JP2015522442A - 可撓性容器のための可撓性材料 - Google Patents
可撓性容器のための可撓性材料 Download PDFInfo
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B31—MAKING ARTICLES OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER; WORKING PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
- B31B—MAKING CONTAINERS OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
- B31B70/00—Making flexible containers, e.g. envelopes or bags
- B31B70/008—Stiffening or reinforcing
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Abstract
Description
以下に示したような順序で配置された層を有する第1の積層を形成した。全皮膜厚さは約90マイクロメートルであった。PE層は、昇温溶離分別(TREF)により決定されたように、90%のLLDPE(ZN)と10%のLDPEとの配合物であった。
以下に示した順序で配置された層を有する第1の積層を形成した。全皮膜厚さは、約92マイクロメートルであった。PE層は、昇温溶離分別(TREF)により決定されたように、100%のLLDPE(ZN)であった。
以下に示した順序で配置した層を有する第1の積層を形成した。全皮膜厚さは約80マイクロメートルであった。PE層は、昇温溶離分別(TREF)により決定されたように、少量のLLDPE(ZN)を含み、大部分がLDPEであった。
以下に示した順序で配置された層を有する第2の積層を形成した。全皮膜厚さは約66マイクロメートルであった。
以下に示した順序で配置された層を有する第1の積層を形成した。全皮膜厚さは、約91.4マイクロメートルであった。接着剤の組成及び厚さは、所望の積層強度を達成するよう調整され得る。
以下に示す順序で配置された層を有する第2の積層を形成した。全皮膜厚さは、約91.4マイクロメートルであった。接着剤の組成及び厚さは、所望の積層強度を達成するように調整され得る。印刷層及び封止可能な層は、TREFにより、少量のLDPEを含み、主としてLLDPE(ZN)を有することが確認された。印刷層は、この層をコロナ処理することによって、印刷可能にさせた。コロナ処理はまた、この実施例の第2の積層が単一の封止可能な層のみを有すると考えられるように層の封止能力を低下させる。
以下に示す順序で配置された層を有する第2の積層を形成した。全皮膜厚さは、約66マイクロメートルであった。接着剤の組成及び厚さは、所望の積層強度を達成するよう調整され得る。
以下に示す順序で配置された層を有する第1の積層は、約115マイクロメートルの全積層厚さを有した。
Claims (15)
- 可撓性容器用の可撓性材料であって、第1及び第2の封止可能な層の間に配設された第1の気体バリア層を備える第1の積層を含む可撓性材料であり、前記第1及び第2の封止可能な層が、前記第1の積層の対向する外部層を画定し、
少なくとも1つのシールによって、前記第1の積層の少なくとも一部に結合する第2の積層で、前記第2の積層の外部層を画定している第3の封止可能な層を備える第2の積層と、第2の気体バリア層とを更に含み、
前記少なくとも1つのシールが、前記第3の封止可能な層の一部を前記第2の封止可能な層の少なくとも一部に結合させ、
前記少なくとも1つのシールが、約20N/m〜約10,000N/mのシール強度を有し、
前記第1の積層の前記層が、約2N/m〜約10,000N/mの各隣接する層の間の積層強度を有し、並びに
前記第2の積層の前記層が、約2N/m〜約10,000N/mの各隣接する層の間の積層強度を有する、可撓性材料。 - 前記第2及び第3の封止可能な層間の前記シールが、約20N/m〜約10,000N/mのシール強度を有する、請求項1に記載の可撓性材料。
- 前記第2及び第3の封止可能な層間の前記シールが、約85N/m〜約3500N/mのシール強度を有する、請求項1又は2のいずれか一項に記載の可撓性材料。
- 前記第2及び第3の封止可能な層間の前記シールが、約300N/m〜約1250N/mのシール強度を有する、請求項1〜3のいずれか一項に記載の可撓性材料。
- 前記第1の積層の前記層が、約4N/m〜約9,000N/mの各層の間の積層強度を有し、前記第2の積層の前記層が、約4N/m〜約9,000N/mの各層の間の積層強度を有する、請求項1〜4のいずれか一項に記載の可撓性材料。
- 前記第1の積層の前記層が、約17N/m〜約3150N/mの各層の間の積層強度を有し、前記第2の積層の前記層が、約17N/m〜約3150N/mの各層の間の積層強度を有する、請求項1〜5のいずれか一項に記載の可撓性材料。
- 前記第1の積層の前記層が、約34N/m〜約2450N/mの各層の間の積層強度を有し、前記第2の積層の前記層が、約34N/m〜約2450N/mの各層の間の積層強度を有する、請求項1〜6のいずれか一項に記載の可撓性材料。
- 前記第1の積層の前記層が、約60N/m〜約1200N/mの各層の間の積層強度を有し、前記第2の積層の前記層が、約60N/m〜約1200N/mの各層の間の積層強度を有する、請求項1〜7のいずれか一項に記載の可撓性材料。
- 前記可撓性材料が、27℃(300K)で測定された約0.0002W/cm℃〜約3W/cm℃(約0.02W/m・K〜約300W/m・K)の熱伝導率を有し、前記第1、第2、及び第3の封止可能な層が、それぞれ、約65℃〜約350℃の融解温度を有する、請求項1〜8のいずれか一項に記載の可撓性材料。
- 前記可撓性材料が、27℃(300K)で測定された約0.0005W/cm℃〜約0.06W/cm℃(約0.05W/m・K〜約6W/m・K)の熱伝導率を有し、前記第1、第2、及び第3の封止可能な層が、それぞれ、約100℃〜約260℃の融解温度を有する、請求項1〜9のいずれか一項に記載の可撓性材料。
- 前記可撓性材料が、27℃(300K)で測定された約0.001W/cm℃〜約0.01W/cm℃(約0.1W/m・K〜約1W/m・K)をの熱伝導率を有し、前記第1、第2、及び第3の封止可能な層が、それぞれ、約110℃〜約200℃の融解温度を有する、請求項1〜10のいずれか一項に記載の可撓性材料。
- 前記可撓性材料が、23℃で5MPaの応力を加えた状態で、一ヶ月にわたって測定されるとき、0.0%〜70%のクリープのクリープ抵抗を有する、請求項1〜11のいずれか一項に記載の可撓性材料。
- 前記可撓性材料が、23℃で5MPaの応力を加えた状態で、1.5年にわたって測定されるとき、0.0%〜20%のクリープのクリープ抵抗を有する、請求項1〜12のいずれか一項に記載の可撓性材料。
- 前記可撓性材料が、23℃で5MPaの応力を加えた状態で、2年にわたって測定されるとき、0.0%〜8%のクリープのクリープ抵抗を有する、請求項1〜13のいずれか一項に記載の可撓性材料。
- 前記第2の積層が、前記第1の積層とは異なる構成を有する、請求項1〜14のいずれか一項に記載の可撓性材料。
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