Display substrate, method for fabricating the same and liquid crystal display panel
10168576 ยท 2019-01-01
Assignee
Inventors
Cpc classification
G02F1/133773
PHYSICS
G02F1/133788
PHYSICS
G02F1/1395
PHYSICS
G09G2300/0456
PHYSICS
G02F1/133753
PHYSICS
G02F1/1337
PHYSICS
International classification
G02F1/1335
PHYSICS
G02F1/1337
PHYSICS
Abstract
The embodiments of the invention disclose a display substrate, a method for fabricating the same and a liquid crystal display panel. The display panel is used for constructing a transflective liquid crystal display panel comprising a transmissive region and a reflective region. The display substrate comprises an alignment layer which comprises a first alignment structure in the transmissive region and a second alignment structure in the reflective region. The first alignment structure is an oblique alignment structure and the second alignment structure is a vertical alignment structure.
Claims
1. A transflective liquid crystal display panel comprising a transmissive region and a reflective region, comprising a first display substrate and a second display substrate opposed to each other, a liquid crystal layer being filled between the first display substrate and the second display substrate; alignment structures for a first alignment film formed on the first display substrate and a second alignment film formed on the second display substrate being configured such that phase delay of a light beam after passing through the transmissive region matches that of a light beam after passing through the reflective region when no voltage is applied to the liquid crystal display panel, wherein the alignment structures for the first and second alignment films are configured such that an effective refractive index of the liquid crystal layer in the transmissive region is substantially twice that of the liquid crystal layer in the reflective region, wherein, a reflection layer is formed on the second display substrate in the reflective region, and the alignment structures for the first and second alignment films are configured such that pretilt angles of liquid crystal molecules of the liquid crystal layer in the reflective region with respect to the second display substrate sequentially increase from the second display substrate to the first display substrate in a direction perpendicular to the second display substrate, wherein, the transmissive region and the reflective region are adjacent to each other, wherein, when no voltage is applied to the liquid crystal display panel, liquid crystal molecules closest to the second alignment film in the transmissive region and liquid crystal molecules closest to the second alignment film in the reflective region are substantially the same in alignment orientation and have a same non-zero pretilt angle; when a voltage is applied to the liquid crystal display panel, all the liquid crystal molecules in both the transmissive region and the reflective region are substantially perpendicular to the first display substrate.
2. The liquid crystal display panel of claim 1, wherein a thickness of the liquid crystal layer in the transmissive region is substantially equal to that of the liquid crystal layer in the reflective region.
3. The liquid crystal display panel of claim 1, wherein the liquid crystal layer is a positive liquid crystal layer.
4. The liquid crystal display panel of claim 1, wherein, the first display substrate is a color film substrate, and the second display substrate is an array substrate.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) In order to clearly illustrate the technical solution of the embodiments of the invention, the drawings of the embodiments will be briefly described in the following; it is obvious that the described drawings are only related to some embodiments of the invention and thus are not limitative of the invention.
(2)
(3)
(4)
(5)
DETAILED DESCRIPTION
(6) In order to make technical details of the embodiments of the invention apparent, display substrates, methods for fabricating the same and liquid crystal display panels provided by the embodiments will be described in a clearly and fully understandable way in connection with the drawings related to the embodiments of the invention. It is obvious that the described embodiments are just a part but not all of the embodiments of the invention. Based on the described embodiments herein, those skilled in the art can obtain other embodiment(s), without any inventive work, which should be within the scope of the invention.
(7) Embodiments of the invention provides a display substrate, a method for fabricating the same and a liquid crystal display panel capable of realizing the match between phase delays of light beams passing through transmissive and reflective regions by means of a design of alignment structure for a alignment layer of the display substrate, without changing cell gap of the liquid crystal display panel. It therefore improves the contrast ratio and the color saturation at the interface between the reflective and transmissive regions, which in turn improves the display quality of the liquid crystal display panel. Meanwhile, the structure design of single cell gap can simplify the fabrication process for the liquid crystal display panel.
First Embodiment
(8) A first embodiment of the invention provides a display substrate for constructing a transflective liquid crystal display panel comprising a transmissive region and a reflective region. The display substrate comprises an alignment layer which comprises a first alignment structure in the transmissive region and a second alignment structure in the reflective region. The first alignment structure is an oblique alignment structure and the second alignment structure is a vertical alignment structure.
(9) It should be understood that, in this embodiment and other embodiments to be described, the term oblique alignment structure refers to an alignment structure enabling liquid crystal molecules adjacent thereto, when no other forces are present, to have a pretilt angle ranging from 0 to 90 degrees (preferably ranging from 0 to 60 degrees) with regard to the plane of the alignment film; the term vertical alignment structure refers to an alignment structure enabling liquid crystal molecules adjacent thereto, when no other forces are present, to have a pretilt angle of about 90 degrees with regard to the plane of the alignment film. Moreover, the term display substrate may refers to a substrate used for producing a liquid crystal display panel, such as an array substrate or a color film substrate. In liquid crystal display panels using the Color Filter on Array (COA) technology, the term display substrate may also refer to a counter-substrate disposed opposed to an array and color film substrate so as to form a liquid crystal cell.
(10)
(11) Optionally, an array polarizer layer 4 is further formed on back side of the first base substrate 1.
(12) In the above example, the match between the phase delays of light beams passing through the transmissive and reflective regions is realized by designing the alignment structure of the alignment layer in the array substrate working as the display substrate, without changing the cell gap of the liquid crystal display panel. It therefore improves the contrast ratio and the color saturation at the interface between the reflective and transmissive region, which in turn improves the display quality of the liquid crystal display panel.
(13)
(14) Optionally, a color film polarizer 8 is further formed on back side of the second base substrate 5.
(15) In the above example, the match between the phase delays of light beams passing through the transmissive and reflective regions is realized by designing the alignment structure of the alignment layer in the color filter substrate working as the display substrate, without changing the cell gap of the liquid crystal display panel. It therefore improves the contrast ratio and the color saturation at the interface between the reflective and transmissive region, which in turn improves the display quality of the liquid crystal display panel.
(16) In the first embodiment of the invention, the match between the phase delays of light beams passing through the transmissive and reflective regions is realized by designing the alignment structure of the alignment layer in the display substrate display substrate, without changing the cell gap of the liquid crystal display panel. It therefore improves the contrast ratio and the color saturation at the interface between the reflective and transmissive region, which in turn improves the display quality of the liquid crystal display panel. Meanwhile, the single cell gap structure design can simplify the fabrication process for the liquid crystal display panel.
Second Embodiment
(17) The second embodiment of the invention provides a method for fabricating a display substrate for constructing a transflective liquid crystal display panel. The method comprises:
(18) Step 1001: forming a display substrate structure on a base substrate;
(19) Step 1002: forming an alignment base layer on the display substrate structure;
(20) Step 1003: performing an alignment treatment for the alignment base layer to form a first alignment structure in a first region and a second alignment structure in a second region, the first alignment structure being an oblique alignment structure and the second alignment structure being a vertical alignment structure.
(21) Optionally, the step 1003 comprises:
(22) Step 1013: performing a rubbing alignment treatment for the alignment base layer such that the first alignment structure and the second alignment structure are formed to be oblique alignment structures;
(23) Step 1023: performing an additional photoalignment treatment for the second alignment structure such that the second alignment structure is formed to be a vertical alignment structure.
(24) Optionally, the step 1003 comprises:
(25) Step 1033: performing a photoalignment treatment for the alignment base layer such that the first alignment structure and the second alignment structure are formed to be oblique alignment structures;
(26) Step 1043: performing an additional rubbing alignment treatment for the second alignment structure such that the second alignment structure is formed to be a vertical alignment structure.
(27) Optionally, the step 1001 comprises:
(28) Step 1011: forming an array substrate structure on a base substrate;
(29) Or step 1021: forming a color film substrate structure on a base substrate.
(30) In the fabricating method provided by the second embodiment of the invention, the match between the phase delays of light beams passing through the transmissive and reflective regions is realized by designing the fabricating method for the alignment layer of the display substrate, without changing the cell gap of the liquid crystal display panel. It therefore improves the contrast ratio and the color saturation at the interface between the reflective and transmissive region, which in turn improves the display quality of the liquid crystal display panel. Meanwhile, the single cell gap structure design can simplify the fabrication process for the liquid crystal display panel.
Third Embodiment
(31)
(32) In an example, the array substrate can be the array substrate 10 provided by the first embodiment described above; the color film substrate can be a color film substrate having an alignment layer wholly of oblique alignment structure.
(33) In another example, the color film substrate can be the display substrate 20 provided by the first embodiment described above, the array substrate can be an array substrate having an alignment layer wholly of oblique alignment structure.
(34) Hereinafter, a case wherein the color film substrate is the color film substrate provided by the first embodiment and the array substrate is an array substrate having an alignment layer wholly of oblique alignment structure will be described in detail with reference to
(35) As for a case wherein the array substrate is the array provided by the first embodiment and the alignment layer of the color film substrate as a whole is an oblique alignment structure, the detailed structure of the array substrate is described with reference to the first embodiment and will thus not be repeated here. The color film substrate comprises a second base substrate, a color film substrate structure and an alignment layer, wherein the alignment layer of the color film substrate as a whole is an oblique alignment structure. No figure is provided for such a case.
(36) Optionally, the liquid crystal layer 9 is a positive liquid crystal layer.
(37) In an example, an array polarizer layer 4 can be formed on the back side of the first base substrate 1, and a color film polarizer layer 8 can be formed on the back side of the second base substrate 5.
(38) The principle of the embodiment of the invention will be described in detail in connection with
(39) As illustrated in
(40) In the liquid crystal display panel provided by the third embodiment of the invention, the match between the phase delays in light beams passing through the transmissive and reflective regions is realized by designing the alignment layers of the array substrate and the color film substrate, without changing the cell gap of the liquid crystal display panel. It therefore improves the contrast ratio and the color saturation at the interface between the reflective and transmissive region, which in turn improves the display quality of the liquid crystal display panel. Meanwhile, the single cell gap structure design can simplify fabrication process for liquid crystal display panel.
(41) Although the present invention has been described in detail with reference to particular embodiments thereof, some modifications or improvements can also be made on the basis of the present invention, which is evident to those skilled in the art. Therefore, the modifications or improvements, which are made without departing from the spirit of the present invention, all belong to the protection scope of the present invention.