This disclosure relates to display technology, and more particularly, to a flexible display screen support structure.
Organic light-emitting diode (OLED) displays can be used in flexible display products, such as; foldable mobile phones, smart watches, and car displays, due to their advantages of being thin, flexible, foldable, etc.
Generally, a flexible OLED display screen has thin thickness and a low overall hardness. However, when the flexible OLED display screen is disposed on a foldable mobile phone, it may be touched and pressed during a user's operation. It is necessary to support the flexible OLED display screen by disposing a support material, such as a hard metal plate, below the flexible OLED display screen to prevent problems such as the flexible OLED display screen being sunken when the user presses the flexible OLED display screen, the flexible OLED display screen being broken due to excessive force, and the flexible OLED display screen not flat after repeated bending. However, since the foldable mobile phone is often bent, the support material such as the metal plate, below a bending area of the flexible OLED display screen needs to have a certain bendable property in addition to support property of the flexible OLED display screen.
For a conventional support material, such as a metal plate under a bending area of a flexible OLED display screen, bendable property and support property are needed to provide for the flexible OLED display screen.
In order to solve the above-mentioned drawbacks, the disclosure provides a flexible display screen support structure for supporting a flexible display screen. The flexible display screen support structure comprises a soft material and a hard material jointly disposed, and the soft material is coated with the hard material. That provides a certain supporting effect for the flexible display screen and can meet the requirement of repeated bending to overcome the above drawbacks.
To achieve the above object, the disclosure provides a flexible display screen support structure for supporting a flexible display screen. The flexible display screen support structure comprises two bending blocks, and a support sheet disposed on the two bending blocks. The support sheet comprises a soft material layer and a hard material layer, and the soft material layer completely covers the hard material layer. The flexible display screen is disposed on the support sheet. The support sheet comprises a bending region and two non-bending regions, the hard material layer is a continuous wave-like structure, and comprises a plurality of convex portions and a plurality of concave portions, each of the convex portions and each of the concave portions are disposed staggered.
In one embodiment of the disclosure, the two non-bending regions are disposed on two sides of the bending region, and the two bending blocks are respectively disposed below the two non-bending regions.
In one embodiment of the disclosure, the support sheet further includes a supporting surface and a connecting surface, the flexible display screen is disposed on the supporting surface, and the connecting surface is connected to the bending block.
In one embodiment of the disclosure, the soft material layer is selected from a rubber material or a silica gel material.
In one embodiment of the disclosure, a thickness of the support sheet is less than 2 mm.
In one embodiment of the disclosure, a cross-sectional shape of the hard material layer is selected from the group consisting of a symmetrical wave shape, an asymmetrical wave shape, a regular wave shape, an irregular wave shape, a symmetrical jagged shape, an asymmetrical jagged shape, a regular jagged shape, an irregular jagged shape, a symmetrical square toothed wave shape, an asymmetrical square toothed wave shape, a regular square toothed wave shape, an irregular square toothed wave shape, and any combination thereof.
In one embodiment of the disclosure, the soft material layer comprises a first soft material layer and a second soft material layer laminated with each other, and the hard material layer is disposed between the first soft material layer and the second soft material layer.
In one embodiment of the disclosure, the support structure further includes a plurality of non-slip particles interval disposed on a surface of the hard material layer.
In one embodiment of the disclosure, the hard material layer is an elongated sheet-like structure made of a material having a shape memory function, and the hard material layer extends along a longitudinal direction of the flexible display screen.
To achieve the above object, the disclosure provides a flexible display screen support structure for supporting a flexible display screen. The flexible display screen support structure comprises two bending blocks, and a support sheet disposed on the two bending blocks. The support sheet comprises a soft material layer and a hard material layer, and the soft material layer completely covers the hard material layer. The flexible display screen is disposed on the support sheet.
In one embodiment of the disclosure, the support sheet comprises a bending region and two non-bending regions, the hard material layer is a continuous wave-like structure, the two non-bending regions are disposed on two sides of the bending region, and the two bending blocks are respectively disposed below the two non-bending regions.
In one embodiment of the disclosure, the support sheet further includes a supporting surface and a connecting surface, the flexible display screen is disposed on the supporting surface, and the connecting surface is connected to the bending block.
In one embodiment of the disclosure, the soft material layer is selected from a rubber material or a silica gel material.
In one embodiment of the disclosure, the hard material layer is a continuous wave-like structure, and comprises a plurality of convex portions and a plurality of concave portions, each of the convex portions and each of the concave portions are disposed staggered.
In one embodiment of the disclosure, a thickness of the support sheet is less than 2 mm.
In one embodiment of the disclosure, a cross-sectional shape of the hard material layer is selected from the group consisting of a symmetrical wave shape, an asymmetrical wave shape, a regular wave shape, an irregular wave shape, a symmetrical jagged shape, an asymmetrical jagged shape, a regular jagged shape, an irregular jagged shape, a symmetrical square toothed wave shape, an asymmetrical square toothed wave shape, a regular square toothed wave shape, an irregular square toothed wave shape, and any combination thereof.
In one embodiment of the disclosure, the soft material layer comprises a first soft material layer and a second soft material layer laminated with each other, and the hard material layer is disposed between the first soft material layer and the second soft material layer.
In one embodiment of the disclosure, the support structure further includes a plurality of non-slip particles interval disposed on a surface of the hard material layer.
In one embodiment of the disclosure, the hard material layer is an elongated sheet-like structure made of a material having a shape memory function, and the hard material layer extends along a longitudinal direction of the flexible display screen.
The disclosure further provides a flexible display screen support structure for supporting a flexible display screen. The flexible display screen support structure comprises two bending blocks and a support sheet disposed on the two bending blocks. The support sheet comprises a soft material layer and a hard material layer, and the soft material layer completely covers the hard material layer. The flexible display screen is disposed on the support sheet. The support sheet comprises a bending region and two non-bending regions, the hard material layer is a continuous wave-like structure, and the hard material layer comprises a plurality of convex portions and a plurality of concave portions, each of the convex portions and each of the concave portions are disposed staggered. Spacing between two of the convex portions adjacent to each other in the bending region is greater than spacing between two of the convex portions adjacent to each other in the non-bending region.
The technical effects are as follows. The flexible display screen support structure provided by the present disclosure is a support structure composed of a hard material (mainly for supporting) and a soft material (mainly for increasing surface flatness). The soft material is coated with the hard material, so that the support structure provides a certain supporting effect for the flexible display screen. The support structure of the disclosure prevents the flexible display screen from being depressed, being broken when subjected to external forces, or being rugged after repeatedly bending the flexible display screen during the operation process of the flexible display screen of the user. Meanwhile, the support structure provides a bending property that can be matched with the flexible display screen. That ensures that a foldable touch display device does not require excessive external force when bending, and the support structure is not easily plastically deformed or even broken after repeated bending.
This description of the exemplary embodiments is intended to be read in connection with the accompanying drawings, which are to be considered part of the entire written description.
Referring to
The support sheet 20 has a thickness of less than 2 mm. The support sheet 20 further includes a supporting surface 201 and a connecting surface 202 (see
The soft material layer 21 is selected from a rubber material, a silica gel material, or a flexible material, such as rubber, silica gel or the like. The hard material layer 22 is an elongated sheet-like structure made of a material having a shape memory function, and the hard material layer 22 extends along the longitudinal direction of the flexible display screen 100. The disclosure is not limited to the material from which the hard material layer 22 is formed, as long as it is a hard material that can provide hard support for the flexible display screen 100, such as metal, plastic, polymer, and the like. For example, the material of the hard material layer 22 may be memory alloy materials such as Ag—Cd, Cu—Zn, Cu—Zn—Sn, Cu—Zn—Si, Cu—Sn, Cu—Zn—Ga, In—Ti, Au—Cu—Zn, Ni—Al, Fe—Pt, Ti—Ni, Ti—Ni—Pd, Ti—Nb, U—Nb or Fe—Mn—Si. Preferably, the hard material layer 22 is made of manganese steel or other spring materials for manufacturing springs for reduction cost.
Referring to
Referring to
Finally, both ends of the bending block 10 is reset and flattened by the external force (hand force) or by the release of the external force, and the flexible display screen 100 and the support structure are reset to the unfolded state. This is a transition process between the unfolded state and the bent state of the present embodiment.
According to an embodiment of the disclosure, the support structure further includes a plurality of non-slip particles 223 (see
In different embodiments, the hard material layer 22, the soft material layer 21, and the bent block 10 are integrally injection molded. In different embodiments, the hard material layer 22 is formed inside the soft material layer 10, that is, the soft material layer 21 is a double-layer structure provided in a layered manner. Namely, the soft material layer 21 includes a first soft material layer (not shown) and a second soft material layer (not shown), the hard material layer 22 is disposed between the first soft material layer and the second soft material layer.
According to an embodiment of the disclosure, a cross-sectional shape of the hard material layer 22 is selected from the group consisting of a symmetrical wave shape, an asymmetrical wave shape, a regular wave shape, an irregular wave shape, a symmetrical jagged shape, an asymmetrical jagged shape, a regular jagged shape, an irregular jagged shape, a symmetrical square toothed wave shape, an asymmetrical square toothed wave shape, a regular square toothed wave shape, an irregular square toothed wave shape, and any combination thereof. Referring to
In the support sheet of the flexible display screen support structure as shown in
In the support sheet of the flexible display screen support structure as shown in
In the support sheet of the flexible display screen support structure as shown in
In the support sheet of the flexible display screen support structure as shown in
In the support sheet of the flexible display screen support structure as shown in
The flexible display screen support structure provided by the present disclosure is a support structure composed of a hard material (mainly for supporting) and a soft material (mainly for increasing surface flatness). The soft material is coated with the hard material, so that the support structure provides a certain supporting effect for the flexible display screen. The support structure of the disclosure prevents the flexible display screen from being depressed, being broken when subjected to external forces, or being rugged after repeatedly bending the flexible display screen during the operation process of the flexible display screen of the user. Meanwhile, the support structure provides a bending property that can be matched with the flexible display screen. That ensures that a foldable touch display device does not require excessive external force when bending, and the support structure is not easily plastically deformed or even broken after repeated bending. This disclosure has been described with preferred embodiments thereof, and it is understood that many changes and modifications to the described embodiment can be carried out without departing from the scope and the spirit of the invention.
Number | Date | Country | Kind |
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201910093785.4 | Jan 2019 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2019/082937 | 4/16/2019 | WO | 00 |