CN106915136A - 一种新型透视膜 - Google Patents
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Abstract
本发明涉及一种采用烫印工艺制备的透视膜,该材料包括基材层,胶水层,离型层顺序叠层的层状结构,其特征在于:所述的基材层一面可喷绘,与之相对的一面上包含采用烫印工艺制备而成的,均匀分布、不透明的规则形状,本发明采用烫印工艺制备单透膜,工艺简单方便,废品率底,同时不会产生翘边,产品质量更稳定环保。
Description
技术领域
本发明涉及薄膜领域,具体涉及一种采用烫印工艺制备的新型透视膜。
背景技术
目前,单透产品广泛应用于汽车、建筑外墙玻璃,广告喷绘以及多种需要遮蔽户外光线的场合,它使用方便,安装施工快捷简便,只需一撕一贴即成。单透产品的生产一般采用两种工艺,一种为薄膜背胶打孔,然后更换底纸,但该种生产方法存在打孔率低、废品率高、生产垃圾多等缺点;另一种采用薄膜背面印刷显色层,虽然该种生产方法解决了打孔工艺所造成的缺点,但是其增加了印刷工艺,增加了工艺难度,同时也造成了相对较高的生产废品。
发明内容
本发明的目的在于:针对现有技术的不足,提供了一种在透明膜上采用烫印工艺制备出均匀分布、不透明规则形状的新型透视膜。
为了实现上述目的,本发明采用了以下的技术方案。
一种新型透视膜,该材料包括基材层,胶水层,离型层顺序叠层的层状结构,其特征在于:所述的基材层一面可喷绘,与之相对的一面上包含采用烫印工艺制备而成的,均匀分布、不透明的规则形状。
所述的胶水层为可移压敏胶。
所述的基材层为透明可喷绘的PVC或PET或TPU或其它透明薄膜。
所述的基材层采用烫印工艺制备而成的,均匀分布、不透明的规则形状包括圆形、方形、长方形或其它几何形状。
所述的离型层为单面离型的纸或薄膜。
所述的胶水层厚度为0.015~0.03mm。
所述的基材层厚度为0.05~0.15mm。
一种新型透视膜,其工艺方法包括如下步骤:
1) 将离型纸或离型膜大卷上到辊轴上放卷;
2) 转至涂胶轴处在离型纸或离型膜的离型面涂布胶水;
3) 分段烘干,烘箱的分段烘干温度为65~120℃;
4) 同时将基材层上到辊轴上放卷,在辊轴的带动下,基材层经过带有均匀分布、规则形状的烫印辊进行烫印,在基材层表面形成均匀分布、不透明的规则形状;
5) 烫印后含有均匀分布、不透明规则形状的基材层一面与涂布好胶水的离型纸或离型膜加压贴合;
6) 单透膜半成品冷却、收卷;
7) 质量检验,分切包装,入库。
所述的工艺方法步骤4)中烫印辊烫印温度为60℃~120℃。
所述的工艺方法步骤4)和5)中烫印辊规则形状为圆形、方形、长方形或其它几何形状。
本发明与现有技术相比具有以下有益效果。
1.本发明采用烫印工艺,生产方法简单,不需要增加其它材料,方便控制。
2.本发明生产的产品废品率底,同时产品不会像打孔工艺造成的翘边、断裂等现象。
3.本发明采用的烫印工艺相较于通孔与印刷制备单透工艺生产效率高,产品稳定性更优良。
4.本发明采用烫印工艺,对薄膜本身进行烫花而确保其部分不透明,该工艺不会像打孔工艺造成噪音污染,产品更环保。
附图说明
图1为本发明的实施例结构示意图。
其中:1-基材层,2-胶水层,3-离型层。
具体实施方式
下面通过实施例,并结合附图,对本发明专利做进一步说明。请参阅图1,本发明
实施例1包括:
一种新型透视膜,该材料包括基材层1,胶水层2,离型层3顺序叠层的层状结构,其特征在于:所述的基材层1一面可喷绘,与之相对的一面上包含采用烫印工艺制备而成的,均匀分布、不透明的规则形状。
所述的胶水层2为可移压敏胶。
所述的基材层1为透明可喷绘的PVC薄膜。
所述的基材层1采用烫印工艺制备而成的,均匀分布、不透明的规则形状为圆形。
所述的离型层3为单面离型的纸。
所述的胶水层2厚度为0.02mm。
所述的基材层1厚度为0.1mm。
一种新型透视膜,其工艺方法包括如下步骤:
1) 将离型纸或离型膜大卷上到辊轴上放卷;
2) 转至涂胶轴处在离型纸或离型膜的离型面涂布胶水;
3) 分段烘干,烘箱的分段烘干温度为65℃~120℃;
4) 同时将基材层上到辊轴上放卷,在辊轴的带动下,基材层经过带有均匀分布、规则形状的烫印辊进行烫印,在基材层表面形成均匀分布、不透明的规则形状;
5) 烫印后含有均匀分布、不透明规则形状的基材层一面与涂布好胶水的离型纸或离型膜加压贴合;
6) 单透膜半成品冷却、收卷;
7) 质量检验,分切包装,入库。
所述的工艺方法步骤4)中烫印辊烫印温度为80℃。
所述的工艺方法步骤4)和5)中烫印辊规则形状为圆形。
实施例2包括:
一种新型透视膜,该材料包括基材层1,胶水层2,离型层3顺序叠层的层状结构,其特征在于:所述的基材层1一面可喷绘,与之相对的一面上包含采用烫印工艺制备而成的,均匀分布、不透明的规则形状。
所述的胶水层2为可移压敏胶。
所述的基材层1为透明可喷绘的PET薄膜。
所述的基材层1采用烫印工艺制备而成的,均匀分布、不透明的规则形状为方形。
所述的离型层3为单面离型的薄膜。
所述的胶水层2厚度为0.025mm。
所述的基材层1厚度为0.12mm。
一种新型透视膜,其工艺方法包括如下步骤:
1) 将离型纸或离型膜大卷上到辊轴上放卷;
2) 转至涂胶轴处在离型纸或离型膜的离型面涂布胶水;
3) 分段烘干,烘箱的分段烘干温度为65℃~120℃;
4) 同时将基材层上到辊轴上放卷,在辊轴的带动下,基材层经过带有均匀分布、规则形状的烫印辊进行烫印,在基材层一表面形成均匀分布、不透明的规则形状;
5) 烫印后含有均匀分布、不透明规则形状的基材层一面与涂布好胶水的离型纸或离型膜加压贴合;
6) 单透膜半成品冷却、收卷;
7) 质量检验,分切包装,入库。
所述的工艺方法步骤4)中烫印辊烫印温度为60℃。
所述的工艺方法步骤4)和5)中烫印辊规则形状为方形。
Claims (10)
1.一种新型透视膜,该材料包括基材层,胶水层,离型层顺序叠层的层状结构,其特征在于:所述的基材层一面可喷绘,与之相对的一面上包含采用烫印工艺制备而成的,均匀分布、不透明的规则形状。
2.根据权利要求1所述的一种新型透视膜,其特征在于所述的胶水层为可移压敏胶。
3.根据权利要求1所述的一种新型透视膜,其特征在于所述的基材层为透明可喷绘的PVC或PET或TPU或其它透明薄膜。
4.根据权利要求1所述的一种新型透视膜,其特征在于所述的基材层采用烫印工艺制备而成的,均匀分布、不透明的规则形状为圆形、方形、长方形或其它几何形状。
5.根据权利要求1所述的一种新型透视膜,其特征在于所述的离型层为单面离型的纸或薄膜。
6.根据权利要求1所述的一种新型透视膜,其特征在于所述的胶水层厚度为0.015~0.03mm。
7.根据权利要求1所述的一种新型透视膜,其特征在于所述的基材层厚度为0.05~0.15mm。
8.一种新型透视膜,其工艺方法包括如下步骤:
1)将离型纸或离型膜大卷上到辊轴上放卷;
2)转至涂胶轴处在离型纸或离型膜的离型面涂布胶水;
3)分段烘干,烘箱的分段烘干温度为65℃~120℃;
4) 同时将基材层上到辊轴上放卷,在辊轴的带动下,基材层经过带有均匀分布、规则形状的烫印辊进行烫印,在基材层表面形成均匀分布、不透明的规则形状;
5)烫印后含有均匀分布、不透明规则形状的基材层一面与涂布好胶水的离型纸或离型膜加压贴合;
6)单透膜半成品冷却、收卷;
7)质量检验,分切包装,入库。
9.根据权利要求8所述的一种新型透视膜,其特征在于所述的工艺方法步骤4)中烫印辊烫印温度为60℃~120℃。
10.根据权利要求10所述的一种新型透视膜,其特征在于所述的工艺方法步骤4)和5)中烫印辊规则形状为圆形、方形、长方形或其它几何形状。
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CN108071043A (zh) * | 2017-12-18 | 2018-05-25 | 温州市新丰装饰材料有限公司 | 一种创可贴用格拉辛离型纸制作工艺 |
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CN101497502A (zh) * | 2008-02-03 | 2009-08-05 | 陈威 | 一种用于玻璃间隔和玻璃、镜面表面装饰的花纸及其制作工艺 |
CN102729549A (zh) * | 2011-04-01 | 2012-10-17 | 杨子德 | 一种柔性转移膜及其制造方法 |
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JP2001191642A (ja) * | 1999-10-22 | 2001-07-17 | L'oreal Sa | ホットマーキング法及びかかる方法の実施に用いられる多層構造 |
CN101497502A (zh) * | 2008-02-03 | 2009-08-05 | 陈威 | 一种用于玻璃间隔和玻璃、镜面表面装饰的花纸及其制作工艺 |
CN102729549A (zh) * | 2011-04-01 | 2012-10-17 | 杨子德 | 一种柔性转移膜及其制造方法 |
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CN108071043A (zh) * | 2017-12-18 | 2018-05-25 | 温州市新丰装饰材料有限公司 | 一种创可贴用格拉辛离型纸制作工艺 |
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