CN113151954A - 一种抗菌抗病毒竹棉混纺围巾的制备方法 - Google Patents
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Abstract
本发明公开了一种抗菌抗病毒竹棉混纺围巾的制备方法。采用方法的要点是将竹纤维/棉混纺纱线同时经过染色和抗菌抗病毒助剂处理,采用光触媒‑CSP光催化技术,经由面料后整理等工序形成围巾成品。该方法有效破坏了粒子周围细菌和病毒的生成结构,持续抑制细菌和病毒生长繁殖,特别适用于抗菌功能围巾的生产。本发明制备的抗菌抗病毒竹棉混纺围巾产品不仅其外形美观大方,同时具备抗菌抗病毒性能,有效提高了围巾在疫情当下的使用功能,具有重要的社会意义。
Description
技术领域
本发明涉及一种竹棉混纺围巾的制备方法,特别涉及一种抗菌抗病毒竹棉混纺围巾的制备方法,属于纺织工程技术领域。
背景技术
随着生活水平日益提高,人们对身体健康越来越重视,在选择衣物或配饰时除了考虑颜色和款式外,还会考虑其保健性。同时,由于国内外疫情带来的影响,全民的健康和防护意识也进一步增强。对于纺织服装行业而言,消费者会更加关注健康产品和生活方式,推动了抗菌抗病毒织物及服装服饰的开发。
抗菌抗病毒织物具有良好的安全性,可以高效去除织物上的细菌、真菌和霉菌,保持织物清洁,防止细菌再生和繁殖。由纤维组成的纺织品面料,由于其多孔的表观形貌和高聚物的化学结构有利于微生物附着,成为微生物生存、繁殖的良好寄生体,对人体健康不利。生产抗菌抗病毒织物的主要目的即消除不利影响。
在抗菌抗病毒织物制备领域,中国专利(CN 212097811 U)“一种具有抗菌功能的轻柔保暖针织起绒面料”包括起绒层、中间层和底层,起绒层为超细旦聚酯中空纤维的变化纬平针组织,起绒层经拉毛整理工艺获得毛绒,中间层为涤纶银纤维的针织线圈结构,底层为天然棉纤维和甲壳素纤维变化纬平针组织,解决了现有常规起绒面料手感发硬、品质差、不具有抗菌性等问题;中国专利(CN 105239251 A)“一种抗菌面料”以Lyocell纤维、涤纶长丝纤维、莫代尔纤维、亚麻纤维为原料,由一定重量份纤维混纺织造成混纺面料,混纺面料再经过抗菌后整理而成,有效提高了面料抑菌率,经过多次水洗之后仍旧保持良好的抗菌性能;中国专利(CN 211734655 U)“一种任意裁抗菌功能美体塑身面料”以铜抗纱为原料,提升了衣物服用性能,赋予了衣物抗菌、抑菌功能;海外专利(EP 2294260B1)“Sonochemical Coating of Textiles with Metal Oide Nanoparticles forAntimicrobial Fabrics”采用新声化学法涂层,使具有抗菌活性的金属氧化物纳米粒子在织物上均匀沉积,显著提高了织物的抗菌性能;海外专利(KR 20180126278A)“Antibacterial Fabrics Using Polyester Crops and Their Manufacturing Method”采用涤纶染色纱与熔融纱混合织造织物的方法,同时采用涂层组合物涂覆压延织物,在织物的两面形成混有抗菌防霉剂的抗菌涂层,使涤纶具有优异的抗菌和防臭性能。截至目前,还未见到利用光触媒-CSP光催化技术制备具有抗菌抗病毒功能竹棉混纺围巾的相关工艺技术出现。
冬季室外气温寒冷,穿戴用围巾可以起到御寒保暖的作用;在气候干燥、多尘或是空气污染严重的地方,包裹一条轻薄的围巾,可以保持头发以及面部清洁;尤其是在疫情当下,佩戴具有抗菌抗病毒功能的围巾能够直接分解织物上细菌病毒赖以生存的有机环境,长效抑制围巾内微生物滋生,分解围巾异味,达到一巾多用效果,具有重要的社会意义。
发明内容
为高效去除围巾上的细菌和病毒,保持围巾清洁,防止细菌病毒再生繁殖,起到一巾多用效果,本发明的目的是提供一种抗菌抗病毒竹棉混纺围巾的制备方法。
为实现上述目的,本发明的技术方案是采用以下步骤:
1)将一定量的抗菌抗病毒助剂溶解于780g水中,配置成分散均匀的抗菌抗病毒助剂悬浊液;
2)将步骤1)得到的分散均匀的抗菌抗病毒助剂悬浊液加入到279g 32S/2竹纤维与111.5g 60S/2棉混纺纱线中进行染整,得到抗菌抗病毒竹棉混纺纱线;
3)将步骤2)中得到的抗菌抗病毒竹棉纱线进行织造,得到72%竹纤维+28%棉混纺面料;
4)将步骤3)中得到的72%竹纤维+28%棉混纺面料按一定克重,经款式设计再制版、裁剪、加工、产品后整理、整烫工艺,得到抗菌抗病毒竹棉混纺围巾。
所述的抗菌抗病毒助剂成份为CSP光催化TiO2粒子、CSP光催化Cu2O粒子、CSP光催化SiO2粒子中的一种,用量为5-10g。
所述的一定克重72%竹纤维+28%棉混纺面料为350-400g/m2。
与背景技术相比,本发明具有的有益效果是:
本发明在制备抗菌抗病毒竹棉混纺围巾的竹纤维/棉混纺纱线中引入新型抗菌抗病毒助剂,能直接分解围巾上细菌病毒赖以生存的有机环境,长效抑制围巾内微生物滋生,分解围巾异味,达到一巾多用效果,符合国家的“大健康战略”需求,可促进纺织服装产业的绿色可持续发展。
附图说明
图1是实施例1制备的抗菌抗病毒竹棉混纺围巾(a)照片。
具体实施方式
下面结合具体实施例对本发明作进一步说明。
实施例1:
1)将5g成份为CSP光催化TiO2粒子的抗菌抗病毒助剂溶解于780g水中,配置成分散均匀的抗菌抗病毒助剂悬浊液;
2)将步骤1)得到的分散均匀的抗菌抗病毒助剂悬浊液加入到279g 32S/2竹纤维与111.5g 60S/2棉混纺纱线中进行染整,得到抗菌抗病毒竹棉混纺纱线;
3)将步骤2)中得到的抗菌抗病毒竹棉纱线进行织造,得到72%竹纤维+28%棉混纺面料;
4)将步骤3)中得到的72%竹纤维+28%棉混纺面料按400g/m2的克重,经款式设计再制版、裁剪、加工、产品后整理、整烫工艺,得到抗菌抗病毒竹棉混纺围巾(a)。
实施例2:
1)将8g成份为CSP光催化Cu2O粒子的抗菌抗病毒助剂溶解于780g水中,配置成分散均匀的抗菌抗病毒助剂悬浊液;
2)将步骤1)得到的分散均匀的抗菌抗病毒助剂悬浊液加入到279g 32S/2竹纤维与111.5g 60S/2棉混纺纱线中进行染整,得到抗菌抗病毒竹棉混纺纱线;
3)将步骤2)中得到的抗菌抗病毒竹棉纱线进行织造,得到72%竹纤维+28%棉混纺面料;
4)将步骤3)中得到的72%竹纤维+28%棉混纺面料按380g/m2的克重,经款式设计再制版、裁剪、加工、产品后整理、整烫工艺,得到抗菌抗病毒竹棉混纺围巾(b)。
实施例3:
1)将10g成份为CSP光催化SiO2粒子的抗菌抗病毒助剂溶解于780g水中,配置成分散均匀的抗菌抗病毒助剂悬浊液;
2)将步骤1)得到的分散均匀的抗菌抗病毒助剂悬浊液加入到279g 32S/2竹纤维与111.5g 60S/2棉混纺纱线中进行染整,得到抗菌抗病毒竹棉混纺纱线;
3)将步骤2)中得到的抗菌抗病毒竹棉纱线进行织造,得到72%竹纤维+28%棉混纺面料;
4)将步骤3)中得到的72%竹纤维+28%棉混纺面料按350g/m2的克重,经款式设计再制版、裁剪、加工、产品后整理、整烫工艺,得到抗菌抗病毒竹棉混纺围巾(c)。
如图1,从实施例1制备的抗菌抗病毒竹棉混纺围巾(a)照片可以看出,混纺纱线形貌为麻花状,由于具备抗菌抗病毒功效,混纺纱线表层出现轻微的浮毛和团绒现象。
以上列举的仅是本发明的具体实施例。本发明不限于以上实施例,还可以有许多变形。本领域的普通技术人员能从本发明公开的内容直接导出或联想到的所有变形,均应认为是本发明的保护范围。
Claims (3)
1.一种抗菌抗病毒竹棉混纺围巾的制备方法,其特征在于,包括以下步骤:
1)将一定量的抗菌抗病毒助剂溶解于780g水中,配置成分散均匀的抗菌抗病毒助剂悬浊液;
2)将步骤1)得到的分散均匀的抗菌抗病毒助剂悬浊液加入到279g 32S/2竹纤维与111.5g 60S/2棉混纺纱线中进行染整,得到抗菌抗病毒竹棉混纺纱线;
3)将步骤2)中得到的抗菌抗病毒竹棉纱线进行织造,得到72%竹纤维+28%棉混纺面料;
4)将步骤3)中得到的72%竹纤维+28%棉混纺面料按一定克重,经款式设计再制版、裁剪、加工、产品后整理、整烫工艺,得到抗菌抗病毒竹棉混纺围巾。
2.根据权利要求1所述的一种抗菌抗病毒竹棉混纺围巾的制备方法,其特征在于:所述的抗菌抗病毒助剂成份为CSP光催化TiO2粒子、CSP光催化Cu2O粒子、CSP光催化SiO2粒子中的一种,用量为5-10g。
3.根据权利要求1所述的一种抗菌抗病毒竹棉混纺围巾的制备方法,其特征在于:所述的一定克重72%竹纤维+28%棉混纺面料为350-400g/m2。
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