CN203054251U - Ultra-thin anti-glare film for liquid crystal display - Google Patents
Ultra-thin anti-glare film for liquid crystal display Download PDFInfo
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- CN203054251U CN203054251U CN2012207019039U CN201220701903U CN203054251U CN 203054251 U CN203054251 U CN 203054251U CN 2012207019039 U CN2012207019039 U CN 2012207019039U CN 201220701903 U CN201220701903 U CN 201220701903U CN 203054251 U CN203054251 U CN 203054251U
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Abstract
Description
技术领域 technical field
本实用新型涉及抗反射涂层技术领域,尤其涉及一种液晶显示器用超薄型防眩膜。 The utility model relates to the technical field of anti-reflection coatings, in particular to an ultra-thin anti-glare film for liquid crystal displays.
背景技术 Background technique
液晶显示器作为一种非常普遍且极其重要的显示器,小到MP4、手机、相机;大到笔记本电脑、液晶电视机等。实际使用中,当外界光线映入其显示面,视觉辨认性会被显著损伤,在高亮度光线下操作图像更不易辨识,长时间观看此类屏幕对人的眼睛会造成很大的伤害,使人容易产生疲惫。 As a very common and extremely important display, liquid crystal display is as small as MP4, mobile phone, camera; as large as notebook computer, LCD TV, etc. In actual use, when the external light shines on the display surface, the visual recognition will be significantly damaged, and the image is more difficult to recognize when operating under high-brightness light. Watching this kind of screen for a long time will cause great damage to people's eyes. People are prone to fatigue.
为此,用户通常选择在显示器表面贴上一层防眩膜。目前,行业内常见的液晶显示器防眩膜一般由保护透明膜层,使用透明膜层,剥离透明膜层和防眩透明层等组成的多层结构,有的为了增加薄膜的耐刮花性能还加热了耐刮花透明膜层,进而导致整个防眩膜的厚度较大,影响防眩膜的粘贴使用。 For this reason, users usually choose to paste a layer of anti-glare film on the surface of the display. At present, the anti-glare film of liquid crystal display that is common in the industry is generally composed of a multi-layer structure consisting of a protective transparent film layer, a transparent film layer, a peeling transparent film layer and an anti-glare transparent layer. The scratch-resistant transparent film layer is heated, which in turn leads to a larger thickness of the entire anti-glare film, which affects the pasting and use of the anti-glare film.
此外,传统的防眩透明膜层大都选在该膜层内添加消光颗粒,不仅影响整个防眩膜的透光性,还由于消光颗粒的使用,无疑增加了防眩膜的制造成本。 In addition, the traditional anti-glare transparent film layer mostly chooses to add matting particles in the film layer, which not only affects the light transmission of the entire anti-glare film, but also undoubtedly increases the manufacturing cost of the anti-glare film due to the use of matting particles.
发明内容 Contents of the invention
针对现有技术中存在的缺陷,本实用新型的目的在于开发一种结构简单、制造成本低的液晶显示器用超薄型防眩膜。 Aiming at the defects in the prior art, the purpose of this utility model is to develop an ultra-thin anti-glare film for liquid crystal displays with simple structure and low manufacturing cost.
为达到以上目的,本实用新型采用如下技术方案。 In order to achieve the above object, the utility model adopts the following technical solutions.
一种液晶显示器用超薄型防眩膜,包括:保护透明膜层,使用透明膜层,剥离透明膜层;其特征在于:所述使用透明膜层上设有多个贯穿其上下表面的孔洞,所述孔洞的口径在0.1μm-10μm之间。 An ultra-thin anti-glare film for a liquid crystal display, comprising: protecting a transparent film layer, using the transparent film layer, and peeling off the transparent film layer; it is characterized in that: the used transparent film layer is provided with a plurality of holes penetrating through its upper and lower surfaces , the diameter of the hole is between 0.1 μm-10 μm.
作为改进地,所述孔洞的形状为圆形,方形,三角形,星形中的一种或几种。 As an improvement, the shape of the hole is one or more of circle, square, triangle and star.
作为改进地,所述使用透明膜层上设有耐刮花层,所述孔洞设置在耐刮花层上,所述耐刮花层的厚度为孔洞口径的1.5倍到2倍之间。 As an improvement, the transparent film layer is provided with a scratch-resistant layer, the holes are arranged on the scratch-resistant layer, and the thickness of the scratch-resistant layer is between 1.5 times and 2 times the hole diameter.
作为改进地,所述使用透明膜层下设有玻璃纤维层,所述孔洞设置在玻璃纤维层上,该剥离纤维层的厚度为孔洞口径的1.5倍-2倍之间。 As an improvement, a glass fiber layer is provided under the transparent film layer, the holes are arranged on the glass fiber layer, and the thickness of the stripped fiber layer is between 1.5 times and 2 times the hole diameter.
与现有技术相比,本实用新型提供的一种液晶显示器用超薄型防眩膜具有以下有益效果。 Compared with the prior art, the ultra-thin anti-glare film for liquid crystal displays provided by the utility model has the following beneficial effects.
一、通过在使用透明膜层上设置多个贯穿其上下表面的孔洞,利用孔洞对外界光线的散射来达到防眩光的目的,避免防眩透明膜层的使用,有效降低整个防眩膜的厚度,利于防眩膜的薄型化设计。 1. By setting a number of holes through the upper and lower surfaces of the transparent film layer, using the holes to scatter the external light to achieve the purpose of anti-glare, avoiding the use of anti-glare transparent film layer, effectively reducing the thickness of the entire anti-glare film , which is conducive to the thin design of the anti-glare film.
二、通过在使用透明膜层上设置耐刮花层,在耐刮花层上设置孔洞,将耐刮花层和防眩层有机结合,耐刮花、防眩光效果明显;同时,孔洞口径为0.1μm-10μm,耐刮花层的厚度仅为孔洞口径的1.5倍到2倍之间,保证了整个防眩膜的厚度。 2. By setting a scratch-resistant layer on the transparent film layer and setting holes on the scratch-resistant layer, the scratch-resistant layer and the anti-glare layer are organically combined, and the scratch-resistant and anti-glare effects are obvious; at the same time, the hole diameter is 0.1μm-10μm, the thickness of the scratch-resistant layer is only between 1.5 times and 2 times the diameter of the hole, which ensures the thickness of the entire anti-glare film.
三、通过在设有玻璃纤维层,将孔洞设置在玻璃纤维层上,方便防眩膜的加工制造。 3. By providing a glass fiber layer, the holes are arranged on the glass fiber layer, which facilitates the processing and manufacturing of the anti-glare film.
附图说明 Description of drawings
图1所示为本实用新型实施例一结构示意图; Fig. 1 is a schematic structural view of the utility model embodiment one;
图2所示为本实用新型实施例一的使用层俯视图;
Fig. 2 shows the top view of the use layer of
图3所示为本实用新型实施例二的结构示意图; Fig. 3 shows the structural representation of the second embodiment of the utility model;
图4所示为本实用新型实施例三的结构示意图。
Fig. 4 is a schematic structural diagram of
附图标记说明: Explanation of reference signs:
1、保护透明膜层, 2、使用透明膜层, 3、剥离透明膜层, 21、41、51、孔洞, 4、耐刮花层, 5、玻璃纤维层。 1. Protect the transparent film layer, 2. Use the transparent film layer, 3. Peel off the transparent film layer, 21, 41, 51, holes, 4. Scratch-resistant layer, 5. Glass fiber layer.
具体实施方式 Detailed ways
为进一步阐述本实用新型的实质,结合附图对本实用新型的具体实施方式说明如下。 In order to further illustrate the essence of the utility model, the specific implementation of the utility model is described as follows in conjunction with the accompanying drawings.
实施例一Embodiment one
如图1、图2所示,一种液晶显示器用超薄型防眩膜,包括:保护透明膜层1,使用透明膜层2,剥离透明膜层3;其特征在于:所述使用透明膜层2上设有多个贯穿其上下表面的孔洞21,所述孔洞21的口径在0.1μm-10μm之间,每相邻两个孔洞之间间隔10μm-100μm。本实施例中,所述孔洞21的形状优选为圆柱状,孔洞21的口径优选为4μm,每相邻两个孔洞21之间间隔10μm。其他实施方式中,所述孔洞的横截面形状为圆形,方形,三角形,星形中的一种或几种。
As shown in Fig. 1 and Fig. 2, a kind of ultra-thin anti-glare film for liquid crystal display comprises: protective
实施例二Embodiment two
如图3所示,一种液晶显示器用超薄型防眩膜,包括:保护透明膜层1,使用透明膜层2,剥离透明膜层3;其特征在于:所述使用透明膜层1上设有耐刮花层4,所述耐刮花层4上设有贯穿其上下表面的孔洞41。其中,孔洞41的口径为1μm-10μm,所述耐刮花层4的厚度为孔洞41口径的1.5倍到2倍之间。本实施例中,所述孔洞41的口径优选为4μm,每相邻两个孔洞41之间间隔50μm,耐刮花层4的厚度为孔洞41口径的2倍。
As shown in Figure 3, a kind of ultra-thin anti-glare film for liquid crystal display, comprises: protective
实施例三Embodiment three
如图4所示,一种液晶显示器用超薄型防眩膜,包括:保护透明膜层1,使用透明膜层2,剥离透明膜层3;其特征在于:所述使用透明膜层1下玻璃纤维层5,该玻璃纤维层5上设有孔洞51;所述孔洞51的口径为1μm-10μm,所述剥离纤维层的厚度为孔洞51口径的1.5倍-2倍。本实施例中,所述孔洞51的口径优选为2μm,每相邻两个孔洞51之间间隔100μm,玻璃纤维层5的厚度为孔洞51口径的1.5倍。
As shown in Figure 4, a kind of ultra-thin anti-glare film for liquid crystal display, comprises: protective
以上具体实施方式对本实用新型的实质进行了详细说明,但并不能以此来对本实用新型的保护范围进行限制。显而易见地,在本实用新型实质的启示下,本技术领域普通技术人员还可进行许多改进和修饰,需要注意的是,这些改进和修饰都落在本实用新型的权利要求保护范围之内。 The above specific embodiments have described the essence of the utility model in detail, but the protection scope of the utility model cannot be limited by this. Obviously, under the enlightenment of the essence of the utility model, those skilled in the art can also make many improvements and modifications. It should be noted that these improvements and modifications all fall within the protection scope of the claims of the utility model.
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106915124A (en) * | 2015-12-24 | 2017-07-04 | 联想(北京)有限公司 | A kind of protective layer, electronic equipment and preparation method |
CN111714283A (en) * | 2020-07-24 | 2020-09-29 | 湖北航天化学技术研究所 | Anti-reflective protective glasses |
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2012
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106915124A (en) * | 2015-12-24 | 2017-07-04 | 联想(北京)有限公司 | A kind of protective layer, electronic equipment and preparation method |
CN111714283A (en) * | 2020-07-24 | 2020-09-29 | 湖北航天化学技术研究所 | Anti-reflective protective glasses |
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Granted publication date: 20130710 Termination date: 20191218 |