CN108950842A - 吸湿排汗抗菌面料及其制备方法 - Google Patents
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Abstract
本发明公开了一种吸湿排汗抗菌面料的制备方法,包括下述步骤:使坯布浸轧抗菌处理液、吸湿排汗整理液,得到吸湿排汗抗菌面料;坯布由下述重量份的原料混纺织造而成:Coolmax纤维12~14重量份;再生纤维素纤维40~50重量份;聚丙烯腈纤维6~8重量份。本发明通过对抗菌处理液与特定组成和含量的吸湿排汗整理液进行配伍,抗菌处理液和吸湿排汗整理液之间有协同促进作用,制得面料具备吸湿排汗抗菌性能,并改善穿着舒适性。
Description
技术领域
本发明涉及一种针织面料,特别是涉及一种吸湿排汗抗菌面料及其制备方法。
背景技术
随着人们生活水平的不断提高,人们对穿着舒适性的要求越来越高,服装面料的科技含量也在逐步提升。服装面料发展的趋势,是把高科技与时代经济、文化发展紧密结合,舒适、休闲、时尚、绿色、环保和健康的功能性面料成为发展潮流。
人们选择织物不仅追求漂亮的外观,还希望得到最周到的保护。尤其是在炎热的夏季和进行运动的时候,人们希望一可以尽情玩耍而无汗流挟背和闷热湿冷的后顾之忧,因此对面料的吸湿排汗性能提出了更高的要求。在夏季由于人们经常出汗,所以与湿度有关的感觉如不吸水性、黏贴感等对于夏季服装的整体舒适性起着很重要的作用。汗水产生与传送的问题是评估湿热舒适性的重要因素,当汗水出现在皮肤与衣服之间,穿着者便觉得很不舒适,像是湿、孰、冷的触感,贴在身上不仅妨碍活动,而且人体出汗后,残留在服装上的汗渍会产生异味,甚至会导致细菌繁殖,影响人的健康。现有的纤维织成的服装面料吸湿排汗性能较差,人体出汗后易产生异味及细菌繁殖,从而影响人们的健康,其接触舒适性及热湿舒适性均不够理想。
发明内容
针对上述不足之处,本发明的目的在于开发一款吸湿排汗抗菌面料,所述面料同时具有吸湿排汗和抗菌的功能。
本发明的技术方案概述如下:
一种吸湿排汗抗菌面料的制备方法,其中,包括下述步骤:使坯布浸轧抗菌处理液、吸湿排汗整理液,得到所述吸湿排汗抗菌面料;所述坯布由下述重量份的原料混纺织造而成:
Coolmax纤维 12~14重量份;
再生纤维素纤维 40~50重量份;
聚丙烯腈纤维 6~8重量份。
优选的是,所述的吸湿排汗抗菌面料的制备方法,其中,所述的再生纤维素纤维包括20~25wt%Tencel纤维、45~50wt%甲壳素纤维和30~35wt%Modal纤维。
优选的是,所述的吸湿排汗抗菌面料的制备方法,其中,所述抗菌处理液由下述重量份的组分组成:
优选的是,所述的吸湿排汗抗菌面料的制备方法,其中,所述吸湿排汗整理液由下述重量份的组分组成:
优选的是,所述的吸湿排汗抗菌面料的制备方法,其中,还包括1~3重量份的甲基三氟丙基硅油。
优选的是,所述的吸湿排汗抗菌面料的制备方法,其中,还包括0.5~2重量份的烯丙基聚乙二醇。
优选的是,所述的吸湿排汗抗菌面料的制备方法,其中,还包括1~3重量份的水杨酸己酯。
优选的是,所述的吸湿排汗抗菌面料的制备方法,其中,浸轧的具体操作如下:将所述抗菌处理液和吸湿排汗整理液通过浸轧的方法施加到所述坯布上,得到浸轧有抗菌处理液和吸湿排汗整理液的坯布,接着将所述浸轧有抗菌处理液和吸湿排汗整理液的坯布烘干,再进行焙烘,得到所述吸湿排汗抗菌面料。
优选的是,所述的吸湿排汗抗菌面料的制备方法,其中,坯布与所述抗菌处理液的质量比为100:4-6;所述坯布与所述吸湿排汗整理液的质量比为100:3-5;所述浸轧的方式为一浸一轧。
一种吸湿排汗抗菌面料的制备方法得到的吸湿排汗抗菌面料。
本发明的有益效果是:
(1)本发明通过对抗菌处理液与特定组成和含量的吸湿排汗整理液进行配伍,抗菌处理液和吸湿排汗整理液之间有协同促进作用,制得面料具有吸湿排汗抗菌性能,并改善穿着舒适性。
(2)本发明坯布以再生纤维素纤维为主体,加入Coolmax纤维保证面料的透气性和良好的导湿性,通过加入聚丙烯腈纤维提高其柔软性能、易染性能、抗紫外线性能、抗菌防蛀性能,并加入再生纤维素纤维使得面料的吸湿排汗和抗菌性能达到最佳。
(3)本发明的抗菌处理液以甲壳素、磷酸二氢铵、咪康唑协同作为抗菌剂,使得对病原微生物有杀死作用或抑制生长作用达到最佳;吸湿排汗整理液以聚甲基丙烯酸甲酯作为坯布的固着性物质,二乙烯基苯作为交联剂,通过加入聚萘甲醛磺酸钠盐提高吸湿排汗整理液在坯布中的渗透性,通过加入甲基三氟丙基硅油提高坯布的柔软性能,提高面料的穿着舒适性能,通过加入烯丙基聚乙二醇提高聚甲基丙烯酸甲酯与纤维进行联结的性能,水杨酸己酯进一步提高坯布的亲水性能。
具体实施方式
下面结合实施例对本发明做进一步的详细说明,以令本领域技术人员参照说明书文字能够据以实施。
本案提出一种吸湿排汗抗菌面料的制备方法,包括下述步骤:使坯布浸轧抗菌处理液、吸湿排汗整理液,得到所述吸湿排汗抗菌面料;所述坯布由下述重量份的原料混纺织造而成:
Coolmax纤维 12~14重量份;
再生纤维素纤维 40~50重量份;
聚丙烯腈纤维 6~8重量份。
Coolmax纤维四管道纤维及纤维之间形成最大的空间,保证最好的透气性,把皮肤表面散发的湿气快速传导至外层纤维,保持肌肤清爽,令活动倍感舒适,它有着良好的导湿性,与其他纤维交织的针织面料具有良好的导湿效果;通过加入聚丙烯腈纤维提高其柔软性能、易染性能、抗紫外线性能、抗菌防蛀性能,具有柔软、膨松、易染、色泽鲜艳、耐光、抗菌、不怕虫蛀的优点。
坯布采用常规工艺将Coolmax纤维与再生纤维素纤维混纺成混纺纱线,再用混纺纱线与聚丙烯腈纤维使用针织纬编大圆机进行针织织造,得到坯布。
作为本案又一实施例,其中,再生纤维素纤维包括20~25wt%Tencel纤维、45~50wt%甲壳素纤维和30~35wt%Modal纤维。Tencel纤维具有棉的舒适性、涤纶的强度、毛织物的豪华美感和真丝的独特触感及柔软垂坠,无论在干或湿的状态下,均极具韧性,具有非常高的刚性,良好的水洗尺寸稳定性(缩水率仅为2%),具有较高的吸湿性,手感柔软,悬垂性好;甲壳素纤维其大分子链上存在大量的羟基(-OH)和氨基(-NH2)等亲水性基团,故纤维有很好的亲水性和很高的吸湿性。甲壳素纤维的平衡回潮率一般在12%~16%之间,在不同的成形条件下,其保水值均在130%左右,还具有手感柔软亲切、无刺激、抑菌除臭功能,对皮肤有很好的养护作用;Modal纤维湿强要比普通粘胶优异、光泽、柔软性、吸湿性、染色性、染色牢度均优于纯棉产品,通过加入Modal纤维提高其耐穿性能和吸湿性能;Tencel纤维、甲壳素纤维和Modal纤维通过合理配伍,使得面料的吸湿排汗和抗菌性能达到最佳。
作为本案又一实施例,其中,抗菌处理液由下述重量份的组分组成:
甲壳素、磷酸二氢铵、咪康唑协同作为抗菌剂,使得对病原微生物有杀死作用或抑制生长作用达到最佳;乙醇作为咪康唑的溶解剂,可提高抗菌处理液的稳定性能。
作为本案又一实施例,其中,吸湿排汗整理液由下述重量份的组分组成:
聚甲基丙烯酸甲酯作为坯布的固着性物质,在高温作用下,分子链段被锚牢在聚丙烯腈纤维的表面,使坯布由原来的疏水性表面变成耐久的亲水性表面,使其表面形成一层亲水性化合物,提高表面亲水性能;二乙烯基苯作为交联剂,可将聚甲基丙烯酸甲酯与纤维进行联结;聚萘甲醛磺酸钠盐具有良好的扩散性,通过加入聚萘甲醛磺酸钠盐提高吸湿排汗整理液在坯布中的渗透性;海藻酸钠进一步提高其渗透性。
作为本案又一实施例,其中,还包括1~3重量份的甲基三氟丙基硅油。通过加入甲基三氟丙基硅油提高坯布的柔软性能,提高面料的穿着舒适性能。
作为本案又一实施例,其中,还包括0.5~2重量份的烯丙基聚乙二醇。烯丙基聚乙二醇提高聚甲基丙烯酸甲酯与纤维进行联结的性能。
作为本案又一实施例,其中,还包括1~3重量份的水杨酸己酯。水杨酸己酯进一步提高坯布的亲水性能。
作为本案又一实施例,其中,浸轧的具体操作如下:将所述抗菌处理液和吸湿排汗整理液通过浸轧的方法施加到所述坯布上,得到浸轧有抗菌处理液和吸湿排汗整理液的坯布,接着将所述浸轧有抗菌处理液和吸湿排汗整理液的坯布烘干,再进行焙烘,得到所述吸湿排汗抗菌面料。
作为本案又一实施例,其中,坯布与所述抗菌处理液的质量比为100:4-6;所述坯布与所述吸湿排汗整理液的质量比为100:3-5;所述浸轧的方式为一浸一轧。
一种上述方法制备得到的吸湿排汗抗菌面料。
下面列出一些具体的实施例:
实施例1:
一种吸湿排汗抗菌面料的制备方法,包括下述步骤:
(1)坯布采用常规工艺将Coolmax纤维与再生纤维素纤维混纺成混纺纱线,再用混纺纱线与聚丙烯腈纤维使用针织纬编大圆机进行针织织造,得到坯布。坯布由下述重量份的原料混纺织造而成:
(2)坯布浸轧抗菌处理液得到抗菌面料;坯布与抗菌处理液的质量比为100:4,抗菌处理液由下述重量份的组分组成:
(3)坯布浸轧吸湿排汗整理液,得到吸湿排汗抗菌面料;坯布与吸湿排汗整理液的质量比为100:3,
吸湿排汗整理液由下述重量份的组分组成:
浸轧的具体操作如下:将抗菌处理液和吸湿排汗整理液通过浸轧的方法施加到坯布上,得到浸轧有抗菌处理液和吸湿排汗整理液的坯布,接着将浸轧有抗菌处理液和吸湿排汗整理液的坯布烘干,再进行焙烘,得到吸湿排汗抗菌面料。烘干的温度为120℃,时间为2分钟;焙烘的温度为150℃,时间为5分钟。
实施例2:
一种吸湿排汗抗菌面料的制备方法,包括下述步骤:
(1)坯布采用常规工艺将Coolmax纤维与再生纤维素纤维混纺成混纺纱线,再用混纺纱线与聚丙烯腈纤维使用针织纬编大圆机进行针织织造,得到坯布。坯布由下述重量份的原料混纺织造而成:
(2)坯布浸轧抗菌处理液得到抗菌面料;坯布与抗菌处理液的质量比为100:5,抗菌处理液由下述重量份的组分组成:
(3)坯布浸轧吸湿排汗整理液,得到吸湿排汗抗菌面料;坯布与吸湿排汗整理液的质量比为100:4,吸湿排汗整理液由下述重量份的组分组成:
浸轧的具体操作如下:将抗菌处理液和吸湿排汗整理液通过浸轧的方法施加到坯布上,得到浸轧有抗菌处理液和吸湿排汗整理液的坯布,接着将浸轧有抗菌处理液和吸湿排汗整理液的坯布烘干,再进行焙烘,得到吸湿排汗抗菌面料。烘干的温度为120℃,时间为2分钟;焙烘的温度为150℃,时间为5分钟。
实施例3:
一种吸湿排汗抗菌面料的制备方法,包括下述步骤:
(1)坯布采用常规工艺将Coolmax纤维与再生纤维素纤维混纺成混纺纱线,再用混纺纱线与聚丙烯腈纤维使用针织纬编大圆机进行针织织造,得到坯布。坯布由下述重量份的原料混纺织造而成:
(2)坯布浸轧抗菌处理液得到抗菌面料;坯布与抗菌处理液的质量比为100:6,抗菌处理液由下述重量份的组分组成:
(3)坯布浸轧吸湿排汗整理液,得到吸湿排汗抗菌面料;坯布与吸湿排汗整理液的质量比为100:5,吸湿排汗整理液由下述重量份的组分组成:
浸轧的具体操作如下:将抗菌处理液和吸湿排汗整理液通过浸轧的方法施加到坯布上,得到浸轧有抗菌处理液和吸湿排汗整理液的坯布,接着将浸轧有抗菌处理液和吸湿排汗整理液的坯布烘干,再进行焙烘,得到吸湿排汗抗菌面料。烘干的温度为120℃,时间为2分钟;焙烘的温度为150℃,时间为5分钟。
对比例1:
一种吸湿排汗抗菌面料的制备方法,包括下述步骤:
(1)坯布采用常规工艺将Coolmax纤维与再生纤维素纤维混纺成混纺纱线,再用混纺纱线与聚丙烯腈纤维使用针织纬编大圆机进行针织织造,得到坯布。坯布由下述重量份的原料混纺织造而成:
(2)坯布浸轧抗菌处理液得到抗菌面料;坯布与抗菌处理液的质量比为100:4,抗菌处理液由下述重量份的组分组成:
(3)坯布浸轧吸湿排汗整理液,得到吸湿排汗抗菌面料;坯布与吸湿排汗整理液的质量比为100:3,
吸湿排汗整理液由下述重量份的组分组成:
浸轧的具体操作如下:将抗菌处理液和吸湿排汗整理液通过浸轧的方法施加到坯布上,得到浸轧有抗菌处理液和吸湿排汗整理液的坯布,接着将浸轧有抗菌处理液和吸湿排汗整理液的坯布烘干,再进行焙烘,得到吸湿排汗抗菌面料。烘干的温度为120℃,时间为2分钟;焙烘的温度为150℃,时间为5分钟。
对比例2:
一种吸湿排汗抗菌面料的制备方法,包括下述步骤:
(1)坯布采用常规工艺将Coolmax纤维与再生纤维素纤维混纺成混纺纱线,再用混纺纱线与聚丙烯腈纤维使用针织纬编大圆机进行针织织造,得到坯布。坯布由下述重量份的原料混纺织造而成:
(2)坯布浸轧抗菌处理液得到抗菌面料;坯布与抗菌处理液的质量比为100:4,抗菌处理液由下述重量份的组分组成:
(3)坯布浸轧吸湿排汗整理液,得到吸湿排汗抗菌面料;坯布与吸湿排汗整理液的质量比为100:3,
吸湿排汗整理液由下述重量份的组分组成:
浸轧的具体操作如下:将抗菌处理液和吸湿排汗整理液通过浸轧的方法施加到坯布上,得到浸轧有抗菌处理液和吸湿排汗整理液的坯布,接着将浸轧有抗菌处理液和吸湿排汗整理液的坯布烘干,再进行焙烘,得到吸湿排汗抗菌面料。烘干的温度为120℃,时间为2分钟;焙烘的温度为150℃,时间为5分钟。
对比例3:
一种吸湿排汗抗菌面料的制备方法,包括下述步骤:
(1)坯布采用常规工艺将Coolmax纤维与再生纤维素纤维混纺成混纺纱线,再用混纺纱线与聚丙烯腈纤维使用针织纬编大圆机进行针织织造,得到坯布。坯布由下述重量份的原料混纺织造而成:
(2)坯布浸轧抗菌处理液得到抗菌面料;坯布与抗菌处理液的质量比为100:5,抗菌处理液由下述重量份的组分组成:
(3)坯布浸轧吸湿排汗整理液,得到吸湿排汗抗菌面料;坯布与吸湿排汗整理液的质量比为100:4,吸湿排汗整理液由下述重量份的组分组成:
浸轧的具体操作如下:将抗菌处理液和吸湿排汗整理液通过浸轧的方法施加到坯布上,得到浸轧有抗菌处理液和吸湿排汗整理液的坯布,接着将浸轧有抗菌处理液和吸湿排汗整理液的坯布烘干,再进行焙烘,得到吸湿排汗抗菌面料。烘干的温度为120℃,时间为2分钟;焙烘的温度为150℃,时间为5分钟。
对比例4:
一种吸湿排汗抗菌面料的制备方法,包括下述步骤:
(1)坯布采用常规工艺将Coolmax纤维与再生纤维素纤维混纺成混纺纱线,再用混纺纱线与聚丙烯腈纤维使用针织纬编大圆机进行针织织造,得到坯布。坯布由下述重量份的原料混纺织造而成:
(2)坯布浸轧抗菌处理液得到抗菌面料;坯布与抗菌处理液的质量比为100:5,抗菌处理液由下述重量份的组分组成:
(3)坯布浸轧吸湿排汗整理液,得到吸湿排汗抗菌面料;坯布与吸湿排汗整理液的质量比为100:4,吸湿排汗整理液由下述重量份的组分组成:
浸轧的具体操作如下:将抗菌处理液和吸湿排汗整理液通过浸轧的方法施加到坯布上,得到浸轧有抗菌处理液和吸湿排汗整理液的坯布,接着将浸轧有抗菌处理液和吸湿排汗整理液的坯布烘干,再进行焙烘,得到吸湿排汗抗菌面料。烘干的温度为120℃,时间为2分钟;焙烘的温度为150℃,时间为5分钟。
对比例5:
一种吸湿排汗抗菌面料的制备方法,包括下述步骤:
(1)坯布采用常规工艺将Coolmax纤维与再生纤维素纤维混纺成混纺纱线,再用混纺纱线与聚丙烯腈纤维使用针织纬编大圆机进行针织织造,得到坯布。坯布由下述重量份的原料混纺织造而成:
(2)坯布浸轧抗菌处理液得到抗菌面料;坯布与抗菌处理液的质量比为100:6,抗菌处理液由下述重量份的组分组成:
(3)坯布浸轧吸湿排汗整理液,得到吸湿排汗抗菌面料;坯布与吸湿排汗整理液的质量比为100:5,吸湿排汗整理液由下述重量份的组分组成:
浸轧的具体操作如下:将抗菌处理液和吸湿排汗整理液通过浸轧的方法施加到坯布上,得到浸轧有抗菌处理液和吸湿排汗整理液的坯布,接着将浸轧有抗菌处理液和吸湿排汗整理液的坯布烘干,再进行焙烘,得到吸湿排汗抗菌面料。烘干的温度为120℃,时间为2分钟;焙烘的温度为150℃,时间为5分钟。
下面列出实施例和对比例的性能测试结果:
尽管本发明的实施方案已公开如上,但其并不仅仅限于说明书和实施方式中所列运用,它完全可以被适用于各种适合本发明的领域,对于熟悉本领域的人员而言,可容易地实现另外的修改,因此在不背离权利要求及等同范围所限定的一般概念下,本发明并不限于特定的细节。
Claims (10)
1.一种吸湿排汗抗菌面料的制备方法,其特征在于,包括下述步骤:使坯布浸轧抗菌处理液、吸湿排汗整理液,得到所述吸湿排汗抗菌面料;所述坯布由下述重量份的原料混纺织造而成:
Coolmax纤维 12~14重量份;
再生纤维素纤维 40~50重量份;
聚丙烯腈纤维 6~8重量份。
2.根据权利要求1所述的吸湿排汗抗菌面料的制备方法,其特征在于,所述的再生纤维素纤维包括20~25wt%Tencel纤维、45~50wt%甲壳素纤维和30~35wt%Modal纤维。
3.根据权利要求1所述的吸湿排汗抗菌面料的制备方法,其特征在于,所述抗菌处理液由下述重量份的组分组成:
4.根据权利要求1所述的吸湿排汗抗菌面料的制备方法,其特征在于,所述吸湿排汗整理液由下述重量份的组分组成:
5.根据权利要求4所述的吸湿排汗抗菌面料的制备方法,其特征在于,还包括1~3重量份的甲基三氟丙基硅油。
6.根据权利要求4所述的吸湿排汗抗菌面料的制备方法,其特征在于,还包括0.5~2重量份的烯丙基聚乙二醇。
7.根据权利要求4所述的吸湿排汗抗菌面料的制备方法,其特征在于,还包括1~3重量份的水杨酸己酯。
8.根据权利要求1所述的吸湿排汗抗菌面料的制备方法,其特征在于:所述浸轧的具体操作如下:将所述抗菌处理液和吸湿排汗整理液通过浸轧的方法施加到所述坯布上,得到浸轧有抗菌处理液和吸湿排汗整理液的坯布,接着将所述浸轧有抗菌处理液和吸湿排汗整理液的坯布烘干,再进行焙烘,得到所述吸湿排汗抗菌面料。
9.根据权利要求8所述的吸湿排汗抗菌面料的制备方法,其特征在于,所述坯布与所述抗菌处理液的质量比为100:4-6;所述坯布与所述吸湿排汗整理液的质量比为100:3-5;所述浸轧的方式为一浸一轧。
10.一种由权利要求1-9中任一项所述方法制备得到的吸湿排汗抗菌面料。
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