EP0316889A2 - Installation pour poser automatiquement des capsules élastiques, tronconiques sur des bouteilles ou autres récipients - Google Patents
Installation pour poser automatiquement des capsules élastiques, tronconiques sur des bouteilles ou autres récipients Download PDFInfo
- Publication number
- EP0316889A2 EP0316889A2 EP88119055A EP88119055A EP0316889A2 EP 0316889 A2 EP0316889 A2 EP 0316889A2 EP 88119055 A EP88119055 A EP 88119055A EP 88119055 A EP88119055 A EP 88119055A EP 0316889 A2 EP0316889 A2 EP 0316889A2
- Authority
- EP
- European Patent Office
- Prior art keywords
- stack
- cuff
- cuffs
- sleeves
- container
- 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.)
- Granted
Links
Images
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B67—OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
- B67B—APPLYING CLOSURE MEMBERS TO BOTTLES JARS, OR SIMILAR CONTAINERS; OPENING CLOSED CONTAINERS
- B67B5/00—Applying protective or decorative covers to closures; Devices for securing bottle closures with wire
- B67B5/03—Applying protective or decorative covers to closures, e.g. by forming in situ
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B67—OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
- B67B—APPLYING CLOSURE MEMBERS TO BOTTLES JARS, OR SIMILAR CONTAINERS; OPENING CLOSED CONTAINERS
- B67B3/00—Closing bottles, jars or similar containers by applying caps
- B67B3/02—Closing bottles, jars or similar containers by applying caps by applying flanged caps, e.g. crown caps, and securing by deformation of flanges
- B67B3/06—Feeding caps to capping heads
- B67B3/062—Feeding caps to capping heads from a magazine
Definitions
- the invention relates to a system for the automatic placement of capsules on bottles or other containers, with an edge and an inwardly bent neck on the small open or closed with an intermediate base, and with a lateral jacket made of elastic material.
- the invention also relates to a method in which the individual attachment pieces, which have a stack of frusto-conical sleeves made of elastic material, which have a rim and an inwardly turned neck on the small open or closed base, are mechanically separated and placed on containers carried past be put on.
- Such frusto-conical sleeves made of elastic material are used in the food and pharmaceutical industries, but also in a wide variety of areas other than bottle caps, sealing rings, closure flaps for pots, shrink-fit hose packs for wrapping bottles and containers, glasses and lids, and the like.
- the containers in turn receive the frusto-conical elastic cuffs in the corresponding section, for example the opening, the neck, the main part, etc.
- a disadvantage is, for example, that the known systems of this type can only separate capsules from the stack that are specially designed for this purpose and have a small bottom.
- a further disadvantage is that the known systems for placing capsules cannot successfully remove the individual closure parts from the stack if they are not stored in the stack with an even spacing.
- the known systems for applying closure elements also have the disadvantage that they cannot easily separate the individual closure elements from the stack if the distance between the elements is not sufficiently large, for example in the range of 8-10 mm. Therefore, in the prior art, a stack of elastic frusto-conical sleeves consists of relatively few elements, so that it is only briefly automated, i.e. can be worked without tracking a new batch. In addition, the insertion of the stack into the singling head requires a long way, as a result of which the throughput that can be achieved per unit of time is limited to relatively low values.
- the invention has for its object to avoid these disadvantages of known systems to create a reliably working device for mechanical feeding, the individual closure elements from a stack of truncated cone-shaped sleeves made of elastic material with a higher frequency or throughput and passed by Can put on container, these cuffs have an edge with a neck bent inwards from the small base, regardless of whether this is open or closed by an intermediate floor.
- a mechanical separating and feeding device for individual closure elements is to be created from a stack of truncated cone-shaped sleeves, in which the distance between the closure elements does not necessarily have to correspond to a minimum value, at least not the distance that would be required with the thickness of the elastic material of the sleeves in order not to deform the cuffs themselves when they are placed on the stack.
- This also applies to frustoconical sleeves with a pronounced inclined position, in which in any case elastic stacks can be formed from the greatest possible number of individual elements.
- the cuffs or capsules used according to the invention having an edge and an inwardly bent neck on the small open or closed with an intermediate floor, and with a side jacket made of elastic material.
- This system is developed according to the invention by combining the following features: a feed device which feeds a stack of sleeves or the like in the forward direction and fixes the stack under the action of an axial force, a separating device with one or more heads for separating the individual cuffs from the stack, a device for transferring and conveying the separated sleeves to a feed container or intermediate storage, - A device for placing and feeding the cuffs on or to the containers; - A control for executing an automatic operating cycle of the system in such a way that the containers which are guided through by a feed device (conveyor belt) and whose feed cycle determines the work sequence of the system, each lift the individual sleeves from that provided for the respective container.
- the individual devices are arranged in a base frame, which in particular can be a metal frame.
- the device exists device from a device for forwarding the stack, which ends in two small barriers, each of which on opposite arches separates the edge of the frustoconical sleeve from the base of the stack; it also has a connecting and gripping bar with two or more thickenings which can be acted upon by a vacuum pump and which engage in the cavity of the sleeve and grip a single sleeve with the aid of two slides arranged outside the stack in accordance with the opening of the slider; Furthermore, a pair of belts is provided, between which the respectively gripped and thus isolated cuff is set down from the connecting rod, whereupon they are passed on to a receptacle (temporary storage) until a movable closure element in turn feeds the cuff to an automatically suctioning attachment space. The cuff is to be picked up from this last-mentioned space and is to be released during the transition to the level below.
- the device shows a device for pulling off the individual capsules from a stack.
- the device has a connecting rod 1 with two or more opposing thickenings or lugs 2, which can be actuated by a vacuum pump and which can be adjusted both axially and in height in accordance with the height and diameter of the frustoconical rings or sleeves to be separated or are controllable or regulable.
- the connecting rod 1 is provided with a forked slide 3.
- the connecting rod is shown in the position in which it has traveled the longest distance and has caused a recoil of the stack consisting of truncated cone-shaped sleeves with respect to locking hooks 6.
- the sleeves are stacked on a conveyor belt 5.
- the stack is moved forward in the infeed area of the carrying or feed belt 22.
- Small pressing parts 7 if also referred to as pressing parts
- grippers 8 are opened.
- the locking hooks 6 each consist of a wing 4 and a tongue 15, both of which are attached in a T-shape.
- the frustoconical sleeves to be mechanically placed are designed such that they have a lateral flange or wall section and consist of plastic, metal or a composite material with a small thickness, so that they are somewhat elastic.
- This property can be reinforced by corrugating the wall, for example in the form of grooves.
- Fig. 2 shows the connecting rod 1 in the same position as in Fig. 1; the stack is also in the recoil position with respect to the locking hooks 6.
- the small pressing parts (pressing parts) 7 are lowered in such a way that they press the sleeves into an oval shape, so that it becomes possible for the thickenings or shoulders 2 to can attack the inner wall of the first cuff.
- Fig. 3 shows the small pressed parts 7 in the raised position; the connecting rod 1 pulls or leads the first oval-shaped sleeve, which lies firmly against the thickenings between the locking hooks 6 with the edge barely visible outside, in front or on.
- the second sleeve with the rest of the stack is moved forward to the locking hooks 6 and is gripped by them.
- the grippers 8 are in their lower position and enclose the second and subsequent sleeves in the stack. Due to the fact that the various cuffs are inserted one on top of the other and staged one inside the other, they are firmly held together by the grippers, which increases the elasticity and prevents deformations during the removal of a cuff which has got stuck on the thickenings 2.
- FIG. 4 shows the collar deformed by the opposing thickenings or shoulders 2 in the form of an "8", the conveyor belts 5 for the stack and the locking hooks 6 being provided on the connecting rod 1. From the figure it can be clearly seen that the distance between the openings of the thickened areas must be equal to or smaller than the diameter of the small base of the frustoconical sleeves, while the distance between the locking hooks 6 is smaller than the large base of a frustoconical sleeve and greater than whose small base must be.
- FIG. 5, 6 and 7 illustrate the method for inserting the frustoconical sleeve pulled from the stack by the connecting rod 1 between a pair of belts 9, and the release locks 21 for the rod.
- the straps 9 are parallel and their mutual spacing is adjusted according to the small base of the cuffs, the edge of the cuffs being held between the straps themselves.
- the conveyor belts 9 are closed until the connecting rod 1 is completely withdrawn; the length of the bands depends on the diameter of the sleeves and, above all, on the number of pulling heads; it is possible to work with two or more pulling heads which are actuated by other connecting rods 1 and which together form the end for a single pair of belts 9.
- a safe method or procedure for placing the cuffs on the container is to let the container itself grasp the cuffs.
- An arrangement is required for this purpose Lich, at which the opening of the cuff lies at an angle of about 45 °, so that the neck of the container, which is passed on an underlying level, can wind up the cuff itself.
- Fig. 8 shows the pair of parallel belts 9, which work step by step to pass on the cuffs, which were inserted between them by the connecting rod 1, while on oblique axes a pair of half-crossed belts 10 is helical and parallel, whereby these Belts bring the cuffs in the desired direction, namely incrementally up to 90 ° as they move the cuffs with them.
- the straps 10 are, as the figure shows, connected to two boundaries 11, which form the storage container 12, in which the sleeves are aligned next to one another for ejection.
- the boundaries 11 consist of a pair of belts with a directed upper side, which run continuously and, due to their slight sliding friction, hold the cuffs held there under the action of axial thrust.
- a reciprocating closure element 13 At the exit of the boundaries 11 there is a reciprocating closure element 13 with a jaw which separates the individual cuffs which protrude above the cuffs aligned in the storage container 12, while at the same time the remaining cuffs are retained.
- Fig. 9 shows the cuff in the mounting and supply space 14 at an inclination of 45 ° and the neck of a bottle, which is passed, for example, on a belt running underneath, at the moment when the cuff is automatically put on or wound up.
- FIG. 10 shows the housing 17 with a placement and feed space 14 in the form of a half ring in which bores 16 can be seen.
- the housing 17 is provided with a connection 18 for the connection of an air extractor with the appropriate power in order to generate an air flow directed in the direction of the openings 16 for the automatic depositing and stopping of the sleeve to be applied.
- Fig. 11 shows the pair of semi-crossed straps 10 which are arranged to rotate the axes of the cuffs by 90 ° and thus translate them from the horizontal to the vertical, in order in this way to insert the cuff into the automatically emptied container or space 14 to put on and feed in the correct orientation, which is placed on the collecting housing 17 and is articulated in this embodiment in such a way that the sleeve can also be fed in containers which have a protruding opening relative to the surface of the container body, as is the case, for example, in the case of one in FIG 13 beer keg shown is the case.
- FIG. 12 shows the closure element 13, which guides the aligned cuffs to the container with the back of the jaw, a cuff already being fed into the mounting space 14 in the cavity of the element 13.
- the reciprocating movement of the closure element 13 takes place with a rotation of approximately 180 ° in one direction and in the other direction.
- the locking device for the side by side in Container 12 aligned capsule made of a bent plate 20 with sliding contact.
- FIGS. 1 to 13 A method and a device for separating the sleeves from the stack and for placing them on containers when viewed from the front will now be described with reference to FIGS. 1 to 13. It is provided here that the frustoconical sleeves, which are stacked one on top of the other, are pulled off the wall, the stack itself being guided so that the opening of the sleeves to be separated points in the running direction.
- the stack of sleeves is guided forward on the conveyor belts 5.
- a certain forward movement is reached, it strikes the carrying and feed belt 22 near the pulling heads and comes to a standstill by abutment against the locking hooks 6.
- the belt 22 lies on the stack without compressing it and ensures a rapid reaction in the forward movement; it is short and is only so close to the pulling head that there is a free space for inserting the subsequent stack.
- the belts 5 and 22 run continuously; the entrainment effect acting on the stack held by the locking hooks 6 does not lead to deformation or damage to the individual elements stored in the stack, since the sliding friction is very low. Nevertheless, a retraction movement of the stack is easily possible when the slide 3 is actuated.
- the pulling head is actuated as follows:
- the small tongues of the locking hook 6 become approximately in the middle of the distance between the larger and the smaller base of the sleeve, while the small pressing parts 7 and the grippers 8 are located at a short distance from the direction of the cylindrical stacking body.
- the small tongues of the hooks can be moved while the grippers 8 are fixed.
- the passage is briefly reduced when the hook 6 is open, but there remains a space which is large enough to allow the edge deformed in the form of an "8" to pass through the cuff covered by the thickenings, but on the other hand ensures that the following cuff and thus the rest of the stack released from the recoil position are blocked.
- the hooks 6 grip into the edge of the subsequent cuff as soon as the first cuff has been guided past the hook. As soon as a good seal is reached under their area, they close against the grippers 8 and thereby widen the free passage space for the smaller base of the cuff passing through.
- the connecting rod 1, which is actuated by the closure element 19, which inserts the cuffs at a right angle between the straps 9, is displaceable with respect to the height of the cuffs and is moved programmably via three or more holding stations or stops.
- the connecting rod 1 is brought into a position in the bifurcated slide 3 rests against the edge between the smaller base of the sleeve and the thickenings 2 and penetrates on its inner wall only to such an extent that it hardly protrudes beyond the edge and does not oppose resistance within this wall, provided that it is smaller than the diameter of the smaller base of the cuff.
- the pull-off cycle begins with the connecting rod 1 gripping the lowest sleeve in the stack, which is held by the bands 5 and 22 against the locking hooks 6 under axial pressure. This leads to a recoil within the stack 4, which brings it with the edge of the lowermost sleeve from the area of the locking hooks 6 and the grippers 8 and thus to the small pressing parts 7, below and opposite which the thickenings 2 must be positioned exactly, while between the small pressing parts 7 and the thickenings 2 the edge of the lowest cuff, possibly together with some previous cuffs, is located.
- the pressed parts 7 clamp the edge of the lowermost capsule against the thickenings 2, which are acted upon by vacuum, so that they hold it and thereby form two conoids which give the cuff a shape similar to an "8" .
- the small pressed parts 7 stand out again and take the edge of the possibly additionally introduced cuffs with them; since they are made of an elastic material, they return to their normal round shape.
- the connecting rod 1 begins its backward movement, in which it passes between the hooks 6 and may come to a standstill there; it continues to work with the rest of the stack and as soon as it arrives at the locking hook 6, it stops, the edge of the penultimate sleeve striking against the wings 4 of the locking hook 6 and possibly also between the small tongues 16 of said hooks 6 and the Grippers 8 remains stuck while the connecting rod, during its further retraction movement, grips the cuff held by the thickenings 2 and in this way pulls it off the rest of the stack.
- the connecting rod 1 retracts further and introduces the cuff, the edge of which is still oval-shaped, between the upper sides of the straps 9, which in the closed position wait until the edge of the base rests on the conveniently positioned boundaries 21.
- the cuff is then quickly removed from the continuously running pair of belts 10, which further transports them at a speed greater than the running speed of the previous belts 9; then the cuff is taken along, rotated in the desired direction and brought into the receptacle 12 in which the cuffs may be temporarily stored next to one another while the closure element 13 closes the container.
- two independently operating devices are provided for the method, namely a device for pulling the cuffs off the stack and for feeding them, and a device for picking up, setting down, holding and feeding the individual cuffs to the container.
- the mutual independence is based on the fact that the operation of pulling the cuff off does not necessarily have to take place simultaneously with the feeding of another cuff to the container, but that the first device can work until the entire container of the second device is completely empty, and that conversely, the latter can empty the entire container with the cuffs placed therein before it is necessary to refill it.
- the working rhythm depends on the supply from the containers, each of which brings the cuff from the receiving and mounting area 14 and automatically emits a pulse that triggers the actuation of the reciprocating closure element 13 for separating and continuing the individual cuffs.
- This system is placed between the container 12 and the housing 17 and fulfills the double function of fixing the cuffs deposited in the container 12 and taking up the subsequent cuff and feeding them to the placement and feed area 14.
- This system consists of a thin and robust housing, for example se from a thin sheet of stainless steel in the form of a half ring, which has the same surface lines as the circumference of the walls of the cuff to be supplied in the wider area to be encompassed, which is only slightly smaller than half of the cuff itself.
- the inner and outer surface of the half ring 20, which forms the closure element 13, is polished and so smooth that it can be easily inserted between two sleeves, wrinkles, pressure points, cracks and the like being avoided.
- the half-ring 24 of the closure element with the cavity faces the receptacle 12 and comprises the protruding part of a certain number of sleeves, which are also continuously tensioned next to one another under the action of the continuously running belts 10, which prevents their passage.
- the closure element 13 initiates the work cycle, rotating in the direction of the placement container 14 by 180 °, releasing the enclosed cuff and, at the same time as the top of the half ring 24, the remaining cuffs in the container 12 holds on.
- the half ring 24 In the aforementioned phase of rotation, the half ring 24 must be inserted between the protruding and the penultimate cuff, the top of the curvature being inserted in order to separate the cuffs from one another loosen and then grasp the next protruding sleeve in the middle of its recess when rotating in the opposite direction.
- the cuff released by the closure element 13 is immediately grasped and guided away from the feed and attachment area 14.
- This latter device can be arranged or fastened coaxially with the container 12, while the closure element 13, on the other hand, is movable, e.g. is positioned coaxially with the desired angular position, the lower level for connection to the closure element 13 being missing at a certain point and consequently no carrier being present for the isolated capsule.
- the device according to the invention compensates for this discontinuous mode of operation by means of a suction mechanism attached to the housing 17, the housing 17 serving as a collecting container and the placement and supply space 14 being formed therein.
- the suction mechanism Via the bores 16, the suction mechanism generates an air flow in the direction of this opening, which quickly holds the cuff released by the closure element 13 and conveys it into the interior of the space 14 until the opening of the container below and carried past takes it along.
- the stack of the sleeves to be put on is placed onto the conveyor belts 5 by hand or with the aid of known mechanical means in such a way that the openings of the sleeves in the stack face the pulling head to which the stack is guided. On the way there, the stack reaches the carrying and feed belt 22 and is pushed against the locking hook 6 with the edge of the lowermost sleeve.
- the belts 5 and 22 run continuously while the stack rests on the stop hook 6 forming a stop without any damage to the sleeves, e.g. Wrinkles, deformations, etc., can occur, whereupon the transport of the stack is turned by the sliding friction exactly in the direction of the teeth with which one cuff engages the other in the stack.
- the connecting rod 1 which runs vertically between the surface line of the free space between the pair of belts 9, moves towards the bottom of the sleeve, touches the small edges with the forked slider 3 and continues to move until a recoil builds up within the stack is, whereupon the stack with the opening of the lowest sleeve is pushed over the locking hooks 6.
- the small pressing parts 7 lower until they tighten the first cuff and the cuffs immediately above it against the thickenings 2 (cf. FIG. 2).
- the first cuff and the cuffs lying above it, on which the axial thrust force acts in accordance with the thickenings placed under negative pressure form two opposing ones conoid-shaped indentations that begin at the opening so that the cuffs take a shape similar to an "8".
- the first sleeve maintains the figure-eight configuration, while the others assume their original round shape again because of the elasticity of their material, as shown in FIG. 4.
- the connecting rod 1 begins the retraction movement and takes the lowest cuff deformed in the form of an “8” with it.
- the sleeves in the stack return to their original round shape and thus a larger diameter in comparison to the space between the locking hooks 6, whereby the stack is fixed by the locking hooks. In this way, the sleeve firmly connected to the connecting rod 1 easily separates from the rest of the stack and is now passed on between the belts 9 and deposited there.
- the straps 9 are closed and only start to move when the connecting rod 1 has interrupted the vacuum connection to the thickenings and is finally pulled back, the cuff with the edge against the barriers 21 remains lying.
- the cuff's own axis is perpendicular to the axis of the bands 9, which run along a horizontal axis and bring the cuff to the entry point of the turning tapes 10, as shown in FIG. 8. With these belts, the transport of the cuff is continued to the container 12, where the cuff is inclined along the axis set in each case in accordance with the desired angular position.
- the container 12 is already filled with cuffs lying next to one another, which are then to be individually picked up by the closure element 13, conveyed further and released one after the other, so that the cuff newly introduced into the row, which is still under the tensioning action of the bands 10, of all the preceding cuffs pushes axially forward.
- the cuff prepared in the feed and placement area 14 is conveyed directly to the container passed on the belt running beneath it.
- the cuff is pulled off the stack using the same method, but the device for handling and feeding to the container is designed differently.
- the operation of the connecting rod (Fig. 1,2,3,4) is, however, carried out here by a curved swing arm which is articulated and is triggered by a rotating actuating element.
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Wrapping Of Specific Fragile Articles (AREA)
- Auxiliary Devices For And Details Of Packaging Control (AREA)
- Filling Of Jars Or Cans And Processes For Cleaning And Sealing Jars (AREA)
- Absorbent Articles And Supports Therefor (AREA)
- Specific Conveyance Elements (AREA)
- Medical Preparation Storing Or Oral Administration Devices (AREA)
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| IT8417487 | 1987-11-16 | ||
| IT84174/87A IT1220180B (it) | 1987-11-16 | 1987-11-16 | Macchina per l'applicazione automatica di capsule e di manicotti troncoconici flessibili a bottiglie e contenitori vari |
Publications (3)
| Publication Number | Publication Date |
|---|---|
| EP0316889A2 true EP0316889A2 (fr) | 1989-05-24 |
| EP0316889A3 EP0316889A3 (en) | 1989-08-09 |
| EP0316889B1 EP0316889B1 (fr) | 1994-05-25 |
Family
ID=11325009
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP88119055A Expired - Lifetime EP0316889B1 (fr) | 1987-11-16 | 1988-11-16 | Installation pour poser automatiquement des capsules élastiques, tronconiques sur des bouteilles ou autres récipients |
Country Status (4)
| Country | Link |
|---|---|
| EP (1) | EP0316889B1 (fr) |
| AT (1) | ATE106060T1 (fr) |
| DE (1) | DE3889710D1 (fr) |
| IT (1) | IT1220180B (fr) |
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| FR2676033A1 (fr) * | 1991-04-30 | 1992-11-06 | Dinatec Sarl | Installation pour la pose de couvercles sur des recipients tels des pots. |
| FR2752830A1 (fr) * | 1996-08-30 | 1998-03-06 | Scheidegger Albert | Dispositif pour distribuer des coiffes de bouchage |
| WO2003070619A1 (fr) * | 2002-02-19 | 2003-08-28 | Trepak International Ab | Systeme et procede de capsulage |
Family Cites Families (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US2340639A (en) * | 1941-10-22 | 1944-02-01 | Standard Cap & Seal Corp | Feeding and serving mechanism |
| DE1112451B (de) * | 1960-02-05 | 1961-08-03 | Jagenberg Werke Ag | Verfahren und Vorrichtung zum Vereinzeln ineinandergestapelter und von einer Abstuetzung zurueckgehaltener konischer Behaelter bzw. Behaeltermaentel |
| FR1267506A (fr) * | 1960-09-14 | 1961-07-21 | Andersen & Bruun S Fabriker As | Appareil pour dégager à une des capsules à même une pile et pour les appliquer àdes bouteilles |
| NL162347C (nl) * | 1970-09-24 | 1980-05-16 | Simonazzi Spa A & L | Machine voor het aanbrengen van sluitingen op houders, zoals flessen. |
| FR2256897B1 (fr) * | 1972-10-18 | 1977-08-05 | Clisalu Ste |
-
1987
- 1987-11-16 IT IT84174/87A patent/IT1220180B/it active
-
1988
- 1988-11-16 AT AT88119055T patent/ATE106060T1/de not_active IP Right Cessation
- 1988-11-16 DE DE3889710T patent/DE3889710D1/de not_active Expired - Fee Related
- 1988-11-16 EP EP88119055A patent/EP0316889B1/fr not_active Expired - Lifetime
Cited By (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| FR2676033A1 (fr) * | 1991-04-30 | 1992-11-06 | Dinatec Sarl | Installation pour la pose de couvercles sur des recipients tels des pots. |
| FR2752830A1 (fr) * | 1996-08-30 | 1998-03-06 | Scheidegger Albert | Dispositif pour distribuer des coiffes de bouchage |
| WO2003070619A1 (fr) * | 2002-02-19 | 2003-08-28 | Trepak International Ab | Systeme et procede de capsulage |
| US7010902B2 (en) | 2002-02-19 | 2006-03-14 | Trepak International Ab | System and method for capping |
Also Published As
| Publication number | Publication date |
|---|---|
| EP0316889B1 (fr) | 1994-05-25 |
| IT1220180B (it) | 1990-06-06 |
| DE3889710D1 (de) | 1994-06-30 |
| IT8784174A0 (it) | 1987-11-16 |
| EP0316889A3 (en) | 1989-08-09 |
| ATE106060T1 (de) | 1994-06-15 |
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