CN115214219B - 立体肌理成型夹芯面料及其抗污后整理加工工艺 - Google Patents
立体肌理成型夹芯面料及其抗污后整理加工工艺 Download PDFInfo
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Abstract
本发明涉及面料及其加工工艺领域,具体涉及一种立体肌理成型夹芯面料及其抗污后整理加工工艺,立体肌理成型夹芯面料包括面层、芯层和基布层,所述芯层架设于面层和基布层之间,所述芯层的主体材料为芯层纤维,芯层上夹设有由热敏辅助纤维构成的立体肌理成型图案。热敏辅助纤维在遇到高温时,热敏触发凸条发生收缩,而对向的沟槽以及沟槽和热敏触发凸条呈双螺旋分布,热敏辅助纤维遇热时顺着沟槽螺旋坍缩,进而引发立体肌理成型夹芯面料局部发生收缩,形成褶皱面料;热敏辅助纤维通过电脑设定喷射时间,能够在芯层上自由定义图案,且表面无缝线,一体性好。
Description
技术领域
本发明涉及面料及其加工工艺领域,具体的涉及立体肌理成型夹芯面料及其抗污后整理加工工艺。
背景技术
面料三维记忆成型技术,是今年比较流行的面料技术,经过三维成型技术成型面料加工的时装,具有视觉新颖、立体感强、回弹性好、舒适透气和三维肌理变化丰富等特点。面料三维记忆成型技术最常用的技术为步进式热敏辅料记忆成型工艺,该工艺根据设计要求,通过电脑绣花机,将面料与热敏材料贴合,并按设计好的图案绗缝定位缝合,再经高温挤压,利用热敏辅助材料在高温下会发生剧烈收缩的特性,带动面料按着绗缝定位的轨迹收缩起皱,进而形成具有浮雕感的立体面料,该工艺虽然能成型三维面料,但是仍然存在以下不足:其起皱的图案依赖绗缝定位,而绗缝定位无法实现较为复杂的图案,且绗缝定位后表面会看到缝线,不够美观和整体。
发明内容
本发明的一个目的是通过立体肌理成型夹芯面料及其抗污后整理加工工艺解决至少上述问题。
为解决上述技术问题,本发明采用的技术方案如下:立体肌理成型夹芯面料,其特征在于:包括面层、芯层和基布层,所述芯层架设于面层和基布层之间,所述芯层的主体材料为芯层纤维,芯层上夹设有由热敏辅助纤维构成的立体肌理成型图案。
优选的,所述热敏辅助纤维外部设有沟槽。
优选的,所述热敏辅助纤维外部的沟槽呈螺旋状。
优选的,所述热敏辅助纤维在沟槽的相对侧嵌入热敏触发凸条,热敏触发凸条与沟槽呈双螺旋分布,所述热敏辅料的主体原料为芳纶,所述热敏触发凸条的原料为涤纶。
上述的立体肌理成型夹芯面料的抗污后整理加工工艺,其特征在于,包括如下步骤:
步骤a、基布覆盖于丝网上,随同丝网向前移动;
步骤b、面料经过喷绒区,在基布上同步喷射芯层纤维和热敏辅助纤维,热敏辅助纤维在芯层料上构成立体肌理成型图案;
步骤c、将面层料覆盖于芯层上,并通过压辊初步压紧;
步骤d、面料通过水刺区,立体肌理成型夹芯面料的上部和下部均进行水刺复合;
步骤e、面料进入风压区进行风干;
步骤f、面料进入热处理区进行热处理,立体肌理成型图案的热敏辅助纤维受高温作用收缩,使得面料整体成立体肌理;
步骤g、面料进行抗污后整理。
优选的,所述步骤a中,所述面层料在真空作用下吸附于丝网上。
优选的,步骤b和步骤c中,所述面层料、芯层料和基布在真空作用下吸附于丝网上。
优选的,所述步骤e中,热处理区的热处理温度为150-160摄氏度。
优选的,所述步骤f中,面料抗污后整理使用抗污防水剂,所述抗污防水剂的原料组分包括:石蜡30-40份、醋酸铝50-60份、松香15-20份、硬脂酸6-8份、乙酸铵15-18份、醋酸锌12-15份、甲壳素13-15份。
优选的,所述立体肌理成型夹芯面料通过热成型复合设备成型,该热成型复合设备成型包括喷绒区、复合区、水刺区和热处理区,所述喷绒区上设有相互并排的芯层纤维喷头和热敏辅助纤维喷头,所述喷绒区和复合区底部设有真空吸附箱,所述水刺区的丝网上方和下方交替设有水刺头,每个水刺头在丝网的相对侧设有真空吸附箱,所述热敏辅助纤维喷头的内部设有用于成型沟槽的螺旋凸纹和成型热敏触发凸条的螺旋凹槽。
由上述描述可知,本发明提供的立体肌理成型夹芯面料及其抗污后整理加工工艺具有如下有益效果:热敏辅助纤维在遇到高温时,热敏触发凸条发生收缩,而对向的沟槽以及沟槽和热敏触发凸条呈双螺旋分布,热敏辅助纤维遇热时顺着沟槽螺旋坍缩,进而引发立体肌理成型夹芯面料局部发生收缩,形成褶皱面料;热敏辅助纤维通过电脑设定喷射时间,能够在芯层上自由定义图案,且表面无缝线,一体性好。
具体实施方式
以下通过具体实施方式对本发明作进一步的描述。
为使本发明实现的技术手段、创作特征、达成目的与功效易于明白了解,下面结合具体实施方式,进一步阐述本发明。
本发明所述的立体肌理成型夹芯面料,包括面层、芯层和基布层,所述芯层架设于面层和基布层之间,所述芯层的主体材料为芯层纤维,芯层上夹设有由热敏辅助纤维构成的立体肌理成型图案。
所述热敏辅助纤维外部设有沟槽。所述热敏辅助纤维外部的沟槽呈螺旋状。
所述热敏辅助纤维在沟槽的相对侧嵌入热敏触发凸条,热敏触发凸条与沟槽呈双螺旋分布,所述热敏辅料的主体原料为芳纶,所述热敏触发凸条的原料为涤纶。
热敏辅助纤维中主体原料和热敏触发凸条的原料的热缩性能不同,涤纶的受热收缩率较大,使得热敏辅助纤维在遇到高温时,热敏触发凸条发生收缩,沟槽提供坍缩轨迹,而对向的沟槽以及沟槽和热敏触发凸条呈双螺旋分布,热敏辅助纤维遇热时顺着沟槽螺旋坍缩,进而引发立体肌理成型夹芯面料局部发生收缩,形成褶皱面料;热敏辅助纤维通过电脑设定喷射时间,能够在芯层上自由定义图案,且表面无缝线,一体性好;而绗缝定位成型的记忆面料,其起皱的图案依赖绗缝定位,绗缝定位无法实现较为复杂的图案,且绗缝定位表面会看到缝线,不够美观。
根据上述的立体肌理成型夹芯面料的抗污后整理加工工艺,包括如下步骤:
步骤a、基布覆盖于丝网上,随同丝网向前移动;
步骤b、面料经过喷绒区,在基布上同步喷射芯层纤维和热敏辅助纤维,热敏辅助纤维在芯层料上构成立体肌理成型图案;
步骤c、将面层料覆盖于芯层上,并通过压辊初步压紧;
步骤d、面料通过水刺区,立体肌理成型夹芯面料的上部和下部均进行水刺复合;
步骤e、面料进入风压区进行风干;
步骤f、面料进入高温区进行热处理,立体肌理成型图案的热敏辅助纤维受高温作用收缩,使得面料整体成立体肌理;
步骤g、面料进行抗污后整理。
所述步骤a、步骤b和步骤c中,所述面层料、芯层料和基布在真空作用下吸附于丝网上。
所述步骤e中,热处理区的的热处理温度为150-160摄氏度。
所述步骤f中,面料抗污后整理使用抗污防水剂,所述抗污防水剂的原料组分包括:石蜡30-40份、醋酸铝50-60份、松香15-20份、硬脂酸6-8份、乙酸铵15-18份、醋酸锌12-15份、甲壳素13-15份。该抗污防水剂处理过的面料兼具良好的抗水、抗污和抗菌的性能。
所述立体肌理成型夹芯面料通过热成型复合设备成型,该热成型复合设备成型包括喷绒区、复合区、水刺区和处理区,所述喷绒区上设有相互并排的芯层纤维喷头和热敏辅助纤维喷头,所述喷绒区和复合区底部设有真空吸附箱,所述水刺区的丝网上方和下方交替设有水刺头,每个水刺头在丝网的相对侧设有真空吸附箱,所述热处理区内设有热敏定型机,通过热敏定型机高温挤压,使得芯层内的热敏辅助纤维沿着立体肌理成型图案收缩,进而引发整个面料收缩,所述烘干箱顶部设有蒸汽排出风扇,所述热敏辅助纤维喷头的内部设有用于成型沟槽的螺旋凸纹和成型热敏触发凸条的螺旋凹槽,经由热敏辅助纤维喷头成型的限位,其表面的热敏触发凸条与沟槽呈双螺旋分布。上述成型的面料还需经过表面烧毛工艺除去表面绒毛,面料在张紧状态下通过烧毛托辊,其面层和基布层表面与烧毛托辊接触,烧毛托辊表面温度达到800-850摄氏度,面层和基布层表面快速的从热定型托辊表面擦过,烧去了表面的纤维绒毛,使其表面光洁。
上述仅为本发明的若干具体实施方式,但本发明的设计构思并不局限于此,凡利用此构思对本发明进行非实质性的改动,均应属于侵犯本发明保护范围的行为。
Claims (6)
1.立体肌理成型夹芯面料的抗污后整理加工工艺,其特征在于:包括如下步骤:
步骤a、基布覆盖于丝网上,随同丝网向前移动;
步骤b、面料经过喷绒区,在基布上同步喷射芯层纤维和热敏辅助纤维,热敏辅助纤维在芯层料上构成立体肌理成型图案;
步骤c、将面层料覆盖于芯层上,并通过压辊初步压紧;
步骤d、面料通过水刺区,立体肌理成型夹芯面料的上部和下部均进行水刺复合;
步骤e、面料进入风压区进行风干;
步骤f、面料进入热处理区进行热处理,立体肌理成型图案的热敏辅助纤维受高温作用收缩,使得面料整体成立体肌理;
步骤g、面料进行抗污后整理;
所述的立体肌理成型夹芯面料包括面层、芯层和基布层,所述芯层夹设于面层和基布层之间,所述芯层的主体材料为芯层纤维,芯层上夹设有由热敏辅助纤维构成的立体肌理成型图案;
所述热敏辅助纤维外部设有沟槽;
所述热敏辅助纤维外部的沟槽呈螺旋状;
所述热敏辅助纤维在沟槽的相对侧嵌入热敏触发凸条,热敏触发凸条与沟槽呈双螺旋分布,所述热敏辅助纤维的主体原料为芳纶,所述热敏触发凸条的原料为涤纶。
2.根据权利要求1所述的立体肌理成型夹芯面料的抗污后整理加工工艺,其特征在于:所述步骤a中,所述基布在真空作用下吸附于丝网上。
3.根据权利要求1所述的立体肌理成型夹芯面料的抗污后整理加工工艺,其特征在于:步骤b和步骤c中,所述芯层料、面层料在真空作用下吸附于丝网上。
4.根据权利要求1所述的立体肌理成型夹芯面料的抗污后整理加工工艺,其特征在于:所述步骤f中,热处理区的热处理温度为150-160摄氏度。
5.根据权利要求1所述的立体肌理成型夹芯面料的抗污后整理加工工艺,其特征在于:所述步骤g中,面料抗污后整理使用抗污防水剂,所述抗污防水剂的原料组分包括:石蜡30-40份、醋酸铝50-60份、松香15-20份、硬脂酸6-8份、乙酸铵15-18份、醋酸锌12-15份、甲壳素13-15份。
6.根据权利要求1所述的立体肌理成型夹芯面料的抗污后整理加工工艺,其特征在于:所述立体肌理成型夹芯面料通过热成型复合设备成型,该热成型复合设备成型包括喷绒区、复合区、水刺区和热处理区,所述喷绒区上设有相互并排的芯层纤维喷头和热敏辅助纤维喷头,所述喷绒区和复合区底部设有真空吸附箱,所述水刺区的丝网上方和下方交替设有水刺头,每个水刺头在丝网的相对侧设有真空吸附箱,所述热敏辅助纤维喷头的内部设有用于成型沟槽的螺旋凸纹和成型热敏触发凸条的螺旋凹槽。
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