Antibacterial and deodorant functional fabric after-finishing process

文档序号:1732404 发布日期:2019-12-20 浏览:41次 中文

阅读说明:本技术 一种抗菌防臭功能面料后整理工艺 (Antibacterial and deodorant functional fabric after-finishing process ) 是由 朱海亮 王成意 姚彬 沈冬宇 沈楚良 于 2019-08-02 设计创作,主要内容包括:本发明公开了一种抗紫外线防火面料后整理工艺,其特征在于:包括以下步骤,前处理→染色→脱水→剖幅→成定,其中,前处理:用乳化去油剂TF-1152对坯布进行油污去除,80℃×20分钟,出水干净;染色:染色时加分散染料、抗紫外线剂2%,温度升到80℃保温10分钟,然后升到100℃保温10分钟,升到132℃保温30分钟,最后降温到50℃,洗水两道。该抗紫外线防火面料后整理工艺定型效果好,染色色牢度高。(The invention discloses an ultraviolet-resistant fireproof fabric after-finishing process, which is characterized by comprising the following steps of: the method comprises the following steps of pretreatment → dyeing → dehydration → slitting → determining, wherein the pretreatment comprises the following steps: removing oil stain of the grey cloth by using an emulsion degreaser TF-1152, multiplying 20 minutes at 80 ℃, and cleaning effluent; dyeing: during dyeing, 2 percent of disperse dye and anti-ultraviolet agent are added, the temperature is raised to 80 ℃ and kept for 10 minutes, then the temperature is raised to 100 ℃ and kept for 10 minutes, the temperature is raised to 132 ℃ and kept for 30 minutes, and finally the temperature is lowered to 50 ℃ and washed with water twice. The ultraviolet-resistant fireproof fabric after-finishing process has good shaping effect and high dyeing color fastness.)

1. An antibacterial and deodorant functional fabric after-finishing process is characterized in that: comprises the following steps of pretreatment → dyeing → dehydration → cutting the fabric → shaping, wherein,

pretreatment: removing oil stain of the grey cloth by using an emulsion degreaser TF-1152, multiplying 20 minutes at 80 ℃, and cleaning effluent;

dyeing: adding dye, heating to 80 deg.C, keeping the temperature for 10 min, heating to 100 deg.C, keeping the temperature for 10 min, heating to 132 deg.C, keeping the temperature for 30 min, and cooling to 60 deg.C;

and (3) dehydrating: drying the dyed cloth;

slitting: splitting the cylindrical cloth to facilitate shaping;

the finished product is formed at the temperature of 150 ℃ and the vehicle speed is 28 yards, 6 percent of antibacterial agent and 0.5 percent of strong adhesive are added.

The technical field is as follows:

the invention relates to the field of textile printing and dyeing, in particular to an antibacterial and deodorant functional fabric after-finishing process.

Background art:

The invention content is as follows:

the invention aims to solve the technical problem of providing an antibacterial and deodorant functional fabric after-finishing process with a good shaping effect.

The technical scheme of the invention is to provide an antibacterial and deodorant functional fabric after-finishing process, which comprises the following steps of pretreatment → dyeing → dehydration → slitting → finalizing, wherein,

pretreatment: removing oil stain of the grey cloth by using an emulsion degreaser TF-1152, multiplying 20 minutes at 80 ℃, and cleaning effluent;

dyeing: adding dye, heating to 80 deg.C, keeping the temperature for 10 min, heating to 100 deg.C, keeping the temperature for 10 min, heating to 132 deg.C, keeping the temperature for 30 min, and cooling to 60 deg.C;

and (3) dehydrating: drying the dyed cloth;

slitting: splitting the cylindrical cloth to facilitate shaping;

the finished product is formed at the temperature of 150 ℃ and the vehicle speed is 28 yards, 6 percent of antibacterial agent and 0.5 percent of strong adhesive are added.

The invention has the beneficial effects that: the setting effect is good, and the dyeing color is firm and high.

The specific implementation mode is as follows:

the invention will be further illustrated with reference to specific embodiments:

an after-finishing process of an antibacterial and deodorant functional fabric comprises the following steps of pretreatment → dyeing → dehydration → slitting → fixing, wherein,

pretreatment: removing oil stain of the grey cloth by using an emulsion degreaser TF-1152, multiplying 20 minutes at 80 ℃, and cleaning effluent;

dyeing: adding dye, heating to 80 deg.C, keeping the temperature for 10 min, heating to 100 deg.C, keeping the temperature for 10 min, heating to 132 deg.C, keeping the temperature for 30 min, and cooling to 60 deg.C;

and (3) dehydrating: drying the dyed cloth;

slitting: splitting the cylindrical cloth to facilitate shaping;

setting at 150 deg.c and setting speed of 28 yards, adding nano zinc oxide 6 wt% and strong adhesive 0.5 wt%, and the strong adhesive is water soluble acrylate copolymer dispersion.

The invention has the beneficial effects that: the setting effect is good, and the dyeing color fastness is high.

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