EP2949618B1 - Procédé et dispositif pour remplissage d'un article avec un produit fluide - Google Patents

Procédé et dispositif pour remplissage d'un article avec un produit fluide Download PDF

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Publication number
EP2949618B1
EP2949618B1 EP14170711.7A EP14170711A EP2949618B1 EP 2949618 B1 EP2949618 B1 EP 2949618B1 EP 14170711 A EP14170711 A EP 14170711A EP 2949618 B1 EP2949618 B1 EP 2949618B1
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EP
European Patent Office
Prior art keywords
article
filling
pourable product
measuring
control unit
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Not-in-force
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EP14170711.7A
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German (de)
English (en)
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EP2949618A1 (fr
Inventor
Michele Montanari
Enrico Cocchi
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Sidel SpA
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Sidel SpA
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Priority to EP14170711.7A priority Critical patent/EP2949618B1/fr
Publication of EP2949618A1 publication Critical patent/EP2949618A1/fr
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Publication of EP2949618B1 publication Critical patent/EP2949618B1/fr
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67CCLEANING, FILLING WITH LIQUIDS OR SEMILIQUIDS, OR EMPTYING, OF BOTTLES, JARS, CANS, CASKS, BARRELS, OR SIMILAR CONTAINERS, NOT OTHERWISE PROVIDED FOR; FUNNELS
    • B67C3/00Bottling liquids or semiliquids; Filling jars or cans with liquids or semiliquids using bottling or like apparatus; Filling casks or barrels with liquids or semiliquids
    • B67C3/02Bottling liquids or semiliquids; Filling jars or cans with liquids or semiliquids using bottling or like apparatus
    • B67C3/22Details
    • B67C3/28Flow-control devices, e.g. using valves
    • B67C3/282Flow-control devices, e.g. using valves related to filling level control
    • B67C3/283Flow-control devices, e.g. using valves related to filling level control using pressure sensing means

Definitions

  • the present invention relates to a method and filling device for contact filling of an article with pourable product, in particular a carbonated pourable food product such as beer or mineral water.
  • Filling machines comprising a filling station, which is fed at the input with empty articles, and supplies at the output articles filled with the pourable product.
  • the filling station substantially comprises a carousel conveyor rotating about an axis of rotation; a tank containing the pourable product; and a number of filling devices fluidly connected to the tank and fitted to the conveyor, radially outwards of the axis of rotation of the conveyor.
  • the conveyor comprises a number of supports for positioning the mouths of the relative articles beneath the respective valves, and for moving the relative articles along an arc-shaped path about the axis of rotation and integrally with the respective valves.
  • Each support is also movable parallel to a respective second axis, which is parallel to and spaced from the axis of rotation of the carousel, between a lowered rest position and a raised operative position.
  • Each filling device substantially comprises a fastening body for attachment to the conveyor and defining a filling chamber connected fluidly to the tank; and a filling head fitted to the relative fastening body.
  • Each filling head comprises a shutter movable inside the chamber between a closed position cutting off flow of the pourable product to the mouth of the relative article, and an open position connecting the chamber fluidly to the mouth to allow flow of the pourable product into the article.
  • Each support receives the article to be filled at an inlet station of the arc-shaped path and discharges the filled articles at an outlet station of the arc-shaped path. Furthermore, each article is filled by relative filling head with the pourable product, as it is advanced by relative support along the arc-shaped path.
  • each support is arranged in the respective lowered rest position at the inlet station and the outlet station of the arc-shaped path.
  • relative mouth is spaced along respective second axis from the body of the relative filling device.
  • Each support is arranged in the relative raised operative position along the arc-shaped path. Due to the fact that each article is contact filled by relative filling device, it is arranged in tight-fluid contact with the body of relative filling device along the arc-shaped path.
  • the filling device comprises a flow-meter for measuring the flow of the pourable product which fills the article and the shutter is moved back into the closed position when the flow-meter has detected that a desired volume of pourable product has filled the article.
  • the filling device with a probe, e.g. an inductive probe, for determining the level of the pourable product, and which projects inside the relative article once the article is positioned beneath the relative filling valve.
  • a probe e.g. an inductive probe
  • the shutter is moved in the closed position.
  • a first drawback of the filling devices of the type described above is that, given the position of the probes projecting inside the relative articles, the explosion of or damage to the articles during the filling process may easily result in damage to the probe, thus resulting in stoppage of the filling machine.
  • the glass of damaged articles can break the isolation of the probes and/or can remain between the corresponding probes and the corresponding filling bodies.
  • a second drawback of the filling devices of the type described above is that they require a considerable stroke of the supports between the relative lowered rest position and the relative raised operative position.
  • each probe protrudes downwardly into the relative container for a given height, associated to the desired level to be attained.
  • the supports are required to move below the probe, when they are in the relative lowered rest position.
  • a third drawback of the filling devices of the type described above is that they require a longer cleaning device, commonly known as "dummy bottle” for sterilizing the probe with a sterilizing agent, with respect to the filling devices normally used for contact filling pourable product inside plastic articles. This is due to the fact that each cleaning device must be shaped to accommodate also the relative probe, which protrudes from the relative filling head.
  • a fourth drawback of the filling devices of the type described above is that they require the whole replacement of the probe in order to vary the desired filling level to be attained.
  • a fifth drawback of the filling devices of the type described above is that they are quite different with respect to the filling devices normally used for contact filling pourable product inside plastic articles, mainly for comprising the probe.
  • JP H07-A-267297 discloses a filling method for contact filling an article with a pourable product according to the preamble of claim 1, and a filling unit for contact filling an article with a pourable product according to the preamble of claim 4.
  • a filling method for contact filling an article with a pourable product as claimed in claim 1.
  • the present invention also relates to a filling device for contact filling an article with a pourable product, as claimed in claim 4.
  • number 1 indicates a filling device for contact filling an article, hereinafter referred to as container 2, with a pourable product, especially a carbonated food pourable product, beer in the embodiment shown.
  • Container 2 comprises, in a known manner,:
  • Filling device 1 substantially comprises:
  • Tank 13 is filled, in the embodiment shown, with the pourable product.
  • Support 20 is movable parallel to axis A between:
  • container 2 When support 20 is in the raised operative position, container 2 preferably undergoes the following operations according the so-called contact filling modality:
  • Body 10 further comprises:
  • fluidic line 19 comprises:
  • Valves 22, 23 are arranged along relative ducts 28, 29.
  • valves 22, 23 can be selectively set in:
  • Valves 22, 23 are set in the respective open positions, during the pressurization step of container 2 ( Figure 3 ), while they are set in the respective closed positions when the vacuum-generation step ( Figure 2 ) and during the de-pressurization step ( Figure 7 ).
  • Body 10 further comprises:
  • Valve 42 is set in the open position, during the de-pressurization step of container 2, while is set in the closed position while the other operations are carried out on container 2.
  • body 10 comprises
  • Section 43 is, in particular, interposed between valve 41 and opening 14 along fluidic line 40.
  • fluidic line 50 is formed as a derivation of fluidic line 40.
  • Section 43 is fluidly connected with opening 14 also when shutter 15 is in the closed position.
  • fluidic line 40 opens into opening 14 below the position reached by shutter 15 in the closed position.
  • Valve 52 is set in the open position during the vacuum generation step of container 2 ( Figure 2 ); and is set in the closed position ( Figures 1 and 3 to 8 ) during the other operations on container 2.
  • Filling device 1 further comprises a control unit 60 (only schematically shown in Figures 1 to 8 ), which is programmed for measuring a quantity associated to the level reached by the pourable product that has been filled inside container 2.
  • control unit 60 is programmed for detecting that the pourable product has reached a desired level L ( Figures 6 to 8 ) inside container 2.
  • control unit 60 is programmed for measuring a quantity associated to the empty volume V1, V2 ( Figure 5 ) of container 2, i.e. the volume not-filled with pourable product, during the filling of container 2.
  • control unit 60 is programmed for associating to empty volume V1, V2, the level reached by the pourable product inside container 2, on the basis of the size of the diameter of neck 5 of container 2.
  • control unit 60 is programmed for associating empty volume V2 to the attainment of desired level L of pourable product inside container 2 ( Figures 6 to 8 ).
  • V1 will indicate a general value of empty volume greater than value V2 and which is reached before that level of pourable product inside container 2 equals desired level L, i.e. when the level of the pourable product inside container 2 is smaller than desired level L.
  • empty volume V2 defines a head-space in neck 5 of container 2 ( Figures 6 to 8 ).
  • control unit 60 is programmed to set shutter 15 in the closed position when it has detected that the desired level L has been reached by the pourable product inside container 2.
  • Filling device 1 preferably comprises a flow-meter 80, which is arranged along a duct 81 extending between tank 13 and opening 12, and is adapted to measure the flow Q - and, therefore, the quantity - of pourable product filled inside container 2, when shutter 15 is in the open position.
  • control unit 60 when control unit 60 has set shutter 15 in the open position,:
  • volume V is measured by flow-meter 80 up to when it reaches 80% of desired volume and the level reached is then measured by control unit 60 by measuring empty volume V2, up to when desired level L is reached.
  • control unit 60 sets at least one valve (22 in the embodiment shown) in the open position, so as to allow the return of the aeriform - carbon dioxide in the embodiment shown - escaping from the inner volume of container 2 inside collector 21.
  • control unit 60 sets both valves 22, 23 in the respective closed position, so as to prevent the return of the aeriform - carbon dioxide in the embodiment shown - escaping from the inner volume of container 2 inside collector 21 ( Figures 5 and 6 ).
  • Body 10 of filling device 1 comprises a sensor 70, which is configured to generate a signal associated to the pressure inside empty volume of container 2 and is functionally connected with control unit 60.
  • body 10 comprises a fluidic line 71, which extends between section 27 and discharge collector 41.
  • Sensor 70 is arranged along fluidic line 71.
  • sensor 70 generates a signal associated to the pressure inside ducts 24, 25 - and, therefore, inside the empty volume V2 of container 2 -, when shutter 15 is in the closed position and valves 22, 23 are in respective closed positions.
  • sensor 70 is, by a way of example, a piezo-electric sensor.
  • filling device 1 comprise a single housing (not-shown) which houses sensor 70 and valve 72.
  • body 10 comprises a valve 72, which is arranged along fluidic line 71 and in a position interposed between sensor 70 and discharge collector 41.
  • control unit 60 is preferably programmed for selectively moving valve 72, when shutter 15 is in the open position and valves 22, 23 are in respective closed positions, between:
  • fluidic line 71 and ducts 24, 25 define a single way for the aeriform contained in the empty volume of container 2, when valves 22, 23 are in respective closed positions.
  • the switch of valve 72 from the open position to the closed position causes an increase in the pressure of the aeriform in ducts 24, 25 and empty volume V2 of container 2, due to the fact that the pourable product filling container 2 is reducing the volume available for the aeriform.
  • valve 72 from the closed position to the open position causes a decrease in the pressure of the aeriform in ducts 24, 25 and in empty volume V1, V2 of container 2, due to the fact that the switch increases the volume available for that aeriform.
  • control unit 60 measures empty volume V1, V2 of container 2 by:
  • control unit 60 is programmed for cyclically:
  • control unit 60 is programmed for calculating the empty volume on the basis of time interval ⁇ t necessary to register fixed increase p2-p1, where:
  • sensor 70 measures an increase from pressure p1 to pressure p2 inside fluidic line 71.
  • control unit 60 is programmed for calculating V2, on the basis of:
  • Equation (1) can be justified in the following way, on the basis of the assumption that the aeriform contained in ducts 23, 24 and empty volume V2 behaves as a perfect gas, that the variation of temperature of that aeriform are neglectable during time interval ⁇ t, and that both container 2 and pourable product are not compressible.
  • control unit 60 which, when executed implements equations (1) to (4).
  • Figure 9 further shows the variation of time interval ⁇ t, when the empty volume decreases, and the operation of shutter 15, which is the open position when line 101 assumes value 1 and is in the closed position when line 101 assume value 0.
  • Filling device 1 is preferably incorporated in a filling station 100, which substantially comprises:
  • Axes A of filling devices are spaced from and parallel axis of rotation of carousel.
  • Supports 20 are driven in rotation by carousel, receive relative empty containers 2 at an inlet station (not-shown), convey relative containers 2 along an arc-shaped trajectory, and output filled containers 2 at an outlet station (not-shown).
  • each support 20 is arranged in the relative rest position at inlet station and at the outlet station, and moves from the relative rest position to the lowered position and vice-versa along the arc-shaped trajectory.
  • Filling station 100 further defines a single tank 13, a single flow-meter 80 and duct 81, and single collectors 41, 51 for all filling devices 1.
  • support 20 is in the rest position and mouth 3 of empty container 2 is spaced along axis A from opening 14 and body 10.
  • control unit 60 sets shutter 15 and valves 22, 23, 42, 52, 72 in respective closed position.
  • support 20 moves along axis A up to reach the operative position ( Figure 2 ), in which mouth 3 of container 2 is pressed and in tight-fluid contact with opening 14 and body 10.
  • Control unit 60 sets valve 52 in the open position, so as to create a fluidic connection between vacuum collector 51 and opening 14 and, therefore, between vacuum collector 51 and the inner volume of container 2. As a result, the vacuum is generated inside the inner volume of container 2, so as to prevent the risk of oxidation of the pourable product.
  • control unit 60 sets valve 52 in the closed position and sets valves 22, 23 in the respective open positions, while keeping shutter 15 in the closed position ( Figure 3 ).
  • the pressurizing gas carbon dioxide in the embodiment shown, flows from collector 21 towards ducts 28, 29, 23, 24, opening 14 and mouth 3, up to reach the inner volume of container 2.
  • the inner volume of container 2 is pressurized to the same pressure as the pourable product in tank 13.
  • control unit 60 sets shutter 15 in the open position ( Figures 4 to 6 ), so as to fill container 2 with the pourable product.
  • the filling of container 2 comprises:
  • control unit 60 sets at least one (23) of valves 22, 23 in respective open position and sets shutter 15 in the open position ( Figure 4 ).
  • the pourable product can flow from tank 13 to mouth 3 of container 2, thus filling the latter, while the aeriform - carbon dioxide in the embodiment shown - in container 2 escapes from container 2 through mouth 3 and ducts 24, 25 and returns inside collector 21 by one (or both) ducts 28, 29.
  • Flow-meter 80 measures the amount of flow Q of the pourable product along duct 81.
  • control unit 60 can adjust the filling speed of container 2.
  • control unit 60 valves 22, 23 in respective open position, keeps shutter 15 in the open position, and cyclically move valve 72 between the open position ( Figure 6 ) and the closed position ( Figure 5 ).
  • the aeriform - carbon dioxide in the embodiment shown - escapes from container 2 through mouth 3 and ducts 24, 25 and is prevented from returning inside collector 21.
  • control unit 60 measures empty volume V1, V2 of container 2, and measures the level reached by the pourable product inside container 2 on the basis of the measure of the empty volume.
  • control unit 60 cyclically switches valve 72 between the open position ( Figure 5 ) and the closed position ( Figure 6 ).
  • sensor 70 detects an increase in the pressure inside ducts 24, 25 - and, therefore, inside empty volume V2 -, when valve 72 is in the closed position.
  • sensor 70 detects a sudden decrease in the pressure inside ducts 24, 25 - and, therefore, inside empty volume V1, V2, when control unit 60 sets valve 72 in the open position.
  • control unit 60 cyclically:
  • control unit 60 measures that desired level L has been reached by pourable product inside container 2, on the basis of the attainment of empty volume V2 and of the size of the diameter of neck 5.
  • control unit 60 When control unit 60 detects that the level of pourable product that has filled container 2 equals desired value L, it sets shutter 15 in the closed position ( Figure 6 ) .
  • control unit 60 sets valve 42 in the open position, so as to fluidly connect discharge collector with opening 14 and the inner volume of container 2 through fluidic line 40. In this way, the aeriform in container 2 is discharge, up to when the pressure inside container 2 reaches the environment pressure ( Figure 7 ).
  • control unit 60 sets valve 42 in the closed position and support 20 moves from the operative position to the rest position, as shown in Figure 8 .
  • Filled container 2 is now discharged from support 20.
  • control unit 60 is programmed for detecting that pourable product has reached desired level L of filling by measuring empty volume V1, V2 of container 2, during the filling of container 2.
  • filling device 1 can fill containers 2 with the desired level L of pourable product, by simply measuring that empty volume V2 has been reached therein, and without requiring the presence of an inductive probe, as in the known solutions discussed in the introductory part of the present description.
  • Support 20 moved along a narrower stroke parallel to axis A between the rest position and the operative position, when compared with the known solutions described in the introductory part of the present description.
  • filling device 1 requires the same cleaning device as the filling device that fills plastic containers 2.
  • Filling device 1 can also be efficiently used for filling container 2 with a broader range of desired levels L than the known filling devices described in the introductory part of the present description.
  • Filling device 1 is more similar to filling devices than the known filling devices described in introductory part of the present description and used for filling plastic containers 2 with carbonated products other.
  • filling device 1 reduces the manufacturing and supplying cost, when compared with those known solution.
  • flow-meter 80 is efficiently used, during the first initial step of filling of container 2, for detecting that a given amount of pourable product has filled container 2 ( Figure 4 ).
  • valve 72 is kept in the closed position and one (22) of valves (22, 23) is kept in the open position, so that the aeriform which escapes from the inner volume of container 2 returns inside collector 21.
  • control unit 60 sets valves 22, 23 in the closed position and switches valve 72 between the open position and closed position, so as to measure that value V2 of empty volume has been reached and, accordingly, detect that desired level L has been reached ( Figures 5 and 6 ).
  • valve 72 is required to switch between the open and the closed position only during the second step of filling, thus correspondingly increasing the life-time of valve 72.
  • the aeriform escapes from the inner volume of container 2 inside collector 41 - and is, therefore, not recovered in collector 21 - only during the second step of filling, thus reducing the consumption of carbon dioxide.
  • the first step of the filling cycle of container 2 could be not present.
  • filling device 1 could use a component other than flow-meter 80 to detect flow Q of pourable product.
  • control unit 60 could use interval time ⁇ t for measuring flow Q.
  • control unit 60 would be programmed for moving one of valves 22, 23 between the respective open position and the respective closed position and to leave the other valves 22, 23 in the respective open position, so that to cyclically increase and reduce the pressure inside ducts 24, 25 and empty volume V1, V2 of container 2.

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  • Basic Packing Technique (AREA)
  • Filling Of Jars Or Cans And Processes For Cleaning And Sealing Jars (AREA)

Claims (6)

  1. Procédé de remplissage par contact d'au moins un article (2) avec un produit pouvant être versé, comprenant les étapes consistant à :
    i) disposer une embouchure (3) dudit article (2) en contact avec un corps de remplissage (10), qui définit une première ligne fluidique (11) pour ledit produit pouvant être versé ;
    ii) remplir ledit article (2), en créant une connexion fluidique entre ladite première ligne fluidique (11) et ledit article (2) ; et
    iii) mesurer un niveau (L) atteint par ledit produit pouvant être versé à l'intérieur dudit article (2), pendant ladite étape (ii) ;
    ladite étape iii) comprenant l'étape iv) consistant à mesurer une première quantité physique (V1, V2) associée au volume vide dudit article (2) ;
    ladite étape iv) étant réalisée pendant l'étape ii) ;
    ladite étape iv) comprenant l'étape v) consistant à mesurer une seconde quantité physique (p1, p2) associée à la pression à l'intérieur dudit volume vide ;
    ladite étape iv) comprenant l'étape vi) consistant à mesurer une troisième quantité physique (p2-p1) associée à la variation temporelle de la pression à l'intérieur dudit volume vide ;
    caractérisé en ce que ladite étape vi) comprend l'étape vii) consistant à mesurer une quatrième quantité physique (Δt) associée à un intervalle de temps nécessaire pour obtenir une augmentation donnée (p2-p1) de la pression à l'intérieur dudit volume vide, pendant ladite étape ii) ;
    ledit procédé comprenant en outre les étapes consistant à :
    viii) permettre l'échappement d'un élément aériforme contenu à l'intérieur dudit article (2) le long d'une seconde ligne fluidique (24, 25) pendant ladite étape ii) ; et
    ix) mesurer ladite troisième quantité (p1, p2) le long de ladite seconde ligne fluidique (24, 25) ;
    ladite étape vi) comprenant l'étape x) consistant à interrompre de manière cyclique le flux dudit élément aériforme le long de ladite seconde ligne fluidique (24, 25).
  2. Procédé selon la revendication 1, caractérisé en ce que ladite étape vi) comprend les étapes consistant à :
    xi) isoler de manière fluide ladite seconde ligne (24, 25) d'un collecteur (21) dudit élément aériforme ; et
    xii) connecter de manière cyclique d'une manière fluidique ladite seconde ligne (24, 25) à un point de déversement (41).
  3. Procédé selon la revendication 1 ou 2, caractérisé en ce qu'il comprend une étape xiii) consistant à mesurer une cinquième quantité physique (Q) associée au volume dudit produit pouvant être versé, qui a rempli ledit article (2), pendant une première partie de ladite étape ii) ;
    ladite étape iv) étant réalisée après ladite étape xiii) et pendant une seconde partie de ladite étape ii).
  4. Dispositif de remplissage (1) pour un remplissage par contact d'au moins un article (2) avec un produit pouvant être versé, comprenant :
    - un corps (10) qui définit une première ligne fluidique (11) pour ledit produit à verser ;
    - un obturateur (15) qui peut être sélectivement réglé dans une première position, dans laquelle il permet audit produit pouvant être versé de s'écouler depuis ladite ligne fluidique (11) à l'intérieur dudit article (2), de façon à remplir ledit article (2) avec ledit produit pouvant être versé, ou dans une seconde position, dans laquelle il empêche ledit produit pouvant être versé de s'écouler depuis ladite ligne fluidique (11) à l'intérieur dudit article (2) ; ledit article (2) étant apte à être mis en contact avec ledit corps (10) ; et
    - une unité de commande (60) qui est programmée pour mesurer un niveau (L) atteint par ledit produit à verser à l'intérieur dudit article (2) quand ledit obturateur (15) est dans ladite première position ;
    ladite unité de commande (60) étant programmée pour mesurer une première quantité physique (V1, V2) associée au volume vide dudit article (2), lorsque ledit obturateur (15) est dans ladite première position et pour mesurer ledit niveau (L) sur la base de ladite première quantité physique (V1, V2) ;
    ledit dispositif de remplissage (1) comprenant un capteur (70) qui est configuré pour générer un signal associé à une seconde quantité physique (p1, p2) associée à la pression à l'intérieur dudit volume vide ;
    ledit capteur (70) étant fonctionnellement raccordé à ladite unité de commande (60) ; ladite unité de commande (60) étant programmée pour mesurer ladite première quantité physique (V1, V2) également sur la base de ladite seconde quantité physique (p1,p2);
    ledit dispositif de remplissage (1) comprenant en outre une seconde ligne fluidique (24, 25) qui peut être raccordée de manière fluide au volume intérieur dudit article (2) et est apte à permettre l'échappement de l'élément aériforme lorsque ledit obturateur (15) est dans ladite première position ;
    ledit capteur (70) étant disposé le long de ladite seconde ligne fluidique (24, 25) ; caractérisé en ce qu'il comprend une première vanne (72) qui est intercalée le long de ladite seconde ligne (24, 25) et est sélectivement mobile entre :
    - une première position dans laquelle il permet l'écoulement dudit élément aériforme le long de ladite seconde ligne fluidique (24, 25) ; ou
    - une seconde position dans laquelle il empêche l'écoulement dudit élément aériforme le long de ladite seconde ligne fluidique (24, 25), de façon à augmenter et réduire cycliquement la pression le long de ladite seconde ligne fluidique (24, 25) et dudit volume vide ;
    ladite première vanne (72) pouvant être commandée pour interrompre l'écoulement dudit élément aériforme pendant un laps de temps (Δt) nécessaire afin d'obtenir une augmentation donnée (p1-p2) de la pression à l'intérieur dudit volume vide ;
    ladite unité de commande (60) étant programmée pour mesurer ladite première quantité physique (V1, V2) également sur la base dudit intervalle de temps (Δt).
  5. Dispositif de remplissage selon la revendication 4, caractérisé en ce qu'il comprend :
    - un collecteur (21) pour ledit élément aériforme ;
    - au moins une seconde vanne (22, 23) qui peut être sélectivement réglée dans une première position, dans laquelle elle relie de manière fluide ledit collecteur (21) et ladite seconde ligne fluidique (24, 25) ou dans une seconde position, dans laquelle elle isole de manière fluide ledit collecteur (21) et ladite seconde ligne fluidique (24, 25) ;
    - un point de déversement (41) qui peut être relié de manière fluide audit article (2), quand ledit obturateur (15) est dans ladite seconde position, et quand ledit article (2) est, en cours d'utilisation, en contact avec ledit corps de remplissage ;
    - une troisième ligne fluidique (71) qui s'étend entre ledit point de déversement (41) et ladite seconde ligne fluidique (24, 25) ;
    ladite unité de commande (60) étant programmée pour régler :
    - ladite première vanne (72) dans ladite première position ;
    - ladite au moins une seconde vanne (22, 23) dans ladite seconde position ; et
    - ledit obturateur (15) dans ladite première position, de façon à convoyer ledit élément aériforme vers ledit point de déversement (41), le long de ladite troisième ligne fluidique (71), quand ledit article (2) est, en cours d'utilisation, rempli avec ledit produit pouvant être versé.
  6. Unité de remplissage selon la revendication 4 ou 5, caractérisée en ce qu'elle comprend :
    - un capteur de flux (80) apte à mesurer une troisième quantité physique (Q) associée à la quantité de produit pouvant être versé qui a, en cours d'utilisation, rempli ledit article (2), quand ledit obturateur (15) est, en cours d'utilisation, dans ladite première position ;
    ladite unité de commande (60) étant programmée pour mesurer le volume dudit produit pouvant être versé, qui a rempli ledit article (2), pendant une première partie de l'intervalle de temps pendant lequel ledit obturateur (15) est, en cours d'utilisation, dans ladite première position ;
    ladite unité de commande (60) étant programmée pour mesurer ladite première quantité physique (V1, V2) pendant une seconde partie, successive à ladite première partie, de l'intervalle de temps pendant lequel ledit obturateur (15) est, en cours d'utilisation, dans ladite première position ;
    ladite unité de commande (60) étant programmée pour régler au moins une seconde vanne (22, 23) dans ladite première position pendant la première partie et dans ladite seconde position pendant ladite seconde partie.
EP14170711.7A 2014-05-30 2014-05-30 Procédé et dispositif pour remplissage d'un article avec un produit fluide Not-in-force EP2949618B1 (fr)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3326961A1 (fr) 2016-11-24 2018-05-30 Sidel Participations Procédé et dispositif de remplissage par contact d'un article avec un produit liquide
EP3326962A1 (fr) * 2016-11-24 2018-05-30 Sidel Participations Procédé et dispositif de remplissage par contact d'un article avec un produit liquide
WO2023110121A1 (fr) * 2021-12-17 2023-06-22 Sidel Participations Système et procédé de surveillance d'un processus de remplissage de contenants, dispositif de remplissage et machine de remplissage correspondants

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EP3202704B1 (fr) 2016-02-08 2018-09-26 Sidel Participations Procédé pour détecter l'état défectueux d'un article à contact rempli d'un produit fluide et dispositif de remplissage

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH07267297A (ja) * 1994-03-30 1995-10-17 Mitsubishi Heavy Ind Ltd 充填バルブ
JP2633820B2 (ja) * 1995-06-16 1997-07-23 ボッシュ包装機株式会社 液体の圧力充填方法
DE10306751B4 (de) * 2003-02-17 2005-06-09 Endress + Hauser Flowtec Ag, Reinach Vorrichtung zum Abfüllen eines Mediums
CN103429524B (zh) * 2011-04-06 2015-09-30 三菱重工食品包装机械株式会社 旋转式填充机及旋转式填充机的填充量运算方法

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3326961A1 (fr) 2016-11-24 2018-05-30 Sidel Participations Procédé et dispositif de remplissage par contact d'un article avec un produit liquide
EP3326962A1 (fr) * 2016-11-24 2018-05-30 Sidel Participations Procédé et dispositif de remplissage par contact d'un article avec un produit liquide
WO2018095715A1 (fr) * 2016-11-24 2018-05-31 Sidel Participations Procédé et dispositif de remplissage pour le remplissage par contact d'un article avec un produit versable
WO2018095714A1 (fr) 2016-11-24 2018-05-31 Sidel Participations Procédé et dispositif de remplissage pour le remplissage par contact d'un article avec un produit versable
WO2023110121A1 (fr) * 2021-12-17 2023-06-22 Sidel Participations Système et procédé de surveillance d'un processus de remplissage de contenants, dispositif de remplissage et machine de remplissage correspondants

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