LIGHT-ADJUSTING DEVICE AND LIGHT-ADJUSTING METHOD THEREOF
20190331946 ยท 2019-10-31
Assignee
Inventors
- Guofu ZHOU (Shenzhen, Guangdong, CN)
- Yuanyuan ZHAN (Shenzhen, Guangdong, CN)
- Dirk Jan BROER (Shenzhen, Guangdong, CN)
- Danqing LIU (Shenzhen, Guangdong, CN)
- Albertus Petrus Henricus Johannes SCHENNING (Shenzhen, Guangdong, CN)
Cpc classification
G02F1/133773
PHYSICS
G09G2360/14
PHYSICS
G02F1/1337
PHYSICS
International classification
Abstract
A light-adjusting device and a light-adjusting method thereof are disclosed. A main liquid crystal and salt from which ions are ionized are filled between adjusting areas formed by oppositely arranged substrates, the main liquid crystal is arranged in a specific orientation under an induction of an alignment layer under an unpowered state, the main liquid crystal is re-oriented under an powered state, meanwhile, ions ionized from the salt from which ions are ionized move quickly under an effect of an formed electric field, which disorganizes the specific orientation arrangement of the main liquid crystal, so that the main liquid crystal moves irregularly following a quick movement of the ionized ions, so as to scatter incident light in a visible light band, and further adjust transmission and scattering of visible light, thus realizing light adjustment.
Claims
1. A light-adjusting device, comprising: two oppositely arranged substrates, each comprising a light-transmitting substrate, a conducting layer and an alignment layer, sequentially arranged, wherein the alignment layers of the two substrates are oppositely arranged; an adjusting area, formed between the two substrates; a liquid crystal mixture, filled in the adjusting area, and comprising a main liquid crystal with dielectric anisotropy and salt from which ions are ionized.
2. The light-adjusting device of claim 1, wherein the main liquid crystal is a negative liquid crystal, and the alignment layer is a vertical alignment layer.
3. The light-adjusting device of claim 1, wherein the main liquid crystal is a positive liquid crystal, and the alignment layer is a parallel alignment layer.
4. The light-adjusting device of claim 1, wherein the salt from which ions are ionized is a quaternary ammonium salt surfactant.
5. The light-adjusting device of claim 4, wherein the quaternary ammonium salt is at least one of tetrabutylammonium hexafluorophosphate, tetrabutylammonium perchlorate, hexadecyl trimethyl ammonium bromide and dodecyltrimethylammonium bromide.
6. The light-adjusting device of claim 1, wherein the liquid crystal mixture comprises 90.0 wt % to 99.99 wt % of the main liquid crystal and 0.01 wt % to 10.0 wt % of the salt from which ions are ionized.
7. The light-adjusting device of claim 1, wherein the adjusting area has a height of 5 m to 50 m.
8. The light-adjusting device of claim 1, wherein the adjusting area is also filled with a spacer for supporting the height of the adjusting area.
9. The light-adjusting device of claim 1, further comprising a power supply component, wherein two poles of the power supply component are electrically connected with the two conducting layers respectively.
10. A light-adjusting method for the light-adjusting device of claim 1, comprising: converting the main liquid crystal, by applying an AC voltage, from an vertical orientation arrangement to an parallel orientation arrangement, with respect to the substrate, and causing the salt from which ions are ionized to move under a formed AC electric field to disorganize the orientation arrangements of the main liquid crystal, thereby to adjust transmission and scattering of visible light for light adjustment.
11. The light-adjusting device of claim 2, wherein the liquid crystal mixture comprises 90.0 wt % to 99.99 wt % of the main liquid crystal and 0.01 wt % to 10.0 wt % of the salt from which ions are ionized.
12. The light-adjusting device of claim 3, wherein the liquid crystal mixture comprises 90.0 wt % to 99.99 wt % of the main liquid crystal and 0.01 wt % to 10.0 wt % of the salt from which ions are ionized.
13. The light-adjusting device of claim 4, wherein the liquid crystal mixture comprises 90.0 wt % to 99.99 wt % of the main liquid crystal and 0.01 wt % to 10.0 wt % of the salt from which ions are ionized.
14. The light-adjusting device of claim 5, wherein the liquid crystal mixture comprises 90.0 wt % to 99.99 wt % of the main liquid crystal and 0.01 wt % to 10.0 wt % of the salt from which ions are ionized.
15. The light-adjusting device of claim 2, wherein the adjusting area is also filled with a spacer for supporting the height of the adjusting area.
16. The light-adjusting device of claim 3, wherein the adjusting area is also filled with a spacer for supporting the height of the adjusting area.
17. The light-adjusting device of claim 4, wherein the adjusting area is also filled with a spacer for supporting the height of the adjusting area.
18. The light-adjusting device of claim 5, wherein the adjusting area is also filled with a spacer for supporting the height of the adjusting area.
19. The light-adjusting device of claim 2, further comprising a power supply component, wherein two poles of the power supply component are electrically connected with the two conducting layers respectively.
20. The light-adjusting device of claim 3, further comprising a power supply component, wherein two poles of the power supply component are electrically connected with the two conducting layers respectively.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0023]
[0024]
DETAILED DESCRIPTION
[0025] The conception, specific structure and generated technical effects of the present disclosure will be clearly and completely described hereinafter with reference to the implementations and the drawings to fully understand the objects, features and effects of the present disclosure. Apparently, the described implementations are only some implementations of the present disclosure rather than all the implementations, and other implementations obtained by those skilled in the art based on the implementations of the present disclosure without going through any creative works shall all fall within the protection scope of the present disclosure.
[0026] First Implementation
[0027] With reference to
[0028] The present disclosure further provides a light-adjusting method for the light-adjusting device above. As shown in
[0029] The implementation takes the tetrabutylammonium perchlorate as an example to illustrate, and actually, quaternary ammonium salts such as tetrabutylammonium hexafluorophosphate, hexadecyl trimethyl ammonium bromide and dodecyltrimethylammonium bromide may be added. Quaternary ammonium salt powder is pure white, thus avoiding a problem that a transparency of the light-adjusting device is affected by colors of impurities, enabling the main liquid crystal to be uniformly mixed without phase separation, and avoiding air bubbles in the light-adjusting device caused by phase separation and other problems, and the quaternary ammonium salt has a stable property and does not generate an electrochemical reaction with electrodes, thus avoiding a problem of reducing a service life of the light-adjusting device due to the electrochemical reaction. The light-adjusting liquid crystal device provided by the present disclosure may be applied to, but is not limited to, intelligent windows for residential applications or projection hard screens for commercial applications.
[0030] Second Implementation
[0031] The implementation provides a light-adjusting device, which has a structure same as that of the first implementation, but differs in that a height between the adjusting areas is 50 m, the liquid crystal mixture is a negative liquid crystal and hexadecyl trimethyl ammonium bromide, a mass fraction of the hexadecyl trimethyl ammonium bromide in the liquid crystal mixture is 10%, and the light-adjusting liquid crystal device is connected with a power supply component with a voltage of 7 V and a frequency of 50 Hz in a powered state.
[0032] Third Implementation
[0033] The implementation provides a light-adjusting device, which has a structure same as that of the first implementation, but differs in that a height between the adjusting areas is 25 m, the liquid crystal mixture is a positive liquid crystal and dodecyltrimethylammonium bromide, a mass fraction of the dodecyltrimethylammonium bromide in the liquid crystal mixture is 5%, the alignment layer is a polyimide parallel-alignment layer, and the light-adjusting liquid crystal device is connected with a power supply component with a voltage of 25 V and a frequency of 1000 Hz in a powered state. For the light-adjusting device provided by the implementation in an unpowered state, a positive liquid crystal is subjected to orientation arrangement parallel to the substrate under induction of the polyimide parallel-alignment layer, when the power supply component is connected to be in a powered state, the positive liquid crystal is controlled to be reoriented by the applied AC voltage, changing from the orientation arrangement parallel to the transparent glass substrate to the orientation arrangement perpendicular to the transparent glass substrate, and meanwhile, cation and anion ions ionized by dodecyltrimethylammonium bromide rapidly move under an effect of the formed AC electric field, which disorganizes the reorientation arrangement of positive liquid crystal, so that positive liquid crystal molecules move irregularly along with the rapid movement of the cation and anion ions. Meanwhile, a very small amount of impurities contained in the positive liquid crystal may also cause electrodynamic instability along with the reorientation arrangement of the positive liquid crystal, and the ions formed by excitation of the alignment layer by the electric field may also participate in the electrodynamic instability, thus further aggravating the change of the positive liquid crystal from the specific orientation arrangement to irregular arrangement, and controlling transmission and scattering of visible light, so as to adjust light.
[0034] Fourth Implementation
[0035] The implementation provides a light-adjusting device, which has a structure same as that of the first implementation, but differs in that a height between the adjusting areas is 10 m, the liquid crystal mixture is a negative liquid crystal and tetrabutylammonium hexafluorophosphate, a mass fraction of the tetrabutylammonium hexafluorophosphate in the liquid crystal mixture is 1%, and the light-adjusting liquid crystal device is connected with a power supply component with a voltage of 50 V and a frequency of 100 Hz to be in a powered state.