CN110923922A - 一种可应用于运动服饰的吸湿排汗棉纺织品的制作工艺 - Google Patents

一种可应用于运动服饰的吸湿排汗棉纺织品的制作工艺 Download PDF

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CN110923922A
CN110923922A CN201911384290.3A CN201911384290A CN110923922A CN 110923922 A CN110923922 A CN 110923922A CN 201911384290 A CN201911384290 A CN 201911384290A CN 110923922 A CN110923922 A CN 110923922A
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antibacterial
flax
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晏文书
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Yiwu Fanluowei Technology Co Ltd
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    • D04BRAIDING; LACE-MAKING; KNITTING; TRIMMINGS; NON-WOVEN FABRICS
    • D04BKNITTING
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Abstract

本发明公开了一种可应用于运动服饰的吸湿排汗棉纺织品的制作工艺,包括如下步骤:S1:对亚麻进行脱胶处理;S2:对棉纤维以及亚麻进行抗菌预处理;S3:对完成抗菌预处理的将棉纤维、亚麻和吸湿排汗纤维按一定混纺比进行初步混合;S4:经开清棉、梳棉、并条、粗纱、气流纺纱后制得混纺吸排纱线;S5:制备纳米银抗菌纱线;S6:将纳米银抗菌纱线和混纺吸排纱线交织成双面网眼针织面料;本发明将棉与亚麻按照合理的配比进行混纺,能改善亚麻面料粗硬的缺点,结合吸湿排汗纤维,使得纺织品同时具有吸湿、透气、抗菌等特点,其制备方法简单、可靠,适合大规模工业化生产。

Description

一种可应用于运动服饰的吸湿排汗棉纺织品的制作工艺
技术领域
本发明涉及运动服饰技术领域,具体为一种可应用于运动服饰的吸湿排汗棉纺织品的制作工艺。
背景技术
近年来,人们对服装面料的舒适性、健康性、安全性和环保性等要求越来越高,随着人们在户外活动时间的增加,休闲服与运动服相互渗透和融为一体的趋势也日益受广大消费者的青睐,这类服装的面料,既要求有良好的舒适性,又要求在尽情活动时,一旦出现汗流浃背情况,服装不会粘贴皮肤而产生冷湿感;棉织物因具有较好的吸湿透气性,常为此类服装面料首选,但其散发水分速度慢,纤维大量吸湿后横向溶胀,而使纱线之间的空隙闭合,汗水和湿气无法向外扩散,织物随之潮湿闷热,容易黏贴于皮肤上,且棉织物很容易受到微生物的侵袭,在湿热和有其食物源存在的情况下,微生物在纺织品内迅速繁殖,结果使纺织品受损,导致穿着者感到不适,有时还会产生恶臭。
发明内容
本发明的目的在于提供一种可应用于运动服饰的吸湿排汗棉纺织品的制作工艺,以解决上述背景技术中提出的现有的棉纺织品存在的问题。
为实现上述目的,本发明提供如下技术方案:
一种可应用于运动服饰的吸湿排汗棉纺织品的制作工艺,包括如下步骤:
S1:对亚麻进行脱胶处理;
S2:对棉纤维以及亚麻进行抗菌预处理;
S3:对完成抗菌预处理的将棉纤维、亚麻和吸湿排汗纤维按一定混纺比进行初步混合;
S4:经开清棉、梳棉、并条、粗纱、气流纺纱后制得混纺吸排纱线;
S5:制备纳米银抗菌纱线;
S6:将纳米银抗菌纱线和混纺吸排纱线交织成双面网眼针织面料。
优选的,步骤S2中棉纤维以及亚麻进行抗菌预处理包括如下步骤:
A1:制备抗菌整理剂;
A2:将棉纤维以及亚麻浸入A1中的抗菌整理剂中,进行抗菌处理;
A3:取出步骤A2中经抗菌处理的棉纤维及亚麻,经干燥得到本发明抗菌棉纤维及亚麻。
优选的,抗菌整理剂包括如下重量份的组分:枯草杆菌素10-15份、多粘菌素E10-15份、活性纳米氧化锌2-8份、壳聚糖溶液25-28份。
优选的,抗菌整理剂包括如下重量份的组分:枯草杆菌素13份、多粘菌素E12份、活性纳米氧化锌6份、壳聚糖溶液27份。
优选的,所述棉纤维、亚麻和吸湿排汗纤维的质量比为(40-45):(20-25):(15-35)。
优选的,纳米银抗菌纱线为由含有纳米银的异型涤纶纤维和所述镀银短纤维纺纱而成的。
其中,镀银短纤维采用银氨溶液还原法进行镀银,为本领域常规的方法和条件,含有纳米银的异型涤纶纤维的异型结构较佳地为十字型、三角型、丫形、五角形、三叶形、四叶形、五叶形、扇形或中空形。所述含有纳米银的异型涤纶纤维中,所述纳米银的含量较佳地为3900-6000mg/kg。
优选的,纳米银抗菌纱线为含有纳米银的涤纶长丝。
其中,所述含有纳米银的涤纶长丝为本领域常规的含有纳米银的涤纶长丝,一般是通过将纳米银PET涤纶抗菌母粒进行纺丝得到。
与现有技术相比,本发明的有益效果是:本发明将棉与亚麻按照合理的配比进行混纺,能改善亚麻面料粗硬的缺点,结合吸湿排汗纤维,使得纺织品同时具有吸湿、透气、抗菌等特点,其制备方法简单、可靠,适合大规模工业化生产。
具体实施方式
下面将结合本发明实施例中,对本发明技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
实施例1
本发明提供一种技术方案:一种可应用于运动服饰的吸湿排汗棉纺织品的制作工艺,包括如下步骤:
S1:对亚麻进行脱胶处理;
S2:对棉纤维以及亚麻进行抗菌预处理;
S3:对完成抗菌预处理的将棉纤维、亚麻和吸湿排汗纤维按一定混纺比进行初步混合;
S4:经开清棉、梳棉、并条、粗纱、气流纺纱后制得混纺吸排纱线;
S5:制备纳米银抗菌纱线;
S6:将纳米银抗菌纱线和混纺吸排纱线交织成双面网眼针织面料。
优选的,步骤S2中棉纤维以及亚麻进行抗菌预处理包括如下步骤:
A1:制备抗菌整理剂;
A2:将棉纤维以及亚麻浸入A1中的抗菌整理剂中,进行抗菌处理;
A3:取出步骤A2中经抗菌处理的棉纤维及亚麻,经干燥得到本发明抗菌棉纤维及亚麻。
其中,抗菌整理剂包括如下重量份的组分:枯草杆菌素13份、多粘菌素E12份、活性纳米氧化锌6份、壳聚糖溶液27份,所述棉纤维、亚麻和吸湿排汗纤维的质量比为(42):(23):(18),纳米银抗菌纱线为由含有纳米银的异型涤纶纤维和所述镀银短纤维纺纱而成的。
其中,镀银短纤维采用银氨溶液还原法进行镀银,为本领域常规的方法和条件,含有纳米银的异型涤纶纤维的异型结构较佳地为十字型、三角型、丫形、五角形、三叶形、四叶形、五叶形、扇形或中空形。所述含有纳米银的异型涤纶纤维中,所述纳米银的含量较佳地为3900-6000mg/kg。
纳米银抗菌纱线为含有纳米银的涤纶长丝。其中,所述含有纳米银的涤纶长丝为本领域常规的含有纳米银的涤纶长丝,一般是通过将纳米银PET涤纶抗菌母粒进行纺丝得到。
实施例2
一种可应用于运动服饰的吸湿排汗棉纺织品的制作工艺,包括如下步骤:
S1:对亚麻进行脱胶处理;
S2:对棉纤维以及亚麻进行抗菌预处理;
S3:对完成抗菌预处理的将棉纤维、亚麻和吸湿排汗纤维按一定混纺比进行初步混合;
S4:经开清棉、梳棉、并条、粗纱、气流纺纱后制得混纺吸排纱线;
S5:制备纳米银抗菌纱线;
S6:将纳米银抗菌纱线和混纺吸排纱线交织成双面网眼针织面料。
优选的,步骤S2中棉纤维以及亚麻进行抗菌预处理包括如下步骤:
A1:制备抗菌整理剂;
A2:将棉纤维以及亚麻浸入A1中的抗菌整理剂中,进行抗菌处理;
A3:取出步骤A2中经抗菌处理的棉纤维及亚麻,经干燥得到本发明抗菌棉纤维及亚麻。
其中,抗菌整理剂包括如下重量份的组分:枯草杆菌素14份、多粘菌素E13份、活性纳米氧化锌6份、壳聚糖溶液28份,所述棉纤维、亚麻和吸湿排汗纤维的质量比为43:24:32,纳米银抗菌纱线为由含有纳米银的异型涤纶纤维和所述镀银短纤维纺纱而成的。
其中,镀银短纤维采用银氨溶液还原法进行镀银,为本领域常规的方法和条件,含有纳米银的异型涤纶纤维的异型结构较佳地为十字型、三角型、丫形、五角形、三叶形、四叶形、五叶形、扇形或中空形。所述含有纳米银的异型涤纶纤维中,所述纳米银的含量较佳地为3900-6000mg/kg。
纳米银抗菌纱线为含有纳米银的涤纶长丝,其中,所述含有纳米银的涤纶长丝为本领域常规的含有纳米银的涤纶长丝,一般是通过将纳米银PET涤纶抗菌母粒进行纺丝得到。
尽管已经示出和描述了本发明的实施例,对于本领域的普通技术人员而言,可以理解在不脱离本发明的原理和精神的情况下可以对这些实施例进行多种变化、修改、替换和变型,本发明的范围由所附权利要求及其等同物限定。

Claims (7)

1.一种可应用于运动服饰的吸湿排汗棉纺织品的制作工艺,其特征在于:包括如下步骤:
S1:对亚麻进行脱胶处理;
S2:对棉纤维以及亚麻进行抗菌预处理;
S3:对完成抗菌预处理的将棉纤维、亚麻和吸湿排汗纤维按一定混纺比进行初步混合;
S4:经开清棉、梳棉、并条、粗纱、气流纺纱后制得混纺吸排纱线;
S5:制备纳米银抗菌纱线;
S6:将纳米银抗菌纱线和混纺吸排纱线交织成双面网眼针织面料。
2.根据权利要求1所述的一种可应用于运动服饰的吸湿排汗棉纺织品的制作工艺,其特征在于:步骤S2中棉纤维以及亚麻进行抗菌预处理包括如下步骤:
A1:制备抗菌整理剂;
A2:将棉纤维以及亚麻浸入A1中的抗菌整理剂中,进行抗菌处理;
A3:取出步骤A2中经抗菌处理的棉纤维及亚麻,经干燥得到本发明抗菌棉纤维及亚麻。
3.根据权利要求1所述的一种可应用于运动服饰的吸湿排汗棉纺织品的制作工艺,其特征在于:抗菌整理剂包括如下重量份的组分:枯草杆菌素10-15份、多粘菌素E10-15份、活性纳米氧化锌2-8份、壳聚糖溶液25-28份。
4.根据权利要求3所述的一种可应用于运动服饰的吸湿排汗棉纺织品的制作工艺,其特征在于:抗菌整理剂包括如下重量份的组分:枯草杆菌素13份、多粘菌素E12份、活性纳米氧化锌6份、壳聚糖溶液27份。
5.根据权利要求1所述的一种可应用于运动服饰的吸湿排汗棉纺织品的制作工艺,其特征在于:所述棉纤维、亚麻和吸湿排汗纤维的质量比为(40-45):(20-25):(15-35)。
6.根据权利要求1所述的一种可应用于运动服饰的吸湿排汗棉纺织品的制作工艺,其特征在于:纳米银抗菌纱线为由含有纳米银的异型涤纶纤维和镀银短纤维纺纱而成的。
7.根据权利要求1所述的一种可应用于运动服饰的吸湿排汗棉纺织品的制作工艺,其特征在于:纳米银抗菌纱线为含有纳米银的涤纶长丝。
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