CN204989713U - Superficial type liquid crystal lenticular lens array device and display device are played to surface - Google Patents

Superficial type liquid crystal lenticular lens array device and display device are played to surface Download PDF

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Publication number
CN204989713U
CN204989713U CN201520503504.5U CN201520503504U CN204989713U CN 204989713 U CN204989713 U CN 204989713U CN 201520503504 U CN201520503504 U CN 201520503504U CN 204989713 U CN204989713 U CN 204989713U
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China
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liquid crystal
lens array
type liquid
ito electrode
floating type
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CN201520503504.5U
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Chinese (zh)
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林明彦
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Zhangjiagang Kangdexin Optronics Material Co Ltd
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Zhangjiagang Kangdexin Optronics Material Co Ltd
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Abstract

The utility model discloses a superficial type liquid crystal lenticular lens array device and display device are played to surface, the device mainly by upper substrate subassembly, infrabasal plate subassembly, plano -concave lens subassembly, a plurality of the liquid crystal molecules, seal glued structures, electric conducting structure, and external power source constitute. Wherein, this infrabasal plate subassembly includes that ITO electrode layer, inferior ITO electrode and a plurality of are down to the temperature scale target down, this upper substrate subassembly includes to the temperature scale target on ITO electrode layer, a plurality of shading portion and a plurality of, this plano -concave lens subassembly sets up on the lower ITO electrode layer of this infrabasal plate subassembly, these a plurality of the liquid crystal molecules set up in this concavees lens face, this external power source is electrical connection to this time ITO electrode layer and this time ITO electrode then, by suitably voltage V's drive, to these a plurality of liquid crystal lenticular lens, reaches 2D and the changeable purpose of 3D. The utility model also discloses a manufacturing method of this array device and the display device who uses it.

Description

Surface floating type liquid crystal column lens array device and display device
Technical field
The utility model belongs to the naked field looking 3D image display, belongs to the technical field of liquid crystal column lens array, especially relates to and utilizes surperficial method for floating (SurfaceReliefMethod), to reach the technology that 2D and 3D image switches.
Background technology
As shown in Figure 1, be the schematic diagram of known 2D and 3D image switching display devices.For known 2D and 3D image switching display devices (2Dand3DImageSwitchableDisplay) 10, being generally is use liquid crystal what comes into a driver's separation assembly 12 (LiquideCrystalViewSeparator), and is arranged on before liquid crystal display 11 screen.For the viewing location of this audience 13, by this liquid crystal what comes into a driver's separation assembly 12, be arranged on the mounting means before this liquid crystal display 11 screen, hereinafter referred to as front mounting means (FrontInstallationMethod).
In addition, by the driving of the suitable electrically voltage V in outside, this liquid crystal what comes into a driver's separation assembly 12 can present transparent light and penetrate state, to reach effect of 2D image display; Or present the state of what comes into a driver's separation, to reach effect of 3D image display.
Generally, this liquid crystal what comes into a driver's separation assembly 12, for being made up of liquid crystal column lens array assembly (LiquidCrystalLenticularDevice) or liquid crystal parallax grating assembly (LiquidCrystalParallaxBarrierDevice).Due to correlation technique described in the utility model, belong to the field of liquid crystal column lens array assembly, especially for utilizing surperficial method for floating (SurfaceReliefMethod), to reach the field of 2D and 3D image handoff technique, only for known surface method for floating liquid crystal column lens array assembly, known technology is described below.
As shown in Figure 2, be the schematic diagram of surperficial floating type liquid crystal column lens array device formation.Structure shown in this figure, by US Patent No. 6,069, disclosed by 650, refer to the explanation of Fig. 3 in this patent specification.
This surperficial floating type liquid crystal column lens array device 15, mainly include traditional post mirror array assembly (ConventionalLenticularSheet) 30, a two ITO electrode layer 34,37, have can automatically controlled change light refractive index photoelectric material (Elecro-OpticMaterial) 38, formed with a transparent planar substrate 36.Wherein, this traditional post mirror array assembly 30, be made up of several lens pillar assemblies (ParallelLenticularElements) 16 arranged in parallel, this lens pillar assembly 16, in being optically be made up of convex lens, then be made up of transparent polymer material (PolymericMaterial) on material, by mould molding or machining or photoetch processing procedure (PhotolithographicProcess) to produce this lens pillar assembly.This transparent planar substrate 36 is made up of flat clear glass or plastic material.This two ITO electrode layer 34,37 be covered in separately this lens pillar assembly 16 surface 32, with the surface 34 of this transparent planar substrate 36 on.In between this two surface, then fill up that have can the photoelectric material (Elecro-OpticMaterial) 38 of automatically controlled change light refractive index, this can the photoelectric material 38 of automatically controlled change light refractive index, then be made up of liquid crystal material, generally, can be made up of nematic crystal (NematicLiquidCrystal) material.
This US6 above-mentioned, the skill of the surperficial floating type liquid crystal column lens array device 15 disclosed by 069,650 patents, only belongs to the formation of theoretical construct, does not meet the requirement of available liquid crystal technique.Such as, this ITO electrode layer 34 is arranged on the arc surface of post mirror lens, and between this ITO electrode layer 37, cannot form an equally distributed parallel electric field, finally, causes liquid crystal molecule cannot form the consistent arrangement in direction.
As shown in Figure 3, be the schematic diagram of Improvement type surface floating type liquid crystal column lens array device formation.Structure shown in this figure, disclosed by US Patent No. 20080259233, refers to the explanation of Fig. 2 ~ 3 in this patent specification.
This Improvement type surface floating type liquid crystal column lens array device (SurfaceReliefBasedLiquidCrystalLenticularDevice) 50, for above-mentioned patent US6,069, the disappearance of 650, the improvement done, by ITO electrode, by the arc surface of lens, in dislocation one plane.This Improvement type surface floating type liquid crystal column lens array device 50, primarily of upper and lower transparent base 39,41, upper and lower ITO electrode layer 43,45, plano-concave lens assembly 47, a plurality of liquid crystal molecule 49 form.Wherein, this plano-concave lens assembly 47, has light refractive index n p; This plurality of liquid crystal molecule 49, for being made up of nematic crystal (NematicLiquidCrystal) material, have the feature of Birefringent optical (BirefringentOptics), its ordinary refraction index (OrdinaryRefractiveIndex) is n o, abnormal optical index (ExtraordinaryRefractiveIndex) is n e, and there is n o=n p, n e>n prelation.This upper and lower ITO electrode layer 39,41, for being connected to power supply V.
In addition, this liquid crystal column lens array assembly 50, for being arranged on before LCD screen (not indicating in figure), this LCD screen is in order to show 2D or 3D image (not indicating in figure); The light source of this 2D or 3D image, after the effect of this LCD screen outermost layer polaroid (not indicating in figure), becomes the light source 53 of linear polarization polarisation, makes its polarization direction be perpendicular to paper.
When without under extra electric field, i.e. V=OFF, the arrangement of this nematic liquid crystal molecules 49, has the feature of optical axis perpendicular to paper.For incident light 53, because its light polarization direction is parallel with liquid crystal molecule 49 optical axis, for experiencing abnormal optical index n e.In addition, when this incident light 53 is through this plano-concave lens array 47, because of n e>n pevent, this incident light 53 experiences the effect of convex lens, and therefore above-mentioned optical characteristics is applicable to the display presenting 3D image.
In addition, under extra electric field, i.e. V=ON, the arrangement of this nematic liquid crystal molecules 49, has optical axis and lies low in paper and perpendicular to the feature of this upper and lower ITO electrode layer 43,45, be namely parallel to the direction (not indicating in figure) of electric field.For incident light 53, because its light polarization direction is vertical with liquid crystal molecule 49 optical axis, for experiencing ordinary n o.In addition, when this incident light 53 is through this plano-concave lens array 47, because of n o=n pevent, this incident light 53 is by the impact of this plano-concave lens array 47, and directly penetrate this plano-concave lens array 47, therefore above-mentioned optical characteristics is applicable to the display presenting 2D image.
The skill of the surperficial floating type liquid crystal column lens array device 50 disclosed by this US20080259233 patent above-mentioned, still belongs to the formation of theoretical construct, does not meet the requirement of available liquid crystal box (LiquidCrystalCell) technique.Such as, this plano-concave lens array 47, with on this 45, lower ITO electrode layer, there is no settings (1) orientation rete, (2) wall, (3) electrical connection, and the structure such as (4) sealing.Finally, cause this Improvement type surface floating type liquid crystal column lens array device 50, cannot form one really can to produce, spendable assembly.
In sum, these three kinds of liquid crystal column lens array assemblies above-mentioned, all have by liquid crystal molecule, can the feature of modulation light refractive index to reach.Therefore by above-mentioned three kinds of known skill, the technical field of a kind of liquid crystal interdependent liquid crystal column lens array assembly can be ranged.
Utility model content
The utility model discloses a kind of surperficial floating type liquid crystal column lens array device, it comprises: infrabasal plate assembly, is made up of lower transparent base, lower ITO electrode layer, secondary ITO electrode, electrically blocking-up structure and several lower contraposition targets; Upper substrate assembly, by upper transparent base, upper ITO electrode layer, a plurality of light shielding part, on several, contraposition target and upper alignment film formed; Plano-concave lens assembly, is made up of transparent material, and it includes a plurality of concavees lens face, sealing face, a plurality of septal surface and lower alignment film, and this plano-concave lens assembly is arranged on the lower ITO electrode layer of this infrabasal plate assembly; A plurality of liquid crystal molecule, is arranged in this concavees lens face, by the driving of the voltage of this upper and lower ITO electrode layer and external power source, to form a plurality of liquid crystal lens pillar; Glue sealing structure, is arranged on this sealing face, for connecting and fixing this upper substrate assembly and infrabasal plate assembly, and seals this plurality of liquid crystal molecule; And conduct structure, be arranged in this ITO electrode, to connect conducting ITO electrode layer on this; This external power source, is electrically connected to this lower ITO electrode layer and this ITO electrode, drives this plurality of liquid crystal lens pillar, reach the switchable object of 2D and 3D by voltage V.
Preferably, described lower transparent base and described lower transparent base are all made up of transparent glass.
Preferably, this lower ITO electrode layer, this ITO electrode and this electric blocking-up structure are arranged at this lower transparent base the same face, and this electric blocking-up structure is arranged between this lower ITO electrode layer and this ITO electrode.
Preferably, this lower ITO electrode layer and this ITO electrode do electric connection each via a plain conductor and this external power source.
Preferably, this plurality of light shielding part is made up of black photoresist.
Preferably, several lower contraposition targets described are arranged at four corners of lower transparent base, and several lower contraposition targets described are made up of metal material; Or, described on several contraposition target be arranged at four corners of transparent base, described on several contraposition target be made up of metal material.
Preferably, the transparent material of described plano-concave lens assembly has light refractive index n p, be selected from glass or UV curable resin.
Preferably, the transparent material of described plano-concave lens assembly is when being selected from UV curable resin, this plano-concave lens assembly by a plane ultra-violet curing process, so that this plano-concave lens assembly straight forming is arranged on this infrabasal plate assembly.
Preferably, described concavees lens face is in order to fill this plurality of liquid crystal molecule, and described concavees lens face is selected from arc-shaped concavees lens face or multiaspect shape concavees lens face.
Preferably, described concavees lens face is when being selected from arc-shaped concavees lens face, and this arc-shaped concavees lens mask has radius R, cycle unit width P l, lens height h and underlayer thickness t.
Preferably, described underlayer thickness t is less than 10 μm.
Preferably, described sealing face is the both sides being arranged at this plano-concave lens assembly.
Preferably, described a plurality of septal surface is arranged between the sealing face of these both sides, is used to support this upper substrate assembly, and to keep homogeneous box gap, this each septal surface has width S.
Preferably, the width S of described septal surface is less than 10 μm.
Preferably, described lower alignment film is by rotating or soak or the processing procedure such as letterpress or spray printing, being coated by alignment liquid on the surface of this plurality of concavees lens face and this plurality of septal surface, and by heat baking processing procedure to produce this lower alignment film; This lower alignment film, again through the processing procedure of orientation, allows this plurality of liquid crystal molecule can be arranged in same direction; The alignment direction of this lower alignment film is the direction being parallel to this switchable liquid crystal lens pillar major axis.
Preferably, described a plurality of liquid crystal molecule is that nematic liquid crystalline material is formed, and have the feature of Birefringent optical, its ordinary refraction index is n o, abnormal optical index is n e, and there is n o=n pand n e>n prelation.
Preferably, described a plurality of light shielding part has cycle unit width P bwith live width B, there is P b=P lwith the relation of B>S, the setting position of this plurality of light shielding part is one_to_one corresponding and in alignment with this plurality of septal surface, can cover this plurality of septal surface place there is the light of crosstalk.
Preferably, described upper board component by a photoetch processing procedure by ITO electrode layer on this, these several on contraposition target and this plurality of light shielding part be arranged on upper transparent base.
Preferably, described upper alignment film is by rotating or soaking or the processing procedure such as letterpress or spray printing, alignment liquid is coated ITO electrode layer on this, with on the surface of this plurality of light shielding part, and by heat baking processing procedure to produce alignment film on this; On this, alignment film is again through the processing procedure of orientation, allows this plurality of liquid crystal molecule can be arranged in same direction.
Preferably, the material of described glue sealing structure is made up of UV curable resin, by accurate contraposition, precise glue dispensing and UV precuring processing procedure, this glue sealing structure can be arranged on this sealing face.
Preferably, described in conduct structure material be made up of conductive silver paste, this can be conducted vibrational power flow in this ITO electrode by the processing procedure of accurate contraposition and precise glue dispensing.
Preferably, as the voltage V=OFF of this external power source, the optical characteristics of this surperficial floating type liquid crystal column lens array device is applicable to the display presenting 3D image; As V=ON, the optical characteristics of this surperficial floating type liquid crystal column lens array device is applicable to the display presenting 2D image.
Preferably, the geometry of described upper contraposition target and lower contraposition target, can be each free to having the square structure of geometric configuration complementation, cubic ring structure, or can each free circular configuration, circular ring structure to having geometric configuration complementation, can each free to have geometric configuration complementation cross structure, with anti-cross structure; The physical dimension of described upper contraposition target and lower contraposition target can be ten microns to hundreds of micron.
The present invention discloses a kind of display device, comprise image incident light and above-mentioned surperficial floating type liquid crystal column lens array device, wherein said image incident light has a linear polarization direction, and the alignment direction of described upper alignment film is parallel with described image incident light polarization direction.
The utility model improves known surperficial floating type liquid crystal column lens array device, gives that one really can be produced, spendable 2D and 3D switchable apparatus.
Accompanying drawing explanation
In order to be illustrated more clearly in the utility model embodiment or technical scheme of the prior art, be briefly described to the accompanying drawing used required in embodiment or description of the prior art below, apparently, the accompanying drawing that the following describes is only some embodiments recorded in the utility model, for those of ordinary skill in the art, under the prerequisite not paying creative work, other drawings and the embodiments can also be obtained according to these accompanying drawings.
Shown in Fig. 1, the schematic diagram of known 2D and 3D image switching display devices;
Shown in Fig. 2, the schematic diagram that known surface fluctuating type liquid crystal column lens array assembly is formed;
Shown in Fig. 3, the schematic diagram that known surface fluctuating type liquid crystal column lens array assembly is formed;
Shown in Fig. 4, the schematic diagram that known surface fluctuating type liquid crystal column lens array assembly is formed;
Shown in Fig. 5, it is the schematic diagram that the utility model surface floating type liquid crystal column lens array device is formed;
Shown in Fig. 6, it is the schematic side view that the utility model infrabasal plate assembly is formed;
Shown in Fig. 7, it is the upper schematic diagram that the utility model infrabasal plate assembly is formed;
Shown in Fig. 8, it is the schematic diagram that the utility model plano-concave lens assembly is formed;
Shown in Fig. 9, it is the schematic diagram of the utility model plano-concave lens assembly forming plane mould;
Shown in Figure 10, for the utility model is to the schematic diagram of plane mould filling liquid UV resin processing procedure;
Shown in Figure 11, be the pressing of the utility model infrabasal plate assembly and the schematic diagram covering liquid UV resin processing procedure;
Shown in Figure 12, it is the schematic diagram of the utility model liquid towards UV resin solidification processing procedure;
Shown in Figure 13, it is the schematic diagram of the utility model concavees lens assembly demoulding;
Shown in Figure 14, it is the schematic diagram of the utility model lens substrate assembly 3D structure;
Shown in Figure 15, it is the schematic side view that the utility model upper substrate assembly is formed;
Shown in Figure 16, it is the upper schematic diagram that the utility model upper substrate assembly is formed;
Shown in Figure 17, for the utility model glue sealing structure with conduct the schematic diagram that structure assembles processing procedure;
Shown in Figure 18, for assembling the schematic diagram of processing procedure under the utility model liquid crystal drop;
Shown in Figure 19, it is the schematic diagram of the utility model upper substrate assembly and lower lens liquid crystal cell assembling components processing procedure;
Shown in Figure 20, it is the schematic diagram of the utility model surface floating type liquid crystal column lens array device finished goods;
Shown in Figure 21, it is the schematic diagram of the utility model square contraposition target geometric configuration;
Shown in Figure 22, it is the schematic diagram of the utility model four directions ring contraposition target geometric configuration;
Shown in Figure 23, it is the schematic diagram of the utility model circular contraposition target geometric configuration;
Shown in Figure 24, it is the schematic diagram of the utility model annulus contraposition target geometric configuration;
Shown in Figure 25, it is the schematic diagram of the utility model cross contraposition target geometric configuration;
Shown in Figure 26, it is the schematic diagram of the utility model anti-cross contraposition target geometric configuration.
Embodiment
As shown in Figure 5, be the schematic diagram of the utility model surface floating type liquid crystal column lens array device formation.This surperficial floating type liquid crystal column lens array device 60, primarily of the upper and lower transparent base 71,61 of tool; Upper and lower ITO electrode layer 72,62, secondary ITO electrode 62a; Several upper and lower contraposition targets 73,63; Upper and lower alignment film 76,66; A plurality of light shielding part 75; Plano-concave lens assembly 64; A plurality of liquid crystal molecule 81, glue sealing structure 82, conduct structure 83, formed with external power source V.
Herein, so-called upper, with under, just each structure for convenience of description, the relevance of its setting position, not need limit the upper and lower relation had as shown in Figure 5.That is above-mentioned so-called up and down can mutually be put upside down as lower with upper relation.Herein, define in addition upper substrate assembly 171, infrabasal plate assembly 161, more to clearly demonstrate formation and the processing procedure of above-mentioned each assembly.
As shown in figs. 6-7, this infrabasal plate assembly 161 is mainly made up of this lower transparent base 61, this lower ITO electrode layer 62, secondary ITO electrode 62a, electrically blocking-up structure 62b and these several lower contraposition target 63;
As shown in Figure 15 ~ 16, this upper substrate assembly 171 by upper transparent base 71, upper ITO electrode layer 72, a plurality of light shielding part 75, upper alignment film 76 with several on contraposition target 73 formed.
As shown in figs. 6-7, be the schematic diagram that this infrabasal plate assembly is formed.This lower transparent base 61, by a transparent glass is formed, can by a photoetch processing procedure (Photo-LithographyProcess), to be provided with this lower ITO electrode layer 62, secondary ITO electrode 62a, electrically blocking-up structure 62b and this several time contraposition target 63.
Between this lower ITO electrode layer 62, secondary ITO electrode 62a, be provided with an electric blocking-up structure 62b, with electrical isolation this lower ITO electrode layer 62, secondary ITO electrode 62a; This ITO electrode 62a, is conduct structure 83 and ITO electrode layer 72 on this by this, does electric connection.In addition, this lower ITO electrode layer 62, secondary ITO electrode 62a, each via a plain conductor 62c, do electric connection with this external voltage V.
In addition, these several lower contraposition target 63 is arranged at this suitably to locate, and the best is four corners, is be made up of metal material, to improve identification and the precision of optical image contraposition.
As shown in Figure 8, this plano-concave lens assembly 64, be be made up of transparent material, including the structures such as a plurality of circular arc concavees lens face 64a, sealing face 64b, a plurality of septal surface 64c and lower alignment film 66, is be arranged on the lower ITO electrode layer 62 of this infrabasal plate assembly 161.
Wherein, these circular arc concavees lens face 64a has Radius R, cycle unit width P l, lens height h, with underlayer thickness t.Generally, in order to reduce the driving voltage of this external power source V, in optical design, lens height h need be reduced as far as possible; On processing procedure, then force down underlayer thickness t, the best, t<10 μm as far as possible.Certainly, the formation of this concave surface, also can be selected from the concavees lens face (not shown) of a tool multiaspect shape, about the face structure in the concavees lens face of this multiaspect shape and effect of optics, please reads US patent application case number in detail: US8,780,188B2; Chinese patent application case number: CN102077601B.
In addition, this sealing face 64b is the both sides being arranged at this plano-concave lens assembly 64, then this plurality of septal surface 64c made by dress therebetween, and this septal surface 64c has a width S, this plurality of septal surface 64c, be used to support this upper substrate assembly 171, to keep homogeneous box gap (CellGap), on processing procedure, then reduce width S as far as possible, the best, S<10 μm.In addition, as aftermentioned, these circular arc concavees lens face 64a is used to be filled with this plurality of liquid crystal molecule 81, to form switchable liquid crystal lens pillar; This sealing face 64b is used to arrange this glue sealing structure 82, with reach upper substrate assembly 171, infrabasal plate assembly 161 connection with fixing.
This lower alignment film 66 is by rotating (Spin) or soaking (Dipping) or the processing procedure such as letterpress or spray printing (InkjetPrinting), alignment liquid is coated this plurality of circular arc concavees lens face 64a, with on the surface of a plurality of septal surface 64c, and through overheated baking processing procedure, to produce this lower alignment film 66.Generally, this lower alignment liquid is made up of polyimide (Polyimide) material.In addition, this lower alignment film 66 also needs the processing procedure through orientation, could allow this plurality of liquid crystal molecule 81, reaches the object of same direction arrangement.Generally, the alignment manufacture process of this lower alignment film is selected from friction processing procedure (RubbingProess) or light alignment manufacture process (Photo-AlignmentProcess).In addition, the alignment direction of this lower alignment film, the best is the direction being parallel to this switchable liquid crystal lens pillar major axis.
In addition, this plano-concave lens assembly 64, is be made up of transparent materials such as glass or UV curable resins (VU-CuredResin is called for short UV resin), has light refractive index n p; This plurality of liquid crystal molecule 81 (not indicating in figure), for being made up of nematic liquid crystalline material, have the feature of Birefringent optical, its ordinary refraction index is n o, abnormal optical index is n e, and there is n o=n pand n e>n prelation.
Wherein, when this plano-concave lens assembly 64 be made up of UV resin material time, this plano-concave lens assembly 64 by a plane ultra-violet curing process (Plate-to-PlateUV-CuredManufacturingProcess), to be directly arranged on this infrabasal plate assembly 161.
As shown in Fig. 9 ~ 13, it is the schematic diagram of plane ultra-violet curing process.This processing procedure, mainly passes through the technique of a plane mould and UV solidification, by the plano-concave lens assembly 64 be made up of UV resin, takes shape on this infrabasal plate assembly 161.
First, as shown in Figure 9, be the schematic diagram of plano-concave lens assembly forming plane mould.This plane mould (PlaneMould) 64d has the structure contrary with this plano-concave lens assembly 64.
As shown in Figure 10, be the schematic diagram to plane mould filling liquid UV resin.By the mode of accurate spray printing (InkjetPrinting), can to this plane mould 64d filling liquid UV resin 64e.
As shown in figure 11, be the pressing of infrabasal plate assembly and the schematic diagram covering liquid UV resin processing procedure.By the precision optics contraposition (OpticalAlignmentwithHighAccuracy) to this infrabasal plate assembly 161, by the lower ITO electrode layer 62 of this infrabasal plate assembly 161, accurately can be pressed on this this plane mould 64d and be covered on this liquid UV resin 64e.In addition, in order to avoid being mixed into of bubble, above-mentioned pressing and the processing procedure of covering generally, are carry out in a vacuum cavity.
As shown in figure 12, be the schematic diagram of liquid towards UV resin solidification processing procedure.Generally, by the collimated UV light sources 64f of the suitable wavelength of a tool and light intensity, the liquid UV resin 64e of 64d in this plane mould is done to the irradiation of appropriate time, this liquid UV resin can be allowed to reach the object of solidification.
As shown in figure 13, be the schematic diagram of concavees lens assembly demoulding.Liquid UV resin after this solidification above-mentioned, then by after the operation of demoulding, finally, can reach and this plano-concave lens assembly 64 is directly molded on the lower ITO electrode layer 62 of this infrabasal plate assembly 161.
As shown in figure 14, be the schematic diagram of lens substrate assembly 3D structure.Conveniently explanation hereafter, the lower lens substrate assembly 161 ' of order is by this plano-concave lens assembly 64, forms with this infrabasal plate assembly 161.
As shown in Figure 15 ~ 16, it is the schematic diagram that this upper substrate assembly is formed.Transparent base 71 on this, by a transparent glass is formed, can by a photoetch processing procedure, be provided with ITO electrode layer 72 on this, with these several on contraposition target 73.In addition, more equally by this photoetch processing procedure, and use black photoresistance (BlackPhoto-Resistor), on this on ITO electrode layer 72, to arrange a plurality of light shielding part 75, this plurality of light shielding part 75, has cycle unit width P b, with live width B, the cycle unit width P in itself and this circular arc concavees lens face l, septal surface 64b width S, there is P b=P lwith the relation of B>S.When 3D Image model, for the light by this plurality of septal surface 64c place, the phenomenon of crosstalk (Cross-talk) can be caused.Therefore this position set by a plurality of light shielding part 75, as aftermentioned, after the accurate contraposition assembling of upper and lower board unit, can one_to_one corresponding and in alignment with this plurality of septal surface 64c, the light covering this generation crosstalk can be reached, to improve the object of the 3D quality of image.
In addition, on this, alignment film 76 is by rotating (Spin) or soaking (Dipping) or the processing procedure such as letterpress or spray printing (InkjetPrinting), alignment liquid is coated ITO electrode layer 72 on this, with on the surface of this plurality of light shielding part 75, and by heat baking processing procedure, to produce alignment film 76 on this.Generally, this alignment liquid is made up of polyimide (Polyimide) material.In addition, on this, alignment film 76 also needs the processing procedure through orientation, could allow this plurality of liquid crystal molecule 81, reaches the object of same direction arrangement.Generally, the alignment manufacture process of this lower alignment film is selected from friction processing procedure (RubbingProess) or light alignment manufacture process (Photo-AlignmentProcess).In addition, the alignment direction of alignment film on this, the best, as shown in Figure 5, be the linear polarization direction being parallel to image incident light, this incident light comprises 2D/3D image, and incident light is incident from upper substrate assembly 171 end.
As shown in Figure 17 ~ 20, be this upper substrate assembly, with the schematic diagram of this lower lens substrate assembling components processing procedure.This processing procedure, mainly by this plurality of liquid crystal molecule 81, glue sealing structure 82, with conduct structure 83, be arranged at after on this lower lens substrate assembly 161 ', again by this upper substrate assembly 171, do to link with fixing with this lower lens substrate assembly 161 ', finally, with this surperficial floating type liquid crystal column lens array device 60 of output.
As shown in figure 17, for glue sealing structure with conduct the schematic diagram that structure assembles processing procedure.The material of this glue sealing structure 82 is made up of UV resin, by the technique of accurate contraposition and precise glue dispensing, and carries out UV precuring process, this glue sealing structure 82 can be arranged on the 64b of this sealing face.Above-mentioned processing procedure, is commonly referred to as manufacture procedure of adhesive, to reach to the connection of upper substrate assembly 171, infrabasal plate assembly 161 with fixing, and, reach the object of this plurality of liquid crystal molecule 81 of sealing.
In addition, this conducts the material of structure 83, is be made up of conductive silver paste, by the technique of accurate contraposition and precise glue dispensing, this can be conducted structure 83 and be arranged on this ITO electrode 62a.Above-mentioned processing procedure, is commonly referred to as a silver-colored plasma procedure, in order to be electrically connected ITO electrode layer 72 and this external voltage V on this.
Shown in Figure 18, for assembling the schematic diagram of processing procedure under liquid crystal drop.By accurate contraposition with (ODF under liquid crystal drop, OnDropFilling) technique, can be filled in these circular arc concavees lens face 64a, to form switchable liquid crystal lens pillar by this plurality of liquid crystal molecule 81, above-mentioned processing procedure, is commonly referred to as liquid crystal drop process.
For completing this sealing above-mentioned, some silver slurry and this lower lens substrate assembly 161 ' of liquid crystal drop process, below, be commonly referred to as lower lens liquid crystal cell assembly 161 ".Certainly, produce line according to reality and produce the demand of effect, this sealing above-mentioned or put silver-colored plasma procedure, its object implemented, be not defined as this lower lens substrate assembly 161 ', also can be this upper substrate assembly 171.
As shown in figure 19, be the schematic diagram of upper substrate assembly and lower lens liquid crystal cell assembling components processing procedure.By accurate contraposition and vacuum abutted technique, can by this upper substrate assembly 171 and this lower lens liquid crystal cell assembly 161 " combine.Finally, by UV light source 84, after solidification is irradiated to this glue sealing structure 82, as shown in figure 20, i.e. this surperficial floating type liquid crystal column lens array device 60 of output this patent.
As shown in Figure 7, as V=OFF, the optical characteristics of this surperficial floating type liquid crystal column lens array device 60, is applicable to the display presenting 3D image; As V=ON, the optical characteristics of this surperficial floating type liquid crystal column lens array device 60, optical characteristics is applicable to the display presenting 2D image, reaches the object of the changeable display of 2D and 3D image.
In addition, the formation of this upper and lower contraposition target 73,63 geometric configuration above-mentioned, as shown in Figure 21 ~ 26, can be each free to having the square structure 73a of geometric configuration complementation, cubic ring structure 63a, or can each free circular configuration 73b, circular ring structure 63b to having geometric configuration complementation, can each free to have geometric configuration complementation cross structure 73c, with anti-cross structure 63c.In addition, this upper and lower contraposition target 73a above-mentioned, 63a, 73b, 63b, 73c, with the size of 63c physical dimension, can be ten microns (μm) to hundreds of micron.
The utility model improves known surperficial floating type liquid crystal column lens array device, gives that one really can be produced, spendable 2D and 3D switchable apparatus.

Claims (21)

1. a surperficial floating type liquid crystal column lens array device, is characterized in that comprising:
Infrabasal plate assembly, is made up of lower transparent base, lower ITO electrode layer, secondary ITO electrode, electrically blocking-up structure and several lower contraposition targets;
Upper substrate assembly, by upper transparent base, upper ITO electrode layer, a plurality of light shielding part, on several, contraposition target and upper alignment film formed;
Plano-concave lens assembly, is made up of transparent material, and it includes a plurality of concavees lens face, sealing face, a plurality of septal surface and lower alignment film, and this plano-concave lens assembly is arranged on the lower ITO electrode layer of this infrabasal plate assembly;
A plurality of liquid crystal molecule, is arranged in this concavees lens face, by the driving of the voltage of this upper and lower ITO electrode layer and an external power source, to form a plurality of liquid crystal lens pillar;
Glue sealing structure, is arranged on this sealing face, for connecting and fixing this upper substrate assembly and infrabasal plate assembly, and seals this plurality of liquid crystal molecule; And
Conduct structure, be arranged in this ITO electrode, to connect conducting ITO electrode layer on this;
Wherein said external power source, is electrically connected to this lower ITO electrode layer and this ITO electrode, drives this plurality of liquid crystal lens pillar to realize switching the object of 2D and 3D display by voltage V.
2. surperficial floating type liquid crystal column lens array device according to claim 1, is characterized in that described lower transparent base and described upper transparent base are all made up of transparent glass.
3. surperficial floating type liquid crystal column lens array device according to claim 1, it is characterized in that this lower ITO electrode layer, this ITO electrode and this electric blocking-up structure are arranged at this lower transparent base the same face, this electric blocking-up structure is arranged between this lower ITO electrode layer and this ITO electrode.
4. surperficial floating type liquid crystal column lens array device according to claim 1, is characterized in that this lower ITO electrode layer and this ITO electrode do electric connection each via a plain conductor and this external power source.
5. surperficial floating type liquid crystal column lens array device according to claim 1, is characterized in that this plurality of light shielding part is made up of black photoresist.
6. surperficial floating type liquid crystal column lens array device according to claim 1, it is characterized in that several lower contraposition targets described are arranged at four corners of lower transparent base, several lower contraposition targets described are made up of metal material; Or, described on several contraposition target be arranged at four corners of transparent base, described on several contraposition target be made up of metal material.
7. surperficial floating type liquid crystal column lens array device according to claim 1, is characterized in that the transparent material of described plano-concave lens assembly has light refractive index n p, be selected from glass or UV curable resin.
8. surperficial floating type liquid crystal column lens array device according to claim 1, it is characterized in that described concavees lens face is in order to fill this plurality of liquid crystal molecule, described concavees lens face is selected from arc-shaped concavees lens face or multiaspect shape concavees lens face.
9. surperficial floating type liquid crystal column lens array device according to claim 8, when it is characterized in that described concavees lens face is selected from arc-shaped concavees lens face, this arc-shaped concavees lens mask has radius R, cycle unit width P l, lens height h and underlayer thickness t.
10. surperficial floating type liquid crystal column lens array device according to claim 9, is characterized in that described underlayer thickness t is less than 10 μm.
11. surperficial floating type liquid crystal column lens array devices according to claim 1, is characterized in that described sealing face is arranged at the both sides of this plano-concave lens assembly.
12. surperficial floating type liquid crystal column lens array devices according to claim 1, it is characterized in that described a plurality of septal surface is arranged between this sealing face of both sides, be used for supporting this upper substrate assembly, to keep homogeneous box gap, this each septal surface has width S.
13. surperficial floating type liquid crystal column lens array devices according to claim 12, is characterized in that the width S of described septal surface is less than 10 μm.
14. surperficial floating type liquid crystal column lens array devices according to claim 1, is characterized in that the alignment direction of described lower alignment film is the direction being parallel to this switchable liquid crystal lens pillar major axis.
15. surperficial floating type liquid crystal column lens array devices according to claim 1, it is characterized in that described a plurality of liquid crystal molecule is that nematic liquid crystalline material is formed, have the feature of Birefringent optical, its ordinary refraction index is n o, abnormal optical index is n e, and there is n o=n pand n e>n prelation.
16. surperficial floating type liquid crystal column lens array devices according to claim 1, is characterized in that described a plurality of light shielding part has cycle unit width P bwith live width B, there is P b=P lwith the relation of B>S, the setting position of this plurality of light shielding part is one_to_one corresponding and in alignment with this plurality of septal surface, can cover this plurality of septal surface place there is the light of crosstalk.
17. surperficial floating type liquid crystal column lens array devices according to claim 1, is characterized in that the material of described glue sealing structure is made up of UV curable resin.
18. surperficial floating type liquid crystal column lens array devices according to claim 1, the material conducting structure described in it is characterized in that is made up of conductive silver paste.
19. surperficial floating type liquid crystal column lens array devices according to claim 1, when it is characterized in that the voltage V=OFF when this external power source, the optical characteristics of this surperficial floating type liquid crystal column lens array device is applicable to the display presenting 3D image; As V=ON, the optical characteristics of this surperficial floating type liquid crystal column lens array device is applicable to the display presenting 2D image.
20. surperficial floating type liquid crystal column lens array devices according to claim 1, it is characterized in that the geometry of described upper contraposition target and lower contraposition target, can be each free to having the square structure of geometric configuration complementation, cubic ring structure, or can each free circular configuration, circular ring structure to having geometric configuration complementation, can each free to have geometric configuration complementation cross structure, with anti-cross structure; The physical dimension of described upper contraposition target and lower contraposition target can be ten microns to hundreds of micron.
21. 1 kinds of display device, comprise image incident light and as surperficial floating type liquid crystal column lens array device as described in any one in claim 1-20, it is characterized in that: described image incident light has a linear polarization direction, the alignment direction of described upper alignment film is parallel with described image incident light polarization direction.
CN201520503504.5U 2015-07-13 2015-07-13 Superficial type liquid crystal lenticular lens array device and display device are played to surface Withdrawn - After Issue CN204989713U (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104977772A (en) * 2015-07-13 2015-10-14 张家港康得新光电材料有限公司 Surface relief based liquid crystal lenticular array device, manufacturing method and display device
CN106444208A (en) * 2016-08-31 2017-02-22 张家港康得新光电材料有限公司 Display device and 2D display mode realization method
CN109328312A (en) * 2016-04-01 2019-02-12 庆北大学校产学协力团 Active lens arrangement body and its manufacturer

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104977772A (en) * 2015-07-13 2015-10-14 张家港康得新光电材料有限公司 Surface relief based liquid crystal lenticular array device, manufacturing method and display device
WO2017008432A1 (en) * 2015-07-13 2017-01-19 张家港康得新光电材料有限公司 Surface relief liquid crystal lenticular device, manufacturing method, and display device
CN104977772B (en) * 2015-07-13 2017-08-01 张家港康得新光电材料有限公司 Surface floating type liquid crystal column lens array device, manufacture method and display device
US10725318B2 (en) 2015-07-13 2020-07-28 Zhangjiagang Kangde Xin Optronics Material Co., Ltd. Surface relief liquid crystal lenticular device, manufacturing method, and display device
CN109328312A (en) * 2016-04-01 2019-02-12 庆北大学校产学协力团 Active lens arrangement body and its manufacturer
CN106444208A (en) * 2016-08-31 2017-02-22 张家港康得新光电材料有限公司 Display device and 2D display mode realization method

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