CN207958146U - Substrate with color explosion-proof membrane - Google Patents

Substrate with color explosion-proof membrane Download PDF

Info

Publication number
CN207958146U
CN207958146U CN201720656342.8U CN201720656342U CN207958146U CN 207958146 U CN207958146 U CN 207958146U CN 201720656342 U CN201720656342 U CN 201720656342U CN 207958146 U CN207958146 U CN 207958146U
Authority
CN
China
Prior art keywords
substrate
rupture pressure
pressure disc
powder
color
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN201720656342.8U
Other languages
Chinese (zh)
Inventor
许铭案
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Hengxu Electronic Materials International Co ltd
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Application granted granted Critical
Publication of CN207958146U publication Critical patent/CN207958146U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Compositions Of Macromolecular Compounds (AREA)
  • Laminated Bodies (AREA)

Abstract

The utility model discloses a base plate with color rupture membrane, it contains: a substrate; and the explosion-proof film is formed on the substrate, the thickness of the explosion-proof film is between 5 and 500 micrometers, and the explosion-proof film is mixed with a color photoresist material or an ink material or flake-structure powder. The utility model discloses a base plate with color rupture membrane can reach and need not the carrier substrate can make the rupture membrane, consequently can obtain that the processing procedure is simple, the yield is high, can apply to the special technological efficiency on the curved surface glass even.

Description

Substrate with color rupture pressure disc
Technical field
The utility model is about a kind of rupture pressure disc, especially in regard to a kind of substrate with color rupture pressure disc.
Background technology
Smart mobile phone, tablet etc. have goed deep into the life of most of families, become the necessity of people.And smart mobile phone, The large screen of tablet becomes the main characteristics of such product.Since such product has portability, the peace of such product Full property is especially taken seriously, and the requirement of one of safety is explosion-proof.Explosion-proof concept is desirable to such large screen, because Accident and when rupture, not will produce sharp glass fragment, stab user.Therefore, the design of rupture pressure disc in response to and give birth to.
At present smart mobile phone, tablet rupture pressure disc be configured at the mode on screen and be after first rupture pressure disc completes, in Rupture pressure disc is fitted in into glass inner face in processing procedure.There are two types of mode, one layer of PET+ rupture pressure disc glue-lines, alternatively, one layer for pre-production The two-sided rupture pressure disc glue-lines of PET+.The all potential problem for having fraction defective high of both modes.
In addition, smart mobile phone, tablet gradually have the design of bend glass at present.Design for such bend glass, It is just more difficult to carry out rupture pressure disc fitting processing procedure above-mentioned.
Therefore, how to design a kind of new rupture pressure disc production method, allow rupture pressure disc formation can simpler, yield more It is high, it might even be possible to apply on bend glass, become smart mobile phone, the desired direction carried out of flat panel products exploitation dealer.
Utility model content
In order to achieve the above object, the utility model provide it is a kind of tool color explosion-proof film manufacturing method and have color rupture pressure disc Substrate, can reach and be not necessary to carrier substrate and can make rupture pressure disc, therefore can get that processing procedure is simple, yield is high, it might even be possible to transport Special technique effect on bend glass.
The utility model provides a kind of explosion-proof film manufacturing method of tool color, including:Colloid film layer is formed in a base On plate, the colloid film is mixed with a chromatic photoresist material or an ink material;And the hardening colloid film layer, to constitute One rupture pressure disc.
Further, the substrate is selected from one of following substrate:One planar substrates, a curved substrate.
Further, formed the colloid film layer on the substrate, be with spray coating method, ink-jet method, curtain coating, scrape Coating, roll coating process or method of spin coating.
Further, the colloid film layer is hardened, is selected from one of following method:One light consolidates method, a thermosetting method, a light Thermal curing method.
Further, the material of the colloid film layer is selected from one of following:Silica gel base rubber material, acrylic base rubber material, Polyurethane base rubber material.
Further, the thickness of the rupture pressure disc is between 5-500 microns.
Further, the surface dynes value of the rupture pressure disc is more than 36.
Further, the material of the laminated structure powder is to be selected from:Flaky metal powder, sheet metal oxidate powder End, sheet metal nitride powder, sheet metal boride powder, mica, silica or its mixture;Wherein, the sheet Metal powder is gold, silver, copper, aluminium, titanium, zirconium, chromium, molybdenum, tungsten, manganese, iron, cobalt, nickel, palladium, platinum, vanadium, niobium, rhodium, indium, tin, and surface changes The single flaky metal powder of gold, silver, copper, aluminium, titanium, zirconium, chromium, molybdenum, tungsten, manganese, iron, cobalt, nickel, palladium, platinum, vanadium, niobium, rhodium, tin of matter, Or more arbitrary combination;The sheet metal oxide powder be selected from silver, copper, aluminium, titanium, zirconium, chromium, molybdenum, tungsten, manganese, iron, One of cobalt, nickel, palladium, platinum, vanadium, niobium, rhodium, tin, magnesium, calcium, ba oxide powder, the gold, silver of surfaction, copper, aluminium, titanium, One of zirconium, chromium, molybdenum, tungsten, manganese, iron, cobalt, nickel, palladium, platinum, vanadium, niobium, rhodium, indium, tin, magnesium, calcium, ba oxide powder, or with On arbitrary combination;The sheet metal nitride powder be selected from silver, copper, aluminium, titanium, zirconium, chromium, molybdenum, tungsten, manganese, iron, cobalt, nickel, One of palladium, platinum, vanadium, niobium, rhodium, indium, tin, magnesium, calcium, barium nitride powder, the gold, silver of surfaction, copper, aluminium, titanium, zirconium, One of chromium, molybdenum, tungsten, manganese, iron, cobalt, nickel, palladium, platinum, vanadium, niobium, rhodium, indium, tin, magnesium, calcium, barium nitride powder, or more Arbitrary combination;The sheet metal boride powder be selected from silver, copper, aluminium, titanium, zirconium, chromium, molybdenum, tungsten, manganese, iron, cobalt, nickel, palladium, One of platinum, vanadium, niobium, rhodium, indium, tin, magnesium, calcium, barium boride powder, the gold, silver of surfaction, copper, aluminium, titanium, zirconium, chromium, One of molybdenum, tungsten, manganese, iron, cobalt, nickel, palladium, platinum, vanadium, niobium, rhodium, indium, tin, magnesium, calcium, barium boride powder, or more appoint Meaning combination.
Further, the monomer of the laminated structure powder is laminated structure, and length is between 1 μm -5 μm.
Further, the monomer of the laminated structure powder is laminated structure, and length is between 5 μm -10 μm or 10 μm -50 μm Between.
The utility model also provides a kind of substrate with color rupture pressure disc, including:One substrate;And a rupture pressure disc, it is formed In on the substrate, for thickness between 5-500 microns (μm), the rupture pressure disc is mixed with a chromatic photoresist material or an ink Material.
Further, the substrate is selected from one of following substrate:One planar substrates, a curved substrate.
Further, the material of the rupture pressure disc is selected from one of following:Silica gel base rubber material, acrylic base rubber material, polyamine Ester group glue material.
Further, the surface dynes value of the rupture pressure disc is more than 36.
Further, the material of the shape structure powder is to be selected from:Flaky metal powder, sheet metal oxide powder, Sheet metal nitride powder, sheet metal boride powder, mica, silica or its mixture;Wherein, the sheet metal Powder is gold, silver, copper, aluminium, titanium, zirconium, chromium, molybdenum, tungsten, manganese, iron, cobalt, nickel, palladium, platinum, vanadium, niobium, rhodium, indium, tin, surfaction The single flaky metal powder of gold, silver, copper, aluminium, titanium, zirconium, chromium, molybdenum, tungsten, manganese, iron, cobalt, nickel, palladium, platinum, vanadium, niobium, rhodium, tin, or with On arbitrary combination;The sheet metal oxide powder be selected from silver, copper, aluminium, titanium, zirconium, chromium, molybdenum, tungsten, manganese, iron, cobalt, nickel, One of palladium, platinum, vanadium, niobium, rhodium, tin, magnesium, calcium, ba oxide powder, the gold, silver of surfaction, copper, aluminium, titanium, zirconium, chromium, One of molybdenum, tungsten, manganese, iron, cobalt, nickel, palladium, platinum, vanadium, niobium, rhodium, indium, tin, magnesium, calcium, ba oxide powder, or more appoint Meaning combination;The sheet metal nitride powder be selected from silver, copper, aluminium, titanium, zirconium, chromium, molybdenum, tungsten, manganese, iron, cobalt, nickel, palladium, platinum, One of vanadium, niobium, rhodium, indium, tin, magnesium, calcium, barium nitride powder, the gold, silver of surfaction, copper, aluminium, titanium, zirconium, chromium, molybdenum, One of tungsten, manganese, iron, cobalt, nickel, palladium, platinum, vanadium, niobium, rhodium, indium, tin, magnesium, calcium, barium nitride powder, or more arbitrary group It closes;The sheet metal boride powder be selected from silver, copper, aluminium, titanium, zirconium, chromium, molybdenum, tungsten, manganese, iron, cobalt, nickel, palladium, platinum, vanadium, One of niobium, rhodium, indium, tin, magnesium, calcium, barium boride powder, the gold, silver of surfaction, copper, aluminium, titanium, zirconium, chromium, molybdenum, tungsten, One of manganese, iron, cobalt, nickel, palladium, platinum, vanadium, niobium, rhodium, indium, tin, magnesium, calcium, barium boride powder, or more arbitrary combination.
Further, the monomer of the laminated structure powder is laminated structure, and length is between 1 μm -5 μm.
Further, the monomer of the laminated structure powder is laminated structure, and length is between 5 μm -10 μm or 10 μm -50 μm Between.
It is cited below particularly several excellent for the above and other purpose, feature and advantage of the utility model can be clearer and more comprehensible Embodiment is selected, and coordinates institute's accompanying drawings, is described in detail below (embodiment).
Description of the drawings
Fig. 1 is an embodiment of the explosion-proof film manufacturing method flow chart of the tool color of the utility model.
Fig. 2A to Fig. 2 D is the section flow of the explosion-proof film manufacturing method of the tool color of the utility model in the flow of Fig. 1 Schematic diagram.
Fig. 3 is another embodiment of the explosion-proof film manufacturing method flow chart of the tool color of the utility model.
Fig. 4 A to Fig. 4 D are the section stream of the explosion-proof film manufacturing method of the tool color of the utility model in the flow for Fig. 3 Journey schematic diagram.
Description of symbols in figure:10 substrates;20 glue materials;21 colloid film layers;22 rupture pressure discs;30 spray heads;40 light;50 curved surfaces Substrate.
Specific implementation mode
Embodiment according to the present utility model, the utility model provide the explosion-proof film manufacturing method and tool of a tool color The substrate of colored rupture pressure disc can reach and be not necessary to carrier substrate and can make rupture pressure disc, therefore can get that processing procedure is simple, yield It is high, it might even be possible to apply to special technique effect on bend glass.
First, it referring to FIG. 1, it is the explosion-proof film manufacturing method flow chart of the tool color of the utility model, arranges in pairs or groups simultaneously The section processing procedure schematic diagram of Fig. 2A to Fig. 2 D illustrates, the explosion-proof film manufacturing method flow packet of the tool color of the utility model Contain:
Step 101:Colloid film layer is formed on a substrate;The colloid film is mixed with a chromatic photoresist material An or ink material.A is please referred to Fig.2, is to form colloid film layer in the method schematic diagram on substrate, a spraying can be used Method, an ink-jet method.In fig. 2, by the spray head of spraying equipment 30, the glue material 20 needed for colloid film layer is equably sprayed It is applied on substrate 10.By the forming method of both the above difference colloid film layer, the utility model can allow the thickness of rupture pressure disc Degree is controlled between 5-500 microns (μm), please refers to Fig.2 B, the colloid film layer 21 to complete is formed uniformly in substrate 10 On.The glue material material of colloid film layer can be selected from one of following:Silica gel base rubber material, acrylic base rubber material, Polyurethane (PU) base rubber Material, also, colloid film layer is mixed with chromatic photoresist or ink material or laminated structure powder, and it, can be straight after allowing rupture pressure disc to cure Connect the color and luster that chromatic photoresist or ink material or laminated structure powder is presented.Its principle selected is that have to be combined with baseplate material Property it is good, and cure after again can with colloid characteristic.
Step 102:The colloid film layer is hardened, to constitute a rupture pressure disc.The method of curable paste thin-film layers, can be selected from With one of following method:One light consolidates method, a thermosetting method, a photo-thermal curing method.Rupture pressure disc after hardening, surface dynes value are more than 36.C is please referred to Fig.2, is the embodiment for consolidating method using light, colloid film layer 21 is cured with light 40.Then, i.e., The rupture pressure disc 22 that can complete Fig. 2 D still has the characteristic of colloid after solidification, can cling substrate 10 after substrate 10 is broken.
Then, referring to FIG. 3, it is the explosion-proof film manufacturing method flow chart of the utility model, to apply to curved surface base The explosion-proof film production of plate 50, the section processing procedure schematic diagram of Fig. 4 A to Fig. 4 D that please arrange in pairs or groups simultaneously illustrate, the utility model The explosion-proof film manufacturing method flow of curved substrate includes:
Step 111:Colloid film layer is formed on a curved substrate;A is please referred to Fig.4, to form colloid film layer In the method schematic diagram on curved substrate, spray coating method, ink-jet method, curtain coating, knife coating, roll coating process or rotary coating can be used Method.In Figure 4 A, by the spray head of spraying equipment 30, the glue material 20 needed for colloid film layer is equably sprayed at curved surface base On plate 50.By the forming method of both the above difference colloid film layer, the utility model can allow the thickness control of rupture pressure disc Between 5-500 microns (μm), B is please referred to Fig.4, the colloid film layer 21 to complete is formed uniformly in curved substrate 50 On.The glue material material of colloid film layer can be selected from one of following:Silica gel base rubber material, acrylic base rubber material, Polyurethane (PU) base rubber Material, also, colloid film layer is mixed with chromatic photoresist or ink material or laminated structure powder, and it, can be straight after allowing rupture pressure disc to cure Connect the color and luster that chromatic photoresist or ink material is presented;It, can by the selection of different chromatic photoresists or ink or laminated structure powder The color of rupture pressure disc arbitrarily is mixed, in this way, can not only save the making of one layer of ink layer, production routine can more be greatly reduced With the material cost and processing procedure cost in production.Its select principle be have with baseplate material associativity it is good, and cure after It again can be with the characteristic of colloid.
Wherein, the monomer of laminated structure powder is laminated structure, and length is between 0.2 μm -10 μm.Laminated structure powder Monomer be laminated structure, length is between 0.2 μm -10 μm, preferably between 0.2 μm -1 μm, 1 μm -10 μm, more preferably Person is between 1 μm -5 μm or 5 μm -10 μm or 10 μm -50 μm;Using the laminated structure of different structure size, reflection can be allowed Effect is different, wherein stronger metallic luster can be generated with structure the greater, for example, 1 μm -5 μm, 5 μm -10 μm, 10 μm of -50 μ Metallic reflecting effect is most strong between m;Using smaller laminated structure, refraction effect is preferable, such as between 0.2 μm -1 μm. Explanation more than summary, the utility model can carry out the allotment of metallic luster by the monomer length of laminated structure powder.
Wherein, the material of laminated structure powder can be it is following it is several optionally or a combination thereof:Flaky metal powder, sheet Metal oxide powder, sheet metal nitride powder, sheet metal boride powder, mica, silica or its mixture.Its In, flaky metal powder can be gold, silver, copper, aluminium, titanium, zirconium, chromium, molybdenum, tungsten, manganese, iron, cobalt, nickel, palladium, platinum, vanadium, niobium, rhodium, The single flaky metal powder such as indium, tin, the gold, silver of surfaction, copper, aluminium, titanium, zirconium, chromium, molybdenum, tungsten, manganese, iron, cobalt, nickel, palladium, The single flaky metal powder such as platinum, vanadium, niobium, rhodium, tin, alternatively, the composition of a variety of flaky metal powders;Sheet metal oxidate powder End can be the sheets such as silver, copper, aluminium, titanium, zirconium, chromium, molybdenum, tungsten, manganese, iron, cobalt, nickel, palladium, platinum, vanadium, niobium, rhodium, tin, magnesium, calcium, barium One of metal oxide powder, the gold, silver of surfaction, copper, aluminium, titanium, zirconium, chromium, molybdenum, tungsten, manganese, iron, cobalt, nickel, palladium, One of sheet metals oxide powder such as platinum, vanadium, niobium, rhodium, indium, tin, magnesium, calcium, barium or a variety of above sheet metals The composition of oxide;Sheet metal nitride powder be selected from silver, copper, aluminium, titanium, zirconium, chromium, molybdenum, tungsten, manganese, iron, cobalt, nickel, palladium, One of sheet metals nitride powder such as platinum, vanadium, niobium, rhodium, indium, tin, magnesium, calcium, barium, the gold, silver of surfaction, copper, aluminium, The sheet metals nitride powder such as titanium, zirconium, chromium, molybdenum, tungsten, manganese, iron, cobalt, nickel, palladium, platinum, vanadium, niobium, rhodium, indium, tin, magnesium, calcium, barium The composition of one of them or a variety of above sheet nitride;Sheet metal boride powder can be silver, copper, aluminium, titanium, The sheet metals such as zirconium, chromium, molybdenum, tungsten, manganese, iron, cobalt, nickel, palladium, platinum, vanadium, niobium, rhodium, indium, tin, magnesium, calcium, barium boride powder is wherein One of, the gold, silver of surfaction, copper, aluminium, titanium, zirconium, chromium, molybdenum, tungsten, manganese, iron, cobalt, nickel, palladium, platinum, vanadium, niobium, rhodium, indium, tin, The composition of one of sheet metals boride powder such as magnesium, calcium, barium or a variety of above sheet borides.
Step 102:The colloid film layer is hardened, to constitute a rupture pressure disc.The method of curable paste thin-film layers, can be selected from With one of following method:One light consolidates method, a thermosetting method, a photo-thermal curing method.Rupture pressure disc after hardening, surface dynes value are more than 36.C is please referred to Fig.4, is the embodiment for consolidating method using light, colloid film layer 21 is cured with light 40.Then, i.e., The rupture pressure disc 22 that can complete Fig. 4 D still has the characteristic of colloid after solidification, can cling curved surface base after substrate 10 is broken Plate 50.
In general, substrate mostly uses glass substrate or plastic substrate or ceramic substrate, whether plane or curved surface.Especially On bend glass substrate, if the fitting processing procedure generation of rupture pressure disc is any bad, it will lead to higher-priced bend glass substrate Scrap.Therefore, by the explosion-proof film manufacturing method of the utility model, the entirety that can effectively improve bend glass substrate is raw Produce yield.
By the different embodiment of two above it is found that with the utility model method, can effectively and simply realize tool The rupture pressure disc of color is made in planar substrates, makes the substrate for providing color rupture pressure disc on curved substrate.It makes yield can To greatly improve, and it can effectively reduce processing procedure cost;What is more, since rupture pressure disc itself has color, also, need not be additional Plastic rubber substrate support, so, be not necessary to pad pasting processing procedure, need not separately make pasted color-membrane, twice processing procedure can be save, more The waste of material in processing procedure can be save, not only environmental protection, more can reach the purpose that production cost is greatly reduced.More particularly, originally The explosion-proof film manufacturing method of utility model can operate with the explosion-proof film production of curved substrate, allow curved substrate equally have it is explosion-proof with Coloury effect.
Embodiment described above is only the preferred embodiment lifted to absolutely prove the utility model, the utility model Protection domain it is without being limited thereto.Those skilled in the art on the basis of the utility model made by equivalent substitute or change It changes, both is within the protection scope of the present invention.The scope of protection of the utility model is subject to claims.

Claims (3)

1. a kind of substrate with color rupture pressure disc, which is characterized in that include:
One substrate;And
One rupture pressure disc is formed on the substrate, and for thickness between 5-500 microns, the surface dynes value of the rupture pressure disc is big In 36.
2. as described in claim 1 with color rupture pressure disc substrate, which is characterized in that the substrate be a planar substrates, One curved substrate.
3. the substrate with color rupture pressure disc as described in claim 1, which is characterized in that the substrate is to be selected from following substrate One of:Glass substrate, plastic substrate, ceramic substrate.
CN201720656342.8U 2017-04-27 2017-06-07 Substrate with color explosion-proof membrane Active CN207958146U (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
TW106205945U TWM552991U (en) 2017-04-27 2017-04-27 Substrate having the color anti-scattering film
TW106205945 2017-04-27

Publications (1)

Publication Number Publication Date
CN207958146U true CN207958146U (en) 2018-10-12

Family

ID=61229115

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201720656342.8U Active CN207958146U (en) 2017-04-27 2017-06-07 Substrate with color explosion-proof membrane

Country Status (2)

Country Link
CN (1) CN207958146U (en)
TW (1) TWM552991U (en)

Also Published As

Publication number Publication date
TWM552991U (en) 2017-12-11

Similar Documents

Publication Publication Date Title
CN104024994B (en) Touch sensor with ornament, method of manufacturing same, and touch sensor used in same
CN106601382B (en) A kind of preparation method of flexible transparent conducting film
US10514480B2 (en) Light guiding liquid glue and a touch sensitive display using the same
TWI236970B (en) A functional film with functional layers for transfer uses, an object with imparted functional layer and its production method
WO2013161997A1 (en) Transparent conductive substrate fabrication method, transparent conductive substrate and electrostatic capacitance-type touch panel
JPWO2008149969A1 (en) Electromagnetic wave shielding material and manufacturing method thereof
KR20130122776A (en) Patterned flexible transparent conductive sheet and manufacturing method thereof
JPWO2013161997A6 (en) Transparent conductive substrate manufacturing method, transparent conductive substrate, and capacitive touch panel
CN105637455B (en) The method for being formed with the touch screen panel covering window of printing layer and forming printing layer in touch screen panel covering window
JP5464608B2 (en) Touch sensor with decoration and method for manufacturing the same
CN108776564B (en) Preparation method of ultrathin flexible double-layer touch screen sensor
CN104345962A (en) Portable electronic product, touch screen and touch screen preparation method
WO2015025710A1 (en) Capacitive touch panel and method for manufacturing same
CN106433398B (en) Electrically conducting transparent coating composition, touch panel and preparation method thereof, display device
JP2021503178A5 (en)
US11805598B2 (en) Ultra-thin composite transparent conductive film and preparation method therefor
CN110474162A (en) Cover board of included antenna and preparation method thereof and electronic equipment
CN207958146U (en) Substrate with color explosion-proof membrane
WO2018132994A1 (en) Fingerprint recognition device and manufacturing method therefor
CN108793761A (en) Manufacturing method of colorful explosion-proof membrane and substrate with colorful explosion-proof membrane
JP2021501445A (en) Embedded transparent electrode substrate and its manufacturing method
KR20100116398A (en) Post treatment method of carbon nanotube film
TW201205365A (en) Explosion prevention film, touch panel with explosion prevention function and the manufacture method
KR20170035567A (en) Conductive light shielding tape
CN207014936U (en) A kind of new type explosion proof film

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
EE01 Entry into force of recordation of patent licensing contract
EE01 Entry into force of recordation of patent licensing contract

Assignee: Wuxi Quanhong Photoelectric Technology Co., Ltd

Assignor: Xu Mingan

Contract record no.: X2020990000397

Denomination of utility model: Base plate with color explosion proof film

Granted publication date: 20181012

License type: Common License

Record date: 20200805

TR01 Transfer of patent right
TR01 Transfer of patent right

Effective date of registration: 20220601

Address after: Unit 706, happy news building, 1 champley street, Hong Kong, China

Patentee after: Hengxu Electronic Materials International Co.,Ltd.

Address before: 442-1, Zhonghua Road, head town, Miaoli County

Patentee before: Xu Mingan