CN105442318A - 一种羊绒衫的防晒抗菌整理助剂 - Google Patents
一种羊绒衫的防晒抗菌整理助剂 Download PDFInfo
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Abstract
本发明公开了一种羊绒衫的防晒抗菌整理助剂,其包括复合酶溶液和二次整理液:复合酶溶液:多酚氧化酶1-1.3%,菠萝蛋白酶0.5%;鱼皮胶原蛋白3-3.5%,0.3-0.5%海藻纤维素;二次整理液:按如下质量百分比配置,2.5-2.9%纳米绢云母粉、0.5%六偏磷酸钠、0.2-0.4%乳酸钠,调节pH至7.5,置于30℃水中超声波搅拌30min,使其充分分散,得到纳米绢云母粉胶体粒子分散液。
Description
技术领域
本发明涉及一种羊绒衫的防晒抗菌整理助剂,属于纺织助剂领域。
背景技术
羊绒衫,是以山羊绒为原料针织而成的服装。根据纱线类别分为粗纺针织和精纺针织两种,根据原料比例可以分为纯羊绒及羊绒混纺两种。手感细软、柔滑,有光泽,保暖性好,穿着舒适,但强度较差。由于羊绒纤维表面具有鳞片并且纤维短细,纤维间抱合力差,在穿着和洗涤中存在严重的起球现象,影响羊绒衫的外观质量和使用寿命。
后整理方法是影响羊绒针性能的关键因素。随着生活水平的日益提高,人们对纺织服装的卫生保健意识日益增强,具有抗菌性能的贴身针织服装市场前景广阔。抗菌纺织品加工主要采用2种技术途径:一是在纤维纺丝成形前添加抗菌剂,进行改性处理得到抗菌纤维;二是使用抗菌剂,通过浸轧、浸渍、涂层、喷雾等方法整理织物,获得抗菌效果。直接采用抗菌纤维其抗菌效果持久,但只适用于合成纤维和再生纤维,技术要求高,操作复杂,成本较高。使用抗菌整理剂简单方便,适用于大多数纤维纺织品,成本低,但抗菌性能的持久性是否能得到保证,对织物的服用性能有否影响,已成为业内人士重点研究的课题。
而关于羊绒衫的防晒性能,在本领域关注的还暂时不多。
本发明旨在提供一种羊绒衫的防晒抗菌整理助剂,该助剂充分利用了生物酶,天然蛋白,天然矿物质,通过大量实验验证了生产工艺的最优化参数,处理后的羊绒衫有很好的防晒抗菌效果。
发明内容
基于背景技术存在的技术问题,本发明提供一种羊绒衫的防晒抗菌整理助剂,该助剂充分利用了生物酶,天然蛋白,天然矿物质,通过大量实验验证了生产工艺的最优化参数,处理后的羊绒衫有很好的防晒抗菌效果。
本发明的技术方案如下:
一种羊绒衫的防晒抗菌整理助剂,其包括复合酶溶液和二次整理液:
复合酶溶液:多酚氧化酶1-1.3%,菠萝蛋白酶0.5%,鱼皮胶原蛋白3-3.5%,0.3-0.5%海藻纤维素;
所述多酚氧化酶的酶活为350u/g,菠萝蛋白酶的酶活为500u/g,鱼皮胶原蛋白的分子量为1000道尔顿;
复合酶溶液处理工艺:
将羊绒衫置于复合酶溶液中,按浴比1:30,于40-50℃下保温震荡8-12min,然后迅速升温至80℃保持3s,自然冷却至40℃保持10min,然后浸轧,30℃烘干,备用;
二次整理液:按如下质量百分比配置,2.5-2.9%纳米绢云母粉、0.5%六偏磷酸钠、0.2-0.4%乳酸钠,调节pH至7.5,置于30℃水中超声波搅拌30min,使其充分分散,得到纳米绢云母粉胶体粒子分散液;
二次整理工艺:
将预处理后的羊绒衫置于二次整理液中,按浴比1:40-50,于50℃下保温震荡16-20min,浸轧,然后迅速升温至60℃保持5s,自然冷却至40℃保持15min,然后浸轧,30℃烘干,用去离子水清洗织物表面残留物,自然干燥待用;60℃下烘焙25-32s。
本发明的有益之处在于:
本发明的防晒抗菌整理助剂使用温度低,能耗少,不会引起环境污染,属绿色技术。而且处理后的羊绒衫不仅手感更柔软,而且具有极为优异的防晒抗菌效果,而且还抗起球,是一种很有市场潜力的新型高档羊绒衫。
具体实施方式
实施例1:
羊绒衫的防晒抗菌助剂的使用::
(1)选取优质羊绒纤维,编织成衣;
(2)抗菌防晒整理:
a.复合酶预处理:
复合酶溶液:多酚氧化酶1%,菠萝蛋白酶0.5%;鱼皮胶原蛋白3.5%,0.3%海藻纤维素;
所述多酚氧化酶的酶活为350u/g,菠萝蛋白酶的酶活为500u/g,鱼皮胶原蛋白的分子量为1000道尔顿;
将羊绒衫置于复合酶溶液中,按浴比1:30,于50℃下保温震荡8min,然后迅速升温至80℃保持3s,自然冷却至40℃保持10min,然后浸轧,30℃烘干,备用;
b.二次整理:
二次整理液:按如下质量百分比配置,2.9%纳米绢云母粉、0.5%六偏磷酸钠、0.2%乳酸钠,调节pH至7.5,置于30℃水中超声波搅拌30min,使其充分分散,得到纳米绢云母粉胶体粒子分散液;
二次整理:
将预处理后的羊绒衫置于二次整理液中,按浴比1:50,于50℃下保温震荡16min,浸轧,然后迅速升温至60℃保持5s,自然冷却至40℃保持15min,然后浸轧,30℃烘干,用去离子水清洗织物表面残留物,自然干燥待用;
(3)烘焙:
60℃下烘焙32s。
实施例2:
羊绒衫的防晒抗菌助剂的使用::
(1)选取优质羊绒纤维,编织成衣;
(2)抗菌防晒整理:
a.复合酶预处理:
复合酶溶液:多酚氧化酶1.3%,菠萝蛋白酶0.5%;鱼皮胶原蛋白3%,0.5%海藻纤维素;
所述多酚氧化酶的酶活为350u/g,菠萝蛋白酶的酶活为500u/g,鱼皮胶原蛋白的分子量为1000道尔顿;
将羊绒衫置于复合酶溶液中,按浴比1:30,于40℃下保温震荡12min,然后迅速升温至80℃保持3s,自然冷却至40℃保持10min,然后浸轧,30℃烘干,备用;
b.二次整理:
二次整理液:按如下质量百分比配置,2.5%纳米绢云母粉、0.5%六偏磷酸钠、0.4%乳酸钠,调节pH至7.5,置于30℃水中超声波搅拌30min,使其充分分散,得到纳米绢云母粉胶体粒子分散液;
二次整理:
将预处理后的羊绒衫置于二次整理液中,按浴比1:50,于50℃下保温震荡20min,浸轧,然后迅速升温至60℃保持5s,自然冷却至40℃保持15min,然后浸轧,30℃烘干,用去离子水清洗织物表面残留物,自然干燥待用;
(3)烘焙:
60℃下烘焙25s。
实施例3:
羊绒衫的防晒抗菌助剂的使用::
(1)选取优质羊绒纤维,编织成衣;
(2)抗菌防晒整理:
a.复合酶预处理:
复合酶溶液:多酚氧化酶1.1%,菠萝蛋白酶0.5%;鱼皮胶原蛋白3.4%,0.4%海藻纤维素;
所述多酚氧化酶的酶活为350u/g,菠萝蛋白酶的酶活为500u/g,鱼皮胶原蛋白的分子量为1000道尔顿;
将羊绒衫置于复合酶溶液中,按浴比1:30,于45℃下保温震荡9min,然后迅速升温至80℃保持3s,自然冷却至40℃保持10min,然后浸轧,30℃烘干,备用;
b.二次整理:
二次整理液:按如下质量百分比配置,2.8%纳米绢云母粉、0.5%六偏磷酸钠、0.3%乳酸钠,调节pH至7.5,置于30℃水中超声波搅拌30min,使其充分分散,得到纳米绢云母粉胶体粒子分散液;
二次整理:
将预处理后的羊绒衫置于二次整理液中,按浴比1:43,于50℃下保温震荡17min,浸轧,然后迅速升温至60℃保持5s,自然冷却至40℃保持15min,然后浸轧,30℃烘干,用去离子水清洗织物表面残留物,自然干燥待用;
(3)烘焙:
60℃下烘焙30s。
实施例4:
羊绒衫的防晒抗菌助剂的使用::
(1)选取优质羊绒纤维,编织成衣;
(2)抗菌防晒整理:
a.复合酶预处理:
复合酶溶液:多酚氧化酶1.2%,菠萝蛋白酶0.5%;鱼皮胶原蛋白3.1%,0.5%海藻纤维素;
所述多酚氧化酶的酶活为350u/g,菠萝蛋白酶的酶活为500u/g,鱼皮胶原蛋白的分子量为1000道尔顿;
将羊绒衫置于复合酶溶液中,按浴比1:30,于44℃下保温震荡11min,然后迅速升温至80℃保持3s,自然冷却至40℃保持10min,然后浸轧,30℃烘干,备用;
b.二次整理:
二次整理液:按如下质量百分比配置,2.6%纳米绢云母粉、0.5%六偏磷酸钠、0.2%乳酸钠,调节pH至7.5,置于30℃水中超声波搅拌30min,使其充分分散,得到纳米绢云母粉胶体粒子分散液;
二次整理:
将预处理后的羊绒衫置于二次整理液中,按浴比1:47,于50℃下保温震荡19min,浸轧,然后迅速升温至60℃保持5s,自然冷却至40℃保持15min,然后浸轧,30℃烘干,用去离子水清洗织物表面残留物,自然干燥待用;
(3)烘焙:
60℃下烘焙27s。
实施例5对比试验:
本发明的工艺各参数均非常重要,各步骤,参数起到了显著的协同效果。对比试验仅为示范。
羊绒衫的防晒抗菌助剂的使用::
(1)选取优质羊绒纤维,编织成衣;
(2)抗菌防晒整理:
整理液:按如下质量百分比配置,3.5%纳米绢云母粉、0.7%六偏磷酸钠调节pH至7.5,置于30℃水中超声波搅拌30min,使其充分分散,得到纳米绢云母粉胶体粒子分散液;
将羊绒衫置于整理液中,按浴比1:49,于50℃下保温震荡18min,浸轧,然后迅速升温至60℃保持5s,自然冷却至40℃保持15min,然后浸轧,30℃烘干,用去离子水清洗织物表面残留物,自然干燥待用;
60℃下烘焙31s。
实施例6:指标测评
对实施例1-5获得的羊绒衫的指标进行了测试,如下:
羊绒失重率测定:
根据织物回潮率,计算试样经处理前的恒定干态质量w0;准确称量处理后织物的恒定干态质量w1,按下式计算织物酶处理前后的失重率:
失重率=(w0-w1)/w0×100%
羊绒针织物的抗起毛起球性检测采用GB/T4802.3—2008起球箱法。
评价织物抗菌性能的持久性,主要是对抗菌织物进行抗菌性能的耐洗性试验。抗菌织物洗涤试验参照《FZ/T73023—2006抗菌针织品》中附录C的简化洗涤条件及程序,对待测织物洗涤50次。
抗菌织物性能测试方法参照《FZ/T73023—2006抗菌针织品》中附录D的振荡法。振荡法是模仿人体的穿着条件,使细菌在振荡条件下与服装内抗菌剂接触,通过计算细菌减少率,确定抗菌性能大小的一种方法。振荡法测试步骤是:将待测试样放入含有一定浓度的细菌(金黄色葡萄球菌菌种)培养液中,然后把试样置于往复式振荡器上,在(24±1)℃下,以150r/min的速度振荡18h,通过振荡使试样织物与菌液充分接触后,在(37±1)℃生化培养箱中培养24h,测定振荡前后细菌的菌落数,通过菌落计数方法来定量评价抗菌效果。
振荡法测试抗菌性能的计算:
抑菌率(%)=(A-B)/A×100%
式(1)中:A为标准空白试样振荡18h后菌落数;B为待测试样振荡18h后菌落数。
表1为对实施例1-4生产得到的羊绒衫进行检测得到的结果。
表1性能测定
此检测数据只针对上述检测样品。
以上所述,仅为本发明较佳的具体实施方式,但本发明的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本发明揭露的技术范围内,根据本发明的技术方案及其发明构思加以等同替换或改变,都应涵盖在本发明的保护范围之内。
Claims (4)
1.一种羊绒衫的防晒抗菌整理助剂,其包括复合酶溶液和二次整理液:
复合酶溶液:多酚氧化酶1-1.3%,菠萝蛋白酶的酶活为500u/g;鱼皮胶原蛋白3-3.5%,0.3-0.5%海藻纤维素;
二次整理液:按如下质量百分比配置,2.5-2.9%纳米绢云母粉、0.5%六偏磷酸钠、0.2-0.4%乳酸钠,调节pH至7.5,置于30℃水中超声波搅拌30min,使其充分分散,得到纳米绢云母粉胶体粒子分散液。
2.权利要求1所述的羊绒衫的防晒抗菌整理助剂,其特征在于:
所述多酚氧化酶的酶活为350u/g,菠萝蛋白酶0.5%,鱼皮胶原蛋白的分子量为1000道尔顿。
3.权利要求1所述的羊绒衫的防晒抗菌整理助剂,其特征在于:
复合酶溶液处理工艺:
将羊绒衫置于复合酶溶液中,按浴比1:30,于40-50℃下保温震荡8-12min,然后迅速升温至80℃保持3s,自然冷却至40℃保持10min,然后浸轧,30℃烘干,备用;
二次整理工艺:
将预处理后的羊绒衫置于二次整理液中,按浴比1:40-50,于50℃下保温震荡16-20min,浸轧,然后迅速升温至60℃保持5s,自然冷却至40℃保持15min,然后浸轧,30℃烘干,用去离子水清洗织物表面残留物,自然干燥待用;60℃下烘焙25-32s。
4.权利要求1-3所述的羊绒衫的防晒抗菌整理助剂用于羊绒衫整理的应用。
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