CN112760980A - 一种亲肤抗菌面料的整理工艺 - Google Patents
一种亲肤抗菌面料的整理工艺 Download PDFInfo
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- VHUUQVKOLVNVRT-UHFFFAOYSA-N Ammonium hydroxide Chemical compound [NH4+].[OH-] VHUUQVKOLVNVRT-UHFFFAOYSA-N 0.000 claims description 30
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- HNPSIPDUKPIQMN-UHFFFAOYSA-N dioxosilane;oxo(oxoalumanyloxy)alumane Chemical compound O=[Si]=O.O=[Al]O[Al]=O HNPSIPDUKPIQMN-UHFFFAOYSA-N 0.000 claims description 10
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- 235000011130 ammonium sulphate Nutrition 0.000 claims description 7
- 210000002268 wool Anatomy 0.000 claims description 7
- ATRRKUHOCOJYRX-UHFFFAOYSA-N Ammonium bicarbonate Chemical compound [NH4+].OC([O-])=O ATRRKUHOCOJYRX-UHFFFAOYSA-N 0.000 claims description 6
- 229910000013 Ammonium bicarbonate Inorganic materials 0.000 claims description 6
- ZOIORXHNWRGPMV-UHFFFAOYSA-N acetic acid;zinc Chemical compound [Zn].CC(O)=O.CC(O)=O ZOIORXHNWRGPMV-UHFFFAOYSA-N 0.000 claims description 6
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Abstract
本发明公开了一种亲肤抗菌面料的整理工艺,具体为:将待整理织物采用等离子处理技术对织物进行预处理;按照以下配方称取原料,各组分质量百分比为,多糖‑纳米抗菌水凝胶亲肤抗菌复合整理剂2%~8%;交联剂:1%~5%;柔软剂1%~5%,余量为水,上述成分的质量百分比之和为100%;将原料进行混合,并搅拌均匀;再将预处理后的织物进行亲肤抗菌浸渍整理,脱水,烘焙,即可完成亲肤抗菌面料的整理。在抗菌整理的同时,对织物进行亲肤整理,改善了经抗菌后整理带来的布面发硬,手感差的问题,采用本发明的工艺流程,绿色环保,产品在具有优异抗菌效果的同时,服用舒适亲肤,功能持久耐洗,让人尽享舒适与健康。
Description
技术领域
本发明属于抗菌面料制备技术领域,具体涉及一种亲肤抗菌面料的整理工艺。
背景技术
随着社会的不断进步,人们生活品质的日益提高,人们对纺织品关注的视觉也发生了巨大的转变,由过去对款式色彩的追求,现在更关心的是纺织品给人们生活带来的安全感、舒适感。在生活着,人们总是不可避免的和各种微生物接触,这些微生物寄生在纺织品,一般的纺织品都不具备抗菌性能,同时人体的某些分泌物还为细菌提供养分,导致细菌不断滋生,这些微生物不仅对环境造成污染,还导致许多疾病的产生,特别是一些特殊行业的工作人员,如医务人员、动物饲养员等每天都在有成千上万细菌的环境中工作,导致各种疾病交叉感染,严重影响他们的生命安全。
目前,市场上抗菌功能性纺织品大都是通过后整理来获得,通过后整理开发的抗菌纺织品,对织物的服用性能和手感等影响巨大,严重影响人们的穿着。为了解决抗菌整理对纺织品舒适性造成的影响,在抗菌整理的同时,对织物进行亲肤整理,进而改善经抗菌后整理带来的布面发硬,手感差,提升织物与皮肤角质层间的贴合性,进而开发亲肤抗菌面料。
发明内容
本发明的目的是提供一种亲肤抗菌面料的整理工艺,解决了现有抗菌面料耐洗性能差、服用舒适性差的问题。
本发明所采用的技术方案是,一种亲肤抗菌面料的整理工艺,具体按照以下步骤实施:
步骤1,将待整理织物采用等离子处理技术对织物进行预处理;
步骤2,按照以下配方称取原料,各组分质量百分比为,多糖-纳米抗菌水凝胶亲肤抗菌复合整理剂2%~8%;交联剂:1%~5%;柔软剂1%~5%,余量为水,上述成分的质量百分比之和为100%;将原料进行混合,并搅拌均匀;
步骤3,将预处理后的织物进行亲肤抗菌浸渍整理;
步骤4,将步骤3中得到的亲肤抗菌织物进行脱水;
步骤5,对步骤4中的亲肤抗菌织物进行烘焙,即可完成亲肤抗菌面料的整理。
本发明的特点还在于,
步骤1中,等离子处理压强为100~250Pa,处理时间为2~6min,处理功率15~30W;待整理织物为涤棉织物、纯棉织物、丝织物、毛织物中的任意一种。
步骤2中,搅拌时间为1~2h,搅拌温度为50~80℃,搅拌速度为100~140r/min。
步骤2中,交联剂为氯化铵、硫酸铵、碳酸氢铵中的任意一种或几种的混合物。
步骤2中,多糖-纳米抗菌水凝胶亲肤抗菌复合整理剂的制备过程,具体为:
步骤2.1,将金针菇、灵芝、芦荟晾干后,混合粉碎,得到多糖植物混合粉末;金针菇、灵芝、芦荟的质量比为1:1:3;
步骤2.2,将多糖植物混合粉末放入索氏提取器中,在索氏提取器下端的圆底烧瓶中加入水和2粒沸石,上面接回流冷凝管,利用恒温水浴锅加热水,得到多糖提取液;
步骤2.3,将可溶性锌盐溶解多糖提取液中,置于恒温水浴锅中搅拌加热,同时向多糖提取液中滴加氨水,得到多糖-纳米抗菌水凝胶亲肤抗菌复合整理剂。
步骤2.2中,加热温度为90℃,加热时间为3-5小时,回流速度为10-12次/h。
步骤2.3中,氨水的质量浓度为1-3%;氨水的滴加速率为5~10滴/分钟;加热时间为2~3小时,加热温度为70~85℃。
步骤2.3中,可溶性锌盐为醋酸锌、氯化锌、硫酸锌中的任意一种;可溶性锌盐与多糖提取液的质量比为3:7。
步骤3中,浴比为1:8,整理时间为4min,整理温度为60℃。
步骤4中,脱水时间为5~8min;所述步骤5中,烘焙温度为160~200℃,烘焙时间2~5min。
本发明的有益效果是:
在抗菌整理的同时,对织物进行亲肤整理,进而改善经抗菌后整理带来的布面发硬,手感差,提升织物与皮肤角质层间的贴合性,进而开发亲肤抗菌面料,解决了纺织品经抗菌整理后,纺织品手感差,布面发硬,透气性差等缺陷。采用本发明的工艺流程,其流程短绿色环保,产品在具有优异抗菌效果的同时,服用舒适亲肤,功能持久耐洗,让人尽享舒适与健康。
具体实施方式
下面结合具体实施方式对本发明进行详细说明。
本发明一种亲肤抗菌面料的整理工艺,具体按照以下步骤实施:
步骤1,将待整理织物采用等离子处理技术对织物进行预处理;
采用等离子处理技术对织物进行预处理,等离子处理压强为100~250Pa,处理时间为2~6min,处理功率15~30W;
待整理织物为涤棉织物、纯棉织物、丝织物、毛织物中的任意一种;
步骤2,按照以下配方称取原料,各组分质量百分比为,多糖-纳米抗菌水凝胶亲肤抗菌复合整理剂2%~8%;交联剂:1%~5%;柔软剂1%~5%,余量为水,上述成分的质量百分比之和为100%;将原料进行混合,并搅拌均匀;搅拌时间为1~2h,搅拌温度为50~80℃,搅拌速度为100~140r/min;
交联剂为氯化铵、硫酸铵、碳酸氢铵中的任意一种或几种的混合物;
柔软剂为SG-6柔软剂;
多糖-纳米抗菌水凝胶亲肤抗菌复合整理剂的制备过程,具体为:
步骤2.1,将金针菇、灵芝、芦荟等多糖类植物晾干后,混合粉碎,得到多糖植物混合粉末;
金针菇、灵芝、芦荟的质量比为1:1:3;
步骤2.2,将多糖植物混合粉末放入索氏提取器中,在索氏提取器下端的圆底烧瓶中加入水和2粒沸石,上面接回流冷凝管,利用恒温水浴锅加热水,得到多糖提取液;
加热温度为90℃,加热时间为3-5小时,回流速度为10-12次/h;
步骤2.3,将可溶性锌盐溶解多糖提取液中,置于恒温水浴锅中搅拌加热,同时向多糖提取液中滴加氨水,得到多糖-纳米抗菌水凝胶亲肤抗菌复合整理剂;
氨水的质量浓度为1-3%;氨水的滴加速率为5~10滴/分钟;
加热时间为2~3小时,加热温度为70~85℃;
可溶性锌盐为醋酸锌、氯化锌、硫酸锌中的任意一种;
可溶性锌盐与多糖提取液的质量比为3:7;
步骤3,将预处理后的织物进行亲肤抗菌浸渍整理;
浴比为1:8,整理时间为4min,整理温度为60℃;
步骤4,将步骤3中得到的亲肤抗菌织物进行脱水;脱水时间为5~8min;
步骤5,对步骤4中的亲肤抗菌织物进行烘焙,即可完成亲肤抗菌面料的整理;
烘焙温度为160~200℃,烘焙时间2~5min。
实施例1
本发明一种亲肤抗菌面料的整理工艺,具体按照以下步骤实施:
步骤1,将涤棉织物采用等离子处理技术对织物进行预处理;
等离子处理压强为100Pa,处理时间为3min,处理功率15W;
步骤2,按照以下配方称取原料,各组分质量百分比为,多糖-纳米抗菌水凝胶亲肤抗菌复合整理剂:5%;氯化铵:2%;柔软剂SG-6:3%,余量为水,上述成分的质量百分比之和为100%;将原料进行混合,并搅拌均匀;搅拌时间为1h,搅拌温度为50℃,搅拌速度为120r/min;
多糖-纳米抗菌水凝胶亲肤抗菌复合整理剂的制备过程,具体为:
步骤2.1,将质量比为1:1:3的金针菇、灵芝、芦荟晾干后,混合粉碎,得到多糖植物混合粉末;
步骤2.2,将多糖植物混合粉末放入索氏提取器中,在索氏提取器下端的圆底烧瓶中加入水和2粒沸石,上面接回流冷凝管,利用恒温水浴锅加热水,得到多糖提取液;
加热温度为90℃,加热时间为3小时,回流速度为10次/h;
步骤2.3,将可溶性锌盐溶解多糖提取液中,置于恒温水浴锅中搅拌加热,同时向多糖提取液中滴加氨水,得到多糖-纳米抗菌水凝胶亲肤抗菌复合整理剂;
氨水的质量浓度为1%;氨水的滴加速率为5滴/分钟;加热时间为2小时,加热温度为70℃;可溶性锌盐为醋酸锌;可溶性锌盐与多糖提取液的质量比为3:7;
步骤3,将涤棉面料进行亲肤抗菌整理,浴比为1:8,整理时间为4min,整理温度为60℃。
步骤4,将步骤3中得到的亲肤抗菌纺织品进行脱水;脱水时间为5min;
步骤5,对步骤4亲肤抗菌织物进行烘焙,得到亲肤抗菌面料。
烘焙温度为160℃;烘焙时间为3min。
将亲肤抗菌面料的舒适亲肤性能采用湿阻判定,湿阻指试样两面的水蒸气压力差与垂直通过试样的单位面积蒸发热流量之比,简称Ret,单位为m2·Pa/W,Ret值越小,面料透湿程度越好。
抗菌性能检测:按照GB/T31713-2015《抗菌纺织品安全性卫生要求》和GB/T20944.3-2008《纺织品抗菌性能的评价第三部分:震荡法》测试,洗涤50次后进行抗菌性能检测,其结果如表1所示,由表1可知,涤棉织物抑制金黄色葡萄球菌、大肠杆菌、白色念珠菌的抑菌率分别为99.5%、90.1%和88.3%,由此可知,该涤棉织物具有较强的抑菌效果。
表1 实施例1的涤棉织物亲肤抗菌性能
实施例2
本发明一种亲肤抗菌面料的整理工艺,具体按照以下步骤实施:
步骤1,将纯棉织物采用等离子处理技术对织物进行预处理;
等离子处理压强为150Pa,处理时间为5min,处理功率20W。
步骤2,按照以下配方称取原料,各组分质量百分比为,多糖-纳米抗菌水凝胶亲肤抗菌复合整理剂:4%;硫酸铵:3%;柔软剂SG-6:4%,余量为水,上述成分的质量百分比之和为100%;将原料进行混合,并搅拌均匀;搅拌时间为2.0h,搅拌温度为60℃,搅拌速度为120r/min。
多糖-纳米抗菌水凝胶亲肤抗菌复合整理剂的制备过程,具体为:
步骤2.1,将金针菇、灵芝、芦荟等多糖类植物晾干后,混合粉碎,得到多糖植物混合粉末;金针菇、灵芝、芦荟的质量比为1:1:3;
步骤2.2,将多糖植物混合粉末放入索氏提取器中,在索氏提取器下端的圆底烧瓶中加入水和2粒沸石,上面接回流冷凝管,利用恒温水浴锅加热水,得到多糖提取液;
加热温度为90℃,加热时间为3.5小时,回流速度为12次/h;
步骤2.3,将可溶性锌盐溶解多糖提取液中,置于恒温水浴锅中搅拌加热,同时向多糖提取液中滴加氨水,得到多糖-纳米抗菌水凝胶亲肤抗菌复合整理剂;
氨水的质量浓度为1.5%;氨水的滴加速率为8滴/分钟;加热时间为2.5小时,加热温度为75℃;可溶性锌盐为氯化锌;可溶性锌盐与多糖提取液的质量比为3:7;
步骤3,将纯棉织物进行亲肤抗菌整理,浴比为1:12,整理时间为5min,整理温度为40℃;
步骤4,将步骤3中得到的纯棉织物进行脱水;脱水时间为6min;
步骤5,对步骤4中的纯棉织物进行烘焙,得到亲肤抗菌面料。
烘焙温度为180℃;烘焙时间为3min。
织物的舒适亲肤性能采用湿阻判定,湿阻指试样两面的水蒸气压力差与垂直通过试样的单位面积蒸发热流量之比,简称Ret,单位为m2·Pa/W,Ret值越小,面料透湿程度越好。
抗菌性能检测:按照GB/T31713-2015《抗菌纺织品安全性卫生要求》和GB/T20944.3-2008《纺织品抗菌性能的评价第三部分:震荡法》测试,洗涤50次后进行抗菌性能检测。其结果如表2所示,由表2可知,纯棉织物抑制金黄色葡萄球菌、大肠杆菌、白色念珠菌的抑菌率分别为99.5%、91.1%和89.3%,由此可知,该纯棉织物具有较强的抑菌效果。
表2 实施例2的纯棉织物亲肤抗菌性能
实施例3
本发明一种亲肤抗菌面料的整理工艺,具体按照以下步骤实施:
步骤1,将丝织物采用等离子处理技术对织物进行预处理;
等离子处理压强为200Pa,处理时间为3min,处理功率25W。
步骤2,按照以下配方称取原料,各组分质量百分比为,多糖-纳米抗菌水凝胶亲肤抗菌复合整理剂:5%;碳酸氢铵:4%;柔软剂4%,余量为水,上述成分的质量百分比之和为100%;将原料进行混合,并搅拌均匀;搅拌时间为2.0h,搅拌温度为70℃,搅拌速度为140r/min。
多糖-纳米抗菌水凝胶亲肤抗菌复合整理剂的制备过程,具体为:
步骤2.1,将金针菇、灵芝、芦荟等多糖类植物晾干后,混合粉碎,得到多糖植物混合粉末;金针菇、灵芝、芦荟的质量比为1:1:3;
步骤2.2,将多糖植物混合粉末放入索氏提取器中,在索氏提取器下端的圆底烧瓶中加入水和2粒沸石,上面接回流冷凝管,利用恒温水浴锅加热水,得到多糖提取液;
加热温度为90℃,加热时间为4小时,回流速度为11次/h;
步骤2.3,将可溶性锌盐溶解多糖提取液中,置于恒温水浴锅中搅拌加热,同时向多糖提取液中滴加氨水,得到多糖-纳米抗菌水凝胶亲肤抗菌复合整理剂;
氨水的质量浓度为2%;氨水的滴加速率为9滴/分钟;加热时间为3小时,加热温度为78℃;可溶性锌盐为硫酸锌;可溶性锌盐与多糖提取液的质量比为3:7;
步骤3,将丝织物进行亲肤抗菌整理,浴比为1:10,整理时间为5min,整理温度为50℃。
步骤4,脱水:离心脱水5min。
步骤5,烘焙:对步骤4的织物进行烘焙,烘焙温度为160℃;时间为2min。
织物的舒适亲肤性能采用湿阻判定,湿阻指试样两面的水蒸气压力差与垂直通过试样的单位面积蒸发热流量之比,简称Ret,单位为m2·Pa/W,Ret值越小,面料透湿程度越好。
抗菌性能检测:按照GB/T31713-2015《抗菌纺织品安全性卫生要求》和GB/T20944.3-2008《纺织品抗菌性能的评价第三部分:震荡法》测试,洗涤50次后进行抗菌性能检测,其结果如表3示,由表3知,丝织物抑制金黄色葡萄球菌、大肠杆菌、白色念珠菌的抑菌率分别为99.7%、90.1%和82.3%,由此可知,该丝织物具有较强的抑菌效果。
表3 实施例3的丝织物亲肤抗菌性能
实施例4
本发明一种亲肤抗菌面料的整理工艺,具体按照以下步骤实施:
步骤1,将毛织物采用等离子处理技术对织物进行预处理;
等离子处理压强为250Pa,处理时间为2min,处理功率20W。
步骤2,按照以下配方称取原料,各组分质量百分比为,多糖-纳米抗菌水凝胶亲肤抗菌复合整理剂:6%;氯化铵和硫酸铵:5%;柔软剂4%,余量为水,上述成分的质量百分比之和为100%;将原料进行混合,并搅拌均匀;其中,搅拌时间为2.0h,搅拌温度为60℃,搅拌速度为120r/min。
多糖-纳米抗菌水凝胶亲肤抗菌复合整理剂的制备过程,具体为:
步骤2.1,将金针菇、灵芝、芦荟晾干后,混合粉碎,得到多糖植物混合粉末;金针菇、灵芝、芦荟的质量比为1:1:3;
步骤2.2,将多糖植物混合粉末放入索氏提取器中,在索氏提取器下端的圆底烧瓶中加入水和2粒沸石,上面接回流冷凝管,利用恒温水浴锅加热水,得到多糖提取液;
加热温度为90℃,加热时间为3.5小时,回流速度为12次/h;
步骤2.3,将可溶性锌盐溶解多糖提取液中,置于恒温水浴锅中搅拌加热,同时向多糖提取液中滴加氨水,得到多糖-纳米抗菌水凝胶亲肤抗菌复合整理剂;
氨水的质量浓度为2%;氨水的滴加速率为8滴/分钟;加热时间为3小时,加热温度为75℃;可溶性锌盐为醋酸锌;可溶性锌盐与多糖提取液的质量比为3:7;
步骤3,将毛织物进行亲肤抗菌整理,浴比为1:8,整理时间为3min,整理温度为50℃。
步骤4,脱水:离心脱水8min。
步骤5,烘焙:对步骤4的织物进行烘焙,烘焙温度为160℃;时间为2min。
织物的舒适亲肤性能采用湿阻判定,湿阻指试样两面的水蒸气压力差与垂直通过试样的单位面积蒸发热流量之比,简称Ret,单位为m2·Pa/W,Ret值越小,面料透湿程度越好。
抗菌性能检测:按照GB/T31713-2015《抗菌纺织品安全性卫生要求》和GB/T20944.3-2008《纺织品抗菌性能的评价第三部分:震荡法》测试,洗涤50次后进行抗菌性能检测。其结果如表4所示,由表4可知,毛织物抑制金黄色葡萄球菌、大肠杆菌、白色念珠菌的抑菌率分别为99.5%、90.7%和82.3%,由此可知,该毛织物具有较强的抑菌效果。
表4 实施例4的毛织物亲肤抗菌性能
实施例5
本发明一种亲肤抗菌面料的整理工艺,具体按照以下步骤实施:
步骤1,将丝织物采用等离子处理技术对织物进行预处理;
等离子处理压强为250Pa,处理时间为2min,处理功率20W。
步骤2,按照以下配方称取原料,各组分质量百分比为,多糖-纳米抗菌水凝胶亲肤抗菌复合整理剂:4%;硫酸铵:3%;柔软剂2%,余量为水,上述成分的质量百分比之和为100%;将上述原料进行混合,并搅拌均匀。其中,搅拌时间为1.0h,搅拌温度为50℃,搅拌速度为120r/min。
多糖-纳米抗菌水凝胶亲肤抗菌复合整理剂的制备过程,具体为:
步骤2.1,将金针菇、灵芝、芦荟等多糖类植物晾干后,混合粉碎,得到多糖植物混合粉末;金针菇、灵芝、芦荟的质量比为1:1:3;
步骤2.2,将多糖植物混合粉末放入索氏提取器中,在索氏提取器下端的圆底烧瓶中加入水和2粒沸石,上面接回流冷凝管,利用恒温水浴锅加热水,得到多糖提取液;
加热温度为90℃,加热时间为4.5小时,回流速度为10次/h;
步骤2.3,将可溶性锌盐溶解多糖提取液中,置于恒温水浴锅中搅拌加热,同时向多糖提取液中滴加氨水,得到多糖-纳米抗菌水凝胶亲肤抗菌复合整理剂;
氨水的质量浓度为2%;氨水的滴加速率为7滴/分钟;加热时间为3小时,加热温度为85℃;可溶性锌盐为醋酸锌;可溶性锌盐与多糖提取液的质量比为3:7;
步骤3,将丝织物进行亲肤抗菌整理,浴比为1:10,整理时间为4min,整理温度为40℃。
步骤4,脱水:离心脱水6min。
步骤5,烘焙:对步骤4的织物进行烘焙,烘焙温度为170℃;时间为3min。
织物的舒适亲肤性能采用湿阻判定,湿阻指试样两面的水蒸气压力差与垂直通过试样的单位面积蒸发热流量之比,简称Ret,单位为m2·Pa/W,Ret值越小,面料透湿程度越好。
抗菌性能检测:按照GB/T31713-2015《抗菌纺织品安全性卫生要求》和GB/T20944.3-2008《纺织品抗菌性能的评价第三部分:震荡法》测试,洗涤50次后进行抗菌性能检测。其结果如表5所示,由表5可知,丝织物抑制金黄色葡萄球菌、大肠杆菌、白色念珠菌的抑菌率分别为99.7%、90.8%和82.3%,由此可知,该丝织物具有较强的抑菌效果。
表5 实施例5的丝织物亲肤抗菌性能
实施例6
本发明一种亲肤抗菌面料的整理工艺,具体按照以下步骤实施:
步骤1,将纯棉织物采用等离子处理技术对织物进行预处理;
等离子处理压强为200Pa,处理时间为5min,处理功率15W。
步骤2,按照以下配方称取原料,各组分质量百分比为,多糖-纳米抗菌水凝胶亲肤抗菌复合整理剂:4%;硫酸铵和碳酸氢铵:3%;柔软剂2%,余量为水,以上各组分含量为100%,将上述原料进行混合,并搅拌均匀。其中,搅拌时间为1.0h,搅拌温度为50℃,搅拌速度为120r/min。
多糖-纳米抗菌水凝胶亲肤抗菌复合整理剂的制备过程,具体为:
步骤2.1,将金针菇、灵芝、芦荟等多糖类植物晾干后,混合粉碎,得到多糖植物混合粉末;金针菇、灵芝、芦荟的质量比为1:1:3;
步骤2.2,将多糖植物混合粉末放入索氏提取器中,在索氏提取器下端的圆底烧瓶中加入水和2粒沸石,上面接回流冷凝管,利用恒温水浴锅加热水,得到多糖提取液;
加热温度为90℃,加热时间为5小时,回流速度为12次/h;
步骤2.3,将可溶性锌盐溶解多糖提取液中,置于恒温水浴锅中搅拌加热,同时向多糖提取液中滴加氨水,得到多糖-纳米抗菌水凝胶亲肤抗菌复合整理剂;
氨水的质量浓度为3%;氨水的滴加速率为10滴/分钟;
加热时间为2小时,加热温度为85℃;
可溶性锌盐为氯化锌;可溶性锌盐与多糖提取液的质量比为3:7;
步骤3,将纯棉织物进行亲肤抗菌整理,浴比为1:12,整理时间为4min,整理温度为50℃。
步骤4,脱水:离心脱水6min。
步骤5,烘焙:对步骤4的织物进行烘焙,烘焙温度为160℃;时间为4min。
织物的舒适亲肤性能采用湿阻判定,湿阻指试样两面的水蒸气压力差与垂直通过试样的单位面积蒸发热流量之比,简称Ret,单位为m2·Pa/W,Ret值越小,面料透湿程度越好。
抗菌性能检测:按照GB/T31713-2015《抗菌纺织品安全性卫生要求》和GB/T20944.3-2008《纺织品抗菌性能的评价第三部分:震荡法》测试,洗涤50次后进行抗菌性能检测。其结果如表6所示,由表6可知,纯棉织物抑制金黄色葡萄球菌、大肠杆菌、白色念珠菌的抑菌率分别为99.2%、91.1%和80.3%,由此可知,该纯棉织物具有较强的抑菌效果。
表6 实施例6的纯棉织物亲肤抗菌性能
实施例7
本发明一种亲肤抗菌面料的整理工艺,具体按照以下步骤实施:
步骤1,将涤棉织物采用等离子处理技术对织物进行预处理;
等离子处理压强为250Pa,处理时间为4min,处理功率25W。
步骤2,按照以下配方称取原料,各组分质量百分比为,多糖-纳米抗菌水凝胶亲肤抗菌复合整理剂:6%;碳酸氢铵:3%;柔软剂:2%,余量为水,以上各组分含量为100%,将上述原料进行混合,并搅拌均匀。其中,搅拌时间为1.0h,搅拌温度为50℃,搅拌速度为120r/min。
多糖-纳米抗菌水凝胶亲肤抗菌复合整理剂的制备过程,具体为:
步骤2.1,将金针菇、灵芝、芦荟等多糖类植物晾干后,混合粉碎,得到多糖植物混合粉末;金针菇、灵芝、芦荟的质量比为1:1:3;
步骤2.2,将多糖植物混合粉末放入索氏提取器中,在索氏提取器下端的圆底烧瓶中加入水和2粒沸石,上面接回流冷凝管,利用恒温水浴锅加热水,得到多糖提取液;
加热温度为90℃,加热时间为3-5小时,回流速度为10-12次/h;
步骤2.3,将可溶性锌盐溶解多糖提取液中,置于恒温水浴锅中搅拌加热,同时向多糖提取液中滴加氨水,得到多糖-纳米抗菌水凝胶亲肤抗菌复合整理剂;
氨水的质量浓度为3%;氨水的滴加速率为10滴/分钟;加热时间为3小时,加热温度为85℃;可溶性锌盐为硫酸锌;可溶性锌盐与多糖提取液的质量比为3:7;
步骤3,将涤棉织物进行亲肤抗菌整理,浴比为1:10,整理时间为5min,整理温度为60℃。
步骤4,脱水:离心脱水5min。
步骤5,烘焙:对步骤4的织物进行烘焙,烘焙温度为170℃;时间为3min。
织物的舒适亲肤性能采用湿阻判定,湿阻指试样两面的水蒸气压力差与垂直通过试样的单位面积蒸发热流量之比,简称Ret,单位为m2·Pa/W,Ret值越小,面料透湿程度越好。
抗菌性能检测:按照GB/T31713-2015《抗菌纺织品安全性卫生要求》和GB/T20944.3-2008《纺织品抗菌性能的评价第三部分:震荡法》测试,洗涤50次后进行抗菌性能检测。其结果如表7所示,由表7可知,涤棉织物抑制金黄色葡萄球菌、大肠杆菌、白色念珠菌的抑菌率分别为99.5%、90.9%和80.3%,由此可知,该涤棉织物具有较强的抑菌效果。
表7 实施例7的涤棉织物亲肤抗菌性能
本发明的一种亲肤抗菌面料的整理工艺,解决了现有抗菌产品生产技术成本高、产品耐洗性能差、服用舒适性差以及某些工作场所微生物滋生严重等问题。采用本发明的工艺流程,其流程短绿色环保,产品在具有优异抗菌效果的同时,服用舒适亲肤,功能持久耐洗,让人尽享舒适与健康。
Claims (10)
1.一种亲肤抗菌面料的整理工艺,其特征在于,具体按照以下步骤实施:
步骤1,将待整理织物采用等离子处理技术对织物进行预处理;
步骤2,按照以下配方称取原料,各组分质量百分比为,多糖-纳米抗菌水凝胶亲肤抗菌复合整理剂2%~8%;交联剂:1%~5%;柔软剂1%~5%,余量为水,上述成分的质量百分比之和为100%;将原料进行混合,并搅拌均匀;
步骤3,将预处理后的织物进行亲肤抗菌浸渍整理;
步骤4,将步骤3中得到的亲肤抗菌织物进行脱水;
步骤5,对步骤4中的亲肤抗菌织物进行烘焙,即可完成亲肤抗菌面料的整理。
2.根据权利要求1所述的一种亲肤抗菌面料的整理工艺,其特征在于,所述步骤1中,等离子处理压强为100~250Pa,处理时间为2~6min,处理功率15~30W;待整理织物为涤棉织物、纯棉织物、丝织物、毛织物中的任意一种。
3.根据权利要求1所述的一种亲肤抗菌面料的整理工艺,其特征在于,所述步骤2中,搅拌时间为1~2h,搅拌温度为50~80℃,搅拌速度为100~140r/min。
4.根据权利要求1所述的一种亲肤抗菌面料的整理工艺,其特征在于,所述步骤2中,交联剂为氯化铵、硫酸铵、碳酸氢铵中的任意一种或几种的混合物。
5.根据权利要求1所述的一种亲肤抗菌面料的整理工艺,其特征在于,所述步骤2中,多糖-纳米抗菌水凝胶亲肤抗菌复合整理剂的制备过程,具体为:
步骤2.1,将金针菇、灵芝、芦荟晾干后,混合粉碎,得到多糖植物混合粉末;金针菇、灵芝、芦荟的质量比为1:1:3;
步骤2.2,将多糖植物混合粉末放入索氏提取器中,在索氏提取器下端的圆底烧瓶中加入水和2粒沸石,上面接回流冷凝管,利用恒温水浴锅加热水,得到多糖提取液;
步骤2.3,将可溶性锌盐溶解多糖提取液中,置于恒温水浴锅中搅拌加热,同时向多糖提取液中滴加氨水,得到多糖-纳米抗菌水凝胶亲肤抗菌复合整理剂。
6.根据权利要求5所述的一种亲肤抗菌面料的整理工艺,其特征在于,所述步骤2.2中,加热温度为90℃,加热时间为3-5小时,回流速度为10-12次/h。
7.根据权利要求5所述的一种亲肤抗菌面料的整理工艺,其特征在于,所述步骤2.3中,氨水的质量浓度为1-3%;氨水的滴加速率为5~10滴/分钟;加热时间为2~3小时,加热温度为70~85℃。
8.根据权利要求5所述的一种亲肤抗菌面料的整理工艺,其特征在于,所述步骤2.3中,可溶性锌盐为醋酸锌、氯化锌、硫酸锌中的任意一种;可溶性锌盐与多糖提取液的质量比为3:7。
9.根据权利要求1所述的一种亲肤抗菌面料的整理工艺,其特征在于,所述步骤3中,浴比为1:8,整理时间为4min,整理温度为60℃。
10.根据权利要求1所述的一种亲肤抗菌面料的整理工艺,其特征在于,所述步骤4中,脱水时间为5~8min;所述步骤5中,烘焙温度为160~200℃,烘焙时间2~5min。
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