[0001] The present invention relates to a multiple-cap package particularly for containers,
such as cans, cups and the like.
[0002] A wide variety of packaging structures made of plastic material is currently used
to clasp and hold together a plurality of cans, boxes or the like which contain products,
either food products, such as beverages and solid or semisolid food, or other kinds
of products, such as lubricating oils and/or greases.
[0003] However, there is the need, especially in the foodstuff sector, of protecting the
upper part of a can or cup in order to make it possible both to protect its upper
part against depositions of impurities following long storage times, transport and
the like handling operations, and to preserve the hygienic and organoleptic characteristics
of the product contained in the cans or cups even after the cans or cups have been
opened.
[0004] Packaging structures of plastic material for containers of products to be marketed
are generally aimed exclusively at solving strictly packaging-related problems, i.e.
at holding together a certain number of containers, which are thus packaged, that
is they constitute a single pack or group for handling and transport purposes. When
no use is made of full wrapping by means of sheets made of welded polyethylene or
the like, one resorts sometimes to cellular or honeycomb coverings designed to be
placed over, and to engage with the top of cans and the like, so as to hold them packaged
together. This type of package is frequently adopted especially for cans of non-alcoholic
beverages.
[0005] Such a package, however, ensures no protection against dirt on the upper surface
of the can once the latter has been removed from the pack or group in which it has
been packaged.
[0006] A real problem also exists in securing hygenic protection to the contents of the
can once it has been opened. This is particularly important in the case of edible
products or even of non-edible easily perishable products.
[0007] Finally, the market increasingly demands cheaper packaging structures which are as
compact as possible, i.e. make it possible to save plastic material and contribute
to mitigate the ecological problems connected to waste disposal and possible recycling.
[0008] The aim of the present invention is to eliminate or substantially reduce the disadvantages
described above by providing a multiple-cap packaging structure for containers, such
as cans, cups and the like, which protects said packaged cans and/or cups against
external agents both during storage and transport and after the removal or separation
of each individual can from a packaged pack or group of containers and even after
said can and/or carton have been opened.
[0009] Another object of the present invention is to provide a packaging structure which
has characteristics of practicality and efficiency features far superior than those
of currently used packages and is relatively simple to manufacture at competitive
costs.
[0010] A further object of the present invention is to provide a packaging machine for automatically
applying a multiple-cap structure to groups of cans or of other sealed containers
which are sequentially moved stepwise at the operating speed of a filling and packaging
apparatus.
[0011] Another object of the present invention is to provide a particularly simple and reliable
packaging machine, suitable to be included in a plant for filling and packaging cans
and can be obtained at low manufacturing costs.
[0012] According to a first aspect of the present invention, there is provided a packaging
structure, particularly for containers such as cans, cups and the like, characterized
in that it comprises a plurality of caps which are connected to one another by means
of at least two breakable connecting portions and can be applied in a snap-together
manner at the top of a respective container, so that the structure is suitable for
clasping and holding together a plurality of containers for their transport and storage,
whereas said caps can be individually removed by tearing them off the structure together
with their respective container and are suitable for acting as removable cover for
the top of said container.
[0013] According to another aspect of the present invention, there is provided a packaging
machine particularly for cans containing beverages, which comprises a supporting structure,
a sliding pathway along which filled and sealed cans are fed and move in sequence
so that their opening end is accessible from outside said sliding pathway, pressing
means which are intended to act on the side of the opening end of the cans moving
along the sliding pathway and arranged to apply in a snap-together manner on each
of said cans a respective cap integral with a planar modular web or in a continuous
strip fed between the pressing means and the cans on the pathway, so that each portion
of web or strip keeps a plurality of cans mutually connected and individually capped
and protected.
[0014] Advantageously, the packaging machine is provided with separator means which are
suitable for acting according to a preset timing in order to separate lengths of web
or strip, each of which includes a preset number of caps already applied to a respective
can.
[0015] Further characteristics and advantages of the invention will become better apparent
from the following detailed description of some embodiments thereof, illustrated with
reference to the accompanying drawings, wherein:
figure 1 is a plan view of a package structure according to the invention;
figure 2 is a side elevation view of the package structure of figure 1;
figure 3 is a partial sectional view on an enlarged scale taken along the line III-III
of figure 1;
figure 4 is a schematic plan view of a first embodiment of a packaging machine according
to the invention, operating in a stepwise manner;
figure 5 is a side elevation view of another embodiment of a continuously-operating
packaging machine according to the invention;
figure 6 is a top view of a strip of caps which can be fed to the packaging machine
of figure 5;
figure 7 is a side or profile view of the length of strip of figure 6;
figure 8 is a front view of a cap-forcing cylinder provided with impressions;
figure 9 is a partly sectional view, taken along the line IX-IX of figure 8;
figure 10 is a schematic front elevation view of a modification of the packaging machine
of figure 5;
figure 11 is a plan view of figure 10;
figure 12 shows a detail of a separating cylinder of the machine of figures 10 and
11;
figure 13 shows a detail of a modification of the separating cylinder; and
figure 14 is a side view, with parts in cross-section, of another separating cylinder.
[0016] In the figures of the drawings, identical or similar parts or components have been
designated by the same reference numerals.
[0017] With reference to figures 1 to 3, a packaging structure for containers such as cans,
cups and the like comprises a plurality of caps 1, each of which is interconnected
to adjacent caps by two or more breakable portions 2. Each portion is arranged in
a bridge-like manner between a pair of caps 1 and has a weakened area 3 which is affected
for example by the presence of at least one notch, hole or similar weakening means
which ensures its being torn off.
[0018] Each cap 1 is constituted by an upper lid-like portion 4 and by a lower collar-shaped
portion 5. The lid-like portion is provided with a central planar part 6 which is
surrounded by an annular depression 7 which is in turn surrounded by a hollow rim
8 arranged to be seated on a raised peripheral rim of the top of a can or tin to be
covered. The rim 8 ends peripherally and downwardly with an inwardly directed portion
9 which acts as a partly undercut abutment element for a good grip against the lateral
wall of the can or tin to be covered.
[0019] The collar-shaped portion 5 constitutes a downward extension of the upper portion
and follows a downwardly flared truncated-cone arrangement in its idle position, i.e.
when not in engagement with a can, whereas it takes a cylindrical configuration, which
adheres tightly to the body of the can or tin in its active position on a can or tin
due to the intense clamping action exerted by the inwardly directed portion 9 against
the container.
[0020] Each collar-shaped portion 5 has, as mentioned above, one or more portions 2 at its
lower edge which protrude in a cantilever manner and are integral with a respective
adjacent cap.
[0021] The annular depression 7 provided in each cap allows a more stable stacking of a
plurality of units or groups of packaged cans or tins to be obtained, since the lower
edge of each can is able to snugly fit in a corresponding depression of an underlying
cap.
[0022] It will be seen that a package structure such as that described above can be applied
in a snap-together manner, even automatically, to groups of tins or cans while being
shipped after the same have been filled with a liquid, such as cans containing non-alcoholic
or alcoholic beverages. In such a case, the package structure according to the invention,
besides conveniently protecting against deposition of dirt during long storage periods,
to transport and weather exposure in general the upper surface used to sip the beverage
from the can, since the outlet of the beverage is provided therein, advantageously
it also acts as hygienic protection, even after the seal of said can has been removed,
to prevent foreign bodies or contaminants from reaching said beverage in it.
[0023] When the user removes a can or tin from a group packaged with the structure according
to the invention, he tears in fact the connecting portion or portions 2 of the cap.
The cap, however, remains inserted in position on the can to act as removable cap
for the can. Thus, the user will thus find a clean upper can surface from which he
can drink, and can keep it clean by placing the cap back on the can for the sipping
if, as often occurs, not all the content has been consumed.
[0024] Figure 4 illustrates an embodiment of a packaging machine according to the invention,
generally designated by the reference numeral 10, which comprises two parallel pathways
12 and 13 above which a rotatable structure with four arms or with a platform-like
structure 14 extends. Said platform 14 can be preset to rotate by steps of a quarter
turn each and to lower and raise every time in order to take from a pathway, for example
the pathway 12, a web or strip of caps which can have the configuration illustrated
in figures 6 and 7, transfer it above the other pathway 13 and force-fit all the caps
present in the web or strip onto the opening end of the same number of cans located
on the pathway 13 below the platform 14.
[0025] To this end, the platform 14 is provided with grip and retention means, generally
designated by the reference numeral 15, for the webs or strips, which are arranged
so as to be angularly offset by 90 or 180 degrees with respect to one another below
the platform. The grip and retention means can for example comprise a plurality of
suckers.
[0026] As will be seen, along the pathway 13, ahead of the platform 14, it is advantageously
possible to provide a gather station, generally designated by a barrier 16, against
which the cans gather or pack in an orderly manner before being forwarded below the
platform 14 to be capped. Each of the pathways 12 and 13 can, if required, be constituted
by a stepping conveyor belt which respectively supplies a web or strip or an ordered
pack or group of cans below the platform 14 according to a preset timing which is
correlated to the partial rotation steps of said platform.
[0027] With reference to figures 5 to 9, a supporting structure 17 is illustrated wherein
a sliding pathway 13 is supported; said pathway is constituted for example by a belt
conveyor. The conveyor belt 13 can slide along a fixed planar bed or on rollers 18
and is designed to supply in sequence a plurality of filled and sealed cans 19 whose
opening end is directed for example upward and can be reached from above.
[0028] An applicator roller 20 is rotatably mounted above the conveyor 13 and its rotation
axis is parallel to the lying plane of the belt 13 and perpendicular to the advancement
direction of said belt. The roller 20 is supported at such a level that its peripheral
surface makes, or almost makes, contact with the opening top or end of the cans 19
passing below it on the conveyor belt 13.
[0029] One or more, for example three, continuous side-by-side strips 22 are fed between
the roller 20 and the cans 19 on the conveyor belt 13, and each strip is formed by
an orderly sequence of caps 23 which are arranged mutually side by side and are held
together by tapered and weakened portions 24 or 24a. The or each strip 12, by passing
between the cans 19 and the roller 20, is pressed against said cans, so that each
cap 17 inserts itself in a snap-together manner on the opening top or end of a respective
underlying can and thus the strip remains rigidly associated with the cans which in
turn are grouped and held together by the strip.
[0030] As shown in figure 5, the applicator roller 20 can be advantageously mounted on a
supporting frame 25 so that it can yield, for example because the frame 25 has an
end pivoted at 26 to the supporting structure 17 and its other end rigidly associated
(with the possibility of performing small sliding movements) with sleeves 27 which
can slide on uprights 28 and are loaded by supporting springs 29, in order to prevent
the strip or strips 16 from being damaged in case of failed or incorrect mating or
centering between the caps 19 and the cans.
[0031] If required, the strip 22 can be guided toward the roller 20 by a guiding cylinder
30 which can be an idle roller.
[0032] A short supporting plane 31 can be advantageously provided at the applicator roller
20 and below the conveyor belt 13 if said conveyor belt runs on rollers 18; said supporting
plane can be fixed, for example if the roller 20 is supported in a yielding manner
so as to move upwards, or can be supported so that it can resiliently yield downwards.
[0033] As illustrated in figures 8 and 9, the lateral surface of the applicator roller 20
can be machined and have a plurality of recesses or seats 33 and 34 for temporary
accommodation of the caps 23 and of the weakened portions 24, respectively, before
and during their application to the cans, so as to ensure a controlled and centered
feeding movement of the strip or strips 22.
[0034] According to a preferred modification, the applicator roller 20 can have a plurality
of lateral centering pins 21 which are angularly distributed in a uniform manner at
its ends and, if required, in one or more intermediate positions thereof; said pins
are designed to engage respective rows of holes in the or each strip 22 for centering
and correct traction of said strip (figure 12).
[0035] Downstream of the applicator roller 20 a separator unit, generally designated by
the reference numeral 35 (figures 10 to 13) can be provided, which is designed to
divide the or each strip 22, once applied and firmly anchored to the cans, into a
plurality of "packs" with two or more cans capped by the same number of caps 23 mutually
connected by one or more tapered portions 24 which can be broken by tearing. The separator
unit 35 can comprise a drum 31 from whose cylindrical surface a plurality of cutting
elements 36 protrude which are mutually angularly spaced according to a preset pitch.
The cutting elements 36 are intended to press downward and tear or cut tapered portions
34 so as to divide each strip 22 into segments comprising a preset number of caps
23 which, together with the respective cans, form a pack.
[0036] If required, the drum 35 can also be provided with longitudinal cutting elements
(not illustrated), i.e. with cutting elements arranged annularly and/or according
to a preset pitch around its peripheral region in order to cut weakened portions 24
like the elements 36.
[0037] Figure 14 is a view of a specific example of separator drum 35 with cutting elements
37 which can be retracted into the drum, for example because they can be actuated
by a respective solenoid 38 which is energized by positioning contacts provided on
a fixed internal cylinder 40.
[0038] The drum 35 is actuated for example by means of a gear actuated by the same source
of motion (not illustrated), for example a gearmotor, which causes the belt 10 to
move forward and the applicator roller 20 to rotate. Furthermore, the drum 35 can
be advantageously supported so that its height can be adjusted (figure 10) by means
of handwheels 42 which are designed to actuate a screw-and-nut device 43 for supporting
said drum.
[0039] By means of a packaging machine such as those described above it is thus possible
to automatically apply a plurality of mutually connected caps to the same number of
cans or other similar containers which advance along a packaging apparatus or line,
so that said cans remain grouped and held together until they are used. The caps are
applied to the cans in a controlled manner in step with the advancement of said cans
without creating problems.
[0040] Detection means can be provided, i.g. microswitches, which can stop the packaging
machine in case of jam and redirect the incoming cans elsewhere, or can stop the entire
packaging apparatus. Thus, it is possible to provide sensors near the sleeves 27,
which generate an alarm signal or stop the machine if the roller 20 is raised above
a certain preset level as a consequence of the caps in the strips 22 not being centered
on the cans.
[0041] The machine described above is susceptible to numerous modifications and variations
within the scope as defined by the following claims.
[0042] Where technical features mentioned in any claim are followed by reference signs,
those reference signs have been included for the sole purpose of increasing the intelligibility
of the claims and accordingly such reference signs do not have any limiting effect
on the scope of each element identified by way of example by such reference signs.
1. Package structure particularly for containers, such as cans and the like, characterized
in that it comprises a plurality of caps which are connected to one another by means
of at least two breakable connecting portions and can be applied in a snap-together
manner at the top of a respective container, so that the structure is suitable for
grouping and holding together a plurality of containers for their transport and storage,
whereas said caps can be individually removed by tearing them off the structure together
with their respective container and are suitable for acting as removable cover for
the top of said container.
2. Package structure according to claim 1, characterized in that said breakable portions
are affected by at least one hole, notch or similar weakening means in order to allow
their separation by tearing.
3. Package structure according to claim 1 or 2, characterized in that each cap comprises
an upper lid-like portion which has a central flat surface surrounded by a depression
which is in turn surrounded by a hollow rim for receiving and engaging the raised
rim of the container and terminates below said raised rim with an undercut portion,
and a collar-shaped portion which constitutes an extension of the undercut portion
and has, at its free edge, at least two breakable portions for connection to adjacent
caps.
4. Machine for packaging cans and the like by means of a package structure according
to any one of the preceding claims, comprising a support, a sliding pathway along
which the filled and sealed cans are fed and move in sequence so that their opening
end can be accessed from outside the sliding pathway, pressure applicator means designed
to act on the side of the opening end of the cans which move along the sliding pathway
and are suitable for applying in a snap-together manner, on each of said cans, a respective
cap included in a planar modular web or in a continuous strip fed between the applicator
means and the cans on the pathway, so that each portion of web or strip keeps a plurality
of cans mutually connected and individually capped and protected.
5. Packaging machine according to claim 4, characterized in that it comprises separator
means which are arranged downstream of said applicator means and are suitable for
acting according to a preset timing in order to separate web or strip portions, each
of which includes a preset number of caps already applied to a respective can.
6. Packaging machine according to claim 4 or 5, characterized in that said pressure applicator
means comprise a structure which can rotate and be raised and lowered and is provided
with arms or with a cantilever platform, grip and retention means carried by said
rotatable structure and distributed thereon in at least two angularly spaced positions,
means for feeding strips or webs of caps arranged on the side opposite to the can
sliding pathway, so that the grip and retention means are suitable for removing at
least one sheet or web delivered by the feeder means, for transferring it above a
plurality of cans on the sliding pathway and for applying it thereon by pressure,
so that each can is forced onto a respective can.
7. Machine according to claim 6, characterized in that said grip and retention means
comprise a plurality of suckers.
8. Machine according to claim 4 or 5, characterized in that said pressure applicator
means comprise at least one roller which is mounted so as to be able to rotate and
is elastically loaded above said sliding pathway in order to press onto said cans
caps which are included in at least one continuous strip.
9. Machine according to claim 8, characterized in that said roller has a plurality of
recesses on its outer surface for accommodating and centering the caps during application
to the cans.
10. Machine according to any one of the preceding claims 5 to 9, characterized in that
said separator means comprise a drum or roller which is rotatably mounted above the
sliding pathway and is provided with longitudinal and/or radial protruding cutting
elements which are suitable for acting according to preset pitches on the weakening,
regions provided between one cap and the other.
11. Machine according to claim 10, characterized in that said protruding elements are
retractable and can be actuated by actuation means.