[0001] The present invention refers to a machine which automatically dispenses protective,
separation dividers for groups of bottles and which is intended for bottle packaging
lines.
[0002] Bottle packaging industry has employed numerous systems for preventing the breakage
and damage of bottles caused by their clinking together when being packaged in boxes
intended for containing groups of bottles, as well as by their transport, storage
and distribution.
[0003] The same problem occurs with bottle labels. During transport fortuitous rubbing of
bottles against each other causes the damage of the labels, which renders them unusable.
For this reason this industry has developed systems for protecting packaged bottles.
[0004] Straw hoods slipped on every bottle, for instance, have been employed. Wood shavings
and other materials have also been used as shock-absorbing beds for bottle boxes.
A further arrangement consisted in using inner frames made of cardboard or fibers
that create independent housings in the boxes intended for containing groups of bottles.
[0005] All the above solutions, owing to their complexity, pose serious problems when it
comes to mechanizing the packaging process.
[0006] Other solutions consist in employing analogous procedures to bottle labeling in order
to sheath the bottles with protecting materials, such as corrugated cardboard. Spanish
Patent 2110346, for instance, describes a machine featuring the above characteristics
that manages to solve the problem of mechanizing bottle packaging and also provides
bottle protection. The disadvantage of this type of machines is that they are complex
and costly.
[0007] There exist in the market separation dividers intended to provide the packaging of
groups of bottles with reticular spatial structures capable of lodging the bottles
preventing thereby the damage thereof caused by mutual contact. Among these separation
dividers are those described in Spanish Patents N° 9400980 and N° 9601786, consisting
of an assembly of reticular dividers storable in the form of sheets folded upon themselves.
[0008] The disadvantage of these protective separating units is that they are to be inserted
by hand in the packages of groups of bottles. Therefore, operators have to remove
the sheets from the storage pack, unfold them and insert them in the packaging having
to overcome at the same time the tendency of the separation divider to fold back.
The insertion is hence slow-going and cumbersome.
[0009] The object of this invention in intended to solve the above disadvantages, the said
invention consisting of a continuous operation machine that automates the formation
of the spatial structures for the separation dividers and the dispensing of the said
protective separating units in packaging lines for groups of bottles.
[0010] The machine of the present invention is highly multifunctional and can be easily
adapted to several analogous separation dividers, through the selection of suitable
guiding bodies. Further, it can dispense separation dividers both, in the interior
of boxes, which can be empty of bottles or not, or in a loose condition for further
inserting bottles and thereafter introducing the assembly in boxes or in groups of
bottles that shall subsequently be placed in their corresponding box or packing.
[0011] With the continuous operation of the machine object of the invention what is achieved
is both a high performance as far as the number of separation dividers supplied by
time unit and the low costs in the manufacture and processing of the said dividers
is concerned.
[0012] A practical embodiment of the machine of the invention is described further down
by way of non-limiting example below, there being appended 3 sheets of drawings, in
which Figure 1 is a schematic representation of the travel made by the machine carrying
a separation divider from the moment of removal thereof from the storage pack to the
insertion thereof in the packaging for groups of bottles.
[0013] Figure 2 is a partial perspective view of the machine of the invention that shows
a detail of both the machine's removal mechanism of separation dividers from the storage
pack and the fastening mechanism of the said separation dividers.
[0014] Figure 3 is a lateral view of the removal mechanism of separation dividers from the
storage pack.
[0015] Figure 4 is a detail of the frame expanding mechanism of the machine of the invention.
[0016] Figure 5 is perspective view of a gripping claw in accordance with one the preferred
embodiments of the invention.
[0017] Figure 6 is a perspective view of the machine showing the guiding bodies for the
final alignment of the separation dividers.
[0018] The machine object of the present invention comprises a frame or fixed support (15)
along which endless motor-driven chains (2) move, not shown. On the said endless chains
(2) are arranged the gripping claws (3) for the separation dividers (1), such that
a continuous processing circuit is formed (Fig 1), which circuit ends with the dispensing
of the separation divider (1) spatial structure in the packaging line of the groups
of bottles.
[0019] In order to perform this cycle the machine starts from a reticular-shaped separating
unit that is folded forming a sheet. This sheet, typically made of cardboard, is supplied
to the machine from a storage pack (4).
[0020] The machine of the invention commences its operation by removing, through suitable
means, one separation divider from the storage pack that is thereafter positioned
in the machine's processing circuit. In a preferred embodiment of the invention, for
such purpose it is employed pusher stops (5) that rotate in an endless chain (6) and
push the lower unit located in a storage pack (4).
[0021] The storage pack (4) of separation dividers (1) is provided on the support surface
thereof with an aperture (7) which enables the stops (5) to both reach the level of
the last unit (1) and push it towards the body of the machine of the invention.
[0022] A movable platform (8) which ensures the separation of the separation divider (1)
with respect to the pusher stops (5), as shown in figure 2, in conjunction with a
swinging ramp with counterweight (10), as shown in figure 3, contribute to correctly
positioning the separating unit (1) in the circuit of the machine. The pusher stops
(5) lift the movable platform (8).
[0023] Optionally, in a development of the present invention, a double open strip (11),
shown in figure 3, acts as final stop and positions the separating unit in the starting
position thereof in the circuit associated with the endless chains (2).
[0024] The machine object of the invention is provided with means for opening the claws
(3) such as respective guides (12) that mechanically force them open.
[0025] The claws (3) further carry attached to the jaws thereof point-shaped guiding elements
(13), as shown in figure 2, that perform a first opening of the separating unit laps
so as to allow the claw (3), once opened, to grip only a suitable portion of the unit
(1).
[0026] In another construction of the present invention, the claws (3) have the ends (17)
thereof outwardly bent, as shown in figure 5, which permits an easy reception of the
separation dividers (1). A strip (18) joining the jaws of the claws, maintains their
closure tension, so that whenever the guides (12) are not exerting pressure toward
the aperture of the claws, the strip (17), owing to the elastic inertia thereof, closes
the jaws of the said claw (3).
[0027] The aforesaid claws (3) placed at one of the two sides of the machine are also provided
with guiding means for the separation dividers (1). The said means consists in that
to the claw (3) is attached an angle-shaped elbow (9), see figure 5, which, whenever
the claw (3) grips the separation divider (1), permits the separation of the laps
from the separation divider (1) facilitating the introduction of tips of the guiding
bodies (14a).
[0028] The rotation of the endless chains (2) displaces the separation divider (1), now
gripped by the claws (3) by means of the machine's processing circuit. As shown in
figures 2 and 4 provision is made for stop and guiding bodies (14a, 14b and 14c),
that when brushing against the moving separating unit and thanks to the special shape
of the said stop and guiding bodies (14a, 14b and 14c), the said sheet-shaped separating
unit (1) unfolds until to become a reticular spatial structure, then rotates the laps
thereof from side to side about 180° so as to overcome the tendency to fold back in
the shape of a sheet and, finally, becomes positioned ready for placement in the final
packaging.
[0029] The number, shape and disposition of these guiding and processing members (14a, 14b
and 14c) of the separation dividers (1) are dependant upon the size and consistency
of the separating units.
[0030] Hence, some units (1) require an inverse folding so as to weaken the rigidity of
the structure thereof and avoid that, once properly positioned in place due to their
inertia, they tend to resume their original folded condition, which would hinder their
proper insertion in the box carrying the group of bottles.
[0031] The guiding bodies responsible for the weakening process of the separating unit (1)
structure are shown, in a preferred embodiment of the invention, in figures 2 and
3, and receive numerals 14a and 14b.
[0032] The guiding bodies responsible for the final positioning of the separation dividers
(1), ready now for being dispensed, are shown in figure 4 and all receive numeral
14c.
[0033] Guiding bodies (14a, 14b and 14c) are in a suitable shape for the function of guiding
process and handling required in any given case.
[0034] Provision is made in a preferred embodiment of the invention for the machine to be
adaptable to several sizes and similar types of separation dividers (1). To that effect
one of the sides of the frame (15) is provided with a movable wall (16) that adapts
the capacity of the machine to larger units (1). In the figures appearing in the sheets
of drawings, the said enlargement is shown. In order to adapt the size of the machine,
it suffices to displace the movable wall (16) and to replace the guiding bodies elements
(14a, 14b and 14c) by those suitable for the new type of separating unit (1).
[0035] The processing circuit of the machine of the invention can take place in an automatic
way and can be controlled by a microprocessor that monitors each step and decides
when and whether each separation divider (1) is to be positioned and that controls
both the rotation of the endless chains (2 and 6) and the aperture/closure of the
claws (3).
[0036] The machine of the present invention performs the process with a continuous operation.
The construction thereof is such that it is not necessary to stop the cycle of the
machine in order to perform any of the handling processes of the separating units
(1).
1. Machine which automatically dispenses protective, separation dividers for groups of
bottles and which is intended for bottle packaging lines, characterized in that it comprises a frame (15) along which endless chains (2) move, which endless chains
(2) incorporate gripping claws (3) for the separation dividers (1), forming a continuous
processing circuit of same, and guiding bodies (14a, 14b and 14c) located in the said
frame (15), whose shape is suitable for opening the laps of the said units (1) thereby
forming the particular reticular spatial structure of same, being the said machine
further characterized in that it rotates the said laps in either direction and in that it aligns the said separation dividers (1) in the successive packaging line.
2. Machine which automatically dispenses protective, separation dividers for groups of
bottles and which is intended for bottle packaging lines, according to claim 1, characterized in that it is provided with both removing means for unitary separation dividers (1) from
the storage pack (4) and placement means of such separation dividers in the continuous
circuit.
3. Machine which automatically dispenses protective, separation dividers for groups of
bottles and which is intended for bottle packaging lines, according to the previous
claims, wherein the said removal and placement means consist of pusher stops (5) that
are dragged along by a endless chain (6), and a movable platform (8) in conjunction
with a swinging ramp with counterweight (10).
4. Machine which automatically dispenses protective, separation dividers for groups of
bottles and which is intended for bottle packaging lines, according to the previous
claims, characterized in that it is provided with a double open strip (11) located at the beginning of the processing
circuit.
5. Machine which automatically dispenses protective, separation dividers for groups of
bottles and which is intended for bottle packaging lines, characterized in that it is provided with opening and closing means, such as guides (12), for the gripping
claws (3).
6. Machine which automatically dispenses protective, separation dividers for groups of
bottles and which is intended for bottle packaging lines, according to the previous
claims, characterized in that the said gripping claws (3) have the tips thereof (17) opened outwardly and are provided
with a bent angle (9) on the said claws (3).
7. Machine which automatically dispenses protective, separation dividers for groups of
bottles and which is intended for bottle packaging lines, according to claims 1 to
5, characterized in that attached to the jaws of the said griping claws (3) are guiding elements (13).
8. Machine which automatically dispenses protective, separation dividers for groups of
bottles and which is intended for bottle packaging lines, according to the previous
claims, characterized in that the frame (15) of the machine is provided with a movable side wall(16) for adapting
the width of the machine as well as the number, shape and position of the guiding
bodies (14a, 14b and 14c).
9. Machine which automatically dispenses protective, separation dividers for groups of
bottles and which is intended for bottle packaging lines, according to the previous
claims, characterized in that it incorporates a unit for controlling and monitoring the process that is governed
by a microprocessor.