(19)
(11) EP 1 935 261 B1

(12) EUROPEAN PATENT SPECIFICATION

(45) Mention of the grant of the patent:
23.06.2010 Bulletin 2010/25

(21) Application number: 07123904.0

(22) Date of filing: 21.12.2007
(51) International Patent Classification (IPC): 
A24D 3/02(2006.01)

(54)

A machine manufacturing filters for tobacco products

Maschine zur Filterherstellung für Tabakprodukte

Machine de fabrication de filtres pour produits du tabac


(84) Designated Contracting States:
AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HU IE IS IT LI LT LU LV MC MT NL PL PT RO SE SI SK TR

(30) Priority: 22.12.2006 IT BO20060874

(43) Date of publication of application:
25.06.2008 Bulletin 2008/26

(73) Proprietor: G.D. S.p.A
40133 Bologna (IT)

(72) Inventors:
  • Eusepi, Ivan
    40013, CASTELMAGGIORE (Bologna) (IT)
  • Turrini, Armando
    40017, SAN GIOVANNI IN PERSICETO (Bologna) (IT)
  • Balletti, Leonardo
    40068, SAN LAZZARO DI SAVENA (Bologna) (IT)

(74) Representative: Ghioni, Carlo Raoul Maria 
c/o Bugnion S.p.A. Via Goito 18
40126 Bologna
40126 Bologna (IT)


(56) References cited: : 
DE-A1-102004 030 171
GB-A- 2 265 298
US-A- 4 511 420
GB-A- 2 066 707
US-A- 3 605 682
US-A1- 2005 096 202
   
       
    Note: Within nine months from the publication of the mention of the grant of the European patent, any person may give notice to the European Patent Office of opposition to the European patent granted. Notice of opposition shall be filed in a written reasoned statement. It shall not be deemed to have been filed until the opposition fee has been paid. (Art. 99(1) European Patent Convention).


    Description


    [0001] The present invention relates to a machine for manufacturing filters applicable to tobacco products, and in particular to cigarettes.

    [0002] Conventionally, the manufacture of cigarette filters involves processing a continuous stream of filter material, such as cellulose acetate, known also as filter tow, drawn from a compacted bale.

    [0003] The stream is fed along a set path through processing stations, where it is first stretched lengthwise and crosswise and then impregnated with plasticizing additives.

    [0004] Customarily, the impregnating step takes place as the stretched material is directed through special devices designed to invest the advancing fibres with a flow of plasticizer, typically triacetin, a substance which at the normal operating temperature and pressure of the devices in question will remain in the liquid state.

    [0005] The fibres are thus sprayed with a flow of liquid consisting in particles of predetermined quantity and size, in such a way that a prescribed quantity of the triacetin will be absorbed.

    [0006] At a subsequent station, the filter material is gathered by shaping means into a continuous bundle of cylindrical appearance, which is then enveloped by degrees in a continuous strip of paper material at a further wrapping station to form a continuous filter rod. Finally, the continuous rod is divided up into single plugs by a rotary cutter device.

    [0007] In prior art filter makers, the aforementioned chemical treatment device comprises a container or bath, located along the path followed by the stream of filter tow and beneath the selfsame stream, holding a predetermined quantity of triacetin supplied from a tank by means of a pump.

    [0008] The bath accommodates a revolving brush partly immersed in the triacetin, which when set in rotation at a normal operating speed will project a flow of liquid droplets at the stream of cellulose acetate.

    [0009] Given that the filters made in the course of each production cycle must present the same filtration properties, the quantity of triacetin absorbed by each filter must remain verifiably constant over time and within prescribed limits.

    [0010] To this end, in conventional machines, the manufactured filters are weighed at predetermined intervals of time (every three or four hours).

    [0011] Since the weight of the corresponding untreated filters is known, as also is the quantity of triacetin consumed, the average quantity of the chemical absorbed by each filter can be calculated.

    [0012] Prior art methods include taking account of the triacetin dispensed by the chemical treatment device but not absorbed by the filter material, using correction coefficients based on previous experience.

    [0013] Such a method has not proven reliable, however, or able to guarantee the production of filters with properties responding to the prescribed limits.

    [0014] An example of a machine manufacturing filters for tobacco products with a liquid plasticizer applicator can be seen in document US 4 511 420.

    [0015] The object of the present invention is to provide a filter maker unaffected by the various drawbacks associated with the prior art as described above.

    [0016] The stated object is realized according to the invention in a machine for manufacturing filters applicable to tobacco products, as characterized in the appended claims.

    [0017] The invention will now be described in detail, by way of example, with the aid of the accompanying drawings, in which:
    • figure 1 shows a machine according to the present invention, manufacturing filters for tobacco products, viewed in a front elevation;
    • figure 2 is an enlarged detail of the machine in figure 1, viewed schematically and in perspective, with certain parts omitted better to illustrate others;
    • figure 3 is an enlarged detail of figure 2, viewed schematically.


    [0018] With reference to figure 1, numeral 1 denotes a machine manufacturing filters for tobacco products, in particular cigarettes, embodied in accordance with the present invention.

    [0019] Whilst the following specification describes a single track filter maker, the elements disclosed are referable equally to a twin track machine.

    [0020] The machine 1 comprises a magazine 2 containing a bale 3 of filter material. A fibrous tow 4 is drawn from the bale 3 and advanced by feed means of conventional type toward a station at which the filter material will be processed.

    [0021] In detail, the filter material passes through a processing station comprising at least one blower device 5 of conventional type, by which the tow 4 is expanded and formed into a continuous stream 6 of predetermined width. In a preferred embodiment, the processing station will comprise three such blower devices 5, ordered along a feed line L as illustrated in figure 1. The processing station further comprises a device 7 for chemical treatment of the filter material, located downstream of the blower devices 5, where the continuous stream 6 aforementioned is taken up and plasticized by the application of a suitable plasticizer fluid.

    [0022] The treated stream 6 is advanced thereafter by feed means 8 toward means 9 by which the tow is formed into a rope or bundle 9a of filter material and caused to advance directly above a web 10 of paper, gummed previously, and finally enveloped by the web 10 in such a way as to fashion a continuous filter rod 11.

    [0023] The rod 11 obtained in this way advances toward a cutter head 12 and is divided transversely into a succession of plugs 13 which are then tallied by a counting device 14, stationed downstream of the cutter head 12 and interlocked to the chemical treatment device 7.

    [0024] More precisely, as illustrated in figure 2, the device 7 comprises a bath 15 consisting in a fixed structure 16 that presents a top portion 16a and a bottom portion 16b.

    [0025] The continuous stream 6 of filter material slides over the top portion 16a, on means of conventional type (not illustrated), following a predetermined feed direction A.

    [0026] The bottom portion 16b of the fixed structure 16 forms a reservoir 17 serving to hold a plasticizer material, preferably a fluid, which is applied by the treatment device 7 to the continuous stream 6 of filter material.

    [0027] The plasticizer fluid includes additives designed to condition the filter material by compacting the constituent fibres stably and thus improving their filtration properties. One component of the fluid, preferably, will be triacetin.

    [0028] The treatment device 7 also comprises means 18, preferably rotary, by which a flow of the above mentioned plasticizer fluid can be generated and directed at the continuous stream 6 of filter material.

    [0029] In the example of figure 2, generating means 18 comprise a revolving brush 19 rotatable about a preferably horizontal axis X disposed substantially perpendicular to the feed direction A followed by the stream 6 of filter material.

    [0030] The revolving brush 19 is placed internally of the reservoir 17 containing the plasticizer fluid, underneath the stream 6 of filter material, and partially immersed in the fluid. With the brush 19 set in rotation, accordingly, the bristles are made to dip repeatedly into the plasticizer fluid and, on emerging, to project droplets of the fluid at the stream 6 of filter material.

    [0031] Also associated with the chemical treatment device 7 is a reservoir 20 holding a supply of the plasticizer and in fluid communication with the aforementioned bath 15.

    [0032] Interposed between the supply reservoir 20 and the bath 15 dispensing the plasticizer is a measuring reservoir 21, to which plasticizer fluid is directed from the supply reservoir 20 by a transfer pump 22.

    [0033] A metering pump 23 located downstream of the measuring reservoir 21 directs the plasticizer fluid from this same reservoir 21 to the bath 15. Numeral 24 denotes means, associated with the measuring reservoir 21, by which to monitor the amount of plasticizer fluid consumed.

    [0034] The device 14 is interlocked to the consumption monitoring means 24, serving to count the number of filter plugs 13 turned out by the machine.

    [0035] As illustrated in figure 3, the aforementioned monitoring means 24 comprise a first, second, third and fourth sensor denoted 25, 26, 27 and 28 respectively, serving to detect the level of fluid in the measuring reservoir 21.

    [0036] The first sensor 25 and the second sensor 26 serve respectively to inhibit and enable the flow of fluid from the supply reservoir 20 to the measuring reservoir 21, whilst the third sensor 27 and the fourth sensor 28 serve respectively to start and stop the counter device 14, which is thus interlocked to these same sensors.

    [0037] Relative to the feed direction A followed by the stream 6, the chemical treatment device 7 comprises a vessel 29, positioned downstream of the bath 15, connected to the measuring reservoir 21 by way of a pipeline 30 and serving to reclaim the plasticizer fluid not absorbed by the stream 6.

    [0038] The vessel 29 and the pipeline 30 constitute means 31 by which to recover the plasticizer fluid.

    [0039] In operation, each production cycle will commence with a certain quantity of plasticizer occupying the bath 15, which must remain constant for the duration of the cycle to ensure that the plugs 13 of filter material produced will present uniform properties; the level is maintained by replenishing the bath from the supply reservoir 20.

    [0040] When the machine is started up, the plasticizer fluid contained in the measuring reservoir 21 will be at the level of the first sensor 25.

    [0041] As filter production begins and the plasticizer fluid is directed at the stream 6 of fibres, the level in the bath 15 will be maintained constant by the addition of new fluid, effected through the agency of the metering pump 23.

    [0042] Fluid is drawn from the measuring reservoir 21 by the metering pump 23, and once the level in the reservoir 21 coincides with that of the third sensor 27, this same sensor will pilot the counter device 14 to begin keeping a tally of the filter plugs 13 turned out.

    [0043] The filter plug count continues until the fluid in the measuring reservoir 21 drops to the level of the fourth sensor 28.

    [0044] At this juncture, the fourth sensor 28 relays a control signal to the counter device 14, which will stop and close the tally of the plugs 13.

    [0045] In this way, information is provided as to the number of filter plugs 13 produced utilizing a given metered quantity of fluid, corresponding to the volume of the measuring reservoir 21 delimited by the two sensors 27 and 28.

    [0046] When the level of the fluid coincides with the position of the second sensor 26, this same sensor generates a signal to activate the transfer pump 22 connected to the supply reservoir 20, which responds by directing fluid into the measuring reservoir 21 until the level reaches the position of the first sensor 25.

    [0047] Thereupon, the first sensor 25 relays a control signal to deactivate the transfer pump 22 and thus shut off the flow of plasticizer fluid to the measuring reservoir 21.

    [0048] At this point, a new counting cycle commences and the sequence of steps described above is repeated.

    [0049] The full cycle repeats for as long as the machine remains in operation, thereby allowing a continuous evaluation of the quantity of fluid dispensed in relation to the number of filter plugs produced.

    [0050] As the impregnated continuous stream 6 of fibrous tow passes beyond the bath 15 of plasticizer fluid, some of the fluid taken up by the fibres will be shed, and drop into the aforementioned recovery vessel 29 lying downstream of the bath 15.

    [0051] The surplus fluid collected in the vessel 29 is returned to the measuring reservoir 21 by way of the relative pipeline 30; consequently, the level of plasticizer fluid internally of the reservoir 21 is also determined in part by the fluid recycled from the recovery vessel 29. Accordingly, when evaluating the amount of fluid consumed per number of filter plugs produced, account is also taken of the surplus fluid not absorbed by the stream 6.

    [0052] It would also be possible to use just two level sensors, piloting the operation of the counter device and the transfer pump simultaneously.

    [0053] The use of four sensors is advantageous in that the risk of the tally being affected by transient phenomena can be avoided.

    [0054] To advantage, the measuring reservoir 21 is equipped with an internal float and the sensors identify the position of the selfsame float, hence the level of the plasticizer fluid, through the agency of a magnetic pickup (or other equivalent device) incorporated into the actual float, so that there is no contact with the plasticizer fluid and the operation of the sensor is also simplified.

    [0055] Moreover, in the event of two continuous streams being processed, or rather where the filter maker is a twin track type of machine, the equipment will include a measuring reservoir for each stream

    [0056] The invention affords important advantages.

    [0057] The adoption of monitoring means associated with the measuring reservoir ensures that the properties of filters turned out by the machine can be evaluated in-line, avoiding the need to weigh the treated product at frequent intervals, while guaranteeing that any defects in production can be detected immediately and thus reducing the number of filters rejected.

    [0058] Also, with the inclusion of the recovery vessel, likewise connected to the measuring reservoir, it becomes possible to account for the quantity of triacetin effectively absorbed by the stream of filter material and therefore eliminate the risk of evaluation errors attributable to the use of empirically determined correction coefficients.


    Claims

    1. A machine manufacturing filters for tobacco products, comprising:

    - feed means (8) advancing at least one continuous stream (6) of filter material along a predetermined path (A);

    - means (9) by which the stream (6) is formed into a continuous bundle (9a) of such filter material;

    - means (100) by which to form a continuous filter rod (11) incorporating the bundle (9a);

    - cutting means (12) by which the rod (11) is divided into discrete filter plugs (13),

    - a chemical treatment device (7) stationed along the predetermined feed path (A) upstream of the means (9) by which the continuous bundle (9a) is formed, equipped with a bath (15) containing a liquid additive, a revolving brush (19) immersed at least partly in the bath (15) and serving to transfer the additive to the stream (6), also a reservoir (20) holding a supply of the additive and connected to the bath (15),

    characterized
    in that the chemical treatment device (7) comprises means (24) by which to monitor the consumption of the additive, and a device (14) interlocked to the consumption monitoring means (24), serving to count the number of filter plugs (13) turned out by the machine; said means (24) monitoring the consumption of the additive comprising a first sensor (25) and a second sensor (26) serving respectively to inhibit and enable the flow of the liquid additive from the supply reservoir (20), also a third sensor (27) and a fourth sensor (28) interposed between the first and second sensors (25, 26), serving respectively to start and stop the counter device (14)
    wherein the chemical treatment device (7) comprises at least one measuring reservoir (21) interposed between the supply reservoir (20) and the bath (15), and the means (24) monitoring consumption of the additive are associated with the measuring reservoir (21).
     
    2. A machine as in claim 1, wherein the monitoring means (24) control the flow of the liquid additive from the supply reservoir (20) to the measuring reservoir (21) through the agency of a transfer pump (22).
     
    3. A machine as in claim 1 or 2, wherein the chemical treatment device (7) is equipped with means (31) by which to recover liquid additive not absorbed by the stream (6) of filter material, comprising a vessel (29) positioned downstream of the bath (15) and a pipeline (30) connecting the selfsame vessel to the measuring reservoir (21).
     
    4. A machine as in claims 1 to 3, comprising feed means (8) by which two continuous streams (6) of filter material are advanced along relative paths, wherein each stream (6) is served by a respective measuring reservoir (21), interposed between the supply reservoir (20) and the bath (15).
     


    Ansprüche

    1. Maschine zur Herstellung von Filtern für Tabakprodukte, Folgendes enthaltend:

    - Zufuhrmittel (8) zum Zuführen zumindest eines Endlosstrangs (6) aus Filtermaterial entlang einem vorgegebenen Pfad (A);

    - Mittel (9), durch die der Strang (6) zu einem endlosen Bündel (9a) aus solchem Filtermaterial geformt wird;

    - Mittel (100), durch die eine Endlosfilterstange (11) geformt wird, in der das Bündel (9a) enthalten ist;

    - Schneidmittel (12), durch welche die Stange (11) in einzelne Filterstopfen (13) zerteilt wird;

    - eine Vorrichtung (7) zur chemischen Behandlung, die entlang des vorgegebenen Zufuhrpfades (A) stromaufwärts vor den Mitteln (9) zum Formen des endlosen Bündels (9a) angeordnet und ausgestattet ist mit einem Bad (15), das einen flüssigen Zusatzstoff enthält, einer rotierenden Bürste (19), die zumindest teilweise in das Bad (15) eingetaucht ist und dazu dient, den Zusatzstoff auf den Strang (6) zu übertragen, sowie einem Vorratsbehälter (20), der einen Vorrat des Zusatzstoffes enthält und mit dem Bad (15) verbunden ist;

    dadurch gekennzeichnet,
    dass die Vorrichtung (7) zur chemischen Behandlung Mittel (24) zur Überwachung des Zusatzstoffverbrauchs sowie eine mit den Verbrauchsüberwachungsmitteln (24) verblockte Vorrichtung (14) beinhaltet, die dazu dient, die von der Maschine hergestellte Anzahl von Filterstopfen (13) zu zählen; wobei die Mittel (24) zur Überwachung des Zusatzstoffverbrauchs einen ersten Sensor (25) und einen zweiten Sensor (26) beinhalten, die dazu dienen, den Durchfluss des flüssigen Zusatzstoffes von dem Vorratsbehälter (20) zu sperren beziehungsweise freizugeben, sowie einen dritten Sensor (27) und einen vierten Sensor (28), die zwischen dem ersten und dem zweiten Sensor (25, 26) angeordnet sind und dazu dienen, die Zählervorrichtung (14) zu starten beziehungsweise zu stoppen, wobei die Vorrichtung (7) zur chemischen Behandlung zumindest einen Messbehälter (21) beinhaltet, der zwischen dem Vorratsbehälter (20) und dem Bad (15) angeordnet ist, und die Mittel (24) zur Überwachung des Zusatzstoffverbrauchs mit dem Messbehälter (21) verbunden sind.
     
    2. Maschine nach Anspruch 1, worin die Überwachungsmittel (24) den Durchfluss des flüssigen Zusatzstoffes vom Vorratsbehälter (20) zum Messbehälter (21) durch die Wirkung einer Förderpumpe (22) steuern.
     
    3. Maschine nach Anspruch 1 oder 2, worin die Vorrichtung (7) zur chemischen Behandlung mit Mitteln (31) zur Rückgewinnung des nicht von dem Strang (6) aus Filtermaterial absorbierten flüssigen Zusatzstoffes ausgestattet ist, welche ein stromabwärts nach dem Bad (15) angeordnetes Gefäß (29) und eine Rohrleitung (30) zur Verbindung dieses Gefäßes mit dem Messbehälter (21) beinhalten.
     
    4. Maschine nach den Ansprüchen 1 bis 3, die Zufuhrmittel (8) zum Zuführen von zwei Endlossträngen (6) aus Filtermaterial entlang entsprechenden Pfaden enthält, worin jeder Strang (6) von einem entsprechenden Messbehälter (21) bedient wird, der zwischen dem Vorratsbehälter (20) und dem Bad (15) angeordnet ist.
     


    Revendications

    1. Une machine de fabrication de filtres pour produits du tabac, comprenant :

    - des moyens d' alimentation (8) faisant avancer au moins un flux continu (6) de matériau filtrant le long d'un parcours (A) prédéfini ;

    - des moyens (9) destinés à former à partir dudit flux (6) un faisceau continu (9a) dudit matériau filtrant ;

    - des moyens (100) destinés à former un bâtonnet-filtre (11) continu incorporant ledit faisceau (9a) ;

    - des moyens de coupe (12) destinés à diviser ledit bâtonnet (11) en bouts-filtres (13) discrets,

    - un dispositif de traitement chimique (7) situé le long du parcours d'alimentation (A) prédéfini en amont des moyens (9) de formation du faisceau continu (9a), et équipé d'un bain (15) contenant un additif liquide, d'une brosse tournante (19) immergée au moins partiellement dans le bain (15) et servant à transférer l'additif au flux (6), ainsi que d'un réservoir (20) contenant une alimentation dudit additif et raccordé au bain (15),

    ladite machine étant caractérisée
    en ce que le dispositif de traitement chimique (7) comprend des moyens (24) destinés à contrôler la consommation de l'additif, et un dispositif (14) asservi aux moyens (24) de contrôle de la consommation et servant à compter le nombre de bouts-filtres (13) produits par la machine ; lesdits moyens (24) de contrôle de la consommation de l'additif comprenant un premier capteur (25) et un deuxième capteur (26) servant respectivement à inhiber et à activer le flux de l'additif liquide depuis le réservoir d'alimentation (20), ainsi qu'un troisième capteur (27) et un quatrième capteur (28) interposés entre les premier et deuxième capteurs (25, 26) et servant respectivement à démarrer et à arrêter le dispositif de comptage (14), où le dispositif de traitement chimique (7) comprend au moins un réservoir de mesure (21) interposé entre le réservoir d'alimentation (20) et le bain (15), et les moyens (24) de contrôle de la consommation de l'additif sont associés au réservoir de mesure (21).
     
    2. La machine selon la revendication 1, caractérisée en ce que les moyens de contrôle (24) commandent le flux de l'additif liquide du réservoir d'alimentation (20) au réservoir de mesure (21) par l'intermédiaire d'une pompe de transfert (22).
     
    3. La machine selon la revendication 1 ou 2, caractérisée en ce que le dispositif de traitement chimique (7) est équipé de moyens (31) destinés à récupérer l'additif liquide non absorbé par le flux (6) de matériau filtrant, comprenant un récipient (29) placé en aval du bain (15) et une conduite (30) raccordant le récipient lui-même au réservoir de mesure (21).
     
    4. La machine selon les revendications de 1 à 3, comprenant des moyens d'alimentation (8) destinés à faire avancer deux flux continus (6) de matériau filtrant le long de parcours correspondants, caractérisée en ce que chaque flux (6) est desservi par un réservoir de mesure (21) respectif, interposé entre le réservoir d' alimentation (20) et le bain (15).
     




    Drawing











    Cited references

    REFERENCES CITED IN THE DESCRIPTION



    This list of references cited by the applicant is for the reader's convenience only. It does not form part of the European patent document. Even though great care has been taken in compiling the references, errors or omissions cannot be excluded and the EPO disclaims all liability in this regard.

    Patent documents cited in the description