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HK1217679B - Packaging assembly including a sealing system - Google Patents

Packaging assembly including a sealing system Download PDF

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Publication number
HK1217679B
HK1217679B HK16105826.1A HK16105826A HK1217679B HK 1217679 B HK1217679 B HK 1217679B HK 16105826 A HK16105826 A HK 16105826A HK 1217679 B HK1217679 B HK 1217679B
Authority
HK
Hong Kong
Prior art keywords
protrusion
groove
cap
container body
packaging assembly
Prior art date
Application number
HK16105826.1A
Other languages
German (de)
French (fr)
Chinese (zh)
Other versions
HK1217679A1 (en
Inventor
Jonathan Freedman
Donald Lee HUBER
Michael Bucholtz
Randall Christopher LECROY
Original Assignee
Csp Technologies, Inc.
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 Csp Technologies, Inc. filed Critical Csp Technologies, Inc.
Priority claimed from PCT/US2014/012425 external-priority patent/WO2014116622A1/en
Publication of HK1217679A1 publication Critical patent/HK1217679A1/en
Publication of HK1217679B publication Critical patent/HK1217679B/en

Links

Description

FIELD OF INVENTION
The invention is directed to a sealing system for packaging, and in particular to sealing system capable of independently creating a seal or acting in conjunction with another seal to enhance the sealing property of both seals, in such packaging.
SUMMARY
The present invention relates to a packaging assembly including a container body defining an interior for housing a product and an opening leading to the interior. The assembly further includes a cap that moves with respect to the container body to move the assembly between a closed position in which the cap covers the opening, and an opened position in which the opening is exposed. A first seal is defined between the container body and the cap. The first seal includes a protrusion formed on one of the container body about the opening or the cap, and a groove formed on the other of the container body about the opening or the cap. The protrusion is received by the groove when the assembly is in the closed position, such that contact is maintained in a sealing relationship around the opening between the groove and the protrusion.
US2008/0035658 discloses such a packaging assembly, which has the technical features recited in the preamble of appended claim 1.
According to the invention, an improved packaging assembly is provided, in accordance to claim 1.
BRIEF DESCRIPTION OF THE DRAWINGS
  • FIG. 1 is a perspective view of a first packaging assembly including some features of the present invention, in an opened position;
  • FIG. 2 is a perspective view of the packaging assembly of FIG. 1, in a closed position;
  • FIG. 3 is a perspective view of a second packaging assembly including a sealing system including some features of the present invention, in an opened position;
  • FIG. 4 is a perspective view of the packaging assembly of FIG. 3, in a closed position;
  • FIG. 5 is a perspective view of a third packaging assembly including some features of the present invention, in an opened position;
  • FIG. 6 is a perspective view of the packaging assembly of FIG. 5, in a closed position;
  • FIG. 7 is a perspective view of a fourth packaging assembly including some features of the present invention, in an opened position; and
  • FIG. 8 is a perspective view of the packaging assembly of FIG. 7, in a closed position;
  • FIG. 9 is a cross sectional view of a packaging assembly including a sealing system having some features of the present invention, in an opened position;
  • FIG. 10 is an enlarged detail of FIG. 9;
  • FIG. 11 is a cross sectional view of the packaging assembly of FIG. 9, in a closed position;
  • FIG. 12 is an enlarged detail of FIG. 11;
  • FIG. 13 is a cross section of a portion of a packaging assembly showing another embodiment of a sealing system having some features of the present invention;
  • FIG. 13A is an enlarged detail of FIG. 13;
  • FIG. 14 is a cross section of a portion of a packaging assembly showing another embodiment of a sealing system, in accordance with the present invention.
  • FIG. 15 is a cross section of a portion of a packaging assembly showing another embodiment of a sealing system having some features of the present invention; and
  • FIG. 16 is a cross section of a portion of a packaging assembly showing another embodiment of a sealing system, not covered by the present invention.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
Certain terminology is used in the foregoing description for convenience and is not intended to be limiting. Words such as "front," "back," "top," and "bottom" designate directions in the drawings to which reference is made. This terminology includes the words specifically noted above, derivatives thereof, and words of similar import. Additionally, the words "a" and "one" are defined as including one or more of the referenced item unless specifically noted. The phrase "at least one of" followed by a list of two or more items, such as "A, B or C," means any individual one of A, B or C, as well as any combination thereof.
FIGS. 1-8 show examples of packaging assemblies 10A-D that could include the sealing system(s) of the present invention. The packaging assemblies 10A-D shown are rigid packaging assemblies, and in particular, vials that can house, for example, pharmaceutical products, confections, other food items, or any other type of products in which a substantially moisture-tight packaging environment is desirable. Each of the assemblies shown includes a container body 12A-12D formed of a base 14A-14D and a sidewall 16A-16D extending upwardly therefrom. The base 14A-D and sidewall 16A-D together define a container interior 18A-D for housing products therein. An opening 20A-D leading to the interior 18A-D is defined about a top edge of the sidewall 16A-D. A cap 22A-D is removably affixed over the opening 20A-D, to move the assembly 10A-D between an opened position, as shown in FIGS 1,3,5 and 7, and a closed position, as shown in FIGS. 2, 4, 6 and 8. The caps 22A-D each include a top wall 30A-D and downwardly extending skirt 32A-D. In the illustrated embodiments, the caps 22 are pivotably affixed to the container bodies 12A-D by hinges 24A-D, such that the caps 22A-D pivot between the opened and closed positions. In each of the illustrated embodiments, the hinges 24A-D extend between bottom edges of the caps 22A-D, and rims 26A-D that extend outwardly from container bodies 12A-D at upper regions thereof. In both of the assemblies show in FIGS. 1-4, a lip 28A, 20B extends upwardly from the rim 26A, 26B. It should be understood that the sealing system(s) of the present invention could be applied to various packaging assemblies, including those shown and described above, as well as those disclosed in US 2011/0127269 , US D631,168 , US D599,032 , US D644,336 , US D644,739 , US D644,740 , US D644,337 and US D649,659 as well as other types of packaging assemblies, and suitable assemblies would be recognizable to a person of ordinary skill in the art.
A sealing system 40 for use with any of the packaging assemblies described above is shown in FIGS. 9-12. As shown, this embodiment of the sealing system 40 includes an annular protrusion 42 that extends downward from a bottom edge of the skirt 32, and an annular groove 44 defined in an upper surface of the rim 26. In another embodiment, a protrusion such as that shown in FIGS. 9-12 could be formed in the upper surface of the rim 26, and an annular groove 44, such as that shown in FIGS. 9-12, could be formed in the bottom edge of the skirt 32. When the container is in the closed position, as shown in FIGS. 11 and 12, the protrusion 42 is housed within the groove 44 to form a seal between the cap 22 and the container body 12. The protrusion 42 may be formed of a rigid material, for example, the same material as that of the remainder of the assembly 10, which could be, for example, a rigid plastic material such as polypropylene. In such an embodiment, the entire assembly 10 could optionally be molded as a single, integral unit.
The protrusion 42 has an inner radial side 46 and an outer radial side 48. Similarly, the groove 44 has an inner radial side 50 and an outer radial side 52. As can be best seen in FIG. 12, the protrusion 42 has a smaller radial thickness than that of the groove 44. As a result, the protrusion 42 and groove 44 make contact and form a seal, only at the inner radial sides 46, 50 or outer radial sides 48, 52 thereof. This helps to compensate for any minor dimensional differences between the cap 22 and the rim 26 of the vial. This also facilitates alignment of the cap 22 and the container body 12 when in the closed position, such that their respective axes X1, X2, align to form a single assembly axis X3, when in the closed position. In the illustrated embodiment, the protrusion 42 and groove 44 contact each other along their outer radial sides 48, 52, though it should be understood that in some embodiments they will contact each other along their inner radial sides 46, 50.
In addition to creating a seal at the area of contact, the configuration shown, in which the protrusion 42 and groove 44 contact along their outer radial sides 48, 52, results in the skirt 32 of the cap 22 being urged radially inward, by way of the radially inward force applied to the protrusion 42 by the radially outer side 42 of groove 44. This helps maintain contact between the inner surface 54 of the skirt 32 and the outer surface 56 of groove 44. This can be helpful in embodiments in which an additional seal 60 is created between the lip 28 and the skirt 32. In the embodiment shown, the assembly includes a first seal 40 or sealing system 40, formed between the protrusion 42 and the groove 44, and a second seal 60 formed between the lip 28 and the skirt 32, with it being understood that the terms "first" and "second" are assigned for distinction and are not necessarily indicative of the order of formation, strength, importance, or significance of the seals. In the illustrated embodiment of FIGS. 9-12, the inner surface of the skirt 54 defines an annular channel 62, and the outer surface 56 of the lip 28 defines an annular bead 64 that engages the annular channel 62, forming the second seal 60 therebetween. Other secondary seal configurations could be used in conjunction with the first seal 40 described above. For example, any of the sealing configurations described in US 7,213,720 or US 7,537,137 , such as a lip seal configuration, or a sealing configuration such as that described below with reference to FIG. 14 could be employed.
A second embodiment of a first seal 140 is shown in FIG. 13. In this embodiment, the protrusion 142 takes on a substantially inverted "T" shape, though the bottom surface may be rounded to match the inner surface of the groove 144. The "T" shape of the protrusion 142 is formed by a single vertical member 170, and inner and outer radial prongs 172, 174. In this embodiment, the protrusion 142 may be formed of a flexible material, such as an elastomeric material, to permit flexing and bending of the prongs 172, 174 during engagement with the groove 144. The flexible material could be different from the material forming the remainder of the assembly, in which case the protrusion 142 could be joined with the skirt 32 by way of adhesive, mechanical fasteners, or formed integrally with the skirt 132 by a two-shot molding process. This embodiment of the first seal 140 functions similarly to that of FIGS. 9-12, with one exception being the fact that, in the embodiment shown, the protrusion 142 and groove 144 engage on both their inner 146, 150 and outer radial sides 148, 152, i.e., both prongs 172, 174 contact the surface of the groove 144, and in particular, may be sufficiently flexible so as to conform to the shape of the groove 144. In another embodiment the protrusion 142 and groove 144 could engage only on their respective inner radial sides 146, 150 or outer radial sides 148, 152, resulting in either the inner radial prong 172 or outer radial prong 174 engaging the groove 144. This embodiment of the first seal can also be employed with any of the second seals mentioned above with respect to the embodiment of FIGS. 9-12.
An embodiment of a first seal 240 according to the invention is shown in FIG. 14. In this embodiment, the protrusion 242 is similar to that of FIG. 13, but includes only a single, radially inwardly extending prong 272. In this embodiment, the protrusion could be formed of a flexible material, such as an elastomeric material, in a similar manner to those described with respect to FIG. 13. In this embodiment, the single prong 272 can engage the radially inner side 250 of groove 244 on the radially inner 246 side of the prong 272, as shown, resulting in the more flexible end portion 276 of the prong 272 contacting the groove 244. Alternatively, the single prong 272 could engage the radially outer side 252 of groove 244 on the radially outer side 248 of the prong 272, resulting in the somewhat less flexible portion thereof contacting the groove 244. This embodiment of the first seal can also be employed with any of the second seals mentioned above with respect to the embodiments of FIGS. 9-13.
A first seal 340 is shown in FIG. 15. This embodiment of the first seal 340 is similar to that of FIGS. 9-12, with the exception of the fact that the protrusion 342 extends from an upper surface of the rim 326, and the groove 344 is defined in a bottom edge of the skirt 332. In this embodiment, the protrusion 342 and groove 344 contact on inner 346, 350 or outer radial sides 348, 352, as described above. Alternatively, the protrusion 342 and the groove 344 could contact on both the inner 346, 350 and outer radial sides 348, 352 thereof. The protrusion 342 and groove 344 in the embodiment shown each have a slightly greater axial length than those of the embodiment of FIGS. 9-12, but it should be understood that the dimensions could be increased or decreased as necessary for these parts to properly engage. The protrusion 342 could be formed of a flexible material, such as an elastomeric material, in a similar manner to those described above with respect to FIGS. 13 and 14. Likewise, the protrusion 342 could be formed of a rigid material, such as the same material of the remainder of the assembly, as described with respect to the embodiment of FIGS. 9-12. This embodiment of the first seal can also be employed with any of the second seals mentioned above with respect to the embodiments of FIGS. 9-14.
An embodiment of a second seal 460 is shown in FIG. 16. In this embodiment, the second seal 460 is formed by engagement of the inner surface 454 of the skirt 432 and the outer surface 456 of the lip 428. The inner surface 454 defines a channel 462, and the outer surface defines a bead 464 that is received by the channel 462, similarly to the second seal 60 described above with respect to FIGS. 9-12. In this embodiment, the channel 462 includes an uppermost, substantially horizontal surface 480 that contacts an upper edge 482 of the bead 464. The bead upper edge 482 includes two radially spaced bumps, including an inner radial bump 484, and an outer radial bump 486. A divot 488 is formed between the two bumps 484,486. The bumps 484,486 are equal in axial height. This is preferable in the embodiment shown in which the channel surface 480 is horizontal or perpendicular to the axis X3 of the packaging assembly 410, but in other embodiments the channel surface could be angled or curved and the axial heights of the bumps altered accordingly. As shown, each bump 484, 486 contacts the horizontal surface 480 of the channel 462. This results in two radial sealing regions being defined between the channel 462 and the bead 464. Additionally, the inclusion of two bumps helps to axially orient the cap 422 on the container body 12. This embodiment of the second seal 460 could be employed with any of the first seals described above, as well as with other seals suitable for use as a first seal and known in the art.
Any of the first seals described herein can be combined with any on the second seals described herein, or any other seal suitable for use as a second seal and know in the art. Likewise, any of the second seals described herein can be combined with any of the first seals described herein, or any other seal suitable for use as a first seal and known in the art.
While the preferred embodiments of the invention have been described in detail above, the invention is not limited to the specific embodiments described, which should be considered as merely exemplary.

Claims (10)

  1. A packaging assembly (10A-D), comprising:
    a container body (12A-D) defining an interior for housing a product and an opening leading to the interior;
    a cap (22A-D) that is moveable with respect to the container body (12A-D) so that the assembly is configured for a closed position in which the cap (22A-D) covers the opening, and an opened position in which the opening is exposed; and
    a seal (40) defined between the container body (12A-D) and the cap (22A-D), the seal (40) comprising a protrusion (42) formed on one of the container body (12A-D) about the opening or the cap (22A-D), and a groove (44) formed on the other of the container body (12A-D) about the opening or the cap (22A-D),
    wherein the protrusion (42) is received by the groove (44) when the assembly is in the closed position, such that contact is maintained in a sealing relationship around the opening between the groove (44) and the protrusion (42), wherein the groove (44) has a greater radial thickness than the protrusion (42), the groove (44) has an inner radial side and an outer radial side, and the protrusion (42) has an inner radial side and an outer radial side, and
    a) the inner radial side of the groove (44) contacts the inner radial side of the protrusion (42), but the outer radial side of the groove (44) does not contact the outer radial side of the protrusion (42); or
    b) the outer radial side of the groove (44) contacts the outer radial side of the protrusion (42), but the inner radial side of the groove (44) does not contact the inner radial side of the protrusion (42);
    characterized in that the protrusion (42) comprises at least one prong that extends radially inward and contacts a radially inner surface of the groove (44) when the assembly is in the closed position, wherein the at least one prong (272) is flexible and conforms to the shape of the groove (44), or the at least one prong comprises first and second prongs (172, 174) extending in opposite first and second directions, and the first and second prongs each maintain contact with the groove (44) when the assembly is in the closed position.
  2. The packaging assembly (10A-D) of claim 1, wherein the seal (40) is substantially moisture or air tight.
  3. The packaging assembly (10A-D) of claim 1 or 2, wherein the cap (22A-D) comprises a top wall and a skirt extending downwardly therefrom, and the protrusion (42) extends from a bottom edge of the skirt.
  4. The packaging assembly (10A-D) of any previous claim, wherein the container body (12A-D) comprises a base, a side wall extending upwardly from the base and together with the base defining the interior, and a rim extending radially outwardly from the sidewall.
  5. The packaging assembly (10A-D) of claim 4, further comprising a lip extending upwardly from the rim, the lip defining the opening, wherein the groove (44) is defined in the rim.
  6. The packaging assembly (10A-D) of any previous claims, wherein the protrusion (42) is formed on the cap (22A-D) and the groove (44) is formed on the container body (12A-D) about the opening or the protrusion (42) is formed on the container body (12A-D) about the opening, and the groove (44) is formed on the cap (22A-D), wherein the protrusion (42) has a substantially inverted "T" shape, wherein a first direction is a radially inward direction and a second direction is a radially outward direction, and wherein the protrusion (42) comprises at least one prong and the at least one prong comprises first and second prongs extending in opposite first and second directions.
  7. The packaging assembly (10A-D) of any previous claims, wherein the protrusion (42) is formed of a polymeric material or an elastomeric material.
  8. The packaging assembly (10A-D) of any previous claims, wherein the container body (12A-D) and cap (22A-D) are formed of rigid polymeric material, or the container body (12A-D), cap (22A-D), and protrusion (42) are molded together as a single, integral unit.
  9. The packaging assembly (10A-D) of claim 1, wherein the protrusion (42) is affixed to the cap (22A-D) by an adhesive, a mechanical fastener or is formed integrally with the cap (22A-D) by a two-shot molding process, and wherein the protrusion (42) is formed of a different material from the cap (22A-D).
  10. A packaging assembly (10A-D) of claim 1, additionally comprising an additional seal (60) defined between the container body (12A-D) and the cap (22A-D), wherein the seal comprises a channel and a bead.
HK16105826.1A 2013-01-23 2014-01-22 Packaging assembly including a sealing system HK1217679B (en)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
US201361755555P 2013-01-23 2013-01-23
US61/755,555 2013-01-23
PCT/US2014/012425 WO2014116622A1 (en) 2013-01-23 2014-01-22 Packaging sealing system and a packaging assembly including such a sealing system

Publications (2)

Publication Number Publication Date
HK1217679A1 HK1217679A1 (en) 2017-01-20
HK1217679B true HK1217679B (en) 2019-05-24

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