Flexible Display Module and Flexible Display Apparatus
20230135045 · 2023-05-04
Inventors
- Liangyu Pan (Dongguan, CN)
- Lei Wang (Dongguan, CN)
- Yuan Yan (Shenzhen, CN)
- Haiyan Li (Shenzhen, CN)
- Yongqiang Pang (Shenzhen, CN)
- Yang Liu (Shenzhen, CN)
Cpc classification
G09F9/301
PHYSICS
G06F1/1684
PHYSICS
G09F9/30
PHYSICS
G06F1/1652
PHYSICS
G06F1/1637
PHYSICS
G06V40/1329
PHYSICS
International classification
Abstract
A flexible display module includes a cover, a flexible display panel, a rigid backplane component, and an optical device that are sequentially disposed. The optical device is disposed on a side of the rigid backplane component and is away from the flexible display panel. The rigid backplane component includes a rigid backplane body and a rigid light-transmitting component. The rigid light-transmitting component is disposed between the optical device and the flexible display panel, and the rigid light-transmitting component has a light transmission feature and is rigid.
Claims
1. A flexible display module, comprising: a flexible display panel; an optical device; and a rigid backplane component located between the flexible display panel and the optical device and comprising: a side that is away from the flexible display panel, wherein the optical device is disposed on the side; a rigid backplane body; and a rigid light-transmitting component, wherein the rigid backplane body and the rigid light-transmitting component are of an integral structure.
2. The flexible display module of claim 1, wherein the rigid backplane body comprises a through hole in a one-to-one correspondence with the optical device, and wherein the rigid light-transmitting component is located in the through hole.
3. The flexible display module of claim 2, wherein the rigid light-transmitting component comprises a curable adhesive.
4. The flexible display module of claim 2, wherein the rigid light-transmitting component comprises a rigid light-transmitting block, and wherein the rigid light-transmitting block is fixedly installed in the through hole.
5. The flexible display module of claim 4, wherein the through hole comprises a first through hole and a second through hole that are sequentially disposed in a direction away from the flexible display panel, wherein the first through hole comprises a first aperture, wherein the second through hole comprises a second aperture, wherein a first size of the first aperture is greater than a second size of the second aperture, and wherein the rigid light-transmitting block fits into the through hole.
6. The flexible display module of claim 2, wherein the rigid light-transmitting component comprises a first surface, wherein the rigid backplane body comprises a second surface, and wherein the first surface and the second surface are flush.
7. The flexible display module of claim 1, wherein the rigid backplane body comprises a through hole in a one-to-one correspondence with the optical device, wherein the rigid light-transmitting component is a rigid light-transmitting plate stacked on the rigid backplane body, and wherein the rigid light-transmitting plate is located between the rigid backplane body and the flexible display panel.
8. The flexible display module of claim 7, wherein a projection of the through hole on the flexible display panel completely covers a light active area of the optical device.
9. (canceled)
10. The flexible display module of claim 1, wherein the rigid light-transmitting component is a glass rigid light-transmitting component, a plastic rigid light-transmitting component, or a resin rigid light-transmitting component.
11. (canceled)
12. The flexible display module of claim 1, wherein the rigid light-transmitting component is a glass rigid light-transmitting component.
13. The flexible display module of claim 1, wherein the rigid light-transmitting component is a plastic rigid light-transmitting component.
14. The flexible display module of claim 1, wherein the rigid light-transmitting component is a resin rigid light-transmitting component.
15. A flexible display apparatus, comprising: a flexible display module comprising: a flexible display panel; an optical device; and a rigid backplane component located between the flexible display panel and the optical device and comprising: a side that is away from the flexible display panel, wherein the optical device is disposed on the side; a rigid backplane body; and a rigid light-transmitting component, wherein the rigid backplane body and the rigid light-transmitting component are of an integral structure.
16. The flexible display apparatus of claim 15, wherein the rigid light-transmitting component is a glass rigid light-transmitting component, a plastic rigid light-transmitting component, or a resin rigid light-transmitting component.
17. The flexible display apparatus of claim 15, wherein the rigid light-transmitting component is a glass rigid light-transmitting component.
18. The flexible display apparatus of claim 15, wherein the rigid light-transmitting component is a plastic rigid light-transmitting component.
19. The flexible display apparatus of claim 15, wherein the rigid light-transmitting component is a resin rigid light-transmitting component.
20. The flexible display apparatus of claim 15, wherein the rigid backplane body comprises a through hole in a one-to-one correspondence with the optical device, and wherein the rigid light-transmitting component is located in the through hole.
21. The flexible display apparatus of claim 20, wherein the rigid light-transmitting component comprises a curable adhesive.
22. The flexible display apparatus of claim 20, wherein the rigid light-transmitting component comprises a rigid light-transmitting block, and wherein the rigid light-transmitting block is fixedly installed in the through hole.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
REFERENCE NUMERALS
Reference Numerals in the Conventional Technology
[0027] 0100: Flexible display apparatus; 0200: Flexible display module;
[0028] 0210: Cover; 0220: Flexible display panel;
[0029] 0230: Rigid backplane; 0231: Through hole; and
[0030] 0240: Optical device.
Reference Numerals in this Application
[0031] 100: Flexible display apparatus; 200: Flexible display module;
[0032] 210: Cover; 220: Flexible display panel;
[0033] 230: Rigid backplane component; 231: Rigid backplane body;
[0034] 2311: Through hole; 2312: First through hole;
[0035] 2313: Second through hole; 232: Rigid light-transmitting component; and
[0036] 240: Optical device.
DESCRIPTION OF EMBODIMENTS
[0037] A flexible display module is usually applied to a foldable flexible display apparatus, and the flexible display apparatus is usually applied to a common foldable mobile terminal such as a mobile phone or a tablet computer.
[0038] Terms used in the following embodiments are merely intended to describe specific embodiments, but are not intended to limit this application. The terms “one”, “a”, “the”, “the forgoing”, “this” and “the one” of singular forms used in this specification and the appended claims of this application are also intended to include forms like “one or more”, unless otherwise specified in the context clearly.
[0039] Reference to “an embodiment”, “some embodiments”, or the like described in this specification indicates that one or more embodiments of this application include a specific feature, structure, or characteristic described with reference to the embodiments. Therefore, statements such as “in an embodiment”, “in some embodiments”, “in some other embodiments”, and “in other embodiments” that appear at different places in this specification do not necessarily mean referring to a same embodiment, but mean “one or more but not all of the embodiments”, unless otherwise specifically emphasized. The terms “include”, “comprise”, “have”, and their variants all mean “include but are not limited to”, unless otherwise specifically emphasized.
[0040]
[0041] In a specific embodiment, a structure of the rigid backplane component 230 is not specifically limited. Still referring to
[0042] In this embodiment of this application, a manner in which the rigid light-transmitting component 232 is disposed in the through hole 2311 of the rigid backplane body 231 is not specifically limited. In a specific implementation, the rigid light-transmitting component 232 may be a curable adhesive. To manufacture the rigid backplane component 230, a liquid curable adhesive may be injected into the through hole 2311, and then the curable adhesive is cured, to obtain the rigid light-transmitting component 232. In this solution, a manufacturing process of the rigid light-transmitting component 232 is simple, so that the rigid light-transmitting component 232 can be stably installed in the through hole 2311 of the rigid backplane body, to improve structural reliability of the rigid backplane component 230.
[0043] In another specific implementation, the rigid light-transmitting component 232 may be a rigid light-transmitting block. The rigid light-transmitting block is installed in the through hole 2311 of the rigid backplane body. Specifically, the rigid light-transmitting block may be bonded and fastened in the through hole 2311, or may be installed in the through hole 2311 through an interference assembly. This is not specifically limited in this application.
[0044] During specific disposing, a surface that is of the rigid light-transmitting component 232 and that faces the flexible display panel 220 is flush with a surface that is of the rigid backplane body 231 and that faces the flexible display panel 220. In this solution, a support structure on a back side of the flexible display panel 220 is a complete plane, and may well support the flexible display panel 220, to increase the service life of the flexible display panel 220.
[0045]
[0046] In a specific embodiment, a size of the through hole 2311 needs to allow the corresponding optical device 240 to operate normally. Therefore, a projection of the through hole 2311 on the flexible display panel 220 needs to completely cover the light active area of the optical device 240. Specifically, the through hole 2311 may completely fit the light active area of the optical device 240, or the size of the through hole 2311 may be greater than the light active area of the optical device 240, to help accept a large installation tolerance, and help improve light receiving reliability of the light active area of the optical device 240.
[0047]
[0048] In a specific embodiment, a material of the rigid light-transmitting component 232 is not limited. For example, the rigid light-transmitting component 232 may be a glass rigid light-transmitting component 232, or may be a resin rigid light-transmitting component 232. A proper material may be selected based on a requirement to manufacture the rigid light-transmitting component 232, and the rigid light-transmitting component 232 only needs to be rigid and have a light transmission feature. The rigid light-transmitting component 232 in this application may be a transparent device, in other words, has a high light transmission feature, to help implement a function of the optical device 240, and improve an operating effect of the optical device 240.
[0049] In an optional solution, the rigid light-transmitting device 232 may further have specific optical performance based on a requirement of the optical device 240, for example, light enhancement performance, wave filtering performance, or light gathering performance. All the optical performance may be designed based on a requirement, to improve an operating effect of the optical device 240.
[0050] In a specific embodiment, a flexible display module may be an AMOLED display module. Specifically, a flexible display module may be prepared in the following process steps.
[0051] Step S101: Prepare a flexible AMOLED substrate.
[0052] First, a liquid polyimide material is coated on a glass substrate and cured at a high temperature to form a flexible substrate, and a flexible AMOLED array substrate is prepared by using a yellow light process. Then, a pixel cell and an electrode are defined by using a fine masking process. Finally, an organic/inorganic composite film layer is deposited on the AMOLED array substrate, and the AMOLED array substrate is encapsulated, to complete preparation of the AMOLED substrate.
[0053] Step S102: Cut and peel a flexible display panel.
[0054] The substrate prepared in step S101 is cut by using a tool such as a laser or a knife wheel, and the laser is used to heat a thermal release adhesive on the glass substrate, to separate the substrate from the glass substrate, so as to obtain the flexible display panel.
[0055] Step S103: Assemble the flexible display module.
[0056] A film layer such as a polarizer or a touchscreen is laminated on the top of the flexible display panel, pins of a chip and a flexible circuit board are bonded to a terminal of a substrate in a pin-to-pin manner through an outer lead bonding process, and then a reinforced backplane and a surface cover are assembled. A pre-opening design is provided for the polarizer and the backplane at a corresponding location at which an under-screen optical device needs to be installed, and a rigid light-transmitting component is disposed between the optical device and the flexible display panel.
[0057] Step S104: Install the under-screen optical device.
[0058] An optical device such as an under-screen fingerprint recognition device, an under-screen camera, and an under-screen ambient light sensor is fastened to an opening location by using an optical adhesive, to complete an under-screen component module process.
[0059] The foregoing descriptions are merely specific implementations of this application, but are not intended to limit the protection scope of this application. Any variation or replacement readily figured out by a person skilled in the art within the technical scope disclosed in this application shall fall within the protection scope of this application. Therefore, the protection scope of this application shall be subject to the protection scope of the claims.