CN114438778A - 一种抗静电抗菌防臭面料及其制备方法 - Google Patents
一种抗静电抗菌防臭面料及其制备方法 Download PDFInfo
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Abstract
本发明公开了一种抗静电抗菌防臭面料及其制备方法,所述抗静电抗菌防臭面料包括以下重量份的组分:竹炭纤维15~30份、玉米纤维10~20份、大豆纤维10~20份、甲壳素纤维10~20份、纳米珍珠纤维15~20份、Coolplus纤维8~15份、棉麻纤维12~20份、负离子涤纶短纤维10~15份、柔软剂2~6份、抗菌整理剂4~12份、抗静电剂2~8份。本发明中的抗静电抗菌防臭面料,具有优异的抗静电、抗菌及防臭功能,金黄葡萄球菌、大肠杆菌、枯草杆菌的抑菌率均达到95%以上,经30次洗涤抑菌率依然在75%以上,具有较高的市场推广价值。
Description
技术领域
本发明涉及抗静电抗菌防臭面料技术领域,具体涉及一种抗静电抗菌防臭面料及其制备方法。
背景技术
随着社会的进步、经济的发展和生活水平的提高,人们对面料的舒适性、健康性、安全性和环保性等要求也越来越广泛现代科学技术的进步,不仅促进了高科技纺织品的开发研究和推广,也将纺织品的应用拓宽到了新领域。借助高科技手段,国内外已开发出高性能、多功能、高附加值的纺织新产品,实现功能性纤维的产业化。现有技术中抗菌面料存在使用时间不长、抑菌效果不理想的问题。此外,现有市场上集抗静电、抗菌、防臭、舒适于一体的面料较少,需要进一步研究。
发明内容
本发明的目的是克服上述不足,提供了一种抗静电抗菌防臭面料,具有优异的抗静电、抗菌及防臭功能,金黄葡萄球菌、大肠杆菌、枯草杆菌的抑菌率均达到95%以上,经30次洗涤抑菌率依然在75%以上,具有较高的市场推广价值;此外,本发明还提供了一种抗静电抗菌防臭面料的制备方法。
为实现上述目的,本发明第一方面提供了一种抗静电抗菌防臭面料,包括以下重量份的组分:竹炭纤维15~30份、玉米纤维10~20份、大豆纤维10~20份、甲壳素纤维10~20份、纳米珍珠纤维15~20份、Coolplus纤维8~15份、棉麻纤维12~20份、负离子涤纶短纤维10~15份、柔软剂2~6份、抗菌整理剂4~12份、抗静电剂2~8份。
通过采用上述技术方案,本发明中的抗静电抗菌防臭面料通过竹炭纤维、玉米纤维、大豆纤维、甲壳素纤维、纳米珍珠纤维、Coolplus纤维、棉麻纤维、负离子涤纶短纤维混纺后,再通过柔软剂、抗菌整理剂、抗静电剂进行整理处理后所得;其中,竹炭纤维、玉米纤维、大豆纤维、甲壳素纤维均具有生物降解性,进而提高了本发明中抗静电抗菌防臭面料的生物降解度和环保性能,其中,竹炭纤维还具有抗菌抑菌、吸湿透气、防紫外线的特点;Coolplus纤维,纤维表面带有众多微孔及细微沟槽,可以产生毛细效应,可以将人体肌肤表层的汗水和湿气,很快吸收到织物外层,快速散发湿气和汗水,使人体表面保持干爽、清凉、舒适,具有调节体温的作用,纤维截面为“+”型,表面为细微沟槽,赋予纤维无数细微空洞,通过这些细微沟槽产生的毛细现象,将肌肤表层排出的湿气与汗水经由芯吸扩散、传输等作用,瞬间排出体外;负离子涤纶短纤维可以增加细胞渗透性,增加吸氧量,改善人体的心肺功能,又可以促进体液循环,改善睡眠,提高机体免疫力;纳米珍珠纤维是珍珠粉与纤维聚合而成,可使面料手感滑爽、色泽鲜亮,又使其具有抗紫外线、抑菌杀菌、清火祛毒、养颜嫩肤、吸湿防臭等功效,与肌肤有非常好的亲和性。
优选地,所述抗菌整理剂包括以下重量份数的原料:天竺葵提取液1~3份、纳米氧化锌0.5~3份、纳米银溶胶0.6~3.5份、贝壳粉1~3份、蒲公英提取液0.5~4份、水8~30份。
纳米银可吸附于细菌细胞壁也可以进入细胞膜中,进而影响细菌内蛋白质、DNA的正常功能,使细菌死亡,对多种致病微生物均具有优良的杀菌抑菌能力,而且不会产生耐药性,是一种绿色环保且抗菌性能优良的抗菌剂;纳米氧化锌在阳光尤其是紫外线的照射下,其价带电子激发跃迁到导带,形成光生电子-空穴对,光生电子-空穴对可以与细胞内组分反应而导致细胞死亡,即可消除部分紫外线的影响,又能起到杀菌效果,特有的表面、界面效应使其抗菌效果较广;贝壳粉对包括大肠杆菌、沙门氏菌、金黄色葡萄球菌等在内的多种细菌有极强的抗菌和杀菌作用,而且具有防腐、防霉的功能;同时,本发明中的抗菌整理剂中添加了天竺葵提取液、蒲公英提取液,具有驱寒、促进血液循环、除臭、抗菌等作用。
优选地,所述天竺葵提取液通过以下方法制备而成:取天竺葵打浆,加入3~10倍量的水浸泡1~2h,加热至90~100℃,煎煮2~3h,过滤,滤液浓缩至相对密度为1.01~1.10,即得天竺葵提取液。
优选地,所述贝壳粉通过以下方法制备而成:
A、将贝壳用0.1%~0.2%的盐酸浸泡清洗0.5~2h,洗去贝壳表面的有机和无机杂质,然后再用水冲洗后放入烘箱干燥;
B、将洗净烘干后的贝壳置于马弗炉中,加热至700℃,保持温度并持续10~12h,将煅烧产物研磨,过300~350目筛,得到贝壳粉。
通过采用上述技术方案,通过高温煅烧所得贝壳粉的主要成分为碳酸钙、氧化钙、氢氧化钙等钙化物,本身为多孔状,对包括大肠杆菌、大肠杆菌、金黄色葡萄球菌等在内的多种细菌有极强的抗菌和杀菌作用。
优选地,所述蒲公英提取液通过以下方法制备而成:蒲公英粉碎后加入5~12倍量的水浸泡1~3h,加热至70~90℃,煎煮2~3h,过滤,滤液浓缩至相对密度为1.10~1.20,即得蒲公英提取液。
优选地,所述柔软剂为甲基硅烷乳液、硅油、氨基硅油中的至少一种。
优选地,所述抗静电剂为十八烷基二甲基苄基氯化铵。
本发明第二方面提供了上述一种抗静电抗菌防臭面料的制备方法,包括以下步骤:
S1、称取配方量的竹炭纤维、玉米纤维、大豆纤维、甲壳素纤维、纳米珍珠纤维、Coolplus纤维、棉麻纤维、负离子涤纶短纤维、柔软剂、抗菌整理剂、抗静电剂;
S2、将步骤S1中所称取的竹炭纤维、玉米纤维、大豆纤维、甲壳素纤维、纳米珍珠纤维、Coolplus纤维、棉麻纤维、负离子涤纶短纤维进行开松、梳理、并条、精梳和混纺,再经粗纱、细纱工序纺成一股混纺纱线;
S3、将步骤S2中所得混纺纱线并捻成双股线,再经整经、浆纱和穿筘,然后通过梭织的方式制成混纺坯布;
S4、对步骤S3中所得混纺坯布进行染色处理;
S5、通过步骤S1中所称取的柔软剂、抗菌整理剂、抗静电剂分别依次对步骤S4所得染色后的坯布进行柔软整理、抗菌整理、抗静电整理,即得抗静电抗菌防臭面料。
与现有技术相比,本发明的有益效果在于:
1、本发明中的一种抗静电抗菌防臭面料,具有优异的抗静电、抗菌及防臭功能,金黄葡萄球菌、大肠杆菌、枯草杆菌的抑菌率均达到95%以上,经30次洗涤抑菌率依然在75%以上,具有较高的市场推广价值;此外,本发明中的一种抗静电抗菌防臭面料还具有手感舒适柔滑、透气性好、吸湿速干的优点。
2、本发明中的一种抗经典抗菌防臭面料制备方法,工艺简单,原料来源广泛,便于实现工业化生产。
附图说明
图1为本发明中贝壳粉制备方法的工艺流程图;
图2为本发明中抗静电抗菌防臭面料的制备方法的工艺流程图;
图3为实施例4-6、对比例2中的面料对金黄葡萄球菌的抑菌率测试结果图;
图4为实施例4-6、对比例2中的面料对大肠杆菌的抑菌率测试结果图;
图5为实施例4-6、对比例2中的面料对枯草杆菌的抑菌率测试结果图;
图6为实施例4-6、对比例2中的面料水洗30次后对金黄葡萄球菌的抑菌率测试结果图;
图7为实施例4-6、对比例2中的面料水洗30次后对大肠杆菌的抑菌率测试结果图;
图8为实施例4-6、对比例2中的面料水洗30次后对枯草杆菌的抑菌率测试结果图;
图9为实施例6、对比例3、对比例4中的面料对金黄葡萄球菌的抑菌率测试结果图;
图10为实施例6、对比例3、对比例4中的面料对大肠杆菌的抑菌率测试结果图;
图11为实施例6、对比例3、对比例4中的面料对枯草杆菌的抑菌率测试结果图。
具体实施方式
为了使发明实现的技术手段、为使本发明实施例的目的、技术方案和优点更加清楚,下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例是本发明一部分实施例,而不是全部的实施例。通常在此处附图中描述和示出的本发明实施例的组件可以以各种不同的配置来布置和设计。
因此,以下对在附图中提供的本发明的实施例的详细描述并非旨在限制要求保护的本发明的范围,而是仅仅表示本发明的选定实施例。基于本发明中的实施例,本领域普通技术人员在没有作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。
应注意到:相似的标号和字母在下面的附图中表示类似项,因此,一旦某一项在一个附图中被定义,则在随后的附图中不需要对其进行进一步定义和解释。
在本发明的描述中,需要说明的是,术语“上”、“下”、“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,或者是该发明产品使用时惯常摆放的方位或位置关系,仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。此外,术语“第一”、“第二”等仅用于区分描述,而不能理解为指示或暗示相对重要性。
在本发明的描述中,还需要说明的是,除非另有明确的规定和限定,术语“设置”、“安装”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通。对于本领域的普通技术人员而言,可以具体情况理解上述术语在本发明中的具体含义。
实施例1
本实施例中提供了一种天竺葵提取液的制备方法,包括以下步骤:取天竺葵打浆,加入10倍量的水浸泡1h,加热至90~100℃,煎煮3h,过滤,滤液浓缩至相对密度为1.01~1.10(60℃,以水为参照物),即得天竺葵提取液。
实施例2
参照图1所示,本实施例中提供了一种贝壳粉的制备方法,包括以下步骤:
A、将贝壳用00.2%的盐酸浸泡清洗1.5h,洗去贝壳表面的有机和无机杂质,然后再用水冲洗后放入烘箱干燥;
B、将洗净烘干后的贝壳置于马弗炉中,加热至700℃,保持温度并持续12h,将煅烧产物研磨,过350目筛,得到贝壳粉。
实施例3
本实施例提供了一种蒲公英提取液的制备方法,包括以下步骤:蒲公英粉碎后加入12倍量的水浸泡3h,加热至70~90℃,煎煮3h,过滤,滤液浓缩至相对密度为1.10~1.20(60℃,以水为参照物),即得蒲公英提取液。
实施例4
本实施例提供了一种抗静电抗菌防臭面料,包括以下重量的组分:竹炭纤维15kg、玉米纤维10kg、大豆纤维10kg、甲壳素纤维10kg、纳米珍珠纤维15kg、Coolplus纤维8kg、棉麻纤维12kg、负离子涤纶短纤维10kg、柔软剂2kg、抗菌整理剂4kg、抗静电剂2kg。
其中,本实施例中的抗菌整理剂包括以下重量的原料:天竺葵提取液1kg、纳米氧化锌0.5kg、纳米银溶胶1kg、贝壳粉1kg、蒲公英提取液1kg、水8kg。
本实施例中的天竺葵提取液采用实施例1中制备所得天竺葵提取液。
本实施例中的蒲公英提取液采用实施例3中制备所得蒲公英提取液。
本实施例中的贝壳粉采用实施例2中制备所得贝壳粉。
本实施例中的柔软剂为甲基硅烷乳液。
本实施例中的抗静电剂为十八烷基二甲基苄基氯化铵。
参照图2所示,本实施例中的一种抗静电抗菌防臭面料的制备方法,包括以下步骤:
S1、称取配方量的竹炭纤维、玉米纤维、大豆纤维、甲壳素纤维、纳米珍珠纤维、Coolplus纤维、棉麻纤维、负离子涤纶短纤维、柔软剂、抗菌整理剂、抗静电剂;
S2、将步骤S1中所称取的竹炭纤维、玉米纤维、大豆纤维、甲壳素纤维、纳米珍珠纤维、Coolplus纤维、棉麻纤维、负离子涤纶短纤维进行开松、梳理、并条、精梳和混纺,再经粗纱、细纱工序纺成一股混纺纱线;
S3、将步骤S2中所得混纺纱线并捻成双股线,再经整经、浆纱和穿筘,然后通过梭织的方式制成混纺坯布;
S4、对步骤S3中所得混纺坯布进行染色处理;
S5、通过步骤S1中所称取的柔软剂、抗菌整理剂、抗静电剂分别依次对步骤S4所得染色后的坯布进行柔软整理、抗菌整理、抗静电整理,即得抗静电抗菌防臭面料。
实施例5
本实施例提供了一种抗静电抗菌防臭面料,包括以下重量的组分:竹炭纤维30kg、玉米纤维20kg、大豆纤维20kg、甲壳素纤维20kg、纳米珍珠纤维20kg、Coolplus纤维15kg、棉麻纤维20kg、负离子涤纶短纤维15kg、柔软剂6kg、抗菌整理剂12kg、抗静电剂8kg。
其中,本实施例中的抗菌整理剂包括以下重量的原料:天竺葵提取液3kg、纳米氧化锌3kg、纳米银溶胶3.5kg、贝壳粉3kg、蒲公英提取液3kg、水28kg。
本实施例中的天竺葵提取液采用实施例1中制备所得天竺葵提取液。
本实施例中的蒲公英提取液采用实施例3中制备所得蒲公英提取液。
本实施例中的贝壳粉采用实施例2中制备所得贝壳粉。
本实施例中的柔软剂为甲基硅烷乳液。
本实施例中的抗静电剂为十八烷基二甲基苄基氯化铵。
参照图2所示,本实施例中的一种抗静电抗菌防臭面料的制备方法,包括以下步骤:
S1、称取配方量的竹炭纤维、玉米纤维、大豆纤维、甲壳素纤维、纳米珍珠纤维、Coolplus纤维、棉麻纤维、负离子涤纶短纤维、柔软剂、抗菌整理剂、抗静电剂;
S2、将步骤S1中所称取的竹炭纤维、玉米纤维、大豆纤维、甲壳素纤维、纳米珍珠纤维、Coolplus纤维、棉麻纤维、负离子涤纶短纤维进行开松、梳理、并条、精梳和混纺,再经粗纱、细纱工序纺成一股混纺纱线;
S3、将步骤S2中所得混纺纱线并捻成双股线,再经整经、浆纱和穿筘,然后通过梭织的方式制成混纺坯布;
S4、对步骤S3中所得混纺坯布进行染色处理;
S5、通过步骤S1中所称取的柔软剂、抗菌整理剂、抗静电剂分别依次对步骤S4所得染色后的坯布进行柔软整理、抗菌整理、抗静电整理,即得抗静电抗菌防臭面料。
实施例6
本实施例提供了一种抗静电抗菌防臭面料,包括以下重量的组分:竹炭纤维280kg、玉米纤维15kg、大豆纤维15kg、甲壳素纤维16kg、纳米珍珠纤维117kg、Coolplus纤维12kg、棉麻纤维13kg、负离子涤纶短纤维14kg、柔软剂4.5kg、抗菌整理剂7kg、抗静电剂4kg。
其中,本实施例中的抗菌整理剂包括以下重量的原料:天竺葵提取液2kg、纳米氧化锌1.5kg、纳米银溶胶2.4kg、贝壳粉2kg、蒲公英提取液3kg、水15kg。
本实施例中的天竺葵提取液采用实施例1中制备所得天竺葵提取液。
本实施例中的蒲公英提取液采用实施例3中制备所得蒲公英提取液。
本实施例中的贝壳粉采用实施例2中制备所得贝壳粉。
本实施例中的柔软剂为甲基硅烷乳液。
本实施例中的抗静电剂为十八烷基二甲基苄基氯化铵。
参照图2所示,本实施例中的一种抗静电抗菌防臭面料的制备方法,包括以下步骤:
S1、称取配方量的竹炭纤维、玉米纤维、大豆纤维、甲壳素纤维、纳米珍珠纤维、Coolplus纤维、棉麻纤维、负离子涤纶短纤维、柔软剂、抗菌整理剂、抗静电剂;
S2、将步骤S1中所称取的竹炭纤维、玉米纤维、大豆纤维、甲壳素纤维、纳米珍珠纤维、Coolplus纤维、棉麻纤维、负离子涤纶短纤维进行开松、梳理、并条、精梳和混纺,再经粗纱、细纱工序纺成一股混纺纱线;
S3、将步骤S2中所得混纺纱线并捻成双股线,再经整经、浆纱和穿筘,然后通过梭织的方式制成混纺坯布;
S4、对步骤S3中所得混纺坯布进行染色处理;
S5、通过步骤S1中所称取的柔软剂、抗菌整理剂、抗静电剂分别依次对步骤S4所得染色后的坯布进行柔软整理、抗菌整理、抗静电整理,即得抗静电抗菌防臭面料。
对比例1
本实施例提供了一种面料,包括以下重量的组分:竹炭纤维280kg、玉米纤维15kg、大豆纤维15kg、甲壳素纤维16kg、纳米珍珠纤维117kg、Coolplus纤维12kg、棉麻纤维13kg、负离子涤纶短纤维14kg、柔软剂4.5kg、抗菌整理剂7kg。
其中,本实施例中的抗菌整理剂包括以下重量的原料:天竺葵提取液2kg、纳米氧化锌1.5kg、纳米银溶胶2.4kg、贝壳粉2kg、蒲公英提取液3kg、水15kg。
本实施例中的天竺葵提取液采用实施例1中制备所得天竺葵提取液。
本实施例中的蒲公英提取液采用实施例3中制备所得蒲公英提取液。
本实施例中的贝壳粉采用实施例2中制备所得贝壳粉。
本实施例中的柔软剂为甲基硅烷乳液。
本实施例中的一种面料的制备方法,包括以下步骤:
S1、称取配方量的竹炭纤维、玉米纤维、大豆纤维、甲壳素纤维、纳米珍珠纤维、Coolplus纤维、棉麻纤维、负离子涤纶短纤维、柔软剂、抗菌整理剂;
S2、将步骤S1中所称取的竹炭纤维、玉米纤维、大豆纤维、甲壳素纤维、纳米珍珠纤维、Coolplus纤维、棉麻纤维、负离子涤纶短纤维进行开松、梳理、并条、精梳和混纺,再经粗纱、细纱工序纺成一股混纺纱线;
S3、将步骤S2中所得混纺纱线并捻成双股线,再经整经、浆纱和穿筘,然后通过梭织的方式制成混纺坯布;
S4、对步骤S3中所得混纺坯布进行染色处理;
S5、通过步骤S1中所称取的柔软剂、抗菌整理剂分别依次对步骤S4所得染色后的坯布进行柔软整理、抗菌整理,即得面料。
对比例2
本实施例提供了一种面料,包括以下重量的组分:竹炭纤维280kg、玉米纤维15kg、大豆纤维15kg、甲壳素纤维16kg、纳米珍珠纤维117kg、Coolplus纤维12kg、棉麻纤维13kg、负离子涤纶短纤维14kg、柔软剂4.5kg、抗静电剂4kg。
本实施例中的天竺葵提取液采用实施例1中制备所得天竺葵提取液。
本实施例中的蒲公英提取液采用实施例3中制备所得蒲公英提取液。
本实施例中的贝壳粉采用实施例2中制备所得贝壳粉。
本实施例中的柔软剂为甲基硅烷乳液。
本实施例中的抗静电剂为十八烷基二甲基苄基氯化铵。
本实施例中的一种面料的制备方法,包括以下步骤:
S1、称取配方量的竹炭纤维、玉米纤维、大豆纤维、甲壳素纤维、纳米珍珠纤维、Coolplus纤维、棉麻纤维、负离子涤纶短纤维、柔软剂、抗静电剂;
S2、将步骤S1中所称取的竹炭纤维、玉米纤维、大豆纤维、甲壳素纤维、纳米珍珠纤维、Coolplus纤维、棉麻纤维、负离子涤纶短纤维进行开松、梳理、并条、精梳和混纺,再经粗纱、细纱工序纺成一股混纺纱线;
S3、将步骤S2中所得混纺纱线并捻成双股线,再经整经、浆纱和穿筘,然后通过梭织的方式制成混纺坯布;
S4、对步骤S3中所得混纺坯布进行染色处理;
S5、通过步骤S1中所称取的柔软剂、抗静电剂分别依次对步骤S4所得染色后的坯布进行柔软整理、抗静电整理,即得面料。
对比例3
本实施例提供了一种抗静电抗菌防臭面料,包括以下重量的组分:竹炭纤维280kg、玉米纤维15kg、大豆纤维15kg、甲壳素纤维16kg、纳米珍珠纤维117kg、Coolplus纤维12kg、棉麻纤维13kg、负离子涤纶短纤维14kg、柔软剂4.5kg、抗菌整理剂7kg、抗静电剂4kg。
其中,本实施例中的抗菌整理剂包括以下重量的原料:纳米氧化锌1.5kg、纳米银溶胶2.4kg、水15kg。
本实施例中的天竺葵提取液采用实施例1中制备所得天竺葵提取液。
本实施例中的蒲公英提取液采用实施例3中制备所得蒲公英提取液。
本实施例中的贝壳粉采用实施例2中制备所得贝壳粉。
本实施例中的柔软剂为甲基硅烷乳液。
本实施例中的抗静电剂为十八烷基二甲基苄基氯化铵。
本实施例中的一种抗静电抗菌防臭面料的制备方法,包括以下步骤:
S1、称取配方量的竹炭纤维、玉米纤维、大豆纤维、甲壳素纤维、纳米珍珠纤维、Coolplus纤维、棉麻纤维、负离子涤纶短纤维、柔软剂、抗菌整理剂、抗静电剂;
S2、将步骤S1中所称取的竹炭纤维、玉米纤维、大豆纤维、甲壳素纤维、纳米珍珠纤维、Coolplus纤维、棉麻纤维、负离子涤纶短纤维进行开松、梳理、并条、精梳和混纺,再经粗纱、细纱工序纺成一股混纺纱线;
S3、将步骤S2中所得混纺纱线并捻成双股线,再经整经、浆纱和穿筘,然后通过梭织的方式制成混纺坯布;
S4、对步骤S3中所得混纺坯布进行染色处理;
S5、通过步骤S1中所称取的柔软剂、抗菌整理剂、抗静电剂分别依次对步骤S4所得染色后的坯布进行柔软整理、抗菌整理、抗静电整理,即得抗静电抗菌防臭面料。
对比例4
本实施例提供了一种抗静电抗菌防臭面料,包括以下重量的组分:竹炭纤维280kg、玉米纤维15kg、大豆纤维15kg、甲壳素纤维16kg、纳米珍珠纤维117kg、Coolplus纤维12kg、棉麻纤维13kg、负离子涤纶短纤维14kg、柔软剂4.5kg、抗菌整理剂7kg、抗静电剂4kg。
其中,本实施例中的抗菌整理剂包括以下重量的原料:天竺葵提取液2kg、贝壳粉2kg、蒲公英提取液3kg、水15kg。
本实施例中的天竺葵提取液采用实施例1中制备所得天竺葵提取液。
本实施例中的蒲公英提取液采用实施例3中制备所得蒲公英提取液。
本实施例中的贝壳粉采用实施例2中制备所得贝壳粉。
本实施例中的柔软剂为甲基硅烷乳液。
本实施例中的抗静电剂为十八烷基二甲基苄基氯化铵。
本实施例中的一种抗静电抗菌防臭面料的制备方法,包括以下步骤:
S1、称取配方量的竹炭纤维、玉米纤维、大豆纤维、甲壳素纤维、纳米珍珠纤维、Coolplus纤维、棉麻纤维、负离子涤纶短纤维、柔软剂、抗菌整理剂、抗静电剂;
S2、将步骤S1中所称取的竹炭纤维、玉米纤维、大豆纤维、甲壳素纤维、纳米珍珠纤维、Coolplus纤维、棉麻纤维、负离子涤纶短纤维进行开松、梳理、并条、精梳和混纺,再经粗纱、细纱工序纺成一股混纺纱线;
S3、将步骤S2中所得混纺纱线并捻成双股线,再经整经、浆纱和穿筘,然后通过梭织的方式制成混纺坯布;
S4、对步骤S3中所得混纺坯布进行染色处理;
S5、通过步骤S1中所称取的柔软剂、抗菌整理剂、抗静电剂分别依次对步骤S4所得染色后的坯布进行柔软整理、抗菌整理、抗静电整理,即得抗静电抗菌防臭面料。
试验例1
对实施例4-6中的面料、对比例1中的面料进行抗静电性能。其中,对比例1与实施例6中的面料的区别在于:对比例1中的面料没有进行抗静电整理。
其中,抗静电性能测试参考纺织机械和纺织行业标准FZ/T 01042-1996《纺织材料静电性能静电压半衰期的测定》在FY342E-Ⅱ织物感应式静电仪(温州方圆仪器有限公司)上测试织物的感应电压和半衰期,以对比例1中的面料作为参照,结果如表1所示。
表1
感应电压/V | 半衰期/s | |
实施例4 | 2752.0 | 1.25 |
实施例5 | 2683.5 | 1.15 |
实施例6 | 2631.0 | 1.10 |
对比例1 | 3100 | 8.5 |
由以上表1的结果可知,本发明中的抗静电抗菌防臭面料相比对比例1中的面料,其感应电压和半衰期明显减小,即抗静电的性能得到了大大的提高,说明本发明中的抗静电抗菌防臭面料表面能够快速逸散电荷,使其无法聚集。
试验例2
对实施例4-6中的面料、对比例2中的面料进行抗菌性能测试。其中,对比例2与实施例6中的面料的区别在于:对比例2中的面料没有进行抗菌整理。
其中,抑菌率测试采用国家标准GB/T20944.3-2008《纺织品抗菌性能的评价第3部分:振荡法》进行抗菌性定量测试,采用耐洗色牢度试验机洗涤方法,测试实施例4-6、对比例2的面料的抑菌率,测试结果如图3-图5所示,此外,还对水洗30次后的实施例4-6、对比例2的面料的抑菌率进行了测试,测试结果如图6-图8所示。
由图3-图5可知,本发明中的抗静电抗菌防臭面料对金黄葡萄球菌、大肠杆菌、枯草杆菌具有优异的抑菌率,相比于对比例2中的未采用抗菌整理剂进行抗菌整理的面料,其抗菌性能大大提升。由图6-图8所示,本发明中的抗静电抗菌防臭面料经30次洗涤后抑菌率依然在75%以上,提高了衣物穿着的安全性能。
试验例3
对实施例6、对比例3、对比例4中的面料进行抗菌性能测试。对比例3中的面料与实施例6中的面料的区别在于:对比例3中的抗菌整理剂由纳米氧化锌1.5kg、纳米银溶胶2.4kg、水15kg组成。对比例4中的面料与实施例6中的面料的区别在于,对比例4中的抗菌整理剂由天竺葵提取液2kg、贝壳粉2kg、蒲公英提取液3kg、水15kg组形成。
其中,抗菌率测试采用国家标准GB/T20944.3-2008《纺织品抗菌性能的评价第3部分:振荡法》进行抗菌性定量测试,采用耐洗色牢度试验机洗涤方法,测试实施例6、对比例3、对比例4的面料的抑菌率。测试结果如图9-图11所示。
由图9-图11可知,实施例6中的面料的抗菌性能明显优于对比例3、对比例4中的面料,说明本发明中的抗菌整理剂中的天竺葵提取液、纳米氧化锌、纳米银溶胶、贝壳粉及蒲公英提取液协同作用优异,通过在纳米氧化锌、纳米银溶胶中添加天竺葵提取液、贝壳粉及蒲公英提取液,大大提高了本发明中面料的抗菌性能。
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 (8)
1.一种抗静电抗菌防臭面料,其特征在于,包括以下重量份的组分:竹炭纤维15~30份、玉米纤维10~20份、大豆纤维10~20份、甲壳素纤维10~20份、纳米珍珠纤维15~20份、Coolplus纤维8~15份、棉麻纤维12~20份、负离子涤纶短纤维10~15份、柔软剂2~6份、抗菌整理剂4~12份、抗静电剂2~8份。
2.如权利要求1所述的一种抗静电抗菌防臭面料,其特征在于,所述抗菌整理剂包括以下重量份数的原料:天竺葵提取液1~3份、纳米氧化锌0.5~3份、纳米银溶胶0.6~3.5份、贝壳粉1~3份、蒲公英提取液0.5~4份、水8~30份。
3.如权利要求2所述的一种抗静电抗菌防臭面料,其特征在于,所述天竺葵提取液通过以下方法制备而成:取天竺葵打浆,加入3~10倍量的水浸泡1~2h,加热至90~100℃,煎煮2~3h,过滤,滤液浓缩至相对密度为1.01~1.10,即得天竺葵提取液。
4.如权利要求2所述的一种抗静电抗菌防臭面料,其特征在于,所述贝壳粉通过以下方法制备而成:
A、将贝壳用0.1%~0.2%的盐酸浸泡清洗0.5~2h,洗去贝壳表面的有机和无机杂质,然后再用水冲洗后放入烘箱干燥;
B、将洗净烘干后的贝壳置于马弗炉中,加热至700℃,保持温度并持续10~12h,将煅烧产物研磨,过300~350目筛,得到贝壳粉。
5.如权利要求2所述的一种抗静电抗菌防臭面料,其特征在于,所述蒲公英提取液通过以下方法制备而成:蒲公英粉碎后加入5~12倍量的水浸泡1~3h,加热至70~90℃,煎煮2~3h,过滤,滤液浓缩至相对密度为1.10~1.20,即得蒲公英提取液。
6.如权利要求1所述的一种抗静电抗菌防臭面料,其特征在于,所述柔软剂为甲基硅烷乳液、硅油、氨基硅油中的至少一种。
7.如权利要求1所述的一种抗静电抗菌防臭面料,其特征在于,所述抗静电剂为十八烷基二甲基苄基氯化铵。
8.一种如权利要求1-7任一项所述的抗静电抗菌防臭面料的制备方法,其特征在于,包括以下步骤:
S1、称取配方量的竹炭纤维、玉米纤维、大豆纤维、甲壳素纤维、纳米珍珠纤维、Coolplus纤维、棉麻纤维、负离子涤纶短纤维、柔软剂、抗菌整理剂、抗静电剂;
S2、将步骤S1中所称取的竹炭纤维、玉米纤维、大豆纤维、甲壳素纤维、纳米珍珠纤维、Coolplus纤维、棉麻纤维、负离子涤纶短纤维进行开松、梳理、并条、精梳和混纺,再经粗纱、细纱工序纺成一股混纺纱线;
S3、将步骤S2中所得混纺纱线并捻成双股线,再经整经、浆纱和穿筘,然后通过梭织的方式制成混纺坯布;
S4、对步骤S3中所得混纺坯布进行染色处理;
S5、通过步骤S1中所称取的柔软剂、抗菌整理剂、抗静电剂分别依次对步骤S4所得染色后的坯布进行柔软整理、抗菌整理、抗静电整理,即得抗静电抗菌防臭面料。
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Publication number | Priority date | Publication date | Assignee | Title |
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CN114990873A (zh) * | 2022-06-23 | 2022-09-02 | 赵战飞 | 一种环保抗菌除臭纤维面料及其制备方法 |
CN114990873B (zh) * | 2022-06-23 | 2023-08-08 | 阿克苏兴科服饰有限公司 | 一种环保抗菌除臭纤维面料及其制备方法 |
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