CN109680500A - 一种高强度真丝丝线 - Google Patents

一种高强度真丝丝线 Download PDF

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CN109680500A
CN109680500A CN201811617595.XA CN201811617595A CN109680500A CN 109680500 A CN109680500 A CN 109680500A CN 201811617595 A CN201811617595 A CN 201811617595A CN 109680500 A CN109680500 A CN 109680500A
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silk
parts
silk thread
fiber
extracting solution
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毛凤荣
陈凯露
徐桂芳
蔡玉侠
周明亮
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Jiaxing Rongxiang Spray-Weaving Co Ltd
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Abstract

本发明公开了一种高强度真丝丝线,属于纺织品领域,包括以下重量组份:桑蚕丝纤维5‑10份、木薯蚕丝纤维5‑10份、聚乳酸纳米纺静电纤维1‑3份、棉纤维5‑10份、亚麻纤维5‑10份、改性高密度聚乙烯蜡乳液1‑5份、天然抗菌混合液1‑3份、聚乙烯纳米银纤维0.1‑0.3份,所述天然抗菌混合液由碱性无半胱氨酸抗菌肽提取液、延胡索酸提取液、琥珀酸提取液、去离子水、丁香油提取液与增稠剂组成。本发明制备方法更加的科学合理,能够很好地提高真丝丝线的润滑度与强度,可以很好地预防静电,并能够有效的提高真丝丝线的抗菌能力,使真丝丝线的存储时间更加长久,也能提高使用者的安全保障,尽可能地避免细菌或真菌的侵害,具有很好的市场竞争力,值得被推广使用。

Description

一种高强度真丝丝线
技术领域
本发明涉及纺织品领域,具体涉及一种高强度真丝丝线。
背景技术
真丝丝线是一种以蚕丝纤维为主要原料的丝线,真丝丝线一般会被制作成相应的真丝面料,从而广泛地应用于高端纺织物中,真丝被称为“纤维皇后”,以其独特的魅力受到古往今来的人的青睐。真丝属于蛋白质纤维,丝素中含有18种对人体有益的氨基酸,现有的真丝丝线种类有很多。
但是它们的润滑度与强度有限,这样就不能够更好地预防静电,而且也会降低其使用寿命,并且不能够更有效的提高真丝丝线的抗菌能力,这样真丝丝线在长时间的存储过程中就可能被损坏,会给生产者提高成本。
发明内容
本发明的目的在于提供一种高强度真丝丝线以解决上述背景技术中提出的问题。
为实现上述目的,本发明提供如下技术方案:一种高强度真丝丝线,包括以下重量组份:
桑蚕丝纤维5-10份、木薯蚕丝纤维5-10份、聚乳酸纳米纺静电纤维1-3份、棉纤维5-10份、亚麻纤维5-10份、改性高密度聚乙烯蜡乳液1-5份、天然抗菌混合液1-3份、聚乙烯纳米银纤维0.1-0.3份。
优选的,所述天然抗菌混合液由碱性无半胱氨酸抗菌肽提取液、延胡索酸提取液、琥珀酸提取液、去离子水、丁香油提取液与增稠剂组成。
优选的,所述桑蚕丝纤维与木薯蚕丝纤维均是由蚕改粘液凝固而成,所述桑蚕丝纤维与木薯蚕丝均含有色氨酸与酪氨酸,用于吸收紫外线。
优选的,所述改性高密度聚乙烯蜡乳液由聚乙烯蜡乳液、柔软剂、聚氨酯、壳聚糖、催化剂与去离子水混合而成。
优选的,所述聚乙烯蜡乳液的重量组分为2-4份,所述柔软剂的重量组分为1-2份、所述聚氨酯的重量组分为0.1-0.4份,所述壳聚糖的重量组分为0.2-0.6份,所述催化剂与去离子水的重量组分均为1-2.5份。
优选的,所述聚乙烯纳米银纤维由纳米银粉体与聚乙烯纤维组成,所述纳米银粉体均匀分布在聚乙烯纤维的内部。
优选的,所述改性高密度聚乙烯蜡乳液通过喷涂设备喷涂在真丝丝线的表面,用于提高真丝丝线表面的润滑度,并用于提高真丝丝线强度。
一种高强度真丝丝线的制备方法,包括以下步骤:
S1:取用配比,将所有所需要的原料进行称量,按照预定的比例取用,并进行存储;
S2:制作改性高密度聚乙烯蜡乳液,将称量好的聚乙烯蜡乳液、柔软剂、聚氨酯、壳聚糖、催化剂与去离子水放入小型密闭搅拌容器中进行搅拌,搅拌时间为20-25min,在搅拌的过程中加入少量消泡剂,搅拌完成后将其加热到35-50摄氏度备用;
S3:制作天然抗菌混合液,将称量好的碱性无半胱氨酸抗菌肽提取液、延胡索酸提取液、琥珀酸提取液、去离子水与丁香油提取液放入真空搅拌机混合搅拌,搅拌时间为15-25min,再加入增稠剂,继续搅拌30-45min,搅拌结束后将其加热至45-60摄氏度备用;
S4:制作丝线基体,将5份桑蚕丝纤维、5份木薯蚕丝纤维、1份聚乳酸纳米纺静电纤维、3份棉纤维、3份亚麻纤维与0.1份聚乙烯纳米银纤维进行捻丝,其中聚乳酸纳米纺静电纤维与聚乙烯纳米银纤维放在丝线的中间,得到丝线基体;
S5:进行抗菌浸泡,将S3中已制备完成的天然抗菌混合液放入浸泡池中,然后将S4中制备完成的丝线基体放入浸泡池中,使浸泡池的温度保持在20-25摄氏度,浸泡2-2.5h,带液率保持在70-95%,将其放入烘干机中预烘干,烘干温度为120-130摄氏度,烘干时间为5-10min;
S6:喷涂改性高密度聚乙烯蜡乳液,将改性高密度聚乙烯蜡乳液均匀喷涂在已预烘干的丝线基体外表面,再放入烘干机中进行烘干,烘干温度为95-110摄氏度,烘干时间为25-30min,得到高强度真丝丝线。
与现有技术相比,本发明的有益效果是:该高强度真丝丝线,由于加入了聚乙烯纳米银纤维,并且在天然抗菌混合液中浸泡,能够有效的提高真丝丝线的抗菌能力,使真丝丝线的存储时间更加长久,也能提高使用者的安全保障,尽可能地避免细菌或真菌的侵害,还在丝线表面喷涂了改性高密度聚乙烯蜡乳液,能够很好地提高真丝丝线的润滑度与强度,可以很好地预防静电,具有很好的市场竞争力,值得被推广使用。
具体实施方式
下面将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。
实施例一
本发明提供一种技术方案:一种高强度真丝丝线,包括以下重量组份:
桑蚕丝纤维5-10份、木薯蚕丝纤维5-10份、聚乳酸纳米纺静电纤维1-3份、棉纤维5-10份、亚麻纤维5-10份、改性高密度聚乙烯蜡乳液1-5份、天然抗菌混合液1-3份、聚乙烯纳米银纤维0.1-0.3份。
天然抗菌混合液由碱性无半胱氨酸抗菌肽提取液、延胡索酸提取液、琥珀酸提取液、去离子水、丁香油提取液与增稠剂组成,天然抗菌混合液能够有效的提高真丝丝线的抗菌能力,使真丝丝线的存储时间更加长久,也能提高使用者的安全保障,尽可能地避免细菌或真菌的侵害;桑蚕丝纤维与木薯蚕丝纤维均是由蚕改粘液凝固而成,桑蚕丝纤维与木薯蚕丝均含有色氨酸与酪氨酸,用于吸收紫外线;改性高密度聚乙烯蜡乳液由聚乙烯蜡乳液、柔软剂、聚氨酯、壳聚糖、催化剂与去离子水混合而成;聚乙烯蜡乳液的重量组分为2-4份,柔软剂的重量组分为1-2份、聚氨酯的重量组分为0.1-0.4份,壳聚糖的重量组分为0.2-0.6份,催化剂与去离子水的重量组分均为1-2.5份;聚乙烯纳米银纤维由纳米银粉体与聚乙烯纤维组成,纳米银粉体均匀分布在聚乙烯纤维的内部;改性高密度聚乙烯蜡乳液通过喷涂设备喷涂在真丝丝线的表面,用于提高真丝丝线表面的润滑度,并用于提高真丝丝线强度。
一种高强度真丝丝线的制备方法,包括以下步骤:
S1:取用配比,将所有所需要的原料进行称量,按照预定的比例取用,并进行存储;
S2:制作改性高密度聚乙烯蜡乳液,将称量好的聚乙烯蜡乳液、柔软剂、聚氨酯、壳聚糖、催化剂与去离子水放入小型密闭搅拌容器中进行搅拌,搅拌时间为20-25min,在搅拌的过程中加入少量消泡剂,搅拌完成后将其加热到35-50摄氏度备用;
S3:制作天然抗菌混合液,将称量好的碱性无半胱氨酸抗菌肽提取液、延胡索酸提取液、琥珀酸提取液、去离子水与丁香油提取液放入真空搅拌机混合搅拌,搅拌时间为15-25min,再加入增稠剂,继续搅拌30-45min,搅拌结束后将其加热至45-60摄氏度备用;
S4:制作丝线基体,将5份桑蚕丝纤维、5份木薯蚕丝纤维、1份聚乳酸纳米纺静电纤维、3份棉纤维、3份亚麻纤维与0.1份聚乙烯纳米银纤维进行捻丝,其中聚乳酸纳米纺静电纤维与聚乙烯纳米银纤维放在丝线的中间,得到丝线基体;
S5:进行抗菌浸泡,将S3中已制备完成的天然抗菌混合液放入浸泡池中,然后将S4中制备完成的丝线基体放入浸泡池中,使浸泡池的温度保持在20-25摄氏度,浸泡2h,带液率保持在75%,将其放入烘干机中预烘干,烘干温度为120-130摄氏度,烘干时间为5-10min;
S6:喷涂改性高密度聚乙烯蜡乳液,将改性高密度聚乙烯蜡乳液均匀喷涂在已预烘干的丝线基体外表面,再放入烘干机中进行烘干,烘干温度为95-110摄氏度,烘干时间为25-30min,得到高强度真丝丝线。
实施例二
本发明提供一种技术方案:一种高强度真丝丝线,包括以下重量组份:
桑蚕丝纤维5-10份、木薯蚕丝纤维5-10份、聚乳酸纳米纺静电纤维1-3份、棉纤维5-10份、亚麻纤维5-10份、改性高密度聚乙烯蜡乳液1-5份、天然抗菌混合液1-3份、聚乙烯纳米银纤维0.1-0.3份。
天然抗菌混合液由碱性无半胱氨酸抗菌肽提取液、延胡索酸提取液、琥珀酸提取液、去离子水、丁香油提取液与增稠剂组成,天然抗菌混合液能够有效的提高真丝丝线的抗菌能力,使真丝丝线的存储时间更加长久,也能提高使用者的安全保障,尽可能地避免细菌或真菌的侵害;桑蚕丝纤维与木薯蚕丝纤维均是由蚕改粘液凝固而成,桑蚕丝纤维与木薯蚕丝均含有色氨酸与酪氨酸,用于吸收紫外线;改性高密度聚乙烯蜡乳液由聚乙烯蜡乳液、柔软剂、聚氨酯、壳聚糖、催化剂与去离子水混合而成;聚乙烯蜡乳液的重量组分为2-4份,柔软剂的重量组分为1-2份、聚氨酯的重量组分为0.1-0.4份,壳聚糖的重量组分为0.2-0.6份,催化剂与去离子水的重量组分均为1-2.5份;聚乙烯纳米银纤维由纳米银粉体与聚乙烯纤维组成,纳米银粉体均匀分布在聚乙烯纤维的内部;改性高密度聚乙烯蜡乳液通过喷涂设备喷涂在真丝丝线的表面,用于提高真丝丝线表面的润滑度,并用于提高真丝丝线强度。
一种高强度真丝丝线的制备方法,包括以下步骤:
S1:取用配比,将所有所需要的原料进行称量,按照预定的比例取用,并进行存储;
S2:制作改性高密度聚乙烯蜡乳液,将称量好的聚乙烯蜡乳液、柔软剂、聚氨酯、壳聚糖、催化剂与去离子水放入小型密闭搅拌容器中进行搅拌,搅拌时间为20-25min,在搅拌的过程中加入少量消泡剂,搅拌完成后将其加热到35-50摄氏度备用;
S3:制作天然抗菌混合液,将称量好的碱性无半胱氨酸抗菌肽提取液、延胡索酸提取液、琥珀酸提取液、去离子水与丁香油提取液放入真空搅拌机混合搅拌,搅拌时间为15-25min,再加入增稠剂,继续搅拌30-45min,搅拌结束后将其加热至45-60摄氏度备用;
S4:制作丝线基体,将5份桑蚕丝纤维、5份木薯蚕丝纤维、1份聚乳酸纳米纺静电纤维、3份棉纤维、3份亚麻纤维与0.1份聚乙烯纳米银纤维进行捻丝,其中聚乳酸纳米纺静电纤维与聚乙烯纳米银纤维放在丝线的中间,得到丝线基体;
S5:进行抗菌浸泡,将S3中已制备完成的天然抗菌混合液放入浸泡池中,然后将S4中制备完成的丝线基体放入浸泡池中,使浸泡池的温度保持在20-25摄氏度,浸泡2.5h,带液率保持在95%,将其放入烘干机中预烘干,烘干温度为120-130摄氏度,烘干时间为5-10min;
S6:喷涂改性高密度聚乙烯蜡乳液,将改性高密度聚乙烯蜡乳液均匀喷涂在已预烘干的丝线基体外表面,再放入烘干机中进行烘干,烘干温度为95-110摄氏度,烘干时间为25-30min,得到高强度真丝丝线。
将上述两组实施例中制作出的真丝丝线,同时对它们进行强度、抗静电能力、存储时间以及抗菌能力的测试,结果由实施例二制作出的真丝丝线样品在上述四个测试点上的结果均优于由实施例一制作而得的真丝丝线。
综上所述,本发明配方更加的科学合理,该高强度真丝丝线,由于加入了聚乙烯纳米银纤维,并且在天然抗菌混合液中浸泡,能够有效的提高真丝丝线的抗菌能力,使真丝丝线的存储时间更加长久,也能提高使用者的安全保障,尽可能地避免细菌或真菌的侵害,还在丝线表面喷涂了改性高密度聚乙烯蜡乳液,能够很好地提高真丝丝线的润滑度与强度,可以很好地预防静电,具有很好的市场竞争力,值得被推广使用。
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 (8)

1.一种高强度真丝丝线,其特征在于,所述高强度真丝丝线包括以下重量组份:
桑蚕丝纤维5-10份、木薯蚕丝纤维5-10份、聚乳酸纳米纺静电纤维1-3份、棉纤维5-10份、亚麻纤维5-10份、改性高密度聚乙烯蜡乳液1-5份、天然抗菌混合液1-3份、聚乙烯纳米银纤维0.1-0.3份。
2.根据权利要求1所述的一种高强度真丝丝线,其特征在于:所述天然抗菌混合液由碱性无半胱氨酸抗菌肽提取液、延胡索酸提取液、琥珀酸提取液、去离子水、丁香油提取液与增稠剂组成。
3.根据权利要求1所述的一种高强度真丝丝线,其特征在于:所述桑蚕丝纤维与木薯蚕丝纤维均是由蚕改粘液凝固而成,所述桑蚕丝纤维与木薯蚕丝均含有色氨酸与酪氨酸,用于吸收紫外线。
4.根据权利要求1所述的一种高强度真丝丝线,其特征在于:所述改性高密度聚乙烯蜡乳液由聚乙烯蜡乳液、柔软剂、聚氨酯、壳聚糖、催化剂与去离子水混合而成。
5.根据权利要求4所述的一种高强度真丝丝线,其特征在于:所述聚乙烯蜡乳液的重量组分为2-4份,所述柔软剂的重量组分为1-2份、所述聚氨酯的重量组分为0.1-0.4份,所述壳聚糖的重量组分为0.2-0.6份,所述催化剂与去离子水的重量组分均为1-2.5份。
6.根据权利要求1所述的一种高强度真丝丝线,其特征在于:所述聚乙烯纳米银纤维由纳米银粉体与聚乙烯纤维组成,所述纳米银粉体均匀分布在聚乙烯纤维的内部。
7.根据权利要求1所述的一种高强度真丝丝线,其特征在于:所述改性高密度聚乙烯蜡乳液通过喷涂设备喷涂在真丝丝线的表面,用于提高真丝丝线表面的润滑度,并用于提高真丝丝线强度。
8.一种如权利要求1所述的高强度真丝丝线的制备方法,其特征在于,包括以下步骤:
S1:取用配比,将所有所需要的原料进行称量,按照预定的比例取用,并进行存储;
S2:制作改性高密度聚乙烯蜡乳液,将称量好的聚乙烯蜡乳液、柔软剂、聚氨酯、壳聚糖、催化剂与去离子水放入小型密闭搅拌容器中进行搅拌,搅拌时间为20-25min,在搅拌的过程中加入少量消泡剂,搅拌完成后将其加热到35-50摄氏度备用;
S3:制作天然抗菌混合液,将称量好的碱性无半胱氨酸抗菌肽提取液、延胡索酸提取液、琥珀酸提取液、去离子水与丁香油提取液放入真空搅拌机混合搅拌,搅拌时间为15-25min,再加入增稠剂,继续搅拌30-45min,搅拌结束后将其加热至45-60摄氏度备用;
S4:制作丝线基体,将5份桑蚕丝纤维、5份木薯蚕丝纤维、1份聚乳酸纳米纺静电纤维、3份棉纤维、3份亚麻纤维与0.1份聚乙烯纳米银纤维进行捻丝,其中聚乳酸纳米纺静电纤维与聚乙烯纳米银纤维放在丝线的中间,得到丝线基体;
S5:进行抗菌浸泡,将S3中已制备完成的天然抗菌混合液放入浸泡池中,然后将S4中制备完成的丝线基体放入浸泡池中,使浸泡池的温度保持在20-25摄氏度,浸泡2-2.5h,带液率保持在70-95%,将其放入烘干机中预烘干,烘干温度为120-130摄氏度,烘干时间为5-10min;
S6:喷涂改性高密度聚乙烯蜡乳液,将改性高密度聚乙烯蜡乳液均匀喷涂在已预烘干的丝线基体外表面,再放入烘干机中进行烘干,烘干温度为95-110摄氏度,烘干时间为25-30min,得到高强度真丝丝线。
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