CN104571744A - Surface touch control material for intelligent information equipment based on glass film - Google Patents

Surface touch control material for intelligent information equipment based on glass film Download PDF

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Publication number
CN104571744A
CN104571744A CN201410254717.9A CN201410254717A CN104571744A CN 104571744 A CN104571744 A CN 104571744A CN 201410254717 A CN201410254717 A CN 201410254717A CN 104571744 A CN104571744 A CN 104571744A
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CN
China
Prior art keywords
touch control
glass
conductive layer
touch
information equipment
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Pending
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CN201410254717.9A
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Chinese (zh)
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不公告发明人
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ZHIMO SCIENCE & TECHNOLOGY Co Ltd
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ZHIMO SCIENCE & TECHNOLOGY Co Ltd
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Priority to CN201410254717.9A priority Critical patent/CN104571744A/en
Publication of CN104571744A publication Critical patent/CN104571744A/en
Pending legal-status Critical Current

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    • 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
    • G06F3/044Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means by capacitive means

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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)
  • Position Input By Displaying (AREA)

Abstract

The invention belongs to the field of composite capacitive touch control screens and provides a surface touch control material for intelligent information equipment based on a glass film. The surface touch control material is provided with a capacitive touch control screen module; the capacitive touch control screen module is provided with a conductive layer having a touch control region; a touch control screen is provided with a substrate layer made of a glass material; the conductive layer has a transregional signal transmission function and only covers a specific region of the substrate layer. The specific region is the region outside a capacitive touch control effective range above the touch control screen and partially extending into the capacitive touch control effective range. The touch control region is a conductive layer part of the specific region outside the capacitive touch control effective region. According to the surface touch control material, the problems that an existing PET (polyethylene terephthalate) material is relatively soft, easy to be scraped and not high in transparency are solved, and a rapid touch control function is realized. In the meantime, the surface touch control material is higher in transparency, higher in hardness and more attractive in appearance.

Description

Based on the Intelligent information equipment surface touch-control material of glass-film
Technical field
What the present invention relates to is complex capacitance Touch Screen, particularly relates to a kind of Intelligent information equipment based on glass-film surface touch-control material.
Background technology
The plurality of advantages such as capacitive touch screen is high with its transparency, multi-point touch, and the life-span is long, in recent years, are more and more subject to the favor in market.When carrying out contactor control device design, PET(Polyethylene Terephthalate, polyethylene terephthalate) there is good mechanical strength as thermoplastic engineering plastic, through being commonly used for contact panel substrate layer.If application number is 201020629729.2 disclosed in Chinese utility model patent " a kind of touch panel of cell phone "; a kind of touch panel of cell phone; comprise PET base material; this PET base material is arranged on the bottom of contact panel, and is disposed with electrodeposited coating, printed layers, diaphragm from inside to outside in PET base material.
But because PET material is softer, time especially as mobile phone protection pad pasting, owing to often being pointed by user or analog touch-control, very easily scratch, and transparency is not high, affects user's viewing.
Existing capacitive touch screen function is comparatively single simultaneously, and particularly there is a lot of blank spaces at the edge of the operation interface of capacitive touch screen, wastes very much.And interactive window and operation interface do not have shortcut or shortcut yet, quick start-up and operation can not be carried out to conventional software or application.
Summary of the invention
The invention provides the Intelligent information equipment surface touch-control material based on glass-film, adopt glass as the substrate layer of complex capacitance touch module, not only there is quick touch controllable function, and transparency and hardness high, outward appearance is more attractive in appearance.
The object of the invention is to be realized by technical scheme below:
Based on the Intelligent information equipment surface touch-control material of glass-film, have capacitive touch screen module, described capacitive touch screen module has conductive layer, and described conductive layer has Touch Zone, it is characterized in that: described Touch Screen has the substrate layer of glass material.
Preferably, also have bonding coat and protective seam, described conductive layer is between substrate layer and bonding coat.
Preferably, described conductive layer has trans-regional conducted signal function, only covers the specific region of substrate layer.
Further, described specific region is beyond capacitance touching control effective range above described Touch Screen and within extending a part to described capacitance touching control effective range.
Further, described Touch Zone is described specific region and is positioned at Conductive layer portions beyond described capacitance touching control effective range.
Preferably, described specific region comprises the conductive layer of the predefine shape at least one interval.
Preferably, when described Touch Zone is triggered corresponding described quick Touch Screen display screen on program icon, the touching signals produced during triggering conducts to icon area by conductive layer, drives the program of icon area, runs the program that icon is therewith associated.
Preferably, described conductive layer is combined by any one in electrically-conducting paint, electrically conductive ink or macromolecule conducting material or its.
Further, described conductive coating is Nano Silver coating.
Preferably, described conductive coating is transparent.
Like this, by above-mentioned technical scheme, just can reach such effect: by changing existing PET base material layer into glass baseplate of the present invention, solve existing PET material next compared with soft ribbons very easily scratch the problem not high with transparency, there is achieve while quick touch controllable function, transparency and hardness higher, the effect that outward appearance is more beautiful.
Embodiment
By embodiment, structure of the present invention is further detailed below.
In the present embodiment, information interaction equipment is our modal mobile phone, TV, panel computer, smart camera and other smart machine etc., these equipment have an interactive interface, and these interfaces occur mainly with the mode of touch screen at present, and touch screen is main mainly with capacitance touching control screen, and quick Touch Screen proposed by the invention also carrys out design and implementation for capacitive touch screen.
Using smart mobile phone as user terminal, the present embodiment is mainly implemented on smart mobile phone body, body has display screen, namely described capacitive touch screen, in addition, there are some marks on the display screen, i.e. Mobile phone touch control button, this touch controlled key can be in display screen region, in the effective range of i.e. capacitive touch screen, also can outside display screen region, namely beyond the effective range of capacitive touch screen, touch controlled key is set again, to realize modal returning, homepage, the functions such as menu, these function keys are the most common in based on the mobile phone of Android system.
Based on the Intelligent information equipment surface touch-control material of glass-film, have capacitive touch screen module, described capacitive touch screen module has conductive layer, and described conductive layer has Touch Zone, and described Touch Screen has the substrate layer of glass material.
The material of described glass substrate layer is inorganic silicate glass or PMMA glass (PMMA).
The thickness of described glass substrate layer is 0.1 millimeter-3 millimeters.Glass substrate layer square resistance is 10 ohm-500 ohm.
Described glass substrate layer be roughly sheet, further, the surface of glass substrate layer is also formed and has sclerosis, anti-reflection functional layer.The functional layer with sclerosis function is applied by the high-molecular coating with sclerosis function and is formed; The functional layer with anti-reflection function is titanium dioxide layer, magnesium fluoride coating or calcium fluoride coating.
Preferred in the embodiment of the present invention, also have bonding coat and protective seam, described conductive layer is between substrate layer and bonding coat.Bonding coat and protective seam are double-decker in the present embodiment, and lay respectively at the inside and outside both sides of substrate layer, wherein, protective seam is positioned at above bonding coat.Described conductive layer local complexity is between the substrate layer and bonding coat of inner side.But be not limited to the preferred embodiment, this conductive layer can between the substrate layer in outside and bonding coat, also can between the protective seam in inner side or outside and bonding coat.Described interior outside is for the display screen of information interaction equipment or Touch Screen, is the inner side of pad pasting, otherwise is the outside of pad pasting during its laminating near the side of display screen.
In the present embodiment, described bonding coat is Optical transparent adhesive, such as OCA optical cement.Also can be the potpourri of polyurethane and polyurethane curing agent thereof or the solution of thermoplastic polyester or there is the good thermosetting epoxy resin of bending property and the potpourri of hardening agent through to heat or ultraviolet light toasts Post RDBMS and forms the macromolecular material with well bending property.
Preferred in the embodiment of the present invention, described conductive layer has trans-regional conducted signal function, only covers the specific region of substrate layer.
In the embodiment of the present invention further, described specific region is beyond the capacitance touching control effective range above described Touch Screen and extends a part of to described capacitance touching control effective range.
In the embodiment of the present invention further, described Touch Zone is described specific region and is positioned at Conductive layer portions beyond described capacitance touching control effective range.
Preferred in the embodiment of the present invention, described specific region comprises the conductive layer of the predefine shape at least one interval.
Preferred in the embodiment of the present invention, when described Touch Zone is triggered corresponding described quick Touch Screen display screen on program icon, the touching signals produced during triggering conducts to icon area by conductive layer, drives the program of icon area, runs the program that icon is therewith associated.
Preferred in the embodiment of the present invention, described conductive layer is combined by any one in electrically-conducting paint, electrically conductive ink or macromolecule conducting material or its.
In the embodiment of the present invention further, described conductive coating is Nano Silver coating.
In addition, conductive layer can also adopt and prepare based on conductive materials such as carbon nano-tube, Graphene, electrospun nanofiber copper wire, type metal grids.And this wherein, wherein performance is the most excellent to adopt the transparency electrode prepared based on silver nano material to be proved to be this, and it can also keep the electric property of 100ohm/sq while having 90% transmittance, surfacing simultaneously, resistance to bending, adhesion is good.ITO (Indium Tin Oxide) is although be current most widely used transparent electrode material, but because phosphide element is a kind of rare earth element, in the Nature, reserves are smaller, and price comparison is expensive, and therefore conductive layer does not in the present embodiment adopt ITO.
Specifically, quick Touch Screen of the present invention is a kind of sticking film for mobile phone of composite multifunction, it can stick on the capacitance touching control display screen of the information interaction such as smart mobile phone or panel computer equipment, and extends to the margin place, top of these information interaction equipment.This pad pasting will be applied on the information interaction such as smart mobile phone, panel computer equipment, in order to not affect the display of Touch Screen, so the transmittance of the material of described conductive layer employing is very important, secondly, in order to realize quick, real-time trans-regional conducted signal, its requirement has excellent conductance.Preferred in the embodiment of the present invention, described conductive coating is transparent.
A described conductive layer local complexity is in the specific region of described substrate layer or appointed area, described Touch Zone is the position that user points triggering, a suitable virtual button, effective display area again in order to not make this Touch Zone not take original display screen, so Touch Zone is arranged on beyond the effective range of capacitance touching control screen, beyond the effective coverage of namely display screen, also have, this conductive layer extends and the specific region of corresponding device capacitance touching control screen, namely there is the icon area of corresponding mark in display screen, like this, the human-induced signal produced when triggering in Touch Zone, due to the conduction of conductive layer, directly pass to icon area, to trigger icon shown on display screen corresponding to icon area and program.
Above-mentioned situation is corresponding common situation, conductive layer and corresponding Touch Zone and icon area are rectangle, but find in test, conductive layer can be various shape, in order to be suitable for different capacitive screens, and being suitable for different display interface designs, conductive layer can make multiple different shape, makes it have predefine shape.
Also can know from the above embodiments, described conductive layer continuous distribution within the effective coverage of display screen and the effective coverage of display screen with exterior domain, the shape of conductive layer is corresponding.
In addition, the above-mentioned conductive layer with predefine shape has multiple, can various ways arrangement or the assembled arrangement such as tandem, horizontally-arranged, oblique row, like this, can adapt to the characteristic of software and meet the individual needs of user.
And conductive layer covers with one of serigraphy, coating, obliterating, spraying, showering, Tianjin painting, dipping, sputtering etc. or group technology or is combined in the substrate layer of pad pasting.
In the present embodiment, described nano-silver conductive layer is that being evenly coated on substrate layer of dispersion liquid local of Nano Silver is formed after drying, by applying pressure, heat or both combinations to improve the conductance of nano-silver conductive layer.
In the present embodiment, described protective seam is release film, and wherein said release film is formed for coating after glass substrate layer through silicone release agent, and release film after treatment shows extremely light and stable off-type force.Described release film is peelable.Release film used is general more weak with the cohesive force between other materials, and release film after treatment shows extremely light and stable off-type force, and after forming transparency electrode, it can as protective seam.
Like this, by above-mentioned technical scheme, just can reach such effect: by existing PET base material layer is changed into glass substrate layer of the present invention, not only achieve quick touch controllable function, namely the shortcut realizing utilizing user interface blank space that shortcut and user oneself are set and like, transparency is high simultaneously, and hardness is high, outward appearance is beautiful, solves PET material and easily scratches the problem not high with transparency.
Although only illustrate a preferred embodiment of the present invention here, its meaning not limits the scope of the invention, applicability and configuration.On the contrary, those skilled in the art can be made to be implemented the detailed description of embodiment.Will be understood that without departing from the spirit and scope as defined in the invention, can make the appropriate changes and modifications some details.

Claims (10)

1., based on the Intelligent information equipment surface touch-control material of glass-film, have capacitive touch screen module, described capacitive touch screen module has conductive layer, and described conductive layer has Touch Zone, it is characterized in that: described Touch Screen has the substrate layer of glass material.
2., as claimed in claim 1 based on the Intelligent information equipment surface touch-control material of glass-film, it is characterized in that: also have bonding coat and protective seam, described conductive layer is between substrate layer and bonding coat.
3. the surface of the Intelligent information equipment based on the glass-film touch-control material as described in as arbitrary in claim 1 or 2, is characterized in that: described conductive layer has trans-regional conducted signal function, only covers the specific region of substrate layer.
4. as claimed in claim 3 based on the Intelligent information equipment surface touch-control material of glass-film, it is characterized in that: described specific region is beyond the capacitance touching control effective range above described Touch Screen and extends a part of to described capacitance touching control effective range.
5. as claimed in claim 4 based on the Intelligent information equipment surface touch-control material of glass-film, it is characterized in that: described Touch Zone is described specific region and is positioned at Conductive layer portions beyond described capacitance touching control effective range.
6., as claimed in claim 3 based on the Intelligent information equipment surface touch-control material of glass-film, it is characterized in that: described specific region comprises the conductive layer of the predefine shape at least one interval.
7. as claimed in claim 1 based on the Intelligent information equipment surface touch-control material of glass-film, it is characterized in that: when described Touch Zone is triggered corresponding described quick Touch Screen display screen on program icon, the touching signals produced during triggering conducts to icon area by conductive layer, drive the program of icon area, run the program that icon is therewith associated.
8. the surface of the Intelligent information equipment based on the glass-film touch-control material as described in as arbitrary in claim 1 or 2, is characterized in that: described conductive layer is combined by any one in electrically-conducting paint, electrically conductive ink or macromolecule conducting material or its.
9., as claimed in claim 8 based on the Intelligent information equipment surface touch-control material of glass-film, it is characterized in that: described conductive coating is Nano Silver coating.
10., as claimed in claim 8 based on the Intelligent information equipment surface touch-control material of glass-film, it is characterized in that: described conductive coating is transparent.
CN201410254717.9A 2014-06-10 2014-06-10 Surface touch control material for intelligent information equipment based on glass film Pending CN104571744A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201410254717.9A CN104571744A (en) 2014-06-10 2014-06-10 Surface touch control material for intelligent information equipment based on glass film

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201410254717.9A CN104571744A (en) 2014-06-10 2014-06-10 Surface touch control material for intelligent information equipment based on glass film

Publications (1)

Publication Number Publication Date
CN104571744A true CN104571744A (en) 2015-04-29

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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101706698A (en) * 2009-11-23 2010-05-12 深圳市汇顶科技有限公司 Touch-sensitive scanning detection method and system, as well as capacitive touch sensor
CN201985836U (en) * 2010-07-11 2011-09-21 吴廷强 Press key expansion device for capacitance type touch screen equipment
CN102436308A (en) * 2011-11-11 2012-05-02 陈文博 Materialized mapping method of touch screen virtual key and touch screen game mobile phone using same
WO2012117046A1 (en) * 2011-03-01 2012-09-07 Printechnologics Gmbh Input element for operating a touch-screen

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101706698A (en) * 2009-11-23 2010-05-12 深圳市汇顶科技有限公司 Touch-sensitive scanning detection method and system, as well as capacitive touch sensor
CN201985836U (en) * 2010-07-11 2011-09-21 吴廷强 Press key expansion device for capacitance type touch screen equipment
WO2012117046A1 (en) * 2011-03-01 2012-09-07 Printechnologics Gmbh Input element for operating a touch-screen
CN102436308A (en) * 2011-11-11 2012-05-02 陈文博 Materialized mapping method of touch screen virtual key and touch screen game mobile phone using same

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Application publication date: 20150429

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