CN115029922A - 一种经编织物及其加工方法 - Google Patents
一种经编织物及其加工方法 Download PDFInfo
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Abstract
本申请涉及织物加工技术领域,具体公开了一种经编织物及其加工方法。本申请的经编织物,主要由前梳纱和后梳纱按质量比(50‑80):(18‑58)组成,前梳纱为经过抗静电液整理的合成纱,后梳纱为氨纶包芯纱,抗静电液主要由如下原料制成:水、抗静电油剂、平滑剂、乳化剂、氯化钠、氧化石墨烯;加工方法,包括如下步骤:将上述原料混合,即得抗静电液;将合成纱放入抗静电液中浸渍,即得整理后的前梳纱;将后梳纱与整理后的前梳纱针织成织物;将织物放入浸渍液中浸没,即得经编织物。本申请制得的经编织物,抗静电性强。
Description
技术领域
本申请涉及织物加工技术领域,更具体地说,它涉及一种经编织物及其加工方法。
背景技术
在纺织行业中,经编织物属于后起之秀,它是由一组或几组经纱在经编针织机上同时编织成圈、相互串套而成的针织物。在这种针织物中,一组经纱的每根纱线在一个线圈横列中只形成一个或两个线圈,然后在下一横列中再形成线圈。由一根纱线形成的线圈沿着针织物的经向配置。与古老的机织或者是纬编相比较而言,经编以其广泛的产品品种而逐渐站稳了市场,如薄形织物、衬衫织物、弹力织物等。
经编织物用来制备贴身衣物时,一般采用聚酯纱进行编织而成,主要由于聚酯纱具有较高的强度和弹性,同时抗皱免烫能力佳,耐光性以及耐晒性较好,不怕霉菌,作为贴身衣物穿时,更加亲肤。
针对上述中的相关技术,聚酯纱之间的摩擦系数较高,一经摩擦容易积聚静电荷,从而导致聚酯纱在编织的过程中出现断裂的情况,同时,皮肤干燥的人穿这类贴身衣物时,容易导致产生静电,从而对人体产生伤害。
发明内容
为了提高由经编织物制成的贴身衣物的抗静电性,本申请提供一种经编织物及其加工方法。
第一方面,本申请提供一种经编织物,采用如下的技术方案:
一种经编织物,主要由前梳纱和后梳纱按质量比(50-80):(18-58)组成,所述前梳纱为经过抗静电液整理的合成纱,所述后梳纱为氨纶包芯纱,所述抗静电液主要由如下重量份数的原料制成:水50-60份、抗静电油剂1-2份、平滑剂5-10份、乳化剂5-8份、氯化钠2-3份、氧化石墨烯1-2份。
优选的,所述合成纱为聚酯纱、聚酰胺纱中的任意一种。优选的,合成纱为聚酯纱。
优选的,所述抗静电液与前梳纱浴比为(3-6):1。
优选的,所述浸渍时间为40-50min。
优选的,所述抗静电油剂由氧化石墨烯、聚失水山梨醇脂肪酸酯按质量比(1-2):(5-10)组成。
优选的,所述后梳纱的单丝旦数为2-4旦。
通过采用上述技术方案,如果后梳纱的单丝旦数低于2旦,就不能赋予经编织物合适的斥力,如果单丝旦数过高,就由于经编织物的斥力增大过多,很难进行经编和针织加工,同时,编织后的经编织物的手感变差。
优选的,所述合成纱的单丝旦数为0.2-0.8旦。
通过采用上述技术方案,如果合成纱的旦数低于0.2旦,则制得的织物柔软度较佳,但是前梳纱、后梳纱针织时,容易出现缠绕的情况,降低针织的效率,如果旦数大于0.8旦,则针织后的织物手感较差,由此织物得到的衣物穿着不舒适。
优选的,所述乳化剂由聚氧乙烯山梨醇酐单硬脂酸酯、脂肪醇聚氧丙烯聚氧乙烯醚按质量比(2-4):(1-2)组成。
通过采用上述技术方案,乳化剂用于改善乳浊液中各种构成相之间的表面张力,分子中同时含有亲水基和亲油剂,聚集在油/水的界面上,降低表面张力和减少形成乳浊液所需要的能力,便于与抗静电油剂、水混合形成乳浊液,从而改善前梳纱在针织过程中因静电出现的易断头的情况,提高前梳纱的可纺性,进而提高经编织物的抗静电性能和强度。
优选的,所述平滑剂为蓖麻油。
通过采用上述技术方案,蓖麻油的主要成分是蓖麻酸甘油酯,蓖麻酸上连接有羟基,致使蓖麻油的极性比其他植物油强,在摩擦表面更易吸附成膜,同时,蓖麻油中的亚油酸和亚麻酸等不饱和酸含量较低,从而导致蓖麻油抗氧化性能较佳,蓖麻油的加入便于在经编织物的表面形成抗静电层。
第二方面,本申请提供一种经编织物的加工方法,采用如下的技术方案:
一种经编织物的加工方法,其特征在于,包括如下步骤:(1)抗静电液制备:将上述原料混合,即得抗静电液;(2)前梳纱整理:将合成纱放入抗静电液中浸渍,即得整理后的前梳纱;(3)织物制备:将后梳纱与步骤(2)得到的整理后的前梳纱针织成织物;(4)织物后整理:将步骤(3)得到织物放入浸渍液中浸没,即得经编织物,其中,浸渍液主要由如下重量份数的原料制成:水50-60份、分散剂1-2份、抗静电剂8-10份、粘合剂1-2份、活性炭8-10份,所述抗静电剂为改性淀粉、抗静电剂SE、碳纳米管中的至少两种,所述改性淀粉为由聚乙烯蜡、二乙醇胺、硬脂酸油脂制得的中间物与淀粉、水、丙烯酸熔融混合,冷却切粒即得。
优选的,所述分散剂为十二烷基磺酸钠、聚异丁烯双丁二酰亚胺中的任意一种。
优选的,改性淀粉的制备方法,包括如下步骤:将聚乙烯蜡加热熔融,加入二乙醇胺、硬脂酸油脂,加热熔融后加入氧化锌得到中间产物;将玉米淀粉和水加热到80℃使玉米糊化,糊化时间为1h左右,得到糊化的玉米淀粉;将中间产物、丙烯酸、糊化后的玉米淀粉按30:30:40的质量比混合并加热熔融后一起加入到30份的EVA中,继续加热搅拌均匀后冷却切粒,即得。其中,聚乙烯蜡100份、二乙醇胺50份、硬脂酸油脂50份、氧化锌20份。
优选的,所述经编织物与浸渍液的浴比为(5-7):1。
优选的,所述浸渍时间为50-60min。
通过采用上述技术方案,前梳纱经过抗静电液整理后,在前梳纱的外层形成一层薄薄的抗静电层,提高前梳纱的抗静电性,进而减少前梳纱在针织过程中出现断头的情况,经过整理后的前梳纱与未经整理的后梳纱在针织过程中,便于降低由于摩擦产生的前梳纱、后梳纱缠绕的情况,进而提高经编织物的加工效率,同时,将经编织物放在浸渍液中进行整理,进而浸渍液中的抗静电成分吸附在经编织物的外层,同时,无机抗静电成分填充在经编织物的孔隙中,从而进一步提高经编织物的抗静电性能。
优选的,所述抗静电剂由改性淀粉、抗静电剂SE、碳纳米管按质量比(3-5):(3-5):(2-3)组成。
通过采用上述技术方案,抗静电剂由改性淀粉、抗静电剂SE、碳纳米管三种组分复配得到,对三种组分的配比进行优化,从而进一步发挥抗静电剂的作用,改性淀粉、抗静电剂SE在经编织物表面形成一层吸附层,从而增大经编织物与摩擦体之间的间距,进而减少电荷出现迁移的情况,碳纳米管通过吸收外界热量,从而穿越导电填料间的位垒区,将静电荷导出,多种抗静电组分相互配合,进而提高经编织物的抗静电性能,另外,抗静电液中的无机盐与浸渍液中的抗静电剂共同作用,抗静电剂中的改性淀粉、抗静电剂SE吸水,从而使得无机盐水解,进而使得氯化钠离解离子,从而起到抗静电的作用,同时,无机盐也容易吸附水分。
优选的,所述粘合剂为羧甲基纤维素钠。
通过采用上述技术方案,羧甲基纤维素钠一方面提高经编织物的亲水性,从而吸附外面的水,一方面将抗静电剂固定在活性炭的孔隙中,将抗静电剂粘附在活性炭颗粒的外侧,从而赋予活性炭组分一定的抗静电性能。
优选的,所述浸渍液的制备方法,包括如下步骤:将抗静电剂与溶解后的粘合剂混合,随后加入1/3-1/2的水、活性炭,最后加入分散剂、辅助剂、剩余的水即得。
通过采用上述技术方案,将抗静电剂与溶解后的粘合剂混合,粘合剂在抗静电剂外层形成一个亲水粘性层,随后将活性炭、水与含有粘性层的抗静电剂相互混合,含有粘性层的抗静电剂一部分粘结在活性炭颗粒的外表,一部分填充在活性炭颗粒的孔隙中,进而提高浸渍后的经编织物的抗静电性以及抗静电耐久性。
综上所述,本申请具有以下有益效果:
1、本申请的经编织物采用粗细相配的前梳纱、后梳纱相互配合,对前梳纱经过抗静电液进行整理,便于减少前梳纱在针织过程中出现断头的情况,同时,赋予针织后的经编织物一定的抗静电性,进而便于减少经编织物在制备成贴身衣服穿着时,与干性皮肤的人直接接触,出现起静电的情况,从而提高衣物的穿着体验感。
2、本申请的经编织物在加工过程中,通过对经编织物进行后整理,将经编织物放在浸渍液中浸没,从而使得浸渍液中的抗静电成分吸附在经编织物上或填充在经编织物的孔隙中,从而进一步提高经编织物的抗静电性。
3、本申请的经编织物采用较细的前梳纱进行针织,从而使得经编织物较为柔软。
具体实施方式
以下结合实施例对本申请作进一步详细说明。
本申请的改性淀粉的制备方法,包括如下步骤:将聚乙烯蜡加热熔融,加入二乙醇胺、硬脂酸油脂,加热熔融后加入氧化锌得到中间产物;将玉米淀粉和水加热到80℃使玉米糊化,糊化时间为1h左右,得到糊化的玉米淀粉;将中间产物、丙烯酸、糊化后的玉米淀粉按30:30:40的质量比混合并加热熔融后一起加入到30份的EVA中,继续加热搅拌均匀后冷却切粒,即得。其中,聚乙烯蜡100份、二乙醇胺50份、硬脂酸油脂50份、氧化锌20份,改性淀粉的粒径为10μm。
本申请的抗静电剂SE为市售。
本申请的活性炭的粒径为50-60μm。
本申请的碳纳米管的长度为20-50nm,直径为2-8nm。
本申请的氧化石墨烯的的直径为20-50nm。
抗静电液制备例
制备例1
本制备例的抗静电液,由如下重量的原料制成:水50kg、抗静电油剂1kg、乳化剂5kg、氯化钠2kg、氧化石墨烯1kg、平滑剂5kg,其中,抗静电油剂由氧化石墨烯、聚失水山梨醇脂肪酸酯按质量比1:5组成,乳化剂由聚氧乙烯山梨醇酐单硬脂酸酯、脂肪醇聚氧丙烯聚氧乙烯醚按质量比2:1组成,平滑剂为蓖麻油。氧化石墨烯的平均直径为30nm。
本制备例的抗静电液的制备方法,包括如下步骤:将水、抗静电油剂、乳化剂、平滑剂、氧化石墨烯、氯化钠混合,即得。
制备例2
本制备例的抗静电液,由如下重量的原料制成:水60kg、抗静电油剂2kg、乳化剂8kg、氯化钠3kg、氧化石墨烯2kg、平滑剂10kg,其他与制备例1完全相同。
本制备例的抗静电液的制备方法与制备例1完全相同。
浸渍液的制备例
制备例3
本制备例的浸渍液由如下重量的原料制成:水50kg、分散剂1kg、抗静电剂8kg、粘合剂1kg、活性炭8kg,其中,分散剂为十二烷基磺酸钠,抗静电剂由改性淀粉、抗静电剂SE按质量比1:1组成,粘合剂为羧甲基纤维素钠,活性炭的粒径为50μm,改性淀粉的粒径为10μm。
本制备例的浸渍液的制备方法,包括如下步骤:将抗静电剂与溶解后的粘合剂混合,随后加入1/2的水、活性炭,最后加入分散剂、剩余的水即得。
制备例4
本制备例的浸渍液由如下重量的原料制成:水60kg、分散剂2kg、抗静电剂10kg、粘合剂2kg、活性炭10kg,其他与制备例3完全相同。
本制备例的浸渍液的制备方法与制备例3完全相同。
制备例5
本制备例与制备例3的不同之处在于:抗静电剂由改性淀粉、抗静电剂SE、碳纳米管按质量比3:3:2组成,碳纳米管的长度为30nm,直径为3nm,其他与制备例3完全相同。
本制备例的浸渍液的制备方法与制备例3完全相同。
制备例6
本制备例与制备例3的不同之处在于:抗静电剂由改性淀粉、抗静电剂SE、碳纳米管按质量比5:5:2组成,碳纳米管的长度为30nm,直径为3nm。其他与制备例3完全相同。
本制备例的浸渍液的制备方法与制备例3完全相同。
制备例7
本制备例与制备例5的不同之处在于:抗静电剂为抗静电剂SE,其他与制备例5完全相同。
本制备例的浸渍液的制备方法与制备例5完全相同。
制备例8
本制备例的浸渍液与制备例3完全相同。
本制备例的浸渍液的制备方法,包括如下步骤:将抗静电剂、粘合剂、活性炭、分散剂、水混合,即得。
制备例9
本制备例的浸渍液由如下重量的原料制成:水50kg、分散剂1kg、抗静电剂8kg、活性炭8kg,其他与制备例3完全相同。
本制备例的浸渍液的制备方法,包括如下步骤:先加入1/2的水、活性炭、抗静电剂,随后加入分散剂、剩余的水即得。
实施例
实施例1
本实施例的经编织物,由前梳纱和后梳纱按质量比50:18组成,前梳纱为经过制备例1制得的抗静电液整理的合成纱,后梳纱为氨纶包芯纱。其中,合成纱为聚酯纱,合成纱的单丝旦数为0.5旦,氨纶包芯纱的单丝旦数为3旦。
本实施例的经编织物的制备方法,包括如下步骤:(1)抗静电液制备:抗静电液为制备例1制得的抗静电液;(2)前梳纱整理:将合成纱放入制备例1制得的抗静电液中浸渍,即得整理后的前梳纱;浴比为5:1,浸渍时间为45min;(3)织物制备:将后梳纱与步骤(2)得到的整理后的前梳纱针织成织物;(4)织物后整理:将步骤(3)得到织物放入制备例3制得的浸渍液中浸没,即得经编织物,其中,浴比为7:1,浸渍时间为60min。
实施例2-5
实施例2-5采用不同制备例的抗静电液以及不同制备例的浸渍液进行处理的经编织物,每个实施例代表制备例不同的抗静电液、浸渍液处理的经编织物。
表1实施例1-5的经编织物处理用的抗静电液、浸渍液
实施例2-5与实施例1的不同之处在于:用于对前梳纱进行整理的抗静电液不同,用于对经编织物进行后处理的浸渍液不同,其他与实施例1完全相同。
实施例2-5的经编织物的制备方法与实施例1完全相同。
对比例
对比例1
本对比例的经编织物,由前梳纱和后梳纱按质量比50:18组成,前梳纱为合成纱,后梳纱为氨纶包芯纱,合成纱为聚酯纱,合成纱的单丝旦数为0.5旦,氨纶包芯纱的单丝旦数为3旦。
本对比例的经编织物的制备方法,包括如下步骤:(1)织物制备:将后梳纱与前梳纱针织成织物;(2)织物后整理:将步骤(1)得到织物放入制备例3制得的浸渍液中浸没,即得经编织物,其中,浴比为7:1,浸渍时间为60min。
对比例2
本对比例的经编织物,由前梳纱和后梳纱按质量比50:18组成,前梳纱为经过制备例1制得的抗静电液整理的合成纱,后梳纱为氨纶包芯纱。其中,合成纱为聚酯纱,合成纱的单丝旦数为0.5旦,氨纶包芯纱的单丝旦数为3旦。
本对比例的经编织物的制备方法,包括如下步骤:(1)抗静电液制备:抗静电液为制备例1制得的抗静电液;(2)前梳纱整理:将合成纱放入制备例1制得的抗静电液中浸渍,即得整理后的前梳纱;浴比为5:1,浸渍时间为45min;(3)织物制备:将后梳纱与步骤(2)得到的整理后的前梳纱针织成经编织物。
对比例3
本对比例的经编织物,由前梳纱和后梳纱按质量比50:18组成,前梳纱为合成纱,后梳纱为氨纶包芯纱。其中,合成纱为聚酯纱,合成纱的单丝旦数为0.5旦,氨纶包芯纱的单丝旦数为3旦。
本对比例的经编织物的制备方法,包括如下步骤:将后梳纱与前梳纱针织成经编织物,即得。
对比例4
本对比例的经编织物,由前梳纱和后梳纱按质量比50:18组成,前梳纱为经过制备例1制得的抗静电液整理的合成纱,后梳纱为氨纶包芯纱。其中,合成纱为聚酯纱,合成纱的单丝旦数为0.5旦,氨纶包芯纱的单丝旦数为3旦。
本对比例的经编织物的制备方法,包括如下步骤:(1)抗静电液制备:抗静电液为制备例1制得的抗静电液;(2)前梳纱整理:将合成纱放入制备例1制得的抗静电液中浸渍,即得整理后的前梳纱;浴比为5:1,浸渍时间为45min;(3)织物制备:将后梳纱与步骤(2)得到的整理后的前梳纱针织成织物;(4)织物后整理:将步骤(3)得到织物放入制备例7制得的浸渍液中浸没,即得经编织物,其中,浴比为7:1,浸渍时间为60min。
对比例5
本对比例的经编织物与对比例4完全相同。
本对比例的经编织物的制备方法与对比例4的不同之处在于:(4)织物后整理:将步骤(3)得到织物放入制备例8制得的浸渍液中浸没,即得经编织物。
对比例6
本对比例的经编织物与对比例4完全相同。
本对比例的经编织物的制备方法与对比例4的不同之处在于:(4)织物后整理:将步骤(3)得到织物放入制备例9制得的浸渍液中浸没,即得经编织物。
检测方法
抗静电检测:取实施例1-5及对比例1-6制得的经编织物,依据GB/T12703.4-2010《纺织品静电性能的评定第4部分:电阻率》中的检测方法,对制得的经编织物进行抗静电性能测试,检测结果如表2所示。
静电耐久性检测:取实施例1-5及对比例1-6制得的经编织物,依据GB/T12703.4-2010《纺织品静电性能的评定第5部分:摩擦带电电压》中的检测方法,对制得经编织物进行抗静电耐久性测试,检测结果如表2所示。
表2实施例1-5及对比例1-6的经编织物的抗静电性能测试结果
结合实施例1及对比例1-3,并结合表2可以看出,相对于对比例1-3,本申请实施例1通过在前梳纱未与后梳纱针织前对前梳纱进行抗静电液整理,抗静电液在前梳纱表面形成的一个抗静电保护层,从而减少前梳纱与后梳纱针织过程中因摩擦而产生的缠绕情况,同时,对制得的经编织物进行后整理,将经编织物浸渍在浸渍液中,浸渍液中的抗静电成分一部分吸附在经编织物的表面,一部分填充在经编织物的孔隙中,进而提高经编织物的抗静电性,从而降低经编织物制成贴身衣物进行穿着时静电对人体的影响。
结合实施例1-2,并结合表2可以看出,采用抗静电液对前梳纱进行整理,对抗静电液的组分的配比进行优化,从而挑选最佳的抗静电液的组分,从而提高抗静电液对前梳纱的抗静电整理效果,进而提高前梳纱的抗静电性,从而提高经编织物的抗静电性。
结合实施例2-5,并结合表2可以看出,抗静电剂由改性淀粉、抗静电剂SE、碳纳米管三种组分复配得到,改性淀粉、抗静电剂SE在经编织物表面形成一层吸附层,从而增大经编织物与摩擦体之间的间距,进而减少电荷出现迁移的情况,碳纳米管通过吸收外界热量,从而穿越导电填料间的位垒区,将静电荷导出,三种组分相互配合,对三种组分的配比进行调整,从而使得三种组分的配比达到最佳,进而提高浸渍液对经编织物的抗静电整理效果。
结合实施例2以及对比例4-6,并结合表2可以看出,实施例2的浸渍液通过先将粘合剂与抗静电剂混合,便于在抗静电剂外层粘结粘合剂,随后与活性炭混合,一部分抗静电剂在粘合剂的作用下粘合在活性炭的外层,一部分填充在活性炭的孔隙中,从而便于使得粘附在活性炭上的抗静电剂填充在经编织物的孔隙中,同时,还能粘附在经编织物的表面,从而在经编织物上形成凹凸不平的导电层,便于降低经编织物的摩擦电阻率和摩擦带电电压,进而提高经编织物的抗静电性。
本具体实施例仅仅是对本申请的解释,其并不是对本申请的限制,本领域技术人员在阅读完本说明书后可以根据需要对本实施例做出没有创造性贡献的修改,但只要在本申请的权利要求范围内都受到专利法的保护。
Claims (9)
1.一种经编织物,其特征在于,主要由前梳纱和后梳纱按质量比(50-80):(18-58)组成,所述前梳纱为经过抗静电液整理的合成纱,所述后梳纱为氨纶包芯纱,所述抗静电液主要由如下重量份数的原料制成:水50-60份、抗静电油剂1-2份、平滑剂5-10份、乳化剂5-8份、氯化钠2-3份、氧化石墨烯1-2份。
2.根据权利要求1所述的一种经编织物,其特征在于:所述后梳纱的单丝旦数为2-4旦。
3.根据权利要求1所述的一种经编织物,其特征在于:所述合成纱的单丝旦数为0.2-0.8旦。
4.根据权利要求1所述的一种经编织物,其特征在于:所述乳化剂由聚氧乙烯山梨醇酐单硬脂酸酯、脂肪醇聚氧丙烯聚氧乙烯醚按质量比(2-4):(1-2)组成。
5.根据权利要求1所述的一种经编织物,其特征在于:所述平滑剂为蓖麻油。
6.一种如权利要求1-5任意一项所述的经编织物的加工方法,其特征在于:包括如下步骤,(1)抗静电液制备:将上述原料混合,即得抗静电液;(2)前梳纱整理:将合成纱放入抗静电液中浸渍,即得整理后的前梳纱;(3)织物制备:将后梳纱与步骤(2)得到的整理后的前梳纱针织成织物;(4)织物后整理:将步骤(3)得到织物放入浸渍液中浸没,即得经编织物,其中,浸渍液主要由如下重量份数的原料制成:水50-60份、分散剂1-2份、抗静电剂8-10份、粘合剂1-2份、活性炭8-10份,所述抗静电剂为改性淀粉、抗静电剂SE、碳纳米管中的至少两种,所述改性淀粉为由聚乙烯蜡、二乙醇胺、硬脂酸油脂制得的中间物与淀粉、水、丙烯酸熔融混合,冷却切粒即得。
7.根据权利要求6所述的一种经编织物的加工方法,其特征在于:所述抗静电剂由改性淀粉、抗静电剂SE、碳纳米管按质量比(3-5):(3-5):(2-3)组成。
8.根据权利要求6所述的一种经编织物的加工方法,其特征在于:所述粘合剂为羧甲基纤维素钠。
9.根据权利要求6所述的一种经编织物的加工方法,其特征在于:所述浸渍液的制备方法,包括如下步骤:将抗静电剂与溶解后的粘合剂混合,随后加入1/3-1/2的水、活性炭,最后加入分散剂、剩余的水即得。
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