CN111114079A - 一种炫彩变光防爆隔热窗膜 - Google Patents
一种炫彩变光防爆隔热窗膜 Download PDFInfo
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Abstract
本发明提供一种炫彩变光防爆隔热窗膜,包括SR耐刮涂层,上部PET层,调光涂层,抗老化PU聚氨酯涂层,中间PET层,PSA压感式涂层一,UV抗老化涂层一,无机环保涂层,下部PET层,超耐候绚丽涂层,PSA压感式涂层二,UV抗老化涂层二和RF离型膜层,所述的SR耐刮涂层喷涂在上部PET层的上表面;所述的上部PET层,中间PET层和下部PET层相互之间胶接设置。本发明抗老化PU聚氨酯涂层胶力强长期不会变质,同时可以达到VLT透射率达到35%—80%,UV防紫外99.9%,IR防红外线90%,提升其隔热能力,采用的光谱发射变色,不会褪色使用寿命较长,效果稳定;能够有效的起到防爆隔热的效果,能持久的阻隔紫外线,且具有优异的抗划伤、耐老化性能。
Description
技术领域
本发明属于窗膜技术领域,尤其涉及一种炫彩变光防爆隔热窗膜。
背景技术
按照应用领域的不同,目前玻璃窗膜大致分为三类:建筑玻璃窗膜、汽车玻璃窗膜、安全玻璃窗膜,窗膜的应用越来越广泛,到2000年以后,隔热膜、抗爆膜大量使用在汽车上,安全膜大量使用在银行柜台上。
建筑物内的家具、地毯、艺术画、窗帘等织物或者汽车内饰在阳光或强烈人造光照下会加速老化,随着使用时间的不断增加,窗膜的外观及物理性能也会逐渐下降。另外,在紫外光照下,会产生光氧化降解而导致大大缩短其使用寿命,目前,国内大多数窗膜产品存在紫外屏蔽性能差且耐老化性能不佳等问题,即窗膜对紫外线的阻隔率<90%。同时,现有的窗膜面临着抗划伤、耐老化性差的问题。
另外,中国专利公开号为CN109664735A,发明创造名称为一种汽车玻璃防霜膜,本发明解决技术问题的方案是采用塑料膜、套筒、缠绕杆、右把手和左把手构成一种汽车玻璃防霜膜,套筒连接在塑料膜上边沿处,缠绕杆穿过套筒,缠绕杆截面为非圆形,缠绕杆与右把手固定连接,缠绕杆的左端有外螺纹,左把手上有盲孔,盲孔内有与缠绕杆外螺纹配合的内螺纹。但是现有的窗膜还存在着颜色膜容易褪色,常规的变色膜是用颜色调色显示出炫彩效果导致效果较差的问题。
有鉴于此,发明一种炫彩变光防爆隔热窗膜是非常必要的。
发明内容
为了解决上述技术问题,本发明提供一种炫彩变光防爆隔热窗膜,以解决现有的窗膜颜色膜容易褪色,常规的变色膜是用颜色调色显示出炫彩效果导致效果较差的问题。一种炫彩变光防爆隔热窗膜,包括SR耐刮涂层,上部PET层,调光涂层,抗老化PU聚氨酯涂层,中间PET层,PSA压感式涂层一,UV抗老化涂层一,无机环保涂层,下部PET层,超耐候绚丽涂层,PSA压感式涂层二,UV抗老化涂层二和RF离型膜层,所述的SR耐刮涂层喷涂在上部PET层的上表面;所述的上部PET层,中间PET层和下部PET层相互之间胶接设置。
优选的,所述的上部PET层和中间PET层之间从上到下依次设置有调光涂层和抗老化PU聚氨酯涂层。
优选的,所述的中间PET层的下部依次胶接有PSA压感式涂层一,UV抗老化涂层一和无机环保涂层。
优选的,所述的下部PET层的下部胶接有超耐候绚丽涂层,PSA压感式涂层二,UV抗老化涂层二和RF离型膜层。
优选的,所述的炫彩变光防爆隔热窗膜的总厚度设置在100um-110um。
优选的,所述的RF离型膜层的厚度设置在23um-36um。
优选的,所述的超耐候绚丽涂层采用光谱发射变色。
优选的,所述的抗老化PU聚氨酯涂层胶接在中间PET层的上部。
优选的,所述的SR耐刮涂层的厚度设置1um至3um。
优选的,所述的调光涂层和抗老化PU聚氨酯涂层加在一起的厚度设置在5um至8um。
优选的,所述的超耐候绚丽涂层具体采用全光谱反射涂层;所述的超耐候绚丽涂层的厚度设置在1um至3um。
优选的,所述的PSA压感式涂层二和UV抗老化涂层二加在一起的厚度设置在3um至6um。
与现有技术相比,本发明的有益效果为:抗老化PU聚氨酯涂层胶力强长期不会变质,同时可以达到VLT透射率达到35%—80%,UV防紫外99.9%,IR防红外线90%,提升其隔热能力,采用的光谱发射变色,不会褪色使用寿命较长,效果稳定;能够有效的起到防爆隔热的效果,能持久的阻隔紫外线,且具有优异的抗划伤、耐老化性能。
附图说明
图1是本发明的结构示意图。
图中:
1、SR耐刮涂层;2、上部PET层;3、调光涂层;4、抗老化PU聚氨酯涂层;5、中间PET层;6、PSA压感式涂层一;7、UV抗老化涂层一;8、无机环保涂层;9、下部PET层;10、超耐候绚丽涂层;11、PSA压感式涂层二;12、UV抗老化涂层二;13、RF离型膜层。
具体实施方式
以下结合附图对本发明做进一步描述:
实施例:
如附图1所示,本发明提供一种炫彩变光防爆隔热窗膜,包括SR耐刮涂层1,上部PET层2,调光涂层3,抗老化PU聚氨酯涂层4,中间PET层5,PSA压感式涂层一6,UV抗老化涂层一7,无机环保涂层8,下部PET层9,超耐候绚丽涂层10,PSA压感式涂层二11,UV抗老化涂层二12和RF离型膜层13,所述的SR耐刮涂层1喷涂在上部PET层2的上表面;所述的上部PET层2,中间PET层5和下部PET层9相互之间胶接设置。
本实施方案中,具体的,所述的上部PET层2和中间PET层5之间从上到下依次设置有调光涂层3和抗老化PU聚氨酯涂层4。
本实施方案中,具体的,所述的中间PET层5的下部依次胶接有PSA压感式涂层一6,UV抗老化涂层一7和无机环保涂层8。
本实施方案中,具体的,所述的下部PET层9的下部胶接有超耐候绚丽涂层10,PSA压感式涂层二11,UV抗老化涂层二12和RF离型膜层13。
本实施方案中,具体的,所述的炫彩变光防爆隔热窗膜的总厚度设置在100um-110um。
本实施方案中,具体的,所述的RF离型膜层13的厚度设置在23um-36um。
本实施方案中,具体的,所述的超耐候绚丽涂层10采用光谱发射变色。
本实施方案中,具体的,所述的抗老化PU聚氨酯涂层4胶接在中间PET层5的上部。
本实施方案中,具体的,所述的SR耐刮涂层1的厚度设置1um至3um。
本实施方案中,具体的,所述的调光涂层3和抗老化PU聚氨酯涂层4加在一起的厚度设置在5um至8um。
本实施方案中,具体的,所述的超耐候绚丽涂层10具体采用全光谱反射涂层;所述的超耐候绚丽涂层10的厚度设置在1um至3um。
本实施方案中,具体的,所述的PSA压感式涂层二11和UV抗老化涂层二12加在一起的厚度设置在3um至6um。
本发明在使用时,抗老化PU聚氨酯涂层4胶力强长期不会变质,同时可以达到VLT透射率达到35%—80%,UV防紫外99.9%,IR防红外线90%,,提升其隔热能力,采用的光谱发射变色,不会褪色使用寿命较长,效果稳定;能够有效的起到防爆隔热的效果,能持久的阻隔紫外线,且具有优异的抗划伤、耐老化性能。
最后应说明的是:以上所述仅为本发明的优选实施例而已,并不用于限制本发明,尽管参照前述实施例对本发明进行了详细的说明,对于本领域的技术人员来说,其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换。凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。
Claims (9)
1.一种炫彩变光防爆隔热窗膜,其特征在于,该炫彩变光防爆隔热窗膜,包括SR耐刮涂层(1),上部PET层(2),调光涂层(3),抗老化PU聚氨酯涂层(4),中间PET层(5),PSA压感式涂层一(6),UV抗老化涂层一(7),无机环保涂层(8),下部PET层(9),超耐候绚丽涂层(10),PSA压感式涂层二(11),UV抗老化涂层二(12)和RF离型膜层(13),所述的SR耐刮涂层(1)喷涂在上部PET层(2)的上表面;所述的上部PET层(2),中间PET层(5)和下部PET层(9)相互之间胶接设置。
2.如权利要求1所述的炫彩变光防爆隔热窗膜,其特征在于,所述的上部PET层(2)和中间PET层(5)之间从上到下依次设置有调光涂层(3)和抗老化PU聚氨酯涂层(4)。
3.如权利要求1所述的炫彩变光防爆隔热窗膜,其特征在于,所述的中间PET层(5)的下部依次胶接有PSA压感式涂层一(6),UV抗老化涂层一(7)和无机环保涂层(8)。
4.如权利要求1所述的炫彩变光防爆隔热窗膜,其特征在于,所述的下部PET层(9)的下部胶接有超耐候绚丽涂层(10),PSA压感式涂层二(11),UV抗老化涂层二(12)和RF离型膜层(13)。
5.如权利要求1所述的炫彩变光防爆隔热窗膜,其特征在于,所述的炫彩变光防爆隔热窗膜的总厚度设置在100um-110um。
6.如权利要求1所述的炫彩变光防爆隔热窗膜,其特征在于,所述的RF离型膜层(13)的厚度设置在23um-36um。
7.如权利要求1所述的炫彩变光防爆隔热窗膜,其特征在于,所述的抗老化PU聚氨酯涂层(4)胶接在中间PET层(5)的上部。
8.如权利要求1所述的炫彩变光防爆隔热窗膜,其特征在于,所述的SR耐刮涂层(1)的厚度设置1um至3um。
9.如权利要求1所述的炫彩变光防爆隔热窗膜,其特征在于,所述的超耐候绚丽涂层(10)具体采用全光谱反射涂层;所述的超耐候绚丽涂层(10)的厚度设置在1um至3um。
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