30) bewegt, und eine zweite Stellung, in der ermöglicht wird,
dass sich die dritte Rahmeneinheit (40) in Bezug auf die zweite Rahmeneinheit (30)
bewegt, aufweist, wobei der Verriegelungsmechanismus so konfiguriert ist, dass eine
Bewegung der zweiten Rahmeneinheit (30) in die erste Rahmeneinheit (20) bewirkt, dass
das Verriegelungselement von seiner ersten Stellung zu seiner zweiten Stellung bewegt
wird, dadurch gekennzeichnet, dass der Verriegelungsmechanismus verhindert, dass die dritte Rahmeneinheit (40) aus der
ausgefahrenen Stellung in die zweite Rahmeneinheit (30) eingezogen wird, bis die zweite
Rahmeneinheit (30) aus der ausgefahrenen Stellung in die erste Rahmeneinheit (20)
eingezogen worden ist.
2. Trägerstruktur nach Anspruch 1, wobei es vier oder mehr Rahmeneinheiten (20, 30, 40)
gibt, die eine größte Rahmeneinheit (20) und mehrere kleinere Rahmeneinheiten (30,
40) einschließen, wobei jede kleinere Rahmeneinheit (30, 40) in die unmittelbar größere
Rahmeneinheit (20, 30) einziehbar ist, wobei jede Rahmeneinheit (30, 40) nur dann
in die unmittelbar größere Rahmeneinheit (20, 30) einziehbar ist, wenn die unmittelbar
größere Rahmeneinheit (20, 30) in ihre unmittelbar größere Rahmeneinheit (20) eingezogen
worden ist.
3. Trägerstruktur nach Anspruch 1 oder 2, wobei jede Rahmeneinheit (20, 30, 40) wenigstens
ein Strukturelement umfasst, das sich in der Einzugsrichtung erstreckt, und
wobei vorzugsweise das wenigstens eine Strukturelement ein Fußelement (21, 22, 31,
32, 41, 42) ist.
4. Trägerstruktur nach einem der Ansprüche 1 bis 3, wobei die Trägerstruktur einen Verriegelungselement-Stellantrieb
umfasst, der an der Rahmeneinheit (30) angebracht ist, der mit einem Steuerungselement,
das an der ersten Rahmeneinheit (20) angebracht ist, in Eingriff gebracht werden kann,
wenn die zweite Rahmeneinheit (30) in die erste Rahmeneinheit (20) eingezogen ist.
5. Trägerstruktur nach einem der Ansprüche 1 bis 4, wobei die Trägerstruktur einen Verriegelungselement-Stellantrieb
umfasst, der dafür konfiguriert ist, das Verriegelungselement von der ersten Stellung
zu der zweiten Stellung zu bewegen, wenn der Verriegelungselement-Stellantrieb aufhört,
mit einem Steuerungselement der ersten Rahmeneinheit (20) ineinanderzugreifen.
6. Trägerstruktur nach einem der vorhergehenden Ansprüche, wobei die zweite Rahmeneinheit
(30) ein Sperrelement (60) umfasst, das in Berührung mit einer Sperrfläche (95), die
an der ersten Rahmeneinheit (20) geformt ist, vorgespannt wird und das entlang der
Sperrfläche (95) verschiebbar ist, wobei das Sperrelement (60) beweglich ist, wenn
es in Berührung mit einem Endabschnitt der Sperrfläche (95) kommt, wobei das Sperrelement
(60) und das Verriegelungselement wirksam verbunden sind, so dass, wenn sich das Sperrelement
(60) daraufhin, dass es in Berührung mit dem Endabschnitt der Sperrfläche (95) kommt,
bewegt, das Verriegelungselement in seine zweite Stellung bewegt wird.
7. Trägerstruktur nach einem der vorhergehenden Ansprüche, wobei die dritte Rahmeneinheit
(40) eine Verriegelungsfläche umfasst, die mit dem Verriegelungselement in Eingriff
gebracht werden kann, wenn sich das Verriegelungselement in seiner ersten Stellung
befindet, auf eine solche Weise, dass eine Bewegung der dritten Rahmeneinheit (40)
in Bezug auf die zweite Rahmeneinheit (30) verhindert wird.
8. Trägerstruktur nach Anspruch 7, wobei die Verriegelungsfläche eine Endfläche eines
Fußabschnitts der dritten Rahmeneinheit (40) umfasst.
9. Trägerstruktur nach Anspruch 4 oder 5 oder einem der vorhergehenden Ansprüche, der
davon abhängig ist, wobei der Verriegelungselement-Stellantrieb bei einer ersten Position
an der zweiten Rahmeneinheit (30) angeordnet ist und das Verriegelungselement bei
einer zweiten Position, die in der Einzugsrichtung von der ersten Position versetzt
ist, an der zweiten Rahmeneinheit (30) angeordnet ist.
10. Trägerstruktur nach Anspruch 6 oder einem der vorhergehenden Ansprüche, der davon
abhängig ist, wobei die Sperrfläche (95) eine sich in Längsrichtung erstreckende Fläche
eines Fußes der ersten Rahmeneinheit (20) umfasst und der Endabschnitt der Sperrfläche
(95) einem Ende des Fußes entspricht.
11. Trägerstruktur nach Anspruch 6 oder einem der vorhergehenden Ansprüche, der davon
abhängig ist, wobei es ein Verknüpfungselement (55) gibt, welches das Sperrelement
(60) und das Verriegelungselement verknüpft, so dass, wenn sich das Sperrelement (60)
daraufhin, dass es in Berührung mit dem Endabschnitt der Sperrfläche (95) kommt, bewegt,
das Verriegelungselement zu seiner zweiten Stellung bewegt wird.
12. Trägerstruktur nach einem der vorhergehenden Ansprüche, der ferner einen zweiten Verriegelungsmechanismus
umfasst, der zum Ermöglichen, dass die zweite Rahmeneinheit (30) in die erste Rahmeneinheit
(20) eingezogen wird, bereitgestellt wird.
13. Trägerstruktur nach Anspruch 11 oder einem der vorhergehenden Ansprüche, der davon
abhängig ist, wobei sich das Verknüpfungselement (55) in der Einzugsrichtung erstreckt.
14. Podium, das eine Trägerstruktur nach einem der vorhergehenden Ansprüche umfasst.
15. Verfahren zum Stapeln einer Trägerstruktur für ein Podium (1), wobei die Trägerstruktur
eine erste Rahmeneinheit (20), eine zweite Rahmeneinheit (30), die in einer Einzugsrichtung
aus einer ausgefahrenen Stellung in die erste Rahmeneinheit (20) einziehbar ist, und
eine dritte Rahmeneinheit (40), die in der Einzugsrichtung aus der ausgefahrenen Stellung
in die zweite Rahmeneinheit (30) einziehbar ist, umfasst, wobei das Verfahren das
Einziehen der zweiten Rahmeneinheit (30) in die erste Rahmeneinheit (20) und danach
das Einziehen der dritten Rahmeneinheit (40) in die zweite Rahmeneinheit (30) umfasst,
wobei ein Verriegelungsmechanismus ein Verriegelungselement umfasst, das eine erste
Stellung zum Verhindern, dass sich die dritte Rahmeneinheit (40) in Bezug auf die
zweite Rahmeneinheit (30) bewegt, und eine zweite Stellung, in der ermöglicht wird,
dass sich die dritte Rahmeneinheit (40) in Bezug auf die zweite Rahmeneinheit (30)
bewegt, aufweist, wobei der Verriegelungsmechanismus so konfiguriert ist, dass eine
Bewegung der zweiten Rahmeneinheit (30) in die erste Rahmeneinheit (20) bewirkt, dass
das Verriegelungselement von seiner ersten Stellung zu seiner zweiten Stellung bewegt
wird, dadurch gekennzeichnet, dass der Verriegelungsmechanismus verhindert, dass die dritte Rahmeneinheit (40) aus der
ausgefahrenen Stellung in die zweite Rahmeneinheit (30) eingezogen wird, bis die zweite
Rahmeneinheit (30) aus der ausgefahrenen Stellung in die erste Rahmeneinheit (20)
eingezogen worden ist wobei das Verfahren ferner den Schritt des Betätigens des Verriegelungsmechanismus
umfasst, um eine Bewegung der dritten Rahmeneinheit (40) in die zweite Rahmeneinheit
(30) zu ermöglichen, wenn die zweite Rahmeneinheit (30) in die erste Rahmeneinheit
(20) eingezogen worden ist.
1. Structure de support pour une tribune (1), comprenant :
une pluralité d'unités de cadre (20, 30, 40) comprenant au moins une première unité
de cadre (20), une deuxième unité de cadre (30) qui est rétractable dans une direction
de retrait depuis une position étendue dans la première unité de cadre (20) et une
troisième unité de cadre (40), qui est rétractable dans la direction de retrait depuis
une position étendue dans la deuxième unité de cadre (30) ; et
dans laquelle un mécanisme de verrouillage comprend un élément de verrouillage présentant
une première position afin d'empêcher la troisième unité de cadre (40) de se déplacer
relativement à la deuxième unité de cadre (30) et une seconde position dans laquelle
la troisième unité de cadre (40) est autorisée à se déplacer relativement à deuxième
unité de cadre (30), dans laquelle le mécanisme de verrouillage est configuré de sorte
que le mouvement de la deuxième unité de cadre (30) dans la première unité de cadre
(20) provoque le déplacement de l'élément de verrouillage de sa première position
à sa seconde position, caractérisée en ce que le mécanisme de verrouillage empêche le retrait de la troisième unité de cadre (40)
de la position étendue dans la deuxième unité de cadre (30) jusqu'à ce que la deuxième
unité de cadre (30) ait été rétractée de la position étendue dans la première unité
de cadre (20).
2. Structure de support selon la revendication 1, dans laquelle il existe quatre unités
de cadre ou plus (20, 30, 40), incluant une unité de cadre la plus grande (20) et
une pluralité d'unités de cadre plus petites (30, 40), chaque unité de cadre plus
petite (30, 40) étant rétractable dans une unité de cadre immédiatement plus grande
(20, 30), chaque unité de cadre (30, 40) étant seulement rétractable dans l'unité
de cadre immédiatement plus grande (20, 30), lorsque l'unité de cadre immédiatement
plus grande (30) a été rétractée en son unité de cadre immédiatement plus grande (20).
3. Structure de support selon la revendication 1 ou 2, dans laquelle chaque unité de
cadre (20, 30, 40) comprend au moins un élément structurel qui s'étend dans la direction
de retrait, et
dans laquelle, de préférence, le au moins un élément structurel est un élément de
pied (21, 22, 31, 32, 41, 42).
4. Structure de support selon l'une quelconque des revendications 1 à 3, dans laquelle
la structure de support comprend un opérateur d'élément de verrouillage monté sur
la deuxième unité de cadre (30) qui peut être mis en prise avec un élément de commande
monté sur la première unité de cadre (20), lorsque la deuxième unité de cadre (30)
est rétractée dans la première unité de cadre (20).
5. Structure de support selon l'une quelconque des revendications 1 à 4, dans laquelle
la structure de support comprend un opérateur d'élément de verrouillage qui est configuré
afin de déplacer l'élément de verrouillage de la première position à la seconde position,
lorsque l'opérateur d'élément de verrouillage cesse de se mettre en prise avec un
élément de commande de la première unité de cadre (20).
6. Structure de support selon l'une quelconque des revendications précédentes, dans laquelle
la deuxième unité de cadre (30) comprend un élément de blocage (60) qui est polarisé
en contact avec une surface de blocage (95) formé sur la première unité de cadre (20)
et qui peut être déplacé le long de la surface de blocage (95), l'élément de blocage
(60) étant mobile lorsqu'il entre en contact avec une partie d'extrémité de la surface
de blocage (95), l'élément de blocage (60) et l'élément de verrouillage étant raccordés
de manière opérationnelle de sorte que, lorsque l'élément de blocage (60) se déplace
en entrant en contact avec la partie d'extrémité de la surface de blocage (95), l'élément
de verrouillage est déplacé dans sa seconde position.
7. Structure de support selon l'une quelconque des revendications précédentes, dans laquelle
la troisième unité de cadre (40) comprend une surface de verrouillage, qui peut être
mise en prise avec l'élément de verrouillage, lorsque l'élément de verrouillage est
dans sa première position, de façon à empêcher un mouvement de la troisième unité
de cadre (40) relativement à la deuxième unité de cadre (30).
8. Structure de support selon la revendication 7, dans laquelle la surface de verrouillage
comprend une surface d'extrémité d'une partie de pied de la troisième unité de cadre
(40).
9. Structure de support selon la revendication 4 ou 5, ou l'une quelconque des revendications
précédentes en dépendant, dans laquelle l'opérateur d'élément de verrouillage est
situé dans une première position sur la deuxième unité de cadre (30) et l'élément
de verrouillage est situé dans une seconde position sur la deuxième unité de cadre
(30) qui est déplacée de la première position dans la direction de retrait.
10. Structure de support selon la revendication 6, ou l'une quelconque des revendications
précédentes en dépendant, dans laquelle la surface de blocage (95) comprend une surface
s'étendant de manière longitudinale d'un pied de la première unité de cadre (20) et
la partie d'extrémité de la surface de blocage (95) correspond à une extrémité du
pied.
11. Structure de support selon la revendication 6, ou l'une quelconque des revendications
précédentes en dépendant, dans laquelle il existe un élément de liaison (55) qui relie
l'élément de blocage (60) et l'élément de verrouillage de sorte que, lorsque l'élément
de blocage (60) se déplace jusqu'à entrer en contact avec la partie d'extrémité de
la surface de blocage (95), l'élément de verrouillage est déplacé vers sa seconde
position.
12. Structure de support selon l'une quelconque des revendications précédentes, comprenant
en outre un second mécanisme de verrouillage ménagé de façon à permettre que la deuxième
unité de cadre (30) soit rétractée dans la première unité de cadre (20).
13. Structure de support selon la revendication 11, ou l'une quelconque des revendications
précédentes en dépendant, dans laquelle l'élément de liaison (55) s'étend dans la
direction de retrait.
14. Tribune, comprenant une structure de support selon l'une quelconque des revendications
précédentes.
15. Procédé d'empilement d'une structure de support pour une tribune (1), la structure
de support comprenant une première unité de cadre (20), une deuxième unité de cadre
(30) qui est rétractable dans une direction de retrait depuis une position étendue
dans la première unité de cadre (20) et une troisième unité de cadre (40), qui est
rétractable dans la direction de retrait depuis une position étendue dans la deuxième
unité de cadre (30), comprenant le retrait de la deuxième unité de cadre (30) dans
la première unité de cadre (20) et ensuite le retrait de la troisième unité de cadre
(40) dans la deuxième unité de cadre (30),
dans laquelle un mécanisme de verrouillage comprend un élément de verrouillage présentant
une première position afin d'empêcher la troisième unité de cadre (40) de se déplacer
relativement à la deuxième unité de cadre (30) et une seconde position dans laquelle
la troisième unité de cadre (40) est autorisée à se déplacer relativement à deuxième
unité de cadre (30), dans laquelle le mécanisme de verrouillage est configuré de sorte
que le mouvement de la deuxième unité de cadre (30) dans la première unité de cadre
(20), provoque le déplacement de l'élément de verrouillage de sa première position
à sa seconde position, caractérisée en ce que le mécanisme de verrouillage empêche le retrait de la troisième unité de cadre (40)
de la position étendue dans la deuxième unité de cadre (30) jusqu'à ce que la deuxième
unité de cadre (30) a été rétractée de la position étendue dans la première unité
de cadre (20), le procédé comprenant en outre une étape consistant à faire fonctionner
le mécanisme de verrouillage afin de permettre le mouvement de la troisième unité
de cadre (40) dans la deuxième unité de cadre (30), lorsque la deuxième unité de cadre
(30) a été rétractée dans la première unité de cadre (20).
REFERENCES CITED IN THE DESCRIPTION
This list of references cited by the applicant is for the reader's convenience only.
It does not form part of the European patent document. Even though great care has
been taken in compiling the references, errors or omissions cannot be excluded and
the EPO disclaims all liability in this regard.
Patent documents cited in the description