CN111235887A - 一种抗菌整理剂、抗菌面料及抗菌面料的制备方法 - Google Patents

一种抗菌整理剂、抗菌面料及抗菌面料的制备方法 Download PDF

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CN111235887A
CN111235887A CN202010245510.0A CN202010245510A CN111235887A CN 111235887 A CN111235887 A CN 111235887A CN 202010245510 A CN202010245510 A CN 202010245510A CN 111235887 A CN111235887 A CN 111235887A
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antibacterial
fibers
fabric
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parts
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杨陈
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Jiangxi Institute of Fashion Technology
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Abstract

本发明属于纺织面料制备技术领域,具体涉及一种抗菌整理剂、抗菌面料及抗菌面料的制备方法。该面料包括面料本体及涂覆在面料本体上的抗菌整理剂。面料本体包括纳米银纤维、多晶氧化铝纤维、纳米活性炭纤维、竹炭纤维和大豆纤维。本发明提供的抗菌纺织面料具有较好抗菌抑菌性能、防辐射性和防晒性,同时该面料还能避免滋生霉菌、柔软舒适性好、不易起球,适应人体需求,可以用于衣物制备中;通过在该面料中加入整理剂,还能提高面料的抗静电效果。该抗菌纺织面料还具有较好的耐磨性、透气性。

Description

一种抗菌整理剂、抗菌面料及抗菌面料的制备方法
技术领域
本发明属于纺织面料制备技术领域,具体涉及一种抗菌整理剂、抗菌面料及抗菌面料的制备方法。
背景技术
我国是纺织生产和加工大国,随着科技和社会的不断发展与进步,人民生活水平逐渐提高,人们对纺织品的要求也正在逐步变化,从较为单一的保暖舒适型逐渐向安全、健康、美观等功能型转变。
在日常生活中,人们不可避免地接触到各类真菌、细菌等微生物,而各式纺织品往往是它们的良好栖息地,这些微生物在合适的外界条件下迅速繁殖,不仅会使纤维制品变色、发霉、脆化降解,而且还会对人体皮肤产生异常的刺激,诱发各种皮肤疾病,影响人们身体健康。同时还会通过间接的方式传播疾病,如在医院、宾馆等公共场所引起的交叉感染,影响环境卫生。因此,对纺织品抗菌性能的研究和开发就显得格外重要。
中国专利文献CN108842468A,公开了一种抗菌防霉枕巾面料,包括大豆纤维、涤纶纤维、竹炭纤维、多晶氧化铝纤维、竹纤维、棉纤维、桑皮纤维、芦荟纤维、抗菌液和发泡微胶囊;该抗菌防霉枕巾面料需要先经多次混纺得到纤维,再经传统方法进行织造,最后再在抗菌保健液中进行多次浸泡,该面料的制备方法工序繁琐,且抗菌保健液中包括多种中草药,成分复杂,该抗菌防霉枕巾不适于实际生产推广应用。此外,现有技术中的抗菌面料还存在抗菌效果与舒适效果不能兼具的缺陷。
发明内容
因此,本发明要解决的技术问题在于克服现有技术中的抗菌面料的成分复杂,制备工序繁琐,抗菌面料的效果差等缺陷,从而提供一种抗菌整理剂、抗菌面料及抗菌面料的制备方法。
为此,本发明提供了以下技术方案。
本发明提供了一种抗菌整理剂,包括质量比为(1-3):(4-10):(2-6):(2-4):(3-9):(2-6):(3-9):(2-4)的甲壳素、羧乙基壳聚糖、聚乙烯吡咯烷酮、磷酸二氢钠、ε-聚赖氨酸、环糊精、碳酸氢钙和聚乙烯醇。
所述抗菌整理剂的固含量为1-5%。
本发明还提供了一种抗菌纺织面料,包括面料本体及涂覆在面料本体的上述抗菌整理剂,以重量份数计,所述面料本体包括以下原料,
2-4份纳米银纤维、2-4份多晶氧化铝纤维、2-6份纳米活性炭纤维、10-20份竹炭纤维和10-20份大豆纤维。
所述面料本体还包括3-9份防辐射纤维;
以重量份数计,所述防辐射纤维包括2-4份石墨烯碳纳米纤维、1-3份聚苯胺纤维、0.5-1.5份羟乙基纤维素、1-3份纳米铜粉和1-2份纳米硫酸钡。
所述面料本体还包括3-9份苎麻纤维和4-10份涤纶纤维。
此外,本发明还提供了一种上所述抗菌纺织面料的制备方法,包括以下步骤,
将各个原料与水混合,分散,得到混纺纤维;
然后将混纺纤维制成经纱和纬纱,垂直交织后得到面料本体;
将面料本体浸渍于抗菌整理剂中,经干燥后得到防晒抗菌纺织面料。
所述经纱的细度为110-130D,所述纬纱的细度为110-130D。
所述分散的速率为3000-4000r/min,时间为10-20min。
所述干燥的温度为60-70℃,时间为20-30min。
本发明技术方案,具有如下优点:
1.本发明提供的抗菌整理剂,抗菌整理剂包括甲壳素、羧乙基壳聚糖、聚乙烯吡咯烷酮、磷酸二氢钠、ε-聚赖氨酸、环糊精、碳酸氢钙和聚乙烯醇;本发明通过各个组分相互配合,取长补短发挥协同作用,可以使该抗菌整理剂具有较好的抗菌抑菌和抗静电效果。通过甲壳素、羧乙基壳聚糖和ε-聚赖氨酸协同作用,可以使该整理剂具有较好的抗菌抑菌效果;通过加入聚乙烯吡咯烷酮,可以使该整理剂具有较好的分散性,能够增强抗菌整理剂更好的分散在面料中,使抗菌整理剂充分发挥抗菌效果。同时聚乙烯吡咯烷酮和聚乙烯醇相互作用,可以增强该抗菌整理剂的抗静电效果。其中,甲壳素的抗菌效果显著,来源广泛,绿色环保,在长时间的细菌侵蚀作用下,不发生质变反应。
2.本发明提供的抗菌纺织面料,包括面料本体及涂覆在面料本体上的抗菌整理剂。面料本体包括纳米银纤维、多晶氧化铝纤维、纳米活性炭纤维、竹炭纤维和大豆纤维。该面料本体中纳米银纤维、多晶氧化铝纤维和竹炭纤维协同作用,可以使面料具有较好的抗菌效果,同时与抗菌整理剂发挥协同,大大提升面料的抗菌效果,同时该面料的柔软舒适性较好。大豆纤维具有较好的柔软性,但是也易滋生细菌,但是该面料中加入纳米银纤维、多晶氧化铝纤维、纳米活性炭纤维和竹炭纤维后可以克服大豆纤维易滋生细菌的问题。本发明提供的抗菌纺织面料具有较好抗菌抑菌性能、防辐射性和防晒性,同时该面料还能避免滋生霉菌、柔软舒适性好、不易起球,适应人体需求,可以用于衣物制备中;通过在该面料中加入本发明提供的抗菌整理剂,在进一步提高面料的抗菌效果的同时还能提高面料的抗静电效果。该抗菌纺织面料还具有较好的耐磨性、透气性。
3.本发明提供的抗菌纺织面料,在该面料本体中加入防辐射纤维,可以显著提高面料的防辐射性。防辐射纤维中的纳米铜粉和纳米硫酸钡可以使防辐射纤维具有一定的杀菌效果,有助于改善抗菌纺织面料的抗菌抑菌效果;石墨烯碳纳米纤维、聚苯胺纤维可以使防辐射纤维具有较好的防辐射性,尤其是防紫外线性能;羟乙基纤维素在不影响防辐射纤维的防辐射性和杀菌效果的基础上使抗菌纺织面料具有较好的柔软性。通过在该面料本体中加入涤纶纤维,还可以使该面料具有较好的防晒性和耐磨性。
4.本发明提供的抗菌纺织面料的制备方法,包括将各个原料与水混合,分散,得到混纺纤维;然后将混纺纤维制成经纱和纬纱,垂直交织后得到纺织面料;将纺织面料浸渍于整理剂中,经干燥后得到抗菌纺织面料。该方法简单可行,通过控制经纱和纬纱的密度,可以使面料同时兼具较好的透气性和耐磨性。
具体实施方式
提供下述实施例是为了更好地进一步理解本发明,并不局限于所述最佳实施方式,不对本发明的内容和保护范围构成限制,任何人在本发明的启示下或是将本发明与其他现有技术的特征进行组合而得出的任何与本发明相同或相近似的产品,均落在本发明的保护范围之内。
实施例中未注明具体实验步骤或条件者,按照本领域内的文献所描述的常规实验步骤的操作或条件即可进行。所用试剂或仪器未注明生产厂商者,均为可以通过市购获得的常规试剂产品。
实施例1
本实施例提供了一种抗菌整理剂、抗菌面料及其制备方法,该抗菌整理剂包括2kg聚乙烯吡咯烷酮、2kg磷酸二氢钠、1kg甲壳素、3kgε-聚赖氨酸、2kg一氯三嗪-β-环糊精、4kg羧乙基壳聚糖、3kg碳酸氢钙、2kg聚乙烯醇,抗菌整理剂的固含量为2.5%;
抗菌面料包括面料本体及涂覆在面料本体上的抗菌整理剂,面料本体包括10kg竹炭纤维、10kg大豆纤维、4kg涤纶纤维、3kg苎麻纤维、2kg纳米活性炭纤维、2kg纳米银纤维、2kg多晶氧化铝纤维和3kg防辐射纤维;其中,防辐射纤维包括质量比为3:2:1:2:1的石墨烯基碳纳米纤维、聚苯胺纤维、羟乙基纤维素、纳米铜粉和纳米硫酸钡。
上述抗菌面料的制备方法包括,
将竹炭纤维、大豆纤维、涤纶纤维、苎麻纤维、纳米活性炭纤维、纳米银纤维、多晶氧化铝纤维、防辐射纤维和水混合后加入分散机中分散,分散速率为3000r/min,时间为10min,得到混合纤维;
将混合纤维加入纺丝机中制成经纱和纬纱;
经纱和纬纱垂直交织得到面料本体;
按浴比1:20将面料本体加入抗菌整理剂中,在40℃下保温震荡40min,浸轧后放入烘箱中干燥,烘箱温度为60℃,时间为20min,再用去离子水清除表面残留物进行干燥,得到抗菌面料。
实施例2
本实施例提供了一种抗菌整理剂、抗菌面料及其制备方法,该抗菌整理剂包括6kg聚乙烯吡咯烷酮、4kg磷酸二氢钠、3kg甲壳素、9kgε-聚赖氨酸、6kg一氯三嗪-β-环糊精、10kg羧乙基壳聚糖、9kg碳酸氢钙、4kg聚乙烯醇,抗菌整理剂的固含量为2.5%;
抗菌面料包括面料本体及涂覆在面料本体上的抗菌整理剂,面料本体包括20kg竹炭纤维、20kg大豆纤维、10kg涤纶纤维、9kg苎麻纤维、6kg纳米活性炭纤维、4kg纳米银纤维、4kg多晶氧化铝纤维和9kg防辐射纤维;其中,防辐射纤维包括质量比为3:2:1:2:1的石墨烯基碳纳米纤维、聚苯胺纤维、羟乙基纤维素、纳米铜粉和纳米硫酸钡;
上述抗菌面料的制备方法包括,
将竹炭纤维、大豆纤维、涤纶纤维、苎麻纤维、纳米活性炭纤维、纳米银纤维、多晶氧化铝纤维、防辐射纤维和水混合后加入分散机中分散,分散速率为4000r/min,时间为20min,得到混合纤维;
将混合纤维加入纺丝机中制成经纱和纬纱;
经纱和纬纱垂直交织得到面料本体;
按浴比1:20将面料本体加入抗菌整理剂中,在60℃下保温震荡50min,浸轧后放入烘箱中干燥,烘箱温度为70℃,时间为30min,再用去离子水清除表面残留物进行干燥,得到抗菌面料。
实施例3
本实施例提供了一种抗菌整理剂、抗菌面料及其制备方法,抗菌整理剂包括2kg聚乙烯吡咯烷酮、2kg磷酸二氢钠、1kg甲壳素、3kgε-聚赖氨酸、2kg一氯三嗪-β-环糊精、4kg羧乙基壳聚糖、3kg碳酸氢钙、2kg聚乙烯醇,抗菌整理剂的固含量为2.5%;
该抗菌面料包括面料本体及涂覆在面料本体上的抗菌整理剂,面料本体包括12kg竹炭纤维、12kg大豆纤维、5kg涤纶纤维、4kg苎麻纤维、3kg纳米活性炭纤维、2kg纳米银纤维、2kg多晶氧化铝纤维和4kg防辐射纤维;其中,防辐射纤维包括质量比为3:2:1:2:1的石墨烯基碳纳米纤维、聚苯胺纤维、羟乙基纤维素、纳米铜粉和纳米硫酸钡;
上述抗菌面料的制备方法包括,
将竹炭纤维、大豆纤维、涤纶纤维、苎麻纤维、纳米活性炭纤维、纳米银纤维、多晶氧化铝纤维、防辐射纤维和水混合后加入分散机中分散,分散速率为3200r/min,时间为12min,得到混合纤维;
将混合纤维加入纺丝机中制成经纱和纬纱;
经纱和纬纱垂直交织得到面料本体;
按浴比1:20将面料本体加入抗菌整理剂中,在45℃下保温震荡42min,浸轧后放入烘箱中干燥,烘箱温度为62℃,时间为22min,再用去离子水清除表面残留物进行干燥,得到抗菌面料。
实施例4
本实施例提供了一种抗菌整理剂、抗菌面料及其制备方法,该抗菌整理剂包括5kg聚乙烯吡咯烷酮、3kg磷酸二氢钠、1kg甲壳素、8kgε-聚赖氨酸、5kg一氯三嗪-β-环糊精、9kg羧乙基壳聚糖、8kg碳酸氢钙、4kg聚乙烯醇,抗菌整理剂的固含量为2.5%;
抗菌面料包括面料本体及涂覆在面料本体上的抗菌整理剂,面料本体包括18kg竹炭纤维、18kg大豆纤维、9kg涤纶纤维、8kg苎麻纤维、5kg纳米活性炭纤维、4kg纳米银纤维、3kg多晶氧化铝纤维和8kg防辐射纤维;其中,防辐射纤维包括质量比为3:2:1:2:1的石墨烯基碳纳米纤维、聚苯胺纤维、羟乙基纤维素、纳米铜粉和纳米硫酸钡;
上述抗菌面料的制备方法包括,
将竹炭纤维、大豆纤维、涤纶纤维、苎麻纤维、纳米活性炭纤维、纳米银纤维、多晶氧化铝纤维、防辐射纤维和水混合后加入分散机中分散,分散速率为3800r/min,时间为18min,得到混合纤维;
将混合纤维加入纺丝机中制成经纱和纬纱;
经纱和纬纱垂直交织得到面料本体;
按浴比1:20将面料本体加入抗菌整理剂中,在55℃下保温震荡45min,浸轧后放入烘箱中干燥,烘箱温度为68℃,时间为28min,再用去离子水清除表面残留物进行干燥,得到抗菌面料。
实施例5
本实施例提供了一种抗菌整理剂、抗菌面料及其制备方法,该抗菌整理剂包括4kg聚乙烯吡咯烷酮、3kg磷酸二氢钠、2kg甲壳素、6kgε-聚赖氨酸、4kg一氯三嗪-β-环糊精、7kg羧乙基壳聚糖、6kg碳酸氢钙、3kg聚乙烯醇,抗菌整理剂的固含量为2.5%;
抗菌面料包括面料本体及涂覆在面料本体上的抗菌整理剂,面料本体包括15kg竹炭纤维、15kg大豆纤维、7kg涤纶纤维、6kg苎麻纤维、4kg纳米活性炭纤维、3kg纳米银纤维、3kg多晶氧化铝纤维和6kg防辐射纤维;其中,防辐射纤维包括质量比为3:2:1:2:1的石墨烯基碳纳米纤维、聚苯胺纤维、羟乙基纤维素、纳米铜粉和纳米硫酸钡;
上述抗菌面料的制备方法包括,
将竹炭纤维、大豆纤维、涤纶纤维、苎麻纤维、纳米活性炭纤维、纳米银纤维、多晶氧化铝纤维、防辐射纤维和水混合后加入分散机中分散,分散速率为3500r/min,时间为15min,得到混合纤维;
将混合纤维加入纺丝机中制成经纱和纬纱;
经纱和纬纱垂直交织得到面料本体;
按浴比1:20将面料本体加入抗菌整理剂中,在50℃下保温震荡45min,浸轧后放入烘箱中干燥,烘箱温度为65℃,时间为25min,再用去离子水清除表面残留物进行干燥,得到抗菌面料。
对比例1
本对比例提供了一种抗菌整理剂、抗菌面料及其制备方法,抗菌整理剂包括2kg聚乙烯吡咯烷酮、2kg磷酸二氢钠、1kg甲壳素、3kgε-聚赖氨酸、2kg一氯三嗪-β-环糊精、4kg羧乙基壳聚糖、3kg碳酸氢钙、2kg聚乙烯醇,抗菌整理剂的固含量为2.5%;
抗菌面料包括面料本体及涂覆在面料本体上的抗菌整理剂,面料本体包括10kg大豆纤维、4kg涤纶纤维、3kg苎麻纤维、2kg纳米银纤维、2kg多晶氧化铝纤维和3kg防辐射纤维;其中,防辐射纤维包括质量比为3:2:1:2:1的石墨烯基碳纳米纤维、聚苯胺纤维、羟乙基纤维素、纳米铜粉和纳米硫酸钡;
上述抗菌面料的制备方法包括,
将大豆纤维、涤纶纤维、苎麻纤维、纳米银纤维、多晶氧化铝纤维、防辐射纤维和水混合后加入分散机中分散,分散速率为3000r/min,时间为10min,得到混合纤维;
将混合纤维加入纺丝机中制成经纱和纬纱;
经纱和纬纱垂直交织得到纺织面料;
按浴比1:20将纺织面料加入抗菌整理剂中,在40℃下保温震荡40min,浸轧后放入烘箱中干燥,烘箱温度为60℃,时间为20min,再用去离子水清除表面残留物进行干燥,得到抗菌面料。
对比例2
本对比例提供了一种抗菌整理剂、抗菌面料及其制备方法,抗菌整理剂包括2kg聚乙烯吡咯烷酮、2kg磷酸二氢钠、1kg甲壳素、3kgε-聚赖氨酸、2kg一氯三嗪-β-环糊精、4kg羧乙基壳聚糖、3kg碳酸氢钙、2kg聚乙烯醇,抗菌整理剂的固含量为2.5%;
抗菌面料包括面料本体及涂覆在面料本体上的抗菌整理剂,面料本体包括10kg竹炭纤维、10kg大豆纤维、4kg涤纶纤维、3kg苎麻纤维、2kg纳米活性炭纤维、2kg纳米银纤维和3kg防辐射纤维;其中,防辐射纤维包括质量比为3:2:1:2:1的石墨烯基碳纳米纤维、聚苯胺纤维、羟乙基纤维素、纳米铜粉和纳米硫酸钡;
上述抗菌面料的制备方法包括,
将竹炭纤维、大豆纤维、涤纶纤维、苎麻纤维、纳米活性炭纤维、纳米银纤维、防辐射纤维和水混合后加入分散机中分散,分散速率为3000r/min,时间为10min,得到混合纤维;
将混合纤维加入纺丝机中制成经纱和纬纱;
经纱和纬纱垂直交织得到面料本体;
按浴比1:20将面料本体加入抗菌整理剂中,在40℃下保温震荡40min,浸轧后放入烘箱中干燥,烘箱温度为60℃,时间为20min,再用去离子水清除表面残留物进行干燥,得到抗菌面料。
对比例3
本对比例提供了一种抗菌整理剂、抗菌面料及其制备方法,抗菌整理剂包括2kg聚乙烯吡咯烷酮、2kg磷酸二氢钠、1kg甲壳素、3kgε-聚赖氨酸、2kg一氯三嗪-β-环糊精、4kg羧乙基壳聚糖、3kg碳酸氢钙、2kg聚乙烯醇,抗菌整理剂的固含量为2.5%;
抗菌面料包括面料本体及涂覆在面料本体上的抗菌整理剂,面料本体包括10kg竹炭纤维、10kg芦荟纤维、4kg涤纶纤维、3kg苎麻纤维、2kg纳米活性炭纤维、2kg聚丙烯腈纤维、2kg多晶氧化铝纤维和3kg防辐射纤维;其中,防辐射纤维包括质量比为3:2:1:2:1的石墨烯基碳纳米纤维、聚苯胺纤维、羟乙基纤维素、纳米铜粉和纳米硫酸钡;
上述抗菌面料的制备方法包括,
将竹炭纤维、大豆纤维、涤纶纤维、苎麻纤维、纳米活性炭纤维、纳米银纤维、多晶氧化铝纤维、防辐射纤维和水混合后加入分散机中分散,分散速率为3000r/min,时间为10min,得到混合纤维;
将混合纤维加入纺丝机中制成经纱和纬纱;
经纱和纬纱垂直交织得到面料本体;
按浴比1:20将面料本体加入抗菌整理剂中,在40℃下保温震荡40min,浸轧后放入烘箱中干燥,烘箱温度为60℃,时间为20min,再用去离子水清除表面残留物进行干燥,得到抗菌面料。
对比例4
本对比例提供了一种抗菌整理剂、抗菌面料及其制备方法,该抗菌整理剂包括2kg聚乙烯吡咯烷酮、2kg磷酸二氢钠、1kg甲壳素、2kg一氯三嗪-β-环糊精、4kg羧乙基壳聚糖、3kg碳酸氢钙、2kg聚乙烯醇,抗菌整理剂的固含量为2.5%,溶剂为水;
抗菌面料包括面料本体及涂覆在面料本体上的抗菌整理剂,面料本体包括10kg竹炭纤维、10kg大豆纤维、4kg涤纶纤维、3kg苎麻纤维、2kg纳米活性炭纤维、2kg纳米银纤维、2kg多晶氧化铝纤维和3kg防辐射纤维;其中,防辐射纤维包括质量比为3:2:1:2:1的石墨烯基碳纳米纤维、聚苯胺纤维、羟乙基纤维素、纳米铜粉和纳米硫酸钡;
上述抗菌面料的制备方法包括,
将竹炭纤维、大豆纤维、涤纶纤维、苎麻纤维、纳米活性炭纤维、纳米银纤维、多晶氧化铝纤维、防辐射纤维和水混合后加入分散机中分散,分散速率为3000r/min,时间为10min,得到混合纤维;
将混合纤维加入纺丝机中制成经纱和纬纱;
经纱和纬纱垂直交织得到面料本体;
按浴比1:20将面料本体加入抗菌整理剂中,在40℃下保温震荡40min,浸轧后放入烘箱中干燥,烘箱温度为60℃,时间为20min,再用去离子水清除表面残留物进行干燥,得到抗菌面料。
试验例
本试验例提供了实施例1-5和对比例1-4制得的抗菌面料的性能测试及测试结果,
抗菌面料抗菌性的性能测试方法:GB/T 31713-2015《抗菌纺织品安全性卫生要求》;以抑菌圈宽度表示,抑菌圈宽度越大,抑菌效果越差;
抗菌面料抗静电性的性能测试方法:GB/T 30131-2013《纺织品服装系统静电性能的评定穿着法》;以穿着电阻表示面料的抗静电效果,穿着电阻越大,说明抗静电效果越差;
抗菌面料透气性的性能测试方法:GB/T 5453-1997《纺织品织物透气性的测定》。
表1实施例1-5和对比例1-4制得的抗菌面料的性能测试结果
示例 抑菌圈宽度/(mm) 穿着电阻/(Ω) 透气率/(mm·s<sup>-1</sup>)
实施例1 4.34 2.2×10<sup>7</sup> 472.674
实施例2 4.36 2.6×10<sup>7</sup> 469.235
实施例3 4.58 2.4×10<sup>7</sup> 470.345
实施例4 4.09 3.0×10<sup>7</sup> 469.346
实施例5 4.03 2.2×10<sup>7</sup> 479.567
对比例1 18.65 3.2×10<sup>7</sup> 450.954
对比例2 18.53 3.2×10<sup>7</sup> 461.958
对比例3 22.34 29.2×10<sup>7</sup> 320.345
对比例4 20.21 2.8×10<sup>7</sup> 471.567
表1中,实施例1与对比例1相比可知,在该面料中去掉纳米活性炭纤维和竹炭纤维后,会明显降低面料的抗菌性;实施例1与对比例2相比可知,在该面料中去掉多晶氧化铝纤维后,会明显降低面料的抗菌性。
实施例1与对比例3相比可知,当改变该面料的组分后,面料的抗菌性、抗静电性和透气性明显下降。实施例1与对比例4相比可知,当整理剂中去掉ε-聚赖氨酸后,会影响整理剂的抗菌性。
显然,上述实施例仅仅是为清楚地说明所作的举例,而并非对实施方式的限定。对于所属领域的普通技术人员来说,在上述说明的基础上还可以做出其它不同形式的变化或变动。这里无需也无法对所有的实施方式予以穷举。而由此所引申出的显而易见的变化或变动仍处于本发明创造的保护范围之中。

Claims (9)

1.一种抗菌整理剂,其特征在于,包括质量比为(1-3):(4-10):(2-6):(2-4):(3-9):(2-6):(3-9):(2-4)的甲壳素、羧乙基壳聚糖、聚乙烯吡咯烷酮、磷酸二氢钠、ε-聚赖氨酸、环糊精、碳酸氢钙和聚乙烯醇。
2.根据权利要求1所述的抗菌整理剂,其特征在于,所述抗菌整理剂的固含量为1-5%。
3.一种抗菌纺织面料,其特征在于,包括面料本体及涂覆在面料本体上权利要求1或2所述的抗菌整理剂,以重量份数计,所述面料本体包括以下原料,2-4份纳米银纤维、2-4份多晶氧化铝纤维、2-6份纳米活性炭纤维、10-20份竹炭纤维和10-20份大豆纤维。
4.根据权利要求3所述的抗菌纺织面料,其特征在于,所述面料本体还包括3-9份防辐射纤维;
以重量份数计,所述防辐射纤维包括2-4份石墨烯碳纳米纤维、1-3份聚苯胺纤维、0.5-1.5份羟乙基纤维素、1-3份纳米铜粉和1-2份纳米硫酸钡。
5.根据权利要求3或4所述的抗菌纺织面料,其特征在于,所述面料本体还包括3-9份苎麻纤维和4-10份涤纶纤维。
6.一种权利要求3-5任一项所述抗菌纺织面料的制备方法,其特征在于,包括以下步骤,
将各个原料与水混合,分散,得到混纺纤维;
然后将混纺纤维制成经纱和纬纱,垂直交织后得到面料本体;
将面料本体浸渍于抗菌整理剂中,经干燥后得到防晒抗菌纺织面料。
7.根据权利要求6所述的制备方法,其特征在于,所述经纱的细度为110-130D,所述纬纱的细度为110-130D。
8.根据权利要求6或7所述的制备方法,其特征在于,所述分散的速率为3000-4000r/min,时间为10-20min。
9.根据权利要求6-8任一项所述的制备方法,其特征在于,所述干燥的温度为60-70℃,时间为20-30min。
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