CN107916577A - 一种防水透湿涂层面料的制备方法 - Google Patents

一种防水透湿涂层面料的制备方法 Download PDF

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CN107916577A
CN107916577A CN201711237683.2A CN201711237683A CN107916577A CN 107916577 A CN107916577 A CN 107916577A CN 201711237683 A CN201711237683 A CN 201711237683A CN 107916577 A CN107916577 A CN 107916577A
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王学珍
王丽佳
王月忠
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Suzhou Embroidery Art World Embroidery Technology Co Ltd
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Abstract

本发明公开了一种防水透湿涂层面料的制备方法,先将面料的表面洗净烘干后,置于低温等离子体装置中,在氧气氛围下,低温等离子体处理得到预处理的织物;再将面料在定型机的带动下通过浸渍液,完成浸渍,然后再通过轧辊轧出多余浸渍液;所述轧余率为80‑89%;最后将浸轧后的面料在定型机的带动下,依次经过8个烘箱,完成定型步骤。本发明提供了一种防水透湿涂层面料的制备方法,该方法在膜上形成透湿微孔和其在膜中良好的导湿性能,通过双重透湿来改善涂层织物的透湿性,同时赋予面料良好的耐水洗性,具有良好的市场推广价值。

Description

一种防水透湿涂层面料的制备方法
技术领域
本发明涉及一种防水透湿涂层面料的制备方法,属于纺织加工领域。
技术背景
面料后整理是通过化学或物理的主法改善面料的外观和手感、增进服用性能或赋予特殊功能的工艺过程,是纺织品“锦上添花”的加工过程。现在面料后整理技术的发展朝着产品功能化、差别化、高档化,加工工艺多样化、深度化方向发展,并强调提高产品的服用性能,增加产品的附加值。近几年来,不断从其他技术领域引进借鉴各种新技术,以提高加工深度,获得良好的整理产品。随着人类对环境污染和破坏的关注,对健康越来越重视,提倡“低碳”经济,后整理技术要求进行环保“绿色”加工,生产“清洁”、“低碳”的纺织产品。面料的基本后整理方法有:稳定尺寸、改善外观的整理方法、改善手感优化性能的整理方法、使面料获得多功能、高附加值的整理方法、使面料高级化的整理方法、满足特殊要求的整理方法。
防水涂层织物具有良好的防雨防风作用,在服装领域具有很高的市场需求。但是,用普通防水涂层织物制作的服装不透气,不利于人体排出水汽的散发,造成人体体表湿度大幅度升高,以至于夏天穿着有闷热感,冬天穿着有湿冷感。因此,研制开发既防水又透湿的涂层织物,一直是各国科技人员关注的热点。而随着环境保护和能源综合利用问题的提出,整理剂向着低能耗、无污染的方向发展。由于不同的整理剂会产生不同的效果,因此选择适宜整理剂及其添加剂助剂等,优化工艺条件,是提高面料防水透湿整理效果的关键。只有通过选用合适的整理剂和添加剂,进行工艺优化,对面料防水透湿整理,才可以达到高级服饰的要求。
发明内容
本发明的目的在于针对现有技术的不足,提供一种防水透湿涂层面料的制备方法。
本发明是通过以下技术方案实现的: 一种防水透湿涂层面料的制备方法,包括以下步骤:
(1)将面料的表面洗净烘干后,置于低温等离子体装置中,在氧气氛围下,低温等离子体处理得到预处理的织物;
(2)将面料在定型机的带动下通过浸渍液,完成浸渍,然后再通过轧辊轧出多余浸渍液;所述浸轧步骤中的浸渍液由如下重量份数的组分组成:七水亚硫酸钠3-8份、苯丙乳液15-20份、含羟烃基聚硅氧烷2-6份、环氧氯丙烷2-6份、丙二醇10-20份、茶皂素3-6份、棕榈酸异辛酯5-8份、异噻唑啉酮5-8份、1,2-苯并异噻唑啉-3-酮2-7份和去离子水55-65份,所述轧余率为80-89%;
(3)将浸轧后的面料在定型机的带动下,依次经过8个烘箱,完成定型步骤;所述定型步骤中的8个烘箱的温度设定不同参数值,从第1个烘箱到第8个烘箱的温度依次为120℃、130℃、140℃、145℃、155℃、160℃、170℃、155℃;所述定型机的车速为25-45m/min。
进一步的,所述步骤(1)中,低温等离子体处理的功率为350-500W,时间为30-60s。
进一步的,所述浸轧步骤中的浸渍液的ph值控制在5.0-6.5。
进一步的,所述浸轧步骤中的浸渍液由如下重量份数的组分组成:七水亚硫酸钠5.5份、苯丙乳液18份、含羟烃基聚硅氧烷4份、环氧氯丙烷4份、丙二醇15份、茶皂素4.5份、棕榈酸异辛酯7份、异噻唑啉酮6份、1,2-苯并异噻唑啉-3-酮3.5份和去离子水60份。
进一步的,所述轧余率为85%。
有益效果:本发明提供了一种防水透湿涂层面料的制备方法,该方法在膜上形成透湿微孔和其在膜中良好的导湿性能,通过双重透湿来改善涂层织物的透湿性,同时赋予面料良好的耐水洗性,具有良好的市场推广价值。
具体实施方式
本发明所述的实例是对本发明的说明而不能限制本发明,在与本发明相当的含义和范围内的任何改变和调整,都应认为是在本发明的范围内。
实施例1
一种防水透湿涂层面料的制备方法,包括以下步骤:
(1)将面料的表面洗净烘干后,置于低温等离子体装置中,在氧气氛围下,低温等离子体处理得到预处理的织物;低温等离子体处理的功率为350-500W,时间为30-60s。
(2)将面料在定型机的带动下通过浸渍液,完成浸渍,然后再通过轧辊轧出多余浸渍液;所述浸轧步骤中的浸渍液由如下重量份数的组分组成:七水亚硫酸钠3份、苯丙乳液15份、含羟烃基聚硅氧烷2份、环氧氯丙烷2份、丙二醇10份、茶皂素3份、棕榈酸异辛酯5份、异噻唑啉酮5份、1,2-苯并异噻唑啉-3-酮2份和去离子水55份,所述轧余率为80-89%;浸轧步骤中的浸渍液的ph值控制在5.0-6.5。
(3)将浸轧后的面料在定型机的带动下,依次经过8个烘箱,完成定型步骤;所述定型步骤中的8个烘箱的温度设定不同参数值,从第1个烘箱到第8个烘箱的温度依次为120℃、130℃、140℃、145℃、155℃、160℃、170℃、155℃;所述定型机的车速为25-45m/min。
实施例2
一种防水透湿涂层面料的制备方法,包括以下步骤:
(1)将面料的表面洗净烘干后,置于低温等离子体装置中,在氧气氛围下,低温等离子体处理得到预处理的织物;低温等离子体处理的功率为350-500W,时间为30-60s。
(2)将面料在定型机的带动下通过浸渍液,完成浸渍,然后再通过轧辊轧出多余浸渍液;所述浸轧步骤中的浸渍液由如下重量份数的组分组成:七水亚硫酸钠8份、苯丙乳液20份、含羟烃基聚硅氧烷6份、环氧氯丙烷6份、丙二醇20份、茶皂素6份、棕榈酸异辛酯8份、异噻唑啉酮8份、1,2-苯并异噻唑啉-3-酮7份和去离子水65份,所述轧余率为80-89%;浸轧步骤中的浸渍液的ph值控制在5.0-6.5。
(3)将浸轧后的面料在定型机的带动下,依次经过8个烘箱,完成定型步骤;所述定型步骤中的8个烘箱的温度设定不同参数值,从第1个烘箱到第8个烘箱的温度依次为120℃、130℃、140℃、145℃、155℃、160℃、170℃、155℃;所述定型机的车速为25-45m/min。
实施例3
一种防水透湿涂层面料的制备方法,包括以下步骤:
(1)将面料的表面洗净烘干后,置于低温等离子体装置中,在氧气氛围下,低温等离子体处理得到预处理的织物;低温等离子体处理的功率为350-500W,时间为30-60s。
(2)将面料在定型机的带动下通过浸渍液,完成浸渍,然后再通过轧辊轧出多余浸渍液;所述浸轧步骤中的浸渍液由如下重量份数的组分组成:七水亚硫酸钠5.5份、苯丙乳液18份、含羟烃基聚硅氧烷4份、环氧氯丙烷4份、丙二醇15份、茶皂素4.5份、棕榈酸异辛酯7份、异噻唑啉酮6份、1,2-苯并异噻唑啉-3-酮3.5份和去离子水60份,所述轧余率为80-89%;浸轧步骤中的浸渍液的ph值控制在5.0-6.5。
(3)将浸轧后的面料在定型机的带动下,依次经过8个烘箱,完成定型步骤;所述定型步骤中的8个烘箱的温度设定不同参数值,从第1个烘箱到第8个烘箱的温度依次为120℃、130℃、140℃、145℃、155℃、160℃、170℃、155℃;所述定型机的车速为25-45m/min。

Claims (5)

1.一种防水透湿涂层面料的制备方法,其特征在于所述方法包括以下步骤:
(1)将面料的表面洗净烘干后,置于低温等离子体装置中,在氧气氛围下,低温等离子体处理得到预处理的织物;
(2)将面料在定型机的带动下通过浸渍液,完成浸渍,然后再通过轧辊轧出多余浸渍液;所述浸轧步骤中的浸渍液由如下重量份数的组分组成:七水亚硫酸钠3-8份、苯丙乳液15-20份、含羟烃基聚硅氧烷2-6份、环氧氯丙烷2-6份、丙二醇10-20份、茶皂素3-6份、棕榈酸异辛酯5-8份、异噻唑啉酮5-8份、1,2-苯并异噻唑啉-3-酮2-7份和去离子水55-65份,所述轧余率为80-89%;
(3)将浸轧后的面料在定型机的带动下,依次经过8个烘箱,完成定型步骤;所述定型步骤中的8个烘箱的温度设定不同参数值,从第1个烘箱到第8个烘箱的温度依次为120℃、130℃、140℃、145℃、155℃、160℃、170℃、155℃;所述定型机的车速为25-45m/min。
2.根据权利要求1所述的一种防水透湿涂层面料的制备方法,其特征在于:所述浸轧步骤中的浸渍液由如下重量份数的组分组成:七水亚硫酸钠5.5份、苯丙乳液18份、含羟烃基聚硅氧烷4份、环氧氯丙烷4份、丙二醇15份、茶皂素4.5份、棕榈酸异辛酯7份、异噻唑啉酮6份、1,2-苯并异噻唑啉-3-酮3.5份和去离子水60份。
3.根据权利要求1所述的一种防水透湿涂层面料的制备方法,其特征在于:所述步骤(1)中,低温等离子体处理的功率为350-500W,时间为30-60s。
4.根据权利要求1所述的一种防水透湿涂层面料的制备方法,其特征在于:所述浸轧步骤中的浸渍液的ph值控制在5.0-6.5。
5.根据权利要求1所述的一种防水透湿涂层面料的制备方法,其特征在于:所述轧余率为85%。
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