[0001] This invention relates to a container comprising an outer skeleton and an inner lining
affixed to the outer skeleton, wherein the inner lining is made of plastic material,
in particular composed of a thermoplastic material thermoformed on the outer skeleton.
[0002] The containers for which this invention is intended are, therefore, containers which
overall have the shape of a tray or a tub with a bottom wall, a side wall and an upper
flange, and in which the outer skeleton forms the structural part whilst the plastic
inner lining makes it watertight and, if necessary, acts as a barrier to oxygen.
[0003] In particular, this invention was devised with reference to the prior art type of
containers in which the outer skeleton consists of a paper and cardboard industry
article, that is to say, a cellulose material-based article (paper, cardboard or paperboard),
which comprises a plurality of flaps of material connected to each other, usually
provided with fold lines, and which, starting from a spread out configuration in which
they develop mainly in one plane, may be brought into a three-dimensional configuration
corresponding to the shape of the outer skeleton to be formed, by means of suitable
folds and connections between the various flaps. Despite that, this invention is not
linked to the material of which the outer skeleton is composed.
[0004] At present, containers of this type may belong to various types.
[0005] In the first type the outer skeleton is formed by a single sheet of cardboard or
paperboard which extends continuously on the entire outer surface of the container.
That sheet, before adopting the three-dimensional shape of the skeleton, has a central
zone (that intended to form the bottom wall of the skeleton, surrounded by a main
annular portion of material, intended to form the side wall of the skeleton. During
upward folding of the side wall relative to the bottom wall, in the side wall itself
wrinkled zones are created suitable for compensating for the smaller surface area
deriving from the folding. In many applications, the main annular portion is surrounded
by a further secondary annular portion suitable for forming a perimeter flange of
the container, which develops outward starting from the upper edge of the side wall.
Since the perimeter flange also extends in plan view less than the secondary annular
portion, the wrinkled zones also continue on the annular flange.
[0006] In contrast, in the second prior art type, the outer skeleton comprises a single
sheet of material in which there is a main flap, and a plurality of secondary flaps
which develop outwards from the main flap. The main flap is the one which in the container
is positioned at the bottom wall, whilst the secondary flaps are those which in the
container are positioned at the side wall. Depending on the embodiments, the secondary
flaps may or may not comprise outer projections which, if present, are positioned
at the upper perimeter flange of the container.
[0007] Unlike those of the first type described above, the skeletons of the second type
usually do not have wrinkled zones, and a degree of continuity of the perimeter flange
is obtained exclusively by attempting to draw the edges of the adjacent flaps as near
to each other as possible. Examples of containers which use outer skeletons of the
second type are described in the following documents:
US 3358900,
US 3489331,
US 4046310,
FR 2406522,
US 5253801,
FR 2826938,
FR 2933329,
WO 2012/049005 and
WO 2018/017783.
[0008] However, both of these prior art technologies have several major disadvantages.
[0009] In fact, the containers of the type of interest for this invention are containers
which, in many cases, must allow the packaging of food products in controlled atmosphere
conditions. For that purpose, the inner thermoplastic material is such that it guarantees
preservation of the protective atmosphere for the entire useful like of the food product
and is intended to be coupled, once the product has been inserted into the container,
to an upper protective film with similar features, which is sealed to the inner thermoplastic
material. With both prior art types of containers described above, the sealing is
usually performed at the perimeter flange, but may also extend on the rest of the
free surface of the container (known as Skin packaging).
[0010] However, over the years it was possible to ascertain that the two types of outer
skeleton described above, although able to guarantee the container mechanical stiffness,
at the perimeter flange make operations for sealing the upper protective film very
critical. In fact, at the wrinkled zones or the zones of discontinuity of the skeleton
respectively, the sealing may in many cases prove to be either ineffective (that is
to say, small air passages remain) or in any case weak (that is to say, such as to
yield easily as a result of handling by users).
[0011] In an attempt to overcome this disadvantage, further embodiments were proposed featuring
the fact that, at the perimeter flange, the skeleton comprises a continuous, flat
annular portion.
[0012] In a first example of this type, described for example in patent application
WO 2020/033350 A1, the outer skeleton is obtained from a single sheet of material folded on itself,
and the side wall and the bottom wall are defined by wings of the skeleton which develop
starting from the continuous annular portion (inward or inward from it while the sheet
is in the spread out configuration). A second example of containers in which the skeleton
has a continuous flange is described for example in patent applications
WO 2019/020863 A2 and
WO 1999/067143 A2, and in them the outer skeleton is formed by a plurality of separate sheets, one
of which defines the annular frame at the annular flange, and one of which defines
the skeleton at the bottom wall. The various sheets are fixed to each other by means
of an adhesive, to make the skeleton on which the layer of thermoplastic material
is then thermoformed.
[0013] A further type of containers in which the outer skeleton has a continuous flange
is described in patent application
WO 2022/264022 A1 in the name of this same Applicant. In this case the outer skeleton is formed by
two separate sheets. A first sheet develops at both the entire bottom wall, and the
entire side wall, whilst a second sheet develops at the annular flange and has a series
of wings which are superposed on the first sheet at the side walls. The two sheets
are fixed to each other directly by the layer of thermoplastic material thermoformed
on them.
[0014] In all of these prior art embodiments in which the outer skeleton has a continuous
upper flange, despite developing across the entire side wall at that zone the skeleton
is not continuous but is instead formed by a plurality of parts placed side by side.
[0015] Although all of these prior art types of containers in which the skeleton has a continuous,
flat portion at the annular flange allow resolution of the previous problems linked
to sealing of the final pack, they too are not without disadvantages.
[0016] As is known, the containers formed by an outer skeleton and an inner lining affixed
to the outer skeleton, were devised and developed in order to obtain savings in plastic
material compared with the containers formed exclusively using a thermoformed plastic
material. That was done both to reduce the consumption of plastic in favour of using
more recyclable materials (such as cellulose materials), and to reduce the costs of
the containers.
[0017] Over the years containers were gradually developed and put on sale in which the thicknesses
of the plastic material were gradually reduced, guaranteeing a further saving, the
performance being equal.
[0018] Despite the optimum results already achieved regarding optimisation of the use of
the plastic material, the Applicant realised that over the years in contrast little
or nothing was done regarding optimisation of the use of the material which forms
the outer skeleton (whether a cellulose material or other type of material) and that
consumption of that material is now the main problem when making prior art containers.
[0019] In this context, the technical purpose which forms the basis of this invention is
to make a container comprising an outer skeleton and an inner lining affixed to the
outer skeleton which overcomes the above-mentioned disadvantages. In particular, the
technical purpose of this invention is to make a container comprising an outer skeleton
and an inner lining affixed to the outer skeleton which can be made using a quantity
of material for making the outer skeleton that is less than is required for making
prior art containers.
[0020] It is also the technical purpose of this invention to make a container comprising
an outer skeleton and an inner lining affixed to the outer skeleton which also has
sufficient structural stiffness.
[0021] The technical purpose and the aims indicated are substantially achieved by a container
comprising an outer skeleton and an inner lining affixed to the outer skeleton, as
defined in the independent claim 1. Particular embodiments of this invention are defined
in the corresponding dependent claims.
[0022] Further features and the advantages of this invention will be more apparent from
the detailed description of several preferred, non-limiting embodiments, of a container
comprising an outer skeleton and an inner lining affixed to the outer skeleton illustrated
in the accompanying drawings, in which:
- Figure 1 shows a first sheet which is part of an outer skeleton of a container according
to a first embodiment of this invention;
- Figure 2 shows a second sheet which is part of the container according to the first
embodiment of this invention;
- Figure 3 shows a variant of the first sheet of Figure 1, which is part of a container
according to a second embodiment of this invention;
- Figure 4 shows a variant of the second sheet of Figure 2, which is part of the container
according to the second embodiment of this invention;
- Figure 5 shows the outer skeleton of the container in accordance with the first embodiment
of this invention, formed by joining the first sheet and the second sheet of Figures
1 and 2;
- Figure 6 shows the container in accordance with the first embodiment of this invention,
with an inner lining applied to the outer skeleton of Figure 5.
[0023] With reference to the above-mentioned figures, the reference number 1 denotes in
its entirety a container according to this invention.
[0024] It should be noticed that, for clarity, various elements relating to the assembled
container 1, have been indicated with a broken line even in Figures 1 to 5 which each
show only one or two pieces of the container 1 itself.
[0025] The container 1 comprises an outer skeleton 2 and an inner lining 3 that is internally
affixed to the outer skeleton 2 and that comprises a layer of thermoplastic material,
thermoformed on the outer skeleton 2. Advantageously, the inner lining 3 is formed
by one or more layers of thermoplastic materials.
[0026] In the preferred embodiments the outer skeleton 2 is cellulose material-based, advantageously
made of paper, paperboard or cardboard.
[0027] However, in other embodiments, the outer skeleton 2 may even be made with other materials.
By way of example it may be made of fossil-based plastic, bio-based plastic, natural
plastic, biodegradable or compostable plastic, mixtures of the preceding materials,
aluminium, lignin, or with a multi-layer laminated or coupled material based on one
or more of those previously indicated.
[0028] This being an aspect in itself known to experts in the sector, the features that
the inner lining 3 (the thermoplastic material) must have to allow it to be made to
adhere to the outer skeleton 2, as well as the related thermoforming method will not
be described herein. However, advantageously, the inner lining 3 may consist of fossil-based
plastic, bio-based plastic, natural plastic, biodegradable or compostable plastic,
or mixtures thereof, or of a multi-layer material based on one or more of them. Moreover,
preferably, the inner lining 3 has a thickness of between 10 µm and 200 µm, more preferably
between 10 µm and 100 µm, even more preferably between 40 µm and 60µm.
[0029] As is visible in Figure 6 and as is common for this type of containers, the container
1 has a bottom wall 4 which has an outer perimeter edge 5, a side wall 6 which has
a lower annular edge 7 connected to the outer perimeter edge 5 (the two edges coincide)
and an upper annular edge 8, and an upper annular flange 9 which has an inner annular
edge 10 connected to the upper annular edge 8 of the side wall 6 (the two edges coincide).
Advantageously, as a whole the side wall 6 has a flared shape which widens moving
from the bottom wall 4 towards the upper flange.
[0030] Both the outer skeleton 2 and the inner lining 3 develop across the bottom wall 4,
the side wall 6 and the upper annular flange 9. Moreover, advantageously, the inner
lining 3 develops seamlessly on the bottom wall 4, on the side wall 6 and at least
on part of the upper annular flange 9 (to allow sealing of an upper protective film
at the upper annular flange 9, the inner lining 3 must define at least one band of
material which develops along the entire upper annular edge 8 for at least part of
the width of the upper annular flange 9 (measured perpendicularly to the upper annular
edge 8.
[0031] In accordance with one of the main innovative aspects of this invention, the side
wall 6 of the container 1 comprises a succession of first portions 11 and second portions
12. The first portions 11 and second portions 12 follow one another, alternately,
along the lower annular edge 7 and the upper annular edge 8 and each of them extends
for the entire height of the side wall 6 (from the lower annular edge 7 to the upper
annular edge 8). In other words, each first portion 11 is alongside a second portion
12 and each second portion 12 is alongside a first portion 11.
[0032] Advantageously, the first portions 11, in the aggregate, extend across not more than
two thirds of a total surface area of the side wall 6, preferably across not more
than six tenths, the rest of the side wall 6 being formed by the second portions 12.
Preferably, the first portions 11, in the aggregate, extend across not less than one
quarter of the total surface area of the side wall 6.
[0033] If all of the first portions 11 have the same extent and all of the second portions
12 have the same extent, the same proportions indicated above also apply for the areas
of each first portion 11 and each second portion 12. In some embodiments, such as
those illustrated in the accompanying figures, the first portions 11 and the second
portions 12 all have the same area, as well as the same shape.
[0034] In some embodiments, the first portions 11 are separated from the second portions
12 by an edge which lies in a vertical plane (when the bottom wall 4 is horizontal
- Figure 6), so that each first portion 11 and each second portion 12 have the shape
of an inverted isosceles trapezium. In contrast, in other embodiments, the separating
edges may have different shapes; for example, they may extend both as inclined straight
lines which form an acute angle relative to the outer perimeter edge 5, or as curved
lines or polylines.
[0035] In accordance with a second innovative aspect of this invention, the first portions
11 and the second portions 12 differ due to the fact that the outer skeleton 2 is
present exclusively at the first portions 11.
[0036] In fact, each first portion 11 comprises a first part 13 consisting of the outer
skeleton 2, and a second part 14 consisting of the inner lining 3, whilst each second
portion 12 consists only of the inner lining 3.
[0037] The first part 13 and the second part 14, forming each first portion 11, are coupled
together and each extend from the lower annular edge 7 to the upper annular edge 8
for the entire height of the side wall 6. Similarly, each second portion 12 extends
from the lower annular edge 7 to the upper annular edge 8 for the entire height of
the side wall 6.
[0038] With reference to the outer perimeter edge 5 of the bottom wall 4 (or to the lower
annular edge 7), in it there is a succession of first sections 15 and second sections
16 that follow one another, alternately, along its development. The first sections
15 delimit the bottom of the first portions 11, whilst the second sections 16 delimit
the bottom of the second portions 12. Similarly, with reference to outer upper annular
edge 8 of the side wall 6, in it there is a succession of third sections 19 and fourth
sections 20 that follow one another, alternately, along its development. The third
sections 19 delimit the top of the first portions 11, whilst the fourth sections 20
delimit the top of the second portions 12.
[0039] Preferably the first sections 15 have a straight development.
[0040] In some embodiments, such as that of Figures 1-2 and 5-6, the second sections 16
also have a straight development. In some embodiments the outer perimeter edge 5 has
the shape of a polygon, advantageously a regular polygon. In contrast, in other embodiments,
the second sections 16 may have different shapes, for example arched shapes as in
the embodiment of Figures 3 and 4.
[0041] Advantageously, in some embodiments the inner annular edge 10 of the upper annular
flange 9 is geometrically similar to the outer perimeter edge 5 of the bottom wall
4 (that is to say, the two flat figures defined by the inner annular edge 10 and by
the outer perimeter edge 5 only differ in their dimensions, not in the shape and in
the proportions of the various parts).
[0042] In the preferred embodiments, at the upper annular flange 9 the outer skeleton 2
comprises a continuous, flat annular portion 21 that develops along the entire upper
annular edge 8 of the side wall 6 and to which the inner lining 3 is affixed.
[0043] In some embodiments, at the upper annular flange 9 the outer skeleton 2 comprises
one or more brace portions 22 coupled to the continuous annular portion 21 on the
opposite side relative to the inner lining 3, that is to say, at the lower part of
the upper annular flange 9.
[0044] Whilst the innovative aspects of this invention relate to the shape of the outer
skeleton 2 and, consequently, the shape of the container 1 as a whole at the side
wall 6, regarding how it is made, the outer skeleton 2 may be made in any way suitable
for the purpose, in particular in a similar way to that used for any of the prior
art containers in which the skeleton comprises a continuous, flat annular portion
21 at the upper annular flange 9 (for example in accordance with
WO 2020/033350 A1,
WO 2019/020863 A2,
WO 1999/067143 A2 and
WO 2022/264022 A1).
[0045] In some embodiments, similarly to what is described for example in
WO 2020/033350 A1, the outer skeleton 2 is formed by a single sheet of material folded on itself. In
this case the outer skeleton 2 has alternating thin zones, in which it has a thickness
equal to the thickness of the sheet of material, and thick zones, in which it has
a thickness multiple times the thickness of the sheet of material. Advantageously,
the outer skeleton 2 has one of the thick zones at the entire upper annular flange
9 (which, preferably, comprises on the top the continuous annular portion 21 and,
on the bottom, a plurality of brace portions 22 which entirely cover the continuous
annular portion 21).
[0046] In contrast, in some embodiments, the outer skeleton 2 is formed by two or more coupled
sheets of material. Advantageously, in this case too, the outer skeleton 2 has alternating
thin zones 23, in which it has a thickness equal to the thickness of a single one
of the one or more coupled sheets of material, and thick zones 24, in which it has
a thickness equal to the sum of the thickness of two or more of the one or more coupled
sheets of material. Preferably, the outer skeleton 2 has one of the thick zones 24
at each first portion 11.
[0047] Moreover, advantageously, in this case too, the outer skeleton 2 has one of the thick
zones 24 at the entire upper annular flange 9.
[0048] In some preferred embodiments, such as those illustrated in the accompanying figures,
the outer skeleton 2 comprises a lower sheet 25 and an upper sheet 26. The lower sheet
25 comprises a central flap 27 located at the bottom wall 4, a plurality of first
lateral flaps 28 developing radially from the central flap 27, each at an entire first
portion 11 of the side wall 6, and a plurality of flange flaps 29 each of which is
centrally connected to one of the first lateral flaps 28 and develops principally
transversely from it. In the container 1 the flange flaps 29 following each other
essentially seamlessly along the entire upper annular flange 9.
[0049] Figures 2 and 4 show two variants of a lower sheet 25 intended to form a container
1 in which the side wall 6 comprises four first portions 11 and four second portions
12.
[0050] In turn, the upper sheet 26 in contrast comprises a continuous annular portion 21
that runs along the entire upper annular flange 9, and a plurality of second lateral
flaps 30 connected to the continuous annular portion 21. Each second lateral flap
30 extends at one of the first portions 11 and is coupled to one of the first lateral
flaps 28 at that second portion 12. The coupling can be achieved by means of a glue
interposed between the two sheets, or by means of a heat-activatable lacquer applied
to one of the two sheets 25, 26, or exclusively by means of the inner lining 3 (for
example in accordance with what is described in
WO 2022/264022 A1).
[0051] Advantageously, the number of first lateral flaps 28 and of second lateral flaps
30 is equal to the number of first portions 11.
[0052] Each first lateral flap 28 is coupled to one of the second lateral flaps 30. Therefore,
in accordance with this invention, as can be seen for example in Figure 6, the side
wall 6 of the outer skeleton 2 of the container 1 defines a plurality of windows 31
with height equal to that of the entire side wall 6 at which windows the container
1 is defined only by the inner lining 3. Advantageously, the inner lining 3 is transparent
and, consequently, the second portions 12 are also transparent so as to allow people
to look at the contents of the container 1 without having to open it.
[0053] This invention brings important advantages.
[0054] In fact, thanks to this invention it was possible to make a container comprising
an outer skeleton and an inner lining affixed to the outer skeleton, in which the
quantity of material necessary for making the outer skeleton is less than that is
required for making prior art containers.
[0055] Secondly, despite the use of a smaller quantity of material, the innovative structure
with windows of the side wall of the outer skeleton guarantees the container more
than enough structural stiffness.
[0056] Finally, it should be noticed that this invention is relatively easy to produce and
that even the cost linked to its implementation is not very high.
[0057] The invention described above may be modified and adapted in several ways without
thereby departing from the scope of the inventive concept.
[0058] All details may be substituted with other technically equivalent elements and the
materials used, as well as the shapes and dimensions of the various components, may
vary according to requirements.
1. Container comprising an outer skeleton (2) and an inner lining (3) that is internally
affixed to the outer skeleton (2) and that comprises a layer of thermoplastic material,
wherein:
the container (1) has a bottom wall (4) having an outer perimeter edge (5), a side
wall (6) that has a lower annular edge (7) connected to the outer perimeter edge (5)
and an upper annular edge (8), and an upper annular flange (9) connected to the upper
annular edge (8),
both the outer skeleton (2) and the inner lining (3) develop across the bottom wall
(4), the side wall (6) and the upper annular flange (9);
the side wall (6) comprises a succession of first portions (11) and second portions
(12) that follow one another, alternately, along the lower annular edge (7) and the
upper annular edge (8);
each first portion (11) comprises a first part (13) consisting of the outer skeleton
(2), and a second part (14) consisting of the inner lining (3);
the first part (13) and the second part (14) are coupled together and each extend
from the lower annular edge (7) to the upper annular edge (8) for the entire height
of the side wall (6); and
each second portion (12) consists only of the inner lining (3), and extends from the
lower annular edge (7) to the upper annular edge (8) for the entire height of the
side wall (6).
2. Container according to claim 1 wherein the outer perimeter edge (5) comprises a succession
of first sections (15) and second sections (16) that follow one another, alternately,
along its development, the first sections (15) delimiting the first portions (11)
underneath and the second sections (16) delimiting the second portions (12) underneath.
3. Container according to claim 1, wherein the first sections (15) have a straight development.
4. Container according to claim 2 or 3, wherein the second sections (16) have a straight
development.
5. Container according to any one of claims 2 to 4, wherein the upper annular flange
(9) has an inner annular edge (10) that is connected to the upper annular edge (8)
of the side wall (6) and is geometrically similar to the outer perimeter edge (5)
of the bottom wall (4).
6. Container according to any one of claims 1 to 5, wherein, at the upper annular flange
(9), the outer skeleton (2) comprises a continuous, flat annular portion (21) that
develops along the entire upper annular edge (8) of the side wall (6) and to which
the inner lining (3) is affixed.
7. Container according to claim 6, wherein, at the upper annular flange (9), the outer
skeleton (2) comprises one or more brace portions (22) coupled to the continuous annular
portion (21) on the opposite side relative to the inner lining (3).
8. Container according to any of claims 1 to 7 wherein the outer skeleton (2) is formed
by a single sheet of material folded on itself and has alternating thin zones (23),
in which it has a thickness equal to the thickness of the sheet of material, and thick
zones (24), in which it has thickness multiple times the thickness of the sheet of
material.
9. Container according to any of claims 1 to 7 wherein the outer skeleton (2) is formed
by two or more coupled sheets of material and has alternating thin zones (23), in
which it has a thickness equal to the thickness of a single one of the one or more
coupled sheets of material, and thick zones (24), in which it has a thickness equal
to the sum of the thickness of two or more of the one or more coupled sheets of material.
10. Container according to claim 9 wherein the outer skeleton (2) has one of said thick
zones (24) at each first part (13) of a first portion (11).
11. Container according to claim 8 or 9 wherein the outer skeleton (2) has one of said
thick zones (24) at the entire upper annular flange (9).
12. Container according to any one of claims 9 to 11 wherein:
the outer skeleton (2) comprises a lower sheet (25) and an upper sheet (26);
the lower sheet (25) comprises a central flap (27) located at the bottom wall (4),
a plurality of first lateral flaps (28) developing radially from the central flap
(27), each at an entire first portion (11) of the side wall (6), and a plurality of
flange flaps (29) each of which is centrally connected to one of the first lateral
flaps (28) and develops principally transversely from it, the flange flaps (29) following
each other essentially seamlessly along the entire upper annular flange (9);
the upper sheet (26) comprises a continuous annular portion (21) that runs along the
entire upper annular flange (9) and a plurality of second lateral flaps (30) connected
to the continuous annular portion (21);
each second lateral flap (30) extends at one of the first portions (11) and is coupled
to one of the first lateral flaps (28) at that one of the first portions (11); and
each first lateral flap (28) is coupled to one of the second lateral flaps (30) and
defines with it the first part (13) of one of the first portions (11).
13. Container according to any one of claims 1 to 12 wherein the inner lining (3) is transparent
and wherein the second portions (12) are transparent.
14. Container according to any one of claims 1 to 13 wherein the first portions (11),
in the aggregate, extend across not more than two thirds of a total surface area of
the side wall (6), preferably across not more than six tenths.