JP2016510293A - 収縮スリーブラベルを製造する方法およびその装置 - Google Patents
収縮スリーブラベルを製造する方法およびその装置 Download PDFInfo
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- JP2016510293A JP2016510293A JP2015557551A JP2015557551A JP2016510293A JP 2016510293 A JP2016510293 A JP 2016510293A JP 2015557551 A JP2015557551 A JP 2015557551A JP 2015557551 A JP2015557551 A JP 2015557551A JP 2016510293 A JP2016510293 A JP 2016510293A
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Images
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Abstract
Description
−左旋性(−)α−ピネン型と右旋性(+)α−ピネン型の両方のα−ピネン;
−左旋性(−)β−ピネン型と右旋性(+)β−ピネン型の両方のβ−ピネン;
−カンフェン;
−左旋性(−)リモネン型と右旋性(+)リモネン型の両方のリモネン;
−4−イソプロピルトルエン(p−シメンとして市場で公知);
またはこれらの混合物を含む群から選択される。
−COC(環状オレフィン共重合体);
−SBC(ポリスチレンブタジエン共重合体);
−PS(ポリスチレン);
−COP(環状オレフィンポリマー)
を含む群から選択される。
レーザ溶接装置11a;
赤外線溶接装置;
シールバー溶接装置11b;
超音波溶接装置
から成る群から選択される溶接手段によって構成することができる。
この方法は、
熱収縮フィルムのフィードリール3を巻き出すステップと;
少なくとも一の熱収縮フィルムバンド5をフィードリール3から分離させるステップと;
熱収縮フィルムバンド5を形成スピンドル4へ送出するステップと;
形成スピンドル4の周りに熱収縮フィルムバンド5を巻回してスリーブラベル2を提供するステップであって、形成スピンドル4に接触している熱収縮フィルムバンド5の第1の長手方向端部5aと熱収縮フィルムバンド5の第2の長手方向端部5bとの間にオーバーラップ領域8が提供されるステップと;
各々の形成スピンドル4の周りに形成されたスリーブラベル2を形成スピンドル4からラベル付けされる容器10へ搬送するステップと;
を含み、
この方法が、
第1の長手方向端部5aの少なくとも一部と第2の長手方向端部5bの少なくとも一部とのオーバーラップ領域8に溶剤層6を介在させるステップを更に含む。
−左旋性(−)α−ピネン型と右旋性(+)α−ピネン型の両方のα−ピネン;
−左旋性(−)β−ピネン型と右旋性(+)β−ピネン型の両方のβ−ピネン;
−カンフェン;
−左旋性(−)リモネン型と右旋性(+)リモネン型の両方のリモネン;
−4−イソプロピルトルエン(p−シメンとして市場で公知);
またはこれらの混合物
を含む群から選択される。
1.ハンセン,シー.エム(Hansen, C.M.)著、「3D溶解度パラメータおよび溶剤、拡散係数、表面コーティング製剤における重要性」(博士論文、デンマーク技術プレス、コペンハーゲン、1967年)
2.チャールズ・ハンセン(Charles Hansen)編著、「ハンセン溶解度パラメータ」(ユーザ向けハンドブック第2版)
チャールズ エム.ハンセン(Charles M. Hansen)著、「ハンセン溶解度パラメータ」(p. cm. Rev. ed.2000年頃)、書誌参照とインデックスISBN 0−8493−7248−8(テイラー&フランシス・グループ社(Taylor & Francis Group, LLC発行、2007年)を含む。
ハンセン理論を用いて、ラベルのポリマーを可溶化することができる液体の選択についての更なる情報は、以下で見つけることができる:
3.バートン、エー.エフ.エム(Barton,A.F.M.)著、「溶解度パラメータと他の凝集パラメータ」(ハンドブック(CRCプレス、ボカラトン、フロリダ州、第1版‐1983年、第2版‐1991年)。
4.バートン、エー.エフ.エム著、「ポリマー−液体の相互作用パラメータおよび溶解度パラメータ」(ハンドブック、CRCプレス、ボカラトン、フロリダ州、1990年)。
−COC(環状オレフィン共重合体);
−SBC(ポリスチレンブタジエン共重合体);
−PS(ポリスチレン);
−COP(環状オレフィンポリマー)
を含む群から選択される。
3 フィードリール
4 形成スピンドル
5 熱収縮フィルムバンド
5a,5b 長手方向端部
6 溶剤層
8 オーバーラップ領域
10 容器
11 溶接装置
11a レーザ溶接装置
11b シールバー溶接装置
12 供給装置
13 接合部
20 カルーセル
Claims (24)
- 収縮スリーブラベル(2)を製造する方法であって、
前記方法が、
熱収縮フィルムのフィードリール(3)を巻き出すステップと、
前記フィードリール(3)から少なくとも一の熱収縮フィルムバンド(5)を分離させるステップと、
前記熱収縮フィルムバンド(5)を形成スピンドル(4)へ送出するステップと、
前記形成スピンドル(4)の周りに前記熱収縮フィルムバンド(5)を巻回してスリーブラベル(2)を提供するステップであって、前記形成スピンドル(4)に接触している前記熱収縮フィルムバンド(5)の第1の長手方向端部(5a)と前記熱収縮フィルムバンド(5)の第2の長手方向端部(5b)との間にオーバーラップ領域(8)が提供されるステップと、
前記形成スピンドル(4)の周りに形成された前記スリーブラベル(2)を前記形成スピンドル(4)からラベル付けされる容器(10)へ搬送するステップと、を含み、
前記第1の長手方向端部の少なくとも一部と前記第2の長手方向端部の少なくとも一部との前記オーバーラップ領域に厚さ0.002〜0.09mmの溶剤層(6)を介在させるステップを更に含む、
方法。 - 前記溶剤層の厚さが0.002〜0.05mmであることを特徴とする、請求項1に記載の収縮スリーブラベル(2)を製造する方法。
- 前記溶剤層の厚さが0.002〜0.035mmであることを特徴とする、請求項1に記載の収縮スリーブラベル(2)を製造する方法。
- 前記熱収縮フィルムバンド(5)の長手方向延長部(100)の方向に対して横方向に延び、かつ、前記オーバーラップ領域(8)において接合部(13)を得るために前記形成スピンドル(4)に巻回された前記熱収縮フィルムバンド(5)の前記第2の長手方向端部(5b)で前記第1の長手方向端部(5a)を溶接するステップを含むことを特徴とする、前記請求項の1以上に記載の収縮スリーブラベル(2)を製造する方法。
- 前記介在ステップが前記送出ステップの前に実行されることを特徴とする、前記請求項の1以上に記載の収縮スリーブラベル(2)を製造する方法。
- 前記介在ステップが前記分離ステップと前記送出ステップの間で実行されることを特徴とする、前記請求項の1以上に記載の方法。
- 前記介在ステップが、
接触により前記溶剤を前記熱収縮フィルムバンド(5)へ搬送するように用いられる少なくとも一の回転式円筒形ローラ;
熱収縮フィルム(5)のフラップに接触している固定された塗工装置;
前記熱収縮フィルムバンド(5)から若干離間配置された一以上の噴射ノズル;
または、同様の装置
から成る群から選択される供給装置(12)によって実行されることを特徴とする、前記請求項の1以上に記載の収縮スリーブラベル(2)を製造する方法。 - 前記溶接ステップが、レーザ溶接、赤外線溶接、シールバー溶接、および超音波溶接の装置を含むことを特徴とする、前記請求項の1以上に記載の収縮スリーブラベル(2)を製造する方法。
- 前記形成スピンドル(4)の周りに前記熱収縮フィルムバンド(5)を巻回するステップの後、前記オーバーラップ領域(8)における前記二つの端部(5a、5b)の間の接着性を最適化するために第2の長手方向端部(5b)を第1の長手方向端部(5a)に押圧するステップを含む前記請求項の1以上に記載の収縮スリーブラベルを製造する方法。
- 前記溶剤には、該溶剤が介在する両面を構成する少なくとも一つのポリマーと相溶性があるかまたは同じ種のポリマーが添加され(additivated)、前記相溶性ポリマーの割合が、前記溶剤に対して0重量%〜35重量%であることを特徴とする、前記請求項の1以上に記載の収縮スリーブラベル(2)を製造する方法。
- 前記溶剤が、
−左旋性(−)α−ピネン型と右旋性(+)α−ピネン型の両方のα−ピネン;
−左旋性(−)β−ピネン型と右旋性(+)β−ピネン型の両方のβ−ピネン;
−カンフェン;
−左旋性(−)リモネン型と右旋性(+)リモネン型の両方のリモネン;
−4−イソプロピルトルエン;
またはこれらの混合物
を含む群から選択されることを特徴とする、前記請求項の1以上に記載の収縮スリーブラベル(2)を製造する方法。 - 前記相溶性ポリマーが、
−COC(環状オレフィン共重合体);
−SBC(ポリスチレンブタジエン共重合体);
−PS(ポリスチレン);
−COP(環状オレフィンポリマー)
を含む群から選択されることを特徴とする、前記請求項の1以上に記載の収縮スリーブラベル(2)を製造する方法。 - スリーブラベル(2)を製造するための装置(1)であって、
少なくとも一の形成スピンドル(4)へ熱収縮フィルムバンド(5)を供給するように設計された少なくとも一のフィードリール(3)と、
前記形成スピンドル(4)の外側面(4a)の周りに前記熱収縮フィルムバンド(5)を巻回する手段(7)であって、前記形成スピンドル(4)に接触している前記熱収縮フィルムバンド(5)の第1の長手方向端部(5a)と前記熱収縮フィルムバンド(5)の第2の長手方向端部(5b)との間にオーバーラップ領域(8)を提供するように用いられる巻回手段(7)と、
を含み、
前記第1の長手方向端部の少なくとも一部と前記第2の長手方向端部の少なくとも一部との間の前記オーバーラップ領域に、厚さ0.002〜0.09mmの溶剤層(6)を分配する装置を更に含むことを特徴とする、
装置(1)。 - 前記溶剤層の厚さが0.002〜0.05mm、好ましくは、0.002〜0.035mmであることを特徴とする、請求項13に記載の装置(1)。
- 前記熱収縮フィルムバンド(5)の長手方向延長部(100)方向に対して横方向に延びかつ前記オーバーラップ領域(8)において接合部(13)を得るために前記形成スピンドル(4)に巻回された前記熱収縮フィルムバンド(5)の前記第2の長手方向端部(5b)で前記第1の長手方向端部(5a)を溶接するための装置(11)を含むことを特徴とする、請求項13又は14に記載の装置(1)。
- 前記溶接装置(11)が、
レーザ溶接装置(11a);
赤外線溶接装置;
シールバー溶接装置(11b);
超音波溶接装置
を含む群から選択される溶接手段を含むことを特徴とする、請求項13から請求項15のいずれか1項に記載の装置(1)。 - 第1の長手方向端部(5a)と第2の長手方向端部(5b)の間で最適な接着を可能にするために形成スピンドル(4)に巻回された前記スリーブラベル(2)の外部表面に係着するように意図される圧着手段を含むことを特徴とする、請求項13から請求項16のいずれか1項に記載の装置(1)。
- 前記少なくとも一のフィードリール(3)と前記巻回手段(7)との間に、熱収縮フィルムバンド(5)の前記フィードリール(3)から巻き出された熱収縮材料の連続フィルム(15)を切断するための手段(14)を含み、前記切断手段(14)が前記フィードリール(3)から巻き出された熱収縮材料の前記連続フィルム(15)の切断を実行するように用いられることを特徴とする、請求項13から請求項17のいずれか1項に記載の装置(1)。
- 前記熱収縮フィルムバンドを前記各々の形成スピンドルへ搬送するために前記フィードリールと前記形成スピンドルの間に介在された搬送ドラムを含み、前記供給装置が前記搬送ドラムに関連付けられることを特徴とする、請求項13から請求項18のいずれか1項に記載の装置(1)。
- 前記ラベル付けされる容器(10)を支持するように設計されたカルーセル(20)を支持するためのフレームを含み、前記カルーセル(20)の外周領域に提供される複数の形成スピンドル(4)が各々のスリーブラベル(2)をラベル付けされる容器(10)の外部表面へ搬送するように用いられることを特徴とする、請求項13から請求項19のいずれか1項に記載の装置(1)。
- 前記溶剤は、該溶剤が介在している両面を構成する少なくとも一のポリマーに対して相溶性がありまたはこれと同種のポリマーが添加され、前記溶剤に対する前記相溶性ポリマーの割合が0〜35重量%である請求項13から請求項20のいずれか1項に記載の装置(1)。
- 前記溶剤が、
−左旋性(−)α−ピネン型と右旋性(+)α−ピネン型の両方のα−ピネン;
−左旋性(−)β−ピネン型と右旋性(+)β−ピネン型の両方のβ−ピネン;
−カンフェン;
−左旋性(−)リモネン型と右旋性(+)リモネン型の両方のリモネン;
−4−イソプロピルトルエン;
またはこれらの混合物
を含む群から選択されることを特徴とする、請求項13から請求項21のいずれか1項に記載の装置(1)。 - 前記相溶性ポリマーが、
−COC(環状オレフィン共重合体);
−SBC(ポリスチレンブタジエン共重合体);
−PS(ポリスチレン);
−COP(環状オレフィンポリマー)
を含む群から選択されることを特徴とする、請求項13から請求項22のいずれか1項に記載の装置(1)。 - 請求項1から請求項12のいずれか1項に記載の方法によって提供されるスリーブラベル(2)に関連付けられる容器(10)。
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- 2014-02-14 EP EP14714343.2A patent/EP2956369B1/en active Active
- 2014-02-14 WO PCT/IB2014/058991 patent/WO2014125439A1/en active Application Filing
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- 2014-02-14 CN CN201480008398.1A patent/CN105073584B/zh active Active
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Also Published As
Publication number | Publication date |
---|---|
JP6370317B2 (ja) | 2018-08-08 |
WO2014125439A8 (en) | 2015-09-17 |
ITVR20130057A1 (it) | 2014-08-16 |
CN105073584A (zh) | 2015-11-18 |
EP2956369A1 (en) | 2015-12-23 |
WO2014125439A1 (en) | 2014-08-21 |
ITVR20130042A1 (it) | 2014-08-16 |
CN105073584B (zh) | 2019-06-11 |
EP2956369B1 (en) | 2020-12-02 |
US20150375450A1 (en) | 2015-12-31 |
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