CN116949643A - 一种吸水复合丝绸面料及其加工方法 - Google Patents
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Abstract
本发明公开了一种吸水复合丝绸面料及其加工方法,具体涉及纺织品领域,其中包括以下份数的原料:35‑40份天然蚕丝纤维、5‑10份聚丙烯纤维、10‑15份功能纤维、6‑8份蛋白酶PG、4‑6份转谷氨酰胺酶;其中功能纤维设置为麦饭石纤维或负离子纤维。本发明中聚丙烯纤维的添加能够利用自身高强度及高弹性,从而进行材料复合,以保证制得丝绸面料的韧性,使其吸水后保持外形,有效规避其吸水后产生外形缩水的情况发生,功能纤维中麦饭石纤维或负离子纤维利用自身的抗菌、防臭功效,使得制得的丝绸面料在接触皮肤使用时,因接触少量汗渍避免异味的产生,而对于蚕丝纤维的改性设置,保证制得吸水复合丝绸面料的综合性能的保持。
Description
技术领域
本发明涉及纺织品技术领域,更具体地说,本发明涉及一种吸水复合丝绸面料及其加工方法。
背景技术
丝绸所含的天然纤维主要是蚕丝纤维,是熟蚕结茧时所分泌丝液凝固而成的连续长纤维,也称天然丝,是人类利用最早的动物纤维之一,包括桑蚕丝、柞蚕丝、蓖麻蚕丝、木薯蚕丝等。蚕丝纤维是唯一得到实际应用的天然长丝纤维,由蚕改粘液凝固而成。蚕丝纤维因蚕的食性不同分成多种,其中有食桑叶形成的桑蚕丝纤维、食柞树叶形成的柞蚕丝纤维以及食木薯叶、马桑叶、蓖麻叶形成的其他野蚕丝纤维。桑蚕丝纤维和柞蚕丝纤维可以把长丝纤维的形态保留到集束形成的长丝纱中,其他的几种野蚕丝纤维只能被改形为短纤维用纺织加工。在用桑蚕丝纤维和柞蚕丝纤维集束形成的长丝纱中,桑蚕丝纤维的长丝纱最重要,占天然长丝纱的大部分。
复合丝面料(Multi-filament fabric)是由两种或多种不同纤维混纺而成的一种织物。在混纺过程中,每根纤维都被加工成细小的股线,然后通过织造工艺进行组合和交织,从而形成具有多种性能的复合丝面料。
蚕丝蛋白纤维其多孔性,易于水分子扩散,所以它能在空气中吸收水分或散发水分,并保持一定的水分。在正常气温下,它可以帮助皮肤保有一定的水分,不使皮肤过于干燥;在夏季穿着,又可将人体排出的汗水及热量迅速散发,使人感到凉爽无比。正是由于这种性能,使真丝织品更适合于与人体皮肤直接接触,但因天然蚕丝制得的丝绸面料因自身特性,在接触皮肤受到汗渍、水分等影响,容易发生缩水、变形或异味等问题,因此有必要开发一种吸水复合丝绸面料。
发明内容
为了克服现有技术的上述缺陷,本发明的实施例提供一种吸水复合丝绸面料及其加工方法,本发明所要解决的技术问题是:如何改良现有丝绸面料使用时容易发生缩水、变形或异味等问题。
为实现上述目的,本发明提供如下技术方案:一种吸水复合丝绸面料,其中包括以下份数的原料:35-40份天然蚕丝纤维、5-10份聚丙烯纤维、10-15份功能纤维、6-8份蛋白酶PG、4-6份转谷氨酰胺酶;其中功能纤维设置为麦饭石纤维或负离子纤维。
在一个优选的实施方式中,其中包括以下份数的原料:35份天然蚕丝纤维、5份聚丙烯纤维、15份功能纤维、6份蛋白酶PG、4份转谷氨酰胺酶;其中功能纤维设置为麦饭石纤维。
在一个优选的实施方式中,其中包括以下份数的原料:40份天然蚕丝纤维、10份聚丙烯纤维、10份功能纤维、8份蛋白酶PG、6份转谷氨酰胺酶;其中功能纤维设置为麦饭石纤维。
在一个优选的实施方式中,其中包括以下份数的原料:35份天然蚕丝纤维、5份聚丙烯纤维、15份功能纤维、6份蛋白酶PG、4份转谷氨酰胺酶;其中功能纤维设置为负离子纤维。
在一个优选的实施方式中,其中包括以下份数的原料:40份天然蚕丝纤维、10份聚丙烯纤维、10份功能纤维、8份蛋白酶PG、6份转谷氨酰胺酶;其中功能纤维设置为负离子纤维。
本发明还包括一种吸水复合丝绸面料的加工方法,具体加工步骤如下:
S1、蚕丝改性处理;
S1.1、改性处理液调配:使用蛋白酶PG以1:8-10的水配比配置稀释溶液,并使用碳酸氢钠溶液/磷酸盐缓冲液调节配置的溶液pH值;
S1.2、浸泡:将天然蚕丝纤维浸泡于步骤S1.1中调节pH值后的稀释液中,在45℃-55℃水温下浸泡处理30-40min;
S1.3、清洗:将步骤S1.2中浸泡后的改性蚕丝放入流动活水中浸泡冲洗10-15min,并将清洗后的改性蚕丝放入室温环境下凉干;
S2、纺织:按照原料份数比例将改性蚕丝、聚丙烯纤维和功能纤维维以平纹形式进行混纺,制得吸水复合丝绸面料坯料;
S3、成品;
S3.1、面料处理:调配5%浓度的转谷氨酰胺酶溶液,并将其均匀雾化喷洒至步骤S2中得到的面料坯料,并将其放置于40℃-45℃温度下静置90min;
S3.2:对步骤S3.1中处理后的面料放入流动活水中浸泡冲洗20-25min后放入室温环境下凉干得到吸水复合丝绸面料成品。
在一个优选的实施方式中,所述步骤S1.1中调节后的处理液pH值设置为7.5-8.5。
本发明的技术效果和优点:
本发明在复合丝绸面料原料中添加聚丙烯纤维及功能纤维,其中聚丙烯纤维的添加能够利用自身高强度及高弹性,从而进行材料复合,以保证制得丝绸面料的韧性,使其吸水后保持外形,有效规避其吸水后产生外形缩水的情况发生,功能纤维中麦饭石纤维或负离子纤维利用自身的抗菌、防臭功效,使得制得的丝绸面料在接触皮肤使用时,因接触少量汗渍避免异味的产生,而对于蚕丝纤维的改性设置,改善真丝绸织物的服用性能,使织物手感柔软、光滑、绸面丰满,提高悬垂性,增强抗皱性,从而保证制得吸水复合丝绸面料的综合性能的保持。
实施方式
下面将结合本发明中的实施例,对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。
实施例
本发明提供了一种吸水复合丝绸面料,其中包括以下份数的原料:35-40份天然蚕丝纤维、5-10份聚丙烯纤维、10-15份功能纤维、6-8份蛋白酶PG、4-6份转谷氨酰胺酶;其中功能纤维设置为麦饭石纤维或负离子纤维;
而具体到本实施例中,其中包括以下份数的原料:35份天然蚕丝纤维、5份聚丙烯纤维、15份功能纤维、6份蛋白酶PG、4份转谷氨酰胺酶;其中功能纤维设置为麦饭石纤维。
本发明还包括一种吸水复合丝绸面料的加工方法,具体加工步骤如下:
S1、蚕丝改性处理;
S1.1、改性处理液调配:使用蛋白酶PG以1:10的水配比配置稀释溶液,并使用碳酸氢钠溶液/磷酸盐缓冲液调节配置的溶液pH值至8,碳酸氢钠溶液和磷酸盐缓冲液均为用于维持生化反应pH的缓冲液,由于其温和的性质,不会导致蛋白质变性;
S1.2、浸泡:将天然蚕丝纤维浸泡于步骤S1.1中调节pH值后的稀释液中,在45℃水温下浸泡处理35min,蛋白酶PG改善真丝绸织物的服用性能,使织物手感柔软、光滑、绸面丰满,提高悬垂性,增强抗皱性;
S1.3、清洗:将步骤S1.2中浸泡后的改性蚕丝放入流动活水中浸泡冲洗15min,并将清洗后的改性蚕丝放入室温环境下凉干;
S2、纺织:按照原料份数比例将改性蚕丝、聚丙烯纤维和功能纤维维以平纹形式进行混纺,制得吸水复合丝绸面料坯料;
S3、成品;
S3.1、面料处理:调配5%浓度的转谷氨酰胺酶溶液,并将其均匀雾化喷洒至步骤S2中得到的面料坯料,并将其放置于40℃-温度下静置90min,用于丝绸抗皱整理,获得一定的抗皱效果;使蚕丝具有一定的抗皱性及抗菌性,聚集态结构及热稳定性均未发生明显变化,整理后真丝抗皱性能增强,且具有一定的抗菌效果;
S3.2:对步骤S3.1中处理后的面料放入流动活水中浸泡冲洗25min后放入室温环境下凉干得到吸水复合丝绸面料成品。
实施例
本发明提供了一种吸水复合丝绸面料,其中包括以下份数的原料:35-40份天然蚕丝纤维、5-10份聚丙烯纤维、10-15份功能纤维、6-8份蛋白酶PG、4-6份转谷氨酰胺酶;其中功能纤维设置为麦饭石纤维或负离子纤维;
而具体到本实施例中,其中包括以下份数的原料:40份天然蚕丝纤维、10份聚丙烯纤维、10份功能纤维、8份蛋白酶PG、6份转谷氨酰胺酶;其中功能纤维设置为麦饭石纤维。
本发明还包括一种吸水复合丝绸面料的加工方法,具体加工步骤如下:
S1、蚕丝改性处理;
S1.1、改性处理液调配:使用蛋白酶PG以110的水配比配置稀释溶液,并使用碳酸氢钠溶液/磷酸盐缓冲液调节配置的溶液pH值至8,碳酸氢钠溶液和磷酸盐缓冲液均为用于维持生化反应pH的缓冲液,由于其温和的性质,不会导致蛋白质变性;
S1.2、浸泡:将天然蚕丝纤维浸泡于步骤S1.1中调节pH值后的稀释液中,在50℃水温下浸泡处理35min,蛋白酶PG改善真丝绸织物的服用性能,使织物手感柔软、光滑、绸面丰满,提高悬垂性,增强抗皱性;
S1.3、清洗:将步骤S1.2中浸泡后的改性蚕丝放入流动活水中浸泡冲洗15min,并将清洗后的改性蚕丝放入室温环境下凉干;
S2、纺织:按照原料份数比例将改性蚕丝、聚丙烯纤维和功能纤维维以平纹形式进行混纺,制得吸水复合丝绸面料坯料;
S3、成品;
S3.1、面料处理:调配5%浓度的转谷氨酰胺酶溶液,并将其均匀雾化喷洒至步骤S2中得到的面料坯料,并将其放置于45℃温度下静置90min,用于丝绸抗皱整理,获得一定的抗皱效果;使蚕丝具有一定的抗皱性及抗菌性,聚集态结构及热稳定性均未发生明显变化,整理后真丝抗皱性能增强,且具有一定的抗菌效果;
S3.2:对步骤S3.1中处理后的面料放入流动活水中浸泡冲洗25min后放入室温环境下凉干得到吸水复合丝绸面料成品。
实施例
本发明提供了一种吸水复合丝绸面料,其中包括以下份数的原料:35-40份天然蚕丝纤维、5-10份聚丙烯纤维、10-15份功能纤维、6-8份蛋白酶PG、4-6份转谷氨酰胺酶;其中功能纤维设置为麦饭石纤维或负离子纤维;
而具体到本实施例中,其中包括以下份数的原料:35份天然蚕丝纤维、5份聚丙烯纤维、15份功能纤维、6份蛋白酶PG、4份转谷氨酰胺酶;其中功能纤维设置为负离子纤维。
本发明还包括一种吸水复合丝绸面料的加工方法,具体加工步骤如下:
S1、蚕丝改性处理;
S1.1、改性处理液调配:使用蛋白酶PG以1:10的水配比配置稀释溶液,并使用碳酸氢钠溶液/磷酸盐缓冲液调节配置的溶液pH值至8,碳酸氢钠溶液和磷酸盐缓冲液均为用于维持生化反应pH的缓冲液,由于其温和的性质,不会导致蛋白质变性;
S1.2、浸泡:将天然蚕丝纤维浸泡于步骤S1.1中调节pH值后的稀释液中,在45℃水温下浸泡处理40min,蛋白酶PG改善真丝绸织物的服用性能,使织物手感柔软、光滑、绸面丰满,提高悬垂性,增强抗皱性;
S1.3、清洗:将步骤S1.2中浸泡后的改性蚕丝放入流动活水中浸泡冲洗15min,并将清洗后的改性蚕丝放入室温环境下凉干;
S2、纺织:按照原料份数比例将改性蚕丝、聚丙烯纤维和功能纤维维以平纹形式进行混纺,制得吸水复合丝绸面料坯料;
S3、成品;
S3.1、面料处理:调配5%浓度的转谷氨酰胺酶溶液,并将其均匀雾化喷洒至步骤S2中得到的面料坯料,并将其放置于45℃温度下静置90min,用于丝绸抗皱整理,获得一定的抗皱效果;使蚕丝具有一定的抗皱性及抗菌性,聚集态结构及热稳定性均未发生明显变化,整理后真丝抗皱性能增强,且具有一定的抗菌效果;
S3.2:对步骤S3.1中处理后的面料放入流动活水中浸泡冲洗25min后放入室温环境下凉干得到吸水复合丝绸面料成品。
实施例
本发明提供了一种吸水复合丝绸面料,其中包括以下份数的原料:35-40份天然蚕丝纤维、5-10份聚丙烯纤维、10-15份功能纤维、6-8份蛋白酶PG、4-6份转谷氨酰胺酶;其中功能纤维设置为麦饭石纤维或负离子纤维;
而具体到本实施例中,其中包括以下份数的原料:40份天然蚕丝纤维、10份聚丙烯纤维、10份功能纤维、8份蛋白酶PG、6份转谷氨酰胺酶;其中功能纤维设置为负离子纤维。
本发明还包括一种吸水复合丝绸面料的加工方法,具体加工步骤如下:
S1、蚕丝改性处理;
S1.1、改性处理液调配:使用蛋白酶PG以1:10的水配比配置稀释溶液,并使用碳酸氢钠溶液/磷酸盐缓冲液调节配置的溶液pH值至8,碳酸氢钠溶液和磷酸盐缓冲液均为用于维持生化反应pH的缓冲液,由于其温和的性质,不会导致蛋白质变性;
S1.2、浸泡:将天然蚕丝纤维浸泡于步骤S1.1中调节pH值后的稀释液中,在50℃水温下浸泡处理35min,蛋白酶PG改善真丝绸织物的服用性能,使织物手感柔软、光滑、绸面丰满,提高悬垂性,增强抗皱性;
S1.3、清洗:将步骤S1.2中浸泡后的改性蚕丝放入流动活水中浸泡冲洗10min,并将清洗后的改性蚕丝放入室温环境下凉干;
S2、纺织:按照原料份数比例将改性蚕丝、聚丙烯纤维和功能纤维维以平纹形式进行混纺,制得吸水复合丝绸面料坯料;
S3、成品;
S3.1、面料处理:调配5%浓度的转谷氨酰胺酶溶液,并将其均匀雾化喷洒至步骤S2中得到的面料坯料,并将其放置于40℃温度下静置90min,用于丝绸抗皱整理,获得一定的抗皱效果;使蚕丝具有一定的抗皱性及抗菌性,聚集态结构及热稳定性均未发生明显变化,整理后真丝抗皱性能增强,且具有一定的抗菌效果;
S3.2:对步骤S3.1中处理后的面料放入流动活水中浸泡冲洗20min后放入室温环境下凉干得到吸水复合丝绸面料成品。
分别取上述实施例1-4所制得的复合丝绸面料,分四组测试其性能,得到以下数据:
吸水率(%) | 吸水表现 | 制衣后穿着表现 | |
实施例1 | 87 | 未发生明显收缩情况 | 未发生明显异味 |
实施例2 | 84 | 未发生明显收缩情况 | 未发生明显异味 |
实施例3 | 86 | 未发生明显收缩情况 | 未发生明显异味 |
实施例4 | 81 | 未发生明显收缩情况 | 未发生明显异味 |
由上表可知,实施例1-4中方法制得的复合丝绸面料有效提高吸水复合丝绸面料的吸水率,且在使用该面料制备的服饰在穿着时未发生明显的收缩变形或穿着后的异味外漏情况。
最后:以上所述仅为本发明的优选实施例而已,并不用于限制本发明,凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。
Claims (7)
1.一种吸水复合丝绸面料,其特征在于:其中包括以下份数的原料:35-40份天然蚕丝纤维、5-10份聚丙烯纤维、10-15份功能纤维、6-8份蛋白酶PG、4-6份转谷氨酰胺酶;其中功能纤维设置为麦饭石纤维或负离子纤维。
2.根据权利要求1所述的一种吸水复合丝绸面料,其特征在于:其中包括以下份数的原料:35份天然蚕丝纤维、5份聚丙烯纤维、15份功能纤维、6份蛋白酶PG、4份转谷氨酰胺酶;其中功能纤维设置为麦饭石纤维。
3.根据权利要求1所述的一种吸水复合丝绸面料,其特征在于:其中包括以下份数的原料:40份天然蚕丝纤维、10份聚丙烯纤维、10份功能纤维、8份蛋白酶PG、6份转谷氨酰胺酶;其中功能纤维设置为麦饭石纤维。
4.根据权利要求1所述的一种吸水复合丝绸面料,其特征在于:其中包括以下份数的原料:35份天然蚕丝纤维、5份聚丙烯纤维、15份功能纤维、6份蛋白酶PG、4份转谷氨酰胺酶;其中功能纤维设置为负离子纤维。
5.根据权利要求1所述的一种吸水复合丝绸面料,其特征在于:其中包括以下份数的原料:40份天然蚕丝纤维、10份聚丙烯纤维、10份功能纤维、8份蛋白酶PG、6份转谷氨酰胺酶;其中功能纤维设置为负离子纤维。
6.一种用于权利要求1-5任意一项所述的吸水复合丝绸面料的加工方法,其特征在于:具体加工步骤如下:
S1、蚕丝改性处理;
S1.1、改性处理液调配:使用蛋白酶PG以1:8-10的水配比配置稀释溶液,并使用碳酸氢钠溶液/磷酸盐缓冲液调节配置的溶液pH值;
S1.2、浸泡:将天然蚕丝纤维浸泡于步骤S1.1中调节pH值后的稀释液中,在45℃-55℃水温下浸泡处理30-40min;
S1.3、清洗:将步骤S1.2中浸泡后的改性蚕丝放入流动活水中浸泡冲洗10-15min,并将清洗后的改性蚕丝放入室温环境下凉干;
S2、纺织:按照原料份数比例将改性蚕丝、聚丙烯纤维和功能纤维维以平纹形式进行混纺,制得吸水复合丝绸面料坯料;
S3、成品;
S3.1、面料处理:调配5%浓度的转谷氨酰胺酶溶液,并将其均匀雾化喷洒至步骤S2中得到的面料坯料,并将其放置于40℃-45℃温度下静置90min;
S3.2:对步骤S3.1中处理后的面料放入流动活水中浸泡冲洗20-25min后放入室温环境下凉干得到吸水复合丝绸面料成品。
7.根据权利要求6所述的一种吸水复合丝绸面料的加工方法,其特征在于:所述步骤S1.1中调节后的处理液pH值设置为7.5-8.5。
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