EP4196754A1 - Fluidproduktausgabemechanismus für eine produktausgabemaschine und zugehörige maschine - Google Patents

Fluidproduktausgabemechanismus für eine produktausgabemaschine und zugehörige maschine

Info

Publication number
EP4196754A1
EP4196754A1 EP21758674.2A EP21758674A EP4196754A1 EP 4196754 A1 EP4196754 A1 EP 4196754A1 EP 21758674 A EP21758674 A EP 21758674A EP 4196754 A1 EP4196754 A1 EP 4196754A1
Authority
EP
European Patent Office
Prior art keywords
product
syringe
displacement
piston
syringe body
Prior art date
Legal status (The legal status 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 status listed.)
Withdrawn
Application number
EP21758674.2A
Other languages
English (en)
French (fr)
Inventor
Yan Eric PAFUMI
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Capsum SAS
Original Assignee
Capsum SAS
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 Capsum SAS filed Critical Capsum SAS
Publication of EP4196754A1 publication Critical patent/EP4196754A1/de
Withdrawn legal-status Critical Current

Links

Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01FMEASURING VOLUME, VOLUME FLOW, MASS FLOW OR LIQUID LEVEL; METERING BY VOLUME
    • G01F11/00Apparatus requiring external operation adapted at each repeated and identical operation to measure and separate a predetermined volume of fluid or fluent solid material from a supply or container, without regard to weight, and to deliver it
    • G01F11/02Apparatus requiring external operation adapted at each repeated and identical operation to measure and separate a predetermined volume of fluid or fluent solid material from a supply or container, without regard to weight, and to deliver it with measuring chambers which expand or contract during measurement
    • G01F11/021Apparatus requiring external operation adapted at each repeated and identical operation to measure and separate a predetermined volume of fluid or fluent solid material from a supply or container, without regard to weight, and to deliver it with measuring chambers which expand or contract during measurement of the piston type
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B3/00Packaging plastic material, semiliquids, liquids or mixed solids and liquids, in individual containers or receptacles, e.g. bags, sacks, boxes, cartons, cans, or jars
    • B65B3/04Methods of, or means for, filling the material into the containers or receptacles
    • B65B3/10Methods of, or means for, filling the material into the containers or receptacles by application of pressure to material
    • B65B3/12Methods of, or means for, filling the material into the containers or receptacles by application of pressure to material mechanically, e.g. by pistons or pumps
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B3/00Packaging plastic material, semiliquids, liquids or mixed solids and liquids, in individual containers or receptacles, e.g. bags, sacks, boxes, cartons, cans, or jars
    • B65B3/26Methods or devices for controlling the quantity of the material fed or filled
    • B65B3/28Methods or devices for controlling the quantity of the material fed or filled by weighing
    • 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
    • B65B43/54Means for supporting containers or receptacles during the filling operation
    • B65B43/59Means for supporting containers or receptacles during the filling operation vertically movable
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07FCOIN-FREED OR LIKE APPARATUS
    • G07F13/00Coin-freed apparatus for controlling dispensing or fluids, semiliquids or granular material from reservoirs
    • G07F13/02Coin-freed apparatus for controlling dispensing or fluids, semiliquids or granular material from reservoirs by volume
    • G07F13/025Coin-freed apparatus for controlling dispensing or fluids, semiliquids or granular material from reservoirs by volume wherein the volume is determined during delivery
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07FCOIN-FREED OR LIKE APPARATUS
    • G07F15/00Coin-freed apparatus with meter-controlled dispensing of liquid, gas or electricity
    • G07F15/02Coin-freed apparatus with meter-controlled dispensing of liquid, gas or electricity in which the quantity mechanism is set forward by hand after insertion of a coin
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B11/00Single-unit hand-held apparatus in which flow of contents is produced by the muscular force of the operator at the moment of use
    • B05B11/0005Components or details
    • B05B11/0097Means for filling or refilling the sprayer

Definitions

  • TITLE Fluid product dispensing mechanism, intended for a product dispensing machine and associated machine
  • the present invention relates to a fluid product dispensing mechanism, intended for a product dispensing machine, comprising a dispensing nozzle.
  • the machine is for example a product distribution terminal in a commercial space, intended to be used directly by a consumer.
  • the machine is particularly suitable for a consumer who comes to the commercial space with empty packaging, or one that has been cleaned extemporaneously.
  • composition a continuous phase, generally aqueous, and a dispersed phase not or only slightly miscible with the continuous phase, generally oily, in the form of microscopic drops, in particular with an average diameter of less than 250 microns.
  • liquid bulk dispensing machines are offered by 3J Development (3JD) or CoZie.
  • compositions of high viscosities and/or compositions in the form of emulsions or dispersions provided with a dispersed phase in the form of macroscopic drops in particular of a mean diameter greater than or equal to 250 microns, preferably greater than or equal to 500 microns, or even greater than or equal to 750 microns.
  • compositions must generally be handled with great care to allow reliable and deterioration-free dispensing of the dispersed phases present in the composition.
  • An object of the invention is to obtain a product dispensing mechanism, in particular capable of delivering viscous compositions and/or compositions having drops macroscopic, which is reliable in use, simple to maintain, in particular in a commercial space and which does not cause significant deterioration of the composition dispensed.
  • the subject of the invention is a mechanism of the aforementioned type, characterized by:
  • a syringe comprising a syringe body intended to receive the product, connected to the dispensing nozzle, and a piston comprising a piston head sealingly closing the syringe body, a stem and a gripping member carried by the stem;
  • the displacement actuator comprising a displacement member and a device for locking the gripping member, clean to pass from an open configuration for receiving the gripper member to a closed configuration for blocking the gripper member in which the gripper member is integral in translation with the displacement member in the two opposite directions of shift.
  • the mechanism according to the invention may comprise one or more of the following characteristics, taken separately or in any technically possible combination:
  • the locking device comprises a clevis and a bolt mounted so as to be able to rotate about an axis with respect to the clevis, the bolt comprising a cavity of a shape complementary to the gripping member;
  • the lock defines a slot opening into the cavity, the rod fitting into the slot in the closed configuration
  • the locking device comprises a lock locking actuator, capable of moving the lock to move the locking device from the open configuration to the closed configuration;
  • the locking device is movable together with the displacement member
  • the gripping member is of revolution around the axis of movement, the gripping member preferably being a sphere;
  • the locking device is capable of being inserted at least partially into the syringe body
  • a device for fixing the syringe body comprising a bayonet fitting
  • the device for fixing the syringe body comprises a rotation locking lug of the syringe capable of cooperating with a rotation locking projection on the syringe body;
  • it comprises a support device for a container intended to receive the fluid product, the support device comprising a cup for receiving the container, placed opposite the nozzle, the cup being movable between a retracted position for placing the container, and a deployed position for moving the container towards the nozzle;
  • the support device comprises a gauge for measuring the weight applied to the bucket, movable together with the bucket;
  • the support device comprises a rod for transmitting the weight applied to the bucket, and a spring interposed between the transmission rod and the bucket;
  • the product comprises at least one phase dispersed in a continuous phase, in particular the product is in the form of an emulsion comprising a phase dispersed in the form of macroscopic drops, in particular with an average diameter greater than or equal to 250 micrometers, preferably greater than or equal to 500 micrometers, or even greater than or equal to 750 microns;
  • a central control unit for the displacement actuator capable of controlling the displacement actuator to deliver at least a predetermined quantity of product by displacement of the piston in the syringe body in a first direction, then optionally, in the end of the delivery of the or each predetermined quantity of product, to move the piston in a second direction opposite to the first direction on a predetermined return stroke.
  • the invention also relates to a product dispensing machine comprising:
  • Figure 1 is a perspective view, three-quarter face, of a first product dispensing machine equipped with a dispensing mechanism according to the invention
  • Figure 2 is a view similar to Figure 1 of the product dispensing mechanism according to the invention.
  • Figure 3 is a bottom view of a detail of the product dispensing mechanism
  • Figure 4 is a view of a detail marked IV in Figure 3;
  • Figure 5 is an enlarged view of Figure 4, with only the relevant parts to illustrate the locking device of the mechanism;
  • Figure 6 is a view of a replaceable syringe for the delivery mechanism of Figure 2;
  • Figure 7 is a view of the syringe body and its support
  • Figure 8 is a view of a support device of a container in which the product is delivered.
  • a first product dispensing mechanism 10 according to the invention is illustrated in Figure 2.
  • the mechanism 10 is intended for a product dispensing machine 12 visible in Figure 1.
  • the product dispensed by the mechanism 10 is a fluid product, in particular a composition, in particular a cosmetic composition.
  • fluid product we mean a product which, at ambient temperature and atmospheric pressure, is capable of flowing under its own weight, as opposed to a solid composition.
  • the viscosity of a fluid product or of at least one of its phases can vary significantly, which makes it possible to obtain varied textures.
  • the viscosity is measured at ambient temperature and at ambient pressure according to the method described in WO2017046305.
  • a fluid product has a viscosity of from 1 mPa.s to 500,000 mPa.s, preferably from 10 mPa.s to 300,000 mPa.s, better still from 400 mPa.s to 100,000 mPa. s, and more particularly from 1,000 mPa.s to 30,000 mPa.s, as measured at 25° C. according to the method described above.
  • composition is advantageously in the form of a single or multiple emulsion, comprising a continuous phase and a phase dispersed in the form of macroscopic drops, in particular with an average diameter greater than or equal to 250 microns, preferably greater than or equal to 500 microns, or even greater than or equal to 750 microns.
  • the composition is in the form of a simple emulsion, in particular oil-in-water or water-in-oil, and better oil-in-water.
  • T 25° C. ⁇ 2° C.
  • atmospheric pressure 760 mm Hg, ie 1.013 ⁇ 10 5 Pa or 10 13 mbar.
  • the solubility at ambient temperature and at atmospheric pressure of the dispersed phase in the continuous phase is advantageously less than 5% by weight, and vice versa.
  • the aforementioned emulsions can be designated interchangeably by the term “dispersions”.
  • the composition is a composition is as described in WO2017046305 or in French patent applications n°2005408 and n°2005410 filed on May 21, 2020.
  • the product dispensing machine 12 is here a terminal intended to be placed for example in a commercial space, in particular in a store.
  • the terminal is accessible to a consumer of the product, in particular to fill a container 14 with product.
  • the container 14 is for example a container brought by the consumer, or a container 14 provided to the consumer by the sales area.
  • the machine 12 comprises, in addition to the dispensing mechanism 10, an outer casing 16 partly containing the mechanism 10.
  • the outer casing 16 here comprises an upper plate 18 from which at least a part of the mechanism 10 projects out of the casing 16, and a peripheral wall 20.
  • the peripheral wall 20 delimits an interior volume 22, closed at the top by the upper plate 18.
  • the interior volume 22 receives another part of the mechanism 10.
  • the peripheral wall 20 preferably delimits an access flap (not shown) to the volume inside 22, to allow the maintenance of the mechanism 10, and the replacement of consumables.
  • dispensing mechanism 10 includes dispensing nozzle 30, replaceable syringe 32, and tubing 34 connecting syringe 32 to nozzle 30.
  • the mechanism 10 further comprises a syringe support 36, to allow the removable mounting of the syringe 32 and a displacement actuator 38, suitable for allowing the dispensing of product from the syringe 32.
  • the mechanism 10 further comprises a device 40 for motorized support of the container 14, and/or a central control unit 42 for controlling the mechanism 10.
  • the dispensing nozzle 30 includes a rigid spout 50 which here extends vertically.
  • the rigid spout 50 here extends vertically and opens downwards.
  • the nozzle 30 further comprises a curved arm 52 (see Figure 1) which carries the tube 34 and the spout 50 above the upper plate 18.
  • the curved arm 52 further comprises a device for holding the end of the tube 34 opposite syringe 32 and/or spout 50.
  • this holding device can be represented by a clip-on clamping ring.
  • the rigid spout 50 is provided with an advantageously cylindrical bulge, capable of cooperating with the curved arm 52 which is then provided with a housing for receiving the bulge.
  • the holding device can be activated, by example manually to maintain the position and orientation of the spout 52 relative to the support device 40 of the container 14.
  • dispensing nozzle 30 has no rigid spout 50, the free end of tube 34 being mounted in the holding device.
  • the tube 34 is intended to connect the syringe 32 to the nozzle 30. It comprises a flexible conduit 54, intended to extend over or under the curved arm 52, preferably on the curved arm 52, and optionally a stop valve 56 capable of being manipulated from a closed configuration of the syringe 32, during storage and transport thereof, to an open configuration for use.
  • the stop valve 56 is for example actuated by rotation around an axis coaxial with the axis A-A' of the syringe 32.
  • shut-off valve 56 Alternatively, a plug is placed on spout 50 or on the free end of tube 34 to replace shut-off valve 56.
  • the syringe 32 is intended to contain the product dispensed by the mechanism 10 in a leaktight manner. With reference to FIGS. 4 to 6, it comprises a syringe body 60 defining an interior volume 61 containing the product, a piston syringe 60 to close the interior volume 61, and a mechanism 64 for fixing to the support.
  • the syringe 32 is illustrated as mounted with a vertical syringe axis A-A', corresponding to the axis of movement of the piston 62, the piston 62 closing the syringe 32 downwards.
  • the terms used, in particular the terms “top”, “bottom”, “upper”, “lower” are therefore relative to this orientation.
  • Other orientations of the syringe 32 are possible, in particular inclined, horizontal or upside down.
  • upstream and downstream are understood in relation to the normal direction of distribution of the product outside the mechanism 10.
  • the syringe body 60 is here substantially cylindrical with axis A-A'. It has an open base 66 upstream and a syringe head 68 downstream. Valve 56 of tube 34 is attached to syringe head 68.
  • the interior volume 61 is delimited in a sealed manner by the syringe body 60. It opens downstream through the head 68 and upstream through the base 66.
  • the syringe body 60 is easy to handle and has a moderate weight. It is removable and cleanable. Preferably, it is made of a transparent or translucent material.
  • the interior volume 61 is greater than or equal to 500 ml, better still greater than or equal to 1 liter, and in particular greater than or equal to 1.5 liters.
  • the fixing mechanism 64 comprises a notch 70 in the shape of an inverted L, a peripheral collar 72, and at least one projection 74 for locking in rotation.
  • the notch 70 is intended to receive an abutment of the syringe holder 36 to form a bayonet type fixing. It has an axial portion for introducing the stopper opening upstream along the axis A-A', and a peripheral portion for blocking the stopper extending around the axis A-A'.
  • the fixing mechanism 64 comprises several locking projections 74.
  • the projections 74 are made in the collar 72 to cooperate with a lug of the syringe support 36 and prevent the rotation of the syringe 32 in the syringe support 36, as we will see below.
  • the piston 62 comprises a piston head 80, at least one peripheral seal 82, mounted on the piston head 80, a piston rod 85 projecting upstream from the head piston 82, and a gripping member 86, intended to cooperate with the displacement actuator 38.
  • the piston head 80 has a hemispherical downstream surface 84.
  • the downstream surface 84 closes the volume 61 upstream inside the syringe body 60, to maintain the product in the interior volume 61 in a sealed manner during its storage or distribution.
  • piston 62 has two seals 82 extending circumferentially around axis A-A', being spaced apart along axis A-A'.
  • seals 82 spaced by a suitable distance, guarantees the coaxial movement of the piston 62 with the axis A-A', and therefore ensures better control of the volumes of product dispensed. This is particularly the case when seals 82 are lip seals.
  • the rod 85 here protrudes upstream from the piston head 80. It is advantageously coaxial with the axis A-A'.
  • the gripping member 86 is arranged at the upstream free end of the rod 85.
  • the gripping member 86 is of revolution around the axis of the rod 85, and advantageously of axis A-A '.
  • the gripper 86 is a sphere.
  • the piston 62 is movable in translation along the axis A-A' in the syringe body 60 in both directions of movement along the axis A-A'. In the direction directed downstream (upwards in the figures), it is suitable for pushing the product out of the volume interior 61 of the syringe body 60, to deliver it to the dispensing nozzle 30 through the tube 34.
  • the piston 62 is suitable for sucking up product which is contained in the nozzle 30, to prevent residual drops of product from falling at the level of the nozzle. 30, apart from the product dispensing operations in the container 14. This suction of the product is preferably limited to the residual drop at the end of the spout 50, not heavy enough to come off on its own.
  • the syringe 32, and the tube 34 provided at its end with the rigid spout 50 form a consumable which can be replaced, when the product contained in the interior volume 61 of the syringe body 60 is exhausted, or when another product must be delivered, replacing the product contained in the syringe 32.
  • the syringe support 36 comprises a cylindrical peripheral skirt 90, intended to receive and support the base 66 of the syringe body 60, a fixing flange 92, extending radially to the periphery of the skirt 90, and legs 94 supporting displacement actuator 38.
  • Syringe support 36 further includes a complementary mechanism 96 for fixing syringe body 60.
  • the skirt 90 is of complementary shape to the base 66 of the syringe body 60. It is suitable for receiving the base 66 with the flange 72 resting on the downstream edge of the skirt 90.
  • the flange 92 extends radially with respect to the axis A-A' on the outside of the skirt 90. It is intended to be fixed to a frame of the machine 12.
  • the lugs 94 project axially from the flange 92, opposite the skirt 90. They delimit between them an intermediate space for receiving the displacement actuator 38.
  • the complementary mechanism 96 comprises in this example a stop (not visible) inserted in the skirt 90, capable of cooperating with the notch 70 to form the bayonet-type fixing. It also comprises in this example, a circumferential lug 98, projecting above the downstream edge of the skirt 90, extending over part of a circumference around the axis A-A'.
  • the lug 98 comprises an end 100 fixed to the skirt 90, a folded free end 102, able to be grasped by a user, and an internal stop 104 projecting towards the axis A-A', able to cooperate with the projection 74 of the fixing mechanism 64 on the collar
  • the syringe body 60 is able to be inserted into the skirt 90, by placing the or each internal stop in a notch 70, to move in translation along the axis AA' the syringe body 60 towards the support 36 .
  • the syringe body 60 is adapted to be pivoted around the axis A-A' to pass the or each internal stop in the circumferential region of the notch 70 and to lock the syringe body 60 in rotation around the 'axis A-A', by cooperation between the projection 74 and the internal stop 104 of the lug 98.
  • the syringe body 60 is thus fixed in a reproducible and robust manner in the support 36, without difficulty for the user.
  • the displacement actuator 38 comprises a displacement member 1 10 of the piston 62, movable in translation along the axis A-A ', a motor 112 for moving the member displacement 110, and a device 114 for locking the piston 62 which in this example is movable by the displacement member 110.
  • the displacement actuator 38 further comprises at least one guide rail 116 for the displacement of the locking device 114, extending parallel to the axis A-A'.
  • the displacement motor 112 is mounted fixed relative to the syringe support 36. It is here mounted between the legs 94 of the syringe support 36.
  • the displacement member 110 is driven in translation along the axis A-A' by the motor 112. It is provided at its upper end with a block 118 (visible in particular in FIG. 5) for supporting the device of lock 114.
  • the displacement member 110 has a length greater than or equal to the stroke of the piston 62 in the syringe body 60.
  • the locking device 114 comprises a movable lock 120, a clevis 122 for supporting the movable lock 120 and a locking actuator 124.
  • the movable lock 120, the clevis 122 for supporting the movable lock 120 and the locking actuator 124 are movable together with the displacement member 110.
  • the movable lock 120 is able to grip the gripping member 86, then to lock it, in order to secure in translation in both directions along the axis AA' the gripping member 86, and more generally the piston 92 relative to the displacement member 110.
  • the lock 120 comprises a cradle 126, rotatably mounted around an axis B-B' perpendicular to the axis A-A' and pins 128 projecting from the cradle 126 along the axis B-B'.
  • the cradle 126 delimits an internal cavity 130 of a shape at least partially complementary to that of the gripping member 86.
  • the cavity 130 opens out via an opening 132 for introducing the gripping member 86 into the cavity 130, which extends laterally by a slot 134 for receiving the rod 85.
  • the introduction opening 132 is configured to allow the introduction of the gripper member 86 by translation along the axis A-A'.
  • the slot 134 on the contrary has a width greater than that of the rod 85, but less than that of the gripping member 86, to prevent the exit of the gripping member 86 from the internal cavity 130.
  • the latch 120 is mounted so as to be able to rotate around the axis B-B' with respect to the yoke 122 between an open configuration for receiving the gripping member 86, in which the cavity 132 opens downstream (upwards on Figure 5) to receive the gripper 86 and a closed configuration for locking the gripper 86, in which the cavity 132 has been rotated at least 30°, and the slot 134 opens towards the downstream to block the gripping member 86 in the cavity 130.
  • the latch 120 further comprises an operating bar 136, capable of being gripped by the locking actuator 124, to maneuver the latch 120 between the open configuration and the closed configuration.
  • the locking actuator 124 comprises a bracket 140, secured to an upstream end of the displacement member 110, a locking motor 142 mounted on the bracket 140, a drive rod 144 driven in translation parallel to the axis A-A' by the locking motor 142, and a driven member 146 by the rod 144. It further comprises a drive rail 148 driven by the driven member 146 and a fork 150 of the lock 120, mounted integral with the downstream end of the drive rail 148.
  • the stirrup 140 is fixed on the displacement member 110 to be movable together with the displacement member 110. It is slidably mounted on the guide rail 116.
  • the locking motor 142 is operable independently of the displacement motor 112.
  • the rod 144 is capable of moving the driven member 146 in translation parallel to the axis A-A' relative to the stirrup 140 and to the locking motor 142.
  • the drive rail 148 extends laterally relative to the driven member 146. Its downstream end is arranged axially opposite the lock 120.
  • the fork 150 is mounted integral with the drive rail 148 at its downstream end. It is engaged on the lock 120, advantageously by entering the operating bar 136.
  • the fork 150 is axially movable parallel to the axis A-A' by actuation of the motor 142, causing the joint axial displacement of the rod 144, of the driven member 146 and of the drive rail 148, to allow the tilting of the lock 120 between its open configuration and its closed configuration.
  • the locking motor 142 can thus be controlled by the central control unit 42 independently of the movement motor 112. It advantageously remains inactive when the movement motor 112 intended to move the piston 62 is actuated.
  • the locking device 114 is particularly compact transversely to the axis A-A'.
  • the assembly formed by the latch 120, the support yoke 122, the support block 118, and the fork 150 is thus able to be introduced into the syringe body 60 during the downstream movement of the piston 62 towards the syringe head. 68, providing a wide stroke for piston 62 in syringe body 60.
  • the support device 40 of the container 14 comprises a mobile system 170 for supporting the container 14 and an actuator 172 for moving the mobile system 170.
  • the mobile system 170 comprises a bucket 174 intended to carry the container 14 and advantageously, an adapter 176 intended to adapt to the container 14, to hold it in the bucket 174.
  • the movable system 170 further comprises a movable sleeve 178, a force gauge 180 intended to measure the weight applied to the bucket 174, partially received in the movable sleeve 178 and a movable rod 182 for transmitting force projecting in the movable sleeve. 178 from Force Gauge 180.
  • the mobile system 170 further comprises a damping spring 184 interposed between the upper end of the mobile rod 182 and the cup 174.
  • the cup 176 protrudes above the plate 18. It is suitable for receiving the adapter 176 which has a shape complementary to that of the container 14.
  • the sleeve 178 is inserted through an orifice made in the plate 18. It delimits an interior volume 185 receiving at least part of the force gauge 180, the movable rod 182 and the spring 184.
  • the sleeve 178 is a structural part of the mobile system 170 which hides the lower part of the mobile system 170 for aesthetic reasons and to avoid dropping dust into the support device 40.
  • the mobile displacement system 170 is thus movable vertically following an up-and-down movement to carry the container 14 towards the dispensing nozzle 30, from a lower position for placing the container 14 in the cup 176 (visible in FIG. 8 ), in which the nozzle 30 is located above and away from the container 14, towards an upper position in which the nozzle 30 is received at least partially in the container 14 during a product dispensing.
  • the mobile displacement system 170 is again movable into the lower position, once the product has been dispensed.
  • the mobile displacement system 170 moves into the lower position as the container 14 is filled with product. This last variant avoids the presence of air bubbles in the container 14.
  • the gauge 180 is suitable for measuring the weight applied to the cup 174, under the effect of the weight of the container 14, and of the product introduced into the container 14.
  • the spring 184 is capable of transmitting the weight applied to the cup 174 to the movable rod 182. In the event of inadvertent pressing on the container 14, the spring 184 is capable of being compressed to prevent transmitting too great a force to the force gauge 180, the bucket 174 then resting on the upper edge of the sleeve 178.
  • the force gauge 180 is coupled to the central control unit 42 for even better control of the quantity of product delivered into the container 14.
  • the actuator 172 is similar in structure to the displacement actuator 38 presented above. It has a displacement motor 186, a displacement member 188, actuated by the motor 186, and a support block 189 carrying the sleeve 178, the strain gauge 180, and more generally the mobile displacement system 170. It comprises besides a side guide rail 190.
  • the central control unit 42 comprises a user interface, capable of recording the preferences of the user with a view to dispensing product and of adapting the quantity of product dispensed according to the preferences of the user and optionally the volume of the container. 14, then the volume of product delivered detected by the force gauge 180.
  • the central control unit 42 is able to control the displacement actuator 38 to allow the delivery of the chosen quantity of product out of the interior volume 61 of the syringe 32, and advantageously, once the dispensing is complete, to retract the piston 62 to avoid the fall of residual drops of product at the level of the dispensing nozzle 30 outside the operations of dispensing product into the container 14.
  • the central control unit 42 is also capable of controlling the locking actuator 124 to switch the lock 122 between the open configuration and the closed configuration, when inserting or removing the syringe 32.
  • the central control unit 42 is also able to control the actuator 172 of the mobile system 170 for moving the container 14, to raise the container 14 towards the nozzle 30 before dispensing the product, and to lower the container 30 to away from the nozzle 30 after the product has been dispensed.
  • the central control unit 42 is also capable of controlling the movement actuator 38 according to the weight, and therefore the volume, of the container 14 recognized by the force gauge 180 itself coupled to the central control unit. command 42.
  • the detection of the weight on the force gauge 180 also has a safety role, making it possible to cut off the control of the displacement actuator 38 if a collision is detected.
  • this detection of the weight advantageously makes it possible to carry out a correction of the delivery of the product in real time (for example following the presence of bubbles, or a variation in the bore of the syringe).
  • the central control unit 42 preferably comprises at least one processor, and at least one memory (not shown) containing software modules specific to being executed by the processor to perform the aforementioned functions. It preferably includes a communication module for the wireless control of the machine 12.
  • the syringe 32 with its interior volume 61 filled with product is loaded into the machine 12.
  • the latch 120 of the locking device 114 initially occupies its open configuration.
  • the introduction opening 130 is positioned along the axis A-A′ by being directed downstream (upwards in the figures).
  • the locking device 114 is retracted under the syringe holder 36, preferably in its most upstream position.
  • a refillable assembly comprising syringe 32, tubing 34, and rigid spout 50 is provided, and is inserted into dispensing mechanism 10.
  • the syringe body 60 is mounted longitudinally in the skirt 90 of the syringe holder 60, to engage each internal stop (not visible) in the first axial region of a notch 70 in the shape of an inverted L. Then, the syringe body 60 is pivoted around the axis A-A' to engage the internal stop in the second region of the inverted L-shaped notch.
  • the lug 98 reaches the projection 74 located on the periphery of the syringe body 60, and engages in this projection 74 to lock the syringe body 60 in rotation.
  • the collar 72 rests on the downstream edge of the skirt 90.
  • the gripping member 86 then protrudes along the axis A-A' upstream, opposite the skirt 90 with respect to the flange 92.
  • the tube 34 is then placed along the curved arm 52, and the rigid spout 50 is immobilized vertically, in particular thanks to the holding device of the clip-on clamping ring type.
  • the locking device 114 is moved downstream along the axis A-A' by the displacement actuator 38.
  • the movement motor 112 is controlled by the central control unit 42 to jointly move the movement member 110, the support block 118, the yoke 122, and the lock 120 in its open configuration towards the gripper 86 of piston 62.
  • the rise of the lock 120 and the yoke 122 is joint with that of the locking actuator 124, in particular with that of the bracket 140, the motor 142, the rod of drive 144, driven member 146, drive rail 148 and fork 150.
  • the stopping of the displacement actuator 38 is for example carried out when a metal part, for example a metal ring, is detected by a sensor.
  • the locking actuator 124 is then activated to move the drive rail 148 and the fork 150 and thus pivot the lock 120 around the axis B-B'.
  • the latch 120 passes from its open configuration to its closed configuration, in which the rod 85 of the piston 62 is engaged in the slot 134 formed in the latch 120.
  • the gripping member 86 is then locked in translation in both directions along the axis AA' by the lock 120. It is able to move together with the locking device 114 under the effect of the locking member. Movement 110 along the axis AA' in both directions of movement.
  • the machine 12 is then made available to the consumer.
  • the consumer places a container 14 on the cup 174, advantageously using the adapter 176 adapted to this container 14.
  • the mobile displacement system 170 keeps the cup 174 in its lower position away from the nozzle 30.
  • the consumer chooses the dose of product that he wishes to introduce into the container 14, for example by means of a man-machine interface of the central control unit 42.
  • this determination is automatic, for example by measuring the mass of the container 14, and deducing from a database, the capacity of the container. In this case, the consumer can only trigger the filling of the container 14, without choosing the dose.
  • the consumer validates the start of the product distribution, advantageously by using the man-machine interface.
  • the central control unit 42 drives the actuator 172 of the mobile displacement system 170 to lift the bucket 174 carrying the container 14 and take it to its upper position towards the nozzle 30.
  • the nozzle 30 is then advantageously partially inserted into the container 14.
  • Motor 186 of actuator 172 causes joint upward movement of sleeve 178, gauge 180, movable rod 182, spring 184 and bucket 174.
  • the central control unit 42 When the central control unit 42 detects that the mobile displacement system 170 occupies its upper position, the distribution of product is then activated.
  • the displacement actuator 38 is activated in order to move the piston 62 to a volume corresponding to the desired volume of product to be dispensed into the container 14.
  • the displacement motor 112 drives the displacement member 110, which jointly moves the support block 118, the locking device 114, and the gripping member 86 integral with the locking device 114 downstream.
  • the piston 62 then moves in the syringe body 60 downstream, to push the product to be delivered towards the syringe head 68.
  • the locking device 114 Given the radial compactness of the locking device 114, it also fits into the syringe body 60 during the stroke of the piston 62 downstream.
  • the weight of product delivered into the container 14 is also measured by the gauge 180, so that the central control unit 42 actuates the motor displacement 112 until the chosen mass of product is received in the container 14.
  • the displacement motor 112 is activated to displace the moving member 1 10 upstream on a limited race.
  • the support block 118 follows the displacement member 110 upstream, causing the joint displacement of the locking device 114, and of the gripping member 86, and of the piston head 80, causing a suction towards the interior volume 61 .
  • the assembly consisting of the syringe 32, the tube 34, and the rigid spout 50 is then disassembled.
  • the lock 120 of the locking device 114 is returned to its open configuration by activating the locking actuator 124.
  • the displacement actuator 38 is activated again to move upstream (downwards in the figures) the displacement member 110 and the locking device 114, to separate the locking device 114 from the gripping member 86 and extracting the locking device 114 from the syringe body 60, if necessary.
  • the lug 98 of the syringe holder 36 is then released from the projection 74, for example by moving it radially outwards.
  • the syringe body 60 is extracted from the syringe support 36, by pivoting it around the axis A-A', then by moving it in translation away from the syringe support 36 along the axis A- AT'.
  • the dispensing mechanism 10 is therefore particularly effective in allowing the machine 12 to be used directly by a consumer, in order to obtain precise doses of product in a container 14, in particular when the product is in the form of an emulsion. provided with a phase dispersed in the form of macroscopic drops, in particular with average diameters greater than 250 microns or/and is fragile.
  • the dispensing mechanism 10 does not alter macroscopic dispersed phase bubbles.
  • all the steps carried out by the consumer can be carried out by a salesperson or an operator in the store. Dispensing using a syringe closed by a plunger generates few mechanical stresses, in particular shear stresses, on the product, which keeps it stable, even if it is fragile.
  • the dosed quantity is also very precise and reproducible, even if the interior volume 61 of the syringe body 60 is high, which generally allows a plurality of successive doses, without having to replace the syringe 32.
  • the machine 12 is therefore particularly suitable for use in sales areas.
  • the syringe 32 is easy to mount in the mechanism 10, which facilitates the maintenance of the machine 12, and its reloading.
  • the assembly of the syringe 32 is particularly safe, in particular thanks to the presence of the mechanism for fixing 64 to the support 36 on the syringe body 60 and of the complementary mechanism 96 on the syringe support 36.
  • the syringe 32 remains immobilized on its support 36 in an indexed position, which promotes the precision of the dosage.
  • the syringe being pre-equipped with its piston 62, with a gripping member 86, the product is confined in the interior volume 61, without risk of contamination. Furthermore, the locking of the gripping member 86 of the piston 62 with the displacement actuator 38 is simple and reliable in both directions of displacement of the piston 62 in the syringe 32, thanks to the use of the locking device 114 comprising a swivel lock 120 mounted on a movable yoke 122.
  • the insertion of the support member 86, having a symmetry of revolution around the axis A-A' in the lock 120 is facilitated, and can be carried out whatever the relative angular orientation of the piston 62 with respect to to the syringe body 60, or/and regardless of the position of the support member 86 along the axis A-A'.
  • the lock as such is particularly stable, thanks to the gripping by the lock 120 in the slot 134 of the piston rod 85, ensuring a safe locking of the gripping member 86 in two directions along the axis A -AT'.
  • the locking device 114 is furthermore very compact, and capable of entering the volume 61 of the syringe body during delivery of the product. This reduces the volume and the overall height of the mechanism 10, and has a direct impact on the volume occupied in the commercial space, and on the aesthetics of the machine 12.
  • the optional presence of a mobile system 170 for moving the container 14, associated with a moving actuator 172, provides a movement of the "raise-lower" type for the container 14.
  • the filling of the container 14 is optimized, without risk of leaks, since the nozzle 30 is inserted into the container 14 during the dispensing of the product.
  • access to the container 14 remains simplified for the user to place the container 14 on the mobile system 170, and to remove the container 14 filled with product, once the distribution has been carried out.
  • a force gauge 180 adapts the volume dispensed to the container 14, and avoids overflows.
  • the central control unit 42 of the mechanism 10 ensures precise and reliable control of the distribution.
  • the lug 98 for locking the projection 74 is replaced by a clamping ring system (not shown), which grips the syringe body 60 at its base 66.
  • the clamping ring can be activated by rotation . It is no longer necessary to index the syringe body 60 on the syringe support 36.
  • the lock 120 of the locking device 114 is able to be actuated manually by the user.
  • the mechanism then has no locking actuator 124.
  • the locking actuator 124 is not embedded on the moving assembly of the displacement actuator 38 comprising the displacement member 110 and the support block 118.
  • the locking motor 142 is then controlled by synchronizing it with the displacement motor 112 to choose the configuration of the lock 120 between the opening configuration and the closing configuration.
  • the machine 12 further comprises a cleaning/sterilization device (not shown) for extemporaneously washing/sterilizing the containers 14 before they are filled with the product, in order to prevent any risk of contamination if the consumer has not correctly washed his primary packaging and/or in order to meet the regulatory standards/norms in force.
  • This cleaning device is preferably anhydrous (not always a water point in the store).
  • it relies on a cleaning/sterilization process based on UV and/or pulsed light, or on ozone sterilization.
  • the syringe support 36 in particular the skirt 90, comprises a sensor making it possible to ensure that the syringe 32 is correctly fixed on the syringe support 36.
  • the mechanism 10 according to the invention comprising a locking device 114 as described above is also advantageous in the event of a power cut.
  • the position of the piston 62 can be sought with a view to resetting by a simple operation comprising the steps of: - unlocking the piston 62 with respect to the locking device 114,

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Fluid Mechanics (AREA)
  • Infusion, Injection, And Reservoir Apparatuses (AREA)
  • Medical Preparation Storing Or Oral Administration Devices (AREA)
EP21758674.2A 2020-08-11 2021-08-10 Fluidproduktausgabemechanismus für eine produktausgabemaschine und zugehörige maschine Withdrawn EP4196754A1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
FR2008422A FR3113408B1 (fr) 2020-08-11 2020-08-11 Mécanisme de distribution de produit fluide, destiné à une machine de distribution de produit et machine associée
PCT/EP2021/072312 WO2022034108A1 (fr) 2020-08-11 2021-08-10 Mécanisme de distribution de produit fluide, destiné à une machine de distribution de produit et machine associée

Publications (1)

Publication Number Publication Date
EP4196754A1 true EP4196754A1 (de) 2023-06-21

Family

ID=74045575

Family Applications (1)

Application Number Title Priority Date Filing Date
EP21758674.2A Withdrawn EP4196754A1 (de) 2020-08-11 2021-08-10 Fluidproduktausgabemechanismus für eine produktausgabemaschine und zugehörige maschine

Country Status (4)

Country Link
US (1) US20230294854A1 (de)
EP (1) EP4196754A1 (de)
FR (1) FR3113408B1 (de)
WO (1) WO2022034108A1 (de)

Family Cites Families (16)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB1187369A (en) 1968-04-02 1970-04-08 Allied Chem Process and Apparatus for the Semicontinuous Dissolution of Spent Nuclear Reactor Fuel
CH463743A (de) 1968-04-02 1968-10-15 Hostettler Werner Kran
GB8705482D0 (en) * 1987-03-09 1987-04-15 Ici Plc Dispensing apparatus
JP2532950B2 (ja) * 1989-09-13 1996-09-11 富士写真フイルム株式会社 流体定量吐出方法及び装置
US5083591A (en) * 1989-11-06 1992-01-28 Dunn Edwards, Corp., & Fluid Management Ltd. Part. Process for dispensing liquid colorants into a paint can, and quality control therefor
IT1236158B (it) * 1989-11-23 1993-01-11 Farmomac Srl Metodo per il riempimento di contenitori con prodotti liquidi e/o gelatinosi,e/o corrosivi,o collanti,o sospensioni abrasive e macchina che attua tale metodo.
EP0531423A1 (de) * 1990-06-06 1993-03-17 The Coca-Cola Company Postmix-getränkeschanksystem
CN2094051U (zh) * 1991-07-26 1992-01-22 哈尔滨市三环电器厂 压电晶体电子秤
DE4440243A1 (de) * 1994-11-11 1996-05-15 Schwerdtel Ludwig Gmbh Dosier-Gerät für viskose Materialien
US6615881B2 (en) * 2001-09-24 2003-09-09 Imx Labs, Inc. Apparatus and method for custom cosmetic dispensing
US8393363B2 (en) * 2008-03-03 2013-03-12 SureTint Technologies, LLC Blending station apparatus and method for using the same
CN102422132B (zh) * 2009-05-08 2013-11-06 Ima生命有限公司 配料设备
IT1394021B1 (it) * 2009-05-08 2012-05-25 Ima Life Srl Apparato di dosaggio con mezzi a giunto
FR2959734B1 (fr) * 2010-05-10 2014-01-31 Spc France Systeme de fixation pour pompe de dosage
FR3041252B1 (fr) 2015-09-18 2019-01-25 Capsum Dispersions stables de gouttes comprenant un agent gelifiant
FR3043072A1 (fr) * 2015-11-02 2017-05-05 Erca Dispositif pour delivrer des quantites dosees de produit liquide ou pateux

Also Published As

Publication number Publication date
WO2022034108A1 (fr) 2022-02-17
FR3113408A1 (fr) 2022-02-18
US20230294854A1 (en) 2023-09-21
FR3113408B1 (fr) 2022-08-12

Similar Documents

Publication Publication Date Title
EP2821146B1 (de) Vorrichtung und Verfahren zum Rütteln und Zentrifugieren
EP1877314B1 (de) Verfahren und vorrichtung zum füllen eines behältnisses mit variablem nutzvolumen
EP2336079B1 (de) Vorrichtung zum Befüllen von Behältnissen
FR2978130A1 (fr) Distributeur nomade rechargeable.
EP1588775B1 (de) Verpackungs- und Abgabeeinheit eines Produktes, insbesondere eines kosmetischen Produktes
EP2424813A1 (de) Vorrichtung zur dosierten abgabe von flüssigkeit oder viskosen produkten und verfahren zur implementierung dieser vorrichtung
EP0349396A1 (de) Verfahren zum Vakuumverpacken von Flüssigkeiten und Pasten in weichen, mit Abgabeventil oder -pumpe versehenen Tuben und Vorrichtung zur Durchführung dieses Verfahrens
EP2496513B1 (de) Füllvorrichtung mit speziellem ventilsystem
EP0312474B1 (de) Automatischer Spender für pastöse Massen
EP2069076B1 (de) Spendevorrichtung für ein flüssiges produkt
EP2977110B1 (de) Nachfüllbarer spender für flüssigprodukt
EP4196754A1 (de) Fluidproduktausgabemechanismus für eine produktausgabemaschine und zugehörige maschine
FR2696733A1 (fr) Doseur, robinet doseur, appareil de dosage en cadence de liquide.
EP2291633B1 (de) Vorrichtung zur auflösung einer probe
FR3118860A1 (fr) Dispositif pour la distribution d’un produit cosmétique et procédé associé
EP1893123B1 (de) Verfahren zur verpackung einer vorbestimmten dosis einer flüssigen substanz in einem strohhalm und vorrichtung zur durchführung dieses verfahrens
FR3108247A1 (fr) Machine pour la distribution d’une quantité contrôlée d’une composition cosmétique
FR2655319A1 (fr) Introducteur-doseur pour produits pulverulents, granules, pateux ou similaires.
FR2732188A1 (fr) Dispositif de distribution d'agents de protection de plantes
FR3010399A1 (fr) Dispositif de remplissage d'une bouteille
FR2727670A1 (fr) Dispositif pour prelever dans un recipient une dose d'un produit, notamment cosmetique, et pour appliquer cette dose
FR2983178A1 (fr) Dispositif de distribution de poudre, bouchon pour un tel dispositif et station de travail comprenant un tel dispositif
FR3010398A1 (fr) Dispositif semi-automatique de remplissage et de bouchage d'une bouteille
FR2767073A1 (fr) Tete de distribution de liquide et conditionnement de fluide la comportant
FR2767127A1 (fr) Appareil pour incorporer une dose de liquide dans un recipient et machine incorporant un tel appareil

Legal Events

Date Code Title Description
STAA Information on the status of an ep patent application or granted ep patent

Free format text: STATUS: UNKNOWN

STAA Information on the status of an ep patent application or granted ep patent

Free format text: STATUS: THE INTERNATIONAL PUBLICATION HAS BEEN MADE

PUAI Public reference made under article 153(3) epc to a published international application that has entered the european phase

Free format text: ORIGINAL CODE: 0009012

STAA Information on the status of an ep patent application or granted ep patent

Free format text: STATUS: REQUEST FOR EXAMINATION WAS MADE

17P Request for examination filed

Effective date: 20230208

AK Designated contracting states

Kind code of ref document: A1

Designated state(s): AL AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC MK MT NL NO PL PT RO RS SE SI SK SM TR

DAV Request for validation of the european patent (deleted)
DAX Request for extension of the european patent (deleted)
GRAP Despatch of communication of intention to grant a patent

Free format text: ORIGINAL CODE: EPIDOSNIGR1

STAA Information on the status of an ep patent application or granted ep patent

Free format text: STATUS: GRANT OF PATENT IS INTENDED

INTG Intention to grant announced

Effective date: 20240206

STAA Information on the status of an ep patent application or granted ep patent

Free format text: STATUS: THE APPLICATION IS DEEMED TO BE WITHDRAWN

18D Application deemed to be withdrawn

Effective date: 20240607