Display module and display device

The display module addresses the issue of bezel stress by using an adhesive layer with varying elastic moduli to enhance bezel rigidity and reduce stress on the display panel, thereby improving display reliability and performance.

JP7682305B2Active Publication Date: 2025-05-23WUHAN CHINA STAR OPTOELECTRONICS SEMICONDUCTOR DISPLAY TECHNOLOGY CO LTD
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Patent Information

Application Number
JP2023574144
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2022-11-14
Filing Date
2023-06-29
Publication Date
2025-05-23
Estimated Expiration
2043-06-29

AI Technical Summary

Technical Problem

Current narrow bezel display modules face issues with the destruction of the package layer and breakage of metal wiring near the lower bezel due to reverse stress from the base film layer during folding, leading to display abnormalities and water/oxygen intrusion.

Method used

A display module with a reinforced adhesive layer, where the elastic modulus of the first sub-part in the bezel area is greater than that of the second sub-part in the display area, improving the rigidity of the lower bezel and reducing the reverse acting force on the display panel during folding.

Benefits of technology

The solution effectively reduces the risk of film layer breakage and improves the display effect by enhancing the rigidity of the lower bezel and mitigating the reverse acting force during the folding process.

✦ Generated by Eureka AI based on patent content.

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Abstract

An embodiment of the present invention discloses a display module and a display device, the display module includes a display panel and at least one adhesive layer, the display panel includes a display function part, a bonding part and a folding part, the display module includes a display area and a first bezel area, the at least one adhesive layer includes a first sub-part located in the first bezel area and a second sub-part located in the display area and the first bezel area, and the elastic modulus of the first sub-part is greater than that of the second sub-part.
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Description

[Technical field]

[0001] The present application relates to the field of displays, in particular to display modules and display devices. [Background technology]

[0002] In recent years, narrow bezel display modules have become more and more popular among consumers. Referring to FIG. 1, in order to reduce the bezel width of the display module 1, the bonding part of the display panel 2 is folded toward the back. The display panel 2 includes a panel body and a base film layer, such as a substrate 37, a buffer insulating layer 36, etc., located on the side away from the light-emitting side of the panel body, and further includes a metal wiring layer 35, an interlayer insulating layer 34, a flat layer 33, a touch layer 32, and an organic passivation layer 31. Because the thickness of the folding part and the bonding part in the folding area are thin and in a fixed state after folding, during folding, the base film layer exerts a reverse stress on the package layer or the metal wiring layer 35 of the display panel 2, which causes the destruction of the package layer and the breakage of the metal wiring layer 35 in the area near the lower bezel of the display module 1, and the broken part is as shown by the reference numeral 38 in the figure, which results in display abnormality and the intrusion of water and oxygen, which affects the display effect.

[0003] Therefore, there is an urgent need for a display module and a display device that can solve the above technical problems. Summary of the Invention

[0004] The present invention provides a display module and a display device that can alleviate the technical problem of the abnormal state of the membrane layer near the lower bezel of the current display module.

[0005] In order to solve the above problems, the technical solutions provided in this application are as follows:

[0006] The present invention provides a display module, the display module comprising: a display panel including a display function section, a bonding section provided opposite to the display function section, and a bent section connecting the display function section and the bonding section; At least one adhesive layer provided on a side of the display function unit close to the bonding unit, The display module includes a display area corresponding to the display function portion and a first bezel area located between the display area and the folding portion, and at least one of the adhesive layers includes a first sub-part located within the first bezel area and a second sub-part located within the display area and the first bezel area, and the elastic modulus of the first sub-part is greater than the elastic modulus of the second sub-part.

[0007] In some embodiments, the first sub-portion and the second sub-portion are spaced apart, and the adhesive layer includes a gap portion located between the first sub-portion and the second sub-portion.

[0008] In some embodiments, the display module further includes a shielding portion located on a side of the display function portion away from the bonding portion, and an orthogonal projection of the gap portion onto the display function portion is located within an orthogonal projection of the shielding portion onto the display function portion.

[0009] In some embodiments, the gap is located within the first bezel region.

[0010] In some embodiments, the display module includes a first adhesive layer provided on a side closer to the bonding portion of the display function portion, a first backplate layer located on a side of the first adhesive layer away from the display function portion, a second adhesive layer located on a side of the first backplate layer away from the display function portion, a light-shielding buffer layer located on a side of the second adhesive layer away from the display function portion, a third adhesive layer located on a side of the light-shielding buffer layer away from the display function portion, and a support function layer located on a side of the third adhesive layer away from the display function portion, wherein the elastic modulus of the first sub-portion of the first adhesive layer is greater than the elastic modulus of the first sub-portion of the second adhesive layer, and the elastic modulus of the first sub-portion of the second adhesive layer is greater than the elastic modulus of the first sub-portion of the third adhesive layer.

[0011] In some embodiments, a thickness of the first sub-portion of the first adhesive layer is greater than a thickness of the first sub-portion of the second adhesive layer, a thickness of the first sub-portion of the second adhesive layer is greater than a thickness of the first sub-portion of the third adhesive layer, and a sum of thicknesses of the first sub-portion of the first adhesive layer, the first sub-portion of the second adhesive layer, and the first sub-portion of the third adhesive layer is equal to a sum of thicknesses of the second sub-portion of the first adhesive layer, the second sub-portion of the second adhesive layer, and the second sub-portion of the third adhesive layer.

[0012] In some embodiments, the first sub-portion of the first adhesive layer includes a first end away from the display area, the first end protruding from a corresponding end of the first backplate layer, an orthogonal projection of the first sub-portion of the second adhesive layer onto the first backplate layer is located within the first backplate layer, an orthogonal projection of the first sub-portion of the second adhesive layer onto the light-shielding buffer layer is located within the light-shielding buffer layer, an orthogonal projection of the first sub-portion of the third adhesive layer onto the light-shielding buffer layer is located within the light-shielding buffer layer, and an orthogonal projection of the first sub-portion of the second adhesive layer onto the support functional layer is located within the support functional layer.

[0013] In some embodiments, the first adhesive layer is provided with a first sub-gap portion located between a corresponding one of the first sub-parts and a corresponding one of the second sub-parts, the second adhesive layer is provided with a second sub-gap portion located between a corresponding one of the first sub-parts and a corresponding one of the second sub-parts, and the third adhesive layer is provided with a third sub-gap portion located between a corresponding one of the first sub-parts and a corresponding one of the second sub-parts, wherein a width of the first sub-gap portion is greater than or equal to a width of the second sub-gap portion and a width of the second sub-gap portion is greater than or equal to a width of the third sub-gap portion.

[0014] In some embodiments, the orthogonal projection of the first sub-gap onto the display function, the orthogonal projection of the second sub-gap onto the display function, and the orthogonal projection of the third sub-gap onto the display function have an overlapping region.

[0015] In some embodiments, the bend radius of the first adhesive layer is smaller than the bend radius of the second adhesive layer, and the bend radius of the second adhesive layer is smaller than the bend radius of the third adhesive layer.

[0016] In some embodiments, the display module further includes a polarizing layer located on a side of the display function portion away from the bonding portion, the polarizing layer being located within the display area and the first bezel area, and a normal projection of the polarizing layer onto the display function portion and a normal projection of the first sub-portion of at least one of the adhesive layers onto the display function portion have an overlap area.

[0017] In some embodiments, the display module further includes a protective layer located on a side of the folding portion away from the display area and on a side of the display function portion away from the bonding portion, and an end of the protective layer closer to the polarizing layer is located within the first bezel area, and the protective layer and the polarizing layer are spaced apart.

[0018] In some embodiments, the display module further includes an ultra-thin glass located on a side of the polarizing layer away from the display function, and a window cover located on a side of the ultra-thin glass away from the display function.

[0019] In some embodiments, a width of the gap of the adhesive layer in a direction from the folding portion to a center of the display function portion is a first width, a thickness between a surface of the support functional layer away from the window covering and a surface of the window covering away from the support functional layer is a first thickness; The first width is 50% to 150% of the first thickness.

[0020] In some embodiments, the first sub-portion has a modulus of elasticity of 20 MPa or more.

[0021] In some embodiments, the first sub-portion is a pressure sensitive adhesive and the second sub-portion is an optical adhesive.

[0022] The present invention further provides a display device, the display device including a display module and a device body, the display module and the device body being integrated together; The display module includes: a display panel including a display function section, a bonding section provided opposite to the display function section, and a bent section connecting the display function section and the bonding section; At least one adhesive layer provided on a side of the display function unit close to the bonding unit, The display module includes a display area corresponding to the display function portion and a first bezel area located between the display area and the folding portion, and at least one of the adhesive layers includes a first sub-part located within the first bezel area and a second sub-part located within the display area and the first bezel area, and the elastic modulus of the first sub-part is greater than the elastic modulus of the second sub-part.

[0023] In some embodiments, the first sub-portion and the second sub-portion are spaced apart, and the adhesive layer includes a gap portion located between the first sub-portion and the second sub-portion.

[0024] In some embodiments, the display module includes a first adhesive layer provided on a side closer to the bonding portion of the display function unit, a first backplate layer located on a side of the first adhesive layer away from the display function unit, a second adhesive layer located on a side of the first backplate layer away from the display function unit, a light-shielding buffer layer located on a side of the second adhesive layer away from the display function unit, a third adhesive layer located on a side of the light-shielding buffer layer away from the display function unit, and a support function layer located on a side of the third adhesive layer away from the display function unit, The elastic modulus of the first sub-portion of the first adhesive layer is greater than the elastic modulus of the first sub-portion of the second adhesive layer, and the elastic modulus of the first sub-portion of the second adhesive layer is greater than the elastic modulus of the first sub-portion of the third adhesive layer.

[0025] In some embodiments, the display module further includes a polarizing layer located on a side of the display function portion away from the bonding portion, The polarizing layer is located within the display area and the first bezel area, and a normal projection of the polarizing layer onto the display function section and a normal projection of at least one first sub-section of the adhesive layer onto the display function section have an overlapping area. Effect of the Invention

[0026] The present invention has the following beneficial effects: In other words, the present invention provides a reinforced adhesive layer that is easy to improve the elastic modulus, and the elastic modulus of the first sub-part of the adhesive layer corresponding to the first bezel area is made greater than that of the second sub-part corresponding to the display area, thereby improving the rigidity of the lower bezel area of ​​the display module, and utilizing the high elastic modulus of the first sub-part during folding to reduce the reverse acting force of the base film layer on the side away from the light-emitting side against the film layer of the display panel, thereby reducing the risk of breakage of the film layer of the lower bezel and improving the display effect. [Brief description of the drawings]

[0027] [Figure 1] FIG. 2 is a structural schematic diagram of a film layer of a display module being broken. [Diagram 2] 1 is a first schematic diagram of the structure of a display module provided in an embodiment of the present invention; [Diagram 3] FIG. 2 is a second schematic diagram of the structure of a display module provided in an embodiment of the present invention. [Figure 4] FIG. 2 is a folding simulation diagram of a display module provided in an embodiment of the present invention. [Diagram 5] 1 is a comparative diagram of a folding simulation of a display module provided in an embodiment of the present invention; [Figure 6] FIG. 2 is a comparative experimental characterization diagram of a display module provided in an embodiment of the present invention. [Figure 7] FIG. 11 is another comparative experimental characterization diagram of the display module provided in the embodiment of the present invention. [Figure 8] FIG. 2 is a structural schematic diagram of a display device provided in an embodiment of the present invention; DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS

[0028] The present application provides a display module and a display device, and in order to make the objectives, technical solutions and advantages of the present application clearer and easier to understand, the present application will be described in more detail below with reference to the drawings and examples. It should be understood that the specific examples described herein are only for the purpose of interpreting the present application, and are not intended to limit the present application.

[0029] The embodiments of the present application provide a display module and a display device, which will be described in detail below. It should be noted that the order of description of the following embodiments does not limit the preferred order of the embodiments.

[0030] In recent years, narrow bezel display modules have become more and more popular among consumers, and in order to reduce the bezel width of the display module, the bonding part of the display panel is folded toward the back. The display panel includes a panel body and a buffer layer located on the side of the panel body away from the light-emitting side. Because the thickness of the folding part and the bonding part in the folding area is thin and in a fixed state after folding, the buffer layer exerts a reverse stress on the package layer or wiring layer of the display panel during folding, which causes the destruction of the package layer or the breakage of the metal wiring film layer in the area near the lower bezel of the display module, resulting in the intrusion of water and oxygen and display abnormality, which affects the display effect.

[0031] 2 to 7, an embodiment of the present invention provides a display module 100, which includes: a display panel 200 including a display function unit 210, a bonding unit 230 provided opposite the display function unit 210, and a folding unit 220 connecting the display function unit 210 and the bonding unit 230; At least one adhesive layer provided on one side of the display panel 200; The display module 100 includes a display area 201 corresponding to the display function portion 210, and a first bezel area 202 located on a side of the display area 201 closer to the folding portion 220, and at least one of the adhesive layers includes a first sub-portion 410 and a second sub-portion 420, the first sub-portion 410 being located within the first bezel area 202, and the second sub-portion 420 being located within the display area 201 and the first bezel area 202, and the elastic modulus of the first sub-portion 410 is greater than the elastic modulus of the second sub-portion 420.

[0032] In the present invention, the adhesive layer, which has an elastic modulus that is easy to improve, is reinforced, and the elastic modulus of the first sub-part of the adhesive layer corresponding to the first bezel region is made greater than the elastic modulus of the second sub-part corresponding to the display region, thereby improving the rigidity of the lower bezel region of the display module, and by utilizing the high elastic modulus of the first sub-part during bending, the reverse acting force of the base film layer on the side away from the light emission side against the film layer of the display panel is reduced, thereby reducing the risk of breakage of the film layer of the lower bezel and improving the display effect.

[0033] The technical solutions of the present invention will be described below with reference to specific embodiments.

[0034] In this embodiment, referring to FIG. 2, the display module 100 includes a display panel 200 and at least one adhesive layer provided on one side of the display panel 200. The display panel 200 includes a display function unit 210, a bonding unit 230 provided opposite the display function unit 210, and a folding unit 220 connecting the display function unit 210 and the bonding unit 230. The display module 100 includes a display area 201 corresponding to the display function unit 210, and a folding unit 220 connecting the display function unit 210 and the bonding unit 230. The display module 100 further includes a first bezel region 202 located on a side of the region 201 closer to the folding portion 220, the first bezel region 202 being a lower bezel region of the display module 100, and at least one of the adhesive layers includes a first sub-portion 410 and a second sub-portion 420, the first sub-portion 410 being located within the first bezel region 202 and the second sub-portion 420 being located within the display region 201 and the first bezel region 202, and the elastic modulus of the first sub-portion 410 is greater than the elastic modulus of the second sub-portion 420.

[0035] In some embodiments, the display area 201 of the display function unit 210 performs a display function and the first bezel area 202 of the display function unit 210 does not perform a display function.

[0036] In some embodiments, referring to FIG. 2, the display module 100 includes a first adhesive layer 311 provided on a side closer to the bonding portion 230 of the display function portion 210, a first backplate layer 312 located on a side of the first adhesive layer 311 away from the display function portion 210, a second adhesive layer 313 located on a side of the first backplate layer 312 away from the display function portion 210, a light-shielding buffer layer 314 located on a side of the second adhesive layer 313 away from the display function portion 210, a third adhesive layer 315 located on a side of the light-shielding buffer layer 314 away from the display function portion 210, and a support functional layer 316 located on a side of the third adhesive layer 315 away from the display function portion 210.

[0037] In some embodiments, the material of the light-shielding buffer layer 314 may include a light-shielding material and a buffer material, and the buffer material may be urethane foam.

[0038] In some embodiments, the display module further includes a second backplate layer 317 located between the supporting functional layer 316 and the bonding portion 230 .

[0039] For ease of explanation, the adhesive layer will be described below with reference to FIG. 2, taking the first adhesive layer 311 as an example.

[0040] The panel body includes a driving circuit layer, a light-emitting layer, and a packaging layer, and the packaging layer includes a first inorganic layer, a second inorganic layer, and an organic layer located between the first inorganic layer and the second inorganic layer, and the first inorganic layer is located on the side of the driving circuit layer away from the first adhesive layer 311, and the driving circuit layer includes a metal wiring layer. During bending of the bending portion and the bonding portion, it can be seen from the simulation results that the main failure risk point of the display body is located at the end of the inorganic layer of the packaging layer, the deformation amount of this point is the largest, and the magnitude of deformation of this point is directly related to the rigidity of the film layer in the first bezel area 202 of the display module 100.

[0041] The material of the first backplate layer 312 is generally polyethylene terephthalate or polyimide, the material of the light-shielding buffer layer 314 is generally black polyimide, and the support functional layer 316 is generally steel. The material of the adhesive layer is generally optical adhesive or pressure-sensitive adhesive, and compared with the first backplate and the light-shielding buffer layer 314, the adhesive layer is easier to change the elastic modulus, and compared with the support functional layer 316, the adhesive layer is closer to the display panel 200, so that the adhesive layer's reinforcing force on the display panel 200 is more directly applied when the display panel 200 is folded.

[0042] An experimental group and a comparative group were set, and the conditions for the experimental group were that the elastic modulus of the first sub-part 410 was greater than that of the second sub-part 420, that is, the elastic modulus of the first sub-part 410 was 20 MPa, and the elastic modulus of the second sub-part 420 was 3 MPa, and the conditions for the comparative group were that the elastic modulus of the entire adhesive layer was the same, that is, the elastic modulus of the adhesive layer was both 3 MPa. The fracture strain and position parameters of the display panel 200 during and after bending were measured, and the measured parameters and plots were plotted, with the vertical axis representing the fracture strain of the first inorganic layer and the horizontal axis representing the distance between the measurement point and the end of the first inorganic layer away from the center of the display panel 200, in millimeters, and the measurement origin 700 as shown in FIG.

[0043] From the simulation comparison, it is found that when the laminated structure of the present application is adopted, the elastic modulus of the first sub-part 410 is greater than that of the second sub-part 420. Referring to FIG. 5, the warping of the first adhesive layer 311, the second adhesive layer 313, and the first backplate layer 312 in the experimental group is obviously reduced. Referring to FIG. 6 and FIG. 7, it can be seen that the stress of the first inorganic layer of the display module 100 is significantly reduced during bending and in the final state, and the risk of failure and breakage is effectively improved.

[0044] By reinforcing the adhesive layer, which has an elastic modulus that is easy to improve, and making the elastic modulus of the first sub-portion of the adhesive layer corresponding to the first bezel region greater than that of the second sub-portion corresponding to the display region, the rigidity of the lower bezel region of the display module 100 is improved, and the reverse acting force of the base film layer, such as a substrate or buffer insulating layer, located away from the light emission side during bending, on the metal wiring film layer or package layer of the display panel 200 is reduced, thereby reducing the risk of film layer breakage failure and improving the display effect.

[0045] 2, in some embodiments, the first sub-part 410 and the second sub-part 420 are provided separately. The adhesive layer has a gap 430 located between the first sub-part 410 and the second sub-part 420, and the display module 100 may be a foldable display module 100. In a process of folding the display panel 200, the adhesive layer slides against an adjacent film layer due to folding, causing misalignment of the film layer. The gap 430 can accommodate the misaligned adhesive layer, and can avoid the risk of the adhesive layer peeling off from the adjacent film layer due to the misalignment of the film layer.

[0046] In some embodiments, referring to FIG. 2, the display module 100 further includes a shielding portion 440 located on a side of the display function portion 210 away from the bonding portion 230, and the adhesive layer includes a gap portion 430 located between the first sub-portion 410 and the second sub-portion 420, and the orthogonal projection of the gap portion 430 onto the display function portion 210 is located within the orthogonal projection of the shielding portion 440 onto the display function portion 210.

[0047] The shielding part 440 is used to shield the gap 430, thereby improving the front appearance of the display module 100. The material of the shielding part 440 may be a light-shielding material such as black ink, and is not specifically limited herein.

[0048] 2, in some embodiments, the gap 430 is located in the first bezel region 202. The gap 430 is used to accommodate the misaligned adhesive layer, limit the misalignment to within the first bezel region 202, reduce the impact on the normal display area 201, and ensure display quality.

[0049] In some embodiments, in the direction from the folding portion 220 to the center of the display function portion 210, the width of the gap portion 430 is a first width, the thickness between the surface of the support function layer 316 away from the window covering 530 and the surface of the window covering 530 away from the support function layer 316 is a first thickness, and the first width is 50% to 150% of the first thickness.

[0050] When the display module is a foldable display module, the display module is formed by laminating a plurality of film layers and adhesive layers. When the display module is folded and bent, the end of the display module will have accumulated shear deformation due to the shear stress existing between the film layers, so that the interlayer misalignment will be formed at the end of the display module. The magnitude of the interlayer misalignment is directly related to the material of the film layer, the thickness of the material of the adhesive layer, the thickness of the display module, and the elastic modulus. The smaller the elastic modulus of the adhesive layer, the larger the misalignment value. The larger the elastic modulus of the display panel, the larger the misalignment value. The larger the thickness of the display panel, the larger the misalignment value of the end. The smaller the bending radius of the display module after folding, the larger the misalignment value of the end. In a high temperature environment, the elastic modulus of the adhesive layer decreases, which is easy to cause deformation, and the total misalignment is large. Therefore, the width of the gap 430 is limited by selecting the thickness data of the display module that is easy to measure in the actual manufacturing process.

[0051] In the figure, for ease of plotting, the ratio between the thickness of the display panel 200 and the width of the gap 430 is merely schematic, and the specific ratio should be referred to the numerical ratio. The set width of the gap 430 is related to the first thickness, and the displacement of the film layer of the display panel 200 before and after the display module 100 is folded is 50% to 150% of the first thickness, and by setting the width of the gap 430 to 50% to 150% of the first thickness, the misaligned adhesive layer can be effectively accommodated, and the risk of the adhesive layer peeling off from the adjacent film layer due to the misalignment of the film layer can be avoided.

[0052] In some embodiments, the first thickness is 0.4mm-0.8mm, and preferably, the first width of the gap 430 is 0.4mm-0.7mm, which can ensure the accommodation of the film layer misaligned by folding, reduce the width of the gap 430, ensure a larger installation area of ​​the first sub-part 410, effectively reduce the reverse acting force of the base film layer on the side away from the light-emitting side against the film layer of the display panel 200, reduce the risk of film layer breakage, and improve the display effect.

[0053] In some embodiments, referring to FIG. 2, the display module 100 includes a first adhesive layer 311 provided on a side of the display function unit 210 close to the bonding portion 230, a first backplate layer 312 located on a side of the first adhesive layer 311 away from the display function unit 210, a second adhesive layer 313 located on a side of the first backplate layer 312 away from the display function unit 210, a light-shielding buffer layer 314 located on a side of the second adhesive layer 313 away from the display function unit 210, and a third adhesive layer 314 located on a side of the light-shielding buffer layer 314 away from the display function unit 210. the elastic modulus of the first sub-portion 411 (410) of the first adhesive layer 311 is greater than the elastic modulus of the second sub-portion 421 (420) of the first adhesive layer 311, the elastic modulus of the first sub-portion 412 (410) of the second adhesive layer 313 is greater than the elastic modulus of the second sub-portion 422 (420) of the second adhesive layer 313, and the elastic modulus of the first sub-portion 413 (410) of the third adhesive layer 315 is greater than the elastic modulus of the second sub-portion 423 (420) of the third adhesive layer 315.

[0054] By using multiple adhesive layers to provide multi-layer reinforcement, the rigidity of the lower bezel area of ​​the display module 100 is further improved, and the reverse acting force of the base film layer away from the light-emitting side against the film layer of the display panel 200 during bending is reduced, the risk of film layer breakage failure is reduced, and the display effect is improved.

[0055] In some embodiments, the elastic modulus of the first sub-portion 411 (410) of the first adhesive layer 311 is greater than the elastic modulus of the first sub-portion 412 (410) of the second adhesive layer 313, and the elastic modulus of the first sub-portion 412 (410) of the second adhesive layer 313 is greater than the elastic modulus of the first sub-portion 413 (410) of the third adhesive layer 315.

[0056] Comparing the first adhesive layer 311, the second adhesive layer 313, and the third adhesive layer 315, the first adhesive layer 311 is closer to the display function unit 210, and the elastic modulus of the adhesive layer closer to the display function unit 210 is optimized. The closer to the display function unit 210, the greater the elastic modulus of the first sub-part 410 corresponding to the adhesive layer. The increased elastic modulus can act more directly on the display panel 200, so as to more directly reduce the reverse acting force of the base film layer away from the light-emitting side on the film layer of the display panel 200 during bending, reduce the risk of breakage failure of the film layer, and improve the display effect.

[0057] In some embodiments, referring to FIG. 2 , a thickness of the first sub-portion 411 (410) of the first adhesive layer 311 is greater than a thickness of the first sub-portion 412 (410) of the second adhesive layer 313, a thickness of the first sub-portion 412 (410) of the second adhesive layer 313 is greater than a thickness of the first sub-portion 413 (410) of the third adhesive layer 315, and the sum of the thicknesses of the first sub-portion 411 (410) of the first adhesive layer 311, the first sub-portion 412 (410) of the second adhesive layer 313, and the first sub-portion 413 (410) of the third adhesive layer 315 is equal to the sum of the thicknesses of the second sub-portion 421 (420) of the first adhesive layer 311, the second sub-portion 422 (420) of the second adhesive layer 313, and the second sub-portion 423 (420) of the third adhesive layer 315.

[0058] The closer to the display panel 200, the greater the thickness of the first sub-part 410 corresponding to the adhesive layer, and the greater the elastic modulus of the first sub-part 410 corresponding to the adhesive layer. The increased elastic modulus can act more directly on the display panel 200, so as to more directly reduce the reverse acting force of the base film layer away from the light-emitting side on the film layer of the display panel 200 during bending, reduce the risk of film layer breakage failure, and improve the display effect. In addition, the thicknesses of the three first sub-parts 410 are equal to the thicknesses of the three corresponding second sub-parts 420, and the thicknesses of the corresponding adhesive layers in the first bezel area 202 and the corresponding adhesive layers in the display area 201 are kept unchanged, so as to avoid steps and ensure the flatness of the film layer.

[0059] In some embodiments, referring to FIG. 2 , the first sub-portion 411 (410) of the first adhesive layer 311 includes a first end 4111 away from the display area, the first end 4111 protruding from a corresponding end of the first backplate layer 312, an orthogonal projection of the first sub-portion 412 (410) of the second adhesive layer 313 onto the first backplate layer 312 is located within the first backplate layer 312, an orthogonal projection of the first sub-portion 412 (410) of the second adhesive layer 313 onto the light-shielding buffer layer 314 is located within the light-shielding buffer layer 314, an orthogonal projection of the first sub-portion 413 (410) of the third adhesive layer 315 onto the light-shielding buffer layer 314 is located within the light-shielding buffer layer 314, and an orthogonal projection of the first sub-portion 413 (410) of the third adhesive layer 315 onto the light-shielding buffer layer 314 is located within the light-shielding buffer layer 314. 3 Adhesive layer 31 5 The first sub-portion 41 3 The orthogonal projection of ( 410 ) is located within the support functional layer 316 .

[0060] The first end 4111 protrudes from the corresponding end of the first backplate layer 312, and the first adhesive layer 311 can be used to act as a supporting buffer for the display function portion 210 and the folding portion 220 of the display panel 200, so that when the folding portion 220 is folded, the folding stress applied to the folding portion 220 is alleviated and the folding damage to the folding portion 220 is reduced.

[0061] The ends of the first sub-portion 412 (410) of the second adhesive layer 313 and the first sub-portion 413 (410) of the third adhesive layer 315 away from the display area are configured to shrink inward, thereby reducing the risk of the adhesive layer being exposed due to misalignment of the membrane layer during folding of the display module, or the risk of the adhesive layer being exposed due to tolerances during manufacturing.

[0062] In some embodiments, referring to FIG. 3, the first adhesive layer 311 is provided with a first sub-gap portion 431 (430) located between the corresponding first sub-portion 411 (410) and the corresponding second sub-portion 421 (420), the second adhesive layer 313 is provided with a second sub-gap portion 432 (430) located between the corresponding first sub-portion 412 (410) and the corresponding second sub-portion 422 (420), and the third adhesive layer is provided with a third sub-gap portion 433 (430) located between the corresponding first sub-portion 413 (410) and the corresponding second sub-portion 423 (420), and the width of the first sub-gap portion 431 (430) is greater than or equal to the width of the second sub-gap portion 432 (430), and the width of the second sub-gap portion 432 (430) is greater than or equal to the width of the third sub-gap portion 433 (430).

[0063] Generally, in order to protect the display panel 200, the display module 100 is of an inward folding type, so that the folding radius of the first adhesive layer 311 is smaller than that of the second adhesive layer 313, which is smaller than that of the third adhesive layer 315. The smaller the folding radius or the larger the thickness of the film layer, the larger the misalignment of the film layer. Since the gap portion 430 includes the first sub-gap portion 431 (430), the second sub-gap portion 432 (430) and the third sub-gap portion 433 (430), the size of the gap for accommodating the folded and misaligned film layer is optimized, which makes it easier to accommodate the misaligned film layer, avoids extrusion deformation between the film layers, and ensures the display effect of the display module.

[0064] In some embodiments, the orthogonal projection of the first sub-gap portion 431 (430) onto the display function portion 210, the orthogonal projection of the second sub-gap portion 432 (430) onto the display function portion 210, and the orthogonal projection of the third sub-gap portion 433 (430) onto the display function portion 210 have overlapping areas.

[0065] The overlapping area in the gap helps to release bending stress, and the more concentrated location of each first sub-part 410 with high elastic modulus helps to concentrate the rigidity of the lower bezel area of ​​the display module 100, thereby reducing the reverse acting force of the base film layer on the side away from the light-emitting side against the film layer of the display panel 200 during bending, reducing the risk of breakage of the film layer, and improving the display effect.

[0066] In some embodiments, referring to FIG. 2, the display module 100 further includes a polarizing layer 510 located on the side of the display function portion 210 away from the bonding portion 230, the polarizing layer 510 being located within the display area 201 and the first bezel area 202, and the orthogonal projection of the polarizing layer 510 onto the display function portion 210 and the orthogonal projection of the first sub-portion 410 of at least one of the adhesive layers onto the display function portion 210 have an overlapping area.

[0067] In the cross-sectional view, the polarizing layer 510 presses a portion of the first sub-part 410, thereby reducing the reaction force of the film layer between the polarizing layer 510 and the first sub-part 410 against the display panel 200, and a portion of the reaction force acts on the polarizing layer 510, thereby reducing the risk of breakage of the film layer and improving the display effect.

[0068] In some embodiments, referring to FIG. 2, the display module 100 further includes a protective layer 600 located on a side of the folding portion 220 away from the display area 201 and on a side of the display function portion 210 away from the bonding portion 230, wherein a normal projection of the protective layer 600 onto the display function portion 210 and a normal projection of the first sub-portion 410 of at least one of the adhesive layers onto the display function portion 210 have an overlapping area, and the protective layer 600 and the polarizing layer 510 are spaced apart.

[0069] The protective layer 600 is used to protect the bending portion 220 of the display panel 200, and also has a direct traction force on the display panel 200 during folding of the bending portion 220. In a cross-sectional view, the protective layer 600 presses a part of the first sub-part 410, thereby reducing the reaction force of the film layer between the protective layer 600 and the first sub-part 410 against the display panel 200, and part of the reaction force acts on the protective layer 600, thereby reducing the risk of breakage of the film layer and improving the display effect; the protective layer 600 and the polarizing layer 510 are spaced apart, thereby reducing the risk of damage due to contact between the protective layer 600 and the polarizing layer 510 when the display module 100 is folded.

[0070] In some embodiments, the protective layer may be a protective material such as a UV curable adhesive.

[0071] In some embodiments, referring to FIG. 2, the display module 100 further includes a polarizing layer 510, an ultra-thin glass 520 located on a side of the polarizing layer 510 away from the display function unit 210, and a window cover 530 located on a side of the ultra-thin glass 520 away from the display function unit 210.

[0072] In some embodiments, the shielding portion 440 may be located between the ultra-thin glass 520 and the window covering 530 .

[0073] In some embodiments, the elastic modulus of the first sub-portion 410 is greater than or equal to 20 MPa.

[0074] Generally, the elastic modulus of the adhesive layer is 0.5 MPa to 3 MPa, which does not have a significant effect on reducing the reaction force of the panel body. By making the elastic modulus of the first sub-part 410 20 MPa or more, the reverse acting force of the base film layer away from the light emission side against the film layer of the display panel 200 can be effectively reduced, the risk of breakage of the film layer can be reduced, and the display effect can be improved.

[0075] In some embodiments, the elastic modulus of the first sub-part 410 is preferably 20 MPa to 50 MPa. The first sub-part 410 also needs to have an adhesive function, and the higher the elastic modulus, the lower the adhesive ability, so the elastic modulus of the first sub-part 410 should not exceed 50 MPa.

[0076] In some embodiments, the first sub-section 410 and the second sub-section 420 may be the same material, such as an optical adhesive or a pressure-sensitive adhesive, and during fabrication, the elastic modulus is modified through the fabrication process, such that the more air content during fabrication, the lower the material elastic modulus, or a different additive is added to modify the elastic modulus, thereby achieving a greater elastic modulus of the first sub-section 410 than the corresponding second sub-section 420.

[0077] In some embodiments, the first sub-portion 410 and the second sub-portion 420 may be made of different materials, for example, the first sub-portion 410 may be a pressure sensitive adhesive and the second sub-portion 420 may be an optical adhesive, such that the modulus of elasticity of the first sub-portion 410 is greater than the corresponding modulus of elasticity of the second sub-portion 420 because the modulus of elasticity of a typical pressure sensitive adhesive is greater than the modulus of elasticity of an optical adhesive.

[0078] In some embodiments, the second sub-part 420 is a transparent material, and the first sub-part 410 is located in the non-display area 201 and may be a transparent material or an opaque material, which are not specifically limited herein.

[0079] In the present invention, the adhesive layer, which has an elastic modulus that is easy to improve, is reinforced, and the elastic modulus of the first sub-part of the adhesive layer corresponding to the first bezel region is made greater than the elastic modulus of the second sub-part corresponding to the display region, thereby improving the rigidity of the lower bezel region of the display module, and by utilizing the high elastic modulus of the first sub-part during bending, the reverse acting force of the base film layer on the side away from the light emission side against the film layer of the display panel is reduced, thereby reducing the risk of breakage of the film layer of the lower bezel and improving the display effect.

[0080] Referring to FIG. 8, an embodiment of the present invention further provides a display device 10, which includes any one of the above-mentioned display modules 100 and a device body 20, and the display module 100 and the device body 20 are integrated together.

[0081] For a specific structure of the display module 100, please refer to any one of the above embodiments and drawings of the display module 100, and detailed description thereof will be omitted here.

[0082] In this embodiment, the device body 20 may include a middle frame, a frame adhesive, an outer hanging element, etc., and the display device 10 may be a display terminal such as a mobile phone, a tablet, a television, etc., and is not limited thereto.

[0083] The embodiment of the present invention discloses a display module and a display device, the display module includes a display panel and at least one adhesive layer, the display panel includes a display function part, a bonding part, and a folding part, the display module includes a display area and a first bezel area, the at least one adhesive layer includes a first sub-part located in the first bezel area and a second sub-part located in the display area and the first bezel area, and the elastic modulus of the first sub-part is greater than that of the second sub-part. In the present invention, the adhesive layer that is easy to improve the elastic modulus is reinforced, and the elastic modulus of the first sub-part corresponding to the first bezel area of ​​the adhesive layer is made greater than that of the second sub-part corresponding to the display area, thereby improving the rigidity of the lower bezel area of ​​the display module, and thus reducing the reverse acting force of the base film layer on the side away from the light-emitting side against the film layer of the display panel during folding, thereby reducing the risk of breakage failure of the film layer of the lower bezel, and improving the display effect.

[0084] Those skilled in the art can understand that equivalent replacements and modifications are possible based on the technical solutions and inventive concepts of the present application, and all such modifications and replacements shall fall within the scope of protection of the appended claims of the present application.

Claims

1. a display panel including a display function section, a bonding section provided opposite to the display function section, and a bent section connecting the display function section and the bonding section; At least one adhesive layer provided on a side of the display function unit close to the bonding unit, A display module comprising: a display area corresponding to the display function portion; and a first bezel area located between the display area and the folding portion; at least one of the adhesive layers comprises a first sub-portion located within the first bezel area and a second sub-portion located within the display area and the first bezel area; and the elastic modulus of the first sub-portion is greater than the elastic modulus of the second sub-portion.

2. The display module according to claim 1 , wherein the first sub-portion and the second sub-portion are provided separately, and the adhesive layer has a gap portion located between the first sub-portion and the second sub-portion.

3. The display device further includes a shielding portion located on a side of the display function portion away from the bonding portion, The display module according to claim 2 , wherein an orthogonal projection of the gap onto the display function portion is located within an orthogonal projection of the shielding portion onto the display function portion.

4. The display module according to claim 2 , wherein the gap is located within the first bezel area.

5. the display function unit includes a first adhesive layer provided on a side closer to the bonding portion of the display function unit, a first backplate layer located on a side of the first adhesive layer away from the display function unit, a second adhesive layer located on a side of the first backplate layer away from the display function unit, a light-shielding buffer layer located on a side of the second adhesive layer away from the display function unit, a third adhesive layer located on a side of the light-shielding buffer layer away from the display function unit, and a support function layer located on a side of the third adhesive layer away from the display function unit, 2. The display module of claim 1, wherein the elastic modulus of the first sub-portion of the first adhesive layer is greater than the elastic modulus of the first sub-portion of the second adhesive layer, and the elastic modulus of the first sub-portion of the second adhesive layer is greater than the elastic modulus of the first sub-portion of the third adhesive layer.

6. a thickness of the first sub-portion of the first adhesive layer is greater than a thickness of the first sub-portion of the second adhesive layer, and a thickness of the first sub-portion of the second adhesive layer is greater than a thickness of the first sub-portion of the third adhesive layer; 6. The display module of claim 5, wherein a sum of thicknesses of the first sub-portion of the first adhesive layer, the first sub-portion of the second adhesive layer, and the first sub-portion of the third adhesive layer is equal to a sum of thicknesses of the second sub-portion of the first adhesive layer, the second sub-portion of the second adhesive layer, and the second sub-portion of the third adhesive layer.

7. the first sub-portion of the first adhesive layer includes a first end remote from the display area, the first end protruding from a corresponding end of the first backplate layer; an orthogonal projection of the first sub-portion of the second adhesive layer onto the first backplate layer is located within the first backplate layer, and an orthogonal projection of the first sub-portion of the second adhesive layer onto the light-shielding buffer layer is located within the light-shielding buffer layer; 6. The display module of claim 5, wherein an orthogonal projection of the first sub-portion of the third adhesive layer onto the light-shielding buffer layer is located within the light-shielding buffer layer, and an orthogonal projection of the first sub-portion of the third adhesive layer onto the support functional layer is located within the support functional layer.

8. the first adhesive layer is provided with a first sub-gap portion located between the corresponding first sub-portion and the corresponding second sub-portion, the second adhesive layer is provided with a second sub-gap portion located between the corresponding first sub-portion and the corresponding second sub-portion, and the third adhesive layer is provided with a third sub-gap portion located between the corresponding first sub-portion and the corresponding second sub-portion; The display module of claim 5 , wherein a width of the first sub-gap portion is equal to or greater than a width of the second sub-gap portion, and a width of the second sub-gap portion is equal to or greater than a width of the third sub-gap portion.

9. The display module of claim 8 , wherein an orthogonal projection of the first sub-gap onto the display function unit, an orthogonal projection of the second sub-gap onto the display function unit, and an orthogonal projection of the third sub-gap onto the display function unit have an overlapping area.

10. The display module according to claim 5 , wherein a bending radius of the first adhesive layer is smaller than a bending radius of the second adhesive layer, and a bending radius of the second adhesive layer is smaller than a bending radius of the third adhesive layer.

11. The display device further includes a polarizing layer located on a side of the display function section away from the bonding section, 6. The display module of claim 5, wherein the polarizing layer is located within the display area and the first bezel area, and a normal projection of the polarizing layer onto the display function section and a normal projection of at least one of the first sub-sections of the adhesive layer onto the display function section have an overlapping area.

12. a protective layer located on a side of the bent portion away from the display area and on a side of the display function portion away from the bonding portion; The display module according to claim 11 , wherein an end of the protective layer closer to the polarizing layer is provided within the first bezel region, and the protective layer and the polarizing layer are provided with a gap therebetween.

13. 12. The display module of claim 11, further comprising: an ultra-thin glass positioned on a side of the polarizing layer away from the display function; and a window cover positioned on a side of the ultra-thin glass away from the display function.

14. a width of the gap of the adhesive layer in a direction from the bent portion to a center of the display function portion is a first width, a thickness between a surface of the support functional layer away from the window covering and a surface of the window covering away from the support functional layer is a first thickness; The display module of claim 13, wherein the first width is between 50% and 150% of the first thickness.

15. The display module according to claim 1 , wherein the first sub-portion has an elastic modulus of 20 MPa or more.

16. The display module of claim 1 , wherein the first sub-portion is a pressure sensitive adhesive and the second sub-portion is an optical adhesive.

17. A display device comprising a device main body and a display module described in any one of claims 1 to 16, wherein the display module and the device main body are integrated.

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