EP2344404A2 - Qualitätskontrolleinrichtung für eine serie von artikeln, insbesondere flaschen - Google Patents

Qualitätskontrolleinrichtung für eine serie von artikeln, insbesondere flaschen

Info

Publication number
EP2344404A2
EP2344404A2 EP09755967A EP09755967A EP2344404A2 EP 2344404 A2 EP2344404 A2 EP 2344404A2 EP 09755967 A EP09755967 A EP 09755967A EP 09755967 A EP09755967 A EP 09755967A EP 2344404 A2 EP2344404 A2 EP 2344404A2
Authority
EP
European Patent Office
Prior art keywords
installation
articles
control
guides
carousel
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Withdrawn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
EP09755967A
Other languages
English (en)
French (fr)
Inventor
Didier Cloarec
Xavier Rocchetti
Stephan Weber
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.)
Ermi 77
Original Assignee
Ermi 77
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 Ermi 77 filed Critical Ermi 77
Priority to EP14191228.7A priority Critical patent/EP2896584B1/de
Publication of EP2344404A2 publication Critical patent/EP2344404A2/de
Withdrawn legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G47/00Article or material-handling devices associated with conveyors; Methods employing such devices
    • B65G47/74Feeding, transfer, or discharging devices of particular kinds or types
    • B65G47/84Star-shaped wheels or devices having endless travelling belts or chains, the wheels or devices being equipped with article-engaging elements
    • B65G47/846Star-shaped wheels or wheels equipped with article-engaging elements
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N21/00Investigating or analysing materials by the use of optical means, i.e. using sub-millimetre waves, infrared, visible or ultraviolet light
    • G01N21/84Systems specially adapted for particular applications
    • G01N21/88Investigating the presence of flaws or contamination
    • G01N21/90Investigating the presence of flaws or contamination in a container or its contents

Definitions

  • the present invention relates to a quality control installation of a succession of articles, in particular glass bottles.
  • Such a control installation makes it possible to carry out in an automated manner several controls on the same type of article, in particular a glass bottle. Items are entered one by one in the control facility, go through different checkpoints, and exit the facility.
  • a control installation generally comprising a carousel.
  • the carousel rotor comprises a succession of housings in which the articles are positioned and then rotated to pass through a succession of checkpoints.
  • This installation is used as part of a series production, and configured to be adapted to the same series of articles with identical characteristics.
  • it is necessary to make many adjustments to the installation in order to adapt it to new article characteristics, especially new dimensions.
  • the document FR 2 900 238 describes a control installation as well as two modules each comprising at least one article control means, means for adjusting at least one control parameter of the article, and means for controlling an article. training. These two modules make it possible to carry out the adjustments for a first module on an adjoining adjustment installation while the second module is in operation in the installation. It is then sufficient when changing the series of items to be controlled, and for the installation is adapted to the new series of articles, to invert the module attached to the fixed frame of the installation with the pre-set module on the setting installation.
  • the object of the invention is to improve the known installations, and in particular to limit the downtime of the installation, while limiting the size and cost of all the equipment implemented by the invention. .
  • the idea behind the invention is to put in place assembly, disassembly, and / or rapid adjustment, for at least part of the elements of the installation that require a new adjustment between two sets of articles.
  • the quality control installation of a succession of articles, in particular bottles, in which elements comprise a drive screw for bringing the articles into successive housings of a carousel wheel. , guides for holding the articles in the housings, at least one control module situated along the path of the articles, and a wheel made up of two disks, is characterized in that at least one of the aforementioned elements is put in place at the using at least one mounting device and / or quick setting.
  • the invention makes it possible to save time during series changes. In addition, the quality of settings and positioning is improved.
  • control station will be called the location where a control is performed, and control module a module located at a control station for performing said control.
  • Checkpoints typically include at least one of the following:
  • the carousel wheel includes on its outer perimeter a succession of dwellings in which articles, in particular bottles, are housed.
  • the dimensions of these dwellings are such that only one article at a time is placed inside a dwelling.
  • the accommodations are open to the outside.
  • the carousel wheel comprises at least twelve housings, of which, for example, four can make it possible to carry out a check each.
  • the radius of the carousel wheel defined as the distance between the center of the carousel wheel and the center of a test article located in a housing of the wheel, is preferably substantially equal to 380 mm in a preferred embodiment of the invention. We can then control articles of diameter ranging from 20 mm up to 180mm. This large radius of the carousel wheel, relatively high, allows to use higher rates, especially because of the smaller curvature of the path carried by the articles driven by the carousel.
  • the carousel wheel may be formed of two pairs of half disks, each pair comprising two half discs, one above the other and kept spaced apart by pieces.
  • these two pairs of half disks constitute two superimposed disks, so as to hold each article in two places.
  • the space between these two disks must be adjusted according to the height of the series of article to control.
  • the adjustment of the space between these two disks takes place prior to the mounting of said disks on the carousel.
  • the two disks are separated into two pairs of half disks.
  • Each half disk is connected to the half disk provided to be located below by parts that define the space between the two superimposed or offset disks. Then, the two pairs of half discs are mounted on the carousel. This saves time adjustment items, since the adjustment of the space between the two carousel discs can be done in advance, while the installation is in operation with another wheel.
  • An insertion screw makes it possible to house, one after the other, the items to be checked in the successive housings of the carousel wheel.
  • the pitch of the screw is chosen to be adapted to the diameter of the items to be controlled, that is to say that the pitch of the screw is slightly greater than the diameter of the items to be controlled.
  • the screw is in a continuous rotation movement, while the carousel alternates between periods during which it is immobile and periods during which it rotates an arc corresponding to a shift of a housing. These two movements are synchronized so that the carousel wheel has at the input of the items an empty housing, at the moment when the screw finishes bringing an article at this input.
  • a rapid assembly and disassembly device makes it possible, for example, to quickly change the screw to replace a first screw with a second interchangeable screw corresponding to a different diameter of the articles.
  • This rapid assembly and disassembly device thus also represents a quick adjustment device, since a change of the input screw makes it possible to adjust the system for introducing the articles according to the diameter of the latter.
  • This quick adjustment device saves considerable time between two uses of the installation with articles of different diameters.
  • the mounting device and / or rapid adjustment comprises a bayonet system that allows to fix the screw on a drive shaft.
  • the bayonet system ensures in particular the calibration angle of the screw on the drive shaft, so that the rotation of the shaft precisely controls the rotation of the screw.
  • the drive shaft is driven by a servomotor. This precise control of the rotation makes it possible in particular to synchronize between the rotation of the screw and the rotation of the carousel wheel, which is also ensured by a servomotor, the two servomotors being controlled from the same control unit. .
  • the articles are held in place in their respective housings of the carousel by guides located radially outside the carousel wheel.
  • means for adjusting the guides between different positions corresponding to different diameters of the article constitute a quick adjustment device. Adjusting the position of the guides allows not only to adapt their position to the maintenance of articles of different diameters, but also allows if necessary to remove an item from its housing, quickly and without specific tools.
  • These means for adjusting the guides preferably comprise an adjustment knob that can be rotated by hand between different predetermined positions, preferably defined by notches. You can also adjust the position of the wheel by reading graduations.
  • One of the guides preferably has a generally dihedral shape, with one side guiding the article along the drive screw, and another face guiding the article at the beginning of its path in the successive housings. This dihedral guide is advantageously adjustable in a direction oblique with respect to each of the two aforementioned faces, to ensure a simultaneous and consistent adjustment of the space left to the articles along the screw and in the housing, depending on the diameter of the articles .
  • the various guides are preferably carried by at least one movable support according to the invention between an open position in which the guides release the articles relative to the housings, and a closed position defined by quick locking means and in which the items are kept in their homes.
  • the means for adjusting the guides between different positions act between the guides and the at least one support.
  • Said support preferably comprises two hinged flaps opening and closing in the manner of a gate, whose opposite ends are fixed while moving ends are adjacent to one another in the closed position and move apart from each other to the outside of the installation during the transition to the open position.
  • the opening of the support thus facilitated saves considerable time and does not require the use of specific tools, in particular when one of the articles needs to be removed from the carousel, for example because it has broken.
  • the rapid locking means are actuated by a user by hand. They allow both to guide the wings of the support in their closed position, then to lock together the two leaves. The lock obtained is then rigid and precise.
  • the rapid locking means comprise a part provided with a V-shaped recess and a pin terminated by a lug, located on a first leaf, and fitting during the closure of the support respectively in a complementary shaped piece and a arcuate-shaped piece, the arc-shaped piece comprising a face which is in contact with the pin after closure of the support, and which is helically shaped.
  • the installation according to the invention may comprise in particular a mounting device, disassembly and rapid adjustment of a control module located at one of the control stations. This device makes it possible to quickly detach the carousel control module, so as to make the settings and configurations of the module outside the carousel, on a preset bench. This saves time between two uses of the installation with items with different characteristics.
  • the rapid assembly and disassembly device comprises, in a preferred embodiment, a removable sliding and locking system by which the control module engages a support connected to the frame of the control installation, as well as a handle allowing its gripping by hand for assembly and disassembly on the frame of the control installation.
  • the control station with this mounting device, disassembly and quick adjustment is advantageously that of the detection of cracks in an article. Indeed, it is a control that requires long adjustments.
  • the commonly used technique for detecting cracks in an article is to use multiple light emitter / receiver pairs, and to detect the light deflected by typical defects such as a peripheral crack at the neck of a bottle, an axial crack at the top of a bottle, etc.
  • the adjustment therefore consists of sending a light beam towards the place where the fault can be, and adjusting the position of the corresponding receiver so that it receives the light deflected by the defect.
  • One or more sample articles with the defects for which adjustment is desired are used for the adjustment.
  • the flatness control station comprises a movable tubular tip, a preferably flat end is applied on the free edge of the neck.
  • the tip according to the invention is connected to a vacuum source and a pressure sensor. Control of the flatness of the free edge is done by lowering the pressure inside the article, and by measuring the pressure in the article, so as to compare the experimental pressure measurements with theoretical pressure measurements. and thus determine the state of closure of the article when the preferably planar end of the tip is applied to the free edge of the neck. If the free edge is not flat, a higher pressure is detected due to the lack of sealing between the tip and the free edge. The measurement by pressure reduction, and not by pressure increase, proved more accurate and faster.
  • said item calibration station may include:
  • mobile means carried by a body and which engage with the neck of the article, in particular the bottle,
  • the - Self-positioning means ensuring between the body of the control module and the frame of the installation at least two degrees of freedom allowing the body to be positioned relative to the article when the movable means engage with the neck.
  • the means which engage with the neck typically comprise a piston, of frustoconical shape with the smallest diameter of cone oriented towards the articles to be controlled, which facilitates its partial engagement at least inside the articles.
  • the larger diameter side of the frustoconical piston is extended by a cylindrical portion of diameter substantially equal to the large diameter of the frustoconical portion. If the inner diameter of the neck is insufficient, the cylindrical portion of the piston does not penetrate into the neck of the bottle. The piston stroke is detected to see if this occurs. This controls the inside diameter of the neck of the articles.
  • the means which engage with the neck also preferably comprise a bell which, if the external diameter of the neck does not exceed a maximum admissible dimension, comes to cap the neck after the means which come into engagement have come into interengagement with the neck. Said bell thus makes it possible to control the outside diameter of the neck. We detect the race of the bell. Insufficient travel indicates that the outside diameter of the neck is excessive.
  • the self-positioning means comprise a system called compliance, that is to say a system adapted to adapt to its external environment, in this case to the position of the neck items to control.
  • Said self-positioning means comprise for example a longitudinal pivot axis substantially parallel to the axis of the article, in particular of the bottle.
  • This pivot axis gives the body which is self-positioned with respect to the article, and which carries the bell and the frustoconical piston, one of the degrees of freedom allowing it to self-position relative to the article when the means movers come into engagement with the neck.
  • the pivot axis is substantially located between the axis of the bottle and the axis of the carousel, and in the same plane as these. In other words, the pivot axis intersects the radius of the wheel passing through the housing at the control station in question.
  • the self-positioning means also comprise a guide in transverse translation, perpendicular to the longitudinal pivot axis, and substantially radial relative to the carousel.
  • the longitudinal pivot axis and the translation guide jointly enable the axis to take any position parallel to the axis of the carousel in a given zone, and therefore to coincide with the axis of the article when the moving means engage with the neck.
  • the calibration station comprises, in a preferred embodiment, resilient means for biasing the body into a rest position about the longitudinal pivot axis and along the translation guide when the engaging means are free.
  • the rest position of the self-positioning means is substantially central, so that from this position, and thanks to the self-positioning means, the engaging means can reach the necks of the successive items to be controlled, whatever their exact position. when a dwelling stops at the checkpoint in question.
  • the evacuation path of an article out of its carousel housing is carried backwards, on an exit belt, along an exit axis of the carousel which substantially extends a radius of the carousel wheel.
  • Each article leaves its housing carousel substantially when its housing goes through the radius supra.
  • the output of the articles is therefore "in the axis of the carousel", in other words along a path carried by a straight line which intersects the axis of rotation of the carousel wheel.
  • the exit of the articles is thus natural, and particularly stable, although their exit out of a carousel housing driven by a treadmill would tend on the contrary to unbalance them.
  • the speed of the exit mat is decorrelated from that of the entrance mat.
  • the combination of the natural exit of the articles, in the axis of the carousel, and the independent control of the conveyor belt, makes it possible to increase the speed of exit of the articles, the latter being more stable when they leave the carousel thanks to the output in the axis.
  • the speed of the exit belt is adjustable to optimize the acceleration imparted to the items when they reach the exit station. This acceleration results from the friction between the bottom of the article which arrives in the circumferential direction, and the carpet which circulates in the radial direction.
  • FIG. 1 represents an overall perspective view of the installation according to the invention in the example of the bottle control
  • FIG. 2 is a view from above of the lower part of the installation according to the invention;
  • Figure 3 is a perspective view of the drive shaft of the screw;
  • Figure 4 is an axial sectional view of the bayonet system;
  • Figure 5 shows in perspective the device for adjusting the position of a guide;
  • Figure 6 is a view similar to Figure 5, but partial and in section along the adjustment rack;
  • Figure 7 shows in perspective the crack control module;
  • Figure 8 shows in partial perspective the crack control module at the time of being engaged on the installation;
  • Figure 9 shows in perspective the crack control module engaged on the installation and cooperating with a bottle;
  • Figure 10 shows in section the mounting device, disassembly and rapid adjustment of a control module;
  • Figure 11 shows in perspective the control station of the flatness of the free edge of the article;
  • Figure 12 shows in perspective the item calibration station;
  • 13 shows in perspective the rapid locking means of the support which carries the guides;
  • Figure 14 shows in perspective the support which carries the guides, in the open position
  • Figure 15 shows in perspective the carousel wheel.
  • the installation 1 comprises a frame 6, a carousel having a wheel 3 rotatably supported along a vertical axis in the frame 6, a treadmill 2 for conveying articles to the carousel, and a treadmill exit 4 through which the articles leave the carousel.
  • the conveyor belt 2 passes a certain distance from the axis of the wheel 3 of the carousel.
  • the longitudinal axis of the exit belt 4 is substantially radial relative to the axis of the carousel.
  • the common support plane defined by the conveyor belts 2 and 4 is complemented almost contiguously by a fixed floor 61 (better seen in FIG. 11) situated under the wheel 3 and on which the bottom of the articles slides when they are driven. by the wheel 3.
  • the wheel 3 of the carousel comprises on its outer perimeter a succession of housing 5 open radially outwardly.
  • Each housing 5 is intended to receive an article (not shown in Figure 1), and thus causes the articles from the conveyor belt 2 to the routing conveyor output 4, through a succession of checkpoints 7
  • the rotation of the wheel 3 is done in successive steps, so that the articles remain stationary at a control station 7 during a control operation, then are brought to the next control station 7.
  • the wheel 3 consists of two superimposed disks 3a and 3b which rotate together and together define the housing 5, so that each article is held and biased in displacement in two different positions of its height.
  • the carousel wheel comprises at least twelve housings, of which, for example, four can make it possible to carry out a check each.
  • the radius of the carousel wheel defined as the distance between the center of the carousel wheel and the center of a test article located in a housing 5 of the wheel, is preferably substantially equal to 380 mm in one embodiment. privileged of the invention. We can then control articles of diameter ranging from 20 mm up to 180mm. This large radius of the carousel wheel, relatively high, allows to use higher rates, especially because of the smaller curvature of the path carried by the articles driven by the carousel. According to a particular embodiment of the invention shown in FIG.
  • the carousel wheel may be formed of two pairs of half disks 400 and 405, each pair comprising two half-disks 401, 402 and 403, 404 respectively, one of which above each other and which are kept spaced from each other by parts 406.
  • these two couples 400 and 405 of half disks constitute two superimposed disks (3a and 3b in FIG. 1), so as to hold each article in position. two places.
  • the space between these two disks must be adjusted according to the height of the series of article to control.
  • the adjustment of the space between these two disks takes place prior to the mounting of said disks on the carousel. For this, the two disks are separated into two pairs of half disks.
  • Each half-disc 401 or 402 respectively is connected to the half disc 403 respectively 404 provided to be located below by parts 406, for example spacers, which define the space between the two superimposed or offset discs. Then, the two pairs of half discs are mounted on the carousel. This saves time adjustment items, since the adjustment of the space between the two carousel discs can be done in advance, while the installation is in operation with another wheel.
  • an entrance screw 8 which serves to bring the articles from the conveyor belt 2 to a housing 5 of the carousel 3.
  • the screw 8 is oriented horizontally, substantially towards the axis of the carousel, and thus obliquely with respect to the direction of movement of the conveyor belt 2.
  • the successive articles pushed by the treadmill 2 are each housed in a thread recess of the screw 8.
  • the pitch of the screw 8 must be adapted to the diameter of the items to be controlled in the installation 1.
  • the screw 8 brings each article at a controlled speed to a respective housing 5 of the carousel wheel 3.
  • the article then passes successively through the various control stations 7 by sliding on the fixed floor 61, then comes into contact with the conveyor belt 4 which drives the article out of its housing 5 of the wheel 3 of the carousel.
  • the direction of movement of the articles leaving their respective housings of the carousel is then radial relative to the axis of the carousel.
  • the output of the article is therefore "in the axis of the carousel" in a natural way.
  • a curvilinear guide 80 positively defines the outer limit of the turn that the articles must accomplish to pass from the carousel to the exit treadmill 4.
  • a guide is not absolutely indispensable, the articles easily taking the direction of movement of the exit treadmill 4 as soon as their bottom comes into contact with said mat 4.
  • the output treadmill 4 and the treadmill 2 do not necessarily move at the same speed.
  • the output speed of the article may be greater than the speed of entry into a carousel housing.
  • the latter With the output of the articles "in the axis of the carousel", that is to say following a rectilinear path D which is the extension of a radius of the carousel, the latter are particularly stable when they leave a housing of the carousel driven by the output belt 4, and it is thus possible to use output speeds of particularly high items, by independent control of the speed of the output belt 4. More particularly, by optimizing the speed of the output belt 4 , optimizing the friction between the bottom of the article arriving at the exit station and the exit belt 4, and optimizing the acceleration experienced by the article.
  • the output belt 4 also forms a plan for sorting the articles. Positively controlled items (with no defect) continue their journey to be stored waiting to be filled or to directly reach a filling machine. The others are automatically separated by a movable switch plate not shown, automatically actuated. It is also possible to extract from the flow of articles a defective article which has been knowingly introduced at the entrance to check the correct operation of the control installation.
  • the screw 8 is rotated by a servomotor which synchronizes the rotation of the screw 8 with the rotation of the wheel 3 of the carousel.
  • the wheel 3 shifts from a control station 7, then presenting the next empty housing 5 to the inlet, when the screw 8 has rotated a turn and brings a new item to the wheel 3 of the carousel.
  • FIG. 3 shows a notched belt transmission system 10 which drives the rotation shaft 11 of the screw 8.
  • This type of transmission guarantees the transmission of the angles, avoiding slipping, which contributes to the good synchronization between the movement of the screw 8 and the movement of the wheel 3 of the carousel.
  • the screw 8 is fixed to the drive shaft 11 by a bayonet attachment whose detail is visible in FIG. 4.
  • the principle consists first of all in sliding the screw 8 on the shaft During this movement, the shaft penetrates into an axial bore of the screw 8.
  • the screw 8 has two diametrically opposed lugs protruding radially inside its bore, which slide in two axial grooves 62 of the 11.
  • the two lugs (not shown to lighten the figures) are made by metal rods inserted into radial housings 15 formed in the screw 8.
  • the grooves 62 are connected to a striker 63 by a quarter-circle groove 64, which gives the end of the groove a general hook shape.
  • the screw 8 pushes a ring 12 slidably mounted on the shaft, which compresses a spring 13 mounted around the drive shaft 11 between the ring 12 and a shoulder of the shaft 11. a quarter turn with the screw 8, still compressing the spring 13, so that the lugs move in the grooves 64, then release the screw 8 so that the spring axially pushes the screw 8 while the lugs are housed in the strikes 63.
  • the screw is then fixed relative to its drive shaft 11, without the possibility of rotation or translation with respect thereto.
  • This bayonet fixing system allows the rapid assembly and disassembly of the screw 8, so as to quickly replace a screw 8 having a pitch adapted to a first series of articles, by a second screw 8 having a different pitch adapted to a second series of articles.
  • guides 9 which extend radially outwardly of the wheel 3 to hold the articles in place in their respective housings.
  • the active faces of the guides 9, turned towards the axis of the carousel, have a shape of an arc of a circle, of radius for example substantially equal to the radius of a circle passing through the axis of the carousel and by an average position of the guides. 9, and located in the plane of the wheel 3 of the carousel.
  • the guides 9 are arranged one after the other with a certain free space between them. Means 16 make it possible to adjust the guides 9 between different positions corresponding to different diameters of the article.
  • the adjustment of the position of the guides 9 not only makes it possible to adapt their position to the maintenance of articles of different diameters, but also makes it possible, if necessary, to remove an article from its housing 5, quickly and without specific tools.
  • the different positions respectively correspond to different distances between the active faces of the guides 9, and the axis of the carousel.
  • Each guide is fixed on the radially outer side, to a rack 18 extending radially outwards.
  • the means 16 for adjusting the position of the guides 9 further comprise a control wheel 17 that can be rotated by hand, relative to a block 66 secured to the frame, between different positions, preferably defined by notches.
  • the wheel 17 is integral with a pinion 19 ( Figure 6) which meshes with the rack 18, so that the rotation of the rack moves the guide 9 so as to adjust the distance between the active face and the axis of the carousel.
  • a locking system makes it possible to hold the adjustment knob 17 in position. In this case, it is first necessary to deactivate the locking of the rotation of the adjustment wheel 17 before being able to perform a new adjustment of the control wheel 17. position of the guides 9. The activation and deactivation of the locking can be carried out simply by pressing on the top of the adjustment wheel 17, or by pulling it towards oneself.
  • the angle of rotation between two notches of the adjustment wheel 17 corresponds to 3 mm of movement of the rack 18 and the guide 9.
  • the guides 9 comprise a guide 20 having the general shape of a dihedron. It will be designated thereafter by dihedral guide 20. It has two active faces 21 and 22 forming a convex angle. The face 21 guides the article along its path along the screw 8, on the side of the article opposite the screw 8, while the other face 22 guides the article at the beginning of its path on the carousel.
  • the dihedral guide 20 is adjustable in a direction oblique with respect to the faces 21 and 22, so that the adjustment of its position makes it possible to simultaneously adjust the space left to the articles along the screw 8, and in the recesses 5.
  • the adjustment device of the guide 20 is similar to the adjustment devices 16 already described, except that its rack 67 is not radial, but extends in the oblique direction of adjustment.
  • the guides 9 are carried by a support 23 ( Figure 2).
  • This support 23 comprises quick locking means 24.
  • the support 23 is movable between an open position in which the guides 9 release the articles relative to the housing 5, and a closed position in which the articles are held in their housing 5 .
  • the means 16 for adjusting the guides act between the guides 9 and the support 23. More particularly, the blocks 66 are fixed to the support 23. When the adjustment wheels 17 are in a locked state, the racks 18, and with them the guides 9, are integral with the blocks 66, and therefore the support 23.
  • the support 23 comprises two leaves 25 whose opposite ends 25a are fixed relative to the frame 6 of the installation 1, and articulated relative thereto. The other two ends 25b are adjacent to each other in the closed position and move away from each other to the outside of the installation 1 when moving into the open position, by pivoting each flap around its hinged end 25a, as illustrated by dashed lines 25c representing the trajectory of the ends 25b.
  • the rapid locking means 24 make it possible to hold the support 23 in the closed position when the installation 1 is in operation.
  • the rapid opening and closing of the support 23 saves time when it is necessary to reach the inside of the carousel. For example, it may happen that an article is broken inside the installation 1, and that it is then necessary to quickly remove from the installation 1 the debris of the article.
  • the rapid locking means 24 comprise on a first leaf end 25b, a part provided with a V-shaped recess 101 into which, when the two leaves 25 are closed, a complementary shaped piece 103 is located. on the opposite flap end 25b.
  • the rapid locking means 24 comprise on the first end of the wing 25b, a rod 102 which, when the two flaps 25 are closed, is embedded in a circular arc-shaped part 104 located on the opposite flap end 25b.
  • the part provided with a hollow V-shaped 101 and the complementary shaped piece 103 allow to position the two wings 25 to a theoretical centering position.
  • the rapid locking means 24 further comprise a handle 105 located on the first end of flap 25b. By turning the handle 105, one adjusts precisely the clamping against each other of the two ends of flaps 25b opposite, with a lug 106.
  • the lug 106 is fixed to the end of the rod 102.
  • the axis the main pin 106 is perpendicular to the main axis of the rod 102.
  • the rod 102 is connected to the handle 105, so that when the handle 105 is turned, the rod 102 and the pin 106 also turn .
  • the handle When the two flaps 25 are closed, the handle is in the up position, in abutment, which corresponds to a position of the lug 106 such that the rod 102 easily penetrates into the arc-shaped piece 104.
  • this helical face 107 is in contact with the lug 106.
  • the lower the handle 105 the more the ends of 25b opposite flaps, since the lug 106 moves towards the thicker part of the arc-shaped piece 104. This provides a rigid and precise locking of the support 23.
  • the installation 1 comprises one or more devices 26 for mounting, dismounting and quick adjustment (see FIG. 10) of a control module 27 (see FIGS. 7 to 10).
  • Such devices 26 make it possible to be able to very quickly change a control module.
  • the control module 27 is located at the location of a control station 7.
  • the device 26 for quick assembly and disassembly consists of a slide and quick-lock system 29.
  • the slide system comprises a linked rail 30 to the frame 6 of the installation 1, and extending in a radial direction relative to the axis of the carousel, and a slider 28 integral with the module body.
  • the slider 28 of the control module 27 is slid into the rail 30, then the quick-lock 29 blocks the control module 27 in position relative to the frame 6.
  • the quick-lock system 29 can be unlocked manually when it is desired to withdraw the control module of the installation 1.
  • the control module 27 advantageously comprises a handle 31 allowing it to be gripped by hand during rapid assembly and disassembly of the control module 27.
  • Figure 10 shows the rapid locking system 29. When the user brings back to him a handle 32 for unlocking and locking carried by the frame 6, the handle tilts a lever 33 about an axis 34.
  • the lever then drives the upward translation of a mobile assembly 35 comprising in particular a lock 36 provided to be able to sink into a housing 37 on the slider 30 of the control module 27.
  • Said mobile assembly 35 is biased downward by a spring 38.
  • the tilting of the handle 32 thus makes it possible to lift the lock 36 to allow the control module 27 to be positioned, then, when the handle 32 is released, and under the action of the spring 38, the lock 36 'pushes in the housing 37 and thus prevents the control module 27 to slide along the rail 28.
  • Installations 1 can be provided on the installation 1 for checkpoints 7 that are not occupied, but already provided with the device 26 for rapid assembly and disassembly, so that the installation 1 can be easily completed. Thus, if one day we wish to carry out an additional check on the articles, or if a series of articles in particular requires at least one additional check, it will be quick and simple to mount an additional control module 27 on the installation 1.
  • the slider 30 and the elements of the quick lock 29 belonging to the control module 27 are compatible with a second slide and a second quick lock 29, this time belonging to an adjustment bench.
  • This adjustment bench is used to adjust a control module 27 outside the installation 1.
  • the device 26 for fast assembly and disassembly will be used for controls that require long adjustments.
  • the device 26 can be used for the control consisting of detecting cracks on the articles.
  • FIG. 7 shows a control module 27 for detecting cracks, comprising sockets 39 for electrically supplying light emitters, sockets 40 for supplying light receivers, and so-called reserve sockets 41.
  • the module also comprises several vertical rods 42 each terminated by a support 43.
  • the supports 43 may each receive a transmitter or a light receiver.
  • the rods are adjustable in height and in rotation about their axis relative to the body of the module, so as to allow the adjustment of the emitters 59 and receivers 58 in height and orientation.
  • the technique for detecting cracks (also called "glazes") on an article is to check the illumination of typical defects such as a peripheral crack at the neck of a bottle. When we illuminate a crack on an article such as a glass bottle, and observe the article at an angle, we clearly see the illuminated cracking. Each pair of rods 42 can detect a different typical cracking.
  • the transmitter 59 and the receiver 58 are positioned so that the emitter 59 illuminates in a direction such that the cracking it is to detect is illuminated if present, and so that the receiver 58 receives the light intensity returned by the cracking when it is illuminated by the transmitter 59.
  • the different transmitter / receiver pairs are used with light signals of different frequencies, so that the pairs do not interfere between they. The adjustment of the position of the different transmitter / receiver pairs is therefore done on an adjustment bench annexed to the installation 1, and by using sample articles presenting the various typical defects that one wants to be able to detect.
  • a commercial optical fiber amplifier for example sold by the company KEYENCE (France) SA, PNP output model FS-V31P
  • the programming of which is modified so that detects a signal and not a lack of signal.
  • a type of cracking also referred to as glaze
  • the optical fiber amplifier comprises a clocked light source, a photo detector and an amplifier.
  • the installation 1 also comprises, according to one embodiment, a flatness checkpoint 44 (see FIG. 11), making it possible to check the flatness of the free edge of the article 45.
  • the flatness checkpoint 44 comprises a mouthpiece tubular end 46 movable, a preferably planar end 47 is applied to the free edge of the neck of the article 45.
  • the preferably planar end 47 is pierced with a hole allowing air to pass, placed on the preferably flat end 47 so that it allows to connect an air duct present inside the tubular nozzle 46 and the inside of the article 45.
  • the tubular nozzle 46 is connected by the air line to a vacuum source 48, as well as to a pressure sensor 49.
  • the tubular tip 46 is translated downwardly and vertically until the preferably planar end 47 is in contact with the free edge of the article.
  • the vacuum source 48 makes it possible to reduce the pressure inside the article 45, and the pressure sensor 49 makes it possible to follow the evolution of the Within a preferred embodiment, the vacuum source acts continuously.
  • the installation 1 further comprises a checkpoint of diameter 50 called calibration station (see Figure 12) including in particular a column 51 fixed relative to the frame 6 of the installation 1, a body 52, moving means that come in engagement with the neck of article 45, and means of self-positioning.
  • calibration station see Figure 12
  • the moving means comprise in particular a frustoconical piston 53 which is centered in the neck.
  • the conical portion of the piston 53 facilitates its insertion at least partially in an article 45, while its cylindrical end is the one used to control the inside diameter of the neck of the article 45. If the piston 53 is fully engaged in the neck of the article 45, it is considered that the inner diameter of the article 45 is greater than or equal to the diameter of the cylindrical portion of the piston.
  • a bell 54 caps the neck after the piston 53 is engaged within the article 45 to verify that the outside diameter of the neck does not exceed a certain value.
  • the self-positioning means provide at least two degrees of freedom between the frame 6 of the installation 1 and the body 52.
  • the self-positioning means comprise a longitudinal pivot axis 55, substantially parallel to the the axis of the article 45, located between the column 51 and the axis of the piston 53.
  • the body 52 for example makes a rotation of plus or minus a theta angle, where theta is typically between 10 and 15 °.
  • the self-positioning means further comprise a transverse translation axis 56, perpendicular to the longitudinal pivot axis 55.
  • the self-positioning means preferably comprise a frame 71 pivotally mounted in a casing 72 around the pivot axis 55.
  • the body 52 of the module carrying the actuating gates of the piston 53 and the bell 54 comprises a sole 73 provided with lugs 74 which slide on rods 76 of the frame 71, parallel to the direction of translation 56.
  • Springs 77 placed on either side of the lugs 74 recall the sole 73 in the average position along the translation direction 56.
  • FIG. 12 also shows a laser beam 57.
  • This laser beam is emitted by a transmitter 120 to a receiver 121.
  • the laser beam emitted by the transmitter is cut off and no longer reaches the receiver 121, which makes it possible to detect the presence of an article 45, not only between the transmitter and the receiver, but also opposite the control stations, taking into account the fixed interval and well known between the successive housings 5 of the wheel 3.
  • the signal of the receiver 121 can be used to stop the rotation of the wheel 3 after each elementary rotation corresponding to the pitch between two housings 5. The following elementary rotation for example starts a certain predetermined time after stopping, or when all checkpoints have returned to the waiting position of the next cylinder.
  • a handle which can be equipped with a control module for handling during assembly and / or disassembly can be removable to facilitate access to the control module and / or the items to be controlled and the carousel when the module is in place on the control facility.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Specific Conveyance Elements (AREA)
  • Supplying Of Containers To The Packaging Station (AREA)
  • Control Of Conveyors (AREA)
EP09755967A 2008-10-06 2009-10-06 Qualitätskontrolleinrichtung für eine serie von artikeln, insbesondere flaschen Withdrawn EP2344404A2 (de)

Priority Applications (1)

Application Number Priority Date Filing Date Title
EP14191228.7A EP2896584B1 (de) 2008-10-06 2009-10-06 Qualitätskontrollanlage einer Reihe von Artikeln, insbesondere von Flaschen

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
FR0856767A FR2936869B1 (fr) 2008-10-06 2008-10-06 Installation de controle de la qualite d'une succession d'articles, en particulier des bouteilles.
PCT/FR2009/051895 WO2010040942A2 (fr) 2008-10-06 2009-10-06 Installation de controle de la qualite d'une succession d'articles, en particulier des bouteilles

Related Child Applications (1)

Application Number Title Priority Date Filing Date
EP14191228.7A Division EP2896584B1 (de) 2008-10-06 2009-10-06 Qualitätskontrollanlage einer Reihe von Artikeln, insbesondere von Flaschen

Publications (1)

Publication Number Publication Date
EP2344404A2 true EP2344404A2 (de) 2011-07-20

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EP14191228.7A Not-in-force EP2896584B1 (de) 2008-10-06 2009-10-06 Qualitätskontrollanlage einer Reihe von Artikeln, insbesondere von Flaschen
EP09755967A Withdrawn EP2344404A2 (de) 2008-10-06 2009-10-06 Qualitätskontrolleinrichtung für eine serie von artikeln, insbesondere flaschen

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EP14191228.7A Not-in-force EP2896584B1 (de) 2008-10-06 2009-10-06 Qualitätskontrollanlage einer Reihe von Artikeln, insbesondere von Flaschen

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Country Link
EP (2) EP2896584B1 (de)
ES (1) ES2662872T3 (de)
FR (1) FR2936869B1 (de)
WO (1) WO2010040942A2 (de)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2965255B1 (fr) * 2010-09-28 2012-10-26 Ermi 77 Dispositif de conduite d'articles a l'entree d'un carrousel rotatif.
CN112173672B (zh) * 2020-09-24 2022-02-01 河北百缝制线股份有限公司 一种筒纱自动配重装置及其配重方法
CN114486923B (zh) * 2022-03-14 2023-07-07 南通理工学院 基于压缩感知的轴类零件表面缺陷在线连续检测装置及方法

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4275808A (en) * 1977-06-29 1981-06-30 K-Tron International Inc. Interchangeable volumetric screw feeder
DE9101934U1 (de) * 1990-03-27 1991-05-08 Fa. Hermann Heye, 3063 Obernkirchen Fotodetektor zur Fehlerprüfung von Glasbehältern
DE4111145C2 (de) * 1991-04-06 1995-09-14 Schott Glaswerke Verfahren zum Prüfen medizinischer Ampullen
JP4385606B2 (ja) * 2003-01-29 2009-12-16 株式会社コオエイ 壜等の容器の側面検査装置
FR2900238B1 (fr) * 2006-04-24 2008-07-25 Sgcc Sa Module et installation de controle d'un article et installation de reglage de ce module

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See references of WO2010040942A2 *

Also Published As

Publication number Publication date
EP2896584A3 (de) 2015-11-11
WO2010040942A2 (fr) 2010-04-15
EP2896584A2 (de) 2015-07-22
FR2936869B1 (fr) 2014-10-31
FR2936869A1 (fr) 2010-04-09
ES2662872T3 (es) 2018-04-10
EP2896584B1 (de) 2017-12-20
WO2010040942A3 (fr) 2010-06-03

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