IPC분류정보
국가/구분 |
United States(US) Patent
등록
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국제특허분류(IPC7판) |
|
출원번호 |
US-0339969
(1989-04-17)
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발명자
/ 주소 |
- Hsu Joseph C. (Neenah WI) Guckenberger Anthony C. (Appleton WI)
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출원인 / 주소 |
- American National Can Company (Chicago IL 02)
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인용정보 |
피인용 횟수 :
26 인용 특허 :
11 |
초록
▼
The invention discloses a multiple layer packaging film, packages made therefrom and a method of opening the packages. The invention provides inseparable seal strength and in some cases hermetic seals, in combination with peelable ply separation opening for access to the contents of the package, whi
The invention discloses a multiple layer packaging film, packages made therefrom and a method of opening the packages. The invention provides inseparable seal strength and in some cases hermetic seals, in combination with peelable ply separation opening for access to the contents of the package, while at the same time providing excellent barriers to transmission of oxygen and moisture. Certain embodiments provide for improved abuse resistance, excellent graphics, and other improvements. The method of opening the package depends on separating opposing ones of the package sidewalls, forcing the opening tear to be propagated partially through the film to a peelable layer interface, with subsequent ply separation along the interface to effect completion of opening of the package.
대표청구항
▼
A closed and sealed package made with packaging materials including a multiple layer packaging sheet material having a plurality of layers bonded to each other at respective layer interfaces, defining a thickness of said sheet material, said sheet material including a first seal layer on a first sur
A closed and sealed package made with packaging materials including a multiple layer packaging sheet material having a plurality of layers bonded to each other at respective layer interfaces, defining a thickness of said sheet material, said sheet material including a first seal layer on a first surface thereof disposed on the interior of said package, said first seal layer being bonded to a substrate comprising a second outer surface disposed toward the exterior of said package, said package having been closed by seals forming a closure between surface layers forming a substantial portion of the interior surface of said package, said seals comprising inseparable seals between first and second surface seal layers of corresponding first and second opposing packaging sheet materials at an interface therebetween, whereby said first and second seal layers are so fused together that said interface therebetween ceases to exist as an interface, at least one of said opposing first and second sheet materials comprising said multiple layer sheet material, said inseparable seals being sufficiently strong that no amount of force is effective to separate material comprising said first and second surface seal layers of said opposing packaging sheet materials into their prior configuration with separation preferentially taking place along the original seal interface, said package being adapted to be opened, and thereby to enable gaseous communication between the interior of said package and a surrounding gaseous environment, said opening comprising a combination of tearing through said first seal layer, and thus partially through said thickness of said sheet material, but not to said outer surface, followed by ply separation peeling at one of said interfaces within the interior of said sheet material between two adjoining layers, and wherein the opening of said package to enable gaseous communication between the interior of said package and the surrounding environment is accomplished by propagation of said ply separation peeling outwardly to an edge of said sheet material on the outside of said package. A closed and sealed package made with packaging materials including a multiple layer packaging sheet material having a plurality of unoriented layers bonded to each other at respective layer interfaces, and including a first seal layer on one surface thereof disposed on the interior of said package, said first seal layer being bonded to a substrate comprising a second outer surface disposed toward the exterior of said package, said package having been closed by seals between surface layers forming a substantial portion of the interior surface of said package, said seals comprising inseparable seals such that said package cannot be opened by ply separation of said seals, said package being adapted to be opened, and thereby to enable gaseous communication between the interior of said package and the surrounding environment, said opening comprising a combination of tearing through said first seal layer, and thus partially through the thickness of said sheet material, but not to said outer surface, followed by ply separation peeling at one of said interfaces within the interior of said sheet material between two adjoining layers, and wherein the opening of said package to enable gaseous communication between the interior of said package and the surrounding environment is accomplished by propagation of said ply separation peeling outwardly to an edge of said sheet material on the outside of said package, said multiple layer packaging sheet material having an interface between two of said multiple layers, said interface having a peel strength of 50 to 400 grams per inch width; the required forces being individually less to tear from an inner surface of said package outwardly partially through said sheet material to said interface and to peel apart the layers at said interface, with said peel progressing to an edge of said sheet material, to thereby open said package, than (i) the force required to peel apart said seals between said packaging surface layers or (ii) the force required to tear from an inner surface of said package partially through said sheet material to said interface, peel along said interface to a point between said corresponding seal and an edge of said sheet material, and tear back through said sheet material to a surface outside the seal area of said package and corresponding to continuation of said inner surface.
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