Abstract:
The present invention provides a color liquid crystal display panel, which includes: a plurality of mutually parallel layers of liquid crystal cells (2) and bonding members (8) bonding the plurality of layers of liquid crystal cells (2). Each of the liquid crystal cells (2) includes a thin-film transistor substrate (20), a package substrate (30), and a dye-liquid crystal layer (40) sealed between the thin-film transistor substrate (20) and the package substrate (30). The dye-liquid crystal layer (40) includes a liquid crystal material and a dichroic dye. The dichroic dye of each of the liquid crystal cells (2) absorbs light of a predetermined range of wavelength. The plurality of layers of liquid crystal cells (2) respectively absorbs lights of different ranges of wavelength. The present invention includes a dichroic dye combined in a liquid crystal material in order to use the dichroic dye to absorb light of some colors thereby achieving color displaying without using a conventionally used polarizer and manufacture of a color filter substrate, so that the manufacture cost of and the requirement for backlighting brightness by the liquid crystal display panel can both be reduced.
Abstract:
The present invention provides a manufacture method of a flexible liquid crystal panel and a flexible liquid crystal panel. The manufacture method of the flexible liquid crystal panel first manufactures comb pixel electrodes (11), gate lines, data lines, TFTs and a color filter layer on a first flexible substrate (1); continuously coats a mixture of sealant (51′) and liquid crystal micro capsules (53) on a flexible carrier (30) in roll-to-roll, and meanwhile implements UV irradiation to the sealant (51′) for occurring polyreaction and solidification to become a polymeric layer (51), and the liquid crystal micro capsules (53) are distributed in the polymeric layer (51) to acquire a polymer/liquid crystal mixture layer (5); cuts a composite layer of the flexible carrier (30) and the polymer/liquid crystal mixture layer (5) to obtain a second flexible substrate (3); then, laminates the first flexible substrate (1) and the second flexible substrate (3); finally, laminates an upper polarizer (9) and a lower polarizer (7).
Abstract:
A liquid crystal display device in vertical alignment and a method for driving the same are disclosed. In the liquid crystal display device, a first horizontal electrode and a second horizontal electrode are added on the basis of a traditional structure. A horizontal electric field can be formed between the first horizontal electrode and the second horizontal electrode, so that negative liquid crystal molecules can rotate along a horizontal direction to a direction of a light transmission axis of a polarizer. A process in which the liquid crystal display device is converted into a dark state from a bright state can be accelerated, and declining time can be effectively shortened. The liquid crystal display device has a high response speed, and a better display effect can be obtained when a dynamic image which moves at a high speed is displayed.
Abstract:
A flexible liquid crystal panel includes a first and a second flexible substrates opposite to each other, a first and a second flat layers arranged on inner sides of the first and second flexible substrates respectively, a color filter layer arranged between the second flexible substrate and the second flat layer, a spacing retaining wall formed on the second flat layer, seal glue coated on a side of the spacing retaining wall adjacent to the first flexible substrate, and liquid crystal filled between the first and second flat layers. The spacing retaining wall includes a plurality of transverse parts parallel with one another and extending transversely and a plurality of longitudinal parts parallel with one another and extending longitudinally. The transverse parts and the longitudinal parts intersect one another to separate a plurality of sub pixels and define and delimit closed areas in which the liquid crystal is filled.
Abstract:
A liquid crystal display panel is provided. The liquid crystal display panel has a transmission display area and a reflection display area. The transmission display area has an upper substrate, an upper polarizer, a color filter, a lower substrate, a lower polarizer, a first pixel electrode and a liquid crystal layer; and the reflection display area has the upper substrate, a half wave plate, the upper polarizer, the color filter, a common electrode, the lower substrate, a second pixel electrode and the liquid crystal layer.
Abstract:
An optical alignment device and a spatial beam splitting prism thereof are provided. The optical alignment device includes a polarized UV light source and a spatial beam splitting prism including a light-transmissive substrate. At least one of top and bottom surfaces of the substrate has a prism structure which is disposed by areas to have at least two refraction directions. When light rays emitted from the polarized UV light source are incident perpendicular to the spatial beam splitting prism, the light rays in a same area are deflected along a same slanting direction after being refracted by the prism structure, and the light rays in neighboring areas are deflected along different slanting directions after being refracted by the prism structure. The invention can achieve the purpose of performing multi-area alignments by only one time UV light irradiation, and also can save production time, reduce production difficulty and thereby increase productivity.
Abstract:
A vertical alignment liquid crystal display includes a first substrate, a second substrate, a liquid crystal layer located between the first substrate and the second substrate, a first and a second passivation layers respectively located at inner sides of the first and the second substrates, a common electrode layer and a pixel electrode layer respectively located on the first and the second passivation layers. The liquid crystal layer includes liquid crystal molecules, auxiliary alignment agent and a polymer network penetrating the entire liquid crystal layer. The auxiliary alignment agent makes the liquid crystal molecules in the liquid crystal layer vertically aligned on the surfaces of the first and the second substrates. The polymer network stabilizes alignment of the liquid crystal molecules and enhances vertical alignment effect of the auxiliary alignment agent to the liquid crystal molecules.
Abstract:
A liquid crystal medium composition is provided with a negative liquid crystal material; at least one polymerizable monomer which is polymerized under a UV irradiation; and at least one alignment assistant including a polar portion and a non-polar portion. The polar portion is connected with the non-polar portion by a bonding group. The liquid crystal medium composition can achieve the vertical alignment without the PI alignment layer by improving the liquid crystal material.
Abstract:
The present invention provides a flexible liquid crystal panel and a manufacture method thereof. The flexible liquid crystal panel comprises a first, a second flexible substrates (1, 3) oppositely located, a first, a second flat layers (11, 31) respectively located at an inner sides of the first, the second flexible substrates (1, 3), a color filter layer (33) located between the second flexible substrate (3) and the second flat layer (31), a spacing retaining wall (5) located on the second flat layer (31), seal glue (7) coated on a side of the spacing retaining wall (5) close to the first flexible substrate (1) and a liquid crystal layer (9); the spacing retaining wall (5) comprises a plurality of transverse parts (51) parallel with one another extending transversely and a plurality of longitudinal parts (53) parallel with one another extending longitudinally, and the transverse parts (51) and the longitudinal parts (53) interlace with one another to separate a plurality of sub pixels, and the liquid crystal layer (9) is filled in closed districts formed by the transverse parts (51) and the longitudinal parts (53) interlacing with one another.
Abstract:
A display device, an optical film and a manufacturing equipment thereof are provided. The optical film includes an optical layer. The optical layer includes: a first light-transmissive portion having mutually parallel light incident surface and light exit surface, and second light-transmissive portions distributed in the first light-transmissive portion. The first light-transmissive portion and the second light-transmissive portions have different refractive indexes. A contact surface of each of the second light-transmissive portions with the first light-transmissive portion includes an inclined surface neither parallel nor perpendicular to the light incident surface of the first light-transmissive portion, and at least a part of light rays perpendicularly incident from the light incident surface does not strike on the inclined surface and exits from the light exit surface. By the above solution, the invention can reduce image blurriness while enlarging viewing angle.