JPH0657656A - Method for printing fabric - Google Patents

Method for printing fabric

Info

Publication number
JPH0657656A
JPH0657656A JP4236488A JP23648892A JPH0657656A JP H0657656 A JPH0657656 A JP H0657656A JP 4236488 A JP4236488 A JP 4236488A JP 23648892 A JP23648892 A JP 23648892A JP H0657656 A JPH0657656 A JP H0657656A
Authority
JP
Japan
Prior art keywords
ink
dye
endless belt
transfer paper
printing
Prior art date
Legal status (The legal status 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 status listed.)
Granted
Application number
JP4236488A
Other languages
Japanese (ja)
Other versions
JP2994874B2 (en
Inventor
Kazuo Kusaki
一男 草木
Toshiichi Nunoo
敏一 布生
Kazuyoshi Morimoto
和義 森本
Kazuo Iwata
一男 岩田
Michiyo Nishimura
三千代 西村
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Kanebo Ltd
Original Assignee
Kanebo Ltd
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 Kanebo Ltd filed Critical Kanebo Ltd
Priority to JP4236488A priority Critical patent/JP2994874B2/en
Publication of JPH0657656A publication Critical patent/JPH0657656A/en
Application granted granted Critical
Publication of JP2994874B2 publication Critical patent/JP2994874B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41JTYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
    • B41J3/00Typewriters or selective printing or marking mechanisms characterised by the purpose for which they are constructed
    • B41J3/407Typewriters or selective printing or marking mechanisms characterised by the purpose for which they are constructed for marking on special material
    • B41J3/4078Printing on textile

Abstract

PURPOSE:To obtain a printed product having excellent clarity and printing qualities by printing fabric by ink-jet method. CONSTITUTION:Dye ink is supplied to a non-permeable endless belt having smooth surface by ink-jet method, then the dye ink on the endless belt is absorbed in transfer paper, a solvent is removed and the dye attached to the transfer paper is transferred to fabric.

Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【産業上の利用分野】本発明はインクジェット方式を利
用した布帛の捺染方法に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a textile printing method using an ink jet system.

【0002】[0002]

【従来の技術】従来、布帛に図柄を印捺する方法として
は、スクリーン捺染法,ローラ捺染法,ロータリースク
リーン捺染法,転写捺染法等が用いられてきたが、図柄
の変更毎にスクリーン枠,彫刻ローラ,転写紙等を用意
する必要があり、これらスクリーン枠,彫刻ローラ,転
写紙の作成はかなり高価であるため、かなりのロットを
生産しないと経済的な面で合わない点のみならず、ファ
ッションの多様化に迅速に対応出来ないという欠点を有
する。
2. Description of the Related Art Conventionally, as a method for printing a pattern on a cloth, a screen printing method, a roller printing method, a rotary screen printing method, a transfer printing method, etc. have been used. It is necessary to prepare engraving rollers, transfer paper, etc., and since the production of these screen frames, engraving rollers, transfer paper is quite expensive, not only is it economically incompatible unless a large lot is produced, It has the drawback of not being able to quickly respond to the diversification of fashion.

【0003】これ等の欠点を解消するために、スキャナ
ーで見本を読み取り、コンピュータで画像処理を行い、
その結果をインクジェット方式で印捺する技術が開発さ
れ、近年紙の分野では実用化されている。このインクジ
ェット方式は時間と費用をかけることなく作製可能であ
る点で繊維分野においても注目され、布帛に適用する試
みがなされている。
In order to solve these drawbacks, a sample is read by a scanner and image processing is performed by a computer.
A technique for printing the result by an inkjet method has been developed and has been put to practical use in the field of paper in recent years. This ink jet method has attracted attention in the field of fibers because it can be manufactured without spending time and money, and attempts have been made to apply it to cloth.

【0004】しかしながら、インクジェット方式を布帛
に適用した場合には毛細管現象で布帛を構成する繊維や
糸に沿って染料インキが拡散し、滲みが発生するため著
しく鮮明性に劣るという問題がある。この問題を解決す
るために種々の前処理方法が提案されているが、滲みを
防止し過ぎると得られた製品にインクのドットが見え印
刷調になるという問題があり、インクジェット方式の優
れた特性にも拘らず、その布帛への適用が遅れている原
因の1つとなっている。
However, when the ink jet system is applied to the cloth, there is a problem that the dye ink is diffused along the fibers and threads constituting the cloth due to a capillary phenomenon and bleeding occurs, resulting in a markedly poor sharpness. Various pretreatment methods have been proposed in order to solve this problem, but if the bleeding is prevented too much, there is a problem that the ink dots will appear in the obtained product and it will become a print tone, and the excellent characteristics of the inkjet method. Nevertheless, it is one of the reasons why the application to the fabric is delayed.

【0005】そこで、通常の転写捺染に使われる転写紙
へインクジェット方式にて熱昇華性染料を含む染料イン
クを付与した後、乾燥し、紙と布帛を重ね合わせて染料
を布帛に転写する方法も検討されてきたが、転写紙上に
形成されたインクのドットが布帛にそのまま転写され印
刷調になるという問題があった。
Therefore, there is also a method in which a dye ink containing a heat sublimable dye is applied to a transfer paper used for ordinary transfer printing by an ink jet method and then dried, and the paper and the cloth are superposed and the dye is transferred to the cloth. Although it has been studied, there is a problem that the ink dots formed on the transfer paper are directly transferred to the cloth to give a print tone.

【0006】[0006]

【発明が解決しようとする課題】本発明者等は、インク
ジェット方式での布帛の捺染法について鋭意研究を続け
た結果、表面平滑で非浸透性のエンドレスベルトと転写
紙を仲介として用いることにより、既存法の有する諸問
題の悉くが解決することを見出し本発明を完成したもの
である。本発明の目的は、卓越した鮮明さと捺染品位を
有する捺染品を得うるインクジェット方式による布帛の
捺染方法を提供するにある。
DISCLOSURE OF THE INVENTION The inventors of the present invention, as a result of continuing diligent research on a textile printing method using an ink jet method, have found that an endless belt having a smooth surface and an impermeable belt and a transfer paper are used as an intermediary. The present invention has been completed by finding that the problems of the existing law can be solved. An object of the present invention is to provide a method for printing a cloth by an inkjet method, which can obtain a printed product having excellent sharpness and printing quality.

【0007】[0007]

【課題を解決するための手段】上述の目的は、表面平滑
で非浸透性のエンドレスベルト上に熱昇華性染料を含む
染料インクをインクジェット方式にて付与し、次いでエ
ンドレスベルト上の染料インクを転写紙に吸収せしめ、
溶媒除去後転写紙に付着した染料を布帛へ転写させるこ
とを特徴とする布帛の捺染方法により達成される。
The above-mentioned object is to apply a dye ink containing a heat sublimable dye onto an endless belt having a smooth surface and an impermeable surface by an ink jet method, and then transfer the dye ink on the endless belt. Absorb it on paper,
This is achieved by a textile printing method, characterized in that after the solvent is removed, the dye attached to the transfer paper is transferred to the textile.

【0008】以下、本発明を詳細に説明する。The present invention will be described in detail below.

【0009】本発明においてエンドレスベルトの材質は
表面平滑で非浸透性のもであれば特に限定されなく、例
えば金属,ゴム,ガラス,プラスチック等が挙げられる
が、染料と親和性がなく、インクの拡散性が少なく、拭
き取りやすく、耐熱性が良好な金属が特に好ましい。そ
してこのようなエンドレスベルトの表面には転写紙に対
して接着性を有する接着剤層を形成したものが特に好ま
しい。接着剤層を形成する接着剤は転写紙に対して接着
性を有するものであれば特に限定されず、例えばアクリ
ル酸系樹脂,ビニールエーテル共重合体樹脂,天然ゴ
ム,スチレン・ブタジエン共重合体樹脂,アクリロニト
リルーブタジエン系樹脂,ポリウレタン樹脂,シリコー
ン樹脂等が挙げられる。更に必要であれば、粘着付与剤
として例えばロジン,ダンマル,コーパル,水添ロジ
ン,水添ロジンエステル,フェノール樹脂,アルキッド
樹脂,エポキシ樹脂等を添加しても良い。そして、かか
る接着剤は、例えば有機溶剤に溶解し、エンドレスベル
トの表面にリバースロールコーターその他通常のコーテ
ィング機により塗布し乾燥することにより接着剤層を形
成するようになる。
In the present invention, the material of the endless belt is not particularly limited as long as it has a smooth surface and is impervious, and examples thereof include metal, rubber, glass and plastic. A metal having low diffusivity, easy wiping and good heat resistance is particularly preferable. It is particularly preferable that the surface of such an endless belt has an adhesive layer having adhesiveness to the transfer paper. The adhesive forming the adhesive layer is not particularly limited as long as it has adhesiveness to the transfer paper, and examples thereof include acrylic acid-based resin, vinyl ether copolymer resin, natural rubber, styrene-butadiene copolymer resin. , Acrylonitrile-butadiene resin, polyurethane resin, silicone resin and the like. If necessary, a tackifier such as rosin, dammar, copal, hydrogenated rosin, hydrogenated rosin ester, phenol resin, alkyd resin, or epoxy resin may be added. Then, such an adhesive is dissolved in, for example, an organic solvent, applied to the surface of the endless belt by a reverse roll coater or other ordinary coating machine, and dried to form an adhesive layer.

【0010】本発明において使用する染料インクとは、
熱昇華性染料と溶媒からなるものであり、必要に応じて
分散剤,界面活性剤,表面張力調整剤,pH調整剤,電
導度調剤等を添加したものである。熱昇華性染料として
は分散染料,油溶性染料,カチオン染料等が挙げられ
る。また溶媒としては水または水と水溶性有機溶剤の混
合物が挙げられる。
The dye ink used in the present invention is
It is composed of a heat sublimable dye and a solvent, and optionally contains a dispersant, a surfactant, a surface tension adjusting agent, a pH adjusting agent, an electric conductivity adjusting agent and the like. Examples of thermal sublimation dyes include disperse dyes, oil-soluble dyes, and cationic dyes. Examples of the solvent include water or a mixture of water and a water-soluble organic solvent.

【0011】かかる染料インクのインクジェット方式に
よる上記エンドレスベルトへの適用は、ノズル内に発熱
抵抗素子を埋め込み、その発熱によりインクを沸騰さ
せ、その泡の圧力によりインク吐出させるバブルジェッ
ト方式、圧電素子に電気信号を加えて変形させインク室
の体積変化を励起してインク粒子を飛ばすパルスジェッ
ト方式、超音波振動しているノズルからインクを加圧連
続噴射させて粒子化し、粒子を荷電量に制御一定電界中
を通過偏向させ、記録,非記録粒子に分けて記録する荷
電制御方式等により実施される。
The application of the dye ink to the above endless belt by the ink jet method is applied to a bubble jet method and a piezoelectric element in which a heating resistance element is embedded in a nozzle, the ink is boiled by its heat generation, and the pressure of the bubble ejects the ink. Pulse jet method that ejects ink particles by exciting volume change of ink chamber by applying electric signal to deform, ink is jetted continuously from nozzles that vibrate ultrasonically to atomize, and particles are controlled to a fixed charge amount It is carried out by a charge control method or the like in which recording is carried out in the electric field and deflected, and recording and non-recording particles are separately recorded.

【0012】本発明に用いられる転写紙とは、クラフト
パルプ又はグラインドパルプを原料として抄紙されたも
のが、転写時の印捺性,転写効率の面で好ましい。重量
は40〜120g/m2 の範囲が好ましく、厚味は0.
02〜0.4mmの範囲が好ましい。
The transfer paper used in the present invention is preferably a paper made from kraft pulp or grind pulp as a raw material in terms of printing performance at transfer and transfer efficiency. The weight is preferably in the range of 40 to 120 g / m 2, and the thickness is 0.1.
The range of 02 to 0.4 mm is preferable.

【0013】そして、エンドレスベルト上の染料インク
を転写紙へ吸収せしめる方法としては、エンドレスベル
ト上に染料インクをインクジェット方式にて付与後、エ
ンドレスベルトに転写紙を貼り付け、1〜20秒後に転
写紙をエンドレスベルトより剥離する方法等が挙げられ
る。
As a method of absorbing the dye ink on the endless belt to the transfer paper, after applying the dye ink on the endless belt by an ink jet method, the transfer paper is pasted on the endless belt and transferred after 1 to 20 seconds. Examples include a method of peeling the paper from the endless belt.

【0014】本発明に用いられる布帛とは織物,編物,
不織布等が挙げられる。また布帛を形成する繊維として
は熱昇華性染料で熱転写可能なポリエステル,ポリアミ
ド,アセトート,アクリル等が挙げられる。
The cloth used in the present invention means a woven fabric, a knitted fabric,
Examples include non-woven fabrics. Further, as the fibers forming the cloth, polyester, polyamide, acetate, acrylic, etc., which can be thermally transferred with a heat sublimation dye, can be mentioned.

【0015】そして、転写紙に吸収した染料インクは溶
媒除去により染料のみが転写紙に付着するようになる。
転写紙に付着した染料を布帛へ転写せしめる方法として
は、転写紙と布帛を圧着し、例えば熱昇華性の分散染料
を用いた場合には180℃〜230℃で熱処理する方法
等が挙げられる。
Then, in the dye ink absorbed on the transfer paper, only the dye is attached to the transfer paper by removing the solvent.
Examples of the method for transferring the dye attached to the transfer paper to the cloth include a method in which the transfer paper and the cloth are pressure-bonded and, for example, when a heat sublimable disperse dye is used, heat treatment is performed at 180 ° C to 230 ° C.

【0016】[0016]

【実施例】以下、本発明を実施例に基づき詳細に説明す
る。
EXAMPLES The present invention will now be described in detail based on examples.

【0017】実施例1 ステンレス性のエンドレスベルトに、FD Thick
ner 100(古川化学社製のアクリル樹脂)20重
量%,サクシノールCSK(センカ社製の高級アルコー
ル系活性剤)2重量%及び水78重量%からなるコーテ
ィング液をリバースロールコータにより付与し、乾燥し
た。粘着剤層の厚みは5μmであった。
Example 1 A stainless steel endless belt was attached to an FD Thick.
A coating liquid consisting of 20% by weight of ner 100 (acrylic resin manufactured by Furukawa Chemical Co., Ltd.), 2% by weight of Succinol CSK (higher alcohol activator manufactured by Senka Co., Ltd.) and 78% by weight of water was applied by a reverse roll coater and dried. . The pressure-sensitive adhesive layer had a thickness of 5 μm.

【0018】一方、C.I.Disperse Blu
e 73 3重量%,ソルバライトC−45(共栄社製
のナフタレンスルホン酸ホルマリン縮合物系分散剤)1
5重量%及び水82重量%からなる染料インクを準備
し、インクジェットプリンターに搭載し、8ドット/m
mの連続プリントを上記粘着剤層を形成したステンレス
性のエンドレスベルトに実施した。
On the other hand, C.I. I. Disperse Blu
e 73 3% by weight, Solvalite C-45 (Naphthalenesulfonic acid formalin condensate-based dispersant manufactured by Kyoeisha Co., Ltd.) 1
Dye ink consisting of 5% by weight and 82% by weight of water was prepared and mounted on an ink jet printer, and 8 dots / m
m continuous printing was carried out on the stainless endless belt having the pressure-sensitive adhesive layer formed thereon.

【0019】次いで、この染料インクを付与したエンド
レスベルトに転写紙(重量80g/m2 ,厚さ0.2m
m)を貼り付け、10秒放置して染料インクを転写紙に
吸収せしめた後、転写紙をエンドレスベルトより剥離
し、120℃にて2分乾燥した。次いでこの転写紙をポ
リエチレンテレフタレートからなる平織物(ポリエチレ
ンテレフタレート50d/18fを経糸及び緯糸に用
い、経糸密度110本/インチ,緯糸密度95本/イン
チで織成し、公知の方法で糊抜,精練,ヒートセット加
工したもの)に圧着し、210℃にて20秒の熱処理を
行い、染料を織物に昇華移行せしめ、実施例1の製品を
得た。
Then, transfer paper (weight: 80 g / m 2 , thickness: 0.2 m) was applied to the endless belt to which the dye ink was applied.
m) was adhered and left for 10 seconds to allow the dye ink to be absorbed by the transfer paper, then the transfer paper was peeled off from the endless belt and dried at 120 ° C. for 2 minutes. Then, this transfer paper is woven with a plain woven fabric made of polyethylene terephthalate (polyethylene terephthalate 50d / 18f is used for warp and weft, and woven with a warp density of 110 yarns / inch and a weft yarn density of 95 yarns / inch, desizing, scouring, and heating by a known method. The product of Example 1 was obtained by press-bonding to a set fabric) and heat treatment at 210 ° C. for 20 seconds to allow the dye to sublimate and transfer to the woven fabric.

【0020】比較例1 実施例1で用いたヒートセット上りの織物を実施例1と
同様の粘着剤を塗布したステンレス性のエンドレスベル
トに貼り付け、実施例1と同様のインクをインクジェッ
トプリンターに搭載し、8ドット/mmの連続プリント
を織物に実施した。次に、このようにして得た捺染織物
を120℃にて2分乾燥し、次いで210℃にて30秒
間乾熱処理を行い、還元洗浄,湯洗,乾燥し比較例1の
製品を得た。
Comparative Example 1 The heat-set up fabric used in Example 1 was attached to a stainless steel endless belt coated with the same adhesive as in Example 1, and the same ink as in Example 1 was mounted on an ink jet printer. Then, continuous printing of 8 dots / mm was performed on the fabric. Next, the printed fabric thus obtained was dried at 120 ° C. for 2 minutes, then subjected to dry heat treatment at 210 ° C. for 30 seconds, reduction washed, washed with hot water, and dried to obtain a product of Comparative Example 1.

【0021】比較例2 実施例1のヒートセット上りの織物に、セルパルSM−
100(安達糊料社製の天然ガム系糊剤)1重量%,セ
ロポール19(三洋化成社製の分散染料用均染剤)2重
量%及び水97重量%からなる処理液をパッディング
し、マングルで絞り率70%に絞った後、120℃で2
分間乾燥した。
COMPARATIVE EXAMPLE 2 Cerpal SM-was applied to the heat-set up fabric of Example 1
100% (natural gum-based sizing agent manufactured by Adachi Co., Ltd.), 1% by weight, Cellopol 19 (2% by weight of Sanyo Kasei Co., Ltd. disperse dye leveling agent) and 97% by weight of water are padded with a treatment liquid. After squeezing the squeezing ratio to 70% with mangle, 2 at 120 ° C
Dry for minutes.

【0022】かかる前処理済の織物を実施例1と同様の
粘着剤を塗布したステンレス性のエンドレスベルトに貼
り付け、実施例1と同様のインクをインクジェットプリ
ンターに搭載し8ドット/mmの連続プリントを織物に
実施した。次に、このようにして得た捺染織物を120
℃にて2分乾燥し、次いで210℃にて30秒間乾熱処
理を行い、還元洗浄,湯洗,乾燥し比較例2の製品を得
た。
The pretreated fabric was attached to a stainless steel endless belt coated with the same adhesive as in Example 1, and the same ink as in Example 1 was mounted on an ink jet printer to continuously print at 8 dots / mm. Was performed on the fabric. Next, the textile printing fabric thus obtained is
A product of Comparative Example 2 was obtained by drying for 2 minutes at 0 ° C, then dry heat treatment at 210 ° C for 30 seconds, reduction washing, hot water washing and drying.

【0023】比較例3 実施例1で用いた転写紙を実施例1と同様の粘着剤を塗
布したステンレス性のエンドレスベルトに貼り付け、実
施例1と同様のインクをインクジェットプリンターに搭
載し、8ドット/mmの連続プリントを転写紙に実施
し、次いで120℃にて2分乾燥した。
Comparative Example 3 The transfer paper used in Example 1 was attached to a stainless steel endless belt coated with the same adhesive as in Example 1, and the same ink as in Example 1 was mounted on an ink jet printer. A continuous print of dots / mm was carried out on the transfer paper and then dried at 120 ° C. for 2 minutes.

【0024】次いでこの転写紙を実施例1と同様のヒー
トセット上りの織物に圧着し、210℃にて20秒の熱
処理を行い、染料を織物に昇華移行せしめ、比較例3の
製品を得た。
Next, this transfer paper was pressed onto a heat-set woven fabric similar to that used in Example 1 and heat-treated at 210 ° C. for 20 seconds to sublimate the dye into the woven fabric to obtain a product of Comparative Example 3. .

【0025】実施例1及び比較例1〜3で得られた製品
の滲み、ドットの荒さ、濃度を10人の専門検査員の目
視観察により評価した。結果を表1に示す。
The bleeding, dot roughness, and density of the products obtained in Example 1 and Comparative Examples 1 to 3 were evaluated by visual observation by 10 professional inspectors. The results are shown in Table 1.

【0026】[0026]

【表1】 滲 み : ◎ 滲みなし ○ 滲みほとんどなし △ 滲み若干有り × 滲み有り ドットの荒さ:○ ドット判別できない △ ドット若干判別できる × ドット判別できる 濃 度 : ○ 濃度高い △ 濃度若干低い × 濃度低い[Table 1] Bleeding: ◎ No bleeding ○ Almost no bleeding △ Some bleeding × Bleeding Dot roughness: ○ Dot discrimination is not possible △ Dot some discrimination is possible × Dot discrimination is possible Darkness: ○ High density △ Low density × Low density

【0027】表1から明らかなように、実施例1で得ら
れた製品は滲みがなく鮮明性に優れ、インクのドットが
見えず捺染品位が高いことがわかる。
As can be seen from Table 1, the product obtained in Example 1 is excellent in sharpness without bleeding, ink dots are not visible, and the printing quality is high.

【0028】[0028]

【発明の効果】以上詳述したように、本発明によれば卓
越した鮮明さと捺染品位を有する捺染製品が得られ、頗
る有用である。また、捺染に際して従来の一般的な捺染
におけるスクリーン枠等が不要であり、小ロット多品種
生産ができ、更にファッションの多様化に迅速に対応で
きるという利点を有する。
As described in detail above, according to the present invention, a printed product having excellent sharpness and printing quality can be obtained and is extremely useful. Further, in printing, there is no need for a screen frame or the like in conventional general printing, and it is possible to produce a large number of small lots and to quickly respond to diversification of fashion.

Claims (1)

【特許請求の範囲】[Claims] 【請求項1】 表面平滑で非浸透性のエンドレスベルト
上に熱昇華性染料を含む染料インクをインクジェット方
式にて付与し、次いでエンドレスベルト上の染料インク
を転写紙に吸収せしめ、溶媒除去後転写紙に付着した染
料を布帛へ転写させることを特徴とする布帛の捺染方
法。
1. A dye ink containing a heat sublimable dye is applied onto an endless belt having a smooth surface and a non-permeable surface by an inkjet method, and then the dye ink on the endless belt is absorbed by a transfer paper, and after transfer of a solvent, transfer is performed. A textile printing method, characterized in that a dye attached to paper is transferred to the textile.
JP4236488A 1992-08-11 1992-08-11 Fabric printing method Expired - Fee Related JP2994874B2 (en)

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Application Number Priority Date Filing Date Title
JP4236488A JP2994874B2 (en) 1992-08-11 1992-08-11 Fabric printing method

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JPH0657656A true JPH0657656A (en) 1994-03-01
JP2994874B2 JP2994874B2 (en) 1999-12-27

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Country Link
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Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0711867A1 (en) 1994-10-28 1996-05-15 Canon Kabushiki Kaisha Ink for ink-jet printing and the printing process therewith
WO2000004103A1 (en) * 1998-07-14 2000-01-27 Seiko Epson Corporation Sublimation transfer ink jet recording method and ink composition for use therein
JP2013014138A (en) * 1994-09-01 2013-01-24 Sawgrass Technologies Inc Permanent heat activated transfer printing process and apparatus for use in the same
JPWO2013125680A1 (en) * 2012-02-22 2015-07-30 パイロットインキ株式会社 Method for producing water-coloring laminate
US9302468B1 (en) 2014-11-14 2016-04-05 Ming Xu Digital customizer system and method
US9781307B2 (en) 2014-11-14 2017-10-03 Sawgrass Technologies, Inc. Networked digital imaging customization
US10419644B2 (en) 2014-11-14 2019-09-17 Sawgrass Technologies, Inc. Digital image processing network
US10827098B2 (en) 2015-11-02 2020-11-03 Sawgrass Technologies, Inc. Custom product imaging method
US10827097B2 (en) 2015-11-02 2020-11-03 Sawgrass Technologies, Inc. Product imaging

Cited By (14)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2013014138A (en) * 1994-09-01 2013-01-24 Sawgrass Technologies Inc Permanent heat activated transfer printing process and apparatus for use in the same
EP0711867A1 (en) 1994-10-28 1996-05-15 Canon Kabushiki Kaisha Ink for ink-jet printing and the printing process therewith
US5764261A (en) * 1994-10-28 1998-06-09 Canon Kabushiki Kaisha Ink for ink-jet printing and the printing process therewith
WO2000004103A1 (en) * 1998-07-14 2000-01-27 Seiko Epson Corporation Sublimation transfer ink jet recording method and ink composition for use therein
US6409330B1 (en) 1998-07-14 2002-06-25 Seiko Epson Corporation Sublimation transfer ink jet recording method and ink composition for use therein
JPWO2013125680A1 (en) * 2012-02-22 2015-07-30 パイロットインキ株式会社 Method for producing water-coloring laminate
US9302468B1 (en) 2014-11-14 2016-04-05 Ming Xu Digital customizer system and method
US9781307B2 (en) 2014-11-14 2017-10-03 Sawgrass Technologies, Inc. Networked digital imaging customization
US10075619B2 (en) 2014-11-14 2018-09-11 Sawgrass Technologies, Inc. Networked digital imaging customization
US10419644B2 (en) 2014-11-14 2019-09-17 Sawgrass Technologies, Inc. Digital image processing network
US10587777B2 (en) 2014-11-14 2020-03-10 Sawgrass Technologies, Inc. Digital image processing network
US10827098B2 (en) 2015-11-02 2020-11-03 Sawgrass Technologies, Inc. Custom product imaging method
US10827097B2 (en) 2015-11-02 2020-11-03 Sawgrass Technologies, Inc. Product imaging
US11503187B2 (en) 2015-11-02 2022-11-15 Sawgrass Technologies, Inc. Custom product imaging method

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