EP3070003B1 - Appareil de dévidage destiné à une machine d'emballage automotrice - Google Patents

Appareil de dévidage destiné à une machine d'emballage automotrice Download PDF

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Publication number
EP3070003B1
EP3070003B1 EP16160729.6A EP16160729A EP3070003B1 EP 3070003 B1 EP3070003 B1 EP 3070003B1 EP 16160729 A EP16160729 A EP 16160729A EP 3070003 B1 EP3070003 B1 EP 3070003B1
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EP
European Patent Office
Prior art keywords
film
folding element
moving
load
unwinding
Prior art date
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Application number
EP16160729.6A
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German (de)
English (en)
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EP3070003A1 (fr
Inventor
Pierangelo LAGHI
Luca DELBALDO
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Robopac SpA
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Robopac SpA
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Publication of EP3070003A1 publication Critical patent/EP3070003A1/fr
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B11/00Wrapping, e.g. partially or wholly enclosing, articles or quantities of material, in strips, sheets or blanks, of flexible material
    • B65B11/006Helical strip wrapping combined with roping
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B11/00Wrapping, e.g. partially or wholly enclosing, articles or quantities of material, in strips, sheets or blanks, of flexible material
    • B65B11/02Wrapping articles or quantities of material, without changing their position during the wrapping operation, e.g. in moulds with hinged folders
    • B65B11/025Wrapping articles or quantities of material, without changing their position during the wrapping operation, e.g. in moulds with hinged folders by webs revolving around stationary articles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B11/00Wrapping, e.g. partially or wholly enclosing, articles or quantities of material, in strips, sheets or blanks, of flexible material
    • B65B2011/002Prestretching mechanism in wrapping machines
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B57/00Automatic control, checking, warning, or safety devices

Definitions

  • the invention relates to unwinding apparatuses that are associable to wrapping machines for dispensing and wrapping a film made of cold-stretchable plastic material around a load formed by a product or a plurality of products, which are arranged on a platform or pallet.
  • the invention relates to an unwinding apparatus that is installable on a mobile or so-called self-propelled wrapping machine.
  • the self-propelled wrapping machines also called self-propelled wrapping robots, are machines that are generally used for wrapping loads of variable shapes and sizes and in limited productions, typically used in production environments or rooms in which the fixed or static wrapping machines cannot be used.
  • the self-propelled wrapping machines include a carriage or cart provided with powered rear wheels and a front guiding device, which comprises a couple of steering wheels that are guided by a steering.
  • the steering can be driven through a guiding bar by an operator for manually leading the machine in a manoeuvring configuration, or by a feeler element suitable to follow the external profile of the load in an operating configuration, in which the self-propelled machine automatically rotates around the load for wrapping the latter with the film.
  • the cart supports a vertical column or upright along which an unwinding or dispensing apparatus is mobile that houses a reel of plastic film and a plurality of rollers for unwinding and pre-stretching the film. More precisely, the unwind apparatus is generally provided with a couple of pre-stretching rollers arranged for unwinding from the reel and pre-stretching or elongating the film, and one or more return rollers for deflecting the film toward the load.
  • the combination of the reciprocating linear movement of the unwinding apparatus along the vertical upright and the rotation of the self-propelled machine around the load allows wrapping the film around the latter so as to form a series of helically interlaced bands or strips.
  • the plastic film is wound so as to completely wrap all the sides of the load.
  • An object of the invention is to improve the known unwinding apparatuses associable with self-propelled wrapping machines for wrapping a load with a film made of cold stretchable plastic material.
  • Another object is to provide an unwinding apparatus for self-propelled wrapping machines that allows to vary in a simple, fast and effective manner a band or strip height or width of the plastic film during the wrapping thereof around the load, in particular for carrying out a rolled portion or rope on said film.
  • a further object is to provide an unwinding apparatus that allows controlling in real time and/or with a feedback loop, in a precise and accurate manner the strip width of the film during the whole wrapping cycle.
  • Another further object is to provide an unwinding apparatus having simple and economical construction and efficient and reliable operation.
  • an unwinding apparatus 1 that is associable to a self-propelled wrapping machine 100 mobile around a load (not shown) for wrapping the latter with a film 50 made of stretchable plastic material.
  • the self-propelled wrapping machine 100 is of known type and substantially comprises a main cart 101 that is provided with powered rear wheels 102 and with a front guiding device 103 having steering wheels that are guided by a steering 104.
  • the apparatus 1 comprises frame means 2 for supporting a reel 60 of film 50, first roller means 11, 12, 13 for unwinding and pre-stretching the film 50 and second roller means 14 for deflecting toward the load the film 50 exiting the first roller means 11, 12, 13.
  • the first roller means 11, 12, 13 comprise a first pre-stretching roller 11 and a second pre-stretching roller 12 rotated around respective longitudinal axes by a motor group 16, of known type and not described in detail.
  • the pre-stretching rollers are moved with different rotation speeds so as to stretch or elongate the plastic film 50 during the reel 60 unwinding.
  • the reel 6 is mounted free to rotate on a supporting reel-carrier 17.
  • a return roller 13 of the first roller means directs the film 50 unwound from the reel to the first pre-stretching roller 11 (slow roller) arranged upstream of the second pre-stretching roller 12 (fast roller) arranged downstream with respect to the unwinding direction of film.
  • the second roller means comprise a deflecting roller 14 that deflects and directs the film 50 exiting the unwinding apparatus 1 toward the load.
  • the apparatus 1 also comprises at least one folding element 3 and driving means 10 for moving the folding element 3 so that the latter intercepts and abuts a first longitudinal edge 50a of the film 50 and pushes said first longitudinal edge towards an opposite second longitudinal edge 50b of said film 50 so as to reduce a strip width L of film 50 exiting the unwinding apparatus 1.
  • the folding element 3 is interposed between the first roller means 11, 12, 13 and the second roller means 14, in particular is positioned adjacent to the latter ones.
  • Driving means 10 comprise moving means 4 that support and move the folding element 3 along a narrowing trajectory R transversal to an unwinding direction T of the film 50 and that are driven by electric actuator means 5.
  • the apparatus 1 further comprises a control unit 20, which is connected to driving means 10 and arranged for controlling and adjusting a displacement and/or a moving direction of the moving means 4, and first sensor means 30 that are coupled to the moving means 4 for continuously detecting and measuring at least a displacement of said moving means 4 and sending a related control signal to the control unit 20 so as to allow the control unit to control and adjust, during wrapping of the load, a position of folding element 3 along the narrowing direction R and thus a strip width L of film 50.
  • a control unit 20 which is connected to driving means 10 and arranged for controlling and adjusting a displacement and/or a moving direction of the moving means 4, and first sensor means 30 that are coupled to the moving means 4 for continuously detecting and measuring at least a displacement of said moving means 4 and sending a related control signal to the control unit 20 so as to allow the control unit to control and adjust, during wrapping of the load, a position of folding element 3 along the narrowing direction R and thus a strip width L of film 50.
  • the first sensor means 30 comprise, for example, an angular position transducer that is coupled and rotated by the moving means 4.
  • the angular position transducer 30 includes a phonic wheel 31 connected to the moving means 4, and a proximity sensor 32, in particular of inductive or capacitive or magnetic or optical type, which is associated to the phonic wheel 31 and is connected to the control unit 20.
  • the proximity sensor 32 detects the rotation of the phonic wheel 31 and sends related signals to the control unit 20 that is capable to calculate and establish position and angular speed of the phonic wheel 31 and therefore of the moving means 4 connected thereto.
  • the moving means 4 comprise screw nut means 41, which support the folding element 3, and screw means 42, which are coupled to, and support, said screw nut means 41.
  • the screw means 42 are rotatably fixed to the frame means 2 and rotated by the electric actuator means 5 so as to move linearly the screw nut means 41, and then the folding element 3, along the narrowing trajectory R that, in this case, is a trajectory substantially linear and orthogonal to the unwinding direction T of film 50.
  • the screw means 42 comprise, for example, a screw with multiple threads whose ends are rotatably fixed to the frame means 2 by fixing flanges 43.
  • the screw nut means comprise a screw nut or female screw 41, which supports the folding element 3 by means of a supporting plate 44.
  • the moving means 4 also comprise also an anti-rotation rod 45, which is parallel and adjacent to the screw 42 that slidably supports the supporting plate 44.
  • the supporting plate 44 comprises a first side portion that is fixed to the screw nut 41, a second central portion that rotatably supports the folding element 3 and a third side portion that is provided with a bush 46 slidably mounted on the rod 45.
  • the rod 45 prevents rotation of screw nut 41, and thus of the folding element 3, around the screw 42 during the rotation thereof.
  • Motion transmission means 6 are provided for connecting the electric actuator means 5 to the screw means 41.
  • the electric actuator means comprise a rotary electric motor 5, for example a DC electric motor with integrated gearbox
  • the motion transmission means 6 comprise a pinion of the motor 5, a toothed belt or chain 27 driven by the pinion and driving a gear wheel 18 fixed to the screw 42.
  • the folding element 3 comprises a respective roll, which is rotatably fixed to the supporting plate 44, free to rotate around a respective axis and provided with a groove 3a, in particular having a conical shape, suitable to abut and receive the first longitudinal edge 50a so as to roll the latter by pushing it toward the second longitudinal edge 50b and carry out a rolled portion 50c of film or a rope, as is better explained in the following description.
  • the angular position transducer of first sensor means 30 is coupled to the screw means 41. More precisely, the phonic wheel 31 of the angular position transducer 30 is fixed to an end of screw means 41 and is rotatable therewith around a respective longitudinal axis; the proximity sensor 32 of the angular position transducer 30, which is associated to the phonic wheel 31 and connected to control unit 20, is fixed by means of a supporting bracket 33 to the frame means 2.
  • the control unit 20 comprises, for example, an electronic board suitable to manage the operation of electric motor 5, in particular the driving and the rotation direction and/or the speed and/or the acceleration, according to signals received by the angular position transducer 30 so as to allow controlling and adjusting the strip width L of film 50 during the whole wrapping cycle of the load.
  • the first sensors 30 it is in fact possible to measure and control accurately the displacement of moving means 4, i.e. the rotation of screw means 41 and thus the position of folding element 3 along the narrowing direction R.
  • the position of folding element 3 defines the amount of the narrowing of film 50.
  • control unit 20 is connected to interface means of the self-propelled wrapping machine 100, through which it is possible to enter operating data, in particular displacement or displacements of the folding element 3 and/or the value or values of the strip width L of film 50 that it is desired to obtain during the various steps of the wrapping cycle.
  • Second sensor means 21, 23 are fixed, for example, to the frame means 2 for detecting the stroke end positions of moving means 4, in particular of screw nut 41.
  • the sensor means 21, 23 include, for example, a first upper electromechanical end stop 21 and a second lower electromechanical end stop 23, both connected to the control unit 20 for sending thereto respective stop signals of the driving means 10, i.e. of the electric motor 5.
  • the electric motor 5 is provided with a brake 22 suitable to precisely block the motor, and thus the screw nut 41 in the desired position of the folding element 3, which can be set by the interface means of the machine.
  • the operation of the unwinding apparatus 1 of the invention that is mounted on the self-propelled wrapping machine 100 provides, during the wrapping cycle of the load, one or more steps in which the folding element 3 is moved by the driving means 10 for reducing the strip width of film 50 exiting the apparatus 1 and in particular for carrying out on the first longitudinal edge 50a of film 50 a rope or rolled portion 50c, i.e. for partially or even completely roping the film 50 in order to impart thereto a greater resistance to tensile stress and a lower deformability, typically in order to stabilize the load and/or for fixing the latter to the underlying pallet more firmly.
  • the amount of reduction od the strip widht L of the film 50 and/or of the so-called roping can be set by the operator according to the load to be wrapped through the operator interface by acting on the control unit 20.
  • the control unit 20 determines and controls the stroke of the folding element 3 through the moving means 4 up to the required positions.
  • the unwinding apparatus 1 of the invention it is possible to obtain a first value of the strip width of film during the wrapping of a base portion of the load, a second strip width during the wrapping of a top portion of the load and a third strip width for the end wrapping turns.
  • the first sensor means 3 it is possible to position very accurately and precisely the moving means 4, i.e. the screw nut 41, and then the folding element 3 that is connected thereto along the narrowing direction R so as to obtain values of the strip width L that are also precise and accurate.
  • the unwinding apparatus 1 of the invention mountable on a self-propelled wrapping machine, it is possible during the whole wrapping cycle of a load with the plastic film to vary, in particular to reduce, the strip width of the film in a simple, fast and accurate manner.
  • the apparatus allows making a narrowed band of film or a band that is provided with a rolled portion so as to form a rope to be tightly wound around the load and the pallet.
  • Such narrowed band which is obtained by progressively wounding or rolling on itself a longitudinal edge of the film transversely to the unwinding direction, allows obtaining a greater wrapping force with respect to the film with full-width band.
  • the film that is rolled in rope or in a narrowed band is also used for better stabilizing and reinforce the parts of the load, which are more unstable.
  • the driving means 10, provided with electric actuators 5, further allow to precisely position the folding element 3 and then to obtain a desired and precise reduction of the width L of film.
  • the value of the strip width of film can be easily entered through the user interface of the machine and processed by the control unit 20 for controlling the electric actuator means 5 and the moving means 4 of the folding element 3 in cooperation with the first sensors 30, which send signals about the position of said moving means 4 and of the folding element 3 in real-time and with a closed loop or feedback control process.
  • a further folding element 3 movable by driving means 10 along the narrowing trajectory R in a direction that is opposite to the moving direction of the folding element 3 so as to intercept and abut the second longitudinal edge 50b and push the second longitudinal edge towards the first longitudinal edge 50a so as to reduce, in cooperation with the folding element 3, the strip width L of film 50 exiting the apparatus 1.
  • the further folding element is fixed through a further supporting plate to a further screw nut that is coupled to the screw means 42 so as to be linearly moved thereby in a direction that is opposite to the direction of the folding element 3.
  • the two folding elements that mutually approach or move away allow reducing and/or rolling the film 50, for example creating two distinct and opposite ropes of film.
  • the further folding element can be driven by respective and separated further moving means.
  • FIG. 5 there is illustrated a variant of the unwinding apparatus of the invention that differs from the previously described embodiment for the moving means 104 that includes a carriage 144 supporting the folding element 3, a guide 145, which slidably supports the carriage 144 along the narrowing trajectory R, and operating means 141, which are moved by the electric actuator means 5 and are connected to the carriage 144 so as to move the latter along the narrowing trajectory R.
  • the guide 145 comprises an elongated prismatic element with which the carriage 144 slidably engages that is provided with an elongated and shaped bracket 146 to which the folding element 3 is fixed idle.
  • the first sensor means comprise an angular position transducer 130 that is coupled in this case to the operating means 141.
  • the phonic wheel 131 of the angular position transducer 130 is connected to the operating means 141, rotatable around a respective axis, while the proximity sensor 132 of the angular position transducer 130, which is associated to the phonic wheel 131 and connected to the control unit 20, is fixed to the frame means 2 of the apparatus 1.
  • the operating means comprise a closed loop belt 141 that is wound around moving pulleys, of known type and not illustrated, which are positioned at opposite ends 145a, 145b of the guide 145, and to which the carriage 144 is fixed. From one of the ends of the guide 145, for example from an upper end 145a, a shaft protrudes which drives the moving pulley of the belt 141 and on which the phonic wheel 131 is mounted.
  • the motion transmission means 106 which connect the electric actuator means 5 to the moving means 104, comprise a bevel gears with conical gears that connects the driving shaft of the operating means 141 to a respective motor shaft of a rotary electric motor of the electric actuator means 5.
  • the rotary electric motor is, for example, of self-braked type.
  • the second sensor means 121, 123 are fixed to the opposite ends 145a, 145b of the guide 145 for detecting the stroke end positions of the moving means 104, in particular of the carriage 144.
  • the second sensor means include, for example, a first upper inductive sensor 121 and a second lower inductive sensor 123, both connected to the control unit 20 for sending thereto respective stop signals of the driving means 10, i.e. of the electric motor 5.
  • the first roller means comprise the couple of pre-stretching rollers 11, 12 rotated around respective longitudinal axes by the motor group 16 and a further return roller 15 that directs the film 50 exiting the second pre-stretching roller 12 (fast roller) towards the deflecting roller 14 of second roller means that deflects the film toward the load.
  • the folding element 3 is interposed between the further return roller 15 and the deflecting roller 14.
  • the moving means comprise a slide fixed to and supporting the folding element 3 and the electric actuator means include a linear electric motor suitable to support and move said slide along the narrowing trajectory R.
  • the first sensor means comprise in this case a linear position transducer, of known type, that is connected to the slide.
  • the moving means may comprise a lever having a first end rotatably fixed to the frame means 2 and a second end that rotatably supports the folding element 3.
  • the lever is rotated by the electric actuator means so as to move the folding element 3 along the narrowing trajectory R having arched shape.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Basic Packing Technique (AREA)

Claims (14)

  1. Appareil de dévidage (1) associable à une machine d'emballage automotrice (100) mobile autour d'une charge pour emballer la charge avec un film en matière plastique (50), comprenant :
    - des moyens formant cadre (2) pour supporter un dévidoir (60) dudit film (50) ;
    - des moyens formant rouleaux (11, 12, 13, 14) pour dévider et préétirer ledit film (50) ;
    - au moins un élément pliant (3) mobile le long d'une trajectoire se rétrécissant (R) pour venir en butée contre un premier bord longitudinal (50a) dudit film (50) et pousser ledit premier bord longitudinal vers un second bord longitudinal (50b) dudit film (50) de sorte à réduire une largeur de bande (L) dudit film (50) sortant dudit appareil (1) ;
    - des moyens d'entraînement (10) pour déplacer ledit élément pliant (3) et comprenant des moyens de déplacement (4 ; 104) supportant ledit élément pliant (3) et mobiles le long de ladite trajectoire se rétrécissant (R), transversalement à une direction de dévidage (T) dudit film (50), et des moyens d'actionnement électriques (5) connectés auxdits moyens de déplacement (4 ; 104) et les entraînant ;
    - une unité de commande (20) qui est reliée auxdits moyens d'entraînement (10) pour commander et régler un déplacement et/ou une direction de déplacement desdits moyens de déplacement (4 ; 104) ;
    caractérisé en ce qu'il comprend des premiers moyens de détection (30 ; 130) couplés auxdits moyens de déplacement (4 ; 104) pour détecter en continu au moins un déplacement desdits moyens de déplacement (4 ; 104) et envoyer un signal connexe à ladite unité de commande (20) pour commander et régler au cours de l'emballage de ladite charge une position dudit élément pliant (3) le long de ladite trajectoire se rétrécissant (R) de sorte à régler en temps réel et avec une boucle de rétroaction une largeur de bande (L) dudit film (50).
  2. Appareil selon la revendication 1, comprenant des seconds moyens de détection (21, 23 ; 121, 123) pour détecter des positions de fin de course desdits moyens de déplacement (4 ; 104), lesdits seconds moyens de détection (21, 23 ; 121, 123) étant reliés à ladite unité de commande (20) pour lui envoyer les signaux d'arrêt respectifs desdits moyens d'entraînement (10).
  3. Appareil selon la revendication 1 ou 2, dans lequel lesdits premiers moyens de détection (30 ; 130) comprennent un transducteur de position angulaire qui est couplé auxdits moyens de déplacement (4 ; 104) et mis en rotation par ceux-ci.
  4. Appareil selon la revendication 3, dans lequel ledit transducteur de position angulaire comprend une roue phonique (31 ; 131), qui est reliée auxdits moyens de déplacement (4 ; 104), et un capteur de proximité (32 ; 132) associé à ladite roue phonique (31 ; 131) pour détecter une rotation de celle-ci et envoyer des signaux connexes à ladite unité de commande (20).
  5. Appareil selon l'une quelconque des revendications précédentes, dans lequel lesdits moyens de déplacement (4) comprennent des moyens formant vis-écrou (41) supportant ledit élément pliant (3) et des moyens formant vis (42) qui sont couplés auxdits moyens formant vis-écrou (41) et les supportent, lesdits moyens formant vis (42) étant fixés de manière rotative auxdits moyens formant cadre (2) et mis en rotation par lesdits moyens d'actionnement électriques (5) de sorte à déplacer linéairement lesdits moyens formant vis-écrou (41) et ledit élément pliant (3) le long de ladite trajectoire se rétrécissant (R).
  6. Appareil selon la revendication 3 et 5, dans lequel ledit transducteur de position angulaire (30) est couplé auxdits moyens formant vis (41), en particulier ledit transducteur de position angulaire comprenant une roue phonique (31) qui est fixée auxdits moyens formant vis (41) et peut être entraînée en rotation avec eux, et un capteur de proximité (32), qui est associé à ladite roue phonique (31) pour détecter une rotation de celle-ci et envoyer des signaux connexes à ladite unité de commande (20).
  7. Appareil selon l'une quelconque des revendications 1 à 4, dans lequel lesdits moyens de déplacement (104) comprennent un chariot (144) supportant ledit élément pliant (3), un guide (145) supportant de manière coulissante ledit chariot (144) le long de ladite trajectoire se rétrécissant (R) et des moyens de fonctionnement (141) déplacés par lesdits moyens d'actionnement électriques (5) et reliés audit chariot (144) pour déplacer ce dernier le long de ladite trajectoire se rétrécissant (R).
  8. Appareil selon les revendications 3 et 7, dans lequel ledit transducteur de position angulaire (130) est couplé auxdits moyens de fonctionnement (141), en particulier ledit transducteur de position angulaire (130) comprenant une roue phonique (131), qui est reliée auxdits moyens de fonctionnement (141) et peut être entraînée en rotation autour d'un axe respectif, et un capteur de proximité (132) qui est associé à ladite roue phonique (131) pour détecter une rotation de celle-ci et envoyer des signaux connexes à ladite unité de commande (20).
  9. Appareil selon l'une quelconque des revendications 1 à 4, dans lequel lesdits moyens de déplacement comprennent un coulisseau supportant ledit élément pliant (3) et lesdits moyens d'actionnement électriques comprennent un moteur électrique linéaire qui est approprié pour supporter et déplacer ledit coulisseau le long de ladite trajectoire se rétrécissant (R), lesdits premiers moyens de détection comprenant un transducteur de position linéaire qui est relié audit coulisseau.
  10. Appareil selon l'une quelconque des revendications précédentes, comprenant des moyens de transmission de mouvement (6 ; 106) pour relier lesdits moyens d'actionnement électriques (5) auxdits moyens de déplacement (4 ; 104).
  11. Appareil selon l'une quelconque des revendications précédentes, dans lequel lesdits moyens formant rouleaux comprennent des premiers moyens formant rouleaux (11, 12, 13) pour dévider dudit dévidoir (60) et préétirer ledit film (50) et des seconds moyens formant rouleau (14) pour faire dévier ledit film vers ladite charge, ledit élément pliant (3) étant intercalé entre lesdits premiers moyens formant rouleaux (11, 12, 13, 15) et lesdits seconds moyens formant rouleau (14).
  12. Appareil selon l'une quelconque des revendications précédentes, dans lequel ledit élément pliant (3) comprend un rouleau respectif qui est libre de tourner autour d'un axe respectif et qui est doté d'une gorge (3a) appropriée pour venir en butée contre et recevoir ledit premier bord longitudinal (50a) de sorte à enrouler ce dernier en le poussant vers le second bord longitudinal (50b) et pour réaliser une partie enroulée (50c) de film ou une corde.
  13. Appareil selon l'une quelconque des revendications précédentes, comprenant un autre élément pliant (3) pouvant être déplacé par lesdits moyens d'entraînement (10) le long de ladite trajectoire se rétrécissant (R) dans une direction qui est opposée audit élément pliant (3) pour venir en butée contre ledit second bord longitudinal (50b) et pousser ce dernier vers ledit premier bord longitudinal (50a) de sorte à réduire, en coopération avec ledit élément pliant (3), une largeur de bande (L) dudit film (50) sortant dudit appareil (1).
  14. Machine d'emballage automotrice (100) pouvant être déplacée autour d'une charge pour emballer la charge avec un film en matière plastique et comprenant un appareil de dévidage (1) dudit film (50) selon l'une quelconque des revendications précédentes.
EP16160729.6A 2015-03-17 2016-03-16 Appareil de dévidage destiné à une machine d'emballage automotrice Active EP3070003B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
ITUB20150357 2015-03-17

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EP3070003A1 EP3070003A1 (fr) 2016-09-21
EP3070003B1 true EP3070003B1 (fr) 2017-10-25

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IT201700046194A1 (it) * 2017-04-28 2018-10-28 Italdibipack Spa Macchina semovente avvolgitrice di prodotti in genere o cataste di prodotti con film di materiale plastico
IT201800005700A1 (it) * 2018-05-25 2019-11-25 Metodo e macchina per avvolgimento rapido di oggetti su pallet
IT201800005787A1 (it) 2018-05-28 2019-11-28 Macchina per testare film plastici estensibili per il confezionamento
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