CN105568671A - 一种速干抗菌涤纶纺织品的加工方法 - Google Patents
一种速干抗菌涤纶纺织品的加工方法 Download PDFInfo
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Abstract
本发明公开了一种速干抗菌涤纶纺织品的加工方法。具体加工方法为:使用低温大气等离子体表面处理设备,针对涤纶纺织品的双面,进行物理表面改性;所述低温大气等离子体的照射功率为照射功率50-1000瓦/平方米*分钟。本发明的加工方法不使用任何化学品,只使用低温大气等离子体,对涤纶纺织品(包含针织物,机织物与非织物),进行织物双面的表面改性,使得织物表面的涤纶纤维具有亲水性能,同时不会改变织物本身的透气性能。经过此低温大气等离子体表面处理的纺织品,不使用任何的亲水性化学品,就能得到制程环保的吸湿速干纺织品。
Description
技术领域
本发明涉及一种速干抗菌涤纶纺织品的加工方法,属于纺织品加工技术领域。
背景技术
涤纶纤维由于天然含水率低于0.4%,使得使用涤纶纤维所生产的纺织品,具有疏水性。为了增加穿着的舒适性,一般会将涤纶织物进行亲水性加工,使得织物具有亲水与吸水能力。如此使得穿着者流汗时,织物可以尽快吸收穿着者的汗液,然后将吸收的汗液,经由织物内部扩散到外部,进行外部蒸发。使得穿着者具有干爽的舒适感。
发明内容
为了克服现有技术的不足,本发明提供了一种速干抗菌涤纶纺织品的加工方法。
本发明是通过以下技术方案来实现的:
一种速干抗菌涤纶纺织品的加工方法,使用低温大气等离子体表面处理设备,针对涤纶纺织品的双面,进行物理表面改性;所述低温大气等离子体的照射功率为照射功率50-1000瓦/平方米*分钟。
所述的一种速干抗菌涤纶纺织品的加工方法,所述改性后的涤纶纺织品置于抑菌剂中浸泡2-3h,在温度为60-70℃条件下烘干。
所述的一种速干抗菌涤纶纺织品的加工方法,所述抑菌剂包括以下重量份数的原料:金银花40-60份、黄岑3-8份、甘草10-14份、艾叶20-30份、苦参15-18份、黄连20-25份和连翘10-14份。
所述的一种速干抗菌涤纶纺织品的加工方法,所述抑菌剂是通过以下步骤获得的:将金银花、黄岑、甘草、艾叶、苦参、黄连和连翘置于90-100℃水中提取40-60min,提取两次,合并两次滤液,将滤液浓缩后,搅拌条件下加入无水乙醇,静止24h后,浓缩,得到的浓缩液加入适量柠檬酸,得到所述抑菌剂。
所述的一种速干抗菌涤纶纺织品的加工方法,将浸泡抑菌剂后的涤纶纺织品置于柔软剂中浸泡1-2h,在温度为60-70℃条件下烘干,所述柔软剂包括以下重量份数的原料:二甲基二硅氧烷10-14份、硬脂酸钠3-9份、甘油15-20份、无水乙醇20-26份、石蜡30-35份、聚丙烯酰胺5-10份、丙烯酸20-30份、月桂基硫醇3-6份和水15-20份。
所述的一种速干抗菌涤纶纺织品的加工方法,所述柔软剂是通过以下步骤获得的:将聚丙烯酰胺、硬脂酸钠、丙烯酸和水在搅拌条件下反应30-40min得到反应液;在温度为50-60℃条件下,在反应釜中加入石蜡,待石蜡熔化后,依次加入甘油、二甲基二硅氧烷、无水乙醇和月桂基硫醇,反应40-50min,停止加热后,加入反应液,充分搅拌后得到柔软剂。
本发明所达到的有益效果:
本发明的加工方法不使用任何化学品,只使用低温大气等离子体,对涤纶纺织品(包含针织物,机织物与非织物),进行织物双面的表面改性,使得织物表面的涤纶纤维具有亲水性能,同时不会改变织物本身的透气性能。经过此低温大气等离子体表面处理的纺织品,不使用任何的亲水性化学品,就能得到制程环保的吸湿速干纺织品。此纺织品的吸湿速干性,符合测试标准GB/T21655.1-2008/纺织品吸湿速干评定的要求。
具体实施方式
实施例1
一种速干抗菌涤纶纺织品的加工方法,使用低温大气等离子体表面处理设备,针对涤纶纺织品的双面,进行物理表面改性;所述低温大气等离子体的照射功率为照射功率50瓦/平方米*分钟。
实施例2
一种速干抗菌涤纶纺织品的加工方法,使用低温大气等离子体表面处理设备,针对涤纶纺织品的双面,进行物理表面改性;所述低温大气等离子体的照射功率为照射功率1000瓦/平方米*分钟。
实施例3
一种速干抗菌涤纶纺织品的加工方法,使用低温大气等离子体表面处理设备,针对涤纶纺织品的双面,进行物理表面改性;所述低温大气等离子体的照射功率为照射功率200瓦/平方米*分钟。
实施例4
一种速干抗菌涤纶纺织品的加工方法,使用低温大气等离子体表面处理设备,针对涤纶纺织品的双面,进行物理表面改性;所述低温大气等离子体的照射功率为照射功率500瓦/平方米*分钟。
实施例5
一种速干抗菌涤纶纺织品的加工方法,使用低温大气等离子体表面处理设备,针对涤纶纺织品的双面,进行物理表面改性;所述低温大气等离子体的照射功率为照射功率800瓦/平方米*分钟。
实施例6
一种速干抗菌涤纶纺织品的加工方法,使用低温大气等离子体表面处理设备,针对涤纶纺织品的双面,进行物理表面改性;所述低温大气等离子体的照射功率为照射功率300瓦/平方米*分钟。所述改性后的涤纶纺织品置于抑菌剂中浸泡2-3h,在温度为60-70℃条件下烘干。
其中,所述抑菌剂包括以下重量份数的原料:金银花40份、黄岑8份、甘草10份、艾叶30份、苦参15份、黄连25份和连翘10份。
所述抑菌剂是通过以下步骤获得的:将金银花、黄岑、甘草、艾叶、苦参、黄连和连翘置于90-100℃水中提取40-60min,提取两次,合并两次滤液,将滤液浓缩后,搅拌条件下加入无水乙醇,静止24h后,浓缩,得到的浓缩液加入适量柠檬酸,得到所述抑菌剂。
在对涤纶纺织品进行亲水性加工后,再进行抑菌性加工,提高了涤纶纺织品的抑菌性能,同时,抑菌剂制备方法简单,各成分协同作用,抑菌效果好,且具有良好的气味。
实施例7
一种速干抗菌涤纶纺织品的加工方法,使用低温大气等离子体表面处理设备,针对涤纶纺织品的双面,进行物理表面改性;所述低温大气等离子体的照射功率为照射功率500瓦/平方米*分钟。所述改性后的涤纶纺织品置于抑菌剂中浸泡2-3h,在温度为60-70℃条件下烘干。
其中,所述抑菌剂包括以下重量份数的原料:金银花50份、黄岑6份、甘草12份、艾叶23份、苦参17份、黄连24份和连翘11份。
所述抑菌剂是通过以下步骤获得的:将金银花、黄岑、甘草、艾叶、苦参、黄连和连翘置于90-100℃水中提取40-60min,提取两次,合并两次滤液,将滤液浓缩后,搅拌条件下加入无水乙醇,静止24h后,浓缩,得到的浓缩液加入适量柠檬酸,得到所述抑菌剂。
实施例8
一种速干抗菌涤纶纺织品的加工方法,使用低温大气等离子体表面处理设备,针对涤纶纺织品的双面,进行物理表面改性;所述低温大气等离子体的照射功率为照射功率700瓦/平方米*分钟。所述改性后的涤纶纺织品置于抑菌剂中浸泡2-3h,在温度为60-70℃条件下烘干。
其中,所述抑菌剂包括以下重量份数的原料:金银花60份、黄岑3份、甘草14份、艾叶20份、苦参18份、黄连20份和连翘14份。
所述抑菌剂是通过以下步骤获得的:将金银花、黄岑、甘草、艾叶、苦参、黄连和连翘置于90-100℃水中提取40-60min,提取两次,合并两次滤液,将滤液浓缩后,搅拌条件下加入无水乙醇,静止24h后,浓缩,得到的浓缩液加入适量柠檬酸,得到所述抑菌剂。
实施例9
一种速干抗菌涤纶纺织品的加工方法,使用低温大气等离子体表面处理设备,针对涤纶纺织品的双面,进行物理表面改性;所述低温大气等离子体的照射功率为照射功率600瓦/平方米*分钟。所述改性后的涤纶纺织品置于抑菌剂中浸泡2-3h,在温度为60-70℃条件下烘干。将浸泡抑菌剂后的涤纶纺织品置于柔软剂中浸泡1-2h,在温度为60-70℃条件下烘干。
所述抑菌剂包括以下重量份数的原料:金银花40份、黄岑8份、甘草10份、艾叶30份、苦参15份、黄连25份和连翘10份。
所述抑菌剂是通过以下步骤获得的:将金银花、黄岑、甘草、艾叶、苦参、黄连和连翘置于90-100℃水中提取40-60min,提取两次,合并两次滤液,将滤液浓缩后,搅拌条件下加入无水乙醇,静止24h后,浓缩,得到的浓缩液加入适量柠檬酸,得到所述抑菌剂。
所述柔软剂包括以下重量份数的原料:二甲基二硅氧烷10份、硬脂酸钠3份、甘油20份、无水乙醇20份、石蜡35份、聚丙烯酰胺5份、丙烯酸30份、月桂基硫醇3份和水20份。
所述柔软剂是通过以下步骤获得的:将聚丙烯酰胺、硬脂酸钠、丙烯酸和水在搅拌条件下反应30-40min得到反应液;在温度为50-60℃条件下,在反应釜中加入石蜡,待石蜡熔化后,依次加入甘油、二甲基二硅氧烷、无水乙醇和月桂基硫醇,反应40-50min,停止加热后,加入反应液,充分搅拌后得到柔软剂。
在对涤纶纺织品进行亲水性加工后,再进行抑菌性和柔软性加工,提高了涤纶纺织品的抑菌性能和柔软性能,同时,柔软剂制备方法简单,各成分协同作用,可获得优良的柔软效果和丰满、滑爽的手感,还能改善涤纶纺织品的耐磨性及撕破强力。
实施例10
一种速干抗菌涤纶纺织品的加工方法,使用低温大气等离子体表面处理设备,针对涤纶纺织品的双面,进行物理表面改性;所述低温大气等离子体的照射功率为照射功率850瓦/平方米*分钟。所述改性后的涤纶纺织品置于抑菌剂中浸泡2-3h,在温度为60-70℃条件下烘干。将浸泡抑菌剂后的涤纶纺织品置于柔软剂中浸泡1-2h,在温度为60-70℃条件下烘干。
所述抑菌剂包括以下重量份数的原料:金银花50份、黄岑6份、甘草12份、艾叶23份、苦参17份、黄连24份和连翘11份。
所述抑菌剂是通过以下步骤获得的:将金银花、黄岑、甘草、艾叶、苦参、黄连和连翘置于90-100℃水中提取40-60min,提取两次,合并两次滤液,将滤液浓缩后,搅拌条件下加入无水乙醇,静止24h后,浓缩,得到的浓缩液加入适量柠檬酸,得到所述抑菌剂。
所述柔软剂包括以下重量份数的原料:二甲基二硅氧烷14份、硬脂酸钠9份、甘油15份、无水乙醇26份、石蜡30份、聚丙烯酰胺10份、丙烯酸20份、月桂基硫醇6份和水15份。
所述柔软剂是通过以下步骤获得的:将聚丙烯酰胺、硬脂酸钠、丙烯酸和水在搅拌条件下反应30-40min得到反应液;在温度为50-60℃条件下,在反应釜中加入石蜡,待石蜡熔化后,依次加入甘油、二甲基二硅氧烷、无水乙醇和月桂基硫醇,反应40-50min,停止加热后,加入反应液,充分搅拌后得到柔软剂。
实施例11
一种速干抗菌涤纶纺织品的加工方法,使用低温大气等离子体表面处理设备,针对涤纶纺织品的双面,进行物理表面改性;所述低温大气等离子体的照射功率为照射功率400瓦/平方米*分钟。所述改性后的涤纶纺织品置于抑菌剂中浸泡2-3h,在温度为60-70℃条件下烘干。将浸泡抑菌剂后的涤纶纺织品置于柔软剂中浸泡1-2h,在温度为60-70℃条件下烘干。
所述抑菌剂包括以下重量份数的原料:金银花60份、黄岑3份、甘草14份、艾叶20份、苦参18份、黄连20份和连翘14份。
所述抑菌剂是通过以下步骤获得的:将金银花、黄岑、甘草、艾叶、苦参、黄连和连翘置于90-100℃水中提取40-60min,提取两次,合并两次滤液,将滤液浓缩后,搅拌条件下加入无水乙醇,静止24h后,浓缩,得到的浓缩液加入适量柠檬酸,得到所述抑菌剂。
所述柔软剂包括以下重量份数的原料:二甲基二硅氧烷12份、硬脂酸钠6份、甘油18份、无水乙醇22份、石蜡32份、聚丙烯酰胺8份、丙烯酸25份、月桂基硫醇5份和水18份。
所述柔软剂是通过以下步骤获得的:将聚丙烯酰胺、硬脂酸钠、丙烯酸和水在搅拌条件下反应30-40min得到反应液;在温度为50-60℃条件下,在反应釜中加入石蜡,待石蜡熔化后,依次加入甘油、二甲基二硅氧烷、无水乙醇和月桂基硫醇,反应40-50min,停止加热后,加入反应液,充分搅拌后得到柔软剂。
以上所述仅是本发明的优选实施方式,应当指出,对于本技术领域的普通技术人员来说,在不脱离本发明技术原理的前提下,还可以做出若干改进和变形,这些改进和变形也应视为本发明的保护范围。
Claims (6)
1.一种速干抗菌涤纶纺织品的加工方法,其特征是,使用低温大气等离子体表面处理设备,针对涤纶纺织品的双面,进行物理表面改性;所述低温大气等离子体的照射功率为照射功率50-1000瓦/平方米*分钟。
2.根据权利要求1所述的一种速干抗菌涤纶纺织品的加工方法,其特征是,所述改性后的涤纶纺织品置于抑菌剂中浸泡2-3h,在温度为60-70℃条件下烘干。
3.根据权利要求2所述的一种速干抗菌涤纶纺织品的加工方法,其特征是,所述抑菌剂包括以下重量份数的原料:金银花40-60份、黄岑3-8份、甘草10-14份、艾叶20-30份、苦参15-18份、黄连20-25份和连翘10-14份。
4.根据权利要求3所述的一种速干抗菌涤纶纺织品的加工方法,其特征是,所述抑菌剂是通过以下步骤获得的:将金银花、黄岑、甘草、艾叶、苦参、黄连和连翘置于90-100℃水中提取40-60min,提取两次,合并两次滤液,将滤液浓缩后,搅拌条件下加入无水乙醇,静止24h后,浓缩,得到的浓缩液加入适量柠檬酸,得到所述抑菌剂。
5.根据权利要求2所述的一种速干抗菌涤纶纺织品的加工方法,其特征是,将浸泡抑菌剂后的涤纶纺织品置于柔软剂中浸泡1-2h,在温度为60-70℃条件下烘干,所述柔软剂包括以下重量份数的原料:二甲基二硅氧烷10-14份、硬脂酸钠3-9份、甘油15-20份、无水乙醇20-26份、石蜡30-35份、聚丙烯酰胺5-10份、丙烯酸20-30份、月桂基硫醇3-6份和水15-20份。
6.根据权利要求5所述的一种速干抗菌涤纶纺织品的加工方法,其特征是,所述柔软剂是通过以下步骤获得的:将聚丙烯酰胺、硬脂酸钠、丙烯酸和水在搅拌条件下反应30-40min得到反应液;在温度为50-60℃条件下,在反应釜中加入石蜡,待石蜡熔化后,依次加入甘油、二甲基二硅氧烷、无水乙醇和月桂基硫醇,反应40-50min,停止加热后,加入反应液,充分搅拌后得到柔软剂。
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