EP1529740B1 - Dispositif de calage - Google Patents

Dispositif de calage Download PDF

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Publication number
EP1529740B1
EP1529740B1 EP04292618A EP04292618A EP1529740B1 EP 1529740 B1 EP1529740 B1 EP 1529740B1 EP 04292618 A EP04292618 A EP 04292618A EP 04292618 A EP04292618 A EP 04292618A EP 1529740 B1 EP1529740 B1 EP 1529740B1
Authority
EP
European Patent Office
Prior art keywords
connecting means
plate
axis
support
sleeve
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.)
Not-in-force
Application number
EP04292618A
Other languages
German (de)
English (en)
French (fr)
Other versions
EP1529740A1 (fr
Inventor
Mathilde Winckels
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.)
LOreal SA
Original Assignee
LOreal SA
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 LOreal SA filed Critical LOreal SA
Publication of EP1529740A1 publication Critical patent/EP1529740A1/fr
Application granted granted Critical
Publication of EP1529740B1 publication Critical patent/EP1529740B1/fr
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D81/00Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents
    • B65D81/02Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents specially adapted to protect contents from mechanical damage
    • B65D81/05Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents specially adapted to protect contents from mechanical damage maintaining contents at spaced relation from package walls, or from other contents

Definitions

  • the present invention relates to a wedging device particularly useful for wedging an object in a holster of larger size than said object. It finds more particularly its use in the field of dispensing and / or packaging devices arranged in carton cases of generally parallelepiped shape while the packaged devices may have different enveloping surfaces, and in particular smaller than that of the parallelepiped formed by said cardboard case.
  • FR-A-2571028 A sleeve made from a honeycomb structure adapted to be mounted around an object to protect or hide.
  • This sleeve is of a structure similar to that provided for the realization of a plant pot.
  • the sleeve is deformable. It is made so that it can adapt to the shape of the object and elastically come into contact with it.
  • This type of sleeve can be mounted around objects having different outside diameters. In the case where the objects have different heights, the sleeve may not be adapted to cover said object over its entire height. Indeed, the sleeve thus produced is only extensible radially. It is not adaptable vertically.
  • each cell has at least two walls oriented parallel to an axis X of insertion of the object into the sleeve, it It appears obvious that such a structure is not able to crash on itself to have a minimum vertical footprint out of use. Out of use, the sleeve retracts radially on itself, but keeps the same height. At best, in the absence of object to be protected, such a sleeve will have a size of a cylinder of small outside diameter.
  • the minimum height of each level of this honeycomb structure corresponds to the height along the X axis of these walls parallel to this axis X.
  • the honeycomb structure having several levels superimposed on each other relative to the X axis corresponds to the sum of the heights of each of the walls such as those parallel to the X axis.
  • this minimum height can not be reached at rest, it appears only under the exercise of maximum radial stress.
  • Document is also known FR-2635754 a variable packaging bag whose side walls are formed by a bellows to allow a variation in the height of said cylindrical bag.
  • This bag is problematic because it does not protect the objects it contains from external shocks, especially when they are exerted radially relative to the outer periphery of these side walls.
  • This bag poses another problem insofar as the outer envelope surface that it defines is necessarily cylindrical and of circular section. It is therefore not possible to wedge such a bag in a larger parallelepiped packaging. And likewise, an object disposed within such a bag will not be wedged, and may float if it is of a shape other than cylindrical and continuous circular section.
  • the object of the invention is to solve the problems stated above by proposing a means able to surround and protect an object to be stalled, so that the means is also able to occupy a minimum space requirement, and the assembly of which around said object is simple.
  • the means according to the invention is flexible and may have an outer envelope surface of non-circular section and / or different from that of the object to be stalled.
  • the interior space provided by this means for receiving said object is not necessarily cylindrical of circular section and can therefore adapt to objects of complex shape.
  • the subject of the invention is a device for wedging an object, the device comprising a plate provided with an orifice allowing the introduction and the exit of the object, a lower face of the plate being attached to a support by a deformable connecting means, a spacing between said plate and the support causing a deformation of the connecting means so as to form a sleeve around the object, the sleeve comprising at least a portion forming a surface in which s' extends at least one radial component relative to an X axis perpendicular to the plate.
  • the radial component is orthogonal to the X axis, so it is parallel to the plate of the device.
  • the sleeve defines an interior space for receiving the object to be stalled. This inner space increases longitudinally along the X axis, as the deformation of the connecting means.
  • the radial component extending in the portion of the sleeve then extends perpendicular to a preferred axis of elongation of the interior space of this sleeve.
  • the portion is delimited by two ridges each respectively extending along a radial component relative to the axis X.
  • said surface is flat. Only a first edge of this surface defines an outer periphery of said sleeve, and conversely a second edge corresponding to this first edge defines an inner periphery of the sleeve.
  • the sleeve is perforated. Windows of the connecting means become particularly visible when it is deformed in the form of a sleeve.
  • the spacing of the plate relative to the support is made according to at least one component parallel to the axis X.
  • the connecting means is an alveolar matrix. And for example the cells constituting such a matrix are hexagonal.
  • the connecting means is a structure of the honeycomb type.
  • the connecting means comprises a plurality of portions delimited respectively by two edges each extending in a radial component relative to the axis X.
  • the two radial components may belong to the same plane orthogonal to the X axis, or belong to separate planes, nevertheless parallel to each other and perpendicular to the X axis.
  • the connecting means can be deformed so as to form a sleeve adapted to surround the object over its entire height relative to the support, and in particular relative to said axis X.
  • This advantageous arrangement makes it possible to be able to surround objects of different heights relative to the X axis, to the extent that they all have substantially the same section relative to a plane orthogonal to the X axis, these sections preferably being constant along said X axis.
  • the connecting means is elastically deformable and has a spring effect tending to bring it back to a rest position.
  • the connecting means constantly tends to make take a minimum size to the wedging device.
  • this spring effect can be playful insofar as the insertion or the exit of the object of the device systematically solicits this spring effect.
  • the connecting means is flattened between the plate and the support which are respectively contiguous to one another.
  • the plate and the support do not strictly come into contact with each other insofar as they are separated by the connecting means, nevertheless in this position the distance along the X axis, orthogonal to the plate, between an outer face of the plate and an outer face of the support is minimal. By for example, it is less than 3 centimeters.
  • the area defined by the portion (s) of the sleeve extends substantially in a plane parallel to the plate and the support.
  • the connecting means is always inscribed inside the envelope surface defined between the plate and the support.
  • a section perpendicular to the X axis in the outer envelope surface defined by the connecting means may be circular, oval, triangle or polygonal.
  • the connecting means comprises several sheets each having an inner opening, the sheets being connected to each other at regular intervals by respective attachment between radial sections defined relative to an axis X.
  • the sheets are connected directly to one another by glue points.
  • they can be welded together. Two radial sections of two separate sheets are then glued to each other.
  • the sheets are flat and parallel to each other out of stress, while they have a wavy appearance when the connecting means is deformed.
  • the sheets of the connecting means are all substantially orthogonal to the X axis.
  • connection means the projected inner section of the opening or openings of the connecting means varies depending on its position, between its rest position or deformed.
  • the projected inner section of the opening or openings is smaller than the inner section of the openings of the undeformed connecting means. The more the connecting means is deformed, and the smaller the projected interior section of the openings.
  • the section of the orifice is slightly larger than the widest section of the object, the sections being considered orthogonal to an axis in which the object is inserted into the device.
  • a minimum inner diameter of this projected inner section is chosen relative to the highest object to be inserted into the corresponding wedging device.
  • the wedging device according to the invention may thus have a means for holding by itself in the form of a sleeve around the object to be wedged, the inner periphery of the different openings of the connecting means then binding at any level against the circumference. outside the object, for a certain degree of deformation of said connecting means.
  • the projected inner section of the connecting means may be circular, oval, triangle or polygonal.
  • the plate comprises a cap adapted to cooperate with an upper face of the plate, and especially with an end of the object disposed in the wedging device, this end protruding at the opening of the upper plate.
  • the lid being integrally mounted on the plate, the object maintains the deformed connecting means by maintaining the support remote from the lid, and therefore away from the plate.
  • the openings are of substantially identical dimensions to those of the orifice of the plate.
  • the section of the orifice is slightly greater than the widest section of the object, the sections being considered orthogonal to the X axis according to which the object is inserted into the device.
  • the inner section of the orifice is circular and the object to be introduced is cylindrical.
  • the support, the connecting means and or the plate are made of cardboard and or plastic and or paper.
  • the object is introduced into said device along the X axis.
  • the object comes into contact with a bottom of the support when it is disposed inside the sleeve via the orifice of the plate, this bottom of the support being opposite the orifice.
  • the object bears on the support while said traction leads to a deformation of the connecting means.
  • the traction exerted on the connecting means can also be obtained by holding the plate fixed relative to a case for example, so that the weight of the object causes the deformation of the connecting means, and therefore a distance from the support relative to the plate to the extent that the object bears on said support.
  • the plate is also held fixed relative to the case, but in this case, the deformation of the connecting means is obtained by a thrust exerted by the object being inserted against the support.
  • the object being for example arranged in a display intended to be mounted at a bottom of the case, the deformation of the connecting means is then upward from the bottom the product inside the case.
  • the object may be a device for packaging and or dispensing a cosmetic product, for example such as a perfume bottle or a cream jar.
  • a cosmetic product for example such as a perfume bottle or a cream jar.
  • the subject of the invention is an assembly comprising a holster and a wedging device as defined above, so that the plate comprises a flange bearing on a relief of the holster so as to that the connecting means can be deformed inside the case, and so as to allow the insertion of the device and an object within said device, the object then being well supported by the wedging device inside the case.
  • the case comprises at least two reliefs for cooperating respectively with two wedging devices, each of the devices being adapted to receive a product.
  • the wedging device is itself wedged, at least laterally relative to the axis X, in the interior volume of the case.
  • the figure 1 shows a setting device 1 according to the invention.
  • the device 1 comprises a plate 2 and a support 3.
  • the support 3 is attached at a lower face 4 of the plate 2 by a connecting means 5.
  • the connecting means 5 can be deformed so that the plate 2 moves away from the support 3 in a movement parallel to an axis X.
  • the plate 2 is defined in a plane such that the lower face 4 as well as the upper face 6 of this plate 2 are parallel to this plane.
  • the plane of the plate 2 is orthogonal to the X axis.
  • the plate 2 is obtained by cutting a cardboard with a thickness of the order of 1 to a few millimeters.
  • the contours given to this plate 2 can be square, rectangle, circular, ovoid or any other geometric shapes. Generally the shape given to this contour is dependent on the end use of the wedging device. Indeed, the plate 2 is generally cut to the measurements of a case in which the device 1 can then be arranged.
  • the connecting means 5 is preferably deformable and with shape memory. It tends to return to a position at rest, for example corresponding to a position in which it forms a sleeve of very small height relative to the axis X.
  • the axis X corresponds to a preferred axis of elongation of the sleeve and the interior space that it delimits.
  • the axis X also corresponds to a preferential axis of insertion of an object in this interior space delimited by the sleeve.
  • the connecting means 5 comprises at least one portion 100 forming a surface in which at least one radial component 103 extends in relation to the axis X.
  • this portion 100 has a surface delimited by minus two edges 101 and 102 extending along separate radial components relative to the X axis. As the connecting means 5 is deformed, this portion 100 moves relative to the X axis.
  • said portion 100 extends substantially in this plane perpendicular to the axis X and is displaced relative to this axis X when the connecting means 5 is deformed.
  • the progressive deformation of the connecting means 5 progressively modifies the angular position of said portion 100 relatively to the X axis.
  • said portion 100 moves from an oblique position to a position in which said portion is substantially parallel to the axis X.
  • this portion 100 is substantially perpendicular to the X axis, the sleeve then being picked up on itself.
  • the connecting means 5 comprises a plurality of portions such as 100 delimited each respectively by at least two edges respectively extending along radial components relative to the X axis.
  • these portions are arranged in such a way that they protect radial openings in the connecting means 5.
  • the connecting means 5 is a cellular matrix, such that at least one of the cells is delimited by portions such as 100, said portions being each respectively delimited by edges extending substantially in at least two radial components. .
  • the portions preferably extend respectively in planes containing said radial edges.
  • the connecting means 5 is of the nest type bee. It comprises a continuous network of hexagonal cells each having at least one segment in contact with an adjacent cell.
  • each cell is delimited by six portions such as 100 distinct, each portion being adjacent to another cell.
  • the cells are defined such that they each comprise a base A1 and a vertex A2 respectively forming portions such as 100 orthogonal to the X axis, the apex of a cell generally corresponding to the base of the upper cell.
  • a base such that A1 and a vertex such as A2 form examples of portions delimited by edges extending along radial components extending in the same plane perpendicular to the axis X.
  • the other portions delimiting these cells preferably extend obliquely relative to the axis X.
  • These other portions form examples of portions defined by ridges each extending along radial components relative to the axis X, these components extending respectively in separate planes.
  • a portion such that 100 extends respectively according to at least one of its radial components over a distance greater than 1 mm, and preferably over a distance greater than 3 mm.
  • the connecting means 5 comprises eight levels of cells, the cells of a first level being arranged in staggered relation to the cells of an adjacent level, these cell levels extending respectively orthogonal to the axis X.
  • the connecting means 5 is deformed, the device 1 has a height H2 relatively to the X axis significantly greater than a height H1 of the same device when it is compacted on itself as is the case on the figure 1 .
  • the cells are almost completely flattened on themselves, and the hexagons thus formed preferably extend along an axis orthogonal to the axis X.
  • the deformation of the connecting means 5 corresponds to a deployment of the cells along the X axis, and then each cell defines at least one opening extending preferentially along this axis X.
  • the plate 2 comprises an orifice 7, and the connecting means 5 has a central opening 8 in the extension of the orifice 7.
  • the support 3 preferably has no opening, or at least no opening of the same dimension that the orifice 7 and which is in the extension of this orifice 7 and thus of the central opening 8.
  • the device 1 is provided to receive an object P, in particular that can be inserted through the orifice 7 inside the device 1 so that the deformation of the connecting means 5 lead to form a sleeve around this object P.
  • a sleeve is perforated to the extent that the cells of the connecting means 5 communicate between an inner periphery 9a of the central opening 8 and an outer periphery 9b of the connecting means 5.
  • the cells lead to the formation of windows allowing the deformability of the connecting means 5 along the axis X.
  • the inner periphery delimited in part by the orifice 7 and the inner periphery 9a of the connecting means 5 are preferably adapted to the outer periphery of the object P to be inserted in the device 1.
  • the device 1 can provide protection for all the outer periphery of this object, avoiding a radial play of the object in the interior space delimited by the sleeve.
  • the plate 2, the connecting means 5 and the support 3 are cut so as to form a cylindrical external envelope surface sleeve.
  • the object P to be received is preferably cylindrical, so the inner periphery of the orifice 7 and the opening 8 is circular.
  • the plate 2 is annular.
  • the support 3 having no opening, it corresponds in this example to a disk.
  • the connecting means 5 is formed by specific links between several sheets 10 of annular shape. Considering the device 1 seen from above, the support 3 is visible from the orifice 7. It then forms a bottom of the device 1.
  • the plate 2 and each sheet 10 of the connecting means 5 is virtually subdivided into twelve equal and equilateral sections.
  • a section of a sheet such as 10 is in this case substantially trapezoidal in shape such that the base and the apex are respectively rounded and have concentric radii of curvature. These trapezes are respectively delimited by radial components relative to the X axis. These trapezoids correspond to portions such as 100.
  • the first level of cells formed between the support 3 and the first sheet 10a of the connecting means 5 is intended to form trapezoidal cells in that the support 3 is preferably not deformed by the spacing of the plate 2.
  • the lower face 4 of the plate 2 is preferably also not deformed by the spacing of the support 3.
  • a section of four of this lower face being bonded to a corresponding section of an upper face of the upper sheet 10b of the connection means 5, a last level of cells formed between the plate 2 and the upper sheet 10b of the connecting means 5 also forms trapezoidal cells
  • the upper sheet 10b of the connecting means 5 then comprises three free sections, namely not connected to the plate 2.
  • each central section of the groups of three free sections is glued at its lower face.
  • a corresponding section of a leaf adjacent 10c of the connecting means until finally being attached to said support 3. From one sheet 10 to the other, the sections which are connected are shifted by 2 sections.
  • the invention is not limited to this embodiment, alternatively, the inner periphery of the orifice 7 and the opening 8 may be different from circular. Likewise, the outer periphery of the device 1 can form a different shell surface than cylindrical.
  • the connecting means 5 may comprise a single sheet 10 regularly connected to the support 3 and the lower face 4 respectively. In another variant, the manner in which these sheets are subdivided virtually to determine the bonding areas may also be modified. Alternatively, the sheets are welded together, and or welded to the plate 2, and or welded to the support 3.
  • FIG. 4 a magnification of one embodiment of the connecting means 5 is shown.
  • the cells are superposed in a staggered relationship to each other.
  • Each level has more than ten cells.
  • the sheet portions defining the perimeter of each cell extend respectively in radial components relative to the cylindrical outer periphery of the object P.
  • the cylinder formed by the object has the axis of revolution a perpendicular axis to the plate 2, and therefore superimposable on the axis X.
  • the inner periphery 9a comes directly into contact with the object P.
  • the device 1 is preferably used to be deployed around the object P.
  • the higher the object P is relative to the axis X the more it will be necessary to deform the connecting means 5, to stretch it so that it forms a sleeve such that the height H2 of this sleeve is substantially the same as that of said object P.
  • the inner section of the connecting means 5 is reduced slightly as it is deformed to determine the size of the orifice 7 and the central opening 8 to be made at each of the sheets such as 10, it is necessary to consider both the section, and also the height along the X axis, of the object P to be inserted in the device 1.
  • the connecting means 5 comprises a maximum deformability along the axis X wherein the portions respectively connecting the base to the vertex for each cell are stretched to the point of being elongated parallel to this axis X. It is therefore necessary to provide a sufficient number of cell levels, and also take into account the phenomenon of reduction of the internal space delimited by the sleeve when it extends along the axis X.
  • the number of sheets such as 10 to be provided will be determined, as well as the frequency of sticking of these sheets together, since this data plays a role in the maximum height that can present a cell along the axis X, and therefore the maximum height that can offer the deformed connecting means 5.
  • the device 1 In the case where it is desired to protect a cylindrical object P in a device such as 1, if there are different models of this object P having different heights, the device 1 will be realized so that the object P moreover high height can be inserted in the device 1 and be fully wrapped over its entire height. The object P of greater height will be adjusted inside the device 1. The walls of the cells then come radially in contact against the outer periphery of this object. Preferably, the device is disposed in a depth case adapted to receive this largest object.
  • this second object will also be surrounded by the device 1. But in this case, the walls of the cells will not come into contact with this second object on its entire periphery. There will be a radial clearance, unless the weight of this object is such as to cause deformation of the means of connection identical to that provided by the object of greater height, and that it is otherwise disposed in a case as deep as that for the largest object.
  • the plate 2 preferably has an outer periphery protruding from the outer periphery of the connecting means 5 so that it has a flange 13, in particular visible on the Figures 1 and 2 .
  • the flange 13 may for example be arranged in abutment on a complementary relief of a case.
  • the flange 13 has a rectangular section so that it can for example come to bear on a edge of a housing 14 adapted to receive the device 1 and the object P to protect.
  • the housing 14 is preferably parallelepiped and has a square or rectangle opening on the edges of which the flange 13 of the plate 2 can be supported.
  • the connecting means 5 and the support 3 are preferably arranged inside this housing 14.
  • the connecting means 5 is folded back on itself .
  • the introduction of an object P at the orifice 7 is such that this object bears on a portion of the support 3 vis-à-vis the orifice 7.
  • the connecting means 5 is deformed, and the support 3 is moved away from the plate 2. The sleeve is then formed.
  • the deformation of the connecting means 5 is limited by the depth of the housing, and when the object P has driven the support 3 to the contact of a bottom 15 of the housing 14, as c ' is the case Figure 2 .
  • the deformation of the connecting means 5 is limited by the radial contact between the inner periphery 9a of the walls of the different portions of this connecting means and the outer periphery of the object P.
  • the deformation of the connecting means 5 is simply limited by its own limit of deformation.
  • the deformable connecting means 5 is made by means of a sheet such as 10.
  • the attachments of this sheet 10 with the plate 2 and / or the support 3 implement tabs 16 providing said junctions.
  • These tabs or portions 16 are for example cut so that they each have a shape similar to a section of the sheet 10.
  • a tab 16a is trapezoidal base and rounded vertex with identical radii of curvature.
  • the tongues 16 are straightened, and in particular fold at the level of the junctions with respectively the sheet 10 and the plate 2 or the support 3.
  • the opening 8 of the sheet 10 is shifted relative to the orifice 7.
  • the projected internal diameter 17 of the orifice 7 is offset relative to the projected internal diameter 18 of the opening 8.
  • the inner diameter circumscribed 19 to these two projected internal diameters 17 and 18 is smaller than that of the port 7 initially provided.
  • This circumscribed inner diameter 19 must in particular be slightly greater than the outside diameter of an object P of a height H2 corresponding to this level of deformation of the connecting means 5.
  • the invention is not limited to this embodiment described in this variant, the inner periphery of the orifice 7 and the opening 8 may be different from circular. Likewise, the outer periphery of the device 1 can form a different shell surface than cylindrical. In addition, the connecting means 5 may comprise several sheets such as 10 and as many tabs as 16 as necessary.
  • the figure 7 presents a variant in which a housing 50 of parallelepipedal shape is provided so that a face 51 has two openings 52 and 53 for respectively receiving two wedging devices according to the invention 1 and 1 '.
  • the flange 13 of the first device 1 abuts against a rim defined around the first opening 52.
  • this flange 13 can be fixed at a lower surface of this face 51.
  • the introduction of the object P in the orifice 7 leads to the formation of the sleeve and the wedging of this first object P in the housing 50.
  • the second device 1 ' is for example of different dimensions to receive a different object P'.
  • the object P 'and the second device 1' may be identical to the object P and the device 1.
  • there is a cover on the housing 50 so as to further constrain the objects P and P 'in their respective sleeve.
  • a housing 50 it is thus possible to design such a housing 50 to present several identical bottles for a treatment to be staggered over time, or to propose packaging in the form of a box comprising various products, for example of the same range or the same Mark.
  • the device 1 can also perform its function of protecting an object P, without the need for a case or a complementary housing.
  • the plate 2 in this embodiment, is intended to cooperate with a lid 60 after introduction of the object P into the device 1.
  • the lid 60 is for example folded, glued or slammed on the plate 2. It must have a sufficient resistance for one end 61 of the object P to bear against it, while the opposite end 62 of this object P bears against the support 3, the connecting means 5 being then maintained in extension in the form of a sleeve.
  • the object P is designed to be mounted from below in a housing 70.
  • the object P is previously mounted in a cover 71 intended to cooperate with the open bottom of the housing 70.
  • the collar 13 of the plate 2 is mounted inside the housing 70, integral with a relief 73 of an inner wall, away from the open bottom, so that the cover 71 can also be introduced into the housing 70.
  • the lid is slammed or screwed.
  • the object P is introduced inside the housing and an end 72 of the object P bears against the support 3, and causes the deformation of the means 5 so that it takes its sleeve form.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Buffer Packaging (AREA)
  • Details Of Rigid Or Semi-Rigid Containers (AREA)
  • Massaging Devices (AREA)
  • Oscillators With Electromechanical Resonators (AREA)
  • Auxiliary Devices For And Details Of Packaging Control (AREA)
  • Telephone Function (AREA)
  • Vehicle Body Suspensions (AREA)
  • Basic Packing Technique (AREA)
EP04292618A 2003-11-04 2004-11-04 Dispositif de calage Not-in-force EP1529740B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
FR0350782 2003-11-04
FR0350782A FR2861704B1 (fr) 2003-11-04 2003-11-04 Dispositif de calage

Publications (2)

Publication Number Publication Date
EP1529740A1 EP1529740A1 (fr) 2005-05-11
EP1529740B1 true EP1529740B1 (fr) 2008-08-13

Family

ID=34430077

Family Applications (1)

Application Number Title Priority Date Filing Date
EP04292618A Not-in-force EP1529740B1 (fr) 2003-11-04 2004-11-04 Dispositif de calage

Country Status (5)

Country Link
EP (1) EP1529740B1 (es)
AT (1) ATE404457T1 (es)
DE (1) DE602004015702D1 (es)
ES (1) ES2310705T3 (es)
FR (1) FR2861704B1 (es)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR3117466A1 (fr) * 2020-12-16 2022-06-17 Atlantic Industrie Emballage pour un produit, tel qu’un chauffe-eau

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2571028B3 (fr) 1984-10-02 1986-11-21 Idhexa Manchon extensible pour le gainage d'objets de formes variees, en vue de leur protection, et application au conditionnement de ces objets
FR2635754A1 (fr) * 1988-09-01 1990-03-02 Baudet Daniel Sac ou sachet a contenance variable

Also Published As

Publication number Publication date
EP1529740A1 (fr) 2005-05-11
DE602004015702D1 (de) 2008-09-25
ES2310705T3 (es) 2009-01-16
FR2861704B1 (fr) 2007-08-10
ATE404457T1 (de) 2008-08-15
FR2861704A1 (fr) 2005-05-06

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