CN112482018A - 一种纳米真丝抗皱针织服装的生产工艺 - Google Patents

一种纳米真丝抗皱针织服装的生产工艺 Download PDF

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CN112482018A
CN112482018A CN202011349020.1A CN202011349020A CN112482018A CN 112482018 A CN112482018 A CN 112482018A CN 202011349020 A CN202011349020 A CN 202011349020A CN 112482018 A CN112482018 A CN 112482018A
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real silk
garment
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何的江
何恩霞
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Taihu Xinshidai Clothing Co ltd
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Abstract

本发明公开了一种纳米真丝抗皱针织服装的生产工艺,S1、选取上等真丝纤维,S2、第一整理剂的制备:选取纳米二氧化钛、纳米绢云母粉、改性聚氨酯、壳聚糖、聚丙烯酰胺和去离子水,涉及服装生产技术领域。该纳米真丝抗皱针织服装的生产工艺,通过添加第一整理剂对真丝纤维进行浸泡,使得服装具有很好的抗皱功能,提高了服装的美观性,通过将第二整理剂对成品服装进行反复喷洒,使得服装具有很好的抑螨以及抗老化性能,同时能够进一步提高真丝服装的柔顺性,同时该真丝服装的制作工艺简单易行,成本不高,便于大范围推广。

Description

一种纳米真丝抗皱针织服装的生产工艺
技术领域
本发明涉及服装生产技术领域,具体为一种纳米真丝抗皱针织服装的生产工艺。
背景技术
服装是衣服鞋包及装饰品等的总称,多指衣服。在国家标准中对服装的定义为:缝制,穿于人体起保护和装饰作用的产品,又称衣服,真丝一般指蚕丝,包括桑蚕丝、柞蚕丝、蓖麻蚕丝、木薯蚕丝等。真丝被称为"纤维皇后",以其独特的魅力受到古往今来人们的青睐,真丝属于蛋白质纤维,真丝主要用作服装面料,真丝绸是由蛋白纤维组成的,与人体有极好的生物相容性,加之表面光滑,其对人体的摩擦刺激系数在各类纤维中是最低的,仅为7.4%,因此真丝服装具有很好的舒适感,被人们广泛使用。
真丝服装虽然有很好的舒适性,但是其也有明显的缺点,其明显的缺点是真丝服装易起皱,起皱后严重影响服装的美观性,同时对舒适性有一定的影响,同时真丝服装容易老化和褪色,导致在穿着时保养较难。
发明内容
针对现有技术的不足,本发明提供了一种纳米真丝抗皱针织服装的生产工艺,解决了现有的真丝服装容易起皱和老化的问题。
基于背景技术存在的技术问题,本发明提出一种纳米真丝抗皱针织服装的生产工艺,包括如下步骤:
S1、选取上等真丝纤维;
S2、第一整理剂的制备:选取纳米二氧化钛、纳米绢云母粉、改性聚氨酯、壳聚糖、聚丙烯酰胺和去离子水,将纳米二氧化钛、纳米绢云母粉、改性聚氨酯、壳聚糖和聚丙烯酰胺均加入混合搅拌机中,混合搅拌机转速控制在200-300r/min,搅拌5-8min,在混合搅拌时缓慢加入去离子水,制得第一整理剂;
S3、将步骤S2中制得的第一整理剂导入浸泡池中,对第一整理剂进行预加热,待第一整理剂加热至60-70℃进行保温,将步骤S1中选取的真丝纤维完全放入浸泡池中,浸泡2-4h,浸泡完毕后,将真丝纤维放入烘干机中,烘干机温度控制在40-45℃,烘干完毕后将真丝纤维纺织成经线和纬线,然后按照服装样板针织成成品服装;
S4、第二整理剂的制备:选取多聚谷氨酸、茶皂素、竹炭粉、蓖麻油、柔软剂、抑螨剂和去离子水,将其均加入混合搅拌机中进行均匀混合,混合搅拌机转速控制在150-200r/min,搅拌4-7min,搅拌温度控制在35-40℃,搅拌完毕后制得第二整理剂;
S5、将步骤S4中制作的第二整理剂通过喷雾设备均匀的喷洒在服装的表面,喷洒完毕后进行自然风干,风干后对服装的内面进行均匀喷洒第二整理剂,喷洒完毕后进行自然风干,风干完毕后每隔8-10h喷洒一次,连续喷洒3-4次后即可,制得最终纳米真丝抗皱针织服装。
优选的,所述第一整理剂中的原料按重量份比包括:纳米二氧化钛10-15份、纳米绢云母粉3-6份、改性聚氨酯5-9份、壳聚糖2-7份、聚丙烯酰胺6-8份、去离子水30-45份。
优选的,所述第二整理剂中的原料按重量份比包括:多聚谷氨酸5-8份、茶皂素8-12份、竹炭粉8-15份、蓖麻油2-5份、柔软剂3-7份、抑螨剂1-3份、去离子水31-50份。
优选的,所述步骤S2中的改性聚氨酯为水性聚氨酯。
优选的,所述步骤S4中的竹炭粉为白竹炭粉。
优选的,所述柔软剂为脂肪酸甘油酯,所述抑螨剂为甲硝唑。
本发明提供了一种纳米真丝抗皱针织服装的生产工艺。具备以下有益效果:该纳米真丝抗皱针织服装的生产工艺,通过S1、选取上等真丝纤维,S2、第一整理剂的制备:选取纳米二氧化钛、纳米绢云母粉、改性聚氨酯、壳聚糖、聚丙烯酰胺和去离子水,S3、将步骤S2中制得的第一整理剂导入浸泡池中,对第一整理剂进行预加热,S4、第二整理剂的制备:选取多聚谷氨酸、茶皂素、竹炭粉、蓖麻油、柔软剂、抑螨剂和去离子水,S5、将步骤S4中制作的第二整理剂通过喷雾设备均匀的喷洒在服装的表面,喷洒完毕后进行自然风干,通过添加第一整理剂对真丝纤维进行浸泡,使得服装具有很好的抗皱功能,提高了服装的美观性,通过将第二整理剂对成品服装进行反复喷洒,使得服装具有很好的抑螨以及抗老化性能,同时能够进一步提高真丝服装的柔顺性,同时该真丝服装的制作工艺简单易行,成本不高,便于大范围推广。
具体实施方式
下面将结合本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
本发明实施例提供三种技术方案:一种纳米真丝抗皱针织服装的生产工艺,具体包括以下实施例:
实施例1
S1、选取上等真丝纤维;
S2、第一整理剂的制备:按重量份比选取纳米二氧化钛10份、纳米绢云母粉3份、改性聚氨酯5份、壳聚糖2份、聚丙烯酰胺8份、去离子水45份,改性聚氨酯为水性聚氨酯,将纳米二氧化钛、纳米绢云母粉、改性聚氨酯、壳聚糖和聚丙烯酰胺均加入混合搅拌机中,混合搅拌机转速控制在200r/min,搅拌5min,在混合搅拌时缓慢加入去离子水,制得第一整理剂;
S3、将步骤S2中制得的第一整理剂导入浸泡池中,对第一整理剂进行预加热,待第一整理剂加热至60℃进行保温,将步骤S1中选取的真丝纤维完全放入浸泡池中,浸泡2h,浸泡完毕后,将真丝纤维放入烘干机中,烘干机温度控制在40℃,烘干完毕后将真丝纤维纺织成经线和纬线,然后按照服装样板针织成成品服装;
S4、第二整理剂的制备:按重量份比选取多聚谷氨酸5份、茶皂素8份、竹炭粉8份、蓖麻油2份、柔软剂3份、抑螨剂3份、去离子水50份,竹炭粉为白竹炭粉,柔软剂为脂肪酸甘油酯,抑螨剂为甲硝唑,将其均加入混合搅拌机中进行均匀混合,混合搅拌机转速控制在150r/min,搅拌4min,搅拌温度控制在35℃,搅拌完毕后制得第二整理剂;
S5、将步骤S4中制作的第二整理剂通过喷雾设备均匀的喷洒在服装的表面,喷洒完毕后进行自然风干,风干后对服装的内面进行均匀喷洒第二整理剂,喷洒完毕后进行自然风干,风干完毕后每隔8h喷洒一次,连续喷洒3次后即可,制得最终纳米真丝抗皱针织服装。
实施例2
S1、选取上等真丝纤维;
S2、第一整理剂的制备:按重量份比选取纳米二氧化钛12份、纳米绢云母粉5份、改性聚氨酯7份、壳聚糖4份、聚丙烯酰胺7份、去离子水38份,改性聚氨酯为水性聚氨酯,将纳米二氧化钛、纳米绢云母粉、改性聚氨酯、壳聚糖和聚丙烯酰胺均加入混合搅拌机中,混合搅拌机转速控制在250r/min,搅拌6min,在混合搅拌时缓慢加入去离子水,制得第一整理剂;
S3、将步骤S2中制得的第一整理剂导入浸泡池中,对第一整理剂进行预加热,待第一整理剂加热至65℃进行保温,将步骤S1中选取的真丝纤维完全放入浸泡池中,浸泡3h,浸泡完毕后,将真丝纤维放入烘干机中,烘干机温度控制在42℃,烘干完毕后将真丝纤维纺织成经线和纬线,然后按照服装样板针织成成品服装;
S4、第二整理剂的制备:按重量份比选取多聚谷氨酸6份、茶皂素10份、竹炭粉12份、蓖麻油3份、柔软剂5份、抑螨剂2份、去离子水41份,竹炭粉为白竹炭粉,柔软剂为脂肪酸甘油酯,抑螨剂为甲硝唑,将其均加入混合搅拌机中进行均匀混合,混合搅拌机转速控制在175r/min,搅拌5min,搅拌温度控制在38℃,搅拌完毕后制得第二整理剂;
S5、将步骤S4中制作的第二整理剂通过喷雾设备均匀的喷洒在服装的表面,喷洒完毕后进行自然风干,风干后对服装的内面进行均匀喷洒第二整理剂,喷洒完毕后进行自然风干,风干完毕后每隔9h喷洒一次,连续喷洒3次后即可,制得最终纳米真丝抗皱针织服装。
实施例3
S1、选取上等真丝纤维;
S2、第一整理剂的制备:按重量份比选取纳米二氧化钛15份、纳米绢云母粉6份、改性聚氨酯9份、壳聚糖7份、聚丙烯酰胺6份、去离子水30份,改性聚氨酯为水性聚氨酯,将纳米二氧化钛、纳米绢云母粉、改性聚氨酯、壳聚糖和聚丙烯酰胺均加入混合搅拌机中,混合搅拌机转速控制在300r/min,搅拌8min,在混合搅拌时缓慢加入去离子水,制得第一整理剂;
S3、将步骤S2中制得的第一整理剂导入浸泡池中,对第一整理剂进行预加热,待第一整理剂加热至70℃进行保温,将步骤S1中选取的真丝纤维完全放入浸泡池中,浸泡4h,浸泡完毕后,将真丝纤维放入烘干机中,烘干机温度控制在45℃,烘干完毕后将真丝纤维纺织成经线和纬线,然后按照服装样板针织成成品服装;
S4、第二整理剂的制备:按重量份比选取多聚谷氨酸8份、茶皂素12份、竹炭粉15份、蓖麻油5份、柔软剂7份、抑螨剂1份、去离子水31份,竹炭粉为白竹炭粉,柔软剂为脂肪酸甘油酯,抑螨剂为甲硝唑,将其均加入混合搅拌机中进行均匀混合,混合搅拌机转速控制在200r/min,搅拌7min,搅拌温度控制在40℃,搅拌完毕后制得第二整理剂;
S5、将步骤S4中制作的第二整理剂通过喷雾设备均匀的喷洒在服装的表面,喷洒完毕后进行自然风干,风干后对服装的内面进行均匀喷洒第二整理剂,喷洒完毕后进行自然风干,风干完毕后每隔10h喷洒一次,连续喷洒4次后即可,制得最终纳米真丝抗皱针织服装。
效果实施例
某服装加工厂,分别采用实施例1-3的生产工艺和普通生产工艺各加工10件服装,得到成品后,选取40人试穿60天,60天后,采用实施例1-3生产的服装表面没有起皱褶,而采用普通工艺生产的服装10件均不同程度的起皱。
需要说明的是,在本文中,诸如第一和第二等之类的关系术语仅仅用来将一个实体或者操作与另一个实体或操作区分开来,而不一定要求或者暗示这些实体或操作之间存在任何这种实际的关系或者顺序。而且,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者设备不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者设备所固有的要素。
尽管已经示出和描述了本发明的实施例,对于本领域的普通技术人员而言,可以理解在不脱离本发明的原理和精神的情况下可以对这些实施例进行多种变化、修改、替换和变型,本发明的范围由所附权利要求及其等同物限定。

Claims (6)

1.一种纳米真丝抗皱针织服装的生产工艺,其特征在于,包括如下步骤:
S1、选取上等真丝纤维;
S2、第一整理剂的制备:选取纳米二氧化钛、纳米绢云母粉、改性聚氨酯、壳聚糖、聚丙烯酰胺和去离子水,将纳米二氧化钛、纳米绢云母粉、改性聚氨酯、壳聚糖和聚丙烯酰胺均加入混合搅拌机中,混合搅拌机转速控制在200-300r/min,搅拌5-8min,在混合搅拌时缓慢加入去离子水,制得第一整理剂;
S3、将步骤S2中制得的第一整理剂导入浸泡池中,对第一整理剂进行预加热,待第一整理剂加热至60-70℃进行保温,将步骤S1中选取的真丝纤维完全放入浸泡池中,浸泡2-4h,浸泡完毕后,将真丝纤维放入烘干机中,烘干机温度控制在40-45℃,烘干完毕后将真丝纤维纺织成经线和纬线,然后按照服装样板针织成成品服装;
S4、第二整理剂的制备:选取多聚谷氨酸、茶皂素、竹炭粉、蓖麻油、柔软剂、抑螨剂和去离子水,将其均加入混合搅拌机中进行均匀混合,混合搅拌机转速控制在150-200r/min,搅拌4-7min,搅拌温度控制在35-40℃,搅拌完毕后制得第二整理剂;
S5、将步骤S4中制作的第二整理剂通过喷雾设备均匀的喷洒在服装的表面,喷洒完毕后进行自然风干,风干后对服装的内面进行均匀喷洒第二整理剂,喷洒完毕后进行自然风干,风干完毕后每隔8-10h喷洒一次,连续喷洒3-4次后即可,制得最终纳米真丝抗皱针织服装。
2.根据权利要求1所述的一种纳米真丝抗皱针织服装的生产工艺,其特征在于:所述第一整理剂中的原料按重量份比包括:纳米二氧化钛10-15份、纳米绢云母粉3-6份、改性聚氨酯5-9份、壳聚糖2-7份、聚丙烯酰胺6-8份、去离子水30-45份。
3.根据权利要求1所述的一种纳米真丝抗皱针织服装的生产工艺,其特征在于:所述第二整理剂中的原料按重量份比包括:多聚谷氨酸5-8份、茶皂素8-12份、竹炭粉8-15份、蓖麻油2-5份、柔软剂3-7份、抑螨剂1-3份、去离子水31-50份。
4.根据权利要求1所述的一种纳米真丝抗皱针织服装的生产工艺,其特征在于:所述步骤S2中的改性聚氨酯为水性聚氨酯。
5.根据权利要求1所述的一种纳米真丝抗皱针织服装的生产工艺,其特征在于:所述步骤S4中的竹炭粉为白竹炭粉。
6.根据权利要求1所述的一种纳米真丝抗皱针织服装的生产工艺,其特征在于:所述柔软剂为脂肪酸甘油酯,所述抑螨剂为甲硝唑。
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