EP3059175B1 - Container provided with a mini petaloid bottom with transverse corrugations - Google Patents

Container provided with a mini petaloid bottom with transverse corrugations Download PDF

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Publication number
EP3059175B1
EP3059175B1 EP16151029.2A EP16151029A EP3059175B1 EP 3059175 B1 EP3059175 B1 EP 3059175B1 EP 16151029 A EP16151029 A EP 16151029A EP 3059175 B1 EP3059175 B1 EP 3059175B1
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EP
European Patent Office
Prior art keywords
container
base
corrugation
feet
valley
Prior art date
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Application number
EP16151029.2A
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German (de)
French (fr)
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EP3059175A1 (en
Inventor
Wilfried Hermel
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Sidel Participations SAS
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Sidel Participations SAS
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Publication of EP3059175A1 publication Critical patent/EP3059175A1/en
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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
    • B65D1/00Containers having bodies formed in one piece, e.g. by casting metallic material, by moulding plastics, by blowing vitreous material, by throwing ceramic material, by moulding pulped fibrous material, by deep-drawing operations performed on sheet material
    • B65D1/02Bottles or similar containers with necks or like restricted apertures, designed for pouring contents
    • B65D1/0223Bottles or similar containers with necks or like restricted apertures, designed for pouring contents characterised by shape
    • B65D1/0261Bottom construction
    • B65D1/0284Bottom construction having a discontinuous contact surface, e.g. discrete feet
    • 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
    • B65D1/00Containers having bodies formed in one piece, e.g. by casting metallic material, by moulding plastics, by blowing vitreous material, by throwing ceramic material, by moulding pulped fibrous material, by deep-drawing operations performed on sheet material
    • B65D1/02Bottles or similar containers with necks or like restricted apertures, designed for pouring contents
    • B65D1/0223Bottles or similar containers with necks or like restricted apertures, designed for pouring contents characterised by shape
    • B65D1/0261Bottom construction
    • 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
    • B65D1/00Containers having bodies formed in one piece, e.g. by casting metallic material, by moulding plastics, by blowing vitreous material, by throwing ceramic material, by moulding pulped fibrous material, by deep-drawing operations performed on sheet material
    • B65D1/40Details of walls
    • 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
    • B65D23/00Details of bottles or jars not otherwise provided for
    • 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
    • B65D2501/00Containers having bodies formed in one piece
    • B65D2501/0009Bottles or similar containers with necks or like restricted apertures designed for pouring contents
    • B65D2501/0018Ribs
    • B65D2501/0036Hollow circonferential ribs

Definitions

  • the invention relates to the field of containers, especially bottles or jars, manufactured by blow molding or stretch blow molding from preforms or intermediate containers of plastics material such as polyethylene terephthalate (PET).
  • PET polyethylene terephthalate
  • a container generally comprises an open neck, through which the contents (usually a liquid) are introduced and by which the latter is emptied, a body which gives the container its volume, and a bottom which closes the body opposite the collar and forms a base for holding and maintaining the container when it rests on a support such as a table.
  • Containers with petaloid-shaped bottoms are known, which include projecting, petal-shaped legs separated by convex wall portions, called valleys or valleys, which extend radially from a central zone of the bottom.
  • the feet are intended to ensure the stable holding of the container on a support; the valleys are designed to absorb the forces (thermal and / or mechanical) exerted by the contents.
  • the petaloid bottoms of high height (that is to say whose feet have a height in a ratio with the container diameter greater than or equal to 1/2) have a high mechanical strength; this is particularly suitable for carbonated liquids (in other words for soft drinks) generating pressures greater than 2.5 bar.
  • An illustrative example of this type of substance can be found in the international application WO 2012/069759 (SIDEL).
  • petaloid bottoms of this type consume a large amount of material (a container of 0.5 l with a classic petaloid base has a mass of the order of - or greater than - about 18 g).
  • An object is therefore to provide a container whose bottom has good mechanical strength despite a reduced amount of material, and which can in particular withstand stacking to be palletized safely.
  • a plastic container comprising a body and a petaloid bottom having a periphery through which it connects to the body, the bottom comprising a bottom wall of generally convex shape towards the outside of the container, which project feet formed by excrescences, separated in pairs by portions of the bottom wall forming recessed valleys which extend radially to the periphery of the bottom, the bottom further comprising, in each valley, in the vicinity of the periphery of the bottom, at least one groove which extends transversely with respect to the radial direction of extension of the valley.
  • the container 1 extends along a main axis X and comprises a side wall called body 2, and a bottom 3 which extends and closes the body 2 at a lower end thereof.
  • the bottom 3 is petaloid, and comprises a bottom wall 4 of generally convex shape towards the outside of the container 1 (that is to say down when the container 1 is laid flat).
  • This wall 4 extends from a central dome 5 concavity turned towards the outside of the container 1.
  • In the center of the dome 5 extends in axial projection a pellet 6 injection coming, whose material has remained substantially during the forming of the container 1.
  • the dome 5 has the particular function of stretching the material in the center of the bottom 3, so as to increase the crystallinity and therefore the mechanical strength.
  • the bottom 3 also comprises a series of feet 7 formed by protrusions projecting axially from the bottom wall 4 towards the outside of the container 1.
  • the feet 7 extend radially from the central dome 5 , at a periphery 8 of the bottom 3 by which it connects to the body 2.
  • D1 denotes the overall radial extension of the bottom 3, measured perpendicular to the axis X at its periphery 8 ( figure 5 ).
  • the radial extension D1 is its diameter.
  • the more protrusions or peaks 9 feet 7 together form a plane 10 of pose by which the container 1 can rest on a flat surface (e.g. a table).
  • the plane 10 of pose is radially set back relative to the periphery 8.
  • the radial extension D2 that is to say, in the illustrated example, the diameter
  • H1 the total height of the base 3 (which corresponds to that of the feet 7), measured axially from the plane of installation 10 to the periphery 8 of the base 3.
  • the total height H1 of the bottom is advantageously between 25% and 28% of the overall radial extension D1 of the bottom 3: 0 , 25 ⁇ D 1 ⁇ H 1 ⁇ 0 , 28 ⁇ D 1
  • a classic petaloid background would have a H1 / D1 ratio of about 0.5.
  • the present bottom 3 which may be called "mini petaloid" because of its low ratio H1 / D1, limits the amount of material necessary for the formation of the bottom 3 while allowing it, thanks to its petaloid structure , to host content under pressure.
  • the radial extension D2 of the map 10 of poses is preferably between 67% and 72% of the radial extension D1 overall bottom 3: 0 , 67 ⁇ D 1 ⁇ D 2 ⁇ 0 , 72 ⁇ D 1
  • This dimensional ratio offers a good compromise between the stability of the bottom 3 (which increases according to the ratio D2 / D1) and its blowing (that is to say, its ability to be properly formed by blowing), which, conversely, decreases according to the ratio D2 / D1.
  • the feet 7 will taper from the inside to the outside of the container 1 (i.e. from the top to the bottom), and widening from the central dome 5 to the periphery 8.
  • Each foot 7 has an end face 11 which extends gently from the dome 5 to the apex 9 and which, as can be seen in FIGS. figures 2 and 5 , has a slightly increasing width from the vicinity of the dome 5 to the periphery 8.
  • H2 the axial extension of the end face 11 (also called arrow or bottom guard 3 ), measured between the laying plane 10 and the edge of the dome 5.
  • the arrow H2 is less than the height H1 from the bottom 3, but without being negligible with respect thereto. More precisely, the arrow H2 is between 28% and 32% of the height H1 of the bottom 3: 0 , 28 ⁇ H 1 ⁇ H 2 ⁇ 0 , 32 ⁇ H 1
  • the relatively low H2 / H1 ratio offers, again, a good compromise between the mechanical resistance of the bottom (which increases as a function of the H2 / H1 ratio) and its blowing (which conversely decreases with the H2 / H1 ratio).
  • the arrow H2 is approximately 31% of the height H1 of the bottom 3: H 2 ⁇ 0 , 31 ⁇ H 1
  • H3 the depth, measured axially, of the dome 5.
  • This depth H3 is preferably between 2 mm and 3 mm: 2 mm ⁇ H 3 ⁇ 3 mm
  • the depth H 3 of the dome is relatively large and makes it possible to stretch the material in the center of the bottom 3, which increases its structural rigidity and thus its mechanical strength.
  • the feet 7 are separated in pairs by portions 12 of the bottom wall 4 called valleys, which extend radially in a star from the dome 5 to the periphery 8.
  • the valleys 12 extend in hollow between the feet 7 which they separate two by two.
  • the valleys 12 have, in cross section (that is to say in a plane perpendicular to the radial direction, see the figure 7 ), a U-shaped profile that can go flaring from the inside to the outside of the container (that is to say downwards).
  • the valleys 12 do not connect directly to the dome 5 but terminate internally at an inner end 13 away from the dome 5, an intermediate space 14 being thus defined between the end 13 and an outer edge 15 of the dome 5.
  • the feet 7 are equal in number to the valleys 12.
  • the bottom 3 comprises five feet 7 and five valleys 12, regularly alternated and distributed in a star. This number is a good compromise; it could however be less (but greater than or equal to three), or greater (but preferably less than or equal to nine).
  • the first angular aperture A1 is advantageously between 45 ° and 55 °: 45 ° ⁇ AT 1 ⁇ 55 °
  • the first angular aperture A1 is about 50 °: AT 1 ⁇ 50 °
  • the second angular aperture A2 is advantageously between 15 ° and 21 °: 15 ° ⁇ AT 1 ⁇ 21 °
  • the second angular aperture A2 is approximately 18 °: AT 2 ⁇ 18 °
  • the first angular aperture A1 which is quite large improves the blowing of the bottom 3.
  • the second angular aperture A2 which is smaller, increases the stability of the bottom 3 by imparting a certain verticality to the feet 7, on the side of their apex 9.
  • the pressurization of the container 1 is capable of deforming the bottom 3.
  • the bottom 3 is provided, in each valley 12, in the vicinity of the periphery 8 (that is to say in the vicinity of the junction between the valley 12 and the body 2 ), at least one groove 17 which extends transversely to the direction radial extension of the valley 12.
  • This groove 17 forms in the valley 12 a hollow towards the interior of the container 1.
  • the groove 17 has a tapered grain-rice shape and is wider (measured radially) in the center of the valley 12 than at the edges of the valley. this. For better visibility we have, on the figures 2 and 4 , grayed flutes 17 by a dot pattern.
  • each groove 17 may have a length (when measured transversely) greater than the width of the valley 12, and therefore encroach, at its lateral ends, on the flanks 16 of the feet 7 bordering the valley 12.
  • the depth of the groove 17 is relatively small, being between 0.8 mm and 1.5 mm. According to a particular embodiment, the depth of the groove 17 is about 1 mm.
  • the bottom 3 comprises in each valley 12 at least two adjacent flutes, namely a first groove 17, said main, and a second groove 18, said secondary, adjacent the main groove 17 .
  • the secondary groove 18 is offset from the main groove 17 towards the center of the bottom 3 and also extends transversely from one edge to the other of the valley 12, although being shorter (measured transversely) than the main groove 17 . So, as we see on the example of figures 2 and 4 , the secondary groove 18 encroaches only slightly, at its lateral ends, on the flanks 16 of the feet 7.
  • the secondary groove 18 has a tapered rice grain shape being wider (measured radially) in the center of the valley 12 than at the edges thereof. On the figures 2 and 4 it has also dimmed the grooves 18 side by a dot pattern.
  • the radius R1 of the central hollow of each groove 17, 18 is between 0.3 mm and 1 mm. According to a particular embodiment, the radius R1 is approximately 0.5 mm.
  • the radius R2 of the fillet of each spline 17, 18 is greater than the radius R1 of the central hollow.
  • This radius R2 is between 1.2 mm and 1.8 mm. According to a particular embodiment, the radius R2 is about 1.5 mm.
  • the secondary groove 18 has a relatively small depth, between 0.8 mm and 1.5 mm. According to a particular embodiment, the depth of the secondary groove 18 is about 1 mm.
  • the deformations due to the stresses to which the bottom is subjected are localized on the main splines 17 (and secondary grooves 18 when they exist), which deform by flattening, as shown in FIG. figure 6 , which avoids any pinching of the valley 12, in particular at its junction with the body 2 of the container 1.
  • secondary grooves 18 increases the capacity of the bottom 3 to absorb larger deformations, especially when the pressure in the container is relatively high (between 1 bar and 2.5 bars).
  • the number of secondary grooves 18 present in each valley 12 may be greater than one, that is to say that there may be a total of a number of splines 17, 18 (main and secondary) at least equal to two in each valley 12, depending on the deformation to which the container 1 is supposed to resist (and therefore the pressure in it).
  • the bottom 3 has two concentric regions, namely an annular central region 19 surrounding the dome 5, and an annular peripheral region 20 surrounding the central region 19 , separated by a recess 21 which extends axially on a height H4 (measured axially) predetermined.
  • the recess 21 is median with respect to the bottom 3, that is to say that it has a diameter, denoted D3, between 45% and 55% of the overall diameter D1 of the bottom 3: 0 , 45 ⁇ D 1 ⁇ D 3 ⁇ 0 , 55 ⁇ D 1
  • the diameter D3 of the recess 21 is equal to about half of the overall diameter D1 of the bottom 3: D 3 ⁇ 0 , 5 ⁇ D 1
  • the recess 21 extends continuously around the dome 5, and overlaps both the feet 7 (including the flanks 16 ) and the valleys 12.
  • the central region 19 is slightly raised relative to the peripheral region 20, being offset towards the interior of the container 1.
  • the height H4 of the recess 21 is substantially constant over its contour, advantageously being between 0.5 mm and 1.5 mm.
  • the height H4 of the recess is about 1 mm.
  • the recess 21 serves to maintain the stability of the container 1 under relatively high pressure conditions (between 1 bar and 2.5 bars), by opposing the inversion of the bottom 3 and by contributing, under the internal pressure of the container, expand the plan 10 installation, which increases the stability of the container 1.
  • A3 denotes the angular aperture, measured around the axis X of the container 1 in a plane perpendicular to the axis X, of the part top of the feet 9, that is to say without counting the flanks 16, and A4 the angular aperture defined between the top parts of two consecutive feet 7 , that is to say the portion of the bottom 3 including a valley 12 and flanks 16 which border it (cf. figure 4 ).
  • the angular openings A3, A4 are substantially identical (variations of a few degrees may exist): AT 3 ⁇ AT 4
  • the value of the openings A3, angular A4 therefore depends on the number of feet 7 (or the number of valleys 12, equal to the number of feet). More precisely, if N is the number of feet, then the openings A3 and A4, measured in degrees, are calculated as follows: AT 3 ⁇ AT 4 ⁇ 360 ° 2 NOT
  • the openings A3, A4 angular are about 36 °.
  • the vertices 9 of the feet are rounded, and have, in a radial plane, a radius R3 which is between 8% and 12% of the overall diameter D1 of the bottom 3: 0 , 08 ⁇ D 1 ⁇ R 3 ⁇ 0 , 12 ⁇ D 1
  • the radius R3 of the vertex 9 of the feet 7 is equal to about one-tenth of the diameter D1 of the bottom 3: R 3 ⁇ 0 , 1 ⁇ D 1
  • This dimensioning ensures a good blowing bottom 3 while giving it good stability.
  • Each foot 7 can be connected to the body 2 by a flat face. However, according to a preferred embodiment illustrated on the figure 5 each foot 7 is connected to the body 2 by a curved face, having a radius R4 between 1/3 and half of the diameter D1 overall of the bottom 3 : D 1 3 ⁇ R 4 ⁇ D 1 2
  • the radius R4 of the connecting face of the feet 7 to the body 2 is of the order of 40% of the diameter D1 overall of the bottom 3: R 4 ⁇ 0 , 4 ⁇ D 1
  • This dimensional ratio contributes to the good blowing of the bottom 3, without impairing its stability.
  • each foot 7 is provided with a groove 22 formed in the hollow, which extends radially overlapping the top 9 (and therefore the plane 10 setting).
  • the grooves 22 have the function of stiffening the bottom 3. Under the effect of the mechanical stresses exerted on the container 1 (in particular under the effect of the pressure prevailing therein), the grooves 22 have a tendency to flow when they expand. and flattening, which causes a widening of the feet 7 at their apex 9 and gives the flanks 16 a certain verticality which opposes the overall subsidence of the bottom 3.
  • each groove 22 has, on the side of its junction with the body 2, an enlarged end zone 23 which promotes the blowing and limits the risk of appearance of wrinkles during pressurization.
  • each foot 7 comprises facets 24 which adjoin laterally (that is to say transversely to a radial direction) the vertices 9 of each foot.
  • each foot 7 is provided with a pair of facets 24.

Description

L'invention concerne le domaine des récipients, notamment bouteilles ou pots, fabriqués par soufflage ou étirage soufflage à partir d'ébauches (préformes ou récipients intermédiaires) en matière plastique telle que du polytéréphtalate d'éthylène (PET).The invention relates to the field of containers, especially bottles or jars, manufactured by blow molding or stretch blow molding from preforms or intermediate containers of plastics material such as polyethylene terephthalate (PET).

Un récipient comprend généralement un col ouvert, par lequel on introduit le contenu (ordinairement un liquide) et par lequel on vide celui-ci, un corps, qui confère au récipient son volume, et un fond qui ferme le corps à l'opposé du col et forme un socle destiné à assurer la tenue et le maintien du récipient lorsqu'il repose sur un support tel qu'une table.A container generally comprises an open neck, through which the contents (usually a liquid) are introduced and by which the latter is emptied, a body which gives the container its volume, and a bottom which closes the body opposite the collar and forms a base for holding and maintaining the container when it rests on a support such as a table.

On connaît des récipients pourvus de fonds de forme pétaloïde, qui comprennent des pieds en saillie, en forme de pétales, séparés par des portions de paroi convexe, appelées creux ou vallées, qui s'étendent radialement depuis une zone centrale du fond. Les pieds sont destinés à assurer le maintien stable du récipient sur un support ; les vallées sont destinées à absorber les efforts (thermiques et/ou mécaniques) exercés par le contenu.Containers with petaloid-shaped bottoms are known, which include projecting, petal-shaped legs separated by convex wall portions, called valleys or valleys, which extend radially from a central zone of the bottom. The feet are intended to ensure the stable holding of the container on a support; the valleys are designed to absorb the forces (thermal and / or mechanical) exerted by the contents.

Les fonds pétaloïdes de grande hauteur (c'est-à-dire dont les pieds présentent une hauteur dans un rapport avec le diamètre du récipient supérieur ou égal à 1/2) présentent une résistance mécanique élevée ; cela les destine tout particulièrement aux liquides carbonatés (en d'autres termes aux boissons gazeuses) générant des pressions supérieures à 2,5 bars. On trouvera un exemple illustratif de ce type de fond dans la demande internationale WO 2012/069759 (SIDEL).The petaloid bottoms of high height (that is to say whose feet have a height in a ratio with the container diameter greater than or equal to 1/2) have a high mechanical strength; this is particularly suitable for carbonated liquids (in other words for soft drinks) generating pressures greater than 2.5 bar. An illustrative example of this type of substance can be found in the international application WO 2012/069759 (SIDEL).

Mais les fonds pétaloïdes de ce type consomment une quantité importante de matière (un récipient de 0,5 l à fond pétaloïde classique présente une masse de l'ordre de - ou supérieure à - 18 g environ).But the petaloid bottoms of this type consume a large amount of material (a container of 0.5 l with a classic petaloid base has a mass of the order of - or greater than - about 18 g).

Il a été tenté d'adapter les fonds pétaloïdes aux liquides plats (par ex. l'eau plate) ou légèrement gazeux (générant une pression interne inférieure ou égale à 2,5 bars), ou encore aux liquides mis sous légère pression (de l'ordre de 0,3 bar à 1 bar) au moyen d'un gaz neutre (tel que de l'azote). Pour limiter la quantité de matière nécessaire à la fabrication d'un fond pétaloïde, la hauteur du fond a été réduite, et le fond a été renforcé, dans les vallées, au moyen de rainures chevauchant un dôme central. Cette technique, illustrée dans la demande internationale WO 2014/207331 (SIDEL), a fait ses preuves et permis de réduire la quantité de matière à 10g environ pour un récipient d'une capacité de 0,5 l. Mais les contraintes en termes d'économie de matière ne cessent de se durcir, et il est aujourd'hui demandé aux fabricants de réduire la masse des récipients de 10 à 20% supplémentaires (soit une masse de l'ordre de 8g à 9g pour un récipient d'une capacité de 0,5 l).Attempts have been made to adapt petaloid bottoms to flat liquids (eg still water) or slightly gaseous (generating internal pressure less than or equal to 2.5 bar), or to liquids under slight pressure (from in the order of 0.3 bar to 1 bar) by means of a neutral gas (such as nitrogen). To limit the amount of material required to make a petaloid bottom, the height of the bottom has been reduced, and the bottom has been reinforced, in the valleys, by means of grooves straddling a central dome. This technique, illustrated in international application WO 2014/207331 (SIDEL), has proven itself and allowed to reduce the amount of material to about 10g for a container with a capacity of 0.5 l. But the constraints in terms of material economy are getting tougher, and today manufacturers are asked to reduce the weight of the containers by an additional 10 to 20% (ie a mass in the range of 8g to 9g for a container with a capacity of 0.5 l).

Dans ces conditions, les formes connues cessent d'être pertinentes et de nouvelles solutions doivent être trouvées pour maintenir ou accroître, à masse réduite, la rigidité du fond des récipients.Under these conditions, the known forms cease to be relevant and new solutions must be found to maintain or increase, at reduced mass, the rigidity of the bottom of the containers.

En particulier, il a été noté qu'en allégeant de 15% le fond pétaloïde du type décrit dans la demande WO 2014/207331 précitée, ce fond se déforme sous une pression interne supérieure ou égale à 0,5 bar. Plus précisément, des plis apparaissent de manière incontrôlée dans les vallées, ce qui affaiblit le fond du récipient et rend hasardeux son empilement (et donc sa palettisation). Le document FR 2974069 A1 décrit également un récipient en matière plastique tel que décrit dans le préambule de la revendication 1. Enfin, le document JP H06 156464 A décrit un récipient en matière plastique comportant des pieds munis de cannelures s'étendant dans une direction circonférentielle.In particular, it was noted that by lightening the petaloid background by 15% of the type described in the application WO 2014/207331 above, this bottom deforms under an internal pressure greater than or equal to 0.5 bar. More specifically, folds appear uncontrollably in the valleys, which weakens the bottom of the container and makes it risky stacking (and therefore its palletization). The document FR 2974069 A1 also discloses a plastic container as described in the preamble of claim 1. Finally, the document JP H06 156464 A discloses a plastic container having legs provided with flutes extending in a circumferential direction.

Un objectif est par conséquent de proposer un récipient dont le fond présente une bonne résistance mécanique en dépit d'une quantité de matière réduite, et qui puisse en particulier résister à un empilement pour pouvoir être palettisé sans risque.An object is therefore to provide a container whose bottom has good mechanical strength despite a reduced amount of material, and which can in particular withstand stacking to be palletized safely.

A cet effet, il est proposé un récipient en matière plastique comprenant un corps et un fond pétaloïde ayant une périphérie par laquelle il se raccorde au corps, le fond comprenant une paroi de fond de forme générale convexe vers l'extérieur du récipient, dont saillent des pieds formés par des excroissances, séparés deux à deux par des portions de la paroi de fond formant des vallées en creux qui s'étendent radialement jusqu'à la périphérie du fond, le fond comprenant en outre, dans chaque vallée, au voisinage de la périphérie du fond, au moins une cannelure qui s'étend transversalement par rapport à la direction radiale d'extension de la vallée.For this purpose, there is provided a plastic container comprising a body and a petaloid bottom having a periphery through which it connects to the body, the bottom comprising a bottom wall of generally convex shape towards the outside of the container, which project feet formed by excrescences, separated in pairs by portions of the bottom wall forming recessed valleys which extend radially to the periphery of the bottom, the bottom further comprising, in each valley, in the vicinity of the periphery of the bottom, at least one groove which extends transversely with respect to the radial direction of extension of the valley.

Ces cannelures permettent de maîtriser, en les absorbant, les déformations dues à la pression régnant dans le récipient, ce qui évite notamment la formation inopinée de plis dans les vallées, et confère au fond une bonne résistance mécanique qui permet au récipient d'être empilé (et donc palettisé).These grooves make it possible to control, by absorbing them, the deformations due to the pressure prevailing in the container, which in particular avoids the unexpected formation of folds in the valleys, and gives the bottom a good mechanical resistance which allows the container to be stacked. (and therefore palletized).

Diverses caractéristiques supplémentaires peuvent être prévues, seules ou en combinaison :

  • chaque cannelure s'étend d'un bord à l'autre de la vallée ;
  • chaque cannelure présente un creux central ayant, en section radiale, une forme en arc de cercle à concavité tournée vers l'extérieur du récipient et des congés de raccordement qui bordent le creux central et ont en section radiale une forme en arc de cercle à concavité tournée vers l'intérieur du récipient ;
  • la cannelure présente une profondeur comprise entre 0,8 mm et 1,5 mm ;
  • le fond comprend au moins deux cannelures adjacentes, à savoir une cannelure principale et au moins une cannelure secondaire décalée de la cannelure principale vers le centre du fond ;
  • la cannelure secondaire présente une longueur, mesurée transversalement, inférieure à celle de la cannelure principale ;
  • le fond présentant un diamètre hors tout D1, les pieds définissent un plan de pose ayant un diamètre D2 tel que : 0 , 67 D 1 D 2 0 , 72 D 1
    Figure imgb0001
  • le fond présente une hauteur totale H1 telle que : 0 , 25 D 1 H 1 0 , 28 D 1
    Figure imgb0002
  • le fond présente une région centrale et une région périphérique concentriques séparées par un décrochement continu chevauchant les pieds et les vallées ;
  • chaque pied est pourvu d'une rainure qui s'étend axialement et chevauche un sommet du pied.
Various additional features may be provided, alone or in combination:
  • each groove extends from one side to the other of the valley;
  • each groove has a central hollow having, in radial section, a concave arcuate shape facing outwardly of the container and connecting fillets which border the central recess and have in radial section a concave arcuate shape turned towards the inside of the container;
  • the groove has a depth of between 0.8 mm and 1.5 mm;
  • the bottom comprises at least two adjacent flutes, namely a main flute and at least one secondary flute offset from the main flute towards the center of the bottom;
  • the secondary groove has a length, measured transversely, less than that of the main groove;
  • the bottom having an overall diameter D1, the feet define a laying plane having a diameter D2 such that: 0 , 67 D 1 D 2 0 , 72 D 1
    Figure imgb0001
  • the bottom has a total height H1 such that: 0 , 25 D 1 H 1 0 , 28 D 1
    Figure imgb0002
  • the bottom has a central region and a concentric peripheral region separated by a continuous step overlapping the feet and the valleys;
  • each foot is provided with a groove which extends axially and overlaps a top of the foot.

D'autres objets et avantages de l'invention apparaîtront à la lumière de la description d'un mode de réalisation, faite ci-après en référence aux dessins annexés dans lesquels :

  • la figure 1 est une vue en perspective, de dessous, d'un récipient muni d'un fond pétaloïde ;
  • la figure 2 est une vue de détail, à échelle agrandie, du fond du récipient de la figure 1 ;
  • la figure 3 est une vue de détail, de côté, du fond de la figure 2 ;
  • la figure 4 est une vue de dessous, à échelle agrandie, du fond des figures 2 et 3 ;
  • la figure 5 est une section du fond de la figure 4, selon le plan de coupe V-V, avec en médaillon un détail à échelle agrandie ;
  • la figure 6 est une vue du détail en médaillon de la figure 5, dans laquelle la matière est déformée sous l'effet de la pression régnant dans le récipient rempli ;
  • la figure 7 est une vue de détail en coupe du fond de la figure 4, selon le plan de coupe VII-VII.
Other objects and advantages of the invention will become apparent in the light of the description of an embodiment, given hereinafter with reference to the accompanying drawings, in which:
  • the figure 1 is a perspective view, from below, of a container with a petaloid bottom;
  • the figure 2 is a detail view, on an enlarged scale, of the bottom of the container of the figure 1 ;
  • the figure 3 is a detail view, from the side, from the bottom of the figure 2 ;
  • the figure 4 is a bottom view, on an enlarged scale, of the bottom of figures 2 and 3 ;
  • the figure 5 is a section of the bottom of the figure 4 according to the sectional plan VV, with a medallion detail on an enlarged scale;
  • the figure 6 is an inset detail view of the figure 5 wherein the material is deformed under the effect of the pressure in the filled container;
  • the figure 7 is a detailed sectional view of the bottom of the figure 4 according to the section plane VII-VII.

Sur la figure 1 est représenté, en perspective de dessous, un récipient 1 - en l'occurrence une bouteille - obtenu par soufflage ou étirage soufflage à partir d'une préforme en matière thermoplastique, par exemple en polytéréphtalate d'éthylène (PET), préalablement chauffée.On the figure 1 is shown, in perspective from below, a container 1 - in this case a bottle - obtained by blow molding or stretch blow from a preform of thermoplastic material, for example polyethylene terephthalate (PET), previously heated.

Le récipient 1 s'étend selon un axe X principal et comprend une paroi latérale appelée corps 2, et un fond 3 qui prolonge et ferme le corps 2 à une extrémité inférieure de celui-ci.The container 1 extends along a main axis X and comprises a side wall called body 2, and a bottom 3 which extends and closes the body 2 at a lower end thereof.

Le fond 3 est pétaloïde, et comprend une paroi 4 de fond de forme générale convexe vers l'extérieur du récipient 1 (c'est-à-dire vers le bas lorsque le récipient 1 est posé à plat). Cette paroi 4 s'étend à partir d'un dôme 5 central à concavité tournée vers l'extérieur du récipient 1. Au centre du dôme 5 s'étend en saillie axiale une pastille 6 venue d'injection, dont la matière est demeurée sensiblement amorphe au cours du formage du récipient 1. Le dôme 5 a notamment pour fonction d'étirer la matière au centre du fond 3, de façon à en accroître la cristallinité et donc la résistance mécanique.The bottom 3 is petaloid, and comprises a bottom wall 4 of generally convex shape towards the outside of the container 1 (that is to say down when the container 1 is laid flat). This wall 4 extends from a central dome 5 concavity turned towards the outside of the container 1. In the center of the dome 5 extends in axial projection a pellet 6 injection coming, whose material has remained substantially during the forming of the container 1. The dome 5 has the particular function of stretching the material in the center of the bottom 3, so as to increase the crystallinity and therefore the mechanical strength.

Le fond 3 comprend par ailleurs une série de pieds 7 formés par des excroissances en saillie axiale à partir de la paroi 4 de fond vers l'extérieur du récipient 1. Les pieds 7 s'étendent radialement à partir du dôme 5 central, jusqu'à une périphérie 8 du fond 3 par laquelle celui-ci se raccorde au corps 2. On note D1 l'extension radiale hors tout du fond 3, mesurée perpendiculairement à l'axe X au niveau de sa périphérie 8 (figure 5). Dans le cas d'un récipient 1 à corps 2 cylindrique (comme dans l'exemple illustré), l'extension D1 radiale est son diamètre.The bottom 3 also comprises a series of feet 7 formed by protrusions projecting axially from the bottom wall 4 towards the outside of the container 1. The feet 7 extend radially from the central dome 5 , at a periphery 8 of the bottom 3 by which it connects to the body 2. D1 denotes the overall radial extension of the bottom 3, measured perpendicular to the axis X at its periphery 8 ( figure 5 ). In the case of a receptacle 1 with a cylindrical body 2 (as in the example illustrated), the radial extension D1 is its diameter.

Les parties les plus saillantes ou sommets 9 des pieds 7 forment conjointement un plan 10 de pose par lequel le récipient 1 peut reposer sur une surface plane (par exemple une table). Comme cela est visible sur la figure 3, le plan 10 de pose est situé radialement en retrait par rapport à la périphérie 8. On note D2 l'extension radiale (c'est-à-dire, dans l'exemple illustré, le diamètre) du plan 10 de pose, et H1 la hauteur totale du fond 3 (qui correspond à celle des pieds 7), mesurée axialement depuis le plan 10 de pose jusqu'à la périphérie 8 du fond 3. The more protrusions or peaks 9 feet 7 together form a plane 10 of pose by which the container 1 can rest on a flat surface (e.g. a table). As is visible on the figure 3 , The plane 10 of pose is radially set back relative to the periphery 8. Note the radial extension D2 (that is to say, in the illustrated example, the diameter) of the plane 10 of pose, and H1 the total height of the base 3 (which corresponds to that of the feet 7), measured axially from the plane of installation 10 to the periphery 8 of the base 3.

La hauteur H1 totale du fond est avantageusement comprise entre 25% et 28% de l'extension D1 radiale hors tout du fond 3 : 0 , 25 D 1 H 1 0 , 28 D 1

Figure imgb0003
The total height H1 of the bottom is advantageously between 25% and 28% of the overall radial extension D1 of the bottom 3: 0 , 25 D 1 H 1 0 , 28 D 1
Figure imgb0003

Un fond pétaloïde classique aurait un rapport H1/D1 d'environ 0,5. Le présent fond 3, que l'on peut dénommer « mini pétaloïde » en raison de son faible rapport hauteur H1/D1, permet de limiter la quantité de matière nécessaire à la formation du fond 3 tout en lui permettant, grâce à sa structure pétaloïde, d'accueillir des contenus sous pression.A classic petaloid background would have a H1 / D1 ratio of about 0.5. The present bottom 3, which may be called "mini petaloid" because of its low ratio H1 / D1, limits the amount of material necessary for the formation of the bottom 3 while allowing it, thanks to its petaloid structure , to host content under pressure.

Parmi ce type de contenu, citons les liquides plats associés à l'adjonction, immédiatement après le remplissage et avant le bouchage, d'une goutte d'azote liquide dont la vaporisation met le contenu du récipient en surpression, ou encore les boissons faiblement carbonatées (comme certaines eaux faiblement pétillantes). La pression relative (c'est-à-dire la part de la pression absolue supérieure à la pression atmosphérique) dans le récipient 1 est, selon le type de contenu, comprise entre 0,3 bar et 2,5 bars.Among this type of content, let us mention the flat liquids associated with the addition, immediately after filling and before capping, of a drop of liquid nitrogen whose vaporization puts the contents of the container under an overpressure, or even slightly carbonated drinks. (like some faintly sparkling waters). The relative pressure (that is to say the part of the absolute pressure greater than the atmospheric pressure) in the container 1 is, depending on the type of content, between 0.3 bar and 2.5 bar.

Par ailleurs, l'extension D2 radiale du plan 10 de pose est de préférence comprise entre 67% et 72% de l'extension D1 radiale hors tout du fond 3 : 0 , 67 D 1 D 2 0 , 72 D 1

Figure imgb0004
Moreover, the radial extension D2 of the map 10 of poses is preferably between 67% and 72% of the radial extension D1 overall bottom 3: 0 , 67 D 1 D 2 0 , 72 D 1
Figure imgb0004

Ce rapport dimensionnel offre un bon compromis entre la stabilité du fond 3 (qui croît en fonction du rapport D2/D1) et sa soufflabilité (c'est-à-dire sa capacité à être correctement formé par soufflage), qui, a contrario, diminue en fonction du rapport D2/D1.This dimensional ratio offers a good compromise between the stability of the bottom 3 (which increases according to the ratio D2 / D1) and its blowing (that is to say, its ability to be properly formed by blowing), which, conversely, decreases according to the ratio D2 / D1.

Comme cela est bien visible sur les figures 2 à 4, les pieds 7 vont s'amincissant de l'intérieur vers l'extérieur du récipient 1 (c'est-à-dire du haut vers le bas), et en s'élargissant depuis le dôme 5 central vers la périphérie 8. As is clearly visible on the Figures 2 to 4 the feet 7 will taper from the inside to the outside of the container 1 (i.e. from the top to the bottom), and widening from the central dome 5 to the periphery 8.

Chaque pied 7 présente une face 11 d'extrémité qui s'étend en pente douce du dôme 5 vers le sommet 9 et qui, comme cela est visible sur les figures 2 et 5, présente une largeur qui va légèrement croissant du voisinage du dôme 5 vers la périphérie 8. Each foot 7 has an end face 11 which extends gently from the dome 5 to the apex 9 and which, as can be seen in FIGS. figures 2 and 5 , has a slightly increasing width from the vicinity of the dome 5 to the periphery 8.

On note H2 l'extension axiale de la face 11 d'extrémité (également dénommée flèche ou garde du fond 3), mesurée entre le plan 10 de pose et le bord du dôme 5. La flèche H2 est inférieure à la hauteur H1 du fond 3, mais sans être négligeable par rapport à celle-ci. Plus précisément, la flèche H2 est comprise entre 28% et 32% de la hauteur H1 du fond 3 : 0 , 28 H 1 H 2 0 , 32 H 1

Figure imgb0005
Note H2 the axial extension of the end face 11 (also called arrow or bottom guard 3 ), measured between the laying plane 10 and the edge of the dome 5. The arrow H2 is less than the height H1 from the bottom 3, but without being negligible with respect thereto. More precisely, the arrow H2 is between 28% and 32% of the height H1 of the bottom 3: 0 , 28 H 1 H 2 0 , 32 H 1
Figure imgb0005

Le ratio H2/H1 relativement faible offre, à nouveau, un bon compromis entre la résistance mécanique du fond (qui croît en fonction du ratio H2/H1) et sa soufflabilité (qui, a contrario, diminue avec le ratio H2/H1).The relatively low H2 / H1 ratio offers, again, a good compromise between the mechanical resistance of the bottom (which increases as a function of the H2 / H1 ratio) and its blowing (which conversely decreases with the H2 / H1 ratio).

Selon un mode de réalisation préféré, illustré sur les figures, la flèche H2 est d'environ 31% de la hauteur H1 du fond 3 : H 2 0 , 31 H 1

Figure imgb0006
According to a preferred embodiment, illustrated in the figures, the arrow H2 is approximately 31% of the height H1 of the bottom 3: H 2 0 , 31 H 1
Figure imgb0006

On note par ailleurs H3 la profondeur, mesurée axialement, du dôme 5. Cette profondeur H3 est de préférence comprise entre 2 mm et 3 mm : 2 mm H 3 3 mm

Figure imgb0007
Note also H3 the depth, measured axially, of the dome 5. This depth H3 is preferably between 2 mm and 3 mm: 2 mm H 3 3 mm
Figure imgb0007

Pour un récipient d'une capacité de 0,5 l, ayant un diamètre D1 hors tout de l'ordre de 65 mm, la profondeur H3 du dôme est relativement importante et permet d'étirer la matière au centre du fond 3, ce qui accroît sa rigidité structurelle et donc sa résistance mécanique.For a container with a capacity of 0.5 l, having an overall diameter D 1 of the order of 65 mm, the depth H 3 of the dome is relatively large and makes it possible to stretch the material in the center of the bottom 3, which increases its structural rigidity and thus its mechanical strength.

Comme cela est bien visible sur les figures 2, 3 et 4, les pieds 7 sont séparés deux à deux par des portions 12 de la paroi 4 de fond appelées vallées, qui s'étendent radialement en étoile depuis le dôme 5 jusqu'à la périphérie 8. As is clearly visible on the figures 2 , 3 and 4 , the feet 7 are separated in pairs by portions 12 of the bottom wall 4 called valleys, which extend radially in a star from the dome 5 to the periphery 8.

Les vallées 12 s'étendent en creux entre les pieds 7 qu'elles séparent deux à deux. Les vallées 12 présentent, en section transversale (c'est-à-dire selon un plan perpendiculaire à la direction radiale, cf. la figure 7), un profil en U qui peut aller en s'évasant de l'intérieur vers l'extérieur du récipient (c'est-à-dire vers le bas).The valleys 12 extend in hollow between the feet 7 which they separate two by two. The valleys 12 have, in cross section (that is to say in a plane perpendicular to the radial direction, see the figure 7 ), a U-shaped profile that can go flaring from the inside to the outside of the container (that is to say downwards).

Selon un mode particulier de réalisation illustré sur les figures 2 et 4, les vallées 12 ne se raccordent pas directement au dôme 5 mais se terminent intérieurement, à une extrémité 13 interne, à distance du dôme 5, un espace 14 intermédiaire étant ainsi défini entre l'extrémité 13 et un bord 15 externe du dôme 5. According to a particular embodiment illustrated on the figures 2 and 4 the valleys 12 do not connect directly to the dome 5 but terminate internally at an inner end 13 away from the dome 5, an intermediate space 14 being thus defined between the end 13 and an outer edge 15 of the dome 5.

Comme on le voit sur les figures 2 et 4, les pieds 7 sont en nombre égal aux vallées 12. Dans l'exemple illustré, le fond 3 comprend cinq pieds 7 et cinq vallées 12, régulièrement alternés et répartis en étoile. Ce nombre constitue un bon compromis ; il pourrait toutefois être inférieur (mais supérieur ou égal à trois), ou supérieur (mais de préférence inférieur ou égal à neuf).As we see on the figures 2 and 4 the feet 7 are equal in number to the valleys 12. In the example shown, the bottom 3 comprises five feet 7 and five valleys 12, regularly alternated and distributed in a star. This number is a good compromise; it could however be less (but greater than or equal to three), or greater (but preferably less than or equal to nine).

Chaque pied 7 présente deux flancs 16 qui bordent chacun latéralement une vallée 12. Comme on le devine sur la figure 2, et comme on le voit sur la figure 7, les flancs 16 ne sont pas verticaux (car le fond 3 serait alors difficile, voire impossible à souffler), mais inclinés en s'ouvrant depuis la vallée 12 vers l'extérieur. L'ouverture angulaire entre les flancs 16 n'est pas nécessairement constante selon la distance à la vallée 12. Ainsi, selon un mode de réalisation illustré sur la figure 7, chaque flanc 16 présente, sensiblement à mi-hauteur du pied, une rupture de pente, de sorte que sont définis entre les flancs 16 qui se font face :

  • au voisinage de la vallée 12, une première ouverture A1 angulaire,
  • au voisinage du sommet 9, une deuxième ouverture A2 angulaire, de préférence inférieure ou égale à la première ouverture A1 angulaire : A 2 A 1
    Figure imgb0008
Each foot 7 has two flanks 16 which each border laterally a valley 12. As can be seen on the figure 2 , and as we see on the figure 7 the flanks 16 are not vertical (because the bottom 3 would be difficult or impossible to blow), but inclined opening from the valley 12 to the outside. The angular aperture between the flanks 16 is not necessarily constant according to the distance to the valley 12. Thus, according to an embodiment illustrated in FIG. figure 7 , each flank 16 has, substantially at mid-height of the foot, a slope break, so that are defined between the flanks 16 which face each other:
  • in the vicinity of the valley 12, a first angular aperture A1 ,
  • in the vicinity of the apex 9, a second angular aperture A2 , preferably less than or equal to the first angular aperture A1 : AT 2 AT 1
    Figure imgb0008

La première ouverture A1 angulaire est avantageusement comprise entre 45° et 55° : 45 ° A 1 55 °

Figure imgb0009
The first angular aperture A1 is advantageously between 45 ° and 55 °: 45 ° AT 1 55 °
Figure imgb0009

Selon un mode préféré de réalisation, la première ouverture A1 angulaire est de 50° environ : A 1 50 °

Figure imgb0010
According to a preferred embodiment, the first angular aperture A1 is about 50 °: AT 1 50 °
Figure imgb0010

Par ailleurs, la deuxième ouverture A2 angulaire est avantageusement comprise entre 15° et 21° : 15 ° A 1 21 °

Figure imgb0011
Moreover, the second angular aperture A2 is advantageously between 15 ° and 21 °: 15 ° AT 1 21 °
Figure imgb0011

Selon un mode préféré de réalisation, la deuxième ouverture A2 angulaire est de 18° environ : A 2 18 °

Figure imgb0012
According to a preferred embodiment, the second angular aperture A2 is approximately 18 °: AT 2 18 °
Figure imgb0012

La première ouverture A1 angulaire, assez importante, améliore la soufflabilité du fond 3. La deuxième ouverture A2 angulaire, plus faible, accroît la stabilité du fond 3 en conférant une certaine verticalité aux pieds 7, du côté de leur sommet 9. The first angular aperture A1 which is quite large improves the blowing of the bottom 3. The second angular aperture A2 , which is smaller, increases the stability of the bottom 3 by imparting a certain verticality to the feet 7, on the side of their apex 9.

La mise sous pression du récipient 1 est susceptible de déformer le fond 3. Afin de limiter ces déformations, le fond 3 est pourvu, dans chaque vallée 12, au voisinage de la périphérie 8 (c'est-à-dire au voisinage de la jonction entre la vallée 12 et le corps 2), d'au moins une cannelure 17 qui s'étend transversalement par rapport à la direction radiale d'extension de la vallée 12. The pressurization of the container 1 is capable of deforming the bottom 3. In order to limit these deformations, the bottom 3 is provided, in each valley 12, in the vicinity of the periphery 8 (that is to say in the vicinity of the junction between the valley 12 and the body 2 ), at least one groove 17 which extends transversely to the direction radial extension of the valley 12.

Cette cannelure 17 forme dans la vallée 12 un creux vers l'intérieur du récipient 1. La cannelure 17 présente une forme effilée en grain de riz et est plus large (mesurée radialement) au centre de la vallée 12 qu'aux bords de celle-ci. Pour une meilleure visibilité on a, sur les figures 2 et 4, grisé les cannelures 17 par un motif à points.This groove 17 forms in the valley 12 a hollow towards the interior of the container 1. The groove 17 has a tapered grain-rice shape and is wider (measured radially) in the center of the valley 12 than at the edges of the valley. this. For better visibility we have, on the figures 2 and 4 , grayed flutes 17 by a dot pattern.

Comme on le voit sur les figures 2 et 4, chaque cannelure 17 peut présenter une longueur (lorsque mesurée transversalement) supérieure à la largeur de la vallée 12, et empiète par conséquent, à ses extrémités latérales, sur les flancs 16 des pieds 7 bordant la vallée 12. As we see on the figures 2 and 4 each groove 17 may have a length (when measured transversely) greater than the width of the valley 12, and therefore encroach, at its lateral ends, on the flanks 16 of the feet 7 bordering the valley 12.

La cannelure 17 forme une ondulation dans la vallée 12, et comprend :

  • un creux central ayant, en section radiale, une forme en arc de cercle à concavité tournée vers l'extérieur du récipient 1 et dont le rayon est noté R1, et
  • des congés de raccordement qui bordent le creux central et ont également, en section radiale, une forme en arc de cercle à concavité tournée vers l'intérieur du récipient 1 et dont le rayon est noté R2.
The flute 17 forms a ripple in the valley 12, and comprises:
  • a central hollow having, in radial section, a concave circular arc shape facing outwardly of the container 1 and having a radius R1, and
  • connecting fillets which border the central recess and also have, in radial section, a concave arcuate shape turned towards the interior of the container 1 and whose radius is denoted R2.

La profondeur de la cannelure 17 est relativement faible, étant comprise entre 0,8 mm et 1,5 mm. Selon un mode particulier de réalisation, la profondeur de la cannelure 17 est d'environ 1 mm.The depth of the groove 17 is relatively small, being between 0.8 mm and 1.5 mm. According to a particular embodiment, the depth of the groove 17 is about 1 mm.

Selon un mode de réalisation illustré sur les figures, le fond 3 comprend dans chaque vallée 12 au moins deux cannelures adjacentes, à savoir une première cannelure 17, dite principale, et une deuxième cannelure 18, dite secondaire, jouxtant la cannelure 17 principale. La cannelure 18 secondaire est décalée de la cannelure 17 principale vers le centre du fond 3 et s'étend également transversalement d'un bord à l'autre de la vallée 12, en étant cependant moins longue (mesurée transversalement) que la cannelure 17 principale. Ainsi, comme on le voit sur l'exemple des figures 2 et 4, la cannelure 18 secondaire n'empiète que légèrement, à ses extrémités latérales, sur les flancs 16 des pieds 7. According to an embodiment illustrated in the figures, the bottom 3 comprises in each valley 12 at least two adjacent flutes, namely a first groove 17, said main, and a second groove 18, said secondary, adjacent the main groove 17 . The secondary groove 18 is offset from the main groove 17 towards the center of the bottom 3 and also extends transversely from one edge to the other of the valley 12, although being shorter (measured transversely) than the main groove 17 . So, as we see on the example of figures 2 and 4 , the secondary groove 18 encroaches only slightly, at its lateral ends, on the flanks 16 of the feet 7.

Comme la cannelure 17 principale, la cannelure 18 secondaire présente une forme effilée en grain de riz en étant plus large (mesurée radialement) au centre de la vallée 12 qu'aux bords de celle-ci. Sur les figures 2 et 4 on a aussi grisé les cannelures 18 secondaires par un motif à points.Like the main groove 17 , the secondary groove 18 has a tapered rice grain shape being wider (measured radially) in the center of the valley 12 than at the edges thereof. On the figures 2 and 4 it has also dimmed the grooves 18 side by a dot pattern.

De même, la cannelure 18 secondaire forme une ondulation dans la vallée 12, et comprend :

  • un creux central ayant, en section radiale, une forme en arc de cercle à concavité tournée vers l'extérieur du récipient 1 et de même rayon R1 que la cannelure 17 principale, et
  • des congés de raccordement qui bordent le creux central et ont également, en section radiale, une forme en arc de cercle à concavité tournée vers l'intérieur du récipient 1 et de même rayon R2 que celui des congés de raccordement de la cannelure 17 principale.
Likewise, the secondary groove 18 forms a corrugation in the valley 12, and comprises:
  • a central hollow having, in radial section, a concavity-shaped arcuate shape facing towards the outside of the container 1 and having the same radius R1 as the main spline 17 , and
  • connecting fillets which border the central recess and also have, in radial section, a concave arcuate shape facing the interior of the container 1 and of the same radius R2 as that of the connecting fillet 17 of the main groove.

Le rayon R1 du creux central de chaque cannelure 17, 18 est compris entre 0,3 mm et 1 mm. Selon un mode particulier de réalisation, le rayon R1 est d'environ 0,5 mm.The radius R1 of the central hollow of each groove 17, 18 is between 0.3 mm and 1 mm. According to a particular embodiment, the radius R1 is approximately 0.5 mm.

Le rayon R2 des congés de raccordement de chaque cannelure 17, 18 est supérieur au rayon R1 du creux central. Ce rayon R2 est compris entre 1,2 mm et 1,8 mm. Selon un mode particulier de réalisation, le rayon R2 est d'environ 1,5 mm.The radius R2 of the fillet of each spline 17, 18 is greater than the radius R1 of the central hollow. This radius R2 is between 1.2 mm and 1.8 mm. According to a particular embodiment, the radius R2 is about 1.5 mm.

Comme la cannelure 17 principale, la cannelure 18 secondaire présente une profondeur relativement faible, entre 0,8 mm et 1,5 mm. Selon un mode particulier de réalisation, la profondeur de la cannelure 18 secondaire est d'environ 1 mm.Like the main groove 17 , the secondary groove 18 has a relatively small depth, between 0.8 mm and 1.5 mm. According to a particular embodiment, the depth of the secondary groove 18 is about 1 mm.

Lorsque le récipient 1 est mis sous pression, les déformations dues aux contraintes auxquelles est soumis le fond sont localisées sur les cannelures 17 principales (et les cannelures 18 secondaires lorsqu'elles existent), qui se déforment en s'aplatissant, comme illustré sur la figure 6, ce qui évite tout pincement de la vallée 12, notamment à sa jonction avec le corps 2 du récipient 1. Il en résulte une meilleure tenue mécanique du fond 3, ce qui procure au récipient 1 une meilleure rigidité et permet son empilement (et donc sa palettisation) sans risque d'effondrement.When the container 1 is pressurized, the deformations due to the stresses to which the bottom is subjected are localized on the main splines 17 (and secondary grooves 18 when they exist), which deform by flattening, as shown in FIG. figure 6 , which avoids any pinching of the valley 12, in particular at its junction with the body 2 of the container 1. This results in a better mechanical strength of the bottom 3, which gives the container 1 a better rigidity and allows its stacking (and therefore its palletization) without risk of collapse.

La présence de cannelures 18 secondaires permet d'accroître la capacité du fond 3 à absorber des déformations plus importantes, notamment lorsque la pression dans le récipient est relativement élevée (comprise entre 1 bar et 2,5 bars).The presence of secondary grooves 18 increases the capacity of the bottom 3 to absorb larger deformations, especially when the pressure in the container is relatively high (between 1 bar and 2.5 bars).

Le nombre de cannelures 18 secondaires présent dans chaque vallée 12 peut être supérieur à un, c'est-à-dire qu'il peut exister au total un nombre de cannelures 17, 18 (principale et secondaire(s)) au moins égal à deux dans chaque vallée 12, tout dépendant de la déformation à laquelle le récipient 1 est supposé résister (et donc de la pression dans celui-ci).The number of secondary grooves 18 present in each valley 12 may be greater than one, that is to say that there may be a total of a number of splines 17, 18 (main and secondary) at least equal to two in each valley 12, depending on the deformation to which the container 1 is supposed to resist (and therefore the pressure in it).

Selon un mode préféré de réalisation, le fond 3 présente deux régions concentriques, à savoir une région 19 centrale annulaire entourant le dôme 5, et une région 20 périphérique annulaire entourant la région 19 centrale, séparées par un décrochement 21 qui s'étend axialement sur une hauteur H4 (mesurée axialement) prédéterminée. Le décrochement 21 est médian par rapport au fond 3, c'est-à-dire qu'il présente un diamètre, noté D3, compris entre 45% et 55% du diamètre D1 hors tout du fond 3 : 0 , 45 D 1 D 3 0 , 55 D 1

Figure imgb0013
According to a preferred embodiment, the bottom 3 has two concentric regions, namely an annular central region 19 surrounding the dome 5, and an annular peripheral region 20 surrounding the central region 19 , separated by a recess 21 which extends axially on a height H4 (measured axially) predetermined. The recess 21 is median with respect to the bottom 3, that is to say that it has a diameter, denoted D3, between 45% and 55% of the overall diameter D1 of the bottom 3: 0 , 45 D 1 D 3 0 , 55 D 1
Figure imgb0013

Et, de préférence, le diamètre D3 du décrochement 21 est égal à la moitié, environ, du diamètre D1 hors tout du fond 3 : D 3 0 , 5 D 1

Figure imgb0014
And, preferably, the diameter D3 of the recess 21 is equal to about half of the overall diameter D1 of the bottom 3: D 3 0 , 5 D 1
Figure imgb0014

Le décrochement 21 s'étend de manière continue autour du dôme 5, et chevauche tant les pieds 7 (y compris les flancs 16) que les vallées 12. The recess 21 extends continuously around the dome 5, and overlaps both the feet 7 (including the flanks 16 ) and the valleys 12.

Par la présence du décrochement 21 axial, la région 19 centrale se trouve légèrement surélevée par rapport à la région 20 périphérique, en étant décalée vers l'intérieur du récipient 1. By the presence of recess 21, axial, the central region 19 is slightly raised relative to the peripheral region 20, being offset towards the interior of the container 1.

La hauteur H4 du décrochement 21 est sensiblement constante sur son contour, en étant avantageusement comprise entre 0,5 mm et 1,5 mm. Pour un récipient d'une capacité de 0,5 litre (ce qui correspond à l'exemple illustré), la hauteur H4 du décrochement est d'environ 1 mm.The height H4 of the recess 21 is substantially constant over its contour, advantageously being between 0.5 mm and 1.5 mm. For a container with a capacity of 0.5 liter (which corresponds to the example shown), the height H4 of the recess is about 1 mm.

Le décrochement 21 a pour fonction de maintenir la stabilité du récipient 1 dans des conditions de pression relativement élevée (comprise entre 1 bar et 2,5 bars), en s'opposant au retournement du fond 3 et en contribuant, sous la pression interne du récipient, à élargir le plan 10 de pose, ce qui accroît la stabilité du récipient 1. The recess 21 serves to maintain the stability of the container 1 under relatively high pressure conditions (between 1 bar and 2.5 bars), by opposing the inversion of the bottom 3 and by contributing, under the internal pressure of the container, expand the plan 10 installation, which increases the stability of the container 1.

On note A3 l'ouverture angulaire, mesurée autour de l'axe X du récipient 1 dans un plan perpendiculaire à l'axe X, de la partie sommitale des pieds 9, c'est-à-dire sans compter les flancs 16, et A4 l'ouverture angulaire définie entre les parties sommitales de deux pieds 7 consécutifs, c'est-à-dire de la portion du fond 3 incluant une vallée 12 et les flancs 16 qui la bordent (cf. figure 4). Selon un mode préféré de réalisation, les ouvertures A3, A4 angulaires sont sensiblement identiques (des variations de quelques degrés peuvent exister) : A 3 A 4

Figure imgb0015
A3 denotes the angular aperture, measured around the axis X of the container 1 in a plane perpendicular to the axis X, of the part top of the feet 9, that is to say without counting the flanks 16, and A4 the angular aperture defined between the top parts of two consecutive feet 7 , that is to say the portion of the bottom 3 including a valley 12 and flanks 16 which border it (cf. figure 4 ). According to a preferred embodiment, the angular openings A3, A4 are substantially identical (variations of a few degrees may exist): AT 3 AT 4
Figure imgb0015

Il en résulte, en combinaison avec les valeurs, indiquées plus haut, des ouvertures A1, A2 angulaires définies transversalement entre les flancs 16, un bon compromis entre les performances mécaniques du fond 3 (c'est-à-dire la capacité de celui-ci à résister aux déformations et, lorsque celles-ci surviennent, à les subir de manière contrôlée) et sa soufflabilité (c'est-à-dire la capacité du fond 3 à être correctement formé par soufflage).As a result, in combination with the values indicated above, angular openings A1, A2 defined transversely between the flanks 16, a good compromise between the mechanical performance of the bottom 3 (that is to say the capacity of the latter). ci to resist the deformations and, when they occur, to undergo them in a controlled manner) and its blowing (that is to say the capacity of the bottom 3 to be properly formed by blowing).

La valeur des ouvertures A3, A4 angulaires dépend dès lors du nombre de pieds 7 (ou du nombre de vallées 12, égal au nombre de pieds). Plus précisément, si l'on note N le nombre de pieds, alors les ouvertures A3 et A4, mesurées en degrés, sont calculéees comme suit : A 3 A 4 360 ° 2 N

Figure imgb0016
The value of the openings A3, angular A4 therefore depends on the number of feet 7 (or the number of valleys 12, equal to the number of feet). More precisely, if N is the number of feet, then the openings A3 and A4, measured in degrees, are calculated as follows: AT 3 AT 4 360 ° 2 NOT
Figure imgb0016

Ainsi, lorsque le fond comprend cinq pieds 7, comme dans le cas illustré, les ouvertures A3, A4 angulaires sont d'environ 36°.Thus, when the bottom comprises five feet 7, as in the illustrated case, the openings A3, A4 angular are about 36 °.

Par ailleurs, comme on le voit bien sur les figures 3 et 5, les sommets 9 des pieds sont arrondis, et présentent, dans un plan radial, un rayon R3 qui est compris entre 8% et 12% du diamètre D1 hors tout du fond 3 : 0 , 08 D 1 R 3 0 , 12 D 1

Figure imgb0017
Moreover, as can be seen from the figures 3 and 5 , the vertices 9 of the feet are rounded, and have, in a radial plane, a radius R3 which is between 8% and 12% of the overall diameter D1 of the bottom 3: 0 , 08 D 1 R 3 0 , 12 D 1
Figure imgb0017

Selon un mode préféré de réalisation, le rayon R3 du sommet 9 des pieds 7 est égal environ au dixième du diamètre D1 hors tout du fond 3 : R 3 0 , 1 D 1

Figure imgb0018
According to a preferred embodiment, the radius R3 of the vertex 9 of the feet 7 is equal to about one-tenth of the diameter D1 of the bottom 3: R 3 0 , 1 D 1
Figure imgb0018

Ce dimensionnement permet de garantir une bonne soufflabilité du fond 3 tout en lui conférant une bonne stabilité.This dimensioning ensures a good blowing bottom 3 while giving it good stability.

Chaque pied 7 peut se raccorder au corps 2 par une face plane. Cependant, selon un mode préféré de réalisation illustré sur la figure 5, chaque pied 7 se raccorde au corps 2 par une face courbe, ayant un rayon R4 compris entre 1/3 et la moitié du diamètre D1 hors tout du fond 3 : D 1 3 R 4 D 1 2

Figure imgb0019
Each foot 7 can be connected to the body 2 by a flat face. However, according to a preferred embodiment illustrated on the figure 5 each foot 7 is connected to the body 2 by a curved face, having a radius R4 between 1/3 and half of the diameter D1 overall of the bottom 3 : D 1 3 R 4 D 1 2
Figure imgb0019

Selon un mode préféré de réalisation, le rayon R4 de la face de raccordement des pieds 7 au corps 2 est de l'ordre de 40% du diamètre D1 hors tout du fond 3 : R 4 0 , 4 D 1

Figure imgb0020
According to a preferred embodiment, the radius R4 of the connecting face of the feet 7 to the body 2 is of the order of 40% of the diameter D1 overall of the bottom 3: R 4 0 , 4 D 1
Figure imgb0020

Ce rapport dimensionnel contribue à la bonne soufflabilité du fond 3, sans nuire à sa stabilité.This dimensional ratio contributes to the good blowing of the bottom 3, without impairing its stability.

En outre, selon un mode de réalisation avantageux illustré sur les dessins, chaque pied 7 est muni d'une rainure 22 formée en creux, qui s'étend radialement en chevauchant le sommet 9 (et donc le plan 10 de pose).In addition, according to an advantageous embodiment illustrated in the drawings, each foot 7 is provided with a groove 22 formed in the hollow, which extends radially overlapping the top 9 (and therefore the plane 10 setting).

Les rainures 22 ont pour fonction de rigidifier le fond 3. Sous l'effet des contraintes mécaniques exercées sur le récipient 1 (notamment sous l'effet de la pression régnant dans celui-ci), les rainures 22 ont tendance à fluer en se dilatant et en s'aplatissant, ce qui provoque un élargissement des pieds 7 à leur sommet 9 et confère aux flancs 16 une certaine verticalité qui s'oppose à l'affaissement global du fond 3. The grooves 22 have the function of stiffening the bottom 3. Under the effect of the mechanical stresses exerted on the container 1 (in particular under the effect of the pressure prevailing therein), the grooves 22 have a tendency to flow when they expand. and flattening, which causes a widening of the feet 7 at their apex 9 and gives the flanks 16 a certain verticality which opposes the overall subsidence of the bottom 3.

Comme on le voit sur les figures 2, 3 et 4, chaque rainure 22 présente, du côté de sa jonction avec le corps 2, une zone 23 terminale élargie qui favorise la soufflabilité et limite le risque d'apparition de plis lors de la mise sous pression.As we see on the figures 2 , 3 and 4 , each groove 22 has, on the side of its junction with the body 2, an enlarged end zone 23 which promotes the blowing and limits the risk of appearance of wrinkles during pressurization.

Enfin, comme on le voit sur les figures 2, 3, 4 et 7, chaque pied 7 comprend des facettes 24 qui jouxtent latéralement (c'est-à-dire transversalement par rapport à une direction radiale) les sommets 9 de chaque pied.Finally, as we see on figures 2 , 3 , 4 and 7 each foot 7 comprises facets 24 which adjoin laterally (that is to say transversely to a radial direction) the vertices 9 of each foot.

Selon un exemple de réalisation illustré sur les figures, chaque pied 7 est pourvu d'une paire de facettes 24. Ces facettes 24, de contour sensiblement circulaire ou ovale, permettent d'économiser la quantité de matière requise pour former le fond 3 tout en rigidifiant les pieds 7 et donc le fond 3).According to an exemplary embodiment illustrated in the figures, each foot 7 is provided with a pair of facets 24. These facets 24, of substantially circular or oval contour, make it possible to save the quantity of material required to form the bottom 3 while stiffening the feet 7 and thus the bottom 3 ).

Claims (10)

  1. Container (1) made of plastic material and comprising a body (2) and a petaloid base (3) having a periphery via which it is connected to the body (2), the base (3) comprising a base wall (4) that is generally convex towards the exterior of the container (1) and whence project feet (7) which are formed by excrescences any two of which being separated by portions of the base wall (4) forming recessed valleys (12) that extend radially to the periphery (8) of the base (3), characterized in that the base (3) further comprises, in each valley (12) and close to the periphery (8) of the base (3), at least one corrugation (17, 18) which extends transversely with respect to the direction of radial extent of the valley (12).
  2. Container (1) according to Claim 1, characterized in that the corrugation (17, 18) extends from one edge of the valley (12) to the other.
  3. Container (1) according to Claim 1 or Claim 2, characterized in that the corrugation (17, 18) has a central recess which, in radial section, is in the form of an arc of a circle that is concave towards the exterior of the container, and connecting fillets which bound the central recess and which, in radial section, are in the form of an arc of a circle that is concave towards the interior of the container.
  4. Container (1) according to one of the preceding claims, characterized in that the corrugation (17, 18) has a depth of between 0.8 mm and 1.5 mm.
  5. Container (1) according to one of the preceding claims, characterized in that the base (3) comprises at least two adjacent corrugations (17, 18), to wit a main corrugation (17) and at least one secondary corrugation (18) that is removed from the main corrugation (17) towards the centre of the base (3).
  6. Container (1) according to Claim 5, characterized in that the length of the secondary corrugation (18), measured transversely, is less than that of the main corrugation (17).
  7. Container (1) according to one of the preceding claims, characterized in that, the base (3) having an overall diameter D1, the feet (7) define a resting plane (10) of diameter D2, such that: 0.667 D 1 D 2 0.72 D 1
    Figure imgb0025
  8. Container (1) according to one of the preceding claims, characterized in that the base (3) has an overall diameter D1 and a total height H1, such that: 0.25 D 1 H 1 0.28 D 1
    Figure imgb0026
  9. Container (1) according to one of the preceding claims, characterized in that the base (3) has a central region (19) and a peripheral region (20) that are concentric and are separated by a continuous shoulder (21) which straddles the feet (7) and the valleys (12).
  10. Container (1) according to one of the preceding claims, characterized in that each foot (7) is provided with a groove (22) which extends axially and straddles an apex (9) of the foot (7).
EP16151029.2A 2015-02-23 2016-01-13 Container provided with a mini petaloid bottom with transverse corrugations Active EP3059175B1 (en)

Applications Claiming Priority (1)

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FR1551510A FR3032946B1 (en) 2015-02-23 2015-02-23 CONTAINER HAVING A MINI PETALOID BOTTOM WITH TRANSVERSE RODS

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JP2018034828A (en) * 2016-08-30 2018-03-08 サントリーホールディングス株式会社 Thin-walled plastic bottle
FR3074482B1 (en) 2017-12-04 2019-10-18 Sidel Participations CONTAINER WITH PETALOID BACKGROUND
JP2021506681A (en) * 2017-12-15 2021-02-22 ソシエテ・デ・プロデュイ・ネスレ・エス・アー Bottles, methods of manufacture thereof, and use of FDCA and diol monomers in such bottles.
JP2021506682A (en) 2017-12-15 2021-02-22 ソシエテ・デ・プロデュイ・ネスレ・エス・アー Bottles, methods of manufacture thereof, and use of FDCA and diol monomers in such bottles.
WO2019210119A1 (en) * 2018-04-26 2019-10-31 Graham Packaging Company, L.P. Pressurized refill container resistant to standing ring cracking
IT201800005338A1 (en) * 2018-05-14 2019-11-14 CONTAINER IN THERMOPLASTIC MATERIAL
CN110155452A (en) * 2019-06-18 2019-08-23 广东星联精密机械有限公司 A kind of predeformation reinforcement container bottom
DE102019119984A1 (en) * 2019-07-24 2021-01-28 Krones Ag Plastic container with drawstring geometry at the bottom
JP7370248B2 (en) * 2019-12-27 2023-10-27 株式会社吉野工業所 Bottle
AU2021202920A1 (en) * 2020-05-08 2021-11-25 Orora Packaging Australia Pty Ltd A bottle, and an insert and a mould for making the bottle
US20230166882A1 (en) * 2021-11-30 2023-06-01 Pepsico, Inc. Flexible base for aseptic-fill bottles

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FR2932458B1 (en) * 2008-06-13 2010-08-20 Sidel Participations CONTAINER, IN PARTICULAR BOTTLE, IN THERMOPLASTIC MATERIAL EQUIPPED WITH A REINFORCED BACKGROUND
FR2959214B1 (en) * 2010-04-21 2012-06-29 Sidel Participations REINFORCED PETALOID CONTAINER BASE
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CN105905387B (en) 2019-06-14
US20160244197A1 (en) 2016-08-25
EP3059175A1 (en) 2016-08-24
CN105905387A (en) 2016-08-31
MX2016001316A (en) 2016-08-22
FR3032946B1 (en) 2017-02-10
US9745095B2 (en) 2017-08-29
FR3032946A1 (en) 2016-08-26
MX369814B (en) 2019-11-22

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