[0001] The present invention relates to a module for converting cigarettes into ventilated
cigarettes.
[0002] In general, most cigarette manufacturers produce ventilated cigarettes, which, as
is known, present lateral ventilation holes to enable a certain amount of air to be
drawn in together with the tobacco smoke to both cool it and reduce the harmful substances
contained in it.
[0003] Ventilated cigarettes are normally produced on special-purpose machines featuring,
along a cigarette conveyor line, a series of processing, handling and control stations,
one of which comprises a perforating station featuring mechanical perforating members
or a laser perforating member.
[0004] As such, ventilated cigarettes can only be produced on special-purpose lines, which,
obviously, may also be used for producing non-ventilated cigarettes by simply deactivating
the perforating members, whereas a non-ventilated cigarette production line can only
be converted to produce ventilated cigarettes at the expense of radical alterations.
[0005] This therefore results in a certain degree of rigidity in the design of cigarette
manufacturing systems.
[0006] It is an object of the present invention to overcome the aforementioned drawback.
[0007] According to the present invention, there is provided a module for converting cigarettes
into ventilated cigarettes; characterized in that it comprises a cigarette perforating
unit; an input device for successively feeding the cigarettes to the perforating unit
along a given path; and an output device for the ventilated cigarettes; the input
device comprising a first conveyor in a fixed position along said path, at least one
second conveyor substantially tangent to the first conveyor, and adjusting means for
adjusting the position of the second conveyor about the first conveyor, and for so
positioning the second conveyor as to connect it to the output conveyor of a cigarette
manufacturing machine.
[0008] A non-limiting embodiment of the present invention will be described by way of example
with reference to the accompanying drawings, in which:
Figure 1 shows a side view of a preferred embodiment of the module according to the
present invention;
Figure 2 shows a schematic view of the Figure 1 module connected to a filter-tipped
cigarette manufacturing machine;
Figure 3 shows a schematic view of the Figure 1 module connected to the output of
a plain cigarette manufacturing machine.
[0009] Number 1 in Figure 1 indicates a module for converting non-ventilated, filter-tipped
or plain cigarettes 2 into ventilated cigarettes 2a. Module 1 comprises a single-cigarette
conveyor line 3 extending along a given path P and defined by a perforating unit 4,
the input of which is connected to the output of an input conveyor assembly 5 for
single non-ventilated cigarettes 2, and the output of which is connected to an output
conveyor assembly 6 for single ventilated cigarettes 2a via an assembly 7 for controlling
and rejecting ventilated cigarettes 2a.
[0010] Perforating unit 4 may be of any type, but is preferably a laser perforating unit
of the type described for example in US Patent n. 5,105,833, and comprising a central
drum 8 rotating anticlockwise (in Figure 1) about a substantially horizontal axis
9 perpendicular to the Figure 1 plane. Drum 8 presents a number of peripheral suction
seats 10 equally spaced about axis 9, and each of which partially houses a respective
cigarette 2 and rotates it in known manner about its axis and along a given perforating
arc extending between a loading station 11 interposed between drum 8 and the output
of conveyor assembly 5, and an unloading station 12 interposed between drum 8 and
the input of assembly 7.
[0011] A known laser beam emitter (not shown) provides for forming at least one ring (not
shown) of ventilation holes (not shown) in each cigarette 2 as it travels along the
perforating arc, and so converting cigarette 2 into a ventilated cigarette 2a.
[0012] The output of conveyor assembly 5 and the input of assembly 7 are defined by respective
conveyor rollers 13, 14 rotating the opposite way to, and mounted tangent to the outer
periphery of, drum 8. Roller 13 provides for feeding cigarettes 2 successively into
seats 10 on drum 8, while roller 14 provides for receiving cigarettes 2a at station
12 and transferring them to assembly 7. Assembly 7 comprises a first conveyor roller
15 tangent to roller 14 and for successively feeding cigarettes 2a into engagement
with a pneumatic control station 16; and a second conveyor roller 17 tangent to roller
15 and for unloading any rejected cigarettes into a bin 18.
[0013] In the example shown, output conveyor assembly 6 is defined by a single conveyor
roller 19 tangent to roller 17 and rotating about its axis in the same direction as
roller 15 and drum 8, and in the opposite direction to rollers 14 and 17.
[0014] At its output end, module 1 is normally connected to an output module 20 substantially
similar to those normally provided at the output of cigarette manufacturing machines.
In the example shown, module 20 comprises a conveyor belt 21 of the type described
for example in European Patent n. 627,176, and for receiving a succession of single
cigarettes 2a from roller 19, and transferring them to the input of a bulk conveyor
(not shown).
[0015] In actual use, input conveyor assembly 5 of module 1 is connected to the output conveyor
roller 22 of a cigarette manufacturing assembly 23, so as to define, with assembly
23 and module 20, a line 24 for producing ventilated cigarettes 2a.
[0016] In the example shown in Figure 2, assembly 23 comprises, at its output, a filter
assembly machine 25, of which roller 22 forms the output roller. In the Figure 3 example,
assembly 23 comprises a dual-rod machine 26 for producing plain cigarettes 2; and
a transfer unit 27 presenting output roller 22, and which provides for removing cigarettes
2 from the output beam 28 of machine 26 by means of a pickup device 29 preferably
of the type described in US Patent n. 5,267,577.
[0017] To adapt to the level of roller 22, which may vary from one manufacturing machine
to another, in addition to roller 13 which is fitted to the frame 31 of module 1 with
its axis 30 in a fixed position, input conveyor assembly 5 also comprises a movable
conveyor roller 32 tangent to roller 13 and fitted in rotary manner to one end of
a rocker arm 33 pivoting about axis 30 and which is fixed in position by a known angular
clamping device (not shown). By adjusting the angular position of arm 33 about axis
30, roller 32 may be rotated about the periphery of roller 13 into a position tangent
to the periphery of roller 22.
[0018] According to a variation not shown, in the event roller 22 rotates in the opposite
direction to that shown in Figures 2 and 3, a further conveyor roller (not shown)
is fitted to arm 33 and interposed between rollers 32 and 13, to maintain the Figure
1 rotation direction of drum 8 and, hence, as long a perforating arc as possible about
the drum.
[0019] As such, a line (not shown) for producing non-ventilated cigarettes 2 and featuring
an output module 20 may be converted into a line 24 for producing ventilated cigarettes
2a by simply removing module 20, connecting module 1 to roller 22, and reassembling
module 20 at the output of module 1.
[0020] Obviously, to also render the level of conveyor 21 of output module 20 adjustable,
also roller 19 is to be a movable roller (not shown) similar to roller 32, and is
to be fitted to a rocker arm (not shown) similar to arm 33 and pivoting about the
axis of roller 19.
1. A module (1) for converting cigarettes (2) into ventilated cigarettes (2a); characterized
in that it comprises a cigarette perforating unit (4); an input device (5) for successively
feeding the cigarettes (2) to the perforating unit (4) along a given path (P); and
an output device (6) for the ventilated cigarettes (2a); the input device (5) comprising
a first conveyor (13) in a fixed position along said path (P), at least one second
conveyor (32) substantially tangent to the first conveyor (13), and adjusting means
(33) for adjusting the position of the second conveyor (32) about the first conveyor
(13), and for so positioning the second conveyor (32) as to connect it to the output
conveyor (22) of a cigarette manufacturing machine (25; 26).
2. A module as claimed in Claim 1, characterized in that said first conveyor (13) is
defined by a first conveyor roller (13) rotating about its axis (30) to successively
feed the cigarettes (2) to said perforating unit (4) at a loading station (11); said
second conveyor in turn being defined by a second conveyor roller (32) fitted to said
adjusting means (33) and movable, by said adjusting means (33), along the periphery
of said first roller (13).
3. A module as claimed in Claim 2, characterized in that said adjusting means (33) comprise
a rocker arm (33) pivoting about said axis (30).
4. A module as claimed in Claim 3, characterized in that it also comprises a ventilation
control assembly (7) downstream from said perforating unit (4).
5. A module as claimed in any one of the foregoing Claims, characterized in that said
perforating unit (4) is a laser perforating unit.
6. A line (24) for manufacturing ventilated cigarettes (2a), and comprising a machine
(25)(26) for manufacturing non-ventilated cigarettes (2), and an output module (20)
for a succession of ventilated cigarettes (2a); characterized in that it comprises
a perforating module (1) as claimed in any one of the foregoing Claims; the perforating
module (1) being interposed between the manufacturing machine (25; 26) and said output
module (20).
7. A line as claimed in Claim 6, characterized in that said manufacturing machine (25;
26) presents an output conveyor (22); said adjusting means (33) being so adjusted
as to position said second conveyor (32) of said input device (5) tangent to said
output conveyor (22).