EP1403186B1 - Drehtischfüllmaschine - Google Patents

Drehtischfüllmaschine Download PDF

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Publication number
EP1403186B1
EP1403186B1 EP02425579A EP02425579A EP1403186B1 EP 1403186 B1 EP1403186 B1 EP 1403186B1 EP 02425579 A EP02425579 A EP 02425579A EP 02425579 A EP02425579 A EP 02425579A EP 1403186 B1 EP1403186 B1 EP 1403186B1
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EP
European Patent Office
Prior art keywords
product
inlet
mouths
outlet
conduit
Prior art date
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Expired - Lifetime
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EP02425579A
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English (en)
French (fr)
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EP1403186A1 (de
Inventor
Ivanoe Falzoni
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Costruzioni Tecniche Costec Srl
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Costruzioni Tecniche Costec Srl
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Priority to AT02425579T priority Critical patent/ATE294739T1/de
Priority to ES02425579T priority patent/ES2241980T3/es
Priority to DE60204019T priority patent/DE60204019T2/de
Priority to EP02425579A priority patent/EP1403186B1/de
Publication of EP1403186A1 publication Critical patent/EP1403186A1/de
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Publication of EP1403186B1 publication Critical patent/EP1403186B1/de
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B63/00Auxiliary devices, not otherwise provided for, for operating on articles or materials to be packaged
    • B65B63/08Auxiliary devices, not otherwise provided for, for operating on articles or materials to be packaged for heating or cooling articles or materials to facilitate packaging
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B39/00Nozzles, funnels or guides for introducing articles or materials into containers or wrappers
    • B65B39/001Nozzles, funnels or guides for introducing articles or materials into containers or wrappers with flow cut-off means, e.g. valves
    • B65B39/004Nozzles, funnels or guides for introducing articles or materials into containers or wrappers with flow cut-off means, e.g. valves moving linearly
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B43/00Forming, feeding, opening or setting-up containers or receptacles in association with packaging
    • B65B43/42Feeding or positioning bags, boxes, or cartons in the distended, opened, or set-up state; Feeding preformed rigid containers, e.g. tins, capsules, glass tubes, glasses, to the packaging position; Locating containers or receptacles at the filling position; Supporting containers or receptacles during the filling operation
    • B65B43/50Feeding or positioning bags, boxes, or cartons in the distended, opened, or set-up state; Feeding preformed rigid containers, e.g. tins, capsules, glass tubes, glasses, to the packaging position; Locating containers or receptacles at the filling position; Supporting containers or receptacles during the filling operation using rotary tables or turrets

Definitions

  • the present invention relates to a rotary filler machine comprising the characteristics expressed in the preamble to claim 1.
  • the present invention is in particular destined to be employed in sectors in which the product to be inserted in the appropriate containers has such characteristics as to be subject to separation of the substances that compose it, with the heavier ones settling towards the bottom.
  • products of this kind are substantially all those products that are solid at ambient temperature, and that are packaged at higher than ambient temperature, such that they are in the liquid state.
  • Products of this kind are for instance stick deodorants, degreasing hand cleaner paste and stick glue.
  • the present invention can nonetheless be similarly applied also to fill containers with any other liquid product, whether or not it has the problem of the separation of the substances composing it (for instance, fruit juices).
  • the present invention is advantageously applicable in particular to weight-based rotary filler machines, i.e. machines in which the quantity of product inserted in each container is determined according to the weight of the product.
  • Today's technology provides for the use of rotary or linear filler machines.
  • Rotary machines are constituted by a fixed support structure whereon is pivotally engaged a rotary structure that supports a first carrousel and a second superposed carrousel.
  • the first carrousel peripherally bears a plurality of housing plates for the containers to be filled, whilst the second carrousels bears a plurality of filling devices, each of which is positioned above one of the plates to fill the related container.
  • the filling devices are fed from an upper tank integral with the rotating structure, which contains the product that may be kept in the liquid state by means of appropriate heating elements.
  • Rotary machines allow for the continuous filling of the containers, but they have the drawback that they are unable to keep the product always with a homogeneous composition, because the product itself tends to settle inside the tank, as well as in the conduits that join the tank to the filling devices.
  • Linear machines on the other hand, have one or more filling devices positioned in correspondence with a work station identified along a rectilinear path of advance of the containers
  • the product is fed to the filling devices always correctly mixed, directly from the machines that prepared it.
  • the filling operation cannot be conducted continuously, but requires three successive steps: a step of loading the containers underneath the filling devices, a step of filling the containers with the products, and a step of removing the full containers.
  • the technical task constituting the basis for the present invention is to provide a rotary filler machine that overcomes the aforementioned drawbacks.
  • a technical task of the present invention is to obtain a filler machine that allows to have a continuous filling of the containers.
  • Another technical task of the present invention is to provide a rotary filler machine that assures the ability of maintaining the product always with a homogeneous composition.
  • the reference number 1 globally indicates a rotary filler machine, according to the present invention in a complex embodiment thereof.
  • Figure 1 shows a plan view of a complete apparatus 2 (known except for the filling machine 1 of the present invention), in which a linear feeding device 3 carries the containers to be filled to a first transfer star 4 that in turn feeds them to a filler machine 1 which fills them with the product.
  • a linear feeding device 3 carries the containers to be filled to a first transfer star 4 that in turn feeds them to a filler machine 1 which fills them with the product.
  • a second transfer star 5 then draws them from the filler machine 1 and delivers them to a capper machine that closes them.
  • a third transfer star 7 deposits the containers on an outlet device 8a or on a scrapping device 8b.
  • the rotary filler machine 1 is constituted by a fixed support structure 9 which can be associated to the base of the apparatus 2 described above, and hence fixed relative to the ground ( Figure 2).
  • a rotary structure 10 is pivotally associated to the fixed structure 9 according to a vertical axis, and bears a first carrousel 11 peripherally provided with a plurality of housing plates 12 for a container to be filled, arranged along a circumference of lay centred on the same axis of rotation, and a second carrousel 13 peripherally provided with a plurality of filling devices 14, each positioned above one of the plates 12 to fill the container positioned on the plate 12 itself with a product in the liquid state.
  • the machine is further provided with elements (such as pincers) for retaining the containers to be filled positioned on the plates 12 (not shown herein).
  • elements such as pincers
  • Each filling element 14 has an internal conduit 15 having an end 16 for the entrance of the product and an end 17 for the exit of the product ( Figure 7). Both ends 16, 17 can be connected to means for feeding the product (not shown herein) to allow a continuous circulation of the product inside the filling device 14.
  • a dispenser 18 is then connected in off-take fashion to the internal conduit 15 to tap some liquid product from the conduit 15 and dispense it to the container.
  • the filler machine 1 is further provided with at least a manifold 19 that has a junction portion 20 integral with the fixed structure 9, and a distribution portion 21 pivotally engaged to the junction portion 20 and integral with the rotating structure 10 ( Figure 4).
  • junction portion 20 of the manifold 19 are obtained at least a first inlet conduit 22 and a first outlet conduit 23 able to be connected to the means for feeding a first product in the liquid state ( Figure 5).
  • the first outlet mouths 24 are in fluid communication with the first inlet conduit 22, whilst the first inlet mouths 25 are in fluid communication with the first outlet conduit 23.
  • first pairs of hydraulic connections 26 each composed by a first delivery pipe 27 connected from one of the first outlet mouths 24 to the inlet end 16 of a filling device 14, and by a first return pipe 28 connected from the outlet end 17 of the same filling device 14 to one of the first inlet mouths 25.
  • Said hydraulic connections 26 allow the continuous flow of the first product between the feeding means and the filling device 14 through the manifold 19.
  • the junction portion 20 of the manifold 19 comprises a widened upper head 29 in which are mounted the first conduits 22, 23, and a substantially cylindrical body 30 positioned under the upper head 29 with its axis coinciding with the axis of rotation of the rotating structure 10.
  • the rotating portion is instead constituted by a tubular body 31 counter-shaped relative to the cylindrical body 30 and mounted in hydraulically sealed fashion externally thereto ( Figure 4).
  • first and a second annular chambers 32, 33 coaxial to the cylindrical body 30, and vertically distanced from each other.
  • a first and a second channels 34, 35 respectively connect the first inlet conduit 22 to the first chamber 32 and the first outlet conduit 23 to the second chamber 33.
  • the first outlet mouths 24 are obtained radially in the tubular body 31 in correspondence with the first chamber 32, and, similarly, the first inlet mouths 25 are obtained radially in the tubular body 31 in correspondence with the second chamber 33.
  • the manifold 19 is substantially split in two, and further comprises at least a second inlet conduit 36 and a second outlet conduit 37 integral with the junction portion 20 ( Figure 5), also able to be connected to the feeding means, and a plurality of second outlet mouths 38 and of second inlet mouths 39, similar to the first inlet mouths 25.
  • the second outlet mouths 38 are mounted on the rotating distribution portion 21 and are in fluid communication with the second inlet conduit 36, whilst the second inlet mouths 39 are mounted on the rotating portion 21 and are in fluid communication with the second outlet conduit 37.
  • annular chambers 40, 41 coaxial to the cylindrical body 30 and vertically distanced from each other as well as from the first and the second chamber 32, 33.
  • the second outlet mouths 38 and the second inlet mouths 39 are obtained radially in the tubular body 31 respectively in correspondence with the third and with the fourth chamber 40, 41.
  • a third and a fourth channel 42, 43 respectively connect the second inlet conduit 36 to the third chamber 40 and the second outlet conduit 37 to the fourth chamber 41.
  • second pairs of hydraulic connections 44 are provided, each composed by a second delivery tube 45 connected from one of the second outlet mouths 38 to the inlet end 16 of a filling device 14 and by a second return tube 46 connected from the outlet end 17 of the same filling device 14 to one of the second inlet mouths 39.
  • Said second connections 44 allow the continuous flow of a second product between the feeding means and the filling device 14 through the manifold 19, always keeping it separate from the first product.
  • part of the filling devices 14 is connected to the first mouths 24, 25 and part to the second mouths 38, 39.
  • the filling devices 14 are present in an even number and are uniformly distributed along their own circumference of lay.
  • they are also connected alternatively to each plurality of inlet mouths 25, 39 and outlet mouths 24, 38. In this way, half of the filling devices 14 can dispense the first product and half the second product.
  • the connector 19 will have, for each product, an additional pair of inlet and outlet conduits, as well as additional pluralities of inlet and outlet mouths connected from appropriate hydraulic connections to filling devices 14.
  • the number of plates 12 (and of filling devices 14) will be a whole multiple of the number of products to be dispensed, whilst the plates 12 relating to each product will be uniformly distributed along their circumference of lay, and mutually distanced by a number of plates 12 corresponding to the number of other products to be dispensed.
  • each dispenser 18 comprises a nozzle 47, oriented towards the related plate 12, and a shutter 48, able to move between a first raised position (not shown herein) for opening the nozzle 47 and a second lowered position for closing the nozzle 47 ( Figure 2).
  • the operation of the shutter 48 which in the accompanying drawings is positioned inside the internal conduit 15, is assured by a pneumatic actuator 49 positioned externally to the conduit 15 and connected to the shutter 48 itself by means of a rigid connecting rod 50, provided with centring appendages 50a.
  • the area of entry of the rigid rod 50 into the conduit 15 is constructed with a flexible membrane 51 having its edge rigidly connected to a wall of the conduit and its central portion rigidly connected to the rod 50 to guarantee the hydraulic seal, preventing rubbing between the various parts.
  • the filling machine 1 is of the weight-based type and it comprises a loading cell 52 associated to each plate 12 to measure the weight of the product poured into the container. The weight reading is then transmitted to a remote electronic control unit (not shown) operatively connected to the filling devices 14 (in particular to related actuators 48) and is used to control the dispensing of the product according to pre-set values.
  • the electronic control unit is also programmed to adapt the dispensing of the product by each filling device 14 according to the previous dispensing operation performed by the same dispensing device 14, in order to have an ideal filling, consistent over time, of individual containers.
  • the electronic control unit can also be set by the operators through appropriate control panels 53.
  • the individual plates 12 of the filler machine can easily be removed by unscrewing an appropriate screw (not shown herein).
  • the rotating structure 10 is subdivided into a lower part 54 bearing the first carrousel 11 and an upper part 55 bearing the second carrousel 13, which is connected in sliding fashion to the lower part 54 according to a vertical direction of sliding.
  • Positioning means 56 allow to determine the position of the upper part 55 relative to the lower part 54.
  • the positioning means 56 are constituted by a nut 57, able to be rotated by an operator by means of a wrench, which through an angular transmission 58 actuates a first threaded bar 59 connected by means of transmission belts 60 to three support element 61 constituted by threaded bars 62 screwed in cylinders 63 (the accompanying figures show only one).
  • the machine represented in the accompanying figures is then destined to be used with products that need to be maintained in the liquid state by means of continuous heating, and for this purpose it is provided with heating means 64 connected to the control unit.
  • both the filling devices 14 and the manifold 19 are provided with electrical resistors (not shown herein), whereof the housing seats 65 are shown, whilst the hydraulic connections 26 44 are constituted by commercial electrically heated pipes.
  • probes are provided, also housed in some of the housing seats 65 and connected to the control unit.
  • a resistor and a probe can also be inserted in the shutter 48.
  • the machine can be used, for instance, to fill alternatively at successive times containers with different products, or to fill simultaneously containers with different products, or to fill containers with a single product adapting productivity as required.
  • the machine operates exploiting only half the plates 12 and the filling devices 14 to fill containers with a first product.
  • the machine can immediately be converted to fill products with a second product with no need to empty it and clean it.
  • the two products can also be dispensed simultaneously filling half of the containers with one and half with the other. This in particular can be found useful in the case of identical containers that can be filled with products having, for instance, different colours.
  • the filling devices 14 can also be used to fill simultaneously containers with the same product in order to increase the production of the machine.
  • the product is fed to the inlet conduit, always correctly mixed, directly by the apparatuses that prepared.
  • the dispensing of the product into the individual containers takes place along the path travelled by the containers from the point of their drawing from the first transfer star to the point in which they are released to the second transfer star.
  • the shutter 48 is opened and the product, which circulates under pressure, egresses. Thanks to the shaping of the outlet nozzle 47, product splashes due to excessively fast egresses, are prevented.
  • control unit When, through the loading cell 52, the control unit sees that the proper quantity of product has been poured into a container, it activates the pneumatic actuator 49 to close the shutter 48.
  • the command to close the shutter 48 is given when the weight reached is close, but lower than, to the required one, so that the product dispensed during the delay interval correctly completes the filling operation.
  • the control unit checks the product actually dispensed at the end and, if necessary, changes the closure time for the subsequent cycles.
  • the present invention achieves important advantages.
  • the filler machine of the present invention allows continuously to fill the containers.
  • said machine assures the capability of maintaining the product always with a homogeneous composition, thanks to the continuous circulation thereof in the conduits, without any stagnation areas. Additionally, this also holds true in the case of product that need to be continuously heated to remain liquid.
  • the machine of the present invention can be used to dispense any number of products, simultaneously or in succession.
  • the arrangement with two or more separate hydraulic systems allows to keep the manifold diameter, and consequently the related moment of inertia, to a limited size.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Basic Packing Technique (AREA)
  • Filling Of Jars Or Cans And Processes For Cleaning And Sealing Jars (AREA)
  • Solid-Sorbent Or Filter-Aiding Compositions (AREA)
  • Compositions Of Macromolecular Compounds (AREA)
  • Pigments, Carbon Blacks, Or Wood Stains (AREA)

Claims (17)

  1. Drehtischfüllmaschine, enthaltend:
    eine feststehende Trägerstruktur (9);
    eine drehende Struktur (10), die drehbar der genannten feststehenden Struktur (9) zugeordnet ist, und zwar nach einer vertikalen Drehachse;
    ein erstes Karussell (11), montiert an der genannten drehenden Struktur (10) und umlaufend eine Anzahl von Tellern (12) zur Aufnahme eines zu füllenden Behälters tragend, positioniert entlang einem Lageumfang, der auf die genannte Drehachse zentriert ist;
    ein zweites Karussell (13), zugeordnet der genannten drehenden Struktur (10) und umlaufend eine Anzahl von Füllvorrichtungen (14) tragend, jede positioniert oberhalb von einem der genannten Teller (12), um einen auf dem Teller (12) selbst positionierten Behälter mit einem Produkt in flüssigem Zustand zu füllen;
    dadurch gekennzeichnet, dass jede der genannten Füllvorrichtungen (14) eine interne Leitung (15) hat, und zwar mit einem Ende (16) für den Eintritt des Produktes und einem Ende (17) für den Austritt des Produktes, beide anschliessbar an Mittel zum Zuführen des Produktes, um eine kontinuierliche Zirkulierung des Produktes im Inneren der Füllvorrichtung (14) zu erlauben, sowie einen Spender (18), der in Abzweigung an die genannte interne Leitung (15) angeschlossen ist, um das flüssige Produkt von der genannten Leitung abzuzapfen und es in den genannten Behälter abzugeben.
  2. Füllmaschine nach Patentanspruch 1, dadurch gekennzeichnet, dass sie ausserdem wenigstens ein Verteilerrohr (19) enthält, das wie folgt aufweist:
    einen Anschlussabschnitt (20), der fest mit der genannten feststehenden Struktur (9) verbunden ist, und einen Verteilerabschnitt (21), drehbar mit dem genannten Anschlussabschnitt und fest mit der genannten drehenden Struktur (10) verbunden;
    wenigstens eine erste Einlassleitung (22) und eine erste Auslassleitung (23), integral mit dem genannten Anschlussabschnitt (20) und in der Lage, an die genannten Mittel zum Zuführen eines ersten Produktes in flüssigem Zustand angeschlossen zu werden;
    eine Anzahl von ersten Auslassstutzen (24), montiert an dem genannten drehenden Abschnitt und in Flüssigkeitsverbindung mit der genannten ersten Einlassleitung (22) stehend; und
    eine Anzahl von ersten Einlassstutzen (25), montiert an dem genannten drehenden Abschnitt und in Flüssigkeitsverbindung mit der genannten ersten Auslassleitung (23) stehend;
    und eine Anzahl von ersten hydraulischen Anschlüssen (26), angeschlossen von einem der genannten ersten Auslassstutzen (24) und von einem der genannten ersten Einlassstutzen (25) jeweils an das Eintrittsende (16) und an das Austrittsende (17) einer Füllvorrichtung (14), um den kontinuierlichen Fluss des ersten Produktes zwischen den Zuführmitteln und der Füllvorrichtung (14) durch das genannte Verteilerrohr (19) zu erlauben.
  3. Füllmaschine nach Patentanspruch 2, dadurch gekennzeichnet, dass:
    der genannte Anschlussabschnitt (20) einen im wesentlichen zylindrischen Körper enthält, mit der Achse so positioniert, dass sie mit der genannten Drehachse übereinstimmt;
    der genannte drehende Abschnitt einen rohrförmigen Körper (31) enthält, der im Verhältnis zu dem genannten zylindrischen Körper (30) gegengeformt diesem gegenüber aussen montiert ist;
    zwischen dem genannten zylindrischen Körper (30) und dem genannten rohrförmigen Körper (31) wenigstens eine erste und eine zweite ringförmige Kammer (32), (33) enthalten ist, koaxial zu dem zylindrischen Körper (30) und vertikal voneinander abstehend;
    ein erster und ein zweiter Kanal (34), (35) jeweils die genannte erste Einlassleitung (22) mit der genannten ersten Kammer (32) und die genannte erste Auslassleitung (23) mit der genannten zweiten Kammer (33) verbinden;
    die genannten ersten Auslassstutzen (24) radial in dem genannten rohrförmigen Körper (31) erhalten sind, und zwar entsprechend zu der genannten ersten Kammer (32); und
    die genannten ersten Einlassstutzen (25) radial in dem genannten rohrförmigen Körper (31) erhalten sind, und zwar entsprechend zu der genannten zweiten Kammer (33).
  4. Füllmaschine nach einem beliebigen der vorstehenden Patentansprüche, dadurch gekennzeichnet, dass das genannte Verteilerrohr (19) ausserdem enthält:
    wenigstens eine zweite Einlassleitung (36) und eine zweite Auslassleitung (37), integral mit dem genannten Anschlussabschnitt (20) und in der Lage, mit den genannten Zufuhrmitteln verbunden zu werden, um ein zweites Produkt in flüssigem Zustand zuzuführen;
    eine Anzahl von zweiten Auslassstutzen (38), montiert an dem genannten drehenden Abschnitt und in Flüssigkeitsverbindung mit der genannten zweiten Einlassleitung (36) stehend; und
    eine Anzahl von zweiten Einlassstutzen (39), montiert an dem genannten drehenden Abschnitt und in Flüssigkeitsverbindung mit der genannten zweiten Auslassleitung (37) stehend;
    und eine Anzahl von zweiten Paaren von hydraulischen Anschlüssen (44), angeschlossen von einem der genannten zweiten Auslassstutzen (38) und von einem der genannten zweiten Einlassstutzen (39) jeweils an das Eintrittsende (16) und an das Austrittsende (17) einer Füllvorrichtung (14), um den kontinuierlichen Fluss des zweiten Produktes zwischen den Zuführmitteln und der Füllvorrichtung (14) durch das genannte Verteilerrohr (19) zu erlauben, wobei ein Teil der genannten Füllvorrichtungen (14) an die genannten ersten Stutzen und ein Teil an die genannten zweiten Stutzen angeschlossen sind.
  5. Füllmaschine nach Patentanspruch 3 und 4, dadurch gekennzeichnet, dass:
    zwischen dem genannten zylindrischen Körper (30) und dem genannten rohrförmigen Körper (31) ausserdem wenigstens eine dritte und eine vierte ringförmige Kammer (40), (41) erhalten sind, koaxial zu dem zylindrischen Körper (30) angeordnet und im Verhältnis zueinander und im Verhältnis zu der ersten und der zweiten Kammer (33) vertikal voneinander abstehend;
    ein dritter und ein vierter Kanal (42), (43) jeweils die genannte zweite Einlassleitung (36) mit der genannten dritten Kammer (40) und die genannte zweite Auslassleitung (37) mit der genannten vierten Kammer (41) verbinden;
    die genannten zweiten Auslassstutzen (38) radial in dem genannten rohrförmigen Körper (31) entsprechend zu der genannten dritten Kammer (40) erhalten sind; und
    die genannten zweiten Einlassstutzen (39) radial in dem genannten rohrförmigen Körper (31) entsprechend zu der genannten vierten Kammer (41) erhalten sind.
  6. Füllmaschine nach Patentanspruch 4 oder 5, dadurch gekennzeichnet, dass das genannte Verteilerrohr (19) eine Serie von genannten Paaren von Einlass- und Auslassleitungen enthält, sowie eine entsprechende Serie der genannten Einlass- und Auslassstutzen, wobei jedes Paar von Einlass- und Auslassleitungen betrieblich an die Zuführmittel, an eine Anzahl von Einlass- und Auslassstutzen und an einen Teil der Füllvorrichtungen (14) angeschlossen ist, um sie mit den jeweiligen flüssigen Produkt zu beliefern.
  7. Füllmaschine nach einem beliebigen der Patentansprüche von 4 bis 6, dadurch gekennzeichnet, dass die Füllvorrichtungen (14) gleichmässig entlang ihrem Lageumfang verteilt sind, und dass die Füllvorrichtungen (14), angeschlossen an jede Anzahl von Einlass- und Auslassstutzen, wiederum gleichmässig entlang dem Lageumfang verteilt sind.
  8. Füllmaschine nach einem beliebigen der vorstehenden Patentansprüche, dadurch gekennzeichnet, dass jeder Spender (18) eine Düse (47) enthält, die zu dem betreffenden Teller (12) hin gerichtet ist, und ein Absperrelement (48), in der Lage, sich zwischen einer ersten angehobenen Position zum Öffnen der genannten Düse (47) und einer zweiten gesenkten Position zum Schliessen der genannten Düse (47) zu bewegen.
  9. Füllmaschine nach Patentanspruch 8, dadurch gekennzeichnet, dass jeder Spender (18) ausserdem einen Drucklufttrieb (49) enthält, angeschlossen an das genannte Absperrmittel (48), um dessen Position zu bestimmen.
  10. Füllmaschine nach Patentanspruch 9, dadurch gekennzeichnet, dass das genannte Absperrmittel (48) im Inneren der genannten Leitung positioniert ist, und dadurch, dass jeder Spender (18) ausserdem eine starre Verbindungsstange (50) enthält, montiert zwischen dem Trieb und dem Absperrelement (48), sowie eine flexible Membrane (51), die mit ihrem Rand starr an eine Wand der genannten Leitung angeschlossen ist und ihren eigenen mittleren Abschnitt starr mit der genannten Stange (50) verbunden hat.
  11. Füllmaschine nach einem beliebigen der vorstehenden Patentansprüche, dadurch gekennzeichnet, dass sie ausserdem eine Ladezelle (52) enthält, zugeordnet einem jeden Teller (12) zum Messen des Gewichtes des in den Behälter eingefüllten Produktes, und eine elektronische Steuereinheit, die betrieblich mit der genannten Ladezelle (52) und der oberhalb des betreffenden Tellers (12) positionierten Füllvorrichtung (14) verbunden ist, um die Abgabe des Produktes nach dem durch die Ladezelle (52) erfassten Gewicht zu steuern.
  12. Füllmaschine nach Patentanspruch 11, dadurch gekennzeichnet, dass die genannte elektronische Steuereinheit programmiert ist, um die Abgabe des Produktes durch jede Füllvorrichtung (14) nach dem vorherigen Füllvorgang zu regulieren, ausgeführt von derselben Füllvorrichtung (14).
  13. Füllmaschine nach einem beliebigen der vorstehenden Patentansprüche, dadurch gekennzeichnet, dass sie eine Serie von Anzahlen austauschbarer Tellern (12) von unterschiedlichen Abmessungen enthält, und dadurch, dass die genannten Teller (12) auf lösbare Weise an dem ersten Karussell (11) befestigt sind, um durch den Austausch der Teller (12) den Formatwechsel der zu füllenden Behälter zu erlauben.
  14. Füllmaschine nach einem beliebigen der vorstehenden Patentansprüche, dadurch gekennzeichnet, dass die genannte drehende Struktur (10) einen unteren, das erste Karussell (11) tragenden Teil (54) enthält, sowie einen oberen Teil (55), der das zweite Karussell (13) trägt und auf gleitende Weise an den unteren Teil (54) angeschlossen ist, und zwar nach einer vertikalen Gleitrichtung, und dadurch, dass sie ausserdem Positioniermittel (56) enthält, um die Position des oberen Teils (55) im Verhältnis zu dem unteren Teil (54) zu bestimmen.
  15. Füllmaschine nach einem beliebigen der vorstehenden Patentansprüche, dadurch gekennzeichnet, dass jede Füllvorrichtung (14) mit Heizmitteln (64) versehen ist, um das Produkt erwärmt zu halten.
  16. Füllmaschine nach Patentanspruch 2 nach einem beliebigen der anderen Patentansprüche, dadurch gekennzeichnet, dass das genannte Verteilerrohr (19) und die genannten hydraulischen Anschlussmittel mit Heizmitteln (64) versehen sind, um das Produkt entlang seinem gesamten Verlauf im Inneren der Maschine erwärmt zu halten.
  17. Füllmaschine nach Patentanspruch 15 oder 16, dadurch gekennzeichnet, dass die genannten Heizmittel (64) aus elektrischen Widerständen bestehen.
EP02425579A 2002-09-26 2002-09-26 Drehtischfüllmaschine Expired - Lifetime EP1403186B1 (de)

Priority Applications (4)

Application Number Priority Date Filing Date Title
AT02425579T ATE294739T1 (de) 2002-09-26 2002-09-26 Drehtischfüllmaschine
ES02425579T ES2241980T3 (es) 2002-09-26 2002-09-26 Maquina rellenadora rotativa.
DE60204019T DE60204019T2 (de) 2002-09-26 2002-09-26 Drehtischfüllmaschine
EP02425579A EP1403186B1 (de) 2002-09-26 2002-09-26 Drehtischfüllmaschine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP02425579A EP1403186B1 (de) 2002-09-26 2002-09-26 Drehtischfüllmaschine

Publications (2)

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EP1403186A1 EP1403186A1 (de) 2004-03-31
EP1403186B1 true EP1403186B1 (de) 2005-05-04

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EP02425579A Expired - Lifetime EP1403186B1 (de) 2002-09-26 2002-09-26 Drehtischfüllmaschine

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EP (1) EP1403186B1 (de)
AT (1) ATE294739T1 (de)
DE (1) DE60204019T2 (de)
ES (1) ES2241980T3 (de)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DK2829477T3 (en) * 2013-07-24 2016-08-15 Antonio Mengibar S A Rotary Filling machine
CN103693605B (zh) * 2013-12-23 2016-04-20 深圳市华星光电技术有限公司 一种框胶填充装置
DE102014102537A1 (de) 2014-02-26 2015-08-27 Krones Ag Vorrichtung und Verfahren zum Sterilisieren von Behältnissen
CN104810296A (zh) * 2015-05-07 2015-07-29 邱真传 一种新型直插式led自动灌胶机用灌胶模具
CN109573920B (zh) * 2018-11-23 2021-04-23 南京浦创智谷企业管理有限公司 一种基于共振原理消除气泡的胶水用灌装机
CN110668380B (zh) * 2019-10-30 2021-03-30 苏州克劳丽化妆品有限公司 一种含固体颗粒胶体的无损灌装设备及方法
CN113003521B (zh) * 2021-02-22 2022-05-03 长沙民政职业技术学院 一种绘画颜料高密封灌装设备

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB958985A (en) * 1962-02-28 1964-05-27 Pneumatic Scale Corp Container filling machine
US4588001A (en) * 1983-06-23 1986-05-13 The Kartridg Pak Co. Rotary filling apparatus and method
US5685340A (en) * 1996-03-12 1997-11-11 Huang; Hsi-Hung Metering valve
JP2001278388A (ja) * 2000-03-31 2001-10-10 Toyo Jidoki Co Ltd ロータリー式連続充填装置
JP4319325B2 (ja) * 2000-04-13 2009-08-26 東洋自動機株式会社 保温式液状物充填装置

Also Published As

Publication number Publication date
DE60204019D1 (de) 2005-06-09
ES2241980T3 (es) 2005-11-01
EP1403186A1 (de) 2004-03-31
DE60204019T2 (de) 2006-03-02
ATE294739T1 (de) 2005-05-15

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