序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
41 繊維反応性アゾ染料の混合物、それらの調製、及びそれらの使用 JP2017038611 2017-03-01 JP2017165952A 2017-09-21 グルント、クレメンス; ムーガトロイド、アドリアン; ハンクスレーデン、ウーリッヒ; ホッペ、マンフレート; ヴァインガルテン、ウーリッヒ; ペデモンテ、ロナルド; ロペズ−トレンテラ、アントニオ
【課題】高い固着イールド及び色強度を有しながらも、さらに繊維上に固着されていない部分は容易に洗浄除去され、ポリアミドを汚すことが少ない染料混合物を提供。
【解決手段】式(I)で表される1種又は複数種の反応性染料、及び特定のジスアゾ染料の1種又は複数種の反応性染料の混合物、それらを調製するためのプロセス、並びにヒドロキシル含有材料及びカルボキサミド含有材料を染色及び捺染するためのそれらの使用。好ましくは、前記染料混合物を含む、インクジェットプロセスによるデジタル織物捺染のためのインキ。

(D1及びD2は各々独立に置換/非置換のフェニル基;MはH、アルカリ金属又は1当量のアルカリ土類金属)
【選択図】なし
42 Method of dyeing malemine fiber product, and melamine fiber product dyed by the method JP11570398 1998-04-24 JPH10317286A 1998-12-02 GADOURY DEAN R
PROBLEM TO BE SOLVED: To obtain a melamine fiber product that has a chambray tone appearance and good fabric hand by dying a fabric blend product substantially comprising a melamine fiber and a substantially undyeable fiber in the dyeing bath. SOLUTION: The melamine fiber product that comprises a blend of 20-100 wt.% of melamine fiber with a substantially undyeable fiber in the dyeing bath as aramide fiber, glass fiber, carbon fiber, poly(amide)imide fiber or ceramic fiber in the form of woven fabric, nonwoven fabric or knitted fabric is dyed in a dyeing bath containing 1 or more kinds of dyes selected from the group consisting of direct dyes, acidic dyes, metal-containing acidic dyes and dispersion dyes at a temp. of 95-150 deg.C, preferably in a dispersion dye bath at a temp. of 110-150 deg.C to give the objective dyed product having Chambray tone appearance. Or, blend fabric of protein fiber as wool or silk with melamine fiber are dyed in a bath containing 1 or more kinds of dispersion byes at a temp. of 95-110 deg.C.
43 Production of colored resin film for microcolor filter JP11941283 1983-06-29 JPS6010206A 1985-01-19 AOZUKA YASUO; TOMIYAMA SUSUMU; MATSUMOTO KENJI; FUJITA SHINSAKU
PURPOSE:To improve spectral transmission characteristic by treating a resin film with a bath contg. a pH adjuster in the stage of dyeing said film with a cyan acid dye. CONSTITUTION:A dyeing bath or rinsing bath contg. a pH adjuster consisting of a non-volatile org. base or non-volatile acid is used in a process for dipping a hardened resin film of a microcolor filter for a color image pickup device and coloring said film. The pH adjuster has >=150 deg.C b.p. and remains in the film even after drying. Said adjuster is exeamplified by amino alcohol, pyridine, diamine, etc. A cyan acid dye (phthalocyanine acid dye) involves coloring in an acidic dye but the environmental pH in the film is made acidic and the spectral transmission characteristic thereof decreases. Such decrease is prevented by using the bath contg. the pH adjuster.
44 Colored resin film for microcolor filter JP11941183 1983-06-29 JPS6010205A 1985-01-19 AOZUKA YASUO; TOMIYAMA SUSUMU; MATSUMOTO KENJI; FUJITA SHINSAKU
PURPOSE:To improve spectral transmission characteristic by incorporating a pH adjuster in a resin film colored by a cyan acid dye. CONSTITUTION:A pH adjuster consisting of a non-volatile org. base or non-volatile acid is incorporated in a resin film which is colored by a cyan acid dye such as phthalocyanine acid dye or the like and is used as a microcolor filter for a color image pickup device. The pH adjuster has >=150 deg.C b.p. and is exemplified by amino alcohol, pyridine, diamine, sulfuric acid, nitric acid, carboxylic acid, etc. The pH adjuster is added to a rinsing bath to adjust the pH to about 3-4.5. Better dyeability is obtd. by performing dyeing in an acidic bath but there is a tendency toward a decrease in the spectral transmission characteristic. Such decrease is obviated by adjusting the pH of the resin film with the pH adjuster incorporated into the rinsing bath.
45 JPS59502113A - JP50005684 1983-11-10 JPS59502113A 1984-12-20
46 Dyeing of mouldings containing resins of urea formaldehyde or melamine formaldehyde JP14640276 1976-12-06 JPS5271572A 1977-06-15 HANSU DORESURA
47 적외선 위장 나일론 직물의 제조방법 KR1020130087102 2013-07-24 KR1020150011912A 2015-02-03 강중현
The present invention relates to a method for manufacturing an infrared camouflaging nylon fabric, which makes it difficult to discriminate and can be concealed from an infrared ray monitoring device by having reflectivity which is same or similar with surroundings in infrared wavelength region (600-1500 nm) when expressing color with visible ray in the daytime and measuring the same by the infrared ray monitoring device at night. The present invention comprises the steps of: manufacturing a dyeing solution by mixing an acidic dyestuff, an additive, and an infrared absorbent with cold water in an immersion tank; soaking a nylon fabric into the dyeing solution of the immersion tank, picking up the same, and pre-drying the nylon fabric picked up under high temperature using a first drying cylinder; transporting the nylon fabric inputted inside a steam heat fixing device supplying steam in zigzag, and fixing the acidic dyestuff to the nylon fabric using steam heat while transporting; inputting the nylon fabric inside a dry heat fixing device supplying air of high temperature corresponding to the freezing point of a binder, and fixing the infrared absorbent to the nylon fabric; washing the nylon fabric to remove impurities and non-fixation products; and drying the nylon fabric washed at low temperature using a second drying cylinder.
48 콩섬유를 함유하는 다층 구조의 복합 섬유 교직물 KR1020050079893 2005-08-30 KR1020070027930A 2007-03-12 최재홍; 서운영
A complex mixture fabric with a multi-layer structure having a soybean protein fiber is provided to use a multi-layer structure yarn as a weft and to have the enhanced functionality. The complex mixture fabric includes a soybean fiber and uses a multi-layer structure yarn with two kinds or more as a weft. The soybean fiber, nylon and polyurethane are waved together as wefts so that the complex mixture fabric is fabricated. The soybean fiber, cotton and polyurethane are waved together as wefts so that the complex mixture fabric is also fabricated. The soybean fiber is dyed by the hetero-bifunctional reactive dyes. The complex mixture fabric is dyed by reactive dyes and acid dyes as an one-bath and two-stage dyeing manner.
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