CN109946899A - A kind of half-reflection and half-transmission formula electrochromic rearview - Google Patents

A kind of half-reflection and half-transmission formula electrochromic rearview Download PDF

Info

Publication number
CN109946899A
CN109946899A CN201910168762.5A CN201910168762A CN109946899A CN 109946899 A CN109946899 A CN 109946899A CN 201910168762 A CN201910168762 A CN 201910168762A CN 109946899 A CN109946899 A CN 109946899A
Authority
CN
China
Prior art keywords
reflection
substrate
transmission formula
blue light
deviate
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.)
Pending
Application number
CN201910168762.5A
Other languages
Chinese (zh)
Inventor
潘瑞
冯毅
周伟杰
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.)
Truly Opto Electronics Ltd
Original Assignee
Truly Opto Electronics Ltd
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 Truly Opto Electronics Ltd filed Critical Truly Opto Electronics Ltd
Priority to CN201910168762.5A priority Critical patent/CN109946899A/en
Publication of CN109946899A publication Critical patent/CN109946899A/en
Pending legal-status Critical Current

Links

Landscapes

  • Electrochromic Elements, Electrophoresis, Or Variable Reflection Or Absorption Elements (AREA)

Abstract

The invention discloses a kind of half-reflection and half-transmission formula electrochromic rearview, half-reflection and half-transmission formula electrochromic rearview includes: half-reflection and half-transmission formula electrochromism mould group;And deviate from the anti-blue light plated film of its incidence surface side positioned at the half-reflection and half-transmission formula electrochromism mould group.Alternatively, half-reflection and half-transmission formula electrochromic rearview includes: half-reflection and half-transmission formula electrochromism mould group;And deviate from the blue light ink layer of its incidence surface side positioned at the half-reflection and half-transmission formula electrochromism mould group.As shown in the above, anti- blue light plated film or blue light ink layer are set away from its incidence surface side in half-reflection and half-transmission formula electrochromism mould group, and then pass through blue light caused by anti-blue light plated film or blue light ink layer, it is neutralized with the yellow tone that half-reflection and half-transmission formula electrochromism mould group is presented, improve the case where partially yellow tone is presented in the mirror surface of existing rearview mirror, improves visual effect.

Description

A kind of half-reflection and half-transmission formula electrochromic rearview
Technical field
The present invention relates to electrochromism technical fields, more specifically, after being related to a kind of half-reflection and half-transmission formula electrochromism Visor.
Background technique
Currently, automobile has become the most commonly used vehicles of people's daily trip.The inside rear-view mirror of automobile is driver The main component for observing automobile rear situation, belongs to the important safety component of automobile, and mirror surface, shape are all quite worthy of careful study, because And the quality of inside rear-view mirror and installation have corresponding standard.Driver drives in the long distance tunnel of night or dark When, when the light of the headstock headlight of the vehicle at rear is irradiated in inside rear-view mirror by this vehicle rear window, inside rear-view mirror will reflect Strong illumination will appear dazzling light on the glasses of driver, and then the glasses of driver are caused to stimulate, influence driver Sight, serious threat is produced to the safety of driver and passenger.In order to optimize the inside rear-view mirror of automobile, existing research and development one Kind electrochromic rearview, still, under unpowered state, the mirror surface of rearview mirror can be presented partially existing electrochromic rearview Yellow tone, influences visual effect.
Summary of the invention
In view of this, passing through anti-blue light plated film or indigo plant the present invention provides a kind of half-reflection and half-transmission formula electrochromic rearview Blue light caused by gloss oil layer of ink neutralizes with the yellow tone that half-reflection and half-transmission formula electrochromism mould group is presented, improves existing The case where partially yellow tone is presented in the mirror surface of rearview mirror, improves visual effect.
To achieve the above object, technical solution provided by the invention is as follows:
A kind of half-reflection and half-transmission formula electrochromic rearview, comprising:
Half-reflection and half-transmission formula electrochromism mould group;
And deviate from the anti-blue light plated film of its incidence surface side positioned at the half-reflection and half-transmission formula electrochromism mould group.
Optionally, the half-reflection and half-transmission formula electrochromic rearview further include:
Deviate from the light shield layer of the half-reflection and half-transmission formula electrochromism mould group side positioned at the anti-blue light plated film.
Optionally, the light shield layer is additionally provided with a display vacancy section;
Wherein, the half-reflection and half-transmission formula electrochromic rearview further include:
Positioned at the anti-blue light plated film away from half-reflection and half-transmission formula electrochromism mould group side and with the display hollow out The corresponding display module in area.
Optionally, the light shield layer is black ink layer or pitch-dark layer.
Optionally, the half-reflection and half-transmission formula electrochromism mould group includes:
First substrate;
Positioned at first substrate towards the first conductive layer of the anti-blue light plated film side;
Deviate from the electrochromic material layer of the first substrate side positioned at first conductive layer;
Deviate from the second conductive layer of the first substrate side positioned at the electrochromism mold materials layer;
Deviate from the part reflective semitransparent film of the first substrate side positioned at second conductive layer;
And deviate from the second substrate of the first substrate side positioned at the part reflective semitransparent film, wherein the anti-blue light Plated film is set in the second substrate.
Optionally, the half-reflection and half-transmission formula electrochromism mould group includes:
First substrate;
Positioned at first substrate towards the first conductive layer of the anti-blue light plated film side;
Deviate from the electrochromic material layer of the first substrate side positioned at first conductive layer;
Deviate from the second conductive layer of the first substrate side positioned at the electrochromism mold materials layer;
Deviate from the second substrate of the first substrate side positioned at second conductive layer;
Deviate from the part reflective semitransparent film of the first substrate side positioned at the second substrate;
And deviate from the third substrate of the first substrate side positioned at the part reflective semitransparent film, wherein the anti-blue light Plated film is set on the third substrate.
Correspondingly, the present invention also provides a kind of half-reflection and half-transmission formula electrochromic rearviews, comprising:
Half-reflection and half-transmission formula electrochromism mould group;
And deviate from the blue light ink layer of its incidence surface side positioned at the half-reflection and half-transmission formula electrochromism mould group.
Optionally, the blue light ink layer is additionally provided with a display vacancy section;
Wherein, the half-reflection and half-transmission formula electrochromic rearview further include:
Positioned at the half-reflection and half-transmission formula electrochromism mould group towards blue light ink layer side and with the display hollow out The corresponding anti-blue light plated film in area;
And deviate from the display module of the half-reflection and half-transmission formula electrochromism mould group side positioned at the anti-blue light plated film.
Optionally, the half-reflection and half-transmission formula electrochromism mould group includes:
First substrate;
Positioned at first substrate towards the first conductive layer of the anti-blue light plated film side;
Deviate from the electrochromic material layer of the first substrate side positioned at first conductive layer;
Deviate from the second conductive layer of the first substrate side positioned at the electrochromism mold materials layer;
Deviate from the part reflective semitransparent film of the first substrate side positioned at second conductive layer;
And deviate from the second substrate of the first substrate side positioned at the part reflective semitransparent film, wherein the anti-blue light Plated film and the blue light ink layer are all set in the second substrate.
Optionally, the half-reflection and half-transmission formula electrochromism mould group includes:
First substrate;
Positioned at first substrate towards the first conductive layer of the anti-blue light plated film side;
Deviate from the electrochromic material layer of the first substrate side positioned at first conductive layer;
Deviate from the second conductive layer of the first substrate side positioned at the electrochromism mold materials layer;
Deviate from the second substrate of the first substrate side positioned at second conductive layer;
Deviate from the part reflective semitransparent film of the first substrate side positioned at the second substrate;
And deviate from the third substrate of the first substrate side positioned at the part reflective semitransparent film, wherein the anti-blue light Plated film and the blue light ink layer are all set on the third substrate.
Compared to the prior art, technical solution provided by the invention has at least the following advantages:
The present invention provides a kind of half-reflection and half-transmission formula electrochromic rearview, half-reflection and half-transmission formula electrochromic rearview packets It includes: half-reflection and half-transmission formula electrochromism mould group;And it is located at the half-reflection and half-transmission formula electrochromism mould group and deviates from its incidence surface side Anti- blue light plated film.Alternatively, half-reflection and half-transmission formula electrochromic rearview includes: half-reflection and half-transmission formula electrochromism mould group;And position Deviate from the blue light ink layer of its incidence surface side in the half-reflection and half-transmission formula electrochromism mould group.
As shown in the above, anti-blue light plated film is set away from its incidence surface side in half-reflection and half-transmission formula electrochromism mould group Or blue light ink layer, and then by blue light caused by anti-blue light plated film or blue light ink layer, with half-reflection and half-transmission formula electrochromism Yellow tone that mould group is presented neutralizes, and improves the case where partially yellow tone is presented in the mirror surface of existing rearview mirror, improves vision Effect.
Detailed description of the invention
In order to more clearly explain the embodiment of the invention or the technical proposal in the existing technology, to embodiment or will show below There is attached drawing needed in technical description to be briefly described, it should be apparent that, the accompanying drawings in the following description is only this The embodiment of invention for those of ordinary skill in the art without creative efforts, can also basis The attached drawing of offer obtains other attached drawings.
Fig. 1 is a kind of structural schematic diagram for half-reflection and half-transmission formula electrochromic rearview that the embodiment of the present application one provides;
Fig. 2 is a kind of structural schematic diagram for half-reflection and half-transmission formula electrochromic rearview that the embodiment of the present application two provides.
Specific embodiment
Following will be combined with the drawings in the embodiments of the present invention, and technical solution in the embodiment of the present invention carries out clear, complete Site preparation description, it is clear that described embodiments are only a part of the embodiments of the present invention, instead of all the embodiments.It is based on Embodiment in the present invention, it is obtained by those of ordinary skill in the art without making creative efforts every other Embodiment shall fall within the protection scope of the present invention.
As described in background, automobile has become the most commonly used vehicles of people's daily trip.Automobile it is interior after Visor is the main component that driver observes automobile rear situation, belongs to the important safety component of automobile, mirror surface, shape are all Quite it is worthy of careful study, thus the quality of inside rear-view mirror and installation have corresponding standard.Driver is in night or the long range tunnel of dark When driving in road, when the light of the headstock headlight of the vehicle at rear is irradiated in inside rear-view mirror by this vehicle rear window, after interior The strong illumination by reflection of visor will appear dazzling light on the glasses of driver, and then cause to pierce to the glasses of driver Swash, influences the sight of driver, serious threat is produced to the safety of driver and passenger.In order to optimize the interior backsight of automobile Mirror, existing to research and develop a kind of electrochromic rearview, still, existing electrochromic rearview is under unpowered state, rearview mirror Mirror surface partially yellow tone can be presented, influence visual effect.
Specifically, existing electrochromic rearview, due to conductive layer obtained in the production process it is thicker, it is obtained after The thick factors such as larger of the box of visor, and factor again partially yellow due to electrochromic material itself, finally make existing electrochromism Rearview mirror, in partially yellow tone when observing its mirror surface, influences visual effect in the case where being not powered on.
Based on this, the embodiment of the present application provides a kind of half-reflection and half-transmission formula electrochromic rearview, passes through anti-blue light plated film Or blue light caused by blue light ink layer, it neutralizes, improves existing with the yellow tone that half-reflection and half-transmission formula electrochromism mould group is presented The case where partially yellow tone is presented in the mirror surface of some rearview mirrors, improves visual effect.To achieve the above object, the embodiment of the present application The technical solution of offer is as follows, specifically Fig. 1 and Fig. 2 is combined to carry out detailed retouch to technical solution provided by the embodiments of the present application It states.
Embodiment one
Refering to what is shown in Fig. 1, a kind of structure of the half-reflection and half-transmission formula electrochromic rearview provided for the embodiment of the present application one Schematic diagram, wherein half-reflection and half-transmission formula electrochromic rearview includes:
Half-reflection and half-transmission formula electrochromism mould group 100;
And deviate from the anti-blue light plated film of its incidence surface side positioned at the half-reflection and half-transmission formula electrochromism mould group 100 200, wherein the incidence surface of half-reflection and half-transmission formula electrochromism mould group 100, that is, rearview mirror access external environment light one side.
It should be understood that the half-reflection and half-transmission formula electrochromic rearview that the embodiment of the present application one provides, under normal conditions (i.e. In the case that half-and-half anti-half-penetration type electrochromic rearview is not powered), the anti-of half-reflection and half-transmission formula electrochromism mould group can be passed through The light scene of the effect of penetrating, reflective rearview mirror access observes automobile rear situation;It, can be right when on strong illumination to rearview mirror Its absorbability to light is improved after the power-up of half-reflection and half-transmission formula electrochromism mould group, so that half-reflection and half-transmission formula electrochromism mould The light intensity that group reflects weakens, and avoids the appearance of dazzling light, improves the safety of driving.
And anti-blue light plated film is set away from its incidence surface side in half-reflection and half-transmission formula electrochromism mould group, and then pass through Blue light caused by anti-blue light plated film neutralizes with the yellow tone that half-reflection and half-transmission formula electrochromism mould group itself is presented, improves The case where partially yellow tone is presented in the mirror surface of existing rearview mirror, improves visual effect.
In order to eliminate the ambient light that reflexive blue light plated film side is incident to half-reflection and half-transmission electrochromism mould group, and avoid pair Half-reflection and half-transmission formula electrochromism mould group impacts, as shown in Figure 1, the half-reflection and half-transmission formula electricity that the embodiment of the present application one provides Cause electrochromic rearview further include:
Deviate from the light shield layer of 100 side of half-reflection and half-transmission formula electrochromism mould group positioned at the anti-blue light plated film 200 300。
Further, in order to enrich the function of half-reflection and half-transmission formula electrochromic rearview, as shown in Figure 1, the application is implemented The light shield layer 300 that example one provides is additionally provided with a display vacancy section;
Wherein, the half-reflection and half-transmission formula electrochromic rearview further include:
It is shown positioned at the anti-blue light plated film 200 away from 100 side of half-reflection and half-transmission formula electrochromism mould group and with described Show the corresponding display module 400 in vacancy section.
In the embodiment of the present application one, the light shield layer that the application mentions can be black ink layer or pitch-dark layer, wherein Black ink layer can be formed on anti-blue light plated film by the application by way of ink for screen printing.
As shown in Figure 1, the half-reflection and half-transmission formula electrochromism mould group 100 that the embodiment of the present application one provides includes:
First substrate 111;
Positioned at first substrate 111 towards the first conductive layer 121 of anti-200 side of blue light plated film;
Deviate from the electrochromic material layer 130 of 111 side of first substrate positioned at first conductive layer 121;
Deviate from the second conductive layer 122 of 111 side of first substrate positioned at the electrochromism mold materials layer 130;
Deviate from the part reflective semitransparent film 140 of 111 side of first substrate positioned at second conductive layer 122;
And deviate from the second substrate 112 of 111 side of first substrate positioned at the part reflective semitransparent film 140, wherein The anti-blue light plated film 200 is set in the second substrate 112.
It is understood that part reflective semitransparent film is set to the second base in the electrochromic rearview of half-reflection and half-transmission formula shown in Fig. 1 Plate is towards first substrate side;In addition, part reflective semitransparent film provided by the present application can also be set to the second substrate away from the first base Plate side, i.e., the half-reflection and half-transmission formula electrochromism mould group provided by the embodiments of the present application include:
First substrate;
Positioned at first substrate towards the first conductive layer of the anti-blue light plated film side;
Deviate from the electrochromic material layer of the first substrate side positioned at first conductive layer;
Deviate from the second conductive layer of the first substrate side positioned at the electrochromism mold materials layer;
Deviate from the second substrate of the first substrate side positioned at second conductive layer;
Deviate from the part reflective semitransparent film of the first substrate side positioned at the second substrate;
And deviate from the third substrate of the first substrate side positioned at the part reflective semitransparent film, wherein the anti-blue light Plated film is set on the third substrate.
In the embodiment of the present application one, first substrate, the second substrate and third substrate provided by the present application are transparent base Plate, and can be glass substrate in the embodiment of the present application one.In addition, the first conductive layer provided by the embodiments of the present application and second Conductive layer is transparency conducting layer, and material can be tin indium oxide.And the electrochromic material that the embodiment of the present application one provides Layer is electrochromism liquid, can be sealed between the first conductive layer and the second conductive layer by frame adhesive.
Embodiment two
Refering to what is shown in Fig. 2, a kind of structure of the half-reflection and half-transmission formula electrochromic rearview provided for the embodiment of the present application two Schematic diagram, wherein half-reflection and half-transmission formula electrochromic rearview includes:
Half-reflection and half-transmission formula electrochromism mould group 100;
And deviate from the blue light ink layer of its incidence surface side positioned at the half-reflection and half-transmission formula electrochromism mould group 100 500。
It should be understood that the half-reflection and half-transmission formula electrochromic rearview that the embodiment of the present application two provides, under normal conditions (i.e. In the case that half-and-half anti-half-penetration type electrochromic rearview is not powered), the anti-of half-reflection and half-transmission formula electrochromism mould group can be passed through The light scene of the effect of penetrating, reflective rearview mirror access observes automobile rear situation;It, can be right when on strong illumination to rearview mirror Its absorbability to light is improved after the power-up of half-reflection and half-transmission formula electrochromism mould group, so that half-reflection and half-transmission formula electrochromism mould The light intensity that group reflects weakens, and avoids the appearance of dazzling light, improves the safety of driving.
And blue light ink layer is set away from its incidence surface side in half-reflection and half-transmission formula electrochromism mould group, and then pass through Blue light caused by blue light ink layer neutralizes with the yellow tone that half-reflection and half-transmission formula electrochromism mould group itself is presented, improves The case where partially yellow tone is presented in the mirror surface of existing rearview mirror, improves visual effect.
In addition, the blue light ink layer itself that the embodiment of the present application two provides has shade function, so, it can eliminate from blue Gloss oil layer of ink side is incident to the ambient light of half-reflection and half-transmission electrochromism mould group, avoids half-and-half anti-half-penetration type electrochromism mould group It impacts.
Further, in order to enrich the function of half-reflection and half-transmission formula electrochromic rearview, as shown in Fig. 2, the application is implemented The blue light ink layer 500 that example two provides is additionally provided with a display vacancy section;
Wherein, the half-reflection and half-transmission formula electrochromic rearview further include:
It is shown positioned at the half-reflection and half-transmission formula electrochromism mould group 100 towards 500 side of blue light ink layer and with described Show the corresponding anti-blue light plated film 200 in vacancy section;
And positioned at the anti-blue light plated film 200 away from the aobvious of 100 side of half-reflection and half-transmission formula electrochromism mould group Show mould group 400.
As shown in Fig. 2, the half-reflection and half-transmission formula electrochromism mould group 100 that the embodiment of the present application two provides includes:
First substrate 111;
Positioned at first substrate 111 towards the first conductive layer 121 of anti-200 side of blue light plated film;
Deviate from the electrochromic material layer 130 of 111 side of first substrate positioned at first conductive layer 121;
Deviate from the second conductive layer 122 of 111 side of first substrate positioned at the electrochromism mold materials layer 130;
Deviate from the part reflective semitransparent film 140 of 111 side of first substrate positioned at second conductive layer 122;
And deviate from the second substrate 112 of 111 side of first substrate positioned at the part reflective semitransparent film 140, wherein The anti-blue light plated film 200 and the blue light ink layer 500 are all set in the second substrate 112.
It is understood that part reflective semitransparent film is set to the second base in the electrochromic rearview of half-reflection and half-transmission formula shown in Fig. 2 Plate is towards first substrate side;In addition, part reflective semitransparent film provided by the present application can also be set to the second substrate away from the first base Plate side, i.e., the half-reflection and half-transmission formula electrochromism mould group provided by the embodiments of the present application include:
First substrate;
Positioned at first substrate towards the first conductive layer of the anti-blue light plated film side;
Deviate from the electrochromic material layer of the first substrate side positioned at first conductive layer;
Deviate from the second conductive layer of the first substrate side positioned at the electrochromism mold materials layer;
Deviate from the second substrate of the first substrate side positioned at second conductive layer;
Deviate from the part reflective semitransparent film of the first substrate side positioned at the second substrate;
And deviate from the third substrate of the first substrate side positioned at the part reflective semitransparent film, wherein the anti-blue light Plated film and the blue light ink layer are all set on the third substrate.
In the embodiment of the present application one, first substrate, the second substrate and third substrate provided by the present application are transparent base Plate, and can be glass substrate in the embodiment of the present application two.In addition, the first conductive layer provided by the embodiments of the present application and second Conductive layer is transparency conducting layer, and material can be tin indium oxide.And the electrochromic material that the embodiment of the present application two provides Layer is electrochromism liquid, can be sealed between the first conductive layer and the second conductive layer by frame adhesive.
The embodiment of the present application provides a kind of half-reflection and half-transmission formula electrochromic rearview, half-reflection and half-transmission formula electrochromism backsight Mirror includes: half-reflection and half-transmission formula electrochromism mould group;And it is located at the half-reflection and half-transmission formula electrochromism mould group and deviates from its incidence surface The anti-blue light plated film of side.Alternatively, half-reflection and half-transmission formula electrochromic rearview includes: half-reflection and half-transmission formula electrochromism mould group;With And deviate from the blue light ink layer of its incidence surface side positioned at the half-reflection and half-transmission formula electrochromism mould group.
As shown in the above, anti-blue light plated film is set away from its incidence surface side in half-reflection and half-transmission formula electrochromism mould group Or blue light ink layer, and then by blue light caused by anti-blue light plated film or blue light ink layer, with half-reflection and half-transmission formula electrochromism Yellow tone that mould group is presented neutralizes, and improves the case where partially yellow tone is presented in the mirror surface of existing rearview mirror, improves vision Effect.
The foregoing description of the disclosed embodiments enables those skilled in the art to implement or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, as defined herein General Principle can be realized in other embodiments without departing from the spirit or scope of the present invention.Therefore, of the invention It is not intended to be limited to the embodiments shown herein, and is to fit to and the principles and novel features disclosed herein phase one The widest scope of cause.

Claims (10)

1. a kind of half-reflection and half-transmission formula electrochromic rearview characterized by comprising
Half-reflection and half-transmission formula electrochromism mould group;
And deviate from the anti-blue light plated film of its incidence surface side positioned at the half-reflection and half-transmission formula electrochromism mould group.
2. half-reflection and half-transmission formula electrochromic rearview according to claim 1, which is characterized in that the half-reflection and half-transmission formula electricity Cause electrochromic rearview further include:
Deviate from the light shield layer of the half-reflection and half-transmission formula electrochromism mould group side positioned at the anti-blue light plated film.
3. half-reflection and half-transmission formula electrochromic rearview according to claim 2, which is characterized in that the light shield layer is also set up There is a display vacancy section;
Wherein, the half-reflection and half-transmission formula electrochromic rearview further include:
Positioned at the anti-blue light plated film away from half-reflection and half-transmission formula electrochromism mould group side and with the display vacancy section pair The display module answered.
4. half-reflection and half-transmission formula electrochromic rearview according to claim 2, which is characterized in that the light shield layer is black Ink layer or pitch-dark layer.
5. half-reflection and half-transmission formula electrochromic rearview according to claim 1, which is characterized in that the half-reflection and half-transmission formula electricity Mutagens color mould group includes:
First substrate;
Positioned at first substrate towards the first conductive layer of the anti-blue light plated film side;
Deviate from the electrochromic material layer of the first substrate side positioned at first conductive layer;
Deviate from the second conductive layer of the first substrate side positioned at the electrochromism mold materials layer;
Deviate from the part reflective semitransparent film of the first substrate side positioned at second conductive layer;
And deviate from the second substrate of the first substrate side positioned at the part reflective semitransparent film, wherein the anti-blue light plated film It is set in the second substrate.
6. half-reflection and half-transmission formula electrochromic rearview according to claim 1, which is characterized in that the half-reflection and half-transmission formula electricity Mutagens color mould group includes:
First substrate;
Positioned at first substrate towards the first conductive layer of the anti-blue light plated film side;
Deviate from the electrochromic material layer of the first substrate side positioned at first conductive layer;
Deviate from the second conductive layer of the first substrate side positioned at the electrochromism mold materials layer;
Deviate from the second substrate of the first substrate side positioned at second conductive layer;
Deviate from the part reflective semitransparent film of the first substrate side positioned at the second substrate;
And deviate from the third substrate of the first substrate side positioned at the part reflective semitransparent film, wherein the anti-blue light plated film It is set on the third substrate.
7. a kind of half-reflection and half-transmission formula electrochromic rearview characterized by comprising
Half-reflection and half-transmission formula electrochromism mould group;
And deviate from the blue light ink layer of its incidence surface side positioned at the half-reflection and half-transmission formula electrochromism mould group.
8. half-reflection and half-transmission formula electrochromic rearview according to claim 7, which is characterized in that the blue light ink layer is also It is provided with a display vacancy section;
Wherein, the half-reflection and half-transmission formula electrochromic rearview further include:
Positioned at the half-reflection and half-transmission formula electrochromism mould group towards blue light ink layer side and with the display vacancy section pair The anti-blue light plated film answered;
And deviate from the display module of the half-reflection and half-transmission formula electrochromism mould group side positioned at the anti-blue light plated film.
9. half-reflection and half-transmission formula electrochromic rearview according to claim 8, which is characterized in that the half-reflection and half-transmission formula electricity Mutagens color mould group includes:
First substrate;
Positioned at first substrate towards the first conductive layer of the anti-blue light plated film side;
Deviate from the electrochromic material layer of the first substrate side positioned at first conductive layer;
Deviate from the second conductive layer of the first substrate side positioned at the electrochromism mold materials layer;
Deviate from the part reflective semitransparent film of the first substrate side positioned at second conductive layer;
And deviate from the second substrate of the first substrate side positioned at the part reflective semitransparent film, wherein the anti-blue light plated film It is all set in the second substrate with the blue light ink layer.
10. half-reflection and half-transmission formula electrochromic rearview according to claim 8, which is characterized in that the half-reflection and half-transmission formula Electrochromism mould group includes:
First substrate;
Positioned at first substrate towards the first conductive layer of the anti-blue light plated film side;
Deviate from the electrochromic material layer of the first substrate side positioned at first conductive layer;
Deviate from the second conductive layer of the first substrate side positioned at the electrochromism mold materials layer;
Deviate from the second substrate of the first substrate side positioned at second conductive layer;
Deviate from the part reflective semitransparent film of the first substrate side positioned at the second substrate;
And deviate from the third substrate of the first substrate side positioned at the part reflective semitransparent film, wherein the anti-blue light plated film It is all set on the third substrate with the blue light ink layer.
CN201910168762.5A 2019-03-06 2019-03-06 A kind of half-reflection and half-transmission formula electrochromic rearview Pending CN109946899A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201910168762.5A CN109946899A (en) 2019-03-06 2019-03-06 A kind of half-reflection and half-transmission formula electrochromic rearview

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201910168762.5A CN109946899A (en) 2019-03-06 2019-03-06 A kind of half-reflection and half-transmission formula electrochromic rearview

Publications (1)

Publication Number Publication Date
CN109946899A true CN109946899A (en) 2019-06-28

Family

ID=67009250

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201910168762.5A Pending CN109946899A (en) 2019-03-06 2019-03-06 A kind of half-reflection and half-transmission formula electrochromic rearview

Country Status (1)

Country Link
CN (1) CN109946899A (en)

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5285060A (en) * 1992-12-15 1994-02-08 Donnelly Corporation Display for automatic rearview mirror
WO2000023826A2 (en) * 1998-10-20 2000-04-27 Gentex Corporation Electrochromic mirror incorporating a third surface reflector
CN1751334A (en) * 2003-02-12 2006-03-22 金泰克斯公司 Vehicle information displays
CN101535087A (en) * 2005-11-01 2009-09-16 唐纳利公司 Interior rearview mirror with display
CN101784951A (en) * 2007-08-03 2010-07-21 金泰克斯公司 Improved film coating, electrooptic cell and comprise the assembly of these elements
CN102062983A (en) * 2002-04-03 2011-05-18 金泰克斯公司 Electrochromic rearview mirror assembly incorporating a display/signal light
CN102216843A (en) * 2008-07-10 2011-10-12 金泰克斯公司 Rearview mirror assemblies with anisotropic polymer laminates

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5285060A (en) * 1992-12-15 1994-02-08 Donnelly Corporation Display for automatic rearview mirror
WO2000023826A2 (en) * 1998-10-20 2000-04-27 Gentex Corporation Electrochromic mirror incorporating a third surface reflector
CN102062983A (en) * 2002-04-03 2011-05-18 金泰克斯公司 Electrochromic rearview mirror assembly incorporating a display/signal light
CN1751334A (en) * 2003-02-12 2006-03-22 金泰克斯公司 Vehicle information displays
CN101535087A (en) * 2005-11-01 2009-09-16 唐纳利公司 Interior rearview mirror with display
CN101784951A (en) * 2007-08-03 2010-07-21 金泰克斯公司 Improved film coating, electrooptic cell and comprise the assembly of these elements
CN102216843A (en) * 2008-07-10 2011-10-12 金泰克斯公司 Rearview mirror assemblies with anisotropic polymer laminates

Similar Documents

Publication Publication Date Title
KR101011507B1 (en) Vehicle rearview assembly including a high intensity display
Lynam Automotive applications of chromogenic materials
CN100500461C (en) Anti-dazzle method and apparatus for automobiles
CN201222131Y (en) Antiglare train crossing eyeglasses
US20200223191A1 (en) Automotive glass display
CN214523571U (en) Anti-glare rearview mirror and automobile
CN105116661A (en) Electrically-induced discoloration anti-dazzling mirror display screen
CN204989712U (en) Anti -dazzle eyepiece face display screen of electrochromic
CN112874439B (en) Rearview mirror, rearview mirror module and anti-dazzle method of rearview mirror module
US11415864B2 (en) Camera concealment using photochromics
CN109946899A (en) A kind of half-reflection and half-transmission formula electrochromic rearview
CN214295775U (en) Electrochromic lens element for streaming media rearview mirror and assembly thereof
CN109696784A (en) A kind of electrochromic rearview and the vehicles
CN1315980C (en) Compound as electrochromic material and electrochromic module
CN111660770B (en) Windshield and automobile comprising same
JP2019068340A (en) On-vehicle imaging system
CN209888748U (en) Electrochromic rearview mirror
US20230339297A1 (en) Transparent sun visor for vehicles
CN108169952B (en) Anti-dazzle rearview mirror and control method thereof
JP2003255340A (en) Display device
CN206870954U (en) A kind of inside rear-view mirror and automobile
CN206012468U (en) A kind of anti-glare liquid crystal display screen rearview mirror
CN206115107U (en) Liquid crystal rear -view mirror
CN219715873U (en) Anti-dazzle LCD mirror and automobile rearview mirror
CN216002398U (en) Photoinduced anti-dazzling rearview mirror

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
RJ01 Rejection of invention patent application after publication

Application publication date: 20190628

RJ01 Rejection of invention patent application after publication