CN106147640B - 一种表面广告用抗刮水晶膜 - Google Patents
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Abstract
本发明属于广告展示和装饰性材料技术领域,特别涉及一种表面广告用抗刮水晶膜,该水晶膜由上而下依次为保护膜层、透明硬质涂料层、PET膜层、光学透明胶层、硅油离型膜层。该透明硬质涂料层为丙烯酸涂料层,该丙烯酸酯涂料层为含有2‑6个官能团的丙烯酸酯类单体的混合单体。光学透明胶层包含聚丙烯酸酯、UV吸收剂0.4‑10%、溶剂、流平剂。水晶膜在耐热老化性能、耐紫外线光老化方面性能优异,而且高水晶膜具有自洁功能,灰尘不易粘附,容易清洁。可见光通过率为94%以上,可作为商城或是超市的玻璃上的宣传广告用。
Description
技术领域
本发明属于广告展示和装饰性材料技术领域,特别涉及一种表面广告用抗刮水晶膜。
背景技术
如今,广告宣传业迅速发展,我们随处可见大型商业广告。尤其是在户外或是大型商场、超市的玻璃上都会喷涂各种带有宣传广告图案。宣传图案的色彩要求非常高,清晰、透明、耐磨,这对广告表面的涂膜有着非常高的要求。
现有技术中的涂膜一般采用冷裱膜,胶水采用压敏胶,表面覆盖离型纸,但是时间长了后,由于紫外光的照射,压敏胶变黄,所以图案的色彩鲜艳程度受到一定影响。尤其是商城或是超市的玻璃,几乎每天都会擦洗,所以,现有技术中的冷裱膜不耐擦洗,抗刮性差,往往一段时间后,保护膜就会有很多擦痕,影响整个宣传图案的透明度。
如何将水晶膜技术不断改进,在简化制备工艺的基础上提高膜的透明度、抗刮性和使用性能,使得画面质量更佳,是我们要解决的技术问题。
发明内容
本发明的目的是提供一种表面广告用水晶膜,该膜的抗刮性及透明度非常优异,防水性好,耐光,并使得广告宣传图案的颜色鲜艳,不易褪色,使用时间长。
本发明的目的可以通过以下技术方案来实现:
一种表面广告用水晶膜,其特征在于:该水晶膜由上而下依次为保护膜层、透明硬质涂料层、PET膜层、光学透明胶层、硅油离型膜层。
所述保护膜层为PE保护膜膜层。所述离型膜层的材质为PET膜。
所述光学透明胶层包含以下重量百分数计的组分:
优选的,所述光学透明胶层包含以下重量百分数计的组分:
所述UV吸收剂为受阻胺类光稳定剂和苯并三唑类紫外线吸收剂按照重量比为1:4-10混合的混合物。
所述溶剂为乙酸乙酯、甲酸、丙酮中的一种或几种的混合溶剂。
所述固化剂为异氰酸酯。
所述流平剂为有机硅氧烷类流平剂。
所述透明硬质涂料层包含以下重量百分数计的组分为:
优选的,所述透明硬质涂料层包含以下重量百分数计的组分为:
所述丙烯酸涂料层,该丙烯酸涂料为丙烯酸酯类混合单体,其含有2-6个官能团的丙烯酸酯类单体的混合单体,其中,所述丙烯酸酯类混合单体中,4个官能团的丙烯酸酯类单体含量为混合单体总量的5-35wt%,5-6个官能团的丙烯酸酯类单体含量为混合单体总量的50-80wt%;2-3个官能团的丙烯酸酯类单体含量为混合单体总量的5-40wt%。该配比的丙烯酸胶层的抗刮性非常优异。
优选的,所述4个官能团的丙烯酸酯类单体为季戊四醇四丙烯酸酯;5-6个官能团的丙烯酸酯类单体为聚二季戊四醇五丙烯酸酯、聚二季戊四醇六丙烯酸酯;2-3个官能团的丙烯酸酯类单体为新戊二醇二丙烯酸酯、季戊四醇三丙烯酸酯。
所述光引发剂为苯并三唑类紫外线吸收剂;所述涂料溶剂为乙酸乙酯、甲酸或丙酮中的一种。所述低表面能添加剂为有机硅氧烷或聚四氟乙烯改性添加剂。
所述的表面广告用水晶膜的厚度为50-300μm。
本发明的有益效果是:
1、本发明制备的水晶膜在耐热老化性能、耐紫外线光老化方面性能优异,而且高水晶膜具有自洁功能,灰尘不易粘附,容易清洁。
2、在发明制备的水晶膜的平整性好,不易发生折射现象,抗刮性非常好,硬度高,透明度高,其可见光通过率为94%以上,可作为商城或是超市的玻璃上的宣传广告用。
具体实施方式
下面结合实施例,对本发明作进一步说明:
UV吸收剂,受阻胺类光稳定剂(HALS),汽巴公司;苯并三唑类紫外线吸收剂(UV-328),巴斯夫股份公司;季戊四醇四丙烯酸酯:上海诺泰化工;聚二季戊四醇五丙烯酸酯、聚二季戊四醇六丙烯酸酯、季戊四醇三丙烯酸酯:美国沙多玛公司;新戊二醇二丙烯酸酯:上海瑞硕化工;流平剂:迪高378。
实施例1
1)光学透明胶的制备:
称量以下重量比的原料:
聚丙烯酸酯,45%;UV吸收剂(HALS:UV-328=1:4),1.2%;异氰酸酯,5%;乙酸乙酯,47%;有机硅氧烷类流平剂,1.8%。
将上述原料加入聚合釜后搅拌混合,静置,过滤,检测,备用。
制得的光学透明胶的固含量为40%,软化点温度为75℃,表观粘度5500MPa.S,粘结强度2.4Kg/25mm。
2)、透明硬质涂料层制备
称量以下重量比的原料:
丙烯酸酯类混合单体,50%(其中季戊四醇四丙烯酸酯9wt%,聚二季戊四醇六丙烯酸酯80wt%,季戊四醇三丙烯酸酯11wt%);苯并三唑类紫外线吸收剂,2%;甲酸45.5%,聚四氟乙烯2.5%。搅拌混合,静置,过滤,检测,备用。
3)、水晶膜的制备:
在PET薄膜上涂布硅油,然后在硅油层上涂布10-30μm的光学透明胶,在光学透明胶层表面覆盖PET膜,烘干后再涂刷透明硬质涂料,UV固化以后;最后在上面覆盖PE保护膜。
实施例2
1)光学透明胶的制备:
称量以下重量比的原料:
聚丙烯酸酯,50%;UV吸收剂(HALS:UV-328=1:5),1.8%;异氰酸酯,4%;乙酸乙酯,42.6%;有机硅氧烷类流平剂,1.6%。
将上述原料加入聚合釜后搅拌混合,静置,过滤,检测,备用。
制得的光学透明胶的固含量为42%,软化点温度为74℃,表观粘度5560MPa.S,粘结强度2.5Kg/25mm。
2)、透明硬质涂料层制备
称量以下重量比的原料:
丙烯酸酯类混合单体,53.5%(其中季戊四醇四丙烯酸酯20wt%,聚二季戊四醇六丙烯酸酯62wt%,季戊四醇三丙烯酸酯18wt%);苯并三唑类紫外线吸收剂,4%;乙酸乙酯39.5%,聚硅氧烷3%。搅拌混合,静置,过滤,检测,备用。
3)、水晶膜的制备:
在PET薄膜上涂布硅油,然后在硅油层上涂布10-30μm的光学透明胶,在光学透明胶层表面覆盖PET膜,烘干后再涂刷透明硬质涂料,UV固化以后;最后在上面覆盖PE保护膜。
实施例3
2)光学透明胶的制备:
称量以下重量比的原料:
聚丙烯酸酯,55%;UV吸收剂(HALS:UV-328=1:6),3%;异氰酸酯,2.5%;甲酸,38.5%;有机硅氧烷类流平剂,1%。
将上述原料加入聚合釜后搅拌混合,静置,过滤,检测,备用。
制得的光学透明胶的固含量为42.5%,软化点温度为74℃,表观粘度5600MPa.S,粘结强度2.5Kg/25mm。
2)、透明硬质涂料层制备
称量以下重量比的原料:
丙烯酸酯类混合单体,45%(其中季戊四醇四丙烯酸酯15wt%,聚二季戊四醇六丙烯酸酯65wt%,季戊四醇三丙烯酸酯20wt%);苯并三唑类紫外线吸收剂,3%;乙酸乙酯48%,聚硅氧烷4%。搅拌混合,静置,过滤,检测,备用。
3)、水晶膜的制备:
在PET薄膜上涂布硅油,然后在硅油层上涂布10-30μm的光学透明胶,在光学透明胶层表面覆盖PET膜,烘干后再涂刷透明硬质涂料,UV固化以后;最后在上面覆盖PE保护膜。
测试:
在温度为100℃,时间为1000小时下进行耐紫外光老化测试,光源采用UVB313紫外灯,光照和凝露温度分别为60℃、40℃,时间为4小时,光照和凝露交替进行共1000小时,耐热氧老化和耐紫外光老化后的黄变指数(ΔYI)均按GB2409-80《塑料黄色指数实验方法》进行测试。
同时与市售的冷裱膜进行对比:
实施例1-3中制备的胶层的表面以A级面管控,无亮点,无颗粒,无线条纹路。而且改水晶膜的耐酒精性非常好,耐酸、耐碱性也非常优异。与市售的薄膜材料相比,其耐磨性、抗绕曲性、硬度、初粘力、剥离力等性能显著提升。
经过测试,上述实施例1-3中制备得到的水晶膜的平整度和挺度优异,透光率高,耐紫外线和耐热老化性能好,将其作为玻璃窗上的广告使用,耐候性非常好,使用1年无泛黄现象,尤其是实施例2中制备的水晶膜,性能特别好。
Claims (3)
1.一种表面广告用水晶膜,其特征在于:该水晶膜由上而下依次为保护膜层、透明硬质涂料层、PET膜层、光学透明胶层、硅油离型膜层,
所述光学透明胶层包含以下重量百分数计的组分:
所述流平剂为有机硅氧烷类流平剂,型号为迪高378;
所述UV吸收剂为受阻胺类光稳定剂和苯并三唑类紫外线吸收剂按照重量比为1:5混合的混合物;
所述透明硬质涂料层包含以下重量百分数计的组分为:
其中丙烯酸酯类混合单体中,季戊四醇四丙烯酸酯20wt%,聚二季戊四醇六丙烯酸酯62wt%,季戊四醇三丙烯酸酯18wt%。
2.根据权利要求1所述的表面广告用水晶膜,其特征在于:所述保护膜层为PE保护膜层。
3.根据权利要求1所述的表面广告用水晶膜,其特征在于:该表面广告用水晶膜的厚度为50-300μm。
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