[0001] The invention relates to the field of single-piece cardboard containers for retail
and transport of products, especially destined to wrap products needing a stiff container,
such as pastries and articles of clothing.
[0002] It is usual, in pastry bakeries, to place ready foodstuffs on cardboard or plastic
trays which are then wrapped around with paper and tied with ribbons which, once in
place, function also as handles for the goods.
[0003] This is obviously a laborious process, and at the end the contents of the package
are not greatly protected by such flimsy wrapping, and are thus liable to be damaged
during transport.
[0004] To overcome this problem, a framework of single strips of cardboard is created around
the tray, passing under it and over it in an arch-shape: subsequent overwrapping with
paper stiffens the structure somewhat, but in essence the only guarantee against damage
is that the paper wrapping will not come into contact with the food. Crushing is still
probable with such a wrapping as the one described above: also problematic are the
facts that the arch shape of the package precludes the possibility of piling one on
top of another for transport, and indeed the shape also leads to possible instability
of the whole tray.
[0005] Cakes and tarts are often packed in single-piece cardboard packages made from a star-shaped
original sheet, having a quadrangular central base and four wings departing one from
each side of the base. Two of the wings, on opposite sides to each other, are provided
with at least one hole at their ends, and are foldable externalwise such as to meet
and constitute a manual handle for the tray. The free ends of the other two wings
have slits through which the handles can be slid freely. Recesses or tabs on the base
of the handle prevent the slitted wings from slipping out.
[0006] Such containers are stronger than the previous-described ones, but also exhibit a
cupola form, which together with the still weak mechanical resistance they present,
render stacking unwise.
[0007] The need to stack these products derives from the fact that they cannot be packed
in layers in a single container due to their perishability, so that the use of a considerable
number of separate containers is unavoidable, and it is preferable that the containers
be stackable.
[0008] Articles of clothing such as trousers, jackets and dressing gowns, present the same
packing requirements. Here, when an article is packed after sale, it is usually inserted
in a paper or plastic carrier bag, where it tends to slide downwards during transport
and become creased and crushed.
[0009] The aim of the invention is thus to provide a packing container which is sufficiently
rigid to offer some degree of crush and impact resistance, in order to overcome the
above-mentioned drawbacks. The invention also aims to be easy and rapid to assemble.
[0010] The container also aims to be stackable, and to offer the possibility of packing
with one hand only, without closing on itself due to its lack of rigidity.
[0011] Further characteristics and advantages of the present invention will better emerge
from the detailed description that follows, of an embodiment of the invention, illustrated
in the form of a non-limiting example in the accompanying drawings, in which:
figure 1 shows a plan view of a single cardboard sheet which is the basis of the invention;
figures 2 and 3 shows a partial plan view of two further embodiments of the sheet
of figure 1;
figure 4 is a perspective view of the sheet of figure 1 during its assembly, for example,
as a pastry container;
figure 5 is a partial perspective view of the sheet of figure 3 during its assembly;
figure 6 is a partial perspective view, with some parts removed and others sectioned
better to evidence others, of the container of figures 1 to 4 in a partially closed
configuration;
figure 7 is a partial perspective view, with some parts removed better to evidence
others, of a detail of one end of the container resulting from the sheet of figure
2;
figure 8 shows in partial perspective view a detail of one end of the container deriving
from the sheet of figures 3 to 5;
figure 9 is a partial perspective view from below of an end of the container during
its closure operation;
figure 10 shows a perspective view of two stacked closed containers;
figure 11 shows a perspective view of a different closed container to that of figure
10;
figure 12 is a perspective view of an open container for articles of clothing;
figure 13 is a perspective view of the container of figure 12 in a closed configuration;
figure 14 is a plan view of a further embodiment of the cardboard sheet;
figure 15 shows in perspective view the container deriving from the sheet of figure
14 and arranged in its pack configuration, ready to be assembled;
figures 16, 17 and 18 are perspective views of the various conformations assumed by
the containers during their assembly, starting from the pack condition of figure 15,
achieve by previously assembling the sheet;
figure 19 is a perspective view of the container with some parts removed better to
evidence others, destined for articles of clothing;
figure 20 shows in plan view a further embodiment of the sheet of figure 14;
figure 21 shows a perspective view of a container deriving from the sheet of figure
20;
figure 22 in a plan view of a further embodiment of the sheet of figure 14.
[0012] With reference to the drawings, 1 denotes a container according to the present invention,
while 2 denotes the single sheet the container 1 originates from.
[0013] The sheet 2 is scored by longitudinal and transversal fold lines 3 and 4 which define
the base 5 of the container on at least one side, the longitudinal walls 6 and the
transversal lateral walls 7.
[0014] The transversal walls 7 each exhibit a stop fluke 8 hinged to the transversal wall
7 by a fold 9. In figure 1 two folds 9 are shown, which are distanced from each other
by a distance equal to the thickness of the sheet 2, for a reason will become evident
hereinbelow. Each fluke 8 exhibits meshing teeth 14 along its free longitudinal side
and parallel to the hinges 9, which meshing teeth 14 will insert in corresponding
seatings 15 in the base 5 when the container 1 is assembled.
[0015] Each seating 15 is obtained by realizing cuts 28 in the base 5, starting from the
through hole 4, such as to generate lower teeth 29 in the transversal walls 7. Consecutive
cuts 30 can be made in the flukes 8, so defining an upper central fluke 31 being a
part of the respective transversal wall 7 as can be seen in figure 1. The height of
the transversal walls 7 at the upper central fluke 31 is equal to the height of the
longitudinal walls 6 and constitute a central support at the transversal walls 7 (see
figure 6). In the embodiment of figure 2 the upper central fluke 31 is absent: in
this case the connecting tabs 12 are formed such that a portion 35 of them is equal
in height and proximal to the folds 13 with the longitudinal walls 6, such as to constitute
a lateral support, as can be seen in figure 7.
[0016] Each longitudinal wall 6 has connecting tabs 12 hinged to it at respective transversal
folds 13 aligned with the transversal folds 4 and a closing flap 10 hinged to it at
a fold 11 parallel to the longitudinal folds 3. Figures 1 and 2 show how the connecting
tabs 12 are arranged on opposite sides of the 7 are arranged on opposite sides of
the transversal walls 7. When the container is assembled, the closing flaps 10 constitute
a cover 33.
[0017] Each closing flap 10 has vertical stiffening flukes 16 hinged to it at transversal
folds 17 aligned with the transversal folds 4 and a C-shaped longitudinal tab 18 hinged
to it at folds 19 parallel to the longitudinal folds 3. The stiffening flukes 16 are
of the same height as the transversal walls 7, such that they rest on the same surface
as the base 5 when the container 1 is closed. The stiffening flukes 16 of a closing
flap 10 are each equipped with a locking and closing tab 21 hinged to it along a transversal
fold 22 parallel to the transversal folds 4. Each locking and closing tab 21 is destined
to be inserted in a corresponding seating 23 inferiorly made in the corresponding
transversal wall 7 by means of cuts 32 made coincidingly with the transversal folds
4. In the figures the closing flaps 10 are wider than the slit they fit into, measured
from the folds 11 and perpendicularly to them. In this way, the closing flap 10 and
the and the slit are partially superposed during the closure of the container 1. For
this reason the vertical stiffening flukes 16 of the lower closing flap 10 are each
equipped with a recess shaped like the seat 23.
[0018] The longitudinal tab 18 connected to the lower closing flap 10 internally defines
a lateral supporting wing 24 and two lateral support wings 25 bilaterally to it. The
longitudinal tabs 18 are destined to be folded with respect to the closing flaps 10
and to be rested one against the other, as illustrated in figures 10 and 11, to create
a carrier handle 20.
[0019] To give greater strength for stacking purposes, the transversal walls 7 have a trapezoid
conformation and are separated from the connecting tabs 12 by cuts 26 defining the
sides 43 of the transversal walls 7 and the internal side 44 of the connecting tabs
12. Each of the connecting tabs 12 has a free side 34, parallel to the side defined
by the cut 26, and at least at these sides is equal to or lower in height than the
transversal walls 7, measuring perpendicularly up from the cut 26. Thus the longitudinal
axis of each connecting tabs 12 is inclined with respect to the longitudinal axis
of the longitudinal walls 6 by an equal angle to the angle of inclination of the cuts
26 with respect to the transversal folds 4. The free sides 34 of the connecting tabs
12 will function as a support for the portions of sheet 2 bordered by the parallel
folds 9 separating the transversal walls 7 and the flukes 8. In the accompanying figures
of the drawings, the larger base of the transversal walls 7 corresponds to the transversal
folds 4, but it is obvious that, if necessary, the smaller base of the transversal
walls 7 can be made at the transversal folds 4 (see figure 11).
[0020] Figure 1 shows how the flukes 8 can be shaped the same as the transversal walls 7,
or instead they can be rectangular and have their longer side equal to the base of
the corresponding transversal walls 7, to which they are hinged.
[0021] In the embodiment of figure 3 the parallel folds 9 are inclined with respect to the
transversal folds 4 and stretch from the top of the base 5 such that the transversal
walls 7 are trapezoid. The flukes 8, on the other hand, are triangular and separated
from the connecting tabs 12 by cuts 26. This conformation enables the connecting tabs
12 and the corresponding flukes 8 to be fixed before sale, and also enables the whole
sheet 2 to be folded to give it a flat shape for transport and stocking (not illustrated
in the figures). When neede for use it is sufficient to distance the longitudinal
tabs 18 from the base 5 in order to open the sheet 2 and thus open the container 1.
In this embodiment the longitudinal walls 6 and the transversal walls 7 provide a
rest surface for the cover 33, as shown in figure 8.
[0022] The sheets 2 of figures 1 and 2 can easily be stacked and transported as shown. The
container made from the sheet 2 of figures 1 or 2 is created by folding the connecting
tabs 12 one towards another. Then the longitudinal walls 6 are folded, one towards
another, up until the connecting tabs 12 are in contact with the transversal folds
4 (see figure 4). The transversal walls 7 are then folded up until they contact with
the external sides of the connecting tabs 12, and the flukes 8 are folded up until
they contact with the internal sides of the connecting tabs 12 (figure 4). Once this
final operation is complete, the meshing teeth 14 are inserted in the respective seatings
15 in order to block the flukes 8, and at the same time the connecting tabs 12 are
gripped between the transversal walls 7 and the flukes 8 (see figure 6). Once the
product has been arranged in the container, the longitudinal tabs 18 are bent externalwise
and the closing flaps 10 internalwise, with the closing flap 10 provided with the
central supporting tab 24 and the support wings 25 below (in figure 6 where the upper
closing flap 10, not yet brought into its closing position, has not been illustrated).
To complete the closure of the container 1, the vertical stiffening flukes 16 are
folded and the locking and closing tabs 21 are inserted into their respective recesses
27 and seats 23 (see figure 9). The locking and closing tabs 21 can be blocked in
position by the product itself.
[0023] After having folded the longitudinal tabs 18 one towards another to create the handle
20, the container 1 is ready to be transported together with the product.
[0024] When more than one container 1 is to be transported, they can be stacked on on top
of another, since they are flat. Their mechanical resistance to stacking is good,
as they are truncoconical. Further to the stiffening flukes 16, the cover 33 also
rests on the transversal walls 7 over their entire length (see figure 8), or over
part of them (see figure 6 where the cover 33 rests centrally on the upper upper central
fluke 31, and also figure 7 where the cover 33 rests laterally on the portions 35).
In the embodiment of figure 8, the cover 33 rests on the transversal walls 7 for all
of their length, and their stiffness is guaranteed by the rigid connection with the
longitudinal walls 6. In the embodiments of figures 6 and 7, on the other hand, the
rigidity of the transversal walls 7 is guaranteed by their triple thickness aas they
are constituted, as can be seen in the background of figure 4, by the transversal
walls 7, the connecting tabs 12 and the flukes 8.
[0025] The presence of the the central supporting tab 24 and the support wings 25 increases
the rigidity and resistance of the cnetral part of the cover 33 constituted by the
closing flap 10, and allows a product not resting on the transversal walls 7 to be
arranged on it.
[0026] To increase the container's 1 practicality, especially in cases where (see figure
4) it constitutes a package for pastry products 46, the folds 11 can be made as weakening
lines, such that when the container is opened the closing flaps 10 can be easily taken
away, thus avoiding the generation of irregular edges. The container 1 opened thus
can be directly used as a shop display container 1.
[0027] Figure 12 shows the container 1 employed as a package for clothes 37. In this case
the closing flaps 10 do not exhibit longitudinal tabs 18 hinged to them at the folds
19. Obviously the closed container 1 (see figure 13) does not have a handle 20.
[0028] The container 1 allows for considerable economies from the production point of view,
since the sheet 2 is rectangular and waste is therefore minimal. in particular, the
maximum size of the containers 1 is constituted by the locking and closing tab 21
and the meshing teeth 14 on one side and the closing flap 10 on the other side. Figures
1 and 2 show how the longitudinal tabs 18 are made from the closing flap 10 but do
not exceed them in length.
[0029] Figure 14 shows an embodiment in which the cuts 26 are inclined with respect to the
transversal dimension of the sheet 2, with the sides 43 thus forming an angle alpha
which is greater than 90 degrees with the transversal fold 4, and the sides 44 of
the connecting tabs 12 form an angle beta in addition to alpha with the fold 13.
[0030] It is thus evident how each of the transversal walls 7 and each of the connecting
tabs 12 exhibit an isosceles trapezoid shape; the smaller base of the transversal
walls 7 coinciding with the transversal fold 4, through which they are hinged to the
base 5, and the larger base of the connecting tabs 12 coinciding with the fold 13.
[0031] The transversal walls 7 each exhibit two folds 9 inclined with respect to the transversal
folds 4 but with an opposite inclination with respect to the cuts 26 and thus to the
sides 43. The folds 9 start from the top of the base 5 and develop in the direction
of the longer base of the transversal wall 7. They define the flukes 8 bilaterally
to the transversal walls 7.
[0032] The flukes 8 are triangular and are divided by the connecting tabs 12 by the cuts
26. This conformation, together with the ones described above referring to this part
of the sheet 2, enable the connecting tabs 12 and the flukes 8 to be fixed before
the container is presented for sale, with it also being possible to fold the whole
sheet 2 until it assumes a flat pack form, as shown in figure 15, for transport and
stocking purposes, which can speedily be assembled into a container 1 when needed.
[0033] In particular, each connecting tab 12 is fixed to a transversal wall 7 with its side
44 facing on to the longer free base of the transversal wall 7: since the cuts 26
are inlined, and the sides 30 of the transversal wall 7 form an angle alpha which
is greater than 90 degrees with the transversal fold 4, and the sides 44 of the connecting
tabs 12 form an angle beta supplementary to alpha with the fold 13, the longitudinal
walls 6 will form an angle A equal to alpha with the base 5. Further, the inclination
of the two folds 9 is such as to permit, once each connecting tab 12 has been connected
with a nearby fluke 8, a pack folding of the sheet 2 with each of the transversal
walls 7 interposed between the base 5 and the fluke 8 and the connecting tabs 12 all
covered by the longitudinal walls 6.
[0034] With particular reference to figures 20, 21 and 22, one only of the two longitudinal
walls 6 exhibits a closing flap 10, hinged to it at a fold 11 parallel to the longitudinal
folds 3. When the container 1 is mounted the closing flap 10 constitutes a cover 33,
as can be seen in figure 22.
[0035] With reference to figure 20, the stiffening flukes 16 are two in number and are arranged
at opposite sides of the free end part of the closing flap 10.
[0036] They can be limited in size, as indicated by the broken lines 45, or can exhinit
an extension inclined towards the fold 11, which defines a further portion of fluke
16'. With reference to figure 22, there is only one stiffening fluke 16, connected
to the free side of the closing flap 10, opposite and parallel to the fold 11. The
stiffening fluke 16 is however hinged along a fold denoted by 17.
[0037] Each seat 23 for a locking and closing tab 21 is made inferiorly in a corresponding
transversal wall 7 (figures 14 and 21) when the locking and closing flap 21 are two
in number and arranged on opposite sides of the closing flap 10. Alternatively, it
can be made inferiorly in the corresponding longitudinal wall 6, opposite to the other
wall 6 to which the closing flap 10 is hinged.
[0038] With reference to figure 14, the closing flap 10 is provided at its central zone
(denoted by C) with three distinct folds, denoted by 19, 19' and 19''. The hinges
are parallel and externally define two equal portions 10' and 10'' of the closing
flap 10, and internally two longitudinal tabs 18. The longitudinal tabs 18 are also
provided with closed recesses 38 defining corresponding apertures 39.
[0039] In this case the portions 10'' of the closing flap 10 not hinged to the longitudinal
wall 6 bilaterally exhibits vertical stiffening flukes 16 hinged to them along respective
transversal folds 17.
[0040] The vertical stiffening flukes 16, measured perpendicularly to the respective folds
17, are equal in size to the transversal dimension of the longitudinal walls 6 and
the transversal walls 7. Further, the closing flap 10 has a longitudinal size L and
a transversal size T, measured between folds 19 and 19'', which are equal to the aperture
size of the container 1 when assembled.
[0041] The longitudinal tabs 18 will be superposed one on another, folding along folds 19,
19' and 19'', and will be fixed in such a way as to generate (in cooperation with
the aperture 39) a carrying handle.
[0042] Once the longitudinal tabs 18 have been fixed to each other, the portion 10'' of
the closing flap 10 can be folded about the fold 19'' up until it is superposed on
the other portion 10'. Then the two portions 10' and 10'' are folded on the fold 11
and are supporposed on the transversal walls 7 and the longitudinal wall 6 already
arranged as above. During this operation the stiffening flukes 16 are also folded,
together with their locking and closing tabs 21 towards the portion 10'' of the closing
flap 10 such as to be interposed between the closing flap 10 and the longitudinal
wall 6, as is shown in figure 15 by a broken line. In this way the container 1 is
disposed as in figure 15, ready to be used and mounted according to the phases illustrated
in figures 16, 17 and 18. After having fixed the connecting tabs 12 on the flukes
8, the longitudinal tabs 18 to each other, and afer having folding the sheet 2 in
to its pack configuration (figure 15), as described above, the container is obtained
by raising the closing flap 10 in the direction of arrow F1 of figure 15, and folding
the transversal walls 7 upwards according to arrows F2 of figure 16, which transversal
walls 7 draw the connecting tabs 12 with them, pushing the longitudinal walls 6 and
forcing them to be arranged vertically by folding in a direction according to arrows
F3. Once the conformation in figure 17 has been achieved, a meshing tooth 14 is folded
internalwise of the container 1 and according to arrows F4. The meshing tooth 14 is
provided on the transversal wall 7 at fold 41, and constitutes when parallel to the
base 5 a stiffening element for said transversal wall 7. Then the portion 10'' of
the closing flap 10 is folded away from the other portion 10' according to the direction
indicated by arrow F5 in figure 16, and thereafter all of the closing flap 10 is folded
about fold 11 10 towards the transversal wall 7 and according to the direction indicated
by arrow F6, up until the container is closed as illustrated in figure 18, the closing
flap 10 striking against a longitudinal tab 31 provided on the longitudinal wall 6
(and hinged to it along fold 42) opposite to the longitudinal wall 6 the closing flap
10 is hinged to. Once again, the longitudinal tab 31 constitutes a stiffening element
for the longitudinal wall 6. Figure 18 also illustrates the blocking phase of the
cover 33, obtained through the stiffening flukes 16 with the respective locking and
closing tabs 21, which are folded according to the direction of arrows F7 and introduced
into the corresponding seats 23, as illustrated in figure 19.
[0043] Figure 21 shows a further embodiment of the container 1 where the handle is obtained
through a manual grip 36 constituted for example by a tape applied directly on the
closing flap 10 of the container 1.
[0044] Figure 19 shows the container used as a package for clothes 37.
[0045] The solution described herein clearly achieves the set aims. The special conformation
of the closing flap 10 permits an operative in a baker's shop to open the container
on three sides, while the pack conformation possibility of the sheet 2 enables the
container to be mounted quickly and easily when it is needed.
1. A packing container of the type constituted by a single sheet (2) having a plurality
of longitudinal folds (3) and transversal folds (4) defining at least a base (5),
longitudinal walls (6) and transversal walls (7) of the container (1) when mounted,
characterised in that the longitudinal walls (6) are bilaterally provided with connecting
tabs (12) transversally hinged to the longitudinal walls (6) and arranged bilaterally
to the transversal walls (7), said connecting tabs (12) being separated from the longitudinal
walls (6) by cuts (26), and being destined to cooperate with the longitudinal walls
(6) when the container (1) is assembled, at least one of the longitudinal walls (6)
being provided with a closing flap (10) constituting, when the container (1) is closed,
a cover (33) of the container (1), and exhibiting, on at least one free edge, and
hinged to the free edge along a respective second fold (17), at least one vertical
stiffening fluke (16) provided with at least one locking and closing tab (21) hinged
to the stiffening fluke (16) along a respective third fold (22), said stiffening fluke
(16) being destined to insert in a seat (23) made inferiorly in the transversal wall
(7) or in the longitudinal wall (6).
2. A container as in claim 1, characterised in that the transversal walls (7) are each
provided with a fluke (8) hinged to them at a fourth, transversal, fold (9) and the
longitudinal walls (6) are provided with closing flaps (10) parallel to the longitudinal
walls (6), and hinged to them along first longitudinal folds (11), and are further
provided with connecting tabs (12) hinged to them at fifth transversal folds (13);
each of the flukes (8) being provided, along a free longitudinal side, with at least
one meshing tooth (14) destined to be inserted and blocked in a respective seating
(15) on the base (5) after the connecting tabs (12) of each longitudinal wall (6)
have been folded one towards the others, after the transversal walls (7) and the longitudinal
walls (6) have been fold one towards the others up until the transversal walls (7)
have been brought into contact with the external sides of the connecting tabs (12)
and after the flukes (8) have been folded up until they contact the internal and free
side of the connecting tabs (12); the closing flaps (10) bilaterally exhibiting vertical
stiffening flukes (16), which are hinged to the closing flaps (10) along transversal
folds (17) and which are destined to cover the transversal walls (7) externally; at
least two of the vertical stiffening flukes (16) being provided with locking and closing
tabs (21) hinged to them along the third transversal folds (22) and destined to be
inserted in seats (23) made inferiorly in the transversal walls (7).
3. A container as in claim 2, characterised in that the closing flaps (10) each exhibit
a width which is such that they partially overlap during assembly of the container
(1) and that they exhibit c-shaped longitudinal tabs (18) on their free longitudinal
sides, which tabs (18) are hinged to them along sixth folds (19) and create, when
the container (1) is mounted, a handle (20); a first closing flap (10) being destined,
when the container is mounted, to be partially arranged below a second closing flap
(10), said first closing flap (10) exhibiting a central supporting tab (24) and two
support wings (25) for supporting the second closing flap (10), defined by the longitudinal
tab (18); the second closing flap (10) being provided with vertical stiffening flukes
(16) equipped with the locking and closing tabs (21).
4. A container as in claim 1, characterised in that each of the transversal walls (7)
has an isosceles trapezoid conformation and is separated from each of the connecting
tabs (12) by a cut (26) forming and angle (alpha) with a contiguous transversal wall
(7); each of the connecting tabs (12) being of a height, measured perpendicularly
to the cut (26), which is not greater than a height of the transversal walls (7) and
permitting the longitudinal walls (6) to form, with the base (5) when the container
(1) is assembled, an angle (alpha) equal to a base of a pyramidal conformation of
the transversal walls (7), the vertical stiffening flukes (16) being of a size measured
perpendicularly to the folds (17) which is equal to the transversal size of the longitudinal
walls (6) and the transversal walls (7) and being of a size, measured perpendicularly
to the folds (17), which is equal to a transversal size of the longitudinal walls
(6) and the transversal walls (7).
5. A container as in claim 2, characterised in that when the container (1) is mounted,
the external vertical stiffening flukes (16) each exhibit a locking and closing tab
(21), and the internal vertical stiffening flukes (16) each exhibit a recess (27)
corresponding to the seating (23) of the transversal wall (7).
6. A container as in claim 2, characterised in that the flukes (8) have consecutive cuts
(30) defining corresponding upper longitudinal tabs (31) which are an integral part
of the transversal walls (7) and which constituted, when the container (1) is mounted,
a central support element for the cover (33).
7. A container as in claim 2, characterised in that each of the connecting tabs (12)
exhibits, in proximity of the fourth folds (13), a portion (35) being of a same height
as the longitudinal walls (6), which portion (35) constitutes, when the container
is mounted, a lateral support element for the cover (33).
8. A container as in claim 2, characterised in that the fourth folds (9) are inclined
with respect to the transversal folds (4) and start from a top of the base (5), the
inclination of the second folds (9) being such as to permit of a rigid connection
of each connecting tab (12) with its nearby fluke (8) and a pack-folding of the sheet
(2) with each of the transversal walls (7) being interposed between a lower base (5)
and the fluke (8) and the upper connecting tabs (12) and reciprocally rigidly connected
and covered by the longitudinal walls (6).
9. A container as in claim 1, characterised in that the first fold (11) is a perforated
line (11a) aimed at permitting of removing a portion from the flap (10), leaving a
linear torn edge.
10. A container as in claim 1, characterised in that the closing flap (10) has, at a central
zone (C), a manual handle (36) for the mounted container, which is directly applicable
on the closing flap (10).
11. A container as in claim 1, characterised in that the closing flap (10) has at its
central zone (C) three distinct fold lines (19, 19' and 19''), parallel to each other
and defining externally two equal portions (10', 10'') of the closing flap (10) and
internally two longitudinal tabs (18) both provided with closed recesses (38) defining
corresponding apertures (39) and destined one to be superposed on another, by folding
along the folds (19, 19' and 19''), and fixed among themselves in such a way as to
create, when the container is mounted and in cooperation with the apertures (39),
a handle (20); the portion (10'') of the closing flap (10) which is not hinged to
the longitudinal walls (6) exhibiting on at least one free edge and hinged to it along
a fold (17), at least one vertical stiffening fluke (16) provided with at least one
locking and closing tab (21) hinged to it along a third fold (22) and destined to
be inserted in at least one seat (23) made inferiorly in the transversal wall (7)
or in the longitudinal wall (6).
12. A container as in claim 11, characterised in that the portion (10'') of the closing
flap (10) not hinged to the longitudinal wall (6) bilaterally exhibits vertical stiffening
flukes (16) hinged to it along folds (17) and destined, when the container (1) is
mounted, to cover the transversal walls (7) partially and externally, the vertical
stiffening flukes (16) being provided with locking and closing tabs (21) hinged to
them along third transversal folds (22) and destined to be inserted in seats (23)
made inferiorly in the transversal walls (7).
13. A container as in claim 11, characterised in that the closing flap (10) exhibits longitudinal
dimensions (L) and transversal dimensions (T), which transversal dimensions (T) are
calculated to be less than a tract running between the folds (19 and 19'), and equal
to the dimensions of the aperture in the mounted container (1).
14. A container as in claim 1, characterised in that each of the transversal walls (7)
and each of the connecting tabs (12) have an isosceles trapezoid shape, the transversal
walls (7) having a smaller base which coincides with the transversal fold (4) by which
they are hinged to the base (5), and the connecting tabs (12) having a greater base
which coincides with the fifth fold (13) by which they are hinged to the longitudinal
walls (6); the cuts (26) defining the sides (43) of the transversal walls (7) and
the sides (34) of the connecting tabs (12), the sides (43) forming an angle (alpha)
which is greater than 90 degrees with the transversal fold (4) and the sides (34)
forming an angle (beta) which is supplementary to angle (alpha) with the fifth fold
(13) in such a way that when the container is assembled, with each of the connecting
tabs (12) fixed to a respective transversal wall (7) with its side (34) along the
free larger base of the transversal wall (7), the longitudinal walls (6) form an angle
(A) equal to angle (alpha) with the base (5).
15. A container as in claim 1, characterised in that each of the transversal walls (7)
exhibits two folds (9) which are inclined with respect to the transversal folds (4),
with an inclination which is opposite to the inclination of the sides (43), starting
from the top of the base (5) and going towards the larger base and defining, bilaterally
to the transversal wall (7), a pair of flukes (8), the inclination of the fourth folds
(9) being such as to permit, once each connecting tab (12) has been rigidly connected
to a nearby fluke (8), a pack-folding of the sheet (2), with each of the transversal
walls (7) being interposed betweeen the lower base (5) and the flukes (8) and the
connecting tabs (12) all covered by the longitudinal walls (6), each of the transversal
walls (7) exhibiting, at a free larger base, a tab (40) hinged to the transversal
wall (7) by a fold (41), said tab (40) forming, when the container is mounted and
the tab (40) is folded internalwise of the container (1), a structural stiffening
element for the transversal wall (7).
16. A container as in claim 1, characterised in that the longitudinal wall (6) opposite
to the longitudinal wall (6) to which the closing flap is hinged (10) is provided
with a longitudinal tab (31) hinged to it along a fold (42), the tab (31) constituting,
when the container is mounted and after the tab (31) has been folded internalwise
of the container (1), a stiffening element for the longitudinal wall (6).