CN107100000A - 一种抗菌三防复合功能的提花色织面料的处理工艺 - Google Patents
一种抗菌三防复合功能的提花色织面料的处理工艺 Download PDFInfo
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Abstract
本发明公开了一种抗菌三防复合功能的提花色织面料的处理工艺,经过多元羧酸前处理工艺、纳米处理液处理工艺和三防整理剂处理工艺三个步骤,完成对提花色织面料的处理工艺;本发明的优点在于:本发明通过采用多元羧酸前处理的方法,增加了提花色织面料中的纤维的可反应基团羧基,使得后续的纳米粉体或纳米溶胶可以与之发生反应,从而提高了后续纳米整理剂的固着性能;通过纳米粉体分散液或者纳米水溶胶构筑粗糙表面,继而与环保型三防整理剂相结合,有效实现了提花色织面料的抗菌抗水抗油防污的目的。
Description
技术领域
本发明属于纺织面料生产技术领域,具体涉及一种抗菌三防复合功能的提花色织面料的处理工艺。
背景技术
随着生活水平的提高,人们越来越关心健康和清洁问题,对于纺织品的要求也不再仅仅局限于穿着装饰,对卫生清洁保健等功能的需求不断提高。
在日常生活中,经常会碰到许多令人不愉快的气味,例如汗臭味、体臭味、香烟味及油烟味等。这些臭气不仅味道难闻,而且还可能会危害人体生理机能,给人们的身体健康带来威胁。目前,主要有两种途径可以开发具有除臭功能的纺织品,一是直接发出具有除臭功能的纤维;二是对纺织品进行除臭整理。纺织品的除臭整理是指将除臭剂通过浸渍吸附、化学反应、树脂固着、涂层等方式整理到纺织品上。与除臭整理的方法相比,除臭功能纤维具有更强的除臭耐久性,但是研发和生产成本较高。纺织品除臭整理的方法和机理主要有:感觉除臭法、物理除臭法、化学除臭法、生物除臭法等。然而,目前的许多除臭整理存在着除臭剂着色、除臭能力持续性差、影响纺织品的物理性能和染色性能等问题。
纺织品在人体穿着、使用过程中,不小心会沾水、沾油,而且还会沾污很多汗液、皮脂以及其他各种人体分泌物,这些污物不仅影响人们的使用,而且是微生物繁殖的良好环境。随着人们生活节奏的加快,以及追求高质量生活的要求,具有自清洁能力的纺织品应运而生。
发明内容
本发明的目的在于针对现有技术的不足,现提供一种抗菌三防复合功能的提花色织面料的处理工艺。
为解决上述技术问题,本发明采用的技术方案为:一种抗菌三防复合功能的提花色织面料的处理工艺,其创新点在于:经过多元羧酸前处理工艺、纳米处理液处理工艺和三防整理剂处理工艺三个步骤,完成对提花色织面料的处理工艺;具体步骤如下:
(1)多元羧酸前处理工艺:将提花色织面料经过浸轧和烘焙完成多元羧酸前处理工艺,所述烘焙温度为160-180℃,所述烘焙时间为3-5min;
(2)纳米处理液处理工艺:将处理后的面料放入纳米处理液中进行浸轧,使得提花面料形成粗糙表面,所述面料与纳米处理液的体积比为1:20,所述纳米处理液为纳米粉体分散液或纳米水溶胶;
(3)三防整理剂处理工艺:将纳米处理液处理后的提花面料进行浸轧,所述浸轧液为三防整理剂,所述三防整理剂的量为20-40g/L,浸轧后的提花色织面料在100℃环境下进行烘干,然后进行焙烘,所述焙烘温度为150℃,焙烘时间为3min。
进一步的,所述多元羧酸前处理工艺步骤中的浸轧液的配方为:50-60g/L的多元羧酸,20-30g/L的次亚磷酸钠和水。
进一步的,所述纳米处理液处理工艺步骤中的纳米粉体分散液的配方为:1-5g/L的纳米二氧化钛,0.7g/L的分散剂和水。
进一步的,所述纳米处理液处理工艺步骤中的纳米水溶胶的配方为:乙醇、钛酸丁酯和水,所述乙醇、钛酸丁酯和水的体积比为20:4:1。
本发明的有益效果如下:
(1)本发明通过采用多元羧酸前处理的方法,增加了提花色织面料中的纤维的可反应基团羧基,使得后续的纳米粉体或纳米溶胶可以与之发生反应,从而提高了后续纳米整理剂的固着性能;
(2)本发明通过纳米粉体分散液或者纳米水溶胶构筑粗糙表面,继而与环保型三防整理剂相结合,有效实现了提花色织面料的抗菌抗水抗油防污的目的。
具体实施方式
以下由特定的具体实施例说明本发明的实施方式,熟悉此技术的人士可由本说明书所揭露的内容轻易地了解本发明的其他优点及功效。
实施例1
一种抗菌三防复合功能的提花色织面料的处理工艺,经过多元羧酸前处理工艺、纳米处理液处理工艺和三防整理剂处理工艺三个步骤,完成对提花色织面料的处理工艺;具体步骤如下:
(1)多元羧酸前处理工艺:将提花色织面料经过浸轧和烘焙完成多元羧酸前处理工艺,烘焙温度为160℃,烘焙时间为3min,浸轧液的配方为:50g/L的多元羧酸,20g/L的次亚磷酸钠和水;
(2)纳米处理液处理工艺:将处理后的面料放入纳米处理液中进行浸轧,使得提花面料形成粗糙表面,面料与纳米处理液的体积比为1:20,纳米处理液为纳米粉体分散液或纳米水溶胶,纳米粉体分散液的配方为:1-5g/L的纳米二氧化钛,0.7g/L的分散剂和水;纳米水溶胶的配方为:乙醇、钛酸丁酯和水,所述乙醇、钛酸丁酯和水的体积比为20:4:1;
(3)三防整理剂处理工艺:将纳米处理液处理后的提花面料进行浸轧,浸轧液为三防整理剂,三防整理剂的量为20g/L,浸轧后的提花色织面料在100℃环境下进行烘干,然后进行焙烘,焙烘温度为150℃,焙烘时间为3min。
在本实施例下处理的提花色织面料的抑菌率为93%,防水80分,防油3级,易去污3级。
实施例2
一种抗菌三防复合功能的提花色织面料的处理工艺,经过多元羧酸前处理工艺、纳米处理液处理工艺和三防整理剂处理工艺三个步骤,完成对提花色织面料的处理工艺;具体步骤如下:
(4)多元羧酸前处理工艺:将提花色织面料经过浸轧和烘焙完成多元羧酸前处理工艺,烘焙温度为180℃,烘焙时间为5min,浸轧液的配方为:60g/L的多元羧酸,30g/L的次亚磷酸钠和水;
(5)纳米处理液处理工艺:将处理后的面料放入纳米处理液中进行浸轧,使得提花面料形成粗糙表面,面料与纳米处理液的体积比为1:20,纳米处理液为纳米粉体分散液或纳米水溶胶,纳米粉体分散液的配方为:1-5g/L的纳米二氧化钛,0.7g/L的分散剂和水;纳米水溶胶的配方为:乙醇、钛酸丁酯和水,所述乙醇、钛酸丁酯和水的体积比为20:4:1;
(6)三防整理剂处理工艺:将纳米处理液处理后的提花面料进行浸轧,浸轧液为三防整理剂,三防整理剂的量为40g/L,浸轧后的提花色织面料在100℃环境下进行烘干,然后进行焙烘,焙烘温度为150℃,焙烘时间为3min。
在本实施例下处理的提花色织面料的抑菌率为94%,防水82分,防油3级,易去污3级。
实施例3
一种抗菌三防复合功能的提花色织面料的处理工艺,经过多元羧酸前处理工艺、纳米处理液处理工艺和三防整理剂处理工艺三个步骤,完成对提花色织面料的处理工艺;具体步骤如下:
(7)多元羧酸前处理工艺:将提花色织面料经过浸轧和烘焙完成多元羧酸前处理工艺,烘焙温度为170℃,烘焙时间为4min,浸轧液的配方为:55g/L的多元羧酸,25g/L的次亚磷酸钠和水;
(8)纳米处理液处理工艺:将处理后的面料放入纳米处理液中进行浸轧,使得提花面料形成粗糙表面,面料与纳米处理液的体积比为1:20,纳米处理液为纳米粉体分散液或纳米水溶胶,纳米粉体分散液的配方为:1-5g/L的纳米二氧化钛,0.7g/L的分散剂和水;纳米水溶胶的配方为:乙醇、钛酸丁酯和水,所述乙醇、钛酸丁酯和水的体积比为20:4:1;
(9)三防整理剂处理工艺:将纳米处理液处理后的提花面料进行浸轧,浸轧液为三防整理剂,三防整理剂的量为30g/L,浸轧后的提花色织面料在100℃环境下进行烘干,然后进行焙烘,焙烘温度为150℃,焙烘时间为3min。
在本实施例下处理的提花色织面料的抑菌率为95%,防水85分,防油3级,易去污3级。
本发明通过采用多元羧酸前处理的方法,增加了提花色织面料中的纤维的可反应基团羧基,使得后续的纳米粉体或纳米溶胶可以与之发生反应,从而提高了后续纳米整理剂的固着性能;通过纳米粉体分散液或者纳米水溶胶构筑粗糙表面,继而与环保型三防整理剂相结合,有效实现了提花色织面料的抗菌抗水抗油防污的目的。
上述实施例只是本发明的较佳实施例,并不是对本发明技术方案的限制,只要是不经过创造性劳动即可在上述实施例的基础上实现的技术方案,均应视为落入本发明专利的权利保护范围内。
Claims (4)
1.一种抗菌三防复合功能的提花色织面料的处理工艺,其特征在于:经过多元羧酸前处理工艺、纳米处理液处理工艺和三防整理剂处理工艺三个步骤,完成对提花色织面料的处理工艺;具体步骤如下:
多元羧酸前处理工艺:将提花色织面料经过浸轧和烘焙完成多元羧酸前处理工艺,所述烘焙温度为160-180℃,所述烘焙时间为3-5min;
纳米处理液处理工艺:将处理后的面料放入纳米处理液中进行浸轧,使得提花面料形成粗糙表面,所述面料与纳米处理液的体积比为1:20,所述纳米处理液为纳米粉体分散液或纳米水溶胶;
三防整理剂处理工艺:将纳米处理液处理后的提花面料进行浸轧,所述浸轧液为三防整理剂,所述三防整理剂的量为20-40g/L,浸轧后的提花色织面料在100℃环境下进行烘干,然后进行焙烘,所述焙烘温度为150℃,焙烘时间为3min。
2.根据权利要求1所述的一种抗菌三防复合功能的提花色织面料的处理工艺,其特征在于:所述多元羧酸前处理工艺步骤中的浸轧液的配方为:50-60g/L的多元羧酸,20-30g/L的次亚磷酸钠和水。
3.根据权利要求1所述的一种抗菌三防复合功能的提花色织面料的处理工艺,其特征在于:所述纳米处理液处理工艺步骤中的纳米粉体分散液的配方为:1-5g/L的纳米二氧化钛,0.7g/L的分散剂和水。
4.根据权利要求1所述的一种抗菌三防复合功能的提花色织面料的处理工艺,其特征在于:所述纳米处理液处理工艺步骤中的纳米水溶胶的配方为:乙醇、钛酸丁酯和水,所述乙醇、钛酸丁酯和水的体积比为20:4:1。
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