CN107501682A - 一种鞋套用高弹抗菌防滑耐磨复合膜 - Google Patents

一种鞋套用高弹抗菌防滑耐磨复合膜 Download PDF

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CN107501682A
CN107501682A CN201710784586.9A CN201710784586A CN107501682A CN 107501682 A CN107501682 A CN 107501682A CN 201710784586 A CN201710784586 A CN 201710784586A CN 107501682 A CN107501682 A CN 107501682A
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刘超
孙冠军
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XINLE HUABAO MEDICAL PRODUCTS CO Ltd
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Abstract

本发明提供一种鞋套用高弹抗菌防滑耐磨复合膜,其具有里层面和外层面的双层结构,所述里层面包括以下重量份的组分,90‑95份低密度聚乙烯树脂、2‑3份抗菌剂和2‑3份增韧剂,外层面包括以下重量份的组分10‑20份低密度聚乙烯树脂、50‑60份聚烯烃弹性体、10‑20份碳酸钙、3‑5份硅酸镁、3‑5份磷酸三甲苯酯、0.2‑1份氧化锑、0.2‑1份增塑剂、0.2‑1份氧化铝粉和0.2‑1份硬酯酸镁,本发明通过设置双层结构,里层面具有防止细菌增生的特点,外层面具有高弹防滑耐磨的特点,并且通过添加碳酸钙作为母料的一部分,降低了产品密度、大幅降低产品成本。

Description

一种鞋套用高弹抗菌防滑耐磨复合膜
技术领域
本发明属于防护用品技术领域,具体涉及一种鞋套用高弹抗菌防滑耐磨复合膜。
背景技术
鞋套在医院手术室、微机室、无菌实验室等地方有着越来越广泛的需求,但是现有技术中的鞋套一般为一次性鞋套,耐磨性较差,而鞋套受到鞋底和地面受到的双层压力,同时由于个人行走习惯不同,鞋套受到磨损程度不同,一般情况下鞋套往往在穿一次后就不能够再重复利用,报废的鞋套作为塑料废弃物对环境处理压力较大,现有技术中的重复利用的鞋套多为增加鞋套底部用料,但是并未从实质上解决耐磨问题,而且生产成本较高,因此急需要设计研发一种耐磨的鞋套材料,可以解决鞋套仅仅能使用一次的问题。
发明内容
本发明的目的在于克服现有技术的缺陷,提供一种生产成本低,可以重复利用的具有鞋套用高弹抗菌防滑耐磨复合膜。
为了实现上述目的,本发明采取的技术方案如下:
一种鞋套用高弹抗菌防滑耐磨复合膜,其具有里层面和外层面的双层结构,所述里层面包括以下重量份的组分,90-95份低密度聚乙烯树脂、2-3份抗菌剂和2-3份增韧剂,外层面包括以下重量份的组分10-20份低密度聚乙烯树脂、50-60份聚烯烃弹性体、10-20份碳酸钙、3-5份硅酸镁、3-5份磷酸三甲苯酯、0.2-1份氧化锑、0.2-1份增塑剂、0.2-1份氧化铝粉和0.2-1份硬酯酸镁。
进一步的,所述里层面包括以下重量份的组分,92份低密度聚乙烯树脂、2.5份抗菌剂和2.5份增韧剂,外层面包括以下重量份的组分15份低密度聚乙烯树脂、55份聚烯烃弹性体、15份碳酸钙、4份硅酸镁、4份磷酸三甲苯酯、0.5份增塑剂、0.5份氧化铝粉以及0.5份硬酯酸镁。
进一步的,所述里层面厚度为100~200μm,所述外层面厚度为300~500μm。
进一步的,所述抗菌剂包括以下重量份的组分,3份纳米二氧化硅、4份纳米二氧化钛和3份硝酸银。
进一步的,所述增韧剂为丙烯酸酯类聚合物。
进一步的,所述硅酸镁颗粒的大小为30~50μm。
与现有技术相比,本发明所取得的有益效果如下:
本发明通过设置双层结构,里层面具有防止细菌增生的特点,有益于使用者身体健康,避免进水后容易感染的问题,外层面具有高弹防滑耐磨的特点,加工成鞋套使用时,由于耐磨性好可以重复多次使用,使用成本低廉,市场前景好,具有防滑效果,适用于高湿光滑地面环境下使用,弹性良好,穿着舒适,并且通过添加碳酸钙作为母料的一部分,降低了产品密度、大幅降低产品成本。
具体实施方式
下面通过实施例对本发明进行具体描述和说明:
实施例1
按比例将各组分称重,里层面采用90份低密度聚乙烯树脂作为里层面母料,2份抗菌剂和2份增韧剂作为里层面辅料,外层面包括以下重量份的组分10份低密度聚乙烯树脂、50份聚烯烃弹性体、10份碳酸钙作为外层面母料,3份硅酸镁、3份磷酸三甲苯酯、0.2份氧化锑、0.2份增塑剂、0.2份氧化铝粉和0.2份硬酯酸镁作为外层面辅料,采用以下步骤进行生产:
(1)将里层面辅料加入里层面辅料生成机中共混,然后将里层面辅料和里层面主料加入主挤出机中加热熔融,得里层熔体;将外层面辅料加入外层面辅料生成机中共混,然后将外层面辅料和外层面主料加入辅挤出机中加热熔融,得外层面熔体,所述两种熔体分别过滤,并在模头中汇合经模头挤出,挤出机模头温度为250℃;
(2)从模头挤出的熔体通过高压气刀贴附到30℃激冷辊上在30℃水浴中激冷形成铸片;
(3)铸片经过压辊及压缩空气除水进入纵向拉伸,铸片经过150℃预热, 并在130℃下纵向拉伸,拉伸倍率在5 .0;
(4)在纵向拉伸后再进行横向拉伸,在横向拉伸前以170℃进行预热,在150℃下进行拉伸,160℃热定型,拉伸倍率为7 .5;
(5)横向拉伸后的复合膜经过室温风冷后进入牵引展平系统进行测厚反馈、收卷、时效后分切、包装。
实施例2
按比例将各组分称重,里层面采用95份低密度聚乙烯树脂作为里层面母料,3份抗菌剂和3份增韧剂作为里层面辅料,外层面包括以下重量份的组分20份低密度聚乙烯树脂、60份聚烯烃弹性体、20份碳酸钙作为外层面母料,5份硅酸镁、5份磷酸三甲苯酯、1份氧化锑、1份增塑剂、1份氧化铝粉和1份硬酯酸镁作为外层面辅料,
采用以下步骤进行生产:
(1)将里层面辅料加入里层面辅料生成机中共混,然后将里层面辅料和里层面主料加入主挤出机中加热熔融,得里层熔体;将外层面辅料加入外层面辅料生成机中共混,然后将外层面辅料和外层面主料加入辅挤出机中加热熔融,得外层面熔体,所述两种熔体分别过滤,并在模头中汇合经模头挤出,挤出机模头温度为250℃;
(2)从模头挤出的熔体通过高压气刀贴附到30℃激冷辊上在30℃水浴中激冷形成铸片;
(3)铸片经过压辊及压缩空气除水进入纵向拉伸,铸片经过150℃预热, 并在130℃下纵向拉伸,拉伸倍率在5 .0;
(4)在纵向拉伸后再进行横向拉伸,在横向拉伸前以170℃进行预热,在150℃下进行拉伸,160℃热定型,拉伸倍率为7 .5;
(5)横向拉伸后的复合膜经过室温风冷后进入牵引展平系统进行测厚反馈、收卷、时效后分切、包装。
实施例3
按比例将各组分称重,里层面采用92份低密度聚乙烯树脂作为里层面母料,2.5份抗菌剂和2.5份增韧剂作为里层面辅料,外层面包括以下重量份的组分15份低密度聚乙烯树脂、55份聚烯烃弹性体、15份碳酸钙作为外层面母料,4份硅酸镁、4份磷酸三甲苯酯、0.5份氧化锑、0.5份增塑剂、0.5份氧化铝粉和0.5份硬酯酸镁作为外层面辅料,
采用以下步骤进行生产:
(1)将里层面辅料加入里层面辅料生成机中共混,然后将里层面辅料和里层面主料加入主挤出机中加热熔融,得里层熔体;将外层面辅料加入外层面辅料生成机中共混,然后将外层面辅料和外层面主料加入辅挤出机中加热熔融,得外层面熔体,所述两种熔体分别过滤,并在模头中汇合经模头挤出,挤出机模头温度为250℃;
(2)从模头挤出的熔体通过高压气刀贴附到30℃激冷辊上在30℃水浴中激冷形成铸片;
(3)铸片经过压辊及压缩空气除水进入纵向拉伸,铸片经过150℃预热, 并在130℃下纵向拉伸,拉伸倍率在5 .0;
(4)在纵向拉伸后再进行横向拉伸,在横向拉伸前以170℃进行预热,在150℃下进行拉伸,160℃热定型,拉伸倍率为7 .5;
(5)横向拉伸后的复合膜经过室温风冷后进入牵引展平系统进行测厚反馈、收卷、时效后分切、包装。
实施例1-3中,所述里层面厚度为100~200μm,所述外层面厚度为300~500μm,所述抗菌剂为纳米二氧化硅、纳米二氧化钛和硝酸银的混合物,配比为纳米二氧化硅:纳米二氧化钛:硝酸银=3:4:3,所述增韧剂为丙烯酸酯类聚合物,所述硅酸镁颗粒的大小为30~50μm。
耐磨性能对比:使用摩擦试验机进行耐磨性试验,依据摩擦前后试样的变化判断对比不同实施例产品的耐磨性。
检测结果如下:
测试层 耐磨性
实施例1 外层面 0.15g/ m2
实施例2 外层面 0.14g/ m2
实施例3 外层面 0.12g/m2
普通防滑膜 接触面 2.8g/m2
通过对比可发现,本发明所生产出来的产品与普通鞋套用防滑膜对比,产品耐磨性有了很大的提高,在作为鞋套使用时,可以大大增强其使用寿命,可以重复多次使用而不会直接被磨烂,减少了人工制品对环境造成的危害,并且降低了使用成本。
本发明除增加耐磨辅料外还采用了双层结构,里层面层添加了抗菌剂和增韧剂,抗菌剂防止细菌增生,有益于使用者身体健康,避免进水后容易感染的问题,外层面增加耐磨辅料后刚性增加,耐热性增加,但韧性降低,由于鞋套在使用时,主要受力点在于鞋接触的部位,为此采用在内层面增加增韧剂,保证内层面的韧性,而在外层面加入聚烯烃弹性体,增加外层面的弹性,采用这种方式保证鞋套用复合膜整体的舒适度和使用寿命,通过增加硅酸镁颗粒提高鞋套用复合膜的防滑性能,通过添加碳酸钙作为母料的一部分,降低了产品密度、大幅降低产品成本。在芯层加入碳酸钙母料使得产品整体密度降低至0 .6-0.8g/cm3,从而大幅降低了产品的使用成本,本发明提供的产品内层面抗菌抑菌,外层面防滑、弹性好、耐磨性能好使用寿命长,而且本发明所需的材料均为常规材料,具有价格低廉,容易采购,生产成本低的优势。
以上所述实施方式仅为本发明的优选实施例,而并非本发明可行实施的穷举。对于本领域一般技术人员而言,在不背离本发明原理和精神的前提下,对其所作出的任何显而易见的改动,都应当被认为包含在本发明的权利要求保护范围之内。

Claims (6)

1.一种鞋套用高弹抗菌防滑耐磨复合膜,其具有里层面和外层面的双层结构,其特征在于,所述里层面包括以下重量份的组分,90-95份低密度聚乙烯树脂、2-3份抗菌剂和2-3份增韧剂,外层面包括以下重量份的组分10-20份低密度聚乙烯树脂、50-60份聚烯烃弹性体、10-20份碳酸钙、3-5份硅酸镁、3-5份磷酸三甲苯酯、0.2-1份氧化锑、0.2-1份增塑剂、0.2-1份氧化铝粉和0.2-1份硬酯酸镁。
2.根据权利要求1所述的一种鞋套用高弹抗菌防滑耐磨复合膜,其特征在于,所述里层面包括以下重量份的组分,92份低密度聚乙烯树脂、2.5份抗菌剂和2.5份增韧剂,外层面包括以下重量份的组分15份低密度聚乙烯树脂、55份聚烯烃弹性体、15份碳酸钙、4份硅酸镁、4份磷酸三甲苯酯、0.5份氧化锑、0.5份增塑剂、0.5份氧化铝粉以及0.5份硬酯酸镁。
3.根据权利要求1所述的一种鞋套用高弹抗菌防滑耐磨复合膜,其特征在于,所述里层面厚度为100~200μm,所述外层面厚度为300~500μm。
4.根据权利要求1所述的一种鞋套用高弹抗菌防滑耐磨复合膜,其特征在于,所述抗菌剂包括以下重量份的组分,3份纳米二氧化硅、4份纳米二氧化钛和3份硝酸银。
5.根据权利要求1所述的一种鞋套用高弹抗菌防滑耐磨复合膜,其特征在于,所述增韧剂为丙烯酸酯类聚合物。
6.根据权利要求1所述的一种鞋套用高弹抗菌防滑耐磨复合膜,其特征在于,所述硅酸镁颗粒的大小为30~50μm。
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