CN108749677A - 一种绿色环保净化空气抗菌防滑汽车地垫及其制备方法 - Google Patents
一种绿色环保净化空气抗菌防滑汽车地垫及其制备方法 Download PDFInfo
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Abstract
本发明公开了一种绿色环保净化空气抗菌防滑汽车地垫及其制备方法,所述的汽车地垫从上到下依次为丝瓜络净化层、碳吸附层和基材层,其中丝瓜络净化层固载抗菌剂及光触媒助剂,碳吸附层为生物质基多孔道炭纤维,基材层为超高分子量聚乙烯/亚麻纤维层。本发明工艺简单,可实现大规模生产,具有良好的应用前景,该地垫柔软、舒适,具有抗菌、降尘、净化车内空气的优点、采用生物质材料绿色、环保、废弃物可再生降解。
Description
技术领域
本发明涉及纺织品领域,具体涉及一种绿色环保净化空气抗菌防滑汽车地垫及其制备方法。
背景技术
随着私家车辆的不断增加,我国汽车用品市场发展迅速、消费持续增高,汽车地垫作为汽车内装饰的重要组成部分,成为有车一族的主要消费品之一。汽车大都处于封闭环境中,车内空气中的有毒有害挥发性有机物对人体健康的影响越来越不容忽视。目前市面流通的车垫产品基本不含空气净化功能,造成应用的局限。
发明内容
发明目的:为了解决现有技术的不足,本发明提供了一种绿色环保净化空气抗菌防滑汽车地垫及其制备方法,该地垫脚感舒适,高抗菌功能、降尘、净化车内空气、强度高、耐磨性好,采用生物质材料绿色、环保、废弃物可再生降解。
技术方案:一种绿色环保净化空气抗菌防滑汽车地垫,所述的汽车地垫从上到下依次为丝瓜络净化层、碳吸附层和基材层,其中,所述的丝瓜络净化层固载抗菌剂及光触媒助剂,所述的碳吸附层为生物质基多孔道炭纤维,所述的基材层为超高分子量聚乙烯/亚麻纤维层;所述的丝瓜络净化层、碳吸附层和基材层采用丝线缝合编织或胶合的方式复合。
作为优化:所述的丝瓜络净化层通过以下步骤进行漂白软化处理:选择密度15-25kg/m3的丝瓜络为原料,截成1-3cm高度的丝瓜络饼,置于处理液中,浸泡温度70-90℃,浸泡时间40-50min,最后水洗至中性,60-70℃热风烘干;其中,所述的处理液配方如下:
过氧化氢(30%) 20-30g/L;
漂白精炼剂1012 10-15g/L;
耐强碱高温渗透剂TEP 10-15g/L。
作为优化:所述的丝瓜络净化层固载抗菌剂及光触媒助剂的具体操作如下:丝瓜络饼常温浸于抗菌剂及光触媒助剂中超声波分散1-3min后,二浸二轧,轧液率50-70%,红外线预烘,90℃烘干;其中,所述的抗菌剂及光触媒助剂配方如下:
作为优化:所述的碳吸附层为生物质基多孔道炭纤维无纺布,生物质基为麻类、棉花、木棉、椰壳、竹子中的一种或几种,纤维直径为70-150μm,无纺布层厚度为0.2-0.4cm。
作为优化:所述的基材层为超高分子量聚乙烯/亚麻纤维层,采用经编制造工艺织造,所述的经、纬纱均为32S/2~60S/2超高分子量聚乙烯/亚麻混纺纱,混纺比超高分子量聚乙烯:粘胶30:70,制备的基布厚度为0.08-0.3cm。
一种根据所述的绿色环保净化空气抗菌防滑汽车地垫的制备方法,所述的丝瓜络净化层、碳吸附层和基材层采用丝线缝合编织或胶合的方式复合;所述的丝线缝合编织中的丝线为30D~120D高分子量聚乙烯长丝;所述的胶合的方式复合中采用HF-1901R印花粘合剂,分别涂覆在碳吸附层两面,进行胶合,烘烤、温度为80~100℃,时间10~20s。
有益效果:本发明工艺简单,可实现大规模自动化生产,具有良好的应用前景,该地垫脚感舒适,支撑效果好,高抗菌功能、降尘、净化车内空气、强度高、耐磨性好,能有效缓解驾车疲劳,采用生物质材料绿色、环保、废弃物可再生降解。
本发明的丝瓜络净化层为丰富的再生生物质资源,绿色、质轻价廉、废弃物可生物降解,经过漂白软化纺染丝瓜络表面具有大量的大孔径通道,一方面提高有害气体的吸附率,一方面提高抗菌剂及光触媒助剂在纤维表面的固载。
本发明的固载抗菌剂及光触媒助剂的丝瓜络提供抗菌性能及车内有害气体特别是甲醛的光降解的性能。
本发明的碳吸附层为生物质基多孔道炭纤维无纺布提供绿色、环保的生物质基多孔道的吸附性能。生物质基多孔道炭纤维拥有较大的吸附容量、较快的吸附速率及容易再生等性能,同时具备优良的机械强度,以上性能均明显强于粒状活性炭。
本发明的基材层为超高分子量聚乙烯/亚麻纤维层经编网眼布层,提供强度高、耐磨性好、防噪、降尘、脚感舒适的基布。
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。
具体实施例1
一种绿色环保净化空气抗菌防滑汽车地垫,所述的汽车地垫从上到下依次为丝瓜络净化层、碳吸附层和基材层,其中,所述的丝瓜络净化层固载抗菌剂及光触媒助剂,所述的碳吸附层为生物质基多孔道炭纤维,所述的基材层为超高分子量聚乙烯/亚麻纤维层;所述的丝瓜络净化层、碳吸附层和基材层采用丝线缝合编织或胶合的方式复合。
所述的丝瓜络净化层通过以下步骤进行漂白软化处理:选择密度15kg/m3的丝瓜络为原料,截成1cm高度的丝瓜络饼,置于处理液中,浸泡温度70℃,浸泡时间40min,最后水洗至中性,60℃热风烘干;其中,所述的处理液配方如下:
过氧化氢(30%) 20g/L;
漂白精炼剂1012 10g/L;
耐强碱高温渗透剂TEP 10g/L。
所述的丝瓜络净化层固载抗菌剂及光触媒助剂的具体操作如下:丝瓜络饼常温浸于抗菌剂及光触媒助剂中超声波分散1min后,二浸二轧,轧液率50%,红外线预烘,90℃烘干;其中,所述的抗菌剂及光触媒助剂配方如下:
所述的碳吸附层为生物质基多孔道炭纤维无纺布,生物质基为麻类、棉花、木棉、椰壳、竹子中的一种或几种,纤维直径为70μm,无纺布层厚度为0.2cm。
所述的基材层为超高分子量聚乙烯/亚麻纤维层,采用经编制造工艺织造,所述的经、纬纱均为32S/2超高分子量聚乙烯/亚麻混纺纱,混纺比超高分子量聚乙烯:粘胶30:70,制备的基布厚度为0.08cm。
一种根据所述的绿色环保净化空气抗菌防滑汽车地垫的制备方法,所述的丝瓜络净化层、碳吸附层和基材层采用丝线缝合编织或胶合的方式复合;所述的丝线缝合编织中的丝线为30D高分子量聚乙烯长丝;所述的胶合的方式复合中采用HF-1901R印花粘合剂,分别涂覆在碳吸附层两面,进行胶合,烘烤、温度为80℃,时间10s。
具体实施例2
一种绿色环保净化空气抗菌防滑汽车地垫,所述的汽车地垫从上到下依次为丝瓜络净化层、碳吸附层和基材层,其中,所述的丝瓜络净化层固载抗菌剂及光触媒助剂,所述的碳吸附层为生物质基多孔道炭纤维,所述的基材层为超高分子量聚乙烯/亚麻纤维层;所述的丝瓜络净化层、碳吸附层和基材层采用丝线缝合编织或胶合的方式复合。
所述的丝瓜络净化层通过以下步骤进行漂白软化处理:选择密度25kg/m3的丝瓜络为原料,截成3cm高度的丝瓜络饼,置于处理液中,浸泡温度90℃,浸泡时间50min,最后水洗至中性,70℃热风烘干;其中,所述的处理液配方如下:
过氧化氢(30%) 30g/L;
漂白精炼剂1012 15g/L;
耐强碱高温渗透剂TEP 15g/L。
所述的丝瓜络净化层固载抗菌剂及光触媒助剂的具体操作如下:丝瓜络饼常温浸于抗菌剂及光触媒助剂中超声波分散3min后,二浸二轧,轧液率70%,红外线预烘,90℃烘干;其中,所述的抗菌剂及光触媒助剂配方如下:
所述的碳吸附层为生物质基多孔道炭纤维无纺布,生物质基为麻类、棉花、木棉、椰壳、竹子中的一种或几种,纤维直径为150μm,无纺布层厚度为0.4cm。
所述的基材层为超高分子量聚乙烯/亚麻纤维层,采用经编制造工艺织造,所述的经、纬纱均为60S/2超高分子量聚乙烯/亚麻混纺纱,混纺比超高分子量聚乙烯:粘胶30:70,制备的基布厚度为0.3cm。
一种根据所述的绿色环保净化空气抗菌防滑汽车地垫的制备方法,所述的丝瓜络净化层、碳吸附层和基材层采用丝线缝合编织或胶合的方式复合;所述的丝线缝合编织中的丝线为120D高分子量聚乙烯长丝;所述的胶合的方式复合中采用HF-1901R印花粘合剂,分别涂覆在碳吸附层两面,进行胶合,烘烤、温度为100℃,时间20s。
具体实施例3
一种绿色环保净化空气抗菌防滑汽车地垫,所述的汽车地垫从上到下依次为丝瓜络净化层、碳吸附层和基材层,其中,所述的丝瓜络净化层固载抗菌剂及光触媒助剂,所述的碳吸附层为生物质基多孔道炭纤维,所述的基材层为超高分子量聚乙烯/亚麻纤维层;所述的丝瓜络净化层、碳吸附层和基材层采用丝线缝合编织或胶合的方式复合。
所述的丝瓜络净化层通过以下步骤进行漂白软化处理:选择密度23kg/m3的丝瓜络为原料,截成2cm高度的丝瓜络饼,置于处理液中,浸泡温度80℃,浸泡时间43min,最后水洗至中性,66℃热风烘干;其中,所述的处理液配方如下:
过氧化氢(30%) 24g/L;
漂白精炼剂1012 12g/L;
耐强碱高温渗透剂TEP 14g/L。
所述的丝瓜络净化层固载抗菌剂及光触媒助剂的具体操作如下:丝瓜络饼常温浸于抗菌剂及光触媒助剂中超声波分散2min后,二浸二轧,轧液率60%,红外线预烘,90℃烘干;其中,所述的抗菌剂及光触媒助剂配方如下:
所述的碳吸附层为生物质基多孔道炭纤维无纺布,生物质基为麻类、棉花、木棉、椰壳、竹子中的一种或几种,纤维直径为110μm,无纺布层厚度为0.3cm。
所述的基材层为超高分子量聚乙烯/亚麻纤维层,采用经编制造工艺织造,所述的经、纬纱均为50S/2超高分子量聚乙烯/亚麻混纺纱,混纺比超高分子量聚乙烯:粘胶30:70,制备的基布厚度为0.2cm。
一种根据所述的绿色环保净化空气抗菌防滑汽车地垫的制备方法,所述的丝瓜络净化层、碳吸附层和基材层采用丝线缝合编织或胶合的方式复合;所述的丝线缝合编织中的丝线为90D高分子量聚乙烯长丝;所述的胶合的方式复合中采用HF-1901R印花粘合剂,分别涂覆在碳吸附层两面,进行胶合,烘烤、温度为90℃,时间14s。
本发明工艺简单,可实现大规模自动化生产,具有良好的应用前景,该地垫脚感舒适,支撑效果好,高抗菌功能、降尘、净化车内空气、强度高、耐磨性好,能有效缓解驾车疲劳,采用生物质材料绿色、环保、废弃物可再生降解。
本发明的丝瓜络净化层为丰富的再生生物质资源,绿色、质轻价廉、废弃物可生物降解,经过漂白软化纺染丝瓜络表面具有大量的大孔径通道,一方面提高有害气体的吸附率,一方面提高抗菌剂及光触媒助剂在纤维表面的固载。
本发明的固载抗菌剂及光触媒助剂的丝瓜络提供抗菌性能及车内有害气体特别是甲醛的光降解的性能。
本发明的碳吸附层为生物质基多孔道炭纤维无纺布提供绿色、环保的生物质基多孔道的吸附性能。生物质基多孔道炭纤维拥有较大的吸附容量、较快的吸附速率及容易再生等性能,同时具备优良的机械强度,以上性能均明显强于粒状活性炭。
本发明的基材层为超高分子量聚乙烯/亚麻纤维层经编网眼布层,提供强度高、耐磨性好、防噪、降尘、脚感舒适的基布。
Claims (6)
1.一种绿色环保净化空气抗菌防滑汽车地垫,其特征在于:所述的汽车地垫从上到下依次为丝瓜络净化层、碳吸附层和基材层,其中,所述的丝瓜络净化层固载抗菌剂及光触媒助剂,所述的碳吸附层为生物质基多孔道炭纤维,所述的基材层为超高分子量聚乙烯/亚麻纤维层;所述的丝瓜络净化层、碳吸附层和基材层采用丝线缝合编织或胶合的方式复合。
2.根据权利要求1所述的绿色环保净化空气抗菌防滑汽车地垫,其特征在于:所述的丝瓜络净化层通过以下步骤进行漂白软化处理:选择密度15-25kg/m3的丝瓜络为原料,截成1-3cm高度的丝瓜络饼,置于处理液中,浸泡温度70-90℃,浸泡时间40-50min,最后水洗至中性,60-70℃热风烘干;其中,所述的处理液配方如下:
过氧化氢(30%) 20-30g/L;
漂白精炼剂1012 10-15g/L;
耐强碱高温渗透剂TEP 10-15g/L。
3.根据权利要求1所述的绿色环保净化空气抗菌防滑汽车地垫,其特征在于:所述的丝瓜络净化层固载抗菌剂及光触媒助剂的具体操作如下:丝瓜络饼常温浸于抗菌剂及光触媒助剂中超声波分散1-3min后,二浸二轧,轧液率50-70%,红外线预烘,90℃烘干;其中,所述的抗菌剂及光触媒助剂配方如下:
4.根据权利要求1所述的绿色环保净化空气抗菌防滑汽车地垫,其特征在于:所述的碳吸附层为生物质基多孔道炭纤维无纺布,生物质基为麻类、棉花、木棉、椰壳、竹子中的一种或几种,纤维直径为70-150μm,无纺布层厚度为0.2-0.4cm。
5.根据权利要求1所述的绿色环保净化空气抗菌防滑汽车地垫,其特征在于:所述的基材层为超高分子量聚乙烯/亚麻纤维层,采用经编制造工艺织造,所述的经、纬纱均为32S/2~60S/2超高分子量聚乙烯/亚麻混纺纱,混纺比超高分子量聚乙烯:粘胶30:70,制备的基布厚度为0.08-0.3cm。
6.一种根据权利要求1所述的绿色环保净化空气抗菌防滑汽车地垫的制备方法,其特征在于:所述的丝瓜络净化层、碳吸附层和基材层采用丝线缝合编织或胶合的方式复合;所述的丝线缝合编织中的丝线为30D~120D高分子量聚乙烯长丝;所述的胶合的方式复合中采用HF-1901R印花粘合剂,分别涂覆在碳吸附层两面,进行胶合,烘烤、温度为80~100℃,时间10~20s。
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