CN111041626A - 一种透气抗菌贴身运动服面料的制备方法 - Google Patents
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Abstract
本发明公开了一种透气抗菌贴身运动服面料的制备方法,首先将麻纤维进行碱性处理,然后用贝壳粉进行超声处理,再经过醋酸处理后,用叔胺溶液进行季铵化处理,将处理后的麻纤维与超细涤纶纤维和异形涤纶纤维混纺,即可。本发明的透气抗菌贴身运动服面料,具有如下有益效果:本发明选取超细涤纶纤维、麻纤维和异形涤纶纤维混纺使面料具备良好的吸湿排汗性能,同时混纺纤维具备非常好的悬垂性,面料外观好,档次高;对麻纤维进行贝壳粉的超声处理,可以去除麻纤维的毛刺感;采用叔胺来季铵化麻纤维,不但可以显著提升麻纤维的抗菌性能,而且可以进一步改善麻纤维的透气性能。
Description
技术领域
本发明涉及纺织纤维领域,特别地,涉及一种透气抗菌贴身运动服面料的制备方法。
背景技术
现代人越来越多的注重提高生活品质,户外运动成为人们工作之余与家人、朋友共同分享的一种方式,它不仅能强身健体,还可以增进相互之间的关系和友谊,可谓一举多得。人们在做户外运动的过程中,所穿的衣物除了要有良好的吸汗性、透气性和弹性外,还对抗菌性能有非常高的要求。
中国发明专利CN104452305A公开了一种运动服面料,该面料包括表面涂层、中层面料和内层面料。通过麻纤维与其它纤维的混纺达到抗菌、抗紫外线、防水等功效。但是该运动服面料有内、外多层混纺纤维,不利于吸湿排汗,故有必要研发一种集抗菌、抗紫外线、吸湿排汗等功能于一体的贴身运动服面料。
发明内容
为实现上述目的,本发明提供了一种透气抗菌贴身运动服面料的制备方法。
一种透气抗菌贴身运动服面料的制备方法,包括以下步骤:
A、将麻纤维经过简单的清洗、烘干后放入45-50℃水中,加入氢氧化钠、分散剂将溶液pH值调节到9-10,配成碱性溶液;
B、在碱性溶液中加入贝壳粉,然后对溶液进行超声波处理,处理条件为300-500kW,时间为15-20min,将麻纤维取出后加入pH值为5-6的醋酸溶液中搅拌8-15min,然后将麻纤维放入叔胺溶液中,加热至50-60℃,150-250rpm条件下,反应2-3h;
C、将处理后的麻纤维送入洗水机中,清洗干净、烘干;
D、将原料送入混棉机,将超细涤纶纤维、异形涤纶纤维和麻纤维混合;
E、分别将混棉后的超细涤纶纤维、异形涤纶纤维和麻纤维送入开棉机,进行开松清棉;
F、将经开松清棉的超细涤纶纤维、异形涤纶纤维和麻纤维进行梳棉,将纤维束彻底分解成单根纤维,清除残留的杂质;
G、将生条经过并条工序进一步加工成熟条,以提高棉条质量;
H、将熟条加工成同支数和不同捻度的粗纱,以供细纱工序使用;
I、将粗纱纺成具有一定特数、符合质量标准或客户要求的细纱;
J、对混纺纱线进行络筒;
K、按要求对混纺纤维进行织造,得到混纺坯料;
L、对混纺坯料进行染色、后整理得到混纺面料。
优选的,所述的步骤B中,所述的贝壳粉的粒径为80-200μm,加入量为麻纤维的0.2-0.5%。
优选的,所述的步骤B中,所述的叔胺溶液为叔胺的乙醇溶液。
优选的,所述的步骤B中,所述的叔胺为三甲胺、三乙胺、苄基二甲胺、苄基二乙胺、三丙胺中任意一种或者多种的组合。
优选的,所述的步骤B中,所述的叔胺溶液的质量分数为8-20%。
优选的,所述的步骤B中,麻纤维与叔胺溶液的质量比为1:(8-15)。
优选的,所述的透气抗菌贴身运动服面料,包括以下重量百分比的成分:
超细涤纶纤维 8-12%
异形涤纶纤维 3-8%
麻纤维 余量。
超细涤纶纤维由于纤度极细,大大降低了纤维的刚度,作为织物手感极为柔软,纤维细还增加丝的层状结构,增大比表面积和毛细效应,使纤维内部反射光在表面分布更细腻,使之具有真丝般的高雅光泽,并有良好的吸湿散湿性。用超细纤维做成贴身衣物,舒适、美观、保暖、透气,在疏水性和防污性方面也有显著提高,利用其比表面积大及松软特点可以设计不同的组织结构使之更多的吸收阳光热能或更快散失体温起到冬暖夏凉的作用。
超细涤纶纤维除了具有涤纶纤维的耐光性、耐热性、耐霉菌等特性外,此纤维织成的涤纶纺织品组织十分紧密,抱合力比传统涤纶纤维强,会产生“芯吸效应”,呈现出导湿性,同时提高产品的悬垂性,还可以使纤维和织物的手感变得柔顺,相应提高织物的手感。
异形纤维是经一定得几何形状(非圆型)的喷丝孔纺制的具有特殊横截面形状的化学纤维。也称“异形截面纤维”。 所谓异形纤维,就是把原来一模一样的合成纤维制成截面畸形的纤维。像天然纤维那样,使它们呈现三角形、星形、多叶形等,可以是异形截面纤维,也可以是异形中空纤维,或者是复合异形纤维。 异形纤维是相对于圆形纤维而言的。它是用有特殊几何形状的喷丝板孔挤压出来的,使截面呈一定几何形状的纤维。目前生产的异形纤维主要有三角形、丫形、五角形、三叶形、四叶形、五叶形、扇形、中空形等。
异形纤维跟一般的纤维相比,有如下特点。第一是光学效应好,特别是三角形纤维,具有小棱镜般的分光作用,能使自然光分光后再度组合,给人以特殊的感觉。第二是表面积大,能增强覆盖能力,减小织物的透明度。还能改善圆环纤维易起球的不足。第三是因截面呈特殊形状,能增强纤维间的抱合力,改善纤维的蓬松性和透气性。第四是抗抽丝性能优于圆形纤维。
本发明在麻纤维处理时加入贝壳粉,并用超声波处理,目的是在强力摩擦震荡下,用贝壳粉与麻纤维的表面进行研磨,去除麻纤维的毛刺感;而后续用醋酸溶液处理的目的是用酸将贝壳粉溶解,防止贝壳粉在后续生产过程中形成细小的灰尘,对工人的身体造成伤害。
而本发明中将麻纤维放入叔胺溶液中反应的目的是采用叔胺来季铵化麻纤维,季铵基团的引入会对麻纤维产生一定的亲水化作用和缩孔作用和荷电作用,改善麻纤维的透气性能。
本发明具有以下有益效果:1、本发明选取超细涤纶纤维、麻纤维和异形涤纶纤维混纺使面料具备良好的吸湿排汗性能,同时混纺纤维具备非常好的悬垂性,面料外观好,档次高;2、对麻纤维进行贝壳粉的超声处理,可以去除麻纤维的毛刺感;3、采用叔胺来季铵化麻纤维,不但可以显著提升麻纤维的抗菌性能,而且可以进一步改善麻纤维的透气性能。
除了上面所描述的目的、特征和优点之外,本发明还有其它的目的、特征和优点。下面将对本发明作进一步详细的说明。
具体实施方式
以下对本发明的实施例进行详细说明,但是本发明可以根据权利要求限定和覆盖的多种不同方式实施。
实施例1
一种透气抗菌贴身运动服面料的制备方法,包括以下步骤:
A、将麻纤维经过简单的清洗、烘干后放入48℃水中,加入氢氧化钠、分散剂将溶液pH值调节到9-10,配成碱性溶液;
B、在碱性溶液中加入贝壳粉,然后对溶液进行超声波处理,处理条件为380kW,时间为18min,将麻纤维取出后加入pH值为5-6的醋酸溶液中搅拌12min,然后将麻纤维放入叔胺溶液中,加热至55℃,180rpm条件下,反应2.5h;
C、将处理后的麻纤维送入洗水机中,清洗干净、烘干;
D、将原料送入混棉机,将超细涤纶纤维、异形涤纶纤维和麻纤维混合;
E、分别将混棉后的超细涤纶纤维、异形涤纶纤维和麻纤维送入开棉机,进行开松清棉;
F、将经开松清棉的超细涤纶纤维、异形涤纶纤维和麻纤维进行梳棉,将纤维束彻底分解成单根纤维,清除残留的杂质;
G、将生条经过并条工序进一步加工成熟条,以提高棉条质量;
H、将熟条加工成同支数和不同捻度的粗纱,以供细纱工序使用;
I、将粗纱纺成具有一定特数、符合质量标准或客户要求的细纱;
J、对混纺纱线进行络筒;
K、按要求对混纺纤维进行织造,得到混纺坯料;
L、对混纺坯料进行染色、后整理得到混纺面料。
所述的步骤B中,所述的贝壳粉的粒径为80-200μm,加入量为麻纤维的0.35%。
所述的步骤B中,所述的叔胺溶液为叔胺的乙醇溶液。
所述的步骤B中,所述的叔胺为三乙胺。
所述的步骤B中,所述的叔胺溶液的质量分数为12%。
所述的步骤B中,麻纤维与叔胺溶液的质量比为1:10。
所述的透气抗菌贴身运动服面料,包括以下重量百分比的成分:
超细涤纶纤维 11.5%
异形涤纶纤维 5.5%
麻纤维 余量。
实施例2
一种透气抗菌贴身运动服面料的制备方法,包括以下步骤:
A、将麻纤维经过简单的清洗、烘干后放入50℃水中,加入氢氧化钠、分散剂将溶液pH值调节到9-10,配成碱性溶液;
B、在碱性溶液中加入贝壳粉,然后对溶液进行超声波处理,处理条件为300kW,时间为20min,将麻纤维取出后加入pH值为5-6的醋酸溶液中搅拌8min,然后将麻纤维放入叔胺溶液中,加热至50℃,250rpm条件下,反应2h;
C、将处理后的麻纤维送入洗水机中,清洗干净、烘干;
D、将原料送入混棉机,将超细涤纶纤维、异形涤纶纤维和麻纤维混合;
E、分别将混棉后的超细涤纶纤维、异形涤纶纤维和麻纤维送入开棉机,进行开松清棉;
F、将经开松清棉的超细涤纶纤维、异形涤纶纤维和麻纤维进行梳棉,将纤维束彻底分解成单根纤维,清除残留的杂质;
G、将生条经过并条工序进一步加工成熟条,以提高棉条质量;
H、将熟条加工成同支数和不同捻度的粗纱,以供细纱工序使用;
I、将粗纱纺成具有一定特数、符合质量标准或客户要求的细纱;
J、对混纺纱线进行络筒;
K、按要求对混纺纤维进行织造,得到混纺坯料;
L、对混纺坯料进行染色、后整理得到混纺面料。
所述的步骤B中,所述的贝壳粉的粒径为80-200μm,加入量为麻纤维的0.5%。
所述的步骤B中,所述的叔胺溶液为叔胺的乙醇溶液。
所述的步骤B中,所述的叔胺为三甲胺和三乙胺质量比为2:1的组合。
所述的步骤B中,所述的叔胺溶液的质量分数为20%。
所述的步骤B中,麻纤维与叔胺溶液的质量比为1:8。
所述的透气抗菌贴身运动服面料,包括以下重量百分比的成分:
超细涤纶纤维 8%
异形涤纶纤维 8%
麻纤维 余量。
实施例3
一种透气抗菌贴身运动服面料的制备方法,包括以下步骤:
A、将麻纤维经过简单的清洗、烘干后放入45℃水中,加入氢氧化钠、分散剂将溶液pH值调节到9-10,配成碱性溶液;
B、在碱性溶液中加入贝壳粉,然后对溶液进行超声波处理,处理条件为500kW,时间为15min,将麻纤维取出后加入pH值为5-6的醋酸溶液中搅拌15min,然后将麻纤维放入叔胺溶液中,加热至60℃,150rpm条件下,反应3h;
C、将处理后的麻纤维送入洗水机中,清洗干净、烘干;
D、将原料送入混棉机,将超细涤纶纤维、异形涤纶纤维和麻纤维混合;
E、分别将混棉后的超细涤纶纤维、异形涤纶纤维和麻纤维送入开棉机,进行开松清棉;
F、将经开松清棉的超细涤纶纤维、异形涤纶纤维和麻纤维进行梳棉,将纤维束彻底分解成单根纤维,清除残留的杂质;
G、将生条经过并条工序进一步加工成熟条,以提高棉条质量;
H、将熟条加工成同支数和不同捻度的粗纱,以供细纱工序使用;
I、将粗纱纺成具有一定特数、符合质量标准或客户要求的细纱;
J、对混纺纱线进行络筒;
K、按要求对混纺纤维进行织造,得到混纺坯料;
L、对混纺坯料进行染色、后整理得到混纺面料。
所述的步骤B中,所述的贝壳粉的粒径为80-200μm,加入量为麻纤维的0.2%。
所述的步骤B中,所述的叔胺溶液为叔胺的乙醇溶液。
所述的步骤B中,所述的叔胺为三丙胺。
所述的步骤B中,所述的叔胺溶液的质量分数为8%。
所述的步骤B中,麻纤维与叔胺溶液的质量比为1:15。
所述的透气抗菌贴身运动服面料,包括以下重量百分比的成分:
超细涤纶纤维 12%
异形涤纶纤维 3%
麻纤维 余量。
以下对实施例1-3进行检测,得到如下检测数据,具体数据见表1。
表1:实施例1-3样品的检测数据;
由以上测试数据可以知道,本发明的贴身运动服面料具有非常好的透气抗菌性能。
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 (7)
1.一种透气抗菌贴身运动服面料的制备方法,其特征在于,包括以下步骤:
A、将麻纤维经过简单的清洗、烘干后放入45-50℃水中,加入氢氧化钠、分散剂将溶液pH值调节到9-10,配成碱性溶液;
B、在碱性溶液中加入贝壳粉,然后对溶液进行超声波处理,处理条件为300-500kW,时间为15-20min,将麻纤维取出后加入pH值为5-6的醋酸溶液中搅拌8-15min,然后将麻纤维放入叔胺溶液中,加热至50-60℃,150-250rpm条件下,反应2-3h;
C、将处理后的麻纤维送入洗水机中,清洗干净、烘干;
D、将原料送入混棉机,将超细涤纶纤维、异形涤纶纤维和麻纤维混合;
E、分别将混棉后的超细涤纶纤维、异形涤纶纤维和麻纤维送入开棉机,进行开松清棉;
F、将经开松清棉的超细涤纶纤维、异形涤纶纤维和麻纤维进行梳棉,将纤维束彻底分解成单根纤维,清除残留的杂质;
G、将生条经过并条工序进一步加工成熟条,以提高棉条质量;
H、将熟条加工成同支数和不同捻度的粗纱,以供细纱工序使用;
I、将粗纱纺成具有一定特数、符合质量标准或客户要求的细纱;
J、对混纺纱线进行络筒;
K、按要求对混纺纤维进行织造,得到混纺坯料;
L、对混纺坯料进行染色、后整理得到混纺面料。
2.如权利要求1所述的透气抗菌贴身运动服面料的制备方法,其特征在于,所述的步骤B中,所述的贝壳粉的粒径为80-200μm,加入量为麻纤维的0.2-0.5%。
3.如权利要求1所述的透气抗菌贴身运动服面料的制备方法,其特征在于,所述的步骤B中,所述的叔胺溶液为叔胺的乙醇溶液。
4.如权利要求1所述的透气抗菌贴身运动服面料的制备方法,其特征在于,所述的步骤B中,所述的叔胺为三甲胺、三乙胺、苄基二甲胺、苄基二乙胺、三丙胺中任意一种或者多种的组合。
5.如权利要求1所述的透气抗菌贴身运动服面料的制备方法,其特征在于,所述的步骤B中,所述的叔胺溶液的质量分数为8-20%。
6.如权利要求1所述的透气抗菌贴身运动服面料的制备方法,其特征在于,所述的步骤B中,麻纤维与叔胺溶液的质量比为1:(8-15)。
7.如权利要求1所述的透气抗菌贴身运动服面料的制备方法,其特征在于,所述的透气抗菌贴身运动服面料,包括以下重量百分比的成分:
超细涤纶纤维 8-12%
异形涤纶纤维 3-8%
麻纤维 余量。
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