CN111304933A - 条缝涂布pet热熔胶吸湿排汗超细纤维基粘合衬布的制备方法 - Google Patents

条缝涂布pet热熔胶吸湿排汗超细纤维基粘合衬布的制备方法 Download PDF

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CN111304933A
CN111304933A CN201911354752.7A CN201911354752A CN111304933A CN 111304933 A CN111304933 A CN 111304933A CN 201911354752 A CN201911354752 A CN 201911354752A CN 111304933 A CN111304933 A CN 111304933A
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高强
贾维妮
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Jiangsu Shenghong Ecological Textile Technology Co ltd
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Abstract

本发明公开了一种条缝涂布PET热熔胶吸湿排汗超细纤维基粘合衬布的制备方法,具体操作步骤如下:步骤1、采用聚乙烯硅氧烷类整理剂HV对超细纤维涤纶基布进行吸湿排汗整理,达到加速水分子在织物间的传递,赋予织物持久性的吸湿排汗性能;步骤2、对具有吸湿排汗功能的涤纶基布采用条缝涂布法进行PET热熔胶涂布。本发明通过对超细涤纶纤维织造的基布进行吸湿排汗整理,然后将PET热熔胶以条缝涂布方法涂布于吸湿排汗功能性超细涤纶纤维织造的基布上,制备的衬布具有特殊的造型,补强,保型性及保持超细纤维涤纶基布的吸湿排汗功能,以满足服装胸衬、腰衬的服用性能要求。

Description

条缝涂布PET热熔胶吸湿排汗超细纤维基粘合衬布的制备 方法
技术领域
本发明属于面料处理领域,具体涉及一种条缝涂布PET热熔胶吸湿排汗超细纤维基粘合衬布制备方法,应用于涤纶面料、涤棉面料以及涤粘面料服装加工中衬布的选用,通过选用性能优良的超细涤纶纤维织造的基布,进行吸湿排汗整理,然后采用条缝涂布法进行PET热熔胶涂布以达到衬布保持良好的透气、吸湿排汗等功能。
背景技术
近年以来,随着服装面料的高附加值功能化发展,在服装生产中起重要造型、补强、保形作用的衬布也显得尤为重要,各种功能化优良性能衬布的需求越来越大了,也成为研发的重点课题。粘合衬布是一种通过附着的热塑性高分子物在压烫条件下,使之与面料贴合,使服装平整,外形优美,穿着舒适。目前粘合衬布的发展获得了迅猛发展。但随着面料的多功能性开发,粘合衬布的多功能性也需要进一步提高;传统的涂布方式往往会对粘合衬布的透气、吸湿性能有一定的影响。
发明内容
发明目的:本发明的目的是针对目前市场上服装加工中多功能纺织面料的开发,需要相配伍的多功能衬布的需求,弥补市场上对良好的透气、吸湿排汗功能性粘合衬布的需求,提供一种条缝涂布PET热熔胶吸湿排汗超细纤维基粘合衬布的制备方法,制备的衬布保持原有良好的吸湿排汗功能,适合于各类涤纶面料、涤棉面料以及涤粘面料服装用衬布。
技术方案:一种条缝涂布PET热熔胶吸湿排汗超细纤维基粘合衬布的制备方法,具体操作步骤如下:
步骤1、采用聚乙烯硅氧烷类整理剂HV对超细纤维涤纶基布进行吸湿排汗整理,其中,调节乳液pH值为6,烘培温度170℃,烘培时间30s,达到加速水分子在织物间的传递,赋予织物持久性的吸湿排汗性能;
整理工艺处方:整理剂用量10-20g/L,醋酸调节后保持整理液pH为6;
步骤2、对具有吸湿排汗功能的涤纶基布采用条缝涂布法进行PET热熔胶涂布;
涂布方式:条缝涂布;热压温度范围为:105-140℃;涂剂量为15-30g/m2
作为优化:所述的衬布的剥离强度为20-30N/5cmxlocm,耐水洗次数>20次,耐干洗次数>5次,无老化泛黄现象。
作为优化:所述的聚乙烯硅氧烷类整理剂为
Figure RE-GDA0002483296820000021
作为优化:所述的聚乙烯硅氧烷类整理剂的分子量为25000。
作为优化:所述的PET热熔胶为
Figure RE-GDA0002483296820000022
作为优化:所述的PET热熔胶的分子量为8000-9000。
有益效果:本发明通过对超细涤纶纤维织造的基布进行吸湿排汗整理,然后将PET热熔胶以条缝涂布方法涂布于吸湿排汗功能性超细涤纶纤维织造的基布上,制备的衬布具有特殊的造型,补强,保型性及保持超细纤维涤纶基布的吸湿排汗功能,以满足服装胸衬、腰衬的服用性能要求。
附图说明
图1是本发明的条缝涂布示意图。
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,以使本领域的技术人员能够更好的理解本发明的优点和特征,从而对本发明的保护范围做出更为清楚的界定。本发明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的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
涤纶基粘合衬布应用比较广泛,基于传统的涂布方式会对衬布的透气性有一定影响,通过选用超细涤纶纤维织造基布,然后对其进行有机硅整理,使其获得优良的吸湿排汗功能,进而采用条缝涂布法进行PET热熔胶涂布,如图1 所示,最终得到具有透气、吸湿排汗等功能性高品质超细纤维基粘合衬布,适合于各类涤纶、涤棉及涤粘等面料的服装加工,提高了服装的附加值。
本发明的技术原理是:设计条缝涂布PET热熔胶吸湿排汗超细纤维基粘合衬布生产工艺流程及各个步骤的工艺条件。包括:吸湿排汗整理、条缝涂布。最后得到透气、吸湿排汗等功能性高品质超细纤维基粘合衬布。
通过以上方式制备的粘合衬布具有特殊的造型,补强,保型性及保持超细纤维涤纶基布的吸湿排汗功能,以满足服装胸衬、腰衬的服用性能要求。
具体实施例1
低克重(50-80g/m2)超细涤纶粘合衬的制备:
步骤1、采用聚乙烯硅氧烷类整理剂HV对超细纤维涤纶基布进行吸湿排汗整理,达到加速水分子在织物间的传递,赋予织物持久性的吸湿排汗性能。
整理工艺处方:整理剂用量10g/L,醋酸调节后保持整理液pH为6左右。
步骤2、对具有吸湿排汗功能的涤纶基布采用条缝涂布法进行PET热熔胶涂布。
涂布方式:条缝涂布;热压温度:110℃;涂剂量15g/m2
剥离强度20N/5cm×10cm,耐水洗次数>20次,耐干洗次数>5次,无老化泛黄现象。
具体实施例2
中等克重(80-120g/m2)超细涤纶粘合衬的制备:
步骤1、采用聚乙烯硅氧烷类整理剂HV对超细纤维涤纶基布进行吸湿排汗整理,达到加速水分子在织物间的传递,赋予织物持久性的吸湿排汗性能。
整理工艺处方:整理剂用量15g/L,醋酸调节后保持整理液pH为6左右。
步骤2、对具有吸湿排汗功能的涤纶基布采用条缝涂布法进行PET热熔胶涂布。
涂布方式:条缝涂布;热压温度:115℃;涂剂量18g/m2
剥离强度23N/5cm×10cm,耐水洗次数>20次,耐干洗次数>5次,无老化泛黄现象。
具体实施例3
高克重(120-200g/m2)超细涤纶粘合衬的制备:
步骤1、采用聚乙烯硅氧烷类整理剂HV对超细纤维涤纶基布进行吸湿排汗整理,达到加速水分子在织物间的传递,赋予织物持久性的吸湿排汗性能。
整理工艺处方:整理剂用量20g/L,醋酸调节后保持整理液pH为6左右。
步骤2、对具有吸湿排汗功能的涤纶基布采用条缝涂布法进行PET热熔胶涂布。
涂布方式:条缝涂布;热压温度:120℃;涂剂量23g/m2
剥离强度25N/5cm×10cm,耐水洗次数>20次,耐干洗次数>5次,无老化泛黄现象。
本发明通过对超细涤纶纤维织造的基布进行吸湿排汗整理,然后将PET热熔胶以条缝涂布方法涂布于吸湿排汗功能性超细涤纶纤维织造的基布上,制备的衬布具有特殊的造型,补强,保型性及保持超细纤维涤纶基布的吸湿排汗功能,以满足服装胸衬、腰衬的服用性能要求。
上述的这些实施例仅用于说明本发明而不用于限制本发明的范围。此外应理解,在阅读了本发明讲授的内容之后,本领域技术人员可以对本发明作各种改动或修改,等价形式改动或修改同样落于本申请的权利要求书所限定的范围。

Claims (6)

1.一种条缝涂布PET热熔胶吸湿排汗超细纤维基粘合衬布的制备方法,其特征在于:具体操作步骤如下:
步骤1、采用聚乙烯硅氧烷类整理剂HV对超细纤维涤纶基布进行吸湿排汗整理,其中,调节乳液pH值为6,烘培温度170℃,烘培时间30s,达到加速水分子在织物间的传递,赋予织物持久性的吸湿排汗性能;
整理工艺处方:整理剂用量10-20g/L,醋酸调节后保持整理液pH为6;
步骤2、对具有吸湿排汗功能的涤纶基布采用条缝涂布法进行PET热熔胶涂布;
涂布方式:条缝涂布;热压温度范围为:105-140℃;涂剂量为15-30g/m2
2.根据权利要求1所述的条缝涂布PET热熔胶吸湿排汗超细纤维基粘合衬布的制备方法,其特征在于:所述的衬布的剥离强度为20-30N/5cmxlocm,耐水洗次数>20次,耐干洗次数>5次,无老化泛黄现象。
3.根据权利要求1所述的条缝涂布PET热熔胶吸湿排汗超细纤维基粘合衬布的制备方法,其特征在于:所述的聚乙烯硅氧烷类整理剂为
Figure RE-FDA0002483296810000011
4.根据权利要求1所述的条缝涂布PET热熔胶吸湿排汗超细纤维基粘合衬布的制备方法,其特征在于:所述的聚乙烯硅氧烷类整理剂的分子量为25000。
5.根据权利要求1所述的条缝涂布PET热熔胶吸湿排汗超细纤维基粘合衬布的制备方法,其特征在于:所述的PET热熔胶为
Figure RE-FDA0002483296810000012
6.根据权利要求1所述的条缝涂布PET热熔胶吸湿排汗超细纤维基粘合衬布的制备方法,其特征在于:所述的PET热熔胶的分子量为8000-9000。
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