CN117344440A - 一种抗菌消臭面料及其防蚊上的应用 - Google Patents
一种抗菌消臭面料及其防蚊上的应用 Download PDFInfo
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Abstract
本发明涉及服装面料技术领域,具体为一种抗菌消臭面料及其防蚊上的应用;本发明研发的抗菌消臭面料采用具有较高比表面积的异型聚酯导湿冰氨纤维材料和具有除虫菊酶防蚊化合物和天然植物精油的纳米级微胶囊弹力纤维编织而成,异型聚酯导湿冰氨纤维材料具有舒适凉感,高效抑菌,干爽透气、抗紫外的特点,具有除虫菊酶防蚊化合物和天然植物精油的纳米级微胶囊弹力纤维可有效干扰蚊子寻找目标的信息素,从而让蚊虫不愿意靠近,在小范围内营造出一个安全、健康的生活环境。
Description
技术领域
本发明涉及服装面料技术领域,具体为一种抗菌消臭面料及其防蚊上的应用。
背景技术
服装材料是服装的基本物质要素,现如今生活水平的提高,人们开始更多的关注生活的质量追求安全健康,绿色环保,对与日常工作、生活息息相关的各式各样纺织品来说,基本的服用性能已经不能完全满足消费者的需求,赋予特殊效用的功能纺织品,越来越受到消费者的青睐。
旅游及户外运动的快速发展,使人们对服装服用舒适性和功能性要求也就越来越多,尤其是在夏天炎热酷暑之下,人们身体出汗会导致衣服浸湿,不仅舒适感降低,而且大量汗液积聚在纤维材料里难以扩散还会产生明显的汗味,不仅会让人们不舒服,而且夏季蚊虫多,消散不去的汗味会吸引更多的蚊虫叮咬,因此有必要研发一种抗菌消臭面料。
发明内容
本发明提供抗菌消臭面料及其防蚊上的应用,以解决相关技术夏季身体出汗导致的衣服面料浸湿以及产生明显汗味吸引蚊虫叮咬的问题。
本发明提供了一种抗菌消臭面料, 采用以下工艺制备而成,包括:S1、织胚。
S2、胚布定型。
S3、前处理。
S4、染色。
S5、后处理、固色。
S6、定型。
所述步骤S1的具体织胚工艺如下:第一路,该路工艺以两种不同针锺BABA循环排列编织,B版针以成圈工艺编织,A版针以浮线工艺编织。
第二路,该路工艺以两种不同针锺BABA循环排列编织,B版针以成圈的起针工艺编织,A版针以集圈工艺编织。
第三路,该路工艺以两种不同针锺BABA循环排列编织,A版针和B版针均以成圈的起针工艺编织。
第四路,该路工艺以两种不同针锺BABA循环排列编织,B版针以浮线工艺编织,A版针以成圈工艺编织。
第五路,该路工艺以两种不同针锺BABA循环排列编织,B版针以集圈工艺编织,A版针以成圈工艺编织,第五路与第二路相互交叉排列。
第六路,与第三路编织方法相同。
其中,第一路、第二路、第四路和第五路均选择特殊原纱技术70D/36F异形聚酯导湿冰氨纤维材料。
第三路和第六路均选择特殊原纱技术70D/36F异形聚酯导湿冰氨纤维材料和驱蚊功能弹力纤维材料,驱蚊功能弹力纤维材料以衬垫的方式盖织在冰氨纤维材料的底部。
在一种可能实施的方式中,所述异形聚酯导湿冰氨纤维材料利用冰莹玉矿石经高温煅烧、研磨成纳米粉体后加入到纺织纤维中制成,纺织纤维表面为异形沟槽结构。
在一种可能实施的方式中,所述驱蚊功能弹力纤维材料通过将含有拟除虫菊酶防蚊化合物和天然植物精油的纳米级微胶囊在连续聚合干法纺丝的生产工艺流程基础上加入纺丝原液中制成。
在一种可能实施的方式中,所述步骤S3中,依次使用浓度1%的氢氧化钠溶液和浓度为4%的双氧水进行前处理,处理温度时间为40-60min。
在一种可能实施的方式中,所述步骤S4中,在活性染料中,于50-60℃进行染色,染色时间为40-90min。
在一种可能实施的方式中,所述步骤S5中,在酸性燃料中,于95℃进行固色处理45min。
在一种可能实施的方式中,所述步骤S6中,加亲水硅油于130-160℃进行定型40-60s。
本发明的另一方面在于提供一种所述抗菌消臭面料的应用,具体是用作防蚊用品的应用。
本发明实施例中的上述一个或多个技术方案,至少具有如下技术效果之一:一、研发的抗菌消臭面料采用具有较高比表面积的异型聚酯导湿冰氨纤维材料和具有除虫菊酶防蚊化合物和天然植物精油的纳米级微胶囊弹力纤维编织而成,异型聚酯导湿冰氨纤维材料具有舒适凉感,高效抑菌,干爽透气、抗紫外的特点,具有除虫菊酶防蚊化合物和天然植物精油的纳米级微胶囊弹力纤维可有效干扰蚊子寻找目标的信息素,从而让蚊虫不愿意靠近,在小范围内营造出一个安全、健康的生活环境。
二、在面料组织结构织造工艺技术上采用成圈,集圈和浮线相结合的网孔肌理纬编针织面料,面料风格时尚典雅,蜂窝状网孔结构可以快速排汗吸湿,明显改善因身体出汗产生湿热而影响舒适性,使人们在穿着过程中会始终保持清爽状态,更不会因大量汗液积聚在纤维材料里难以扩散而产生明显的汗味,增加了穿着的舒适性能。
附图说明
图1是本发明实施例中的面料编织图。
图2是本发明实施例中的面料组织结构图。
图3是本发明实施例中的面料意匠图。
具体实施方式
为使本发明的上述目的、特征和优点能够更加明显易懂,下面结合附图对本发明的具体实施方式做详细的说明。在下面的描述中阐述了很多具体细节以便于充分理解本发明。但是本发明能够以很多不同于下面所描述的其它方式来实施,本领域技术人员可以在不违背本发明内涵的情况下做类似改进,因此本发明不受下面公开的具体实施方式的限制。
一种抗菌消臭面料,采用以下工艺制备而成,包括:S1、织胚。
S2、胚布定型。
S3、前处理,具体的依次使用浓度1%的氢氧化钠溶液和浓度为4%的双氧水进行前处理,处理温度时间为40-60min。
S4、染色,在活性染料中,于50-60℃进行染色,染色时间为40-90min。
S5、后处理、固色,在酸性燃料中,于95℃进行固色处理45min。
S6、定型,加亲水硅油于130-160℃进行定型40-60s。
S7、预缩,于100-100℃进行预缩40-60s。
S8、产品性能测试。
请参阅图1和图2,所述步骤S1的具体织胚工艺如下:面料组织结构如图2所示第1路对应面料编织图1的第1路,该路工艺以两种不同针锺BABA循环排列编织,其中如图2第1路黑色轨迹线圈所示B版针以成圈工艺编织,A版针以浮线工艺编织,该路纱选择特殊原纱技术70D/36F异形聚酯导湿冰氨纤维材料,该异形聚酯导湿冰氨纤维材料具有较高的比表面积,制成的面料具备质轻、导湿、快干、舒适、易清洗以及免熨烫的优良特性,该异形聚酯导湿冰氨纤维材料在面料组织结构的第一路结合成圈和浮线两种不同线圈结构特性,衬垫在整个面料组织结构之中,增强整个面料的蓬松感和骨架感,浮线工艺结构的应用在性能上会增强整个面料的蓬松透气性,在结构上会增加整个面料的肌理骨架感,使面料在风格上显得不至于过于单一。
面料组织结构图2所示第2路对应面料编织图1的第2路,该路工艺以两种不同针锺BABA循环排列编织,其中如图2第2路黑色轨迹线圈所示,A版针以集圈工艺编织,B版针以成圈的起针工艺编织,该路纱同第一路一样选择特殊原纱技术70D/36F异形聚酯导湿冰氨纤维材料。该异形聚酯导湿冰氨纤维材料在面料组织结构的第二路结合成圈和含针集圈的不同线圈结构特性,在结构上增加面料肌理感,突出面料风格休闲时尚化。
面料组织结构图2所示第3路对应面料编织图1的第3路,该路工艺以两种不同针锺BABA循环排列编织,其中如图2第3路黑色轨迹线圈所示,A版针和B版针均以成圈的起针工艺编织,该路纱选择特殊原纱技术70D/36F异形聚酯导湿冰氨纤维材料和含有拟除虫菊酶防蚊化合物和天然植物精油的纳米级微胶囊的弹力纤维材料,弹力纤维材料以衬垫的方式盖织在冰氨纤维材料的底部,在风格弹力上可增加面料品质感和消费者穿着舒适体验感,在功能呈现上可干扰蚊子目标信息素,起到一定的驱避效果,从而让蚊虫不愿意靠近人体。
面料组织结构图2所示第4路对应面料编织图1的第4路,该路工艺以两种不同针锺BABA循环排列编织,其中如图2第4路黑色轨迹线圈所示A版针以成圈工艺编织,B版针以浮线工艺编织,该路纱选择特殊原纱技术70D/36F异形聚酯导湿冰氨纤维材料。
面料组织结构图2所示第5路对应面料编织图1的第5路,该路工艺以两种不同针锺BABA循环排列编织,其中如图2第5路黑色轨迹线圈所示,A版针以成圈工艺编织,B版针以集圈工艺编织,该路纱同样选择特殊原纱技术70D/36F异形聚酯导湿冰氨纤维材料,该路异形聚酯导湿冰氨纤维材料在面料组织结构的第5路所呈现的成圈和集圈与组织结构的第2路所呈现的成圈和集圈相互交叉排列,如图3面料意匠图所示,即A版针在面料组织结构图的第2路做集圈工艺编织,在第5路就做成圈工艺编织,B版针在面料组织结构图的第2路做成圈工艺编织,在第5路就做集圈工艺编织,结合整个面料风格就会呈现出均匀的蜂巢孔状肌理效果。
面料组织结构图2所示第6路对应面料编织图1的第6路,该路工艺以两种不同针锺BABA循环排列编织,其中如图2第6路黑色轨迹线圈所示,A版针和B版针均以成圈的起针工艺编织,该路纱选择特殊原纱技术70D/36F异形聚酯导湿冰氨纤维材料和含有拟除虫菊酶防蚊化合物和天然植物精油的纳米级微胶囊的弹力纤维材料,功能和风格同第3路相同。
所述步骤S8的产品性能测试过程如下:其中,面料防蚊性能测试参照GB/T 30126-2013《纺织品防蚊性能的检测和评价》,首选准备四个实验试样和四个对照试样,然后选测试合格的4名志愿人员(男、女各2人),在志愿人员前臂内侧间隔覆盖实验试样和对照试样,再将驱避测试器放在样布上,使驱避测试器的圆孔对准样布,之后在驱避测试器中放入攻击力合格的白纹伊蚊30只,将拉板拉出,使圆孔完全暴露,计数2min时实验试样和对照试样表面停落的蚊虫数,将对照试样平均蚊虫停落数减去实验试样平均蚊虫停落数与对照试样平均蚊虫停落数求比例计算出驱避率,驱避率结果如下表1所示,该面料具有良好的驱避效果。
表1 面料技术性能指标测试结果表现。
在本发明实施例中,除非另有明确的规定和限定,第一特征在第二特征“上”或“下”可以是第一和第二特征直接接触,或第一和第二特征通过中间媒介间接接触。而且,第一特征在第二特征“之上”、“上方”和“上面”可是第一特征在第二特征正上方或斜上方,或仅仅表示第一特征水平高度高于第二特征。第一特征在第二特征“之下”、“下方”和“下面”可以是第一特征在第二特征正下方或斜下方,或仅仅表示第一特征水平高度小于第二特征。
在本发明的描述中,还需要说明的是,除非另有明确的规定和限定,术语“设置”、“相连”、“安装”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接,或滑动连接;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通。对于本领域的普通技术人员而言,可以具体情况理解上述术语在本发明中的具体含义。
本具体实施方式的实施例均为本发明的较佳实施例,并非依此限制本发明的保护范围,故:凡依据本发明的结构、形状、原理所做的等效变化,均应涵盖于本发明的保护范围之内。
Claims (6)
1.一种抗菌消臭面料,采用以下工艺制备而成,包括S1、织胚;
S2、胚布定型;
S3、前处理;
S4、染色;
S5、后处理、固色;
S6、定型;
其特征在于:所述步骤S1的具体织胚工艺如下:
第一路,该路工艺以两种不同针锺BABA循环排列编织,B版针以成圈工艺编织,A版针以浮线工艺编织;
第二路,该路工艺以两种不同针锺BABA循环排列编织,B版针以成圈的起针工艺编织,A版针以集圈工艺编织;
第三路,该路工艺以两种不同针锺BABA循环排列编织,A版针和B版针均以成圈的起针工艺编织;
第四路,该路工艺以两种不同针锺BABA循环排列编织,B版针以浮线工艺编织,A版针以成圈工艺编织;
第五路,该路工艺以两种不同针锺BABA循环排列编织,B版针以集圈工艺编织,A版针以成圈工艺编织,第五路与第二路相互交叉排列;
第六路,与第三路编织方法相同;
其中,第一路、第二路、第四路和第五路均选择异形聚酯导湿冰氨纤维材料;
第三路和第六路均选择异形聚酯导湿冰氨纤维材料和驱蚊功能弹力纤维材料,驱蚊功能弹力纤维材料以衬垫的方式盖织在冰氨纤维材料的底部;
所述异形聚酯导湿冰氨纤维材料利用冰莹玉矿石经高温煅烧、研磨成纳米粉体后加入到纺织纤维中制成,纺织纤维表面为异形沟槽结构;所述驱蚊功能弹力纤维材料通过将含有拟除虫菊酶防蚊化合物和天然植物精油的纳米级微胶囊在连续聚合干法纺丝的生产工艺流程基础上加入纺丝原液中制成。
2.根据权利要求1所述的一种抗菌消臭面料,其特征在于:所述步骤S3中,依次使用浓度1%的氢氧化钠溶液和浓度为4%的双氧水进行前处理,处理温度98℃,处理时间为40-60min。
3.根据权利要求1所述的一种抗菌消臭面料,其特征在于:所述步骤S4中,在活性染料中,于50-60℃进行染色,染色时间为40-90min。
4.根据权利要求1所述的一种抗菌消臭面料,其特征在于:所述步骤S5中,在酸性燃料中,于95℃进行固色处理45min。
5.根据权利要求1所述的一种抗菌消臭面料,其特征在于:所述步骤S6中,加亲水硅油于130-160℃进行定型40-60s。
6.根据权利要求1-5任一项所述的一种抗菌消臭面料在防蚊上的应用。
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