CN111394992A - 一种抗菌防紫外线面料的制备方法 - Google Patents
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Abstract
本发明公开了一种抗菌防紫外线面料的制备方法,其具体过程为:将涤纶纤维、棉纤维进行混纺织布获得织物;使用染料对上述织物进行染色获得染色织物;将获得的染色织物浸轧防紫外线剂水溶液,轧液率为70%,再于80‑110℃烘干,然后于160‑170℃拉幅30s,获得防紫外线织物;将防紫外线织物浸轧抗菌剂水溶液,轧液率为70%,再于80‑110℃烘干,然后于130℃拉幅30s,最终获得抗菌防紫外线面料。本发明所制得的抗菌防紫外线面料具有抗菌、防霉、除臭、吸湿、抗静电、防紫外线、手感柔软、丰满、对人体无毒、对皮肤无过敏反应、安全及绿色环保等优点。
Description
技术领域
本发明属于多功能纺织面料的制备技术领域,具体涉及一种抗菌防紫外线面料的制备方法。
背景技术
目前抗菌面料的生产方法可以分为两种,一种是将抗菌剂添加到成纤聚合物中,采用共混纺织法制成抗菌纤维,通过纺织方法制成抗菌纺织品,其缺点是仅仅适合合成纤维,如涤纶、锦纶、丙纶等;另一种是采用抗菌剂进行后整理,使纺织品具有抗菌功能,优点是加工方法成本低廉,适合纯纺及混纺织物,适应性较广。
目前防紫外线纺织品的加工方法有以下几种:(1)将防紫外剂在聚合或熔融纺丝过程中加入到纺丝液中,制成防紫外线纤维,优点是具有良好的防紫外线效果,耐洗涤,缺点是成本稍高,适合合成纤维;(2)涂层法是在织物表面形成防紫外线涂层,优点是具有耐久的防紫外线效果,缺点是适应性差,不适合衣料用;(3)后整理是对织物进行浸轧(浸渍)防紫外整理液,将防紫外线固着在织物上,优点是加工方便,成本低廉,适合各种织物。
上述抗菌织物及防紫外线织物存在功能单一的问题,不能很好地满足人们对多功能面料的需求。
发明内容
本发明为解决现有抗菌面料、防紫外线面料存在的功能单一、加工复杂等技术问题,提供了一种加工方法简单、通过一般印染加工设备即可生产,成本低廉、防护效果好的抗菌防紫外线面料的制备方法。
本发明为解决上述技术问题采用如下技术方案,一种抗菌防紫外线面料的制备方法,其特征在于具体过程为:
步骤S1:将涤纶纤维、棉纤维进行混纺织布获得织物;
步骤S2:使用染料对上述织物进行染色获得染色织物;
步骤S3:将获得的染色织物浸轧防紫外线剂水溶液,该防紫外线剂水溶液中洁尔爽品牌抗紫外线整理剂紫外线吸收剂SCJ-966的浓度为50-100g/L、洁尔爽品牌低温固着剂SCJ-939的浓度为40-90g/L,轧液率为70%,再于80-110℃烘干,然后于160-170℃拉幅30s,获得防紫外线织物;
步骤S4:将防紫外线织物浸轧抗菌剂水溶液,该抗菌剂水溶液中洁尔爽SCJ-920抗菌防螨防霉防臭整理剂的浓度为60-100g/L,轧液率为70%,再于80-110℃烘干,然后于130℃拉幅30s,最终获得抗菌防紫外线面料。
本发明与现有技术相比具有以下有益效果:本发明所制得的抗菌防紫外线面料具有抗菌、防霉、除臭、吸湿、抗静电、防紫外线、手感柔软、丰满、对人体无毒、对皮肤无过敏反应、安全及绿色环保等优点。
具体实施方式
以下通过实施例对本发明的上述内容做进一步详细说明,但不应该将此理解为本发明上述主题的范围仅限于以下的实施例,凡基于本发明上述内容实现的技术均属于本发明的范围。
实施例1
步骤S1:将涤纶纤维、棉纤维进行混纺织布获得织物;
步骤S2:使用染料对上述织物进行染色获得染色织物;
步骤S3:将获得的染色织物浸轧防紫外线剂水溶液,该防紫外线剂水溶液中洁尔爽品牌抗紫外线整理剂紫外线吸收剂SCJ-966的浓度为80g/L、洁尔爽品牌低温固着剂SCJ-939的浓度为40g/L,轧液率为70%,再于80-110℃烘干,然后于160-170℃拉幅30s,获得防紫外线织物;
步骤S4:将防紫外线织物浸轧抗菌剂水溶液,该抗菌剂水溶液中洁尔爽SCJ-920抗菌防螨防霉防臭整理剂的浓度为90g/L,轧液率为70%,再于80-110℃烘干,然后于130℃拉幅30s,最终获得抗菌防紫外线面料。
实施例2
步骤S1:将涤纶纤维、棉纤维进行混纺织布获得织物;
步骤S2:使用染料对上述织物进行染色获得染色织物;
步骤S3:将获得的染色织物浸轧防紫外线剂水溶液,该防紫外线剂水溶液中洁尔爽品牌抗紫外线整理剂紫外线吸收剂SCJ-966的浓度为90g/L、洁尔爽品牌低温固着剂SCJ-939的浓度为45g/L,轧液率为70%,再于80-110℃烘干,然后于160-170℃拉幅30s,获得防紫外线织物;
步骤S4:将防紫外线织物浸轧抗菌剂水溶液,该抗菌剂水溶液中洁尔爽SCJ-920抗菌防螨防霉防臭整理剂的浓度为100g/L,轧液率为70%,再于80-110℃烘干,然后于130℃拉幅30s,最终获得抗菌防紫外线面料。
以上实施例描述了本发明的基本原理、主要特征及优点,本行业的技术人员应该了解,本发明不受上述实施例的限制,上述实施例和说明书中描述的只是说明本发明的原理,在不脱离本发明原理的范围下,本发明还会有各种变化和改进,这些变化和改进均落入本发明保护的范围内。
Claims (3)
1.一种抗菌防紫外线面料的制备方法,其特征在于具体过程为:
步骤S1:将涤纶纤维、棉纤维进行混纺织布获得织物;
步骤S2:使用染料对上述织物进行染色获得染色织物;
步骤S3:将获得的染色织物浸轧防紫外线剂水溶液,该防紫外线剂水溶液中洁尔爽品牌抗紫外线整理剂紫外线吸收剂SCJ-966的浓度为50-100g/L、洁尔爽品牌低温固着剂SCJ-939的浓度为40-90g/L,轧液率为70%,再于80-110℃烘干,然后于160-170℃拉幅30s,获得防紫外线织物;
步骤S4:将防紫外线织物浸轧抗菌剂水溶液,该抗菌剂水溶液中洁尔爽SCJ-920抗菌防螨防霉防臭整理剂的浓度为60-100g/L,轧液率为70%,再于80-110℃烘干,然后于130℃拉幅30s,最终获得抗菌防紫外线面料。
2.根据权利要求1所述的抗菌防紫外线面料的制备方法,其特征在于具体步骤为:
步骤S1:将涤纶纤维、棉纤维进行混纺织布获得织物;
步骤S2:使用染料对上述织物进行染色获得染色织物;
步骤S3:将获得的染色织物浸轧防紫外线剂水溶液,该防紫外线剂水溶液中洁尔爽品牌抗紫外线整理剂紫外线吸收剂SCJ-966的浓度为80g/L、洁尔爽品牌低温固着剂SCJ-939的浓度为40g/L,轧液率为70%,再于80-110℃烘干,然后于160-170℃拉幅30s,获得防紫外线织物;
步骤S4:将防紫外线织物浸轧抗菌剂水溶液,该抗菌剂水溶液中洁尔爽SCJ-920抗菌防螨防霉防臭整理剂的浓度为90g/L,轧液率为70%,再于80-110℃烘干,然后于130℃拉幅30s,最终获得抗菌防紫外线面料。
3.根据权利要求1所述的抗菌防紫外线面料的制备方法,其特征在于具体步骤为:
步骤S1:将涤纶纤维、棉纤维进行混纺织布获得织物;
步骤S2:使用染料对上述织物进行染色获得染色织物;
步骤S3:将获得的染色织物浸轧防紫外线剂水溶液,该防紫外线剂水溶液中洁尔爽品牌抗紫外线整理剂紫外线吸收剂SCJ-966的浓度为90g/L、洁尔爽品牌低温固着剂SCJ-939的浓度为45g/L,轧液率为70%,再于80-110℃烘干,然后于160-170℃拉幅30s,获得防紫外线织物;
步骤S4:将防紫外线织物浸轧抗菌剂水溶液,该抗菌剂水溶液中洁尔爽SCJ-920抗菌防螨防霉防臭整理剂的浓度为100g/L,轧液率为70%,再于80-110℃烘干,然后于130℃拉幅30s,最终获得抗菌防紫外线面料。
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CN111809392A (zh) * | 2020-07-24 | 2020-10-23 | 上海封林贸易有限公司 | 抗菌内衣及其制备方法 |
CN111962299A (zh) * | 2020-07-15 | 2020-11-20 | 新乡市护神特种织物有限公司 | 一种阻燃抗菌涤棉混纺面料的制作方法 |
CN112030570A (zh) * | 2020-08-28 | 2020-12-04 | 吴江福华织造有限公司 | 多功能面料及其制备方法 |
CN113123123A (zh) * | 2021-05-08 | 2021-07-16 | 高阳县荣仪毯业有限公司 | 一种防紫外线织物的制备方法 |
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CN114263040A (zh) * | 2022-01-04 | 2022-04-01 | 杭州琪瑶纺织有限公司 | 一种防紫外线耐高温抗菌面料及其制备方法 |
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