Back film structure, manufacturing method thereof, display panel and display device
11576269 ยท 2023-02-07
Assignee
- CHENGDU BOE OPTOELECTRONICS TECHNOLOGY CO., LTD. (Sichuan, CN)
- Boe Technology Group Co., Ltd. (Beijing, CN)
Inventors
- Yanxin Wang (Beijing, CN)
- Liqiang Chen (Beijing, CN)
- Xu Tang (Beijing, CN)
- Dongdong Zhao (Beijing, CN)
- Yaming WANG (Beijing, CN)
Cpc classification
G06F1/1641
PHYSICS
G09F9/301
PHYSICS
G06F1/1652
PHYSICS
International classification
Abstract
The disclosure provides a back film structure, a method for manufacturing the back film structure, a display panel and a display device. The back film structure is divided into a bending region and a non-bending region. The back film structure includes a thin film layer and a barrier structure on a side of the thin film layer. An orthographic projection of the barrier structure on the thin film layer at least overlaps an orthographic projection of a boundary line between the bending region and the non-bending region on the thin film layer.
Claims
1. A back film structure having a bending region and a non-bending region and comprising a thin film layer, wherein the back film structure further comprises a barrier structure on a side of the thin film layer, and an orthographic projection of the barrier structure on the thin film layer at least overlaps an orthographic projection of a boundary line between the bending region and the non-bending region on the thin film layer, wherein an extending direction of the boundary line between the bending region and the non-bending region is a first direction, and a direction perpendicular to a plane where the thin film layer is located is a second direction, the barrier structure comprises a plurality of sub-barrier structures, the plurality of sub-barrier structures are uniformly distributed and spaced apart from each other, and each of the plurality of sub-barrier structures extends in the first direction, the plurality of sub-barrier structures are a plurality of protrusions, the back film structure further comprises an elastic structure filled between any two adjacent protrusions of the plurality of protrusions, wherein the elastic structure is in a shape of a sphere or cylinder, a diameter of the sphere or a diameter of a bottom surface of the cylinder is greater than a height of each of the plurality of protrusions along the second direction, and the elastic structure comprises rubber, or the plurality of sub-barrier structures are a plurality of grooves, the back film structure further comprises an elastic structure filled between any two adjacent grooves of the plurality of grooves, wherein the elastic structure is in a shape of a sphere or cylinder, a diameter of the sphere or a diameter of a bottom surface of the cylinder is greater than a depth of each of the plurality of grooves, and the elastic structure comprises rubber.
2. The back film structure of claim 1, wherein each of the plurality of protrusions has a rectangular shape, a triangular shape, or an arc shape in a cross-sectional view.
3. The back film structure of claim 2, wherein a protruding portion of the thin film layer along the second direction serves as a protrusion of the plurality of protrusions.
4. The back film structure of claim 1, wherein the plurality of grooves are in the thin film layer, and each of the plurality of grooves has a rectangular, a triangular or an arc shape in a cross-sectional view.
5. A display panel, comprising: the back film structure of claim 1; an adhesive layer on a side of the back film structure and covering the back film structure and the barrier structure on the back film structure, and a display layer on a side of the adhesive layer away from the back film structure.
6. The display panel of claim 5, wherein the display panel is a flexible display panel.
7. A display device, comprising the display panel of claim 6.
8. A display device, comprising the display panel of claim 5.
9. A method for manufacturing a back film structure, the back film structure having a bending region and a non-bending region, the method comprising: providing a thin film layer; and forming a barrier structure on a side of the thin film layer, wherein an orthographic projection of the barrier structure on the thin film layer at least overlaps an orthographic projection of a boundary line between the bending region and the non-bending region on the thin film layer, an extension direction of the boundary line between the bending region and the non-bending region is a first direction, and a direction perpendicular to a plane where the thin film layer is located is a second direction, forming the barrier structure on a side of the thin film layer comprises: forming the barrier structure comprising a plurality of sub-barrier structures, such that the plurality of sub-barrier structures are uniformly distributed and spaced apart from each other, and each of the plurality of sub-barrier structures extends along the first direction, the plurality of sub-barrier structures are a plurality of protrusions on the thin film layer, and the method further comprises: forming an elastic structure in a shape of a sphere or a cylinder between any two adjacent protrusions of the plurality of protrusions, such that a diameter of the sphere or a diameter of a bottom surface of the cylinder is greater than a height of each of the plurality of protrusions along the second direction, wherein the elastic structure is made of rubber, or the plurality of sub-barrier structures are a plurality of grooves in the thin film layer, and the method further comprises: forming an elastic structure in a shape of a sphere or cylinder between any two adjacent grooves of the plurality of protrusions, such that a diameter of the sphere or a diameter of a bottom surface of the cylinder is greater than a depth of each of the plurality of grooves, wherein the elastic structure is made of rubber.
10. The method of claim 9, wherein each of the plurality of protrusions having a rectangular, a triangular, or an arc shape in a cross-sectional view.
11. The method of claim 10, wherein the thin film layer and the plurality of protrusions are formed as an integral structure.
12. The method of claim 9, wherein each of the plurality of grooves having a rectangle, a triangle, or an arc shape in a cross-sectional view.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(6) In order to make those skilled in the art better understand the technical solutions of the present disclosure, the present disclosure is further described in detail below with reference to the accompanying drawings and specific embodiments.
(7) The display layer and back film structure can be bent simultaneously when being folded. However, in the related art, since the adhesive of the adhesive layer is generally made of a single material, it is easy to accumulate adhesive at a boundary line or dividing line between a bending region and a non-bending region during folding of the display layer and back film structure, thereby affecting a wiring of the display layer, and in turn affecting the display effect. Therefore, embodiments of the present disclosure provide a back film structure, a display panel and a display device. The structure and principle of the back film structure, the display panel and the display device provided by the embodiments of the present disclosure will be described in detail below with reference to the accompanying drawings.
(8) An embodiment of the present disclosure provides a back film structure.
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(11) It should be noted that, each of the sub-barrier structures 1041 is formed throughout the back film structure along an extension direction parallel to the boundary line between the bending region 101 and the non-bending region 102 in the embodiment. In an embodiment, the sub-barrier structures 1041 are uniformly distributed and spaced apart from each other. Therefore, the adhesive of the adhesive layer in the bending region 101 can be uniformly distributed in the space defined by the sub-barrier structures 1041, thereby effectively preventing the adhesive from cumulating at the boundary line between the bending region 101 and the non-bending region 102 during folding of the back film structure.
(12) Embodiments in which the sub-barrier structure 1041 is a protrusion or groove will be illustrated below.
(13) In an embodiment, each of the sub-barrier structures 1041 of the barrier structure 104 is a protrusion, as shown in
(14) The protrusion may have a rectangular shape (as shown in
(15) The protrusions may be formed by patterning the thin film layer 103 corresponding to the bending region 101 through laser ablation, roller grinding, cutter punching, mold pressing or the like. Therefore, the protrusions and the thin film layer 103 may be formed as a one-piece structure. The process for manufacturing the integrally formed structure is simple, and the cost is saved.
(16) Further, an elastic structure 105 is disposed between adjacent protrusions. As shown in
(17) It should be understood that a thickness of the elastic structure 105 may be greater than a thickness or height of the protrusion, so as to block the adhesive from flowing from the bending region 101 to the non-bending region 102, and to avoid the accumulation of the adhesive. An extension direction of the sub-barrier structures 1041 is a first direction, and a direction intersecting the first direction and perpendicular to a plane where the thin film layer 103 is located is a second direction. A height of the elastic structure 105 along the second direction may be greater than a height of the protrusion along the second direction. The combination of the shape of the protrusion and the shape of the elastic structure 105 is not limited to the embodiment as shown in
(18) In an embodiment, the material of the elastic structure 105 may be rubber.
(19) Since the rubber material of the elastic structure 105 has a better resilience than the adhesive, the resilience of the back film structure can be increased. Further, since the hardness of the rubber is greater than the hardness of the adhesive, the bending force for bending the thin film structure 104 can be increased. In the case where the elastic structure 105 is formed of rubber, a soft adhesive may be used. Usage of the soft adhesive may also increase the resilience of the back film structure and may be beneficial to improving the folding performance of the back film structure.
(20) In another embodiment, each of the sub-barrier structures 1041 of the barrier structure 104 is a groove, as shown in
(21) The groove may have a rectangular shape (as shown in
(22) The grooves can be formed by patterning the thin film layer 103 corresponding to the bending region 101 through laser ablation, roller grinding, cutter punching, mold pressing or the like. Therefore, the grooves and the thin film layer 103 may be an integrally formed structure. The process for manufacturing the integrally formed structure is simple, and the cost is saved.
(23) In an embodiment, elastic structures 105 are formed within the spaces defined by the grooves respectively. As shown in
(24) A thickness of the elastic structure 105 (e.g., a diameter of the sphere or a diameter of a bottom surface of the cylinder) may be greater than a thickness or depth of the groove along the second direction, so as to block the adhesive from flowing from the bending region 101 to the non-bending region 102, so that the accumulation of the adhesive can be avoided. In an embodiment, a height of the elastic structure 105 along the second direction may be greater than the depth of the groove. A combination of the shape of the groove and the shape of the elastic structure 105 is not limited to the embodiments shown in
(25) It is understood that the sub-barrier structure 1041 may have other shapes being capable of blocking other than the above protrusion or groove, and the shape of the sub-barrier structure 1041 is not limited herein.
(26) In an embodiment, as shown in
(27) Since the barrier structure 104 only includes the protrusions each located at the boundary line between the bending region 101 and the non-bending region 102, the barrier structure 104 can block the adhesive from flowing from the bending region 101 to the non-bending region 102, so as to avoid the accumulation of the adhesive at the boundary line between the bending region 101 and the non-bending region 102.
(28) In another embodiment, as shown in
(29) An embodiment of the present disclosure provides a display panel, and
(30) It should be noted that the adhesive of the adhesive layer 20 flows under the action of the stress generated by folding during the folding of the back film structure, and the barrier structure of the back film structure can effectively block the adhesive of the adhesive layer 20 from flowing from the bending region to the non-bending region, so as to prevent the accumulation of the adhesive.
(31) In an embodiment, the display panel may be a flexible display panel.
(32) It is understood that the display panel is made of a flexible material and can be bent, deformed, folded, or the like, in practical applications, therefore the display panel may be a flexible display panel.
(33) An embodiment of the present disclosure provides a display device, which includes the display panel provided in the above embodiment. The implementation principle of the display device provided by the embodiment of the present disclosure is similar to that of the back film structure 10 provided by the above embodiment, and will not be described herein again. The display device provided by the embodiment of the disclosure may be an electronic paper, a mobile phone, a tablet computer, a display, a notebook computer, or the like.
(34) The display device according to the embodiment of the present disclosure may be a foldable device. It can effectively block the adhesive of the adhesive layer inside the display device from flowing from the bending region to non-bending region during folding of the display device, so as to avoid the accumulation of the adhesive and the influence on the wiring of the display layer. The display device according to the embodiment of the disclosure may be a flexible panel, and the barrier structure of the back film structure can effectively avoid the damage to the flexible display panel caused by the accumulation of the adhesive, thereby improving the use experience of a user.
(35) An embodiment of the disclosure provides a method for manufacturing a back film structure. The back film structure is divided into a bending region and a non-bending region. The method includes: providing a thin film layer 103; and forming a barrier structure 104 on a side of the thin film layer 103. An orthographic projection of the barrier structure 104 on the thin film layer 103 at least overlaps an orthographic projection of a dividing line or boundary line between the bending region 104 and the non-bending region 102 on the thin film layer 103.
(36) An extension direction of the boundary line between the bending region and the non-bending region is a first direction, and a direction perpendicular to a plane where the thin film layer is located is a second direction. Forming the barrier structure 104 on a side of the thin film layer 103 includes: forming the barrier structure 104 including a plurality of sub-barrier structures 1041, such that the plurality of sub-barrier structures 1041 are uniformly distributed and spaced apart from each other and each of the plurality of sub-barrier structures 1041 extends along the first direction.
(37) Forming barrier structure 104 on a side of the thin film layer 103 further includes: forming a plurality of protrusions 1041 on a side of the thin film layer 103. Each of the plurality of protrusions has a rectangular, a triangular or an arc shape in a cross-sectional view, as shown in
(38) The method further includes: forming an elastic structure 105 in a shape of a sphere or cylinder between any two adjacent protrusions 1041, such that a diameter of the sphere or a diameter of a bottom surface of the cylinder is greater than a height of the protrusion along the second direction. In an embodiment, the elastic structure 105 is made of rubber.
(39) Forming the barrier structure 104 on a side of the thin film layer 103 further includes: forming a plurality of grooves in the thin film layer. Each of the plurality of grooves has a rectangular, a triangular or an arc shape in the cross-sectional view, as shown in
(40) The method further includes: forming an elastic structure 105 in a shape of a sphere or cylinder between any two adjacent protrusions 1041, such that a diameter of the sphere or a diameter of a bottom surface of the cylinder is greater than a depth of the groove. In an embodiment, the elastic structure is made of rubber.
(41) It should be understood that the above implementations are merely exemplary embodiments for the purpose of illustrating the principles of the present disclosure, however, the present disclosure is not limited thereto. It will be apparent to those skilled in the art that various changes and modifications can be made without departing from the spirit and spirit of the present disclosure, which are also to be regarded as the scope of the present disclosure.