WO2017031709A1 - 一种智能钢化玻璃保护膜及其制作方法 - Google Patents

一种智能钢化玻璃保护膜及其制作方法 Download PDF

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WO2017031709A1
WO2017031709A1 PCT/CN2015/088076 CN2015088076W WO2017031709A1 WO 2017031709 A1 WO2017031709 A1 WO 2017031709A1 CN 2015088076 W CN2015088076 W CN 2015088076W WO 2017031709 A1 WO2017031709 A1 WO 2017031709A1
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tempered glass
protective film
smart
glass protective
touch
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PCT/CN2015/088076
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English (en)
French (fr)
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李文
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李文
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
    • B32BLAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
    • B32B17/00Layered products essentially comprising sheet glass, or glass, slag, or like fibres
    • B32B17/02Layered products essentially comprising sheet glass, or glass, slag, or like fibres in the form of fibres or filaments
    • B32B17/04Layered products essentially comprising sheet glass, or glass, slag, or like fibres in the form of fibres or filaments bonded with or embedded in a plastic substance
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means

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  • the invention belongs to a mobile phone accessory, in particular to a film for screen protection of a mobile phone and a manufacturing method thereof.
  • Mobile phone film also known as mobile phone cosmetic film, mobile phone protective film, is a cold laminating film that can be used to mount the mobile phone body and screen. According to its use, it can be divided into: mobile phone screen protector, mobile phone body protective film, anti-spy film, mirror film, AR film, matte film, scratch-resistant protective film, mobile phone body scratch-resistant protective film, mobile phone body decoration protection Membrane and the like.
  • Tempered glass is actually a kind of prestressed glass.
  • chemical or physical methods are usually used to form compressive stress on the surface of the glass.
  • the surface stress is first offset, thereby improving the bearing capacity and enhancing the resistance of the glass itself. Wind pressure, cold and heat, impact, etc., while the tempered glass protective film is the protection of the highest security level of the mobile phone screen, to prevent the mobile phone from damaging the display during the fall.
  • the touch function of mobile phone products has certain limitations.
  • the iPhone 6 can only implement the touch function on the Home button side; secondly, the market products are generally adopted. GLASS+FILM and nano-materials are used to realize the touch function. The stability is poor, and the touch is often unresponsive.
  • an object of the present invention is to provide a smart tempered glass protective film and a manufacturing method thereof, and the smart tempered glass protective film and the manufacturing method thereof can improve the reliability of the touch by effectively improving the tempered glass, and can Meet the distance range of people's touch.
  • Another object of the present invention is to provide a smart tempered glass protective film and a manufacturing method thereof.
  • the smart tempered glass protective film and the manufacturing method thereof are simple in structure and easy to implement, and can meet the touch requirements of various mobile phones.
  • a smart tempered glass protective film comprising tempered glass, characterized in that the inner surface of the tempered glass is coated with a touch area, and the touch area is connected to a touch button of the mobile phone through a conductive line.
  • the invention improves the tempered glass protective film, so that it not only has the protection function, but also can be combined with the mobile phone for the touch operation, thereby effectively improving the reliability of the touch and making it conform to the distance range of the finger touch. Meet the needs of people's touch.
  • the outer surface of the smart tempered glass protective film is covered with anti-fingerprint oil to prevent the oil stain on the hand from staying on the tempered glass, which affects the touch effect.
  • the touch area and the conductive line are invisible conductive lines, and the conductive lines are disposed along an edge of the smart tempered glass protective film so as not to affect the observation and use of the display screen.
  • the invisible conductive line is composed of conductive silver paste or ITO (indium tin oxide).
  • At least one of the touch areas is disposed in a middle portion of the smart tempered glass protective film to facilitate touch.
  • the conductive line extends to the upper or lower part of the smart tempered glass protective film, so that the conductive line is connected to the touch button and the touch area of the mobile phone.
  • the inner surface of the smart tempered glass protective film is covered with an optical glue to touch the touch area Domain and conductive lines are protected.
  • a method for manufacturing a smart tempered glass protective film characterized in that the method comprises the following steps:
  • step 2 electroplating; the glass substrate processed in step 1 is coated with a layer of invisible conductive layer by vacuum coating process, the thickness of the invisible missile layer is 0.01-0.3 cm; (in the vacuum coating process, the temperature is 350 ⁇ 5°, the box body Vacuum degree: 4.2 ⁇ 0.2E-1, production speed 1650mm/min, beat 65S.)
  • the upper coating; the front side of the smart tempered glass protective film is coated with an anti-fingerprint coating;
  • the pattern is first filled into a rectangle, and then calculated according to the above formula, and the resistance of the conductive line is also counted.
  • the resistance is ⁇ 20 K ⁇ .
  • the touch area can be adjusted to meet the touch range requirements of the palm of the hand, and the limitation of the touch function can be perfectly adapted to the operation requirements of the corresponding model mobile phone.
  • the touch function on both sides of the Home button of the iPhone 6 mobile phone is It can be realized; the left and right touch functions on the Apple 6Plus mobile phone window can be realized around the Home button;
  • the touch is more sensitive, and the touch stability is enhanced
  • the touch area and the conductive line can be concealed without reducing the light transmittance of the product.
  • Figure 1 is a schematic view showing the structure of a product implemented by the present invention.
  • Figure 2 is a side cross-sectional view of the product of the present invention.
  • FIG. 3 is a process flow diagram implemented by the present invention.
  • FIG. 1 is a schematic structural view of a smart tempered glass protective film
  • FIG. 2 is a side cross-sectional view of FIG. 1.
  • the smart tempered glass protective film implemented by the present invention has a core composition of tempering.
  • the glass 1 is coated on the inner surface of the tempered glass 1 with touch areas 2, 3, and 4, wherein the touch area 2 is located at the upper portion of the tempered glass 1, corresponding to the upper touch button of the mobile phone, and the touch area 3 is set to be tempered
  • the middle of the glass 1 is convenient for people to touch.
  • the touch area 4 is located at the lower part of the tempered glass, corresponding to the lower touch buttons of the mobile phone, such as confirmation and return buttons; the touch areas 2, 3, 4 are connected by the conductive lines 5.
  • the touch area 2 can be extended to the upper or lower part of the smart tempered glass protective film, so that the conductive line is connected to the touch button and the touch area of the mobile phone, so that the touch operation of the touch area 3 can be transformed by the conductive line 5.
  • the touch areas 2 and 4 it is more convenient for people to perform touch, especially for a large-screen mobile phone, which can effectively reduce the range of the touch, and make the touch area have people within the grasp range.
  • the touch area and the conductive line are made of invisible conductive silver paste or indium tin oxide.
  • the touch areas 2, 3, and 4 are transparent, which are invisible to the naked eye and do not affect people's display. Screen observation and use.
  • the conductive line 5 is usually disposed along the edge of the smart tempered glass protective film 1 so that it does not affect the viewing and use of the display screen.
  • the intelligent tempered glass protective film is composed of several layered results, wherein 12 is a tempered glass layer, and the outer surface of the tempered glass layer 2 is covered with an anti-fingerprint oil layer 11 to avoid oil stain on the hand. Staying on the tempered glass 1 affects the touch.
  • the inner surface of the tempered glass layer 12 is coated with a conductive line and a touch area layer 13.
  • the surface of the conductive line and the touch area layer 13 is covered with an optical adhesive layer 14, and the optical adhesive layer 14 is adjacent to the touch area and the conductive line. Protect.
  • the invention improves the tempered glass protective film, so that it not only has the protection function, but also can be combined with the mobile phone for the touch operation, thereby effectively improving the reliability of the touch and making it conform to the distance range of the finger touch. Meet the needs of people's touch.
  • the method for manufacturing the smart tempered glass protective film realized by the present invention comprises the following steps:
  • the step 1 processed glass substrate is coated with a layer of invisible conductive layer (conductive silver paste or indium tin oxide) by a vacuum coating process, the thickness of the invisible missile layer is 0.01-0.3 cm (in the vacuum coating process, the temperature : 350 ⁇ 5 °, cabinet vacuum: 4.2 ⁇ 0.2E-1, production speed 1650mm / min, beat 65S).
  • invisible conductive layer conductive silver paste or indium tin oxide
  • Top coating the front side of the smart tempered glass protective film is coated with an anti-fingerprint coating.
  • the present invention has the following advantages:
  • the touch area can be adjusted to meet the touch range requirements of the palm of the hand, and the limitation of the touch function can be perfectly adapted to the operation requirements of the corresponding model mobile phone.
  • the touch function on both sides of the Home button of the iPhone 6 mobile phone is It can be realized; the left and right touch functions on the Apple 6Plus mobile phone window can be realized around the Home button.
  • the touch is more sensitive, and the touch stability is enhanced.
  • the touch area and the conductive line can be concealed without reducing the light transmittance of the product.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Telephone Set Structure (AREA)
  • Surface Treatment Of Glass (AREA)

Abstract

一种智能钢化玻璃保护膜及其制作方法,该智能钢化玻璃保护膜,其包括钢化玻璃(1),所述钢化玻璃(1)的内表面涂覆有触控区域(2,3,4),所述触控区域(2,3,4)通过导电线路(5)连接于手机的触摸按键。其制作方法包括切片、电镀、刻画线路、上涂层、上胶等步骤。通过对钢化玻璃保护膜的改进,使其不仅具有保护功能,而且能够结合手机进行触控操作,有效地提高了触控的可靠性,并使其能符合人们手指触控的距离范围,满足人们触控的需要。

Description

一种智能钢化玻璃保护膜及其制作方法 技术领域
本发明属于手机附件,特别涉及一种用于手机屏幕保护的膜及其制作方法。
背景技术
手机贴膜又称手机美容膜、手机保护膜,是可用于装裱手机机身、屏幕的一种冷裱膜。根据其用途可分为:手机屏幕保护膜、手机机身保护膜、防窥膜、镜子膜、AR膜、磨砂膜、防刮保护膜、手机机身防刮花保护膜、手机机身装饰保护膜等。
2012年,美国相关研究员人把有“安全玻璃”之称的钢化玻璃使用在手机领域,专为保护屏幕而设计出钢化玻璃保护膜,由此兴起了一种钢化玻璃保护膜。由于玻璃具有相当好的耐磨特性,而且非常坚硬,其维氏硬度达到了622至701。钢化玻璃其实是一种预应力玻璃,为提高玻璃的强度,通常使用化学或物理的方法,在玻璃表面形成压应力,玻璃承受外力时首先抵消表层应力,从而提高了承载能力,增强玻璃自身抗风压性,寒暑性,冲击性等,而钢化玻璃保护膜则是对于手机屏幕最高安全级别的保护,避免手机在摔落过程中损伤显示屏。
但是在应用过程中,申请人发现贴膜后的手机,往往会因为手机显示屏的问题出现难以操控的现象,特别是对于大屏的手机,人手的指尖滑动范围是有限的,往往无法触控到很多区域。因此,手机产品触控功能存在一定的局限性。例如,iPhone 6只可实现Home键一侧的触控功能;其次,市面产品一般采用 GLASS+FILM、涂纳米材料来实现触控功能,其稳定性差,经常出现触摸无反应情况。
发明内容
基于此,本发明的目的在于提供一种智能钢化玻璃保护膜及其制作方法,该智能钢化玻璃保护膜及其制作方法通过对钢化玻璃进行改进,能够有效地提高触控的可靠性,并能符合人们触控的距离范围。
本发明的另一个目的在于提供一种智能钢化玻璃保护膜及其制作方法,该智能钢化玻璃保护膜及其制作方法结构简单,易于实现,能够满足多种手机的触控需求。
为实现上述目的,本发明的技术方案如下。
一种智能钢化玻璃保护膜,其包括钢化玻璃,其特征在于所述钢化玻璃的内表面涂覆有触控区域,所述触控区域通过导电线路连接于手机的触摸按键。本发明通过对钢化玻璃保护膜的改进,使其不仅具有保护功能,而且能够结合手机进行触控操作,有效地提高了触控的可靠性,并使其能符合人们手指触控的距离范围,满足人们触控的需要。
进一步,所述智能钢化玻璃保护膜的外表面上覆盖有防指纹油,以避免手上的油渍滞留于钢化玻璃上,影响触控的效果。
进一步,所述触控区域及导电线路为隐形导电线路,且所述导电线路沿所述智能钢化玻璃保护膜的边缘设置,使其不影响对显示屏的观察和使用。
更进一步,所述隐形导电线路由导电银浆或ITO(氧化铟锡)构成。
进一步,所述触控区域至少有一个设置于智能钢化玻璃保护膜的中部,以便于实现触控。
更进一步,所述导电线路连接触控区域后,延伸至智能钢化玻璃保护膜的上部或下部,以使导电线路接通手机的触控按键及触控区域。
更进一步,所述智能钢化玻璃保护膜的内表面覆盖有光学胶,以对触控区 域及导电线路进行保护。
一种智能钢化玻璃保护膜的制作方法,其特征在于所述方法包括如下步骤:
1、切片;首先,将大张玻璃基板切割成对应小片,经过CNC(Computer numerical control,即数控机床)处理,再经过扫光、钢化〔扫光,指利用机械、稀土等材料加工,是产品表面、弧边更加光亮;钢化,指将玻璃置于高温碱盐溶液中,使玻璃表面较小的离子与溶液中较大的离子进行交换,从而在玻璃表面形成一种预应力,达到提高玻璃承载力,增强玻璃自身的抗风压性、寒属性、冲击性〕等工艺加工制成对应手机外形,形成玻璃基板;
2、电镀;将步骤1加工好的玻璃基板通过真空镀膜工艺镀一层隐形导电层,所述隐形导弹层厚度为0.01-0.3cm;(真空镀膜工艺中,温度:350±5°,箱体真空度:4.2±0.2E-1,生产速度1650mm/min,节拍65S。)
3、刻画线路;将镀有隐形导电层的玻璃基板进行蚀刻,制成所需导电线路和触控区域;
4、上涂层;将智能钢化玻璃保护膜的正面涂覆防指纹涂层;
5、上胶;将智能钢化玻璃保护膜的背面贴光学胶,最终形成成品。
所述步骤2中,通过电阻值计算公式R=pL1/dL2(其中,R电阻,p导电膜层电阻率,d导电膜层厚度,L1长,L2宽)计算所需要的导电线路及触控区域的厚度。导电线路及触控区域均需要计算在内。
对于非矩形图案的触控区域,先将图形补成矩形,再按上述公式进行计算,且所述导电线路的电阻也计算在内。
进一步,所述电阻<20KΩ。
本发明具有下列优点:
1、能够将触控区域进行调整,使其满足人们手掌的触控范围需求,突破触控功能局限性,可完美适应对应型号手机操作需求,例如,iPhone 6手机Home键两侧触控功能均可实现;Apple 6Plus手机视窗上面左右触控功能,可在Home键左右实现;
2、触控更加灵敏,触控稳定性增强;
3、能够将触控区域和导电线路隐形化,不会降低产品透光率。
附图说明
图1是本发明所实施的产品结构示意图。
图2是本发明的产品侧面剖视图。
图3是本发明所实现的工艺流程图。
具体实施方式
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
如图1、图2所示,图1是智能钢化玻璃保护膜的结构示意图,图2是图1的侧面剖视图,图中所示,本发明所实施的智能钢化玻璃保护膜,核心构成是钢化玻璃1,在钢化玻璃1的内表面涂覆有触控区域2、3、4,其中触控区域2位于钢化玻璃1的上部,对应于手机的上部触控按键,触控区域3设置于钢化玻璃1的中部,便于人们触控,触控区域4位于钢化玻璃的下部,对应于手机的下方触控按键,例如确认、返回按键;触控区域2、3、4通过导电线路5连接。使触控区域2能够延伸至智能钢化玻璃保护膜的上部或下部,以使导电线路接通手机的触控按键及触控区域,这样通过导电线路5可以将触控区域3的触控操作转化为对触控区域2和4的操作,这样更便于人们进行触控,特别是对于大屏幕的手机,能够有效地减小触控的范围,使触控区域中人们的掌握范围内。
触控区域及导电线路均属由为隐形的导电银浆或氧化铟锡制成,正常使用中,触控区域2、3、4均呈透明状,肉眼看不到,不会影响人们对显示屏的观察和使用。
导电线路5通常是沿着智能钢化玻璃保护膜1的边缘设置,使其不影响对显示屏的观察和使用。
再结合图2所示,智能钢化玻璃保护膜由几个层状的结果构成,其中12是钢化玻璃层,在钢化玻璃层2的外表面上覆盖有防指纹油层11,以避免手上的油渍滞留于钢化玻璃1上,影响触控的效果。
钢化玻璃层12的内表面上涂覆有导电线路和触控区域层13,导电线路和触控区域层13的表面是又覆盖有光学胶层14,光学胶层14对触控区域及导电线路进行保护。
本发明通过对钢化玻璃保护膜的改进,使其不仅具有保护功能,而且能够结合手机进行触控操作,有效地提高了触控的可靠性,并使其能符合人们手指触控的距离范围,满足人们触控的需要。
结合图3所示,本发明所实现的智能钢化玻璃保护膜的制作方法,包括如下步骤:
1、切片;首先,将大张玻璃基板切割成对应小片,经过CNC处理,再经过扫光、钢化(扫光,指利用机械、稀土等材料加工,是产品表面、弧边更加光亮;钢化,指将玻璃置于高温碱盐溶液中,使玻璃表面较小的离子与溶液中较大的离子进行交换,从而在玻璃表面形成一种预应力,达到提高玻璃承载力,增强玻璃自身的抗风压性、寒属性、冲击性)等工艺加工制成对应手机外形,形成玻璃基板。
2、电镀;将步骤1加工好的玻璃基板通过真空镀膜工艺镀一层隐形导电层(导电银浆或氧化铟锡),所述隐形导弹层厚度为0.01-0.3cm(真空镀膜工艺中,温度:350±5°,箱体真空度:4.2±0.2E-1,生产速度1650mm/min,节拍65S)。
在该步骤中,通过电阻值计算公式R=pL1/dL2(R电阻,p导电膜层电阻率,d导电膜层厚度,L1长,L2宽)计算所需要的导电线路及触控区域的厚度,且所述电阻<20KΩ。
3、刻画线路;将镀有隐形导电层的玻璃基板进行蚀刻,制成所需导电线路 和触控区域;具体地说,在隐形导电层的表面先涂上感光胶,然后进行烘干;烘干后贴上菲林,当然菲林是按照预先设定的触控区域和导电线路加工好的,然后再进行光照,使感光胶发生质变;质变结束后,进行曝光,用NaOH溶液冲洗,质变部分的感光胶会被溶解;然后用酸溶液使隐形导电层被腐蚀,这样就使感光胶层和不需要的隐形导电层被剥离,只保留需要的触控区域和导电线路的隐形导电层。
4、上涂层;将智能钢化玻璃保护膜的正面涂覆防指纹涂层。
5、上胶;将智能钢化玻璃保护膜的背面贴光学胶,最终形成成品。
所以,本发明具有下列优点:
1、能够将触控区域进行调整,使其满足人们手掌的触控范围需求,突破触控功能局限性,可完美适应对应型号手机操作需求,例如,iPhone 6手机Home键两侧触控功能均可实现;Apple 6Plus手机视窗上面左右触控功能,可在Home键左右实现。
2、触控更加灵敏,触控稳定性增强。
3、能够将触控区域和导电线路隐形化,不会降低产品透光率。
以上所述仅为本发明的较佳实施例而已,并不用以限制本发明,凡在本发明的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本发明的保护范围之内。

Claims (10)

  1. 一种智能钢化玻璃保护膜,其包括钢化玻璃,其特征在于所述钢化玻璃的内表面涂覆有触控区域,所述触控区域通过导电线路连接于手机的触摸按键。
  2. 如权利要求1所述的智能钢化玻璃保护膜及其制作方法,其特征在于所述智能钢化玻璃保护膜的外表面上覆盖有防指纹油。
  3. 如权利要求1所述的智能钢化玻璃保护膜及其制作方法,其特征在于所述触控区域及导电线路为隐形导电线路,且所述导电线路沿所述智能钢化玻璃保护膜的边缘设置。
  4. 如权利要求3所述的智能钢化玻璃保护膜及其制作方法,其特征在于所述隐形导电线路由导电银浆或氧化铟锡构成。
  5. 如权利要求1所述的智能钢化玻璃保护膜及其制作方法,其特征在于所述触控区域至少有一个设置于智能钢化玻璃保护膜的中部。
  6. 如权利要求5所述的智能钢化玻璃保护膜及其制作方法,其特征在于所述导电线路连接触控区域后,延伸至智能钢化玻璃保护膜的上部或下部。
  7. 如权利要求1所述的智能钢化玻璃保护膜及其制作方法,其特征在于所述智能钢化玻璃保护膜的内表面覆盖有光学胶。
  8. 一种智能钢化玻璃保护膜的制作方法,其特征在于所述方法包括如下步骤:
    101、切片;首先,将大张玻璃基板切割成对应小片,并经过扫光、钢化加工制成对应手机外形,形成玻璃基板;
    102、电镀;将步骤1加工好的玻璃基板通过真空镀膜工艺镀一层隐形导电层,所述隐形导电层厚度为0.01-0.3um;
    103、刻画线路;将镀有隐形导电层的玻璃基板进行蚀刻,制成所需导电线路和触控区域;
    104、上涂层;将智能钢化玻璃保护膜的正面涂覆防指纹涂层;
    105、上胶;将智能钢化玻璃保护膜的背面贴光学胶,最终形成成品。
  9. 如权利要求8所述的智能钢化玻璃保护膜的制作方法,其特征在于所述步骤102中,通过电阻值计算公式R=pL1/dL2计算所需要的导电线路及触控区域的厚度,其中R为电阻,p为导电膜层电阻率,d为导电膜层厚度,L1为长,L2为宽。
  10. 如权利要求9所述的智能钢化玻璃保护膜的制作方法,其特征在于对于非矩形图案区域,先将图形补成矩形,再按上述公式进行计算,切所述导电线路也计算在内。
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