CN110820358A - 一种维生素护肤保健真丝面料的整理工艺 - Google Patents
一种维生素护肤保健真丝面料的整理工艺 Download PDFInfo
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- CN110820358A CN110820358A CN201911020049.2A CN201911020049A CN110820358A CN 110820358 A CN110820358 A CN 110820358A CN 201911020049 A CN201911020049 A CN 201911020049A CN 110820358 A CN110820358 A CN 110820358A
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- D06M23/00—Treatment of fibres, threads, yarns, fabrics or fibrous goods made from such materials, characterised by the process
- D06M23/12—Processes in which the treating agent is incorporated in microcapsules
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- D06M11/00—Treating fibres, threads, yarns, fabrics or fibrous goods made from such materials, with inorganic substances or complexes thereof; Such treatment combined with mechanical treatment, e.g. mercerising
- D06M11/07—Treating fibres, threads, yarns, fabrics or fibrous goods made from such materials, with inorganic substances or complexes thereof; Such treatment combined with mechanical treatment, e.g. mercerising with halogens; with halogen acids or salts thereof; with oxides or oxyacids of halogens or salts thereof
- D06M11/11—Treating fibres, threads, yarns, fabrics or fibrous goods made from such materials, with inorganic substances or complexes thereof; Such treatment combined with mechanical treatment, e.g. mercerising with halogens; with halogen acids or salts thereof; with oxides or oxyacids of halogens or salts thereof with halogen acids or salts thereof
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- D06M13/00—Treating fibres, threads, yarns, fabrics or fibrous goods made from such materials, with non-macromolecular organic compounds; Such treatment combined with mechanical treatment
- D06M13/10—Treating fibres, threads, yarns, fabrics or fibrous goods made from such materials, with non-macromolecular organic compounds; Such treatment combined with mechanical treatment with compounds containing oxygen
- D06M13/144—Alcohols; Metal alcoholates
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- D06M13/10—Treating fibres, threads, yarns, fabrics or fibrous goods made from such materials, with non-macromolecular organic compounds; Such treatment combined with mechanical treatment with compounds containing oxygen
- D06M13/152—Treating fibres, threads, yarns, fabrics or fibrous goods made from such materials, with non-macromolecular organic compounds; Such treatment combined with mechanical treatment with compounds containing oxygen having a hydroxy group bound to a carbon atom of a six-membered aromatic ring
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Abstract
本实施例所涉及的一种维生素护肤保健真丝面料的整理工艺,包括步骤(1)面料预处理、步骤(2)浸渍维生素处理液、步骤(3)脱水和步骤(4)定型及抗紫外整理。本发明所涉及的一种维生素护肤保健真丝面料的整理工艺,使得所制备的真丝面料能够释放维生素E和维生素C,能使皮肤健康,富于弹性和光泽,对肌肤有良好的保护保健作用,增强了使用者的人体抵抗力和免疫力,满足了消费者的消费需求,增强了面料本身的保健功能。
Description
技术领域
本发明涉及纺织面料功能性整理技术领域,尤其是一种维生素护肤保健真丝面料的整理工艺。
背景技术
由于回归自然和健康保护意识的增强,以舒适、清洁、保健、卫生为主的功能整理已成为本世纪纺织染整发展的主题。同时随着工业的发展,环境污染日益严重,大气中二氧化碳、氮氧化物和硫氧化物增加,对人体影响较大,造成过敏体质人数增多,因而皮肤护理功能整理引起人们重视,更多和皮肤接触的服装面料趋向于迎合自然和环保的意识。利用天然物质进行护肤保健功能纺织品的开发顺应这一发展趋势,其产品颇受消费者的青睐。
在科技和经济的强势发展之下,纺织品已不再是传统意义上的纺织品,他们被赋予了全新的含义。在过去以保暖为主的衣物,现在显然已不单单只是这层简单的功能。在追求美观、合体、舒适之外,也希望衣物能够有益于肌肤健康,甚至还能防病、治病的功能,因此纺织品的护肤保健功能性整理越来越被人们所重视。随着社会环境的变化,消费者生活水平的提高和需要的多样化,对纺织品材料和服装提出了诸多功能,以适应环境和生理需要的新要求。因此,纺织材料和服装的多功能整理有了快速的发展。正如国际知名服装趋势分析家阿德尔库尔说:目前在纺织品中出现一种新趋势,就是利用人们穿的衣服达到防病和治病的效果,从而使人们的生活发生重大变化,人类正在进入赋予织物具有真正护肤保健功能的新时代。
护肤保健织物延伸了原有的概念,从面部护肤延伸到了全身护肤,从一般性营养皮肤延伸到了清洁卫生和舒适保健的水平。它是将与化妆品非常近似的护肤剂加工整理到织物上,穿着这样的服装,就可以实现对人体皮肤的全面护理。
维生素E(简称VE),又称生育酚,是人们最早发现的维生素之一。它是一种脂溶性维生素,广泛存在于动植物界,特别是麦胚油、玉米油、豆油中;同时是一种强有效的自由基清除剂和抗氧化剂,能保护机体细胞膜及生命大分子免遭自由基的攻击,在延缓衰老、防治心血管疾病、抗肿瘤方面具有良好的效果。同时它能延缓衰老,有效减少皱纹的产生;减少细胞耗氧量,使人更有耐久力,有助减轻腿抽筋和手足僵硬的状况。
维生素C,又称“抗坏血酸”,简称VC,是一种水溶性维生素,多存在于新鲜的蔬菜和某些水果中。性质不稳定,在贮存、腌渍、烹调中易破坏,易进行氧化和再被还原。它同维持锗缔组织的正常代谢有关,缺乏时会发生坏血病,维生素C除了用来治疗坏血病外,也用于治疗感冒,可以增强人体的抵抗力,还用于治疗慢性传染病,职业性中毒等。
维生素E/C作为一种常用的药品兼营养保健品,若将它通过一定的方法整理在面料上,制成具有维生素E/C缓释功能的营养纺织品,不仅能拓宽维生素E/C的应用领域,提高产品附加值,同时也顺应现代消费者的健康生活理念,满足人们对保健功能纺织品的需求,因此会深受很多注重健康和爱美人士的欢迎。
由于维生素E/C的性质非常不稳定,易受到紫外线、氧等因素影响导致结构被破坏而不具有生物活性。如果将维生素E/C作为护肤整理剂整理到纺织品上,就必须保持其稳定的性状而具有一定的生理功效,因此需要维生素E/C进行微胶囊化来提高其稳定性,避免与空气接触。
真丝面料作为高档面料,本身由氨基酸组成,对人体有益,为了进一步提高真丝面料的护肤功能,对真丝面料进行维生素微胶囊整理。
发明内容
本发明的目的是提供一种维生素护肤保健真丝面料的整理工艺,使得所制备的真丝面料能够释放维生素E和维生素C,能使皮肤健康,富于弹性和光泽,对肌肤有良好的保护保健作用,增强了使用者的人体抵抗力和免疫力,满足了消费者的消费需求,增强了面料本身的保健功能。
为解决上述技术问题,本发明的目的是这样实现的:
本发明所涉及的一种维生素护肤保健真丝面料的整理工艺,其特征在于,包括如下步骤:
(1)面料预处理:采用卷染机将所选择的真丝面料按照浴比为1:10-15置于pH值为5.5-6.5的预处理溶液中,从室温升温至60-70℃,处理20-30min;所述的预处理溶液中含有2-3wt%的柔软剂、3-5wt%的表面活性剂、0.5-1g/L的去油灵TF-101BN和0.4-0.8g/L精炼剂C-108;
(2)浸渍维生素处理液:将步骤(1)中的预处理液排出,并再运行卷染机,使得真丝面料的带液率为150-200%;按照浴比1:10-15向卷染机上加入维生素处理液,升温至60-70℃,处理1-1.5h;所述维生素处理液中含有5-8wt%的维生素微胶囊、1-2wt%的β-环糊精、1-2wt%的丙烯腈类粘合剂、2-3wt%的柔软剂和1-2wt%高浓滑弹整理剂TF-431;
(3)脱水:将经过浸渍维生素处理液的真丝面料,经过轧辊使得真丝面料的带液率为70-90%;并对经过轧辊的真丝面料在60-80℃条件下进行预烘至带液率30-40%;
(4)定型及抗紫外整理:将经过脱水后真丝面料,在发泡机所形成的泡沫中浸渍,在通过定型机定型;泡沫中含有1:1:1的定型剂、柔软剂和紫外线吸收剂HLF,使得真丝面料的带液为为70-90%,再在120-130℃条件直下烘干35-40s;定型剂、柔软剂和紫外线吸收剂HLF的含量均为20%。
作为上述方案的进一步说明,所述的维生素微胶囊的制备是将明胶溶液或海藻酸钠溶液中加入壳聚糖溶液,按照1:2-3的体积比相混合并搅拌均匀得到预混合溶液,加热至45-50℃,再加入预混合溶液质量百分比5-10%的维生素C和5-10%的维生素E并搅拌均匀,之后加入浓度为4-6%的马来酰酐和异丙醚的共聚物的水溶液,再以10000-12000rpm高速剪节乳化10-15min,再调节pH值为6.5-6.8,搅拌均匀后再置于冰水浴中12-15min,再加入按照体积比加入乙醇1-2%,并调节pH值为10.5-11,升温至60-65℃进行搅拌,同时加入浓度为0.3g/L的氯化钙溶液和浓度为5-10%的2,6-二[(二甲氮基)甲基]苯酚溶液;所加入氯化钙溶液的体积占明胶溶液或海藻酸钠溶液的30-50%,所述的2,6-二[(二甲氮基)甲基]苯酚溶液占明胶溶液或海藻酸钠溶液的30-50%;再置于冰水浴中90-120min,过滤洗涤得到。
作为上述方案的进一步说明,所加入的马来酰酐和异丙醚的共聚物的水溶液的体积为明胶溶液或海藻酸钠溶液的50%-60%。
作为上述方案的进一步说明,所述维生素处理液的配制是先将粘合剂、高浓滑弹整理剂TF-431和柔软剂加入适量水中搅拌成均匀的乳液,再将微生素微胶囊缓慢加入上述均匀乳液中,并搅拌15-20min,再加入适量的水使得维生素微胶囊、粘合剂、柔软剂和高浓滑弹整理剂TF-431至设定浓度。
作为上述方案的进一步说明,步骤(1)中,所述表面活性剂为氨基酸类表面活性剂。
本发明的有益效果是:本发明所涉及的一种维生素护肤保健真丝面料的整理工艺,使得所制备的真丝面料能够释放维生素E和维生素C,能使皮肤健康,富于弹性和光泽,对肌肤有良好的保护保健作用,增强了使用者的人体抵抗力和免疫力,满足了消费者的消费需求,增强了面料本身的保健功能。
具体实施方式
下面结合具体实施例对本发明进一步说明。
实施例一
本实施例所涉及的一种维生素护肤保健真丝面料的整理工艺,包括步骤(1)面料预处理、步骤(2)浸渍维生素处理液、步骤(3)脱水和步骤(4)定型及抗紫外整理。
在步骤(1)面料预处理中,是采用卷染机将所选择的真丝面料按照浴比为1:10置于pH值为5.5的预处理溶液中,从室温升温至60℃,处理30min;所述的预处理溶液中含有2wt%的柔软剂、3wt%的表面活性剂、0.5g/L的去油灵TF-101BN和0.4g/L精炼剂C-108。所选择的真丝织物为市售全真丝练白双绉面料。所使用的柔软剂为柔软剂CGF采购至浙江科峰化工有限公司,表面活性剂为氨基酸类表面活性剂。
在步骤(2)浸渍维生素处理液中,将步骤(1)中的预处理液排出,并再运行卷染机,使得真丝面料的带液率为150%;按照浴比1:10向卷染机上加入维生素处理液,升温至60℃,处理1h;所述维生素处理液中含有5wt%的维生素微胶囊、1wt%的β-环糊精、1wt%的丙烯腈类粘合剂、2wt%的柔软剂和1wt%高浓滑弹整理剂TF-431。采用β-环糊精可将与真丝面料上所附着的微生素微胶囊的外表面包裹一层薄膜,在后续的处理时可保证维生素不会被析出。在经过后续的处理后,可将该层薄膜破坏,使得微胶囊中的维生素能够释放。
在步骤(3)脱水中,将经过浸渍维生素处理液的真丝面料,经过轧辊使得真丝面料的带液率为70%;并对经过轧辊的真丝面料在60℃条件下进行预烘至带液率30%。
在步骤(4)定型及抗紫外整理中,将经过脱水后真丝面料,在发泡机所形成的泡沫中浸渍,在通过定型机定型;泡沫中含有1:1:1的定型剂、柔软剂和紫外线吸收剂HLF,使得真丝面料的带液为为70%,再在120℃条件直下烘干35s;定型剂、柔软剂和紫外线吸收剂HLF的含量均为20%。
步骤(2)中,维生素微胶囊的制备是将明胶溶液中加入壳聚糖溶液,按照1:2的体积比相混合并搅拌均匀得到预混合溶液;所使用的明胶溶液的浓度为20%,壳聚糖的浓度为20%;再将预混合溶液加热至45℃,再加入预混合溶液质量百分比5%的维生素C和5%的维生素E并搅拌均匀,之后加入浓度为4%的马来酰酐和异丙醚的共聚物的水溶液,再以10000rpm高速剪节乳化10min,再调节pH值为6.5,搅拌均匀后再置于冰水浴中12min,再加入按照体积比加入乙醇1%,并调节pH值为10.5,升温至60℃进行搅拌,同时加入浓度为0.3g/L的氯化钙溶液和浓度为5%的2,6-二[(二甲氮基)甲基]苯酚溶液。2,6-二[(二甲氮基)甲基]苯酚可与加入的马来酰酐和异丙醚的共聚物共同作用,可使得所制备的微胶囊表面具有一定的开孔,可使得在使用过程中能够将维生素从微胶囊中析出。
所加入氯化钙溶液的体积占明胶溶液的30%,2,6-二[(二甲氮基)甲基]苯酚溶液占明胶溶液的30%;再置于冰水浴中90min,过滤洗涤得到。所加入的马来酰酐和异丙醚的共聚物的水溶液的体积为明胶溶液的50%。
所述维生素处理液的配制是先将粘合剂、高浓滑弹整理剂TF-431和柔软剂加入适量水中搅拌成均匀的乳液,再将微生素微胶囊缓慢加入上述均匀乳液中,并搅拌15min,再加入适量的水使得维生素微胶囊、粘合剂、柔软剂和高浓滑弹整理剂TF-431至设定浓度。
实施例二
本实施例所涉及的一种维生素护肤保健真丝面料的整理工艺,包括步骤(1)面料预处理、步骤(2)浸渍维生素处理液、步骤(3)脱水和步骤(4)定型及抗紫外整理。
在步骤(1)面料预处理中,采用卷染机将所选择的真丝面料按照浴比为1:15置于pH值为6.5的预处理溶液中,从室温升温至70℃,处理20min;所述的预处理溶液中含有3wt%的柔软剂、5wt%的表面活性剂、1g/L的去油灵TF-101BN和0.8g/L精炼剂C-108。所选择的真丝织物为市售全真丝练白双绉面料。所使用的柔软剂为柔软剂CGF采购至浙江科峰化工有限公司,表面活性剂为氨基酸类表面活性剂。
在步骤(2)浸渍维生素处理液中,将步骤(1)中的预处理液排出,并再运行卷染机,使得真丝面料的带液率为200%;按照浴比1:15向卷染机上加入维生素处理液,升温至70℃,处理1.5h;所述维生素处理液中含有8wt%的维生素微胶囊、2wt%的β-环糊精、2wt%的丙烯腈类粘合剂、3wt%的柔软剂和2wt%高浓滑弹整理剂TF-431。
在步骤(3)脱水中,将经过浸渍维生素处理液的真丝面料,经过轧辊使得真丝面料的带液率为90%;并对经过轧辊的真丝面料在80℃条件下进行预烘至带液率40%。
在步骤(4)定型及抗紫外整理中,将经过脱水后真丝面料,在发泡机所形成的泡沫中浸渍,在通过定型机定型;泡沫中含有1:1:1的定型剂、柔软剂和紫外线吸收剂HLF,使得真丝面料的带液为为90%,再在120-130℃条件直下烘干40s;定型剂、柔软剂和紫外线吸收剂HLF的含量均为20%。
步骤(2)中,维生素微胶囊的制备是将海藻酸钠溶液中加入壳聚糖溶液,按照1:3的体积比相混合并搅拌均匀得到预混合溶液;所使用的海藻酸钠溶液的浓度为20%,壳聚糖的浓度为20%;再加热至50℃,再加入预混合溶液质量百分比10%的维生素C和10%的维生素E并搅拌均匀,之后加入浓度为6%的马来酰酐和异丙醚的共聚物的水溶液,再以12000rpm高速剪节乳化15min,再调节pH值为6.8,搅拌均匀后再置于冰水浴中15min,再加入按照体积比加入乙醇2%,并调节pH值为11,升温至65℃进行搅拌,同时加入浓度为0.3g/L的氯化钙溶液和浓度为0%的2,6-二[(二甲氮基)甲基]苯酚溶液。
所加入氯化钙溶液的体积占海藻酸钠溶液的50%,2,6-二[(二甲氮基)甲基]苯酚溶液占海藻酸钠溶液的50%;再置于冰水浴中120min,过滤洗涤得到。所加入的马来酰酐和异丙醚的共聚物的水溶液的体积为海藻酸钠溶液的60%。
所述维生素处理液的配制是先将粘合剂、高浓滑弹整理剂TF-431和柔软剂加入适量水中搅拌成均匀的乳液,再将微生素微胶囊缓慢加入上述均匀乳液中,并搅拌20min,再加入适量的水使得维生素微胶囊、粘合剂、柔软剂和高浓滑弹整理剂TF-431至设定浓度。
对比例
本对比例所涉及的真丝面料维生素微胶囊处理是将市场的全真丝练白双绉面料先进行面料预处理,是将真丝面料与实施例一相同的预处理工艺进行预处理。并将预处理后的真丝面料采用浸轧处理液(二浸二轧)的方式进行处理,所浸轧的是维生素处理液;浸轧处理液后在80℃条件下预烘60s,再在130-140℃条件下烘焙40-45s,并进行清洗再进行烘干。所浸轧的维生素处理液中含有维生素E微胶囊和维生素C微胶囊(变性淀粉为壁材),采购至浙江新和成股份有限公司,有效载量为50%。而且还含有黏合剂和柔软剂。其配制过程是将黏合剂和柔软剂按照适量水溶化好后混合搅拌成均匀乳液,然后采用机械搅拌的下,将称量好并用适量水分散好的微胶囊乳液加入预先化好的黏合剂和柔软剂的乳液中,加完后继续搅拌15分钟制成整理液,注意控制总的用水量,确保溶液中各组份的含量。在本对比例中的微生素整理液中生素E和维生素C的含量为7%和8%,黏合剂的含量为3g/L,柔软剂的含量为4g/L。
对实施例一及实施例二所制备的维生素微胶囊中,维生素E和维生素C的化产率进行测试,所谓的化产率是微胶囊中微生素的含量与所加入的微生素含量的比值。经测试,实施例一和实施例二中微生素微胶囊中维生素E的化产率为75.3%和76.4%。并且对实施例一及实施例二中维生素微胶囊中有效载量进行测试,有效载量为维生素与微胶囊的质量的比值,经测试分别为63%和65%。与对比例中所使用的微生素微胶囊中50%的有效载量相比,具有较高的有效载量。
对实施例一、实施例二及对比例中织物上维生素E的含量进行测定,具体方法采用气体作为流动相的一种色谱法。供试品和内标均制成甲醇溶液,进入气相色谱仪进行色谱分离并检测维生素E和内标正三十二烷的吸收值,计算出其含量。
维生素C采用荧光法进行测定,维生素C先被活性炭氧化为脱氢抗坏血酸DHAA,DHAA再与荧光底物领苯二胺OPDA结合生成荧光产物,通过对该荧光产物的检测实现对维生素C的定量分析。
将实施例一、实施例二及对比例所制备的面料,按照AATCC61-2A的标准方法进行水洗,通过测定水洗后的布面上维生素的含量来织物上维生素的耐洗牢度。按照AATCC15-2002的标准方法进行汗渍处理,通过测试处理前后布面上维生素的含量来衡量织物上维生素的耐汗渍牢度。
实施例一、实施例二及对比例中维生素E水洗后面料中的维生素E的含量如下表:
由上表可以看出,不经过洗涤和汗渍处理的面料,实施例一和实施例二的维生素E的含量分别为35.6mg/100g和38.4mg/100g,而对比例所制备的面料中维生素E的含量则为28.6mg/100g。经过汗渍处理后的实施例一及实施例二的面料中含有32.6mg/100g和36.4mg/100g的维生素E。经过1次洗涤后,实施例一和实施例二的维生素E的保留率达到93%和89%。经过30次洗涤后,实施例一和实施例二的维生素E的保留率达到63.5%和60.1%。
可以看出,实施例一及实施例二所制备的真丝面料,在维生素E的保留率时具有良好的效果。而且在结过汗渍处理后的面料在维生素E的保留率亦较高。在洗涤一次后达到93%和87%,经过洗涤30次后,经过汗渍处理后的面料维生素E的保留率达到了62%和60.1%,亦达到了较高的水准。
实施例一、实施例二及对比例中维生素E水洗后面料中的维生素E的含量如下表:
由上表可以看出,不经过洗涤和汗渍处理的面料,实施例一和实施例二的维生素C的含量分别为23.6mg/100g和26.3mg/100g,而对比例所制备的面料中维生素C的含量则为15.6mg/100g。经过汗渍处理后的实施例一及实施例二的面料中含有21.4mg/100g和23.5mg/100g的维生素C。经过1次洗涤后,实施例一和实施例二的维生素E的保留率达到91%和94%。经过30次洗涤后,实施例一和实施例二的维生素E的保留率达到62%和60%。
可以看出,实施例一及实施例二所制备的真丝面料,在维生素C的保留率时具有良好的效果。而且在结过汗渍处理后的面料在维生素C的保留率亦较高。在洗涤一次后达到93%和95%,经过洗涤30次后,经过汗渍处理后的面料维生素E的保留率达到了58%和57%,亦达到了较高的水准。
对实施例一、实施例二和对比例中所制备的面料采用UV光源进行照射,UV光源能够产生波长为290-400nm的紫外线,所使用的UV光源是使用标准AS/NZS 4399-1996《纺织品抗紫外线辐射性能的测试标准》中的光源进行照射30min,并对照射后的面料进行维生素E和维生素C的含量进行测定,测定的具体结果见下表。
实施例一 | 实施例二 | 对比例一 | |
维生素E含量/mg/100g | 25.8 | 29.4 | 9.3 |
维生素C含量/mg/100g | 18.6 | 21.3 | 7.8 |
由上表可以看出,维生素E结过照射后,实施列一及实施例二中含量为25.8mg/100g和29.4mg/100g,保留率分别为72%和77%。维生素C结过照射后,实施列一及实施例二中含量为18.6mg/100g和23.6mg/100g,保留率分别为79%和80%。
以上详细描述了本发明的较佳具体实施例。应当理解,本领域的普通技术人员无需创造性劳动就可以根据本发明的构思做出诸多修改和变化。因此,凡本技术领域中技术人员依本发明的构思在现有技术的基础上通过逻辑分析、推理或者有限的实验可以得到的技术方案,皆应在由权利要求书所确定的保护范围内。
Claims (5)
1.一种维生素护肤保健真丝面料的整理工艺,其特征在于,包括如下步骤:
(1)面料预处理:采用卷染机将所选择的真丝面料按照浴比为1:10-15置于pH值为5.5-6.5的预处理溶液中,从室温升温至60-70℃,处理20-30min;所述的预处理溶液中含有2-3wt%的柔软剂、3-5wt%的表面活性剂、0.5-1g/L的去油灵TF-101BN和0.4-0.8g/L精炼剂C-108;
(2)浸渍维生素处理液:将步骤(1)中的预处理液排出,并再运行卷染机,使得真丝面料的带液率为150-200%;按照浴比1:10-15向卷染机上加入维生素处理液,升温至60-70℃,处理1-1.5h;所述维生素处理液中含有5-8wt%的维生素微胶囊、1-2wt%的β-环糊精、1-2wt%的丙烯腈类粘合剂、2-3wt%的柔软剂和1-2wt%高浓滑弹整理剂TF-431;
(3)脱水:将经过浸渍维生素处理液的真丝面料,经过轧辊使得真丝面料的带液率为70-90%;并对经过轧辊的真丝面料在60-80℃条件下进行预烘至带液率30-40%;
(4)定型及抗紫外整理:将经过脱水后真丝面料,在发泡机所形成的泡沫中浸渍,在通过定型机定型;泡沫中含有1:1:1的定型剂、柔软剂和紫外线吸收剂HLF,使得真丝面料的带液为为70-90%,再在120-130℃条件直下烘干35-40s;定型剂、柔软剂和紫外线吸收剂HLF的含量均为20%。
2.根据权利要求1所述的维生素护肤保健真丝面料的整理工艺,其特征在于,所述的维生素微胶囊的制备是将明胶溶液或海藻酸钠溶液中加入壳聚糖溶液,按照1:2-3的体积比相混合并搅拌均匀得到预混合溶液,加热至45-50℃,再加入预混合溶液质量百分比5-10%的维生素C和5-10%的维生素E并搅拌均匀,之后加入浓度为4-6%的马来酰酐和异丙醚的共聚物的水溶液,再以10000-12000rpm高速剪节乳化10-15min,再调节pH值为6.5-6.8,搅拌均匀后再置于冰水浴中12-15min,再加入按照体积比加入乙醇1-2%,并调节pH值为10.5-11,升温至60-65℃进行搅拌,同时加入浓度为0.3g/L的氯化钙溶液和浓度为5-10%的2,6-二[(二甲氮基)甲基]苯酚溶液;所加入氯化钙溶液的体积占明胶溶液或海藻酸钠溶液的30-50%,所述的2,6-二[(二甲氮基)甲基]苯酚溶液占明胶溶液或海藻酸钠溶液的30-50%;再置于冰水浴中90-120min,过滤洗涤得到。
3.根据权利要求1所述的维生素护肤保健真丝面料的整理工艺,其特征在于,所加入的马来酰酐和异丙醚的共聚物的水溶液的体积为明胶溶液或海藻酸钠溶液的50%-60%。
4.根据权利要求1所述的维生素护肤保健真丝面料的整理工艺,其特征在于,所述维生素处理液的配制是先将粘合剂、高浓滑弹整理剂TF-431和柔软剂加入适量水中搅拌成均匀的乳液,再将微生素微胶囊缓慢加入上述均匀乳液中,并搅拌15-20min,再加入适量的水使得维生素微胶囊、粘合剂、柔软剂和高浓滑弹整理剂TF-431至设定浓度。
5.根据权利要求1所述的维生素护肤保健真丝面料的整理工艺,其特征在于,步骤(1)中,所述表面活性剂为氨基酸类表面活性剂。
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