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EP 1 746 035 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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21.04.2010 Bulletin 2010/16 |
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Date of filing: 22.07.2005 |
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International Patent Classification (IPC):
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Transport and display container
Transport- und Schaustellungsbehälter
Récipient de transport et de présentation
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Designated Contracting States: |
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AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HU IE IS IT LI LT LU LV MC NL PL PT RO SE
SI SK TR |
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Date of publication of application: |
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24.01.2007 Bulletin 2007/04 |
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Proprietor: SCA Packaging Limited |
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Aylesford,
Kent ME20 7PE (GB) |
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Inventor: |
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- Jagersma, Jan
40822 Mettmann (DE)
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Representative: Leckey, David Herbert |
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Dehns
St Bride's House
10 Salisbury Square London
EC4Y 8JD London
EC4Y 8JD (GB) |
| (56) |
References cited: :
FR-A- 2 596 730 NL-C2- 1 021 377 US-A- 6 105 857
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FR-A- 2 792 290 US-A- 5 657 872 US-A1- 2005 045 706
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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).
|
[0001] The present invention relates to containers and in particular to containers that
are configured to be easily transformed from a transport/transit configuration to
a display configuration. Such containers are sometimes referred to as transit and
display containers and may take the form of a closed box or an open topped tray, for
example.
[0002] When presented on a shelf in their display state, transit and display containers
are often required to have an opening in one of their side walls, usually at least
in the front wall, to enable customers to see and access the goods in the display
container. Providing apertures in the walls of a container, however, reduces the overall
stability of the container. This can be problematic, for example during transport
and storage of the container, where large vertical forces are applied to the container
when similar containers are stacked.
[0003] Known transit and display containers attempt to improve container stability by incorporating
sections in the container walls that can be removed for display purposes. These removable
sections lend additional stability to the container walls during transport. In known
containers such removable sections are defined by lines of weakness. Such lines of
weakness, for example lines of perforation, need to be strong enough to retain their
integrity when the container is erected from a blank and during filling, transport
and storage of the container. Conversely, lines of weakness need to be designed so
as not to provide a resistance to the removal of a removable section of a container
that would prevent removal of the removable section by a user, such as for example
by a person arranging the container on a shelf of a shop or supermarket.
[0004] US 5 657 872 discloses a container according to the preamble of claim 1.
NL 1021377 and
US 6105857 disclose containers having removeable portions for forming openings.
[0005] It is an object of the present invention to overcome or mitigate some or all of the
above disadvantages of conventional transit and display containers.
[0006] From an aspect of the present invention there is provided a container as claimed
in claim 1.
[0007] Such an arrangement permits the use of lines of weakness that are relatively weaker
than lines of weakness provided on a comparable panel in which the lines of weakness
do not define a form-interlocking engagement. The connection provided by the present
invention does not solely rely on bridging material for structural integrity but further
makes use of form-interlocking for improving stability.
[0008] Preferably the line of weakness is wave-like or zig-zag shaped.
[0009] Preferably form-interlocking is provided in a direction in which a main loading force
is likely to be exerted onto the container, for example in the vertical direction
in the case of stacking and/or lifting forces. When this main load force, or part
thereof, is exerted onto the removable section, then the removable section is still
prevented from separating from the remainder of the panel due to the form-interlocking
of the removable section with the remainder of the panel. Thus, stacking forces transmitted
onto the removable section, for example through a lid connected to the removable section,
or lifting forces applied to such a lid may not cause separation of the removable
section from the remainder of the panel.
[0010] Preferably, the line of weakness substantially extends within the range of 0 degrees
to about 35 degrees relative to the direction of main force application.
[0011] Separation of the removable section from the remainder of the container is achieved
by applying a force in a direction in which no form-interlocking occurs to the removable
section, i.e. a direction comprising a component orthogonal to the plane defined by
the removable section, that is out of plane movement relative to a remainder of said
panel.
[0012] It will be appreciated that removable sections that form-interlock in a container
panel present resistance to removal from the panel even after the line of weakness
defining the removable section has been ruptured. The removable section may therefore
advantageously be used to lock container structures connected to it in place. The
removable section is connected to the container lid.
[0013] In this arrangement, the removable section can advantageously be separated from the
remainder of the container as one piece with the lid in a single procedural step.
The part of the lid connected to the removable section is a hinged flap moveable in
a direction that has a component orthogonal to the plane defined by the removable
section. Hinged movement of this flap can therefore cause separation of the separable
region from the remainder of the container.
[0014] Preferably the hingeable flap portion is defined by one or more lines of weakness
within the lid.
Preferably a or the lines of weakness extend from an edge of a panel.
[0015] A further or second removable section is preferably also provided, most preferably
in a wall opposite to a side wall comprising a first removable section.
[0016] When wave-like or zig-zag shaped lines of weakness are provided, the spacing between
adjacent peaks or between adjacent troughs of said wave-like or zig-zag pattern is
preferably between 15 mm and 150 mm, more preferably between 15 mm and 40 mm. The
maximum spacing of the peaks or troughs is, however, also determined by the total
length of the line of weakness as it is required that at least one peak or trough
be provided so as to ensure that the line of weakness provides form-interlocking.
[0017] The peak to trough amplitude of said wave-like or zig-zag pattern is between 4 mm
and 90 mm and more preferably between 4 mm and 15 mm. When providing wave-like or
zig-zag pattern care needs to be taken that a peak to trough amplitude is chosen that
ensures form-interlocking between the removable section and the remainder of the container.
It will be appreciated that the decision on which peak to trough amplitudes to choose
depends on a number of factors, including the chosen peak/trough spacing of the line
of weakness and the direction in which the main load force acting on the removable
section is likely to be applied. For example, in containers where a line of weakness
extends at a shallow angle relative to the direction of the main load force (such
as a vertical compressing force resulting from stacking of several containers) the
peak to trough amplitude of the line of weakness does not need to be as large as the
peak to trough amplitude of a line of weakness that extends in a direction that is
at a larger angle relative to the main load force. As a further example, a line of
weakness having a large peak/trough spacing or pitch may require large peak to trough
amplitudes to provide the desired form-interlocking, whereas lines of weakness with
a small pitch can be provided with a smaller peak to trough amplitude to provide form-interlocking.
This relationship between amplitude and pitch can be expressed in terms of the ratio
between amplitude and pitch, which preferably is within the range of 0.10 to 1.5 and
more preferably between 0.3 and 0.8.
[0018] Various embodiments of the present invention will now be described by way of example
only and with reference to the accompanying drawings, in which:
Figure 1-1 shows a blank for a base according to a preferred embodiment;
Figure 1-2 shows a preferred base erected from a blank as shown in Fig. 1-1;
Figure 1-3 shows a blank for a lid according to a preferred embodiment;
Figure 1-4 shows a preferred lid erected from a blank as shown in Fig. 1-3;
Figure 1-5 shows a readily assembled container with the lid shown in Fig. 1-4 placed
on the base shown in Fig. 1-2;
Figure 1-6 shows an opening step of the container shown in Fig. 1-5;
Figure 1-7 shows a display tray obtained from the container of Fig. 1-5 after opening;
Figure 2-1 shows an blank for a container according to another embodiment of the present
invention; and
Figure 2-2 shows a preferred container erected from the blank shown in Fig. 2-1.
[0019] Figure 1-1 shows a blank 2 for erecting into a base of a container according to a
preferred embodiment. The blank 2 comprises a panel 4 that, in the erected state,
forms the bottom of the container. Further provided are panels 6 and 8 that, in the
erected state, form two of the side walls of the container. Lines of weakness 10,
12, 14 and 16 extend from outer edges 18 and 20 of panels 6 and 8 to apertures 22
and 24 respectively, defining areas 26 and 28. Lines of weakness 10 and 14 extend
in a general direction that has an angle of about 15 degrees relative to the direction
orthogonal to edges 18 and 20 respectively and lines of weakness 12 and 16 extend
in a general direction that has an angle of about 10 degrees relative to the direction
orthogonal to edges 18 and 20 respectively. Areas 26 and 28 are accordingly wider
at the top edges 18 and 20 than at the end proximate to apertures 22 and 24. Good
access to the interior of the container once erected and opened is accordingly provided
by the preferred embodiment. The wave-like pattern of lines of weakness 10, 12, 14
and 16 have a peak to trough amplitude of 12.6 mm and a peak to peak spacing of about
38.6 mm.
[0020] Panels 30, 32, 34 and 36 are provided for forming vertical support columns in the
corners of the base in the erected state. Fig. 1-2 shows a preferred base 38 erected
from a blank as shown in Fig. 1-1.
[0021] It can be appreciated from Fig. 1-1, that areas 26 and 28 cannot be removed from
panels 6 and 8 respectively by movement of areas 26 and 28 in the plane of panels
6 and 8, as lines of weakness 10, 12, 14 and 16 are arranged so that such in-plane
movement simply causes interlocking between adjacent edges of areas 26 and 28 and
panels 6 and 8 respectively.
[0022] Fig. 1-3 shows a blank 40 for erecting in a lid of a preferred container. The blank
40 comprises a panel 42 that, in the erected state, forms the top of the lid. Further
provided are panels 44 and 46 that, in the erected state, form two of the side walls
of the lid. Lines of weakness 48, 50, 52 and 54 divide panels 44 and 46 into areas
56, 58, 60, 62, 64 and 66 respectively. Fig. 1-4 shows a preferred lid 68 erected
from a blank as shown in Fig. 1-3.
[0023] In use, base 34 is erected from blank 2 and subsequently filled with goods. Adhesive
is then applied to areas 26 and 28 prior to placement of lid 68 on base 34, as shown
in Fig. 1-5. In the fully assembled state, lid 68 is accordingly connected to base
34 via areas 26 and 28.
[0024] When opening container 70, areas 58 and 64 of lid 68 are hinged outwardly as is shown
in Fig. 1-6, so as to break lines of weakness 48, 50, 52 and 54 respectively. This
outward movement of areas 58 and 64 also causes a breaking of lines of weakness 10,
12, 14 and 16 on panels 6 and 8 of base 34 as areas 58 and 64 are permanently attached
to areas 26 and 28. After lines of weakness 10, 12, 14 and 16 have been broken, lid
68 can easily be removed from base 34 in a simple upward movement, thus transforming
container 70 into its display state as shown in Fig. 1-7. As can be seen from Fig.
1-7, separating areas 26 and 28 from panels 6 and 8 has created edges 72, 74, 76 and
78 on panels 6 and 8. As will be appreciated, areas 26 and 26 comprise edges (not
shown) complementing edges 72, 74, 76 and 78 of panels 6 and 8. Areas 26 and 28 of
base 34 remain attached to areas 58 and 64 of lid 68.
[0025] To close base 38 again, lid 68 is simply placed on base 38. Subsequently, areas 58
and 64 are moved downwardly so that areas 26 and 28 come to lie in the area defined
by edges 72, 74, 76 and 78. It will be appreciated, that, once lid 68 has been reconnected
to base 38 in this manner, upward movement of lid 68 relative to base 38 is impeded,
as the sides of the wave shaped edges of areas 26 and 28 interfere with the sides
of the wave shaped edges of panels 6 and 8 of the base 38 when areas 26 and 28 are
moved in a direction that is in the plane of panels 6 and 8. Thus lid 38 is securely
held on container 70 until areas 58 and 64 are hinged outwardly again.
[0026] The preferred container accordingly permits reclosing. When stacking re-closed preferred
containers outward movement of side walls 6 and 8 due to vertical pressure is prevented
by a holding force applied onto side walls 6 and 8 by areas 56, 60, 62 and 66 of lid
68. Lid 68 is furthermore securely held in place against vertical movement during
handling. It will further be appreciated that, even in a state where lines of weakness
10, 12, 14 and 16 have been broken, the presence of areas 26 and 28 in panels 6 and
8 improves the stability of container's 70 resistance to crushing forces is improved
through the interlocking between areas 26 and 28 and the remainders of panels 6 and
8 respectively.
[0027] Fig. 2-1 shows a further preferred embodiment of a blank 100 for erecting into a
container. The blank 100 comprises a panel 102 that in the erected state forms the
bottom of the container. Further provided are panels 104 and 106 for forming container
side walls in the erected state. Lines of weakness 108, 110, 112 and 114 extend from
edges 116 and 118 of panels 104 and 106 respectively towards finger holes 120 and
122 and define removable areas 124 and 126.
[0028] As can be seen from Fig. 2-1, the sections of the lines of weakness 108, 110, 112
and 114 extending in a direction substantially orthogonal to edges 116 and 118 respectively
comprise one period of a sinusoid. The peak defined by these sinusoids on areas 124
and 126 (such as for example peak 128 as indicated in Fig. 2-1) are inside corresponding
troughs defined by the same sinusoids on the remainders of panels 104 and 106 respectively.
It will be appreciated that this arrangement causes interference between these peaks
and troughs when separation of areas 124 and 126 respectively from panels 104 and
106 is attempted, when the separation force is in a direction in the plane of the
panels 104 and 106. Thus, to separate areas 124 and 126 from panels 104 and 106 respectively,
a separation force that is orthogonal to the plane defined by panels 104 and 106 needs
to be applied.
[0029] Fig. 2-2 shows a container 140 erected from blank 100 shown in Fig. 2-1. A lid is
adhered to areas 124 and 126, thus securing the lid to the container 140. To remove
the lid from the container 140, a user can insert his or her fingers into the finger
holes 120 and 122 respectively and apply an outwardly pulling force to areas 124 and
126 and to the parts of the lid connected to these areas 124 and 126, so as to cause
breaking of lines of weakness 108, 110, 112 and 114.
[0030] After removal of the lid, the lid can be re-placed on container 140 and secured to
container 140 by reinserting areas 124 and 126 into the openings left by their previous
removal. Form-interlocking between the peaks and troughs defined by the sinusoid again
ensure secure holding of the lid on container 140.
[0031] Although the present invention has been described with reference to preferred embodiments,
it will be understood by those skilled in the art that many changes in form and detail
may be made without departing from the scope of the invention as set forth in the
accompanying claims. The line of weakness defined in a side wall of the base may further
form an area of any shape that permits preventing separation of the lid from the base
when the area is re-inserted into the spaced left by separation from the area. For
example, the line of weakness may define a trapezoidal area having a top edge that
is shorter than the bottom edge, so that upward movement of the area and the lid is
impeded.
[0032] An arrangement in which the area of the side wall that interlocks with the remainder
of the side wall is not initially connected to the side wall along a line of weakness
is also contemplated.
1. A container comprising a lid (68) and a base (34), a hingeable flap portion (58,64)
of said lid being attached to a removable section (26,28) of said base, wherein hinged
movement of said flap portion (58,64) in a direction that has a component orthogonal
to a plane defined by said removable section (26,28) causes separation of said removable
section from a remainder of said base;
wherein said base comprises a panel (6,8) with a line of weakness (10-16) at least
partly defining the removable section (26,28);
wherein the removable section (26,28) extends from an edge (18,20) of the panel (6,8);
characterised in that said removable section (26,28) is form interlocking with a remainder of said panel
(6,8) such that in-plane movement of said removable section (26,28) causes interlocking
between adjacent edges of said removable section and the remainder of the panel (6,8).
2. A container as claimed in claim 1, wherein the line of weakness (10-16) is wave-like
or zig-zag shaped.
3. A container as claimed in claim 2, wherein the spacing between adjacent peaks or between
adjacent troughs of said wave-like or zig-zag pattern is between 15 mm and 150 mm.
4. A container as claimed in claim 3, wherein the spacing between adjacent peaks or between
adjacent troughs of said wave-like or zig-zag pattern is between 15 mm and 40 mm.
5. A container as claimed in claims 2, 3 or 4, wherein the peak to trough amplitude of
said wave-like or zig-zag pattern is between 4 mm and 90 mm.
6. A container as claimed in claim 5, wherein the peak to trough amplitude of said wave-like
or zig-zag pattern is between 4 mm and 15 mm.
7. A container as claimed in any of claims 2 to 6, wherein the ratio between amplitude
and pitch of said wave-like or zig-zag pattern is within the range of 0.10 to 1.5.
8. A container as claimed claim 7, wherein the ratio between amplitude and pitch of said
wave-like or zig-zag pattern is within the range of 0.3 to 0.8.
9. A container as claimed in any preceding claim, wherein said form-interlocking is provided
in the vertical direction.
10. A container as claimed in any preceding claim, wherein said line of weakness substantially
extends within the range of 0 degrees to 35 degrees relative to the direction of a
known loading force, wherein said direction of said known loading force is the vertical
direction.
11. A container as claimed in any preceding claim, wherein said hingeable flap portion
(58,64) is defined by one or more lines of weakness (50-56).
12. A container as claimed in claim 11, wherein said flap portion line or lines of weakness
(50-56) extends from an edge.
13. A container as claimed in any preceding claim, further comprising a second removable
section (26,28).
14. A container as claimed in claim 13, wherein said second removable section (26,28)
is provided in a wall opposite to a side wall comprising said removable section (26,28).
1. Behälter, aufnehmend einen Deckel (68) und eine Basis (34), wobei ein schwenkbarer
Klappenteil (58, 64) des Deckels an einem entfernbaren Abschnitt (26, 28) der Basis
angebracht ist, wobei eine Schwenkbewegung des Klappenteils (58, 64) in einer Richtung,
die eine Komponente orthogonal zu einer Ebene hat, die durch den entfernbaren Abschnitt
(26, 28) definiert ist, eine Trennung des entfernbaren Abschnitts von einem Rest der
Basis bewirkt;
wobei die Basis eine Platte (6, 8) mit einer Schwächungslinie (10-16) aufweist, die
wenigstens teilweise den entfernbaren Abschnitt (26, 28) definiert;
wobei sich der entfernbare Abschnitt (26, 28) von einer Kante (18, 20) der Platte
(6, 8) erstreckt;
dadurch gekennzeichnet, dass der entfernbare Abschnitt (26, 28) mit einem Rest der Platte (6, 8) formschlüssig
ist, derart dass eine In-Ebene-Bewegung des entfernbaren Abschnitts (26, 28) ein Ineinandergreifen
zwischen benachbarten Kanten des entfernbaren Abschnitts und des Rests der Platte
(6, 8) bewirkt.
2. Behälter nach Anspruch 1, wobei die Schwächungslinie (10-16) wellenartig oder zickzack
geformt ist.
3. Behälter nach Anspruch 2, wobei der Abstand zwischen benachbarten Spitzen oder zwischen
benachbarten Mulden des wellenartigen oder zickzack Musters zwischen 15 mm und 150
mm beträgt.
4. Behälter nach Anspruch 3, wobei der Abstand zwischen benachbarten Spitzen oder zwischen
benachbarten Mulden des wellenartigen oder zickzack Musters zwischen 15 mm und 40
mm beträgt.
5. Behälter nach einem der Ansprüche 2, 3 oder 4, wobei die Spitze-zu-Mulde-Amplitude
des wellenartigen oder zickzack Musters zwischen 4 mm und 90 mm beträgt.
6. Behälter nach Anspruch 5, wobei die Spitze-zu-Mulde-Amplitude des wellenartigen oder
zickzack Musters zwischen 4 mm und 15 mm beträgt.
7. Behälter nach irgendeinem der Ansprüche 2 bis 6, wobei das Verhältnis zwischen der
Amplitude und dem Abstandsmaß des wellenartigen oder zickzack Musters innerhalb eines
Bereiches von 0,10 bis 1,5 liegt.
8. Behälter nach Anspruch 7, wobei das Verhältnis zwischen der Amplitude und dem Abstandsmaß
des wellenartigen oder zickzack Musters innerhalb eines Bereiches von 0,3 bis 0,8
liegt.
9. Behälter nach irgendeinem der vorangehenden Ansprüche, wobei die Formschlüssigkeit
in vertikaler Richtung vorgesehen ist.
10. Behälter nach irgendeinem der vorangehenden Ansprüche, wobei die Schwächungslinie
im Wesentlichen innerhalb eines Bereiches von 0 Grad bis 35 Grad relativ zu der Richtung
einer bekannten Belastungskraft verläuft, wobei die Richtung der bekannten Belastungskraft
die vertikale Richtung ist.
11. Behälter nach irgendeinem der vorangehenden Ansprüche, wobei der schwenkbare Klappenteil
(58, 64) durch eine oder mehrere Schwächungslinien (50-56) definiert ist.
12. Behälter nach Anspruch 11, wobei sich die Schwächungslinie oder die Schwächungslinien
(50-56) des Klappenteils von einer Kante erstrecken.
13. Behälter nach irgendeinem der vorangehenden Ansprüche, ferner aufweisend einen zweiten
entfernbaren Abschnitt (26, 28).
14. Behälter nach Anspruch 13, wobei der zweite entfernbare Abschnitt (26, 28) in einer
Wand gegenüberliegend einer den entfernbaren Abschnitt (26, 28) aufweisenden Seitenwand
vorgesehen ist.
1. Conteneur comportant un couvercle (68) et une base (34), une partie de rabat pouvant
être articulée (58, 64) dudit couvercle étant fixée sur une section amovible (26,
28) de ladite base, un mouvement articulé de ladite partie de rabat (58, 64) dans
une direction qui a une composante perpendiculaire à un plan défini par ladite section
amovible (26, 28) provoquant une séparation de ladite section amovible d'un reste
de ladite base ;
la ladite base comportant un panneau (6, 8) avec une ligne de faiblesse (10 à 16)
définissant au moins en partie la section amovible (26, 28) ;
la section amovible (26, 28) s'étendant depuis un bord (18, 20) du panneau (6, 8)
;
caractérisé en ce que ladite section amovible (26, 28) est une forme se bloquant avec un reste dudit panneau
(6, 8) de telle sorte qu'un mouvement dans le plan de ladite section amovible (26,
28) provoque un blocage entre des bords adjacents de ladite section amovible et le
reste du panneau (6, 8).
2. Conteneur selon la revendication 1, dans lequel la ligne de faiblesse (10 à 16) est
d'une forme ondulée ou en zigzag.
3. Conteneur selon la revendication 2, dans lequel l'espacement entre des crêtes adjacentes
ou entre des creux adjacents dudit dessin ondulé ou en zigzag est entre 15 mm et 150
mm.
4. Conteneur selon la revendication 3, dans lequel l'espacement entre des crêtes adjacentes
ou entre des creux adjacents dudit modèle ondulé ou en zigzag est entre 15 mm et 40
mm.
5. Conteneur selon les revendications 2, 3 ou 4, dans lequel l'amplitude de crête à creux
dudit modèle ondulé ou en zigzag est entre 4 mm et 90 mm.
6. Conteneur selon la revendication 5, dans lequel l'amplitude de crête à creux dudit
modèle ondulé ou en zigzag est entre 4 mm et 15 mm.
7. Conteneur selon l'une quelconque des revendications 2 à 6, dans lequel le rapport
entre l'amplitude et le pas dudit modèle ondulé ou en zigzag est dans la plage de
0,10 à 1,5.
8. Conteneur selon la revendication 7, dans lequel le rapport entre l'amplitude et le
pas dudit modèle ondulé ou en zigzag est dans la plage de 0,3 à 0,8.
9. Conteneur selon l'une quelconque des revendications précédentes, dans lequel ledit
blocage de forme est prévu dans la direction verticale.
10. Conteneur selon l'une quelconque des revendications précédentes, dans lequel ladite
ligne de faiblesse s'étend sensiblement dans la plage de 0 degrés à 35 degrés par
rapport à la direction d'une force de chargement connue, ladite direction de ladite
force de chargement connue étant la direction verticale.
11. Conteneur selon l'une quelconque des revendications précédentes, dans lequel ladite
partie de rabat pouvant être articulée (58, 64) est définie par une ou plusieurs lignes
de faiblesse (50 à 56).
12. Conteneur selon la revendication 11, dans lequel ladite ligne de partie de rabat ou
lesdites lignes de faiblesse (50 à 56) s'étendent depuis un bord.
13. Conteneur selon l'une quelconque des revendications précédentes, comportant en outre
une deuxième section amovible (26, 28).
14. Conteneur selon la revendication 13, dans lequel ladite deuxième section amovible
(26, 28) est prévue dans une paroi opposée à une paroi latérale comportant ladite
section amovible (26, 28).
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