WO2009135591A1 - Élément de remplissage et machine de remplissage équipée d'éléments de remplissage de ce type - Google Patents

Élément de remplissage et machine de remplissage équipée d'éléments de remplissage de ce type Download PDF

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Publication number
WO2009135591A1
WO2009135591A1 PCT/EP2009/002945 EP2009002945W WO2009135591A1 WO 2009135591 A1 WO2009135591 A1 WO 2009135591A1 EP 2009002945 W EP2009002945 W EP 2009002945W WO 2009135591 A1 WO2009135591 A1 WO 2009135591A1
Authority
WO
WIPO (PCT)
Prior art keywords
valve
filling
liquid
valve seat
filling element
Prior art date
Application number
PCT/EP2009/002945
Other languages
German (de)
English (en)
Inventor
Ludwig Clüsserath
Dieter-Rudolf Krulitsch
Bernd Bruch
Original Assignee
Khs Ag
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Khs Ag filed Critical Khs Ag
Priority to EP09741810A priority Critical patent/EP2285727A1/fr
Publication of WO2009135591A1 publication Critical patent/WO2009135591A1/fr

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Classifications

    • 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
    • B67C3/26Filling-heads; Means for engaging filling-heads with bottle necks

Definitions

  • the invention relates to a filling element according to the preamble of claim 1 and to a filling machine according to the preamble of claim 13.
  • Filling elements for filling a liquid filling material in bottles or similar containers are known in different designs. Also proposed have been filling elements which are suitable for filling a filling material which contains solid or solid components or the like admixtures in a liquid phase, as is the case, for example, with fruit preparations or fruit juice with fruit pieces or pulp.
  • the object of the invention is to show a filling element, which ensures a simplified operation and simplified control a reliable operation even when filling a filling, which contains firmer in a liquid or liquid-viscous to slightly viscous phase firmer components or pieces.
  • a filling element according to the patent claim 1 is formed.
  • a filling machine is the subject of claim 13.
  • the filling element according to the invention also provides means to ensure that the respective valve seat of the liquid valve with the valve closed is free of solid or solid components of the contents and thereby a tight closure of the liquid valve is ensured.
  • this is achieved by means of a retaining element moved along with the valve element, namely by retaining the firmer components with the liquid valve open and possibly in the area of the liquid valve or in the shut-off area in a further operating state between the open and closed operating states Any remaining solid or solid components are rinsed with the liquid contents.
  • the liquid valve is designed slide or rotary slide-like, so that when closing by the along the valve seat or in the immediate vicinity of the valve seat bewe Moving valve element displaced existing firmer components and / or removed by shearing, pushing away or wiping from the valve seat and thus the means for keeping the valve seat are formed.
  • the edge region of the slide-like or rotary valve-like valve element and / or the edge region of the valve seat having an opening formed like a knife edge.
  • Solid or solid constituents according to the invention are in particular constituents and admixtures which have a higher strength than the liquid phase of the filling material.
  • a liquid filling material according to the invention is u.a. also a liquid viscous to slightly viscous viscous medium.
  • Figures 1 - 3 in a very simplified representation and in section a filling element for filling containers in the form of bottles with a liquid product containing solid or solid components or pieces, each in different operating conditions.
  • FIGS 4 and 5 in an individual representation and in section along the line I - I of Figure 1 a valve body for use in the filling element of Figures 1-3.
  • FIG. 6-8 in representations similar to Figures 1-3 a further embodiment of the filling element according to the invention.
  • FIG. 9 is a detail view and in section similar to Figures 4 and 5, the valve body of the filling element of Figures 6-8.
  • 13 and 14 are each a sectional view of a filling element according to the invention in different operating states
  • FIGS. 15 and 16 representations similar to FIGS. 13 and 14 show a filling element according to the invention in different operating states
  • FIGS. 19 and 20 are sections corresponding to the line II-II of FIG. 17, in the operating states of FIGS. 17 and 18, respectively;
  • FIGS. 23 and 24 are sections corresponding to the line III-III of FIG. 21 in operating states corresponding to FIGS. 21 and 22, respectively.
  • 1 is a filling element of a filling system or a filling machine, for example a filling machine of a rotating design, which has a multiplicity of these filling elements 1 on the periphery of a rotor which can be driven circumferentially about a vertical machine axis or on the circumference of a ring vessel 2 provided on this rotor having.
  • the filling element 1 serves to fill a liquid filling material 3 which contains solid or solid components or pieces 4, for example for filling a fruit juice preparation (for example juice with fruit pieces) into containers formed as bottles 5.
  • the bottles 5 are upright during the filling process (jet filling), i. held with its container or bottle axis in the vertical direction and coaxially or approximately coaxially with a Greelementachse FA on a likewise provided on the rotating rotor container carrier 6, so that the bottle opening 5.1 is arranged at a distance below a discharge opening 7 of the filling element 1.
  • a product space or liquid channel 9 is formed, which communicates at an upper end via a liquid line 10 with flow meter 11 for a volume-controlled delivery of the filling material 3 in the bottles 5 with the interior of the ring vessel 2 in combination.
  • the lower end of the liquid channel 9 forms the discharge opening 7 on the underside of the housing 8.
  • a valve element or valve body 13 is attached to the lower end of a valve stem 12 and provided with a valve surface provided on the inner surface of the liquid channel 9 in the region of the discharge opening 7 14 or a valve seat and cooperates, which forms the delivery of the filling material 3 in the bottles 5 controlling liquid valve 15.
  • the liquid channel 9 is formed with three in the direction of the Greelementachse FA from top to bottom subsequent sections 9.1, 9.2 and 9.3, of which the section 9.1 has the larger cross-section, the adjoining section 9.2 with an axis FA circular cylindrical reduced cross-section and the section 9.3, which forms the valve seat 14 and the discharge opening 7, have a conical or funnel-shaped reduced to this discharge opening 7 cross-section.
  • a retaining element 16 is provided at a distance from the lower, cooperating with the valve seat 14 valve body end, which in the illustrated embodiment bell-shaped running with an axis FA concentrically enclosing circular cylindrical wall 17 and an upper header 18, which the the valve body 13th connected by a distance concentrically enclosing wall 17 with the valve body 13.
  • the valve body 13 is for example made in one piece with the retaining element 16.
  • the annular space 19 formed between the wall 17 and the valve body 13 is open to the underside of the retaining element 16.
  • the headpiece 18 is screen-like with a plurality formed by through holes or bore 20 which are open both at the top of the head piece 18 and at the bottom of this head piece in the annular space 19.
  • the outer diameter of the circular cylindrical wall 19 is equal to or only slightly smaller than the diameter of the circular cylindrical portion 9.2.
  • the valve stem 12 actuator 21 which is driven pneumatically, for example, the valve body 13 with the retaining element 16 in the direction of the axis FA controlled between three operating states or stroke positions movable, which are shown in Figures 1, 2 and 3.
  • the valve body 13 moved away from the valve seat 14 so far that the liquid valve 15 is completely opened, but also the retaining element 16 is moved out of the section 9.2 of the liquid channel, so that the liquid product together with the solid components or pieces as free jet 3.1 on the bottle opening 5.1 can flow into the respective bottle 5.
  • FIG. 3 shows the lowest stroke position of the valve body 13, in which the valve body bears tightly against the valve seat 14, so that the liquid valve 15 and the discharge opening 7 are thereby closed.
  • the solid constituents 4 are further retained in the section 9.1 of the liquid channel 19.
  • a bellows-like seal 22 is provided, which surrounds the valve stem 12 and sealed at its upper end to the housing 8 and sealed at its lower end to the valve stem 12.
  • the seal 22 extends over the entire length of the valve stem 12th
  • the sieve-like structure of the head piece 18 can be produced not only by a plurality of openings 20 but also otherwise, for example by a plurality of through slots 23 provided in the head piece 18.
  • FIGS. 6-9 show, as a further embodiment, a filling element 1a, which differs from the filling element 1 only by the formation of the retaining element 16a corresponding to the retaining element 16 on the valve body 13a corresponding to the valve body 13.
  • the retaining element is formed in this embodiment in that the valve body 13 a between its lower, cooperating with the valve seat 14 end and its upper end connected to the valve stem 12 has a portion of an enlarged diameter, the circular cylindrical outer cross-section in turn equal to or about the same Cross-section of the circular cylindrical portion 9.2 of the liquid channel 9 and which is provided at the outer region with a plurality of grooves 24 which are axially open both radially and at both ends.
  • FIG. 6 shows the filling element 1a with the valve body 13a moved into the uppermost stroke position, so that the liquid valve 15 is completely opened and the retaining element 16a is also outside the section 9.2 of the liquid channel and thus the liquid filling material 3 together with the solid constituents 4 free jet 3.1 can flow into the arranged on the filling element 1.1 bottle 5.
  • Figure 7 shows the valve body 13a in the middle stroke position, i.
  • FIG. 8 shows the filling element 1 with the liquid valve 15 completely closed and with the valve body 13a tight against the valve seat 14.
  • FIGS. 10-11 show, as a further embodiment, a filling element 1b which differs from the filling element 1 essentially in that a bell-like retaining element 25 is provided on the valve tappet 12, which essentially comprises a sleeve-like section 26 enclosing the valve tappet 12 formed, radially wegêt head piece 27 and an integrally formed on the head piece 27 circular cylindrical wall portion 28 which surrounds the portion 26 at a distance concentric.
  • the headpiece 27 is in turn formed like a sieve with a plurality of openings 29 or other suitable openings.
  • the wall section 28 at its lower, the axis FA concentrically enclosing annular edge 28.1 has a diameter which is slightly larger than the inner diameter of the portion 9.2 of the liquid channel.
  • the retaining element 25 is biased in a lower position, in which it with the lower edge of the section 26, for example, against a on the Bottom of the valve stem 12 mounted valve body 13b is supported, which corresponds to the valve body 13 and in cooperation with the valve seat 14, the liquid valve 15b of the filling element 1b forms.
  • the actuating device 21 three operating states are also possible for the filling element 1b.
  • a first state of the filling element 1b is shown in FIG. In this state, not only the liquid valve 15b is fully opened, but also the retaining element is raised so far that the liquid product 3 can flow together with the solid components 4 via the bottle opening 5.1 in the relevant bottle 5.
  • a second state of the filling element 1b is shown in FIG. Although in this state, the liquid valve 15b is still open, but the retaining element 25 rests with the lower edge 28.1 against the inner surface of the liquid channel 9 at the transition between sections 9.1 and 9.2, so that the solid constituents 4 are retained in section 9.1 and only the liquid product 3 can flow through the openings 29 into the section 9.2 and from there via the discharge opening into the respective bottle 4, with flushing of the sections 9.2 and 9.3 of any remaining solid components. 4
  • FIG. 12 shows the completely closed state of the filling element 1b or of the liquid valve 15b.
  • the valve body 13b abuts against the valve seat 14.
  • the retaining element 25 is further pressed against the inner surface of the liquid channel 9 by the compression spring 30 with the lower edge 28.1, so that the sections 9.2 and 9.3 for the solid constituents 4 are closed.
  • the above-described filling elements 1, 1a, 1b have in common that they each have at least three defined operating states.
  • the filling of the bottles 5 with the liquid contents 3 having the constituents 4 takes place, for example, in principle such that after the positioning of the respective bottle 5 below the discharge opening 7, the initially closed filling element 1, 1a, 1b (shown in FIGS. 3, 8 and 12) is completely opened by means of the actuating device 21, so that it occupies the state shown in Figures 1, 6 and 10 and with the liquid product 3, the solid constituents 4 via the discharge opening 7 in a free jet (3.1) in the bottle 5 are introduced.
  • the filling element 1, 1a or 1b is controlled by the signal of the flow meter 11 with the actuator 21 in the state shown in Figures 2, 7, 11, in which by the retaining element 16, 16a and 25, respectively, the sections 9.2 and 9.3 of the liquid channel 9 are blocked for the solid constituents 4 and only the liquid product 3 flows into the bottle 5, even while flushing these liquid channel sections.
  • the filling element 1, 1a or 1b is completely closed so that it has the state shown in FIGS. 3, 8 and 12.
  • FIGS. 13 and 14 show, as a further embodiment, a filling element 1c, which in turn serves as part of a filling machine for filling the bottles 2 with the filling material 3 having liquid components 4 which are solid.
  • the filling element 1c is provided with a large number of similar filling elements on the peripheral region of a rotor which can be driven circumferentially about a vertical machine axis, that is to say, in particular on the underside. attached to the side of a ring bowl 2 corresponding ring boiler 32, which forms part of the rotor containing liquid contents 3 with the solid components 4 and is provided for all filling elements 1 c of the filling machine together.
  • two bellows-like seals 22 enclosing the valve tappet 12 are provided in the filling element 1b, which are each connected at one end to the section 26 in a sealed manner.
  • the upper seal 22 is sealed at its upper end to the housing 8, while the lower seal 22 is sealed at its lower end to the valve body 13b.
  • a product space 34 closed towards the outside is formed, which communicates with the interior of the annular tank 32 at the top side of the housing 33 via an opening.
  • the housing 33 forms a dispensing opening 7 corresponding dispensing opening 35, via which the filling material 3 with the solid components 4 during the filling process or with the liquid valve 1c open as a free jet 3.1 of the respective below the filling element 1c at a distance from the discharge opening 35th arranged bottle 5 flows through the bottle opening 5.1.
  • a valve body 36 is arranged, which is wedge-shaped in the illustrated embodiment and on one of the underside of the housing 33 facing side forms a flat or substantially planar valve surface 36.1.
  • valve body 36 is sealed when the filling element 1c is closed against a valve seat 37 surrounding the dispensing opening 35 on the inside of the housing, which is formed by a somewhat raised annular surface from an area adjacent to the housing inner surface.
  • the valve body 36 is made of metal or of another suitable material, for example of a food-safe or food-compatible, elastic plastic, so that when against the valve seat 37 fitting valve body 36 ( Figure 14), the discharge port 35 and the valve body 36 and the valve seat 37 formed liquid valve 38 is sealed.
  • the vertical axis of the discharge opening 35 in turn, also defines the filling element axis FA in the case of the filling element 1c.
  • valve body 36 is provided at the end of a valve stem 39 which is arranged with its axis oblique to the Greelementachse FA, in such a way that the axis of the valve stem 39 with the axis FA an angle ⁇ less than 90 ° includes, which opens to the top of the filling element 1c.
  • the arrangement is further made such that the plane of the valve surface 36.1 with the axis of the valve stem 39 includes an angle ß, which is supplemented with the angle ⁇ to an angle of 90 °.
  • an actuator 40 of the valve stem for opening and closing the liquid valve 38 is axially movable, between a corresponding to the open state of the liquid valve 38 and shown in FIG 13 position in which the valve body 36 laterally from the axis FA and with its Valve surface 36.1 above the plane of the valve seat 37 and spaced therefrom, and the position shown in the figure 14, the closed state of the liquid valve 38 corresponds and in which the valve body 36 bears tightly against the valve seat 37.
  • valve body 36 Shortly before closing the liquid valve 38, the valve body 36 moves in the slide-like design liquid valve 36 close along the valve seat 37 having housing inner surface, with the wedge-like tapered side ahead.
  • solid components 4 which are at random when closing the liquid valve 38 in the region of the valve seat 37 and in Absperr Scheme, displaced to the side.
  • solid components 4 due to the radially oriented to the axis FA component of the movement of the valve body 36 immediately before the closing of the liquid valve 38 and a removal of solid components 4, which are randomly located on the valve seat 37 and / or deposited there.
  • valve stem 39 is in turn surrounded by a bellows-type seal 41, which is tightly attached at one end to the valve stem and at its other end to a sealing the product space 34 flange 40 of the actuator.
  • FIGS. 15 and 16 show, as a further embodiment, a filling element 1d, which corresponds to the filling element 1c from the use and principle of operation.
  • the valve body 36d which is moved in the manner of a slider, is fastened to the free end of a valve tappet 39d which is inclined with its axis relative to the axis FA and can be moved in a controlled manner by means of an actuating device 40d with this valve tappet.
  • valve body 36d tapering in a wedge-like or knife-edged manner on its side facing away from the valve stem 39d cooperates with a valve seat 37d surrounding the discharge opening 35 on the inside of the housing, which in this embodiment is arranged in a plane which is inclined relative to the axis FA, that the axis of the valve stem 39d is parallel to this plane.
  • the valve body 36d and the valve seat 37d constitute the liquid valve 38d in this embodiment. This is shown in the open state in FIG. 15, in which the valve body 36d is located laterally from the discharge opening 37 or the valve seat 37d.
  • FIG. 16 shows the closed state of the liquid valve 38d, in which the valve body 36d bears against the valve seat 37.
  • the filling element 1d an additional actuator 42 with a plunger 43 which is arranged with its axis coaxially with the axis FA and is axially movable by the actuator 42, in such a manner that when the liquid valve 38d is closed, the lower pressed free end of the plunger 43 pressed against the valve seat 37d facing away from the top of the valve body 36d and thereby presses the valve body 36d against the valve seat 37d.
  • the valve body 36d is formed on its upper side with a contact surface 44 for the plunger 43. When the liquid valve 38a is open, the plunger 43 is raised.
  • the seal 41 is provided for sealing the product space 34d with respect to the actuating device 40d.
  • the seal 41 is provided for sealing the product space 34d relative to the actuator 42.
  • the plunger 43 enclosing and on the one hand with this plunger and on the other hand with a mounting flange of the actuator 42 tightly connected bellows-like seal 45 is provided.
  • FIGS. 17-20 show, as a further embodiment, a filling element 1e, which in turn is part of a filling machine, for example a filling machine of a rotating design, and is arranged with a plurality of similar filling elements on the peripheral region of a rotor driven peripherally about a vertical machine axis.
  • the filling element 1e consists essentially of a housing 46 in which a product space or liquid channel 47 sealed to the outside is formed, which on the one hand communicates with a boiler or ring vessel, which contains the filling material 3 with the solid constituents 4 and for all filling elements 1e of the filling machine is provided in common.
  • the liquid channel 47 forms a discharge opening 48, is introduced via the filling material 3 with the solid components 4 during the filling process in the arranged below the filling element 1e bottle 5 in a free jet 3.1.
  • an intermediate bottom 49 of the liquid channel 47 is in an upper channel portion 47.1 of larger diameter and a lower channel portion 47.2, which is funnel-shaped constricting down and has the same axis with the Greelementachse FA arranged discharge opening 48.
  • the intermediate bottom 49 180 ° are offset from one another about the axis FA and two through-openings 50 are provided in the same radial distance from this axis, which in the illustrated embodiment are in each case circular with the same diameter.
  • the intermediate bottom 49 with the passage openings 50 is part of the rotary valve-like liquid valve 51 of the filling element 1e.
  • a shaft 52 which is arranged coaxially with the axis FA and can be rotated or swiveled by an actuating device 53 about its axis, a wing-like valve or rotary valve element 54 is fastened.
  • the rotary valve member 54 By controlling rotation of the shaft 52, the rotary valve member 54 is rotatable for opening the liquid valve 51 to a position exposing the passage openings 50 and also for closing the liquid valve 51 to a position in which the rotary valve member 54 with its wing members, the two passage openings 50 tightly seals and against these openings surrounding valve seats.
  • a rotation of the shaft 52 by 90 ° takes place for opening and closing the liquid valve 51.
  • Solid, but also softer components 4 which are randomly located in the region of the passage openings 50 when closing, are separated between the rotary valve element 54 and the edge of the passage openings 50.
  • the passage openings 50 and / or the rotary valve element 54 are formed like a knife edge in the edge region.
  • the actuating device 53 In order to improve the tightness when the liquid valve 51 is closed, it is possible to design the actuating device 53 in such a way that, when opening and closing the liquid valve 51, it does not only provide a controlled rotational movement. tion of the shaft 52 causes, but at the same time an axial movement or force in the form that at least after rotating the rotary valve element 54 in the closed position by an axial force exerted on the shaft 52 at the same time pressing the rotary valve element 54 against the passage openings 50 and takes place against the local valve seats.
  • the passage openings 50 can also be openings of two channels formed in the housing 46, which then open into the common discharge opening 48.
  • the actuating element 53 is formed, for example, by a servo or servomotor, by at least one pneumatic cylinder or by a mechanical lifting system.
  • FIGS. 21-24 show a filling element 1f which, together with a multiplicity of similar filling elements, is also part of a filling machine of a rotating design.
  • the filling element 1f consists essentially of a housing 55 with a closed to the outside liquid channel or product space 56, the upper portion 56.1 is connected to a filling material 3 and the solid constituents 4, common to all filling elements 1f of the filling machine boiler.
  • the lower, funnel-like tapered section 56.2 of the product space 56 in turn opens into the same axis with the Greelementachse FA arranged discharge opening 57 for dispensing the filling material 3 with the components 4 in each with their bottle opening 5.1 at a distance below the filling element 1f arranged bottle fifth
  • a valve or rotary valve element 59 is fastened eccentrically or radially away from the shaft 58.
  • the arranged with its axis parallel to the axis FA shaft is rotatable or pivotable by an actuator 60, for example by an angular range of 60 ° to 90 °, in such a way that the rotary valve element 59, which in cooperation with a valve seat 61, the liquid valve 62 of the filling element 1f, with the liquid valve 62 open laterally from the formed at the transition between the sections 56.1 and 56.2 and the local passage or valve opening annularly enclosing valve seat 61 is located and with closed liquid valve 62 against this annular valve seat 61 and thereby the transition between tightly closes sections 56.1 and 56.2.
  • Solid components 4 which are accidentally in the shut-off or closing area when the liquid valve 62 is closed, are sheared off by the rotary valve element 59. This is designed knife-like for this purpose at its edge.
  • an additional, coaxially arranged with the axis FA plunger 63 is provided, which is axially movable by the actuator 60, in such a way that this plunger at ge closed liquid valve 62 pressed against the discharge opening 57 facing away from the upper side of the rotary valve element 59 pressed against and thereby additionally presses this element against the valve seat 61.
  • the plunger 63 is raised.
  • the filling elements 1c, 1d, 1e and 1f have in common that these filling elements are also suitable for filling a liquid filling material 3 with solid or soft constituents 4 or admixtures, but have only two operating states, namely an open and closed operating state, being random in the Absperr Scheme existing solid or soft components 4 either displaced or sheared off.

Landscapes

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

Abstract

L'invention concerne un élément de remplissage pour le remplissage d'un produit de remplissage qui contient, dans une phase liquide, des composants plus ou moins solides (4). Cet élément de remplissage comprend au moins une chambre à produit ou un canal à liquide (9, 34, 34d, 47, 56) ménagé dans un corps (8, 33, 33d, 45, 55), cette chambre ou ce canal pouvant être relié à un réservoir (2, 32) dans lequel est stocké le produit de remplissage (3) et présentant une ouverture de sortie (7, 35, 48, 57) par laquelle le produit de remplissage (3) peut être transvasé dans une bouteille ou un contenant similaire (5) à remplir. L'élément de remplissage comprend par ailleurs au moins un élément de soupape (13, 13a, 13b, 36, 36d, 54, 59) qui peut être déplacé entre au moins deux états de fonctionnement pour ouvrir et fermer l'élément de remplissage (1, 1a - 1f) ou une soupape à liquide (15, 15a, 15b, 38, 38d, 51, 62) formée par l'élément de soupape. L'élément de remplissage selon l'invention est caractérisé par des moyens destinés à empêcher l'accumulation de composants solides (4) contenus dans le produit de remplissage (3) au niveau du siège de soupape (14, 37, 37d, 50, 61) lorsque la soupape à liquide (15, 15a, 15b, 34, 34d, 51, 62) est fermée, ces moyens étant déplacés simultanément avec l'élément de soupape (13, 13a, 13b, 36, 36d, 54, 59).
PCT/EP2009/002945 2008-05-06 2009-04-23 Élément de remplissage et machine de remplissage équipée d'éléments de remplissage de ce type WO2009135591A1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
EP09741810A EP2285727A1 (fr) 2008-05-06 2009-04-23 Élément de remplissage et machine de remplissage équipée d'éléments de remplissage de ce type

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102008022398.0 2008-05-06
DE200810022398 DE102008022398A1 (de) 2008-05-06 2008-05-06 Füllelement sowie Füllmaschine mit derartigen Füllelementen

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WO2009135591A1 true WO2009135591A1 (fr) 2009-11-12

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Country Link
EP (1) EP2285727A1 (fr)
DE (1) DE102008022398A1 (fr)
WO (1) WO2009135591A1 (fr)

Cited By (6)

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Publication number Priority date Publication date Assignee Title
WO2011085709A1 (fr) 2010-01-15 2011-07-21 Sig Technology Ag Procédé et dispositif pour verser des produits
WO2012007076A1 (fr) * 2010-07-16 2012-01-19 Khs Gmbh Élément, procédé et système de remplissage de contenants
WO2012139731A1 (fr) * 2011-04-15 2012-10-18 Khs Gmbh Élément de remplissage
FR3007741A1 (fr) * 2013-09-25 2015-01-02 Sidel Participations Buse de dosage pour machine de remplissage de recipients
CN105174173A (zh) * 2015-08-04 2015-12-23 广州达意隆包装机械股份有限公司 回流灌装阀
IT201700097660A1 (it) * 2017-08-30 2019-03-02 Cft Spa Riempitrice

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US2426809A (en) * 1943-12-30 1947-09-02 Continental Can Co Position retaining mechanism for filling valves
GB962290A (en) * 1961-08-22 1964-07-01 Holstein & Kappert Maschf Improvements in or relating to valved filling elements
WO2007137727A2 (fr) * 2006-05-29 2007-12-06 Khs Ag Élément de remplissage et machine de remplissage munie d'éléments de remplissage de ce type

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US1938942A (en) * 1930-04-18 1933-12-12 American Machine & Metals Automatic measuring device
DE19504546C1 (de) * 1995-02-11 1996-08-01 Hassia Verpackung Ag Dosierventil an Dosierpumpen

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2426809A (en) * 1943-12-30 1947-09-02 Continental Can Co Position retaining mechanism for filling valves
GB962290A (en) * 1961-08-22 1964-07-01 Holstein & Kappert Maschf Improvements in or relating to valved filling elements
WO2007137727A2 (fr) * 2006-05-29 2007-12-06 Khs Ag Élément de remplissage et machine de remplissage munie d'éléments de remplissage de ce type

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2011085709A1 (fr) 2010-01-15 2011-07-21 Sig Technology Ag Procédé et dispositif pour verser des produits
EP2523860B1 (fr) * 2010-01-15 2015-07-01 SIG Technology AG Procédé et dispositif pour remplir des produits.
WO2012007076A1 (fr) * 2010-07-16 2012-01-19 Khs Gmbh Élément, procédé et système de remplissage de contenants
US9193574B2 (en) 2010-07-16 2015-11-24 Khs Gmbh Filling element, method and filling system for filling containers
WO2012139731A1 (fr) * 2011-04-15 2012-10-18 Khs Gmbh Élément de remplissage
FR3007741A1 (fr) * 2013-09-25 2015-01-02 Sidel Participations Buse de dosage pour machine de remplissage de recipients
CN105174173A (zh) * 2015-08-04 2015-12-23 广州达意隆包装机械股份有限公司 回流灌装阀
IT201700097660A1 (it) * 2017-08-30 2019-03-02 Cft Spa Riempitrice
WO2019043585A1 (fr) * 2017-08-30 2019-03-07 Cft S.P.A. Remplisseur

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