EP1380226B1 - Luftdichter behälter - Google Patents

Luftdichter behälter Download PDF

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Publication number
EP1380226B1
EP1380226B1 EP02718599A EP02718599A EP1380226B1 EP 1380226 B1 EP1380226 B1 EP 1380226B1 EP 02718599 A EP02718599 A EP 02718599A EP 02718599 A EP02718599 A EP 02718599A EP 1380226 B1 EP1380226 B1 EP 1380226B1
Authority
EP
European Patent Office
Prior art keywords
sealing
side sealing
annular sealing
annular
sealing surface
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.)
Expired - Lifetime
Application number
EP02718599A
Other languages
English (en)
French (fr)
Other versions
EP1380226A4 (de
EP1380226A1 (de
Inventor
Yukitomo Yuhara
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.)
Yoshida Industry Co Ltd
Original Assignee
Yoshida Industry Co Ltd
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 Yoshida Industry Co Ltd filed Critical Yoshida Industry Co Ltd
Publication of EP1380226A1 publication Critical patent/EP1380226A1/de
Publication of EP1380226A4 publication Critical patent/EP1380226A4/de
Application granted granted Critical
Publication of EP1380226B1 publication Critical patent/EP1380226B1/de
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Classifications

    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45DHAIRDRESSING OR SHAVING EQUIPMENT; EQUIPMENT FOR COSMETICS OR COSMETIC TREATMENTS, e.g. FOR MANICURING OR PEDICURING
    • A45D33/00Containers or accessories specially adapted for handling powdery toiletry or cosmetic substances
    • A45D33/006Vanity boxes or cases, compacts, i.e. containing a powder receptacle and a puff or applicator
    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45DHAIRDRESSING OR SHAVING EQUIPMENT; EQUIPMENT FOR COSMETICS OR COSMETIC TREATMENTS, e.g. FOR MANICURING OR PEDICURING
    • A45D2200/00Details not otherwise provided for in A45D
    • A45D2200/05Details of containers
    • A45D2200/051Airtight containers

Definitions

  • the present invention relates to a hermetically sealed container having a sealing mechanism that can be formed integrally with a container body and a lid body made of synthetic resin and is thus low in cost and has excellent productivity features, and that achieves high hermetic sealing capability while ensuring smooth opening and closing of the lid body.
  • a structure which ensures a hermetic seal for such containers is known to comprise, for example, an annular groove integrally formed in either a container body or a lid body, and an annular protrusion formed which is integrally with the other of the container body or the lid body and is inserted into the annular groove.
  • the inside surface of the groove and the surface of the protrusion which are formed integrally with the container body and the lid body formed of synthetic resin material and which are made to be in close contact with each other for a hermetic seal, are formed from synthetic resin material, it is difficult to bring the inside surface of the groove into close contact with the surface of the protrusion with no space between them, because of the rigidity of the synthetic resin material itself. Therefore, the hermetic seals of the above conventional art teachings are unsatisfactory in a case where high hermetic sealing capability is required, even though they may be satisfactory for cases where the extent of hermetic sealing capability required is not so large.
  • the dimensional settings between the inside surface of the groove and the surface of the protrusion could be adjusted so as to tighten the degree of contact.
  • this gives rise to a problem that the lid body can not be closed or the opening and closing of the lid becomes difficult.
  • the degree of contact is set loose in order to make it easy to manipulate the lid body, then this gives rise to a problem that a sufficient sealing capability cannot be obtained.
  • US-A-5875918 discloses a container and sealing closure therefor, includes a container body part having an access opening and includes a continuous peripheral wall surrounding the access opening, and a closure part.
  • the wall of the body part has a peripherally extending continuous sealing edge portion at its upper outer surface, the edge portion being coextensive with the wall.
  • the closure part has a resilient skirt portion.
  • the sealing edge portion of the wall of the container part has a sharp apex forming an included angle of substantially 90 degrees.
  • the skirt portion of the closure part is adapted to mate in spaced relation, with the peripheral wall of the container part and has an inner surface which extends obliquely with respect to the peripheral wall of the body part and which is adapted to engage the apex.
  • coengaging structural elements on the container body and closure parts holding the resilient skirt portion of the closure part forcibly against the apex as the closure part is advanced against the container body part to a sealing, closed position thereon.
  • the present invention has been made in view of the above problems, and it is an object thereof to provide a hermetically sealed container having a sealing mechanism that can be formed integrally with a container body and a lid body made of synthetic resin and is thus low in cost and has excellent productivity features, and that achieves high hermetic sealing capability while ensuring smooth opening and closing of the lid body.
  • a hermetically sealed container is a hermetically sealed container configured to hermetically seal an inside of a synthetic resin container body by inserting an annular sealing protrusion, which is provided integrally with either said container body or a synthetic resin lid body for opening and closing said container body, into an annular sealing groove provided integrally in the other of said two sections, said hermetically sealed container having a sealing mechanism comprising:
  • a hermetically sealed container is a hermetically sealed container configured to hermetically seal an inside of a synthetic resin container body by inserting an annular sealing protrusion, which is provided integrally with either said container body or a synthetic resin lid body for opening and closing said container body, into an annular sealing groove provided integrally in the other of said two sections, said hermetically sealed container having a sealing mechanism comprising:
  • a sealing mechanism can be formed integrally with the container body and the lid body made of synthetic resin, and thus the container is low in cost and has excellent productivity features. Further, the proximal side sealing surface is brought into frictional contact with the opening side sealing surface because of the high rigidity of the proximal side sealing surface, and the distal side sealing surface is resiliently pressed against the groove bottom side sealing surface, and therefore these two proximal side and distal side sealing surfaces can accomplish high hermetic sealing capability while ensuring smooth opening and closing of the lid body.
  • a gap which allows deformation of the proximal part of the annular sealing protrusion is formed between the proximal part of the annular sealing protrusion and either the inward peripheral wall surface or the outward peripheral wall surface that is provided with the groove bottom side sealing surface.
  • the gap can allow the expanding deformation of the proximal part of the annular sealing protrusion, whereby the distal side sealing surface and the groove bottom side sealing surface can be pressed against each other more firmly, and thus extremely high hermetic sealing capability can be ensured.
  • FIG. 1 through FIG. 4 show a portable cosmetic container 1, as an example of the hermetically sealed container, filled with a cosmetic substance C that includes a volatile component.
  • this cosmetic container 1 mainly comprises a synthetic resin container body 3 formed with a storage section 2 containing the cosmetic substance C that includes a volatile component , and a synthetic resin lid body 6 which is pivotally coupled to one end of the container body 3 by a hinge 4 so as to permit opening and closing of the container body 3, and which is disengageably engaged to the other end of the container body 3 by hook means 5 so as to retain the container body 3 in a closed condition.
  • the cosmetic container 1 of the present embodiment is configured so that annular sealing grooves 7, 7a are provided integrally in either one of the container body 3 or the lid body 6, that annular sealing protrusions 8, 8a are provided integrally on the other one of the container body 3 or the lid body 6, and that the storage section 2 is hermetically sealed by inserting the annular sealing protrusions 8, 8a into the annular sealing grooves 7, 7a.
  • the container has sealing mechanisms 17, 17a in which: an opening side sealing surface 11 is proximate an opening of the annular sealing groove provided on either the inward peripheral wall surface 9 or the outward peripheral wall surface 10 of the annular sealing groove 7, which are provided opposed to and spaced from each other; an opening side sealing surface 11a is provided on either the inward peripheral wall surface 9a or the outward peripheral wall surface 10a of the annular sealing groove 7a, which are provided opposed to and spaced from each other; each groove bottom side sealing surface 12, 12a is proximate a groove bottom of the annular sealing groove provided on the other ones of the peripheral wall surfaces at a different height from the opening side sealing surfaces in the direction of the height of the container body 3; each proximal side sealing surface 15, 15a and each distal side sealing surface 16, 16a is provided in the proximal parts 13, 13a and the distal parts 14, 14a of the annular sealing protrusions 8, 8a, respectively, in the direction of the height of the container body 3 in such a manner as to correspond to each opening side
  • a gap 18 which allows deformation of the proximal part 14 of the annular sealing protrusion 8 is provided between the proximal part 14 of the annular sealing protrusion 8 and either the inward peripheral wall surface 9 or the outward peripheral wall surface 10 that is provided with the groove bottom side sealing surface 12, and a gap 18a which allows deformation of the proximal part 14a of the annular sealing protrusion 8a is provided between the proximal part 14a of the annular sealing protrusion 8a and either the inward peripheral wall surface 9a or the outward peripheral wall surface 10a that is provided with the groove bottom side sealing surface 12a.
  • the annular sealing grooves 7, 7a are formed integrally in a peripheral side wall 19, which surrounds the storage section 2 of the container body 3, in the circumferential direction thereof.
  • the two annular sealing grooves 7, 7a of large and small diameter are disposed inside and outside, respectively, in the radial direction of the container body 3.
  • Each of the annular sealing grooves 7, 7a comprises the two peripheral wall surfaces, each of which being formed by recessing the peripheral side wall 19 considerably deeply in the direction of the height of the container body 3. These two peripheral wall surfaces are arranged opposed to and spaced from each other in the radial direction of the container body 3.
  • the ones that are disposed on the radially outer side of the container body 3 are the inward peripheral wall surfaces 9, 9a, which face toward the storage section 2, and conversely, the ones that are disposed on the side of the storage section 2 are the outward peripheral wall surfaces 10, 10a, which face toward the outer side of the container body 3.
  • the annular sealing protrusions 8, 8a which are inserted into the annular sealing grooves 7, 7a when the container body 3 is closed by the lid body 6, are integrally formed in the lid body 6 so that they surround the storage section 2 in the circumferential direction of the lid body 6.
  • the two annular sealing protrusions 8, 8a of small and large diameter are disposed next to each other inside and outside in the radial direction of the lid body 6 in a manner so as to correspond to the two annular sealing grooves 7, 7a.
  • Each of the annular sealing protrusions 8, 8a has two peripheral surfaces, each of which being formed by extend downward to a substantial extent toward the container body 3.
  • the proximal side of the inner peripheral surface of the annular sealing protrusion 8 is brought into contact with the outward peripheral wall surface 10 of the annular sealing groove 7 to form the proximal side sealing surface 15, and the proximal side of the outward peripheral wall surface corresponding to the proximal side sealing surface 15 becomes the opening side sealing surface 11.
  • the distal side of the outer peripheral surface of the annular sealing protrusion 8 is brought into contact with the inward peripheral wall surface 9 of the annular sealing groove 7 to form the distal side sealing surface 16, and the distal side of the inward peripheral wall surface corresponding to the distal side sealing surface 16 becomes the groove bottom side sealing surface 12.
  • the contact areas where these sealing surfaces 15, 16 contact the sealing surfaces 11, 12, may partly overlap each other, but are at least misaligned in the direction of the height of the container body 3.
  • the distal part 14 of the annular sealing protrusion 8 where the distal side sealing surface 16 is provided is formed to be flexibly deformable and of low rigidity so that the distal side sealing surface 16 is resiliently pressed against the groove bottom side sealing surface 12.
  • the distal part 14 of the annular sealing protrusion 8 is made rather soft by making the thickness of the distal part 14 thin, and thereby the groove bottom side sealing surface 12 contacts the distal part sealing surface 16 snugly with a substantial resilient force, whereby a hermetic seal is formed.
  • the proximal part 13 of the annular sealing protrusion 8 where the proximal side sealing surface 15 is disposed is formed to be of higher rigidity than the distal part 14 so that the proximal side sealing surface 15 frictionally contacts the opening side sealing surface 11.
  • the proximal part 13 of the annular sealing protrusion 8 is made rather hard by thickening the thickness of the proximal part 13, and thereby, when the annular sealing protrusion 8 is inserted into or pulled out of the annular sealing groove 7, the proximal side sealing surface 15 and the opening side sealing surface 11 move rubbing against each other, and after the insertion, they are placed in contact with each other with a considerably strong pressing force, whereby a hermetic seal can be ensured.
  • this gap 18 is formed by denting the inward peripheral wall surface 9 in the radially outward direction of the container body 3 above the groove bottom side sealing surface 12. Accordingly, even if the annular sealing protrusion 8 is deformed to jut out when the proximal side sealing surface 15 is forcibly pressed against the opening side sealing surface 11, the gap 18 is adapted to receive the deformation without obstructing the deformation.
  • the sealing mechanism 17a comprising the small diameter annular sealing groove 7a and annular sealing protrusion 8a is configured in the same manner as the sealing mechanism 17 comprising the large diameter annular sealing groove 7 and annular sealing protrusion 8 except that the positional relationships between the sealing parts and the sealing surfaces are reverse to each other in the radial direction of the container body 3.
  • proximal side sealing surface 15a is formed in the proximal side of the outer peripheral surface of the annular sealing protrusion 8a, and the opening side sealing surface 11a is formed in the opening side of the inward peripheral wall surface 9a, and the distal side sealing surface 16a is formed in the distal side of the inner peripheral surface of the annular sealing protrusion 8a, and the groove bottom side sealing surface 12a is formed in the groove bottom side of the outward peripheral wall surface 10a.
  • the gap 18a which allows deformation of the proximal part 13a of the annular sealing protrusion 8a is formed between the outward peripheral wall surface 10a and the proximal part 13a of the annular sealing protrusion 8a by denting the outward peripheral wall surface 10a in the radially inward direction of the container body 3 above the groove bottom side sealing surface 12a.
  • the open opening side ends of these annular sealing grooves 7, 7a, the groove bottom side end parts of the gaps 18, 18a, the distal side ends of the annular sealing protrusions 8, 8a, and the peripheries of the parts in which the thickness is changed are provided with taper surfaces 20 that guide the operations of inserting the annular sealing protrusions 8, 8a into and pulling these out of the annular sealing grooves 7, 7a.
  • the opening side sealing surfaces 11, 11a and the proximal side sealing surfaces 15, 15a start to slidably and frictionally contact with each other at the proximal sides of the annular sealing grooves 7, 7a, and the groove bottom side sealing surfaces 12, 12a and the distal side sealing surfaces 16, 16a come into contact with each other at the groove bottom sides of the annular sealing grooves 7, 7a.
  • the distal side sealing surfaces 16, 16a while undergoing flexural deformation, are further snugly inserted along the groove bottom side sealing surfaces 12, 12a, and the proximal side sealing surfaces 15, 15a are forcibly rubbed against the opening side sealing surfaces 11, 11a for deeper insertion.
  • the proximal side sealing surfaces 15, 15a are brought firmly into frictional contact with the opening side sealing surfaces 11, 11a because of its high rigidity, and the distal side sealing surfaces 16, 16a are resiliently pressed against the groove bottom side sealing surfaces 12, 12a, and therefore these two proximal side and distal side sealing parts can attain high hermetic sealing capability.
  • the proximal side sealing surfaces 15, 15a being firmly in frictional contact with the opening side sealing surfaces 11, 11a, the proximal parts 13, 13a of the annular sealing protrusions 8, 8a are deformed to jut out, and these jutting-out deformations are permitted by the gaps 18, 18a so that at the distal parts 14, 14a of the annular sealing protrusions 8, 8a, the distal side sealing surfaces 16, 16a are more forcibly pressed against the groove bottom side sealing surfaces 12, 12a, and thus, the distal side sealing surfaces 16, 16a are more forcefully pressed against the groove bottom side sealing surfaces 12, 12a. Therefore extremely high hermetic sealing capability can be ensured at both the proximal parts 13, 13a and the distal parts 14, 14a of the annular sealing protrusions 8, 8a.
  • the present preferred embodiment is constructed such that the positional relationships of the sealing parts and the sealing surfaces of the two large and small diameter sealing mechanisms 17, 17a are reverse to each other in the radial direction of the container body 3 with an annular wall part 21 between the two annular sealing grooves 7, 7a being interposed between the proximal side sealing surfaces 15, 15a of the two annular sealing protrusions 8, 8a.
  • Such construction in conjunction with the structure of the annular sealing protrusions 8, 8a which are disposed in proximity to each other, can double the pressure of the frictional contact applied on the opening side sealing surfaces 11, 11a by the proximal side sealing surfaces 15, 15a through reaction forces provided at the base ends 22, 22a of the annular sealing protrusions 8, 8a on the lid side, as compared to the construction where the positional relationships of the sealing parts and the sealing surfaces of the two sealing mechanisms 17, 17a are the same, and thus more improved hermetic sealing capability can be ensured.
  • the sealing mechanisms 17, 17a provided in the cosmetic container 1 in accordance with the preferred embodiment can be integrally formed with the synthetic resin container body 3 and the lid body 6 and are thus low in cost and have excellent productivity features, achieve high hermetic sealing capability while ensuring smooth opening and closing of the lid body 6.
  • FIG. 5 and FIG. 6 modified examples of the above preferred embodiment are shown.
  • Each is an example provided with one sealing mechanism 17, and the sealing mechanism 17 of FIG. 5 is devoid of the small diameter annular sealing protrusion 8a of the above-described preferred embodiment.
  • the opening side sealing surface 11 of the outward peripheral wall surface 10 of the sealing mechanism 17 of FIG. 5 is formed in the opposite inward peripheral wall surface 9, and the groove bottom side sealing surface 12 of the inward peripheral wall surface 9 is formed in the opposite outward peripheral wall surface 10, and in association with this structure, the above described annular wall part 21 is formed low in height to have a height substantially sufficient to form the groove bottom side sealing surface 12.
  • proximal parts 13, 13a and distal parts 14, 14a of the annular sealing protrusions 8, 8a their thicknesses and cross sectional areas as well were changed, but the rigidity of these proximal parts 13, 13a and distal parts 14, 14a can be set, of course, in other known methods such as by forming the proximal parts 13, 13a and the distal parts 14, 14a from synthetic resin materials of different rigidity, and by providing the distal parts 14, 14a with miniscule grooves which impart substantial flexibility.
  • the illustrated embodiment shows a case where the inward peripheral wall surfaces 9, 9a and the outward peripheral wall surfaces 10, 10a are formed substantially vertically in the direction of the height of the container body 3, but if necessary, the annular sealing grooves 7, 7a may be narrowed in the direction of the depth to have somewhat inclined sides so that the distance between these inward peripheral wall surfaces 9, 9a and outward peripheral wall surfaces 10, 10a are closer at a groove bottom side than at an opening side.
  • the gaps 18, 18a are formed by denting the inward peripheral wall surfaces 9, 9a and the outward peripheral wall surfaces 10, 10a in the radial direction of the container body 3, but if the proximal parts 13, 13a of the annular sealing protrusions 8, 8a can have the sufficient thicknesses, the gaps 18, 18a may be formed by thinning said thicknesses without denting these inward peripheral wall surfaces 9, 9a and so on.
  • annular sealing grooves 7, 7a are formed integrally in the container body 3, and the annular sealing protrusions 8, 8a are formed integrally on the lid body 6, but the annular sealing grooves 7, 7a may be formed integrally in the lid body 6, and the annular sealing protrusions 8, 8a may be formed integrally on the container body 3.
  • the hermetically sealed container according to an aspect of the present invention is provided with a sealing mechanism that can be formed integrally with the container body and the lid body made of synthetic resin and that is thus low in cost and has excellent productivity features, and in which the proximal side sealing surface is brought firmly into frictional contact with the opening side sealing surface because of the high rigidity of the proximal side sealing surface and the distal side sealing surface is resiliently pressed against the groove bottom side sealing surface and thus achieves high hermetic sealing capability in combination with the smooth opening and closing of the lid body thanks to these two proximal side and distal side sealing parts.
  • the jutting-out deformation of the proximal side of the annular sealing protrusion can be permitted by the gap so that the distal side sealing surface can be more forcefully pressed against the groove bottom side sealing surface, whereby the present invention can attain extremely high hermetic sealing capability.

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Claims (3)

  1. Hermetisch verschlossener Behälter, der dazu konfiguriert ist, das Innere eines Kunstharzbehälterkörpers (3) hermetisch einzuschließen, indem ein ringförmiger Dichtungsvorsprung (8, 8a), der integral mit entweder dem Behälterkörper oder einem Kunstharzdeckelkörper (6) zum Öffnen und Schließen des Behälterkörpers bereitgestellt ist, in eine ringförmige Dichtungsnut (7, 7a), die integral im anderen der zwei Körper bereitgestellt ist, gesteckt wird, wobei der hermetisch verschlossene Behälter einen Dichtungsmechanismus (17) hat, der Folgendes umfasst :
    eine öffnungsseitige Dichtungsfläche (11) proximal zu einer Öffnung der ringförmigen Dichtungsnut (7, 7a), die entweder an einer nach innen weisenden Umfangswandoberfläche (9) oder einer nach außen weisenden Umfangswandoberfläche (10) der ringförmigen Dichtungsnut bereitgestellt ist, wobei die nach außen weisende Oberfläche und die nach innen weisende Oberfläche einander gegenüber liegen und in einem Abstand voneinander angeordnet sind;
    eine nutgrundseitige Dichtungsfläche (12) proximal zu einem Nutgrund einer ringförmigen Dichtungsnut (7, 7a), die an der anderen der nach innen weisenden Oberfläche (9) oder der nach außen weisenden Oberfläche (10) bereitgestellt ist, wobei die nutgrundseitige Dichtungsfläche (12) in einer Höhenrichtung des Behälterkörpers in einem Abstand von der öffnungsseitigen Dichtungsfläche (11) angeordnet ist; und
    eine proximalseitige Dichtungsfläche (15) und eine distalseitige Dichtungsfläche (16), die an einem proximalen Teil (13) und einem distalen Teil (14) des ringförmigen Dichtungsvorsprungs (8, 8a) in der Richtung der Höhe des Behälterkörpers (3) bereitgestellt sind, wobei die proximalseitige Dichtungsfläche (15) und die distalseitige Dichtungsfläche (16) jeweils gegen die öffnungsseitige Dichtungsfläche (11) beziehungsweise die nutgrundseitige Dichtungsfläche (12) dichten,
    wobei der proximale Teil (13) des ringförmigen Dichtungsvorsprungs (8, 8a) so ausgebildet ist, dass er eine höhere Steifigkeit hat als der distale Teil (14), um zu bewirken, dass die proximalseitige Dichtungsfläche (15) reibend die öffnungsseitige Dichtungsfläche (11) berührt und der distale Teil (14) des ringförmigen Dichtungsvorsprungs (8, 8a) so ausgebildet ist, dass er flexibel verformbar ist, um zu bewirken, dass die distalseitige Dichtungsfläche (16) federnd gegen die nutgrundseitige Dichtungsfläche (12) gepresst wird.
  2. Hermetisch verschlossener Behälter nach Anspruch 1, wobei ein Spalt (18), der die Verformung des proximalen Teils (13) des ringförmigen Dichtungsvorsprungs (8, 8a) zulässt, zwischen dem proximalen Teil (13) des ringförmigen Dichtungsvorsprungs und entweder der nach innen weisenden Umfangswandoberfläche (9) oder der nach außen weisenden Umfangswandoberfläche (10), die mit der nutgrundseitigen Dichtungsfläche ausgestattet ist, gebildet ist.
  3. Hermetisch verschlossener Behälter nach Anspruch 1 oder 2, wobei mehrere der Dichtungsmechanismen (17) bereitgestellt sind.
EP02718599A 2001-04-18 2002-04-16 Luftdichter behälter Expired - Lifetime EP1380226B1 (de)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
JP2001119710 2001-04-18
JP2001119710A JP4781554B2 (ja) 2001-04-18 2001-04-18 気密容器
PCT/JP2002/003773 WO2002087383A1 (fr) 2001-04-18 2002-04-16 Contenant hermetique

Publications (3)

Publication Number Publication Date
EP1380226A1 EP1380226A1 (de) 2004-01-14
EP1380226A4 EP1380226A4 (de) 2004-07-14
EP1380226B1 true EP1380226B1 (de) 2007-02-14

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Application Number Title Priority Date Filing Date
EP02718599A Expired - Lifetime EP1380226B1 (de) 2001-04-18 2002-04-16 Luftdichter behälter

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Country Link
US (1) US20040124200A1 (de)
EP (1) EP1380226B1 (de)
JP (1) JP4781554B2 (de)
WO (1) WO2002087383A1 (de)

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EP1380226A4 (de) 2004-07-14
US20040124200A1 (en) 2004-07-01
JP2002306234A (ja) 2002-10-22
WO2002087383A1 (fr) 2002-11-07
JP4781554B2 (ja) 2011-09-28
EP1380226A1 (de) 2004-01-14

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