JP6809390B2 - 転写捺染用インクおよび転写捺染方法 - Google Patents
転写捺染用インクおよび転写捺染方法 Download PDFInfo
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- JP6809390B2 JP6809390B2 JP2017117961A JP2017117961A JP6809390B2 JP 6809390 B2 JP6809390 B2 JP 6809390B2 JP 2017117961 A JP2017117961 A JP 2017117961A JP 2017117961 A JP2017117961 A JP 2017117961A JP 6809390 B2 JP6809390 B2 JP 6809390B2
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Images
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- D—TEXTILES; PAPER
- D06—TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
- D06P—DYEING OR PRINTING TEXTILES; DYEING LEATHER, FURS OR SOLID MACROMOLECULAR SUBSTANCES IN ANY FORM
- D06P5/00—Other features in dyeing or printing textiles, or dyeing leather, furs, or solid macromolecular substances in any form
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Landscapes
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- Organic Chemistry (AREA)
- Coloring (AREA)
- Ink Jet (AREA)
- Ink Jet Recording Methods And Recording Media Thereof (AREA)
- Inks, Pencil-Leads, Or Crayons (AREA)
Description
転写捺染用インクに配合する顔料としては、従来公知の有機及び無機顔料が使用できる。例えば、アゾレーキ、不溶性アゾ顔料、縮合アゾ顔料、キレートアゾ顔料等のアゾ顔料や、フタロシアニン顔料、ペリレン及びペリレン顔料、アントラキノン顔料、キナクリドン顔料、ジオキサンジン顔料、チオインジゴ顔料、イソインドリノン顔料、キノフタロニ顔料等の多環式顔料や、塩基性染料型レーキ、酸性染料型レーキ等の染料レーキや、ニトロ顔料、ニトロソ顔料、アニリンブラック、昼光蛍光顔料等の有機顔料、カーボンブラック等の無機顔料が挙げられる。また、インク中の顔料の含有量は0.5〜10質量%であることが好ましい。
本発明の転写捺染用インクは、インクとしての安定性の他に転写紙からの離形性と布帛への密着安定性を有していることが好ましい。転写捺染用インクに配合する定着樹脂は、水に不溶性である水分散性樹脂が好ましい。水分散性樹脂は比較的油溶性であり、布帛に移行した顔料全体を被覆するように定着させることができるため、布帛に対して顔料をより強固に付着させることができる。本発明において、定着樹脂は塩基で中和するなどして水に対して最も安定な状態とすることが重要である。
中和剤は、定着樹脂のカルボキシル基を中和するために配合される。転写紙への画像形成・乾燥時には転写紙に形成されたインク画像中に中和剤が残存しており、アニオン性の定着樹脂が顔料と一体となってインク中で分散安定性を保つことができる。そして、布帛への画像転写時には熱、圧力、水蒸気等によって定着樹脂が軟化し、ゲル化することで、布帛への画像の転写を容易に行うことができる。このとき、布帛の疎水性を高めるために、中和剤は布帛への画像転写時に大部分が揮発することが好ましい。従って、中和剤として特に揮発性アミンを用いることが好ましい。
本発明の転写捺染用インクは水溶性溶剤を含有している。水溶性溶剤の種類および含有量は、インクジェットプリンターからの吐出安定性(インク粘度)、布帛への浸透性、ゲル化速度調整等の観点から適宜その種類および含有量を調整すればよい。本発明の転写捺染用インクの粘度は、23℃で3mPas〜10mPasに調整することが好ましい。
次に、本発明の転写捺染方法に用いる転写紙について説明する。従来、一般的に行われている昇華転写方式ではインクを転写紙に印刷した後、熱によって染料が昇華することで布帛に画像を転写させる方式であり、化学的な転写方式である。一方、本発明においては顔料を布帛に固着させるために必要な定着樹脂が転写捺染用インクに配合されており、転写装置によって加熱されて定着樹脂が軟化し、顔料を定着樹脂と共に布帛に物理的に転写させるものである。転写条件は、従来の熱の他に圧力、振動、水蒸気等を付加する方式で行われる。そのため、転写紙には水性の転写捺染用インクを高速で受容するとともに転写紙の内部に入り込まないようにするブロック機能と、転写時にインク成分を布帛に剥離させる剥離(リリース)機能とが必要とされる。
フタロシアニン顔料(ピグメントブルー15:3)20質量%、分散安定剤としてスチレンアクリル樹脂(分子量5000)5質量%、イオン交換水75質量%を配合し、薄膜旋回型高速ミキサー(フイルミックス、プライミックス社製)によって高速分散した後、ビーズミル(ダイノーミル、シンマルエンタープライゼス社製)によって粒度が80nmになるまで分散処理を行って顔料分散体を作製した。この顔料分散体の粘度は8mPasであった。
表1に示すように、先に作製した顔料分散体を顔料成分が5質量%になるように配合し、水溶性溶剤としてプロピレングリコール、グリセリン、界面活性剤としてサーフィノール104(アセチレングリコール系界面活性剤、日信化学製)を配合し、定着樹脂としてポリウレタンラテックス(UPUD−ST−008、宇部興産製)を配合量が固形分で5質量%、10質量%、15質量%になるように配合し、中和剤として、トリエチルアミン(沸点89℃)を中和等量の0.8倍、1倍、1.5倍配合し(ポリウレタンラテックスの架橋開始温度は140℃以上である)、さらにトータルで100質量%となるようにイオン交換水を配合して撹拌することで転写捺染用インクを作製した(本発明1〜3)。また、比較例として、トリエチルアミンに代えてアンモニアまたは水酸化ナトリウムを中和等量の1倍配合した転写捺染用インク、およびポリウレタンラテックスを配合量が3質量%、10質量%、30質量%になるように配合した転写捺染用インクを作製した(比較例1〜4)。
親水性のコート層が形成された転写紙(Transjet、Cham Paper社製)の表面にワックスエマルション(KW−606、互応化学社製)をスプレー塗布することによって、親水性のインク受容層の表面に撥水性の離型層が散在するコーティング層を有する転写紙基材を作製した。撥水性のワックスエマルションは、布帛への転写時の加熱によって溶融し、親水性のインクと転写紙基材との間に離形膜を形成してインクの転写を容易にするものである。
作製した転写紙に綿製の布帛を重ね合わせ、160℃、1MPaで1分間転写を行うことにより捺染物を作製した。
インク組成物の連続吐出安定性について、以下の基準により評価した。
◎:A4ベタ150枚印字において、ドット抜けがない。
○:A4ベタ150枚印字において、ドット抜けが1本以上、10本以下である。
×:A4ベタ150枚印字において、ドット抜けが11本以上である。
◎:洗濯堅牢度が4級以上である。
○:洗濯堅牢度が3級以上、4級未満である。
×:洗濯堅牢度が3級未満である。
23℃におけるインク粘度、転写紙上および布帛上でのインクの性質(親水性or疎水性)、布帛上のインク層の膜厚、吐出安定性、転写性、捺染物の洗濯堅牢性の評価結果を転写捺染用インクの配合と共に表1に示す。
反応容器内の窒素ガス置換を行い、表2に示すモノマー、溶剤、重合開始剤を入れて混合し、初期仕込みモノマー溶液および滴下モノマー溶液を得た。
製造例2で得られたポリマー溶液に対し、フタロシアニン顔料(ピグメントブルー15:3)を、顔料とポリマーとの比率が1:0.6、1:1、1:2、1:3、1:6になるように配合した。分散液は高速回転ディスパー(T.K.ロボミックス+T.K.ホモディスパー2.5型、プライミクス社製)にて分散させた後、ビーズミル(ダイノーミル、シンマルエンタープライゼス社製)にて微分散することにより、70nmの顔料粒子がポリマー溶液中に分散された分散液を作製した。この分散液を水中に転相乳化させることで100nmサイズの大きさで分散させた粒子状の分散液を作製し、さらにこの分散液を減圧下で撹拌することで溶剤を除去し顔料分散体を得た。
作製された顔料分散体を用いて、表3に示したインク配合を行うことで、実施例1と同様に転写捺染用インク(本発明4〜6、比較例5、6)を作製した。なお、本実施例では成膜助剤としてトリプロピレングリコールn−ブチルエーテル(ダワノールTPnB、ダウ・ケミカル社製)を2質量%配合した。実施例1で作製した転写紙基材に本発明4〜6、比較例5、6の転写捺染用インクにより濃度100%の画像を形成し、転写捺染用転写紙を作製した。作製された転写捺染用転写紙に綿製の布帛を張り合わせ、160℃、1MPaで1分間転写を行うことにより捺染物を作製した。
インク組成物の連続吐出安定性、転写効率、捺染物の洗濯堅牢性について、実施例1と同様の手法、評価基準により評価した。23℃におけるインク粘度、吐出安定性、転写性、捺染物の洗濯堅牢性の評価結果を転写捺染用インクの配合と共に表3に示す。
3 転写紙
3′ 転写紙基材
4 転写捺染用インク
5 インク層
7 布帛
9 積層体
10 捺染物
Claims (9)
- 転写紙を製造する際にインクジェット記録装置を用いて転写紙基材上に吐出され、前記転写紙と布帛とを重ね合わせて加熱することにより前記転写紙から前記布帛に転写される転写捺染用インクであって、
顔料と、アニオン性の定着樹脂と、前記定着樹脂を中和する中和剤である揮発性アミンと、を含み、
前記顔料の平均粒子径が30nm〜150nmであり、前記顔料と前記定着樹脂の質量比が1:1〜1:5であり、前記揮発性アミンの添加量が中和等量の0.8〜1.5倍であり、
前記定着樹脂が、ポリウレタンラテックスおよびスチレン−アクリル樹脂成分から選ばれた1種以上であり、
前記揮発性アミンの沸点が常圧で50℃以上250℃以下である転写捺染用インク。 - 前記定着樹脂を溶解して融着させることにより前記インクによる膜形成を補助する成膜助剤をさらに含むことを特徴とする請求項1に記載の転写捺染用インク。
- 前記定着樹脂がスチレンーアクリル樹脂成分であり、前記顔料の粒子の周囲に被覆材として存在することを特徴とする請求項1又は請求項2に記載の転写捺染用インク。
- 前記定着樹脂がポリウレタンラテックスであり、ラテックス粒子としてエマルジョンを形成することを特徴とする請求項1又は請求項2に記載の転写捺染用インク。
- 前記定着樹脂の架橋温度が100℃以上200℃以下であることを特徴とする請求項1乃至請求項4のいずれかに記載の転写捺染用インク。
- 23℃における粘度が3mPas〜10mPasであることを特徴とする請求項1乃至請求項5のいずれかに記載の転写捺染用インク。
- 転写紙を製造する際にインクジェット記録装置を用いて転写紙基材上に吐出され、前記転写紙と布帛とを重ね合わせて加熱することにより前記転写紙から前記布帛に転写される転写捺染用インクであって、
顔料と、アニオン性の定着樹脂と、前記定着樹脂を中和する中和剤である揮発性アミンと、を含み、
前記顔料の平均粒子径が30nm〜150nmであり、前記顔料と前記定着樹脂の質量比が1:1〜1:5であり、前記揮発性アミンの添加量が中和等量の0.8〜1.5倍であり、
前記揮発性アミンの沸点が常圧で50℃以上250℃以下である転写捺染用インクを用い、インクジェット記録装置により前記転写捺染用インクを転写紙基材上に吐出して画像を形成した後、前記定着樹脂の架橋温度よりも低温で乾燥することにより転写紙を製造する転写紙製造工程と、
前記転写紙製造工程によって製造された前記転写紙を布帛に重ね合わせて前記定着樹脂の架橋温度よりも高温で加熱しながら加圧することにより前記転写紙上に形成された画像を前記布帛に転写する転写工程と、
前記転写工程によって画像が定着された後の前記布帛から前記転写紙を剥離する剥離工程と、
を含み、
前記転写紙製造工程において前記揮発性アミンの沸点よりも低温で乾燥することにより前記転写紙を製造するとともに、
前記転写工程において前記揮発性アミンの沸点よりも高温で加熱しながら加圧することにより前記転写紙上に形成された画像を前記布帛に転写する転写捺染方法。 - 前記転写工程の前に、前記布帛に水分を含浸させる水分含浸工程を有することを特徴とする請求項7に記載の転写捺染方法。
- 前記転写工程における加熱温度が100℃以上200℃以下であることを特徴とする請求項7又は請求項8に記載の転写捺染方法。
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