WO2024251756A1 - Système de manipulation de vitrage - Google Patents
Système de manipulation de vitrage Download PDFInfo
- Publication number
- WO2024251756A1 WO2024251756A1 PCT/EP2024/065377 EP2024065377W WO2024251756A1 WO 2024251756 A1 WO2024251756 A1 WO 2024251756A1 EP 2024065377 W EP2024065377 W EP 2024065377W WO 2024251756 A1 WO2024251756 A1 WO 2024251756A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- glazing
- movement
- handling system
- force
- sliding
- 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.)
- Ceased
Links
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B25—HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
- B25H—WORKSHOP EQUIPMENT, e.g. FOR MARKING-OUT WORK; STORAGE MEANS FOR WORKSHOPS
- B25H1/00—Work benches; Portable stands or supports for positioning portable tools or work to be operated on thereby
- B25H1/02—Work benches; Portable stands or supports for positioning portable tools or work to be operated on thereby of table type
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B25—HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
- B25H—WORKSHOP EQUIPMENT, e.g. FOR MARKING-OUT WORK; STORAGE MEANS FOR WORKSHOPS
- B25H1/00—Work benches; Portable stands or supports for positioning portable tools or work to be operated on thereby
- B25H1/14—Work benches; Portable stands or supports for positioning portable tools or work to be operated on thereby with provision for adjusting the bench top
- B25H1/16—Work benches; Portable stands or supports for positioning portable tools or work to be operated on thereby with provision for adjusting the bench top in height
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65G—TRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
- B65G49/00—Conveying systems characterised by their application for specified purposes not otherwise provided for
- B65G49/05—Conveying systems characterised by their application for specified purposes not otherwise provided for for fragile or damageable materials or articles
- B65G49/06—Conveying systems characterised by their application for specified purposes not otherwise provided for for fragile or damageable materials or articles for fragile sheets, e.g. glass
Definitions
- the present invention relates to systems linked to the handling of glazing, in particular for glazing intended for the transport sector: automobile, bus, truck or for glazing intended for buildings.
- the glazing used is handled on many occasions such as during assembly, installation or replacement or maintenance.
- the glazing is handled before being installed in its host structure or after being removed from its host structure for replacement or maintenance (repair).
- the glazing is carried by an operator and placed on a docking station or handling system.
- the glazing in question is glazing used in the transport or construction sector and these glazings have large dimensions and therefore a significant weight.
- a known handling system consists of a table composed of two metal profiles in the shape of a rectangular bridge arch and articulated along an axis passing through the middle of their vertical uprights. Seen from the side, these articulated uprights form an “X” in the deployed position. The deployed position is maintained by a chain stretched between the two horizontal sections or above the articulation of the side uprights.
- the upper part of the table composed of two parallel bars, is intended to receive the glazing or glass panel.
- the upper part is systematically covered with soft foam sleeves which prevent scratching or breaking the windshield in the event of accidental contact with the metal structure of the table. These sleeves also have a good grip on the windshield, which allows the glazing to be kept in a stable position during the various preparation operations (cleaning, application of the glue bead, etc.).
- the present invention seeks to overcome the drawbacks of the prior art by proposing a glazing handling system which allows easy installation, centering and easy turning.
- the present invention relates to a glazing handling system 1 comprising a support structure carrying a support base, characterized in that the support base comprises movement means to allow, by rotation, the glazing to be moved when it is laid flat, said movement means have a resisting force whose value allows the rotation of the movement means when a translation force is applied to the glazing greater in intensity than the resisting force, said resisting force being furthermore sufficiently high to hold the glazing sufficiently stable on the movement means when the only constraint applied to the glazing is its own weight.
- the means of movement have an adjustable rotational resistance force whose value varies between 5 and 500 Newton.
- the means of movement have a constant rotational resistance force whose value is between 5 and 500 newtons, preferably between 10 and 200 Newtons.
- the means of movement are provided with at least one stopping system for blocking said means of movement.
- the resisting force of the means of movement comes from a pair of materials rubbing against each other.
- the resistive force of the means of movement comes from a viscous friction system mechanically connected to the means of movement.
- the moving means comprise at least one roller, at least one wheel or at least one ball or a combination thereof to obtain a stable support for the glazing.
- the moving means comprise two rollers.
- the means of movement comprise four wheels, preferably arranged at the four corners of a parallelepiped.
- the support base further comprises sliding means.
- the sliding means comprise at least one plate or at least one rail.
- the sliding means are arranged between the moving means and such that the plane passing through the vertices of the moving means overhangs the plane passing through the vertices of the sliding means.
- it further comprises support means in the form of at least one support bar, said support bar extending from the support base.
- the bar extends approximately horizontally.
- the bar is linear or curved.
- the support base is mounted to be movable in translation relative to the support structure by means of translation elements.
- the support structure comprises a frame made of tubes or profiles.
- the moving means and the sliding means are mounted on plates, said plates being fixed directly or indirectly to the support base.
- each plate carries a rail and two wheels, the rail being arranged between the two wheels, essentially along the same line.
- the maintenance operation of a glazing is also carried out on the other side of the glazing, said method then comprising a turning step consisting of:
- said handling system comprises sliding means, said turning step consisting of:
- the movement means are provided with a stop system, said stop system being disengaged to allow the glazing to be moved to the desired position and then engaged once the position of the glazing has been reached.
- FIG. 6 represents a view of the glazing handling system provided with sliding means in the form of a rail;
- FIG. 7 and 8 represent a view of the support means of the glazing handling system according to the invention and a view of their operation;
- This glazing handling system allows an operator to work on glazing 100 such as those used in the field of transport or such as those used in the field of construction. These glazings can be flat or have a curve.
- the glazing handling system comprises a support structure 10 carrying a support base 20.
- the support base 20 comprises movement means 22.
- the movement means are used to support the glazing and to allow the glazing to be moved when it is laid flat.
- the displacement means 22 comprise two rollers 220 mounted parallel as visible in figures 1 and 2. These two rollers are arranged to be spaced from each other.
- the moving means 22 comprise wheels 222.
- the moving means comprise at least three wheels arranged to form a triangle. This arrangement makes it possible to support the glazing.
- the displacement means 22 are balls. This variant advantageously allows freer displacement, not limited to a single direction.
- displacement means comprising a roller 220 and at least one wheel 222 as visible in the .
- wheel 222 it is possible to combine the embodiments with displacement means comprising a roller 220 and at least one wheel 222 as visible in the .
- displacement means comprising a roller 220 and at least one wheel 222 as visible in the .
- the displacement means 22 are clever in that they present a resistive force during their rotation.
- the level of resistive force physically derives from a coefficient of rotational friction which is defined as being representative of the friction, of the friction, which exists between said displacement means in rotation and the support on which they are mounted. It is then understood that the coefficient of rotational friction in question is that present between the wheel or the roller and the shaft which carries this wheel or this roller (or between the shaft which carries it and the support plates in the case where the axis of the wheel or the roller is also driven in rotation). This coefficient of rotational friction is also that which is present between the ball and its support.
- the resistive force results from a compromise. First, it must be low enough to allow the rotation of the means of movement. Second, it must be high enough to hold the glazing sufficiently stable on the means of movement so that the operator can carry out preparation operations on the glazing (cleaning, fixing a peripheral seal, removing glue, etc.). This resistive force is then constant or adjustable.
- This resistant effort of the means of movement during the displacement phases comes from a pair of materials rubbing against each other, the adjustment of the resistant effort being done by the pressure applied between these materials.
- the resisting force of the means of movement during the movement phases comes from a viscous friction system mechanically connected to the means of movement.
- this resistive force is obtained by mechanical action on a pad which brakes the means of movement. An adjustment of the resistive force is then made by pressure, more or less strong, of the pad on the means of movement. This makes it possible to have an adjustable resistive force making it possible to obtain different compromises between the thrust force exerted on the glazing during the phases of movement of the glazing and outside the phases of movement of the glazing.
- the means of movement are activated indirectly by the operator who simply pushes or pulls the glazing.
- the surface of these means of movement it is necessary that the surface of these means of movement has a good grip with the surface of the glass (the coefficient of friction between the surface of the means of movement and the glass is then high) such that the movement of the glazing, in translation, causes the rotation of the wheels, rollers or balls forming the means of movement.
- the movement of the glazing in translation is obtained by the application of a force, in translation, to said glazing.
- the good grip of the means of movement is the result of a surface friction coefficient.
- This coefficient of friction is the one that is present between the surface of the means of movement (wheels, balls, rollers, etc.) and the surface of the glazing.
- This coefficient of surface friction can have an impact. Indeed, if this coefficient of surface friction is too low, it is possible that the glazing slides on the means of movement without rotating them. This possibility arises especially if the resistive force is high. This lack of rotation can also occur if, on the contrary, the coefficient of surface friction is too low.
- This high coefficient of surface friction allowing good grip of the surface of the glazing is obtained by a material such as rubber or elastomer.
- the surface friction coefficient is chosen according to the needs. For example, in the case of a friction coefficient brought by a tread, the latter is interchangeable.
- the movement means 22 comprise at least one stopping system.
- This stopping system is a system such as a mechanical brake allowing the rotation of the rollers or wheels to be completely blocked. This then allows said movement means to act as simple skates.
- This stopping system can thus equip at least one of the wheels or balls or at least one of the rollers.
- the stopping system can also equip all of the movement means 22.
- the glazing handling system operates as follows.
- the operator who carries the glazing or glass panel with his bare hand or via suction cup gripping systems places the glazing or glass panel, flat, on the support base.
- the good grip that exists between the surface of the moving means and the surface of the glass then makes it possible to move the glazing in at least one direction by applying a translation force provided that this translation force is greater in intensity than the resistive force or the rotational friction coefficient of the moving means.
- This allows the operator to place the glazing on the support base so that the glazing is cantilevered and therefore to put less strain on his back.
- the operator can slide the glazing to center it.
- the rotational friction coefficient allows, once the glazing is in its position, said glazing not to move easily.
- the operator can then begin operations on the visible face of the glazing.
- the resistive force of the moving means allows the glazing to undergo forces and shocks from the operator during the operations carried out on the glazing without said glazing moving. It is then understood that the resistive force has a value such that the momentary application of a translation force lower than a certain threshold, for example 10 Newtons (equivalent to the weight of a mass of 1 kg) does not cause significant movement of the glazing while the application of a translation force greater than this threshold, i.e. 10 Newtons in our example, causes movement of the glazing.
- a certain threshold for example 10 Newtons (equivalent to the weight of a mass of 1 kg)
- the moving means have a resistive force whose value is between 5 and 500 Newtons, preferably between 10 and 200 Newtons.
- the interest is to have the possibility of adjusting the coefficient of rotational friction in order to be able to immobilize the glazing during different types of maintenance operations without having to activate the stopping system.
- the coefficient of rotational friction will be set to a high threshold, typically 50 or 100 Newtons or higher such as 200 Newton.
- a high threshold typically 50 or 100 Newtons or higher such as 200 Newton.
- values of up to 500 Newton may be necessary.
- the resistive force has a value that varies between 5 and 500 Newton.
- Adjusting the resistive force also makes it possible to adapt to the glazing. In fact, depending on the dimensions of the glazing, it can be more or less heavy. However, heavy glazing exerts more constraints on the means of movement and therefore becomes less easily movable. By adjusting the resistive force, this additional constraint is compensated. In addition, an adjustable resistive force optionally makes it possible to do without a stopping system.
- the resisting force is constant or adjustable, it never prevents the movement of the glazing, which is possible as long as the user applies sufficient force to the glazing. It is the stopping system that allows the movement of the glazing to be completely stopped.
- the glazing requires operations on its other side, it is necessary for the operator to turn the glazing over. The operator then takes the glazing, turns it over and places it on the moving means.
- the stop system is present, it is then engaged or disengaged depending on the needs. It is then understood that the stop system is disengaged to allow the glazing to be moved to the desired position and then engaged once the position of the glazing has been found. The operator can then begin his operations on the visible face of the glazing.
- the support base 20 further comprises sliding means 24.
- the sliding means comprise a plate 240. This plate is flat or curved.
- the sliding means comprise at least one rail 242. This rail is straight or curved.
- the sliding means 24 are positioned relative to the moving means 22 such that the sliding means 24 are positioned in the space between the moving means.
- wheels 222 or rollers 220 surround the plate or the rails.
- the rollers 220 are associated with sliding means in the form of a plate 240 and the wheels 222 are associated with sliding means in the form of a rail 242 but these associations are not limiting and sliding means in the form of a plate can be associated with wheels. Similarly, it is possible to have sliding means in the form of a plate associated with a roller and a wheel.
- the moving means such as rollers, wheels or balls are positioned relative to the sliding means, plate or rails, to be raised. It is then understood that when the glazing is placed on the moving means, it does not come into contact with the sliding means. Thus, the plane passing through the top of the moving means is higher than the plane passing through the top of the sliding means, a gap is therefore present between these planes.
- the spacing between the top of the displacement means 22 and the sliding means 24 is such that when the glazing slides on said sliding means, the contact with the displacement means causes the glazing to transition smoothly and smoothly from the sliding means to said displacement means so that the positioning of the glazing continues. If the spacing is too great, the displacement means act as a stop preventing the glazing from sliding further. The same is true if the displacement means are too high relative to the sliding means.
- the handling system comprises support means 30 in the form of at least one support bar 32. This support bar extends from the support structure or from the support base. This support bar is used to allow the glazing to rest on said bar on its edge.
- the handling system comprises bars arranged in pairs. This makes it possible to have two support points for the glazing.
- the support bar(s) 32 extend substantially horizontally, i.e. horizontally or at an angle so as to be slightly raised. This ensures that the glazing is held in place.
- the bars may be straight or curved, smooth or notched. They are preferably coated with a material that has good adhesion to the edge of the glazing in order to minimize the risk of the glazing slipping and falling.
- the handling system comprises two pairs of holding bars 32, the pairs being arranged on opposite sides, preferably on either side of the movement means.
- This variant optionally includes buffer means 34.
- These buffer means 34 are arranged to cooperate with the retaining bars 32.
- These buffer means include washers made of flexible material having good grip with the surface of the glass such as rubber. These buffer means allow, when the glazing is placed on its edge on the bars, said glazing to rest on the buffer means. This then prevents damage to the glazing.
- These bars are then used during the operation of the handling system in multiple phases. For example, these bars can be used before placing the glazing on the handling system so that the operator can potentially catch his breath. In another example, the bars are used when turning the glazing over.
- the support structure can take different forms.
- the support structure 10 consists of a base plate 12 supported by at least one foot 14 as visible in the . This foot is in the form of a peripheral wall. On the base plate, the means of movement and the means of guidance (if present) are arranged.
- the vertical peripheral wall is replaced by four feet arranged at the corner of the base plate as visible in the .
- Each leg is in the form of a vertical post. This variation allows space to be freed up under the base plate.
- the legs are arranged in the form of a pair of legs.
- the legs of this pair are arranged on opposite sides.
- Each leg is in the form of a central pillar fixed at one end to the base plate and comprising at its second end support points on which the handling system rests.
- Each leg preferably comprises two support points.
- each leg includes an H-shaped structure. This structure thus has two points fixed to the base plate and two points serving as support points.
- the support structure 10 is in the form of a frame 16 carrying the support base 20 as visible in the
- the chassis is composed of tubes 161, metal profiles for example in the form of two H-shaped trellises connected by at least one central beam.
- the upper part of the H-shaped trellises is capable of supporting the support base, i.e. the means of movement and the sliding means if present. These sliding means and these means of movement are carried by at least one plate, fixed to the H-shaped trellises.
- each plate In the case of means of movement comprising wheels, two plates are used for their mounting. In the case where the means of movement comprise four wheels, two plates are used, each plate carries two wheels. The wheels of each plate are placed essentially on the same line. Each plate is mounted on an H-shaped trellis as visible in the figure . If sliding means are provided, such as rails, these rails are carried by the plates. These plates can be fixed to the support base but the plates can also be fixed to the support structure and thus form the support base. In this case, the plates are likely to also carry the support means 30.
- the support structure is designed to be foldable.
- the central beam is designed to fold.
- the beam then comprises a hinge and locking means. When the locking means are unlocked, the central beam can fold. This folding of the central beam allows the two H-shaped trusses to come closer together.
- the support base is movable relative to the support structure.
- the support base is mounted on translation elements such as jacks, i.e. mechanical or electromechanical elements allowing the translation of two elements relative to each other.
- This height adjustment makes it possible to adjust the height of the support base to the size of the operator in order to reduce the effort required.
- the support means 30 can be arranged not on the support structure but on the support base. This makes it possible to adjust, at the same time, the height of the support means in order to have support means 30 whose height is always ergonomic.
- sliding means in the form of rails or plates are used to directly carry the means of movement in the form of wheels.
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Handcart (AREA)
- Automobile Manufacture Line, Endless Track Vehicle, Trailer (AREA)
- Sheets, Magazines, And Separation Thereof (AREA)
- Load-Engaging Elements For Cranes (AREA)
- Re-Forming, After-Treatment, Cutting And Transporting Of Glass Products (AREA)
Abstract
Description
- Se munir du vitrage à traiter et se munir du système de manipulation ;
- Poser le vitrage sur les moyens de déplacement sur la surface opposée à la surface à traiter ;
- Déplacer le vitrage pour lui donner la position souhaitée en appliquant audit vitrage une force de translation supérieure en intensité à l’effort résistant des moyens de déplacement ;
- Effectuer ladite opération de maintenance sur la face du vitrage.
- Déplacer le vitrage pour lui donner la position souhaitée en appliquant audit vitrage une force de translation supérieure en intensité à l’effort résistant des moyens de déplacement
- Effectuer ladite opération de maintenance sur la face du vitrage.
- Poser le vitrage sur sa tranche sur les moyens de glissage ;
- Faire glisser le vitrage sur le moyen de glissage jusqu’à ce que la surface opposée à la surface à traiter soit posée sur les moyens de déplacement ;
- Déplacer le vitrage pour lui donner la position souhaitée en appliquant au vitrage une force de translation supérieure en intensité à l’effort résistant des moyens de déplacement ;
- Effectuer ladite opération de maintenance sur la face visible du vitrage.
- Déplacer le vitrage en translation à l’aide des moyens de déplacement et poursuivre en faisant glisser le vitrage sur les moyens de glissage afin de pouvoir prendre en main le vitrage ;
- Soulever le vitrage du système de manipulation comme visible à la
et le retourner ; - Poser le vitrage sur sa tranche sur les moyens de glissage ;
- Faire glisser le vitrage sur les moyens de glissage jusqu’à ce que la surface opposée à la surface à traiter soit posée sur les moyens de déplacement
- Déplacer le vitrage pour lui donner la position souhaitée en appliquant au vitrage une force de translation supérieure en intensité à l’effort résistant des moyens de déplacement ;
- Effectuer ladite opération de maintenance sur la face visible du vitrage.
Claims (23)
- Système de manipulation (1) de vitrage comprenant une structure support (10) portant une base support (20), caractérisé en ce que la base support comprend des moyens de déplacement (22) pour permettre, par rotation, de déplacer le vitrage lorsque celui-ci est posé à plat, lesdits moyens de déplacement présentent un effort résistant dont la valeur autorise la rotation des moyens de déplacement lors de l’application d’une force de translation au vitrage supérieure en intensité à l’effort résistant, ledit effort résistant étant en outre suffisamment élevé pour maintenir le vitrage de façon suffisamment stable sur les moyens de déplacement lorsque la seule contrainte appliquée au vitrage est son propre poids
- Système selon la revendication précédente, dans lequel les moyens de déplacement (22) présentent un effort résistant de rotation ajustable dont la valeur varie entre 5 et 500 Newton.
- Système selon la revendication précédente, dans lequel les moyens de déplacement (22) présentent un effort résistant de rotation constant dont la valeur est comprise entre 5 et 500 Newton, de préférence entre 10 et 200 Newton.
- Système de manipulation 1 de vitrage selon l’une des revendications 1 à 3 caractérisé en ce que les moyens de déplacement (22) sont muni d’au moins un système d’arrêt pour bloquer lesdits moyens de déplacement.
- Système de manipulation 1 de vitrage selon l’une des revendications 1à 4, caractérisé en ce que l’effort résistant des moyens de déplacement provient d’un couple de matériaux frottant l’un contre l’autre.
- Système de manipulation 1 de vitrage selon l’une des revendications 1 à 4, caractérisé en ce que l’effort résistant des moyens de déplacement provient d’un système de frottement visqueux relié mécaniquement aux moyens de déplacement
- Système selon l’une des revendications précédentes, dans lequel les moyens de déplacement comprennent au moins un rouleau, au moins une roue ou au moins une bille ou une association de ces derniers pour obtenir un appui stable pour le vitrage
- Système selon l’une des revendications précédentes, dans lequel les moyens de déplacement comprennent deux rouleaux (220).
- Système selon l’une des revendications 1 à 6, dans lequel les moyens de déplacement comprennent quatre roues (222), de préférence agencées aux quatre coins d’un parallélépipède.
- Système selon l’une des revendications précédentes, dans lequel la base support comprend en outre des moyens de glissage (24).
- Système selon la revendication précédente, dans lequel les moyens de glissage (24) comprennent au moins une plaque ou au moins un rail.
- Système selon la revendication précédente, dans lequel les moyens de glissage (24) sont agencés entre les moyens de déplacement (22) et de sorte que le plan passant par les sommets des moyens de déplacements surplombe le plan passant par les sommets des moyens de glissage.
- Système selon l’une des revendications précédentes, dans lequel il comprend en outre des moyens de soutien (30) sous la forme d’au moins une barre de soutien (32), ladite barre de soutien s’étendant depuis la structure support ou depuis la base support.
- Système selon la revendication précédente, dans lequel la barre s’étend sensiblement horizontalement.
- Système selon la revendication précédente, dans lequel la barre est linéaire ou courbée.
- Système selon l’une des revendications précédentes, dans lequel la base support (20) est montée mobile en translation par rapport à la structure support par l’intermédiaire d’éléments de translation.
- Système selon l’une des revendications précédentes, dans lequel la structure support (10) comprend un châssis composé de tube ou de profilés.
- Système selon l’une des revendications précédentes, dans lequel les moyens de déplacement et les moyens de glissage sont montés sur des platines, lesdites platines étant fixées directement ou indirectement à la structure support.
- Système selon les revendications 9, 11 et 18, dans lequel chaque platine porte un rail et deux roues, le rail étant agencé entre les deux roues, sur la même ligne.
- Procédé de fonctionnement du système de manipulation lors d’une opération de maintenance d’au moins une face d’un vitrage selon l’une des revendication précédentes, ledit procédé comprenant les étapes suivantes :
- Se munir du vitrage à traiter et se munir du système de manipulation ;
- Poser le vitrage sur les moyens de déplacement sur la surface opposée à la surface à traiter;
- Déplacer le vitrage pour lui donner la position souhaitée en appliquant audit vitrage une force de translation supérieure en intensité à l’effort résistant des moyens de déplacement ;
- Effectuer ladite opération de maintenance sur la face supérieure visible du vitrage.
- Procédé de fonctionnement selon la revendication précédente, dans lequel l’opération de maintenance d’un vitrage est également opérée sur l’autre face du vitrage, ledit procédé comprenant alors une étape de retournement consistant à :
- se munir du vitrage,
- soulever le vitrage du système de manipulation puis à le retourner ;
- Poser le vitrage sur les moyens de déplacement sur la surface opposée à la surface à traiter,
ledit procédé comprenant en outre les étapes suivantes :- Déplacer le vitrage pour lui donner la position souhaitée en appliquant audit vitrage une force de translation supérieure en intensité à l’effort résistant des moyens de déplacement ;
- Effectuer ladite opération de maintenance sur la face supérieure du vitrage.
- Procédé selon la revendication précédente, dans lequel ledit système de manipulation comprend des moyens de glissage, ladite étape de retournement consistant à :
- Déplacer le vitrage en translation à l’aide des moyens de déplacement et poursuivre en faisant glisser le vitrage sur les moyens de glissage afin de pouvoir prendre en main le vitrage ;
- Soulever le vitrage du système de manipulation et le retourner ;
- Poser le vitrage sur sa tranche sur les moyens de glissage ;
- Faire glisser le vitrage sur les moyens de glissage jusqu’à ce que la surface opposée à la surface à traiter soit posée sur les moyens de déplacement. - Procédé selon l’une des revendications 20 à 22 dans lequel les moyens de déplacement sont muni d’un système d’arrêt, ledit système d’arrêt étant désenclenché pour permettre de déplacer le vitrage pour lui faire prendre la position souhaitée puis enclenché une fois la position du vitrage trouvée.
Priority Applications (3)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP24731539.3A EP4724231A1 (fr) | 2023-06-08 | 2024-06-05 | Système de manipulation de vitrage |
| CN202480037477.9A CN121263279A (zh) | 2023-06-08 | 2024-06-05 | 玻璃件处理系统 |
| MX2025014703A MX2025014703A (es) | 2023-06-08 | 2025-12-05 | Sistema de manipulacion de acristalamiento |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| FRFR2305768 | 2023-06-08 | ||
| FR2305768A FR3149532B1 (fr) | 2023-06-08 | 2023-06-08 | système de manipulation de vitrage |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2024251756A1 true WO2024251756A1 (fr) | 2024-12-12 |
Family
ID=87889466
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/EP2024/065377 Ceased WO2024251756A1 (fr) | 2023-06-08 | 2024-06-05 | Système de manipulation de vitrage |
Country Status (6)
| Country | Link |
|---|---|
| EP (1) | EP4724231A1 (fr) |
| CN (1) | CN121263279A (fr) |
| CL (1) | CL2025003832A1 (fr) |
| FR (1) | FR3149532B1 (fr) |
| MX (1) | MX2025014703A (fr) |
| WO (1) | WO2024251756A1 (fr) |
Citations (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20110309042A1 (en) * | 2009-02-20 | 2011-12-22 | William Finck | Glazing Panel Handling System |
| US20150232275A1 (en) * | 2014-02-18 | 2015-08-20 | Abb Inc. | Conveyor system and associated product carrier |
| CN110181468A (zh) * | 2019-06-27 | 2019-08-30 | 合肥协耀玻璃制品有限公司 | 一种具有电控支撑柱玻璃操作平台 |
-
2023
- 2023-06-08 FR FR2305768A patent/FR3149532B1/fr active Active
-
2024
- 2024-06-05 CN CN202480037477.9A patent/CN121263279A/zh active Pending
- 2024-06-05 EP EP24731539.3A patent/EP4724231A1/fr active Pending
- 2024-06-05 WO PCT/EP2024/065377 patent/WO2024251756A1/fr not_active Ceased
-
2025
- 2025-12-04 CL CL2025003832A patent/CL2025003832A1/es unknown
- 2025-12-05 MX MX2025014703A patent/MX2025014703A/es unknown
Patent Citations (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20110309042A1 (en) * | 2009-02-20 | 2011-12-22 | William Finck | Glazing Panel Handling System |
| US20150232275A1 (en) * | 2014-02-18 | 2015-08-20 | Abb Inc. | Conveyor system and associated product carrier |
| CN110181468A (zh) * | 2019-06-27 | 2019-08-30 | 合肥协耀玻璃制品有限公司 | 一种具有电控支撑柱玻璃操作平台 |
Also Published As
| Publication number | Publication date |
|---|---|
| CL2025003832A1 (es) | 2026-03-06 |
| MX2025014703A (es) | 2026-01-07 |
| CN121263279A (zh) | 2026-01-02 |
| FR3149532B1 (fr) | 2025-07-18 |
| FR3149532A1 (fr) | 2024-12-13 |
| EP4724231A1 (fr) | 2026-04-15 |
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