Anti-dazzle cover plate and display device

The anti-glare coating on display panels is stabilized by a silicon-based underlayer and protective layer, addressing detachment and wear issues, enhancing durability and reducing glare.

CN223108479UActive Publication Date: 2025-07-15CHONGQING LAIBAO TECH
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Patent Information

Application Number
CN202422108609.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-29
Publication Date
2025-07-15
Estimated Expiration
2034-08-29

AI Technical Summary

Technical Problem

The anti-glare coating in existing display panels is prone to fall off and has poor friction resistance.

Method used

A base layer is provided between the anti-glare coating and the glass substrate, and a protective layer is provided on the side of the anti-glare coating facing away from the glass substrate. The base layer and the protective layer are respectively composed of silicon-containing compound materials to improve the binding ability of the anti-glare coating to the glass substrate and to protect the anti-glare coating from wear.

Benefits of technology

Effectively prevent the anti-glare coating from falling off the glass substrate, improve the friction resistance of the display device and improve the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an anti-dazzle cover plate and display equipment, the anti-dazzle cover plate comprises a glass substrate, a substrate layer, an anti-dazzle coating and a protective layer, the substrate layer is arranged on the surface of the glass substrate, and the substrate layer is a silicon-containing compound material layer; the anti-dazzle coating is arranged on the substrate layer, the substrate layer is connected with the anti-dazzle coating and the glass substrate, the anti-dazzle coating comprises at least one diffuse reflection surface, and the diffuse reflection surface and the glass substrate are arranged in a stacked mode; the protective layer is arranged on the side, away from the glass substrate, of the anti-dazzle coating in a stacked mode. The anti-dazzle cover plate has the advantage of being good in wear-resisting effect.
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Description

Technical Field

[0001] This application belongs to the field of display technology. More specifically, it relates to an anti-glare cover plate and a display device. Background Art

[0002] In a display device, due to the disordered microstructures converging and diverging the screen light in a disordered manner, the light intensity of the screen becomes disorderly distributed in space, resulting in uncomfortable bright and dark alternating points on the screen, which are called flash points. In the related art, an anti-glare coating is arranged on the display panel to weaken the flash point phenomenon. However, the anti-glare coating in the display panel in the related art is prone to peeling off, and the display panel has poor friction resistance. Summary of the Utility Model

[0003] The purpose of the embodiments of this application is to provide an anti-glare cover plate and a display device, so as to solve the technical problems in the prior art that the anti-glare coating in the display panel is prone to peeling off and the display panel has poor friction resistance.

[0004] In a first aspect, this application provides an anti-glare cover plate, which includes a glass substrate; a base layer provided on the surface of the glass substrate, and the base layer is a silicon-containing compound material layer; an anti-glare coating provided on the base layer, the base layer connecting the anti-glare coating and the glass substrate, the anti-glare coating including at least one diffuse reflection surface, and the diffuse reflection surface being stacked with the glass substrate; a protective layer stacked on the side of the anti-glare coating facing away from the glass substrate.

[0005] The beneficial effect of the glass substrate provided in this application is as follows: Compared with the prior art, on the one hand, the anti-glare cover plate provided in this application is provided with a base layer between the anti-glare coating and the glass substrate, and the base layer connects the anti-glare coating and the glass substrate to improve the bonding ability between the anti-glare coating and the glass substrate, thereby reducing the risk of the anti-glare coating peeling off from the glass substrate, so that the anti-glare cover plate provided in this application has the advantage that the anti-glare coating is not easily peeled off from the glass substrate; on the other hand, the anti-glare cover plate provided in this application is provided with a protective layer on the side of the anti-glare coating facing away from the glass substrate, and the protective layer can prevent the anti-glare coating from being worn, so that the anti-glare cover plate provided in this application has the advantage of being friction-resistant.

[0006] Optionally, the thickness dimension of the base layer is 2nm - 10nm; the material of the base layer includes one of SiO2, Si3N4, and SiON.

[0007] Optionally, there are multiple protective layers, and the multiple protective layers are stacked along the thickness direction of the glass substrate, and the sum of the thickness dimensions of the multiple protective layers is 1nm - 50nm.

[0008] Optionally, the Mohs hardness of the protective layer is greater than or equal to 5.

[0009] Optionally, the protective layer is a silicon-containing organic compound or an inorganic silicon compound;

[0010] Optionally, the protective layer is a diamond-like carbon film or a carbon target.

[0011] Optionally, the anti-glare cover plate further includes an anti-fingerprint layer, and the anti-fingerprint layer is arranged on a side of the protective layer away from the anti-glare coating.

[0012] Optionally, the anti-glare coating comprises a first anti-glare coating and a second anti-glare coating, and the first anti-glare coating and the second anti-glare coating are respectively disposed on two sides of the glass substrate in a thickness direction;

[0013] The base layer includes a first base layer and a second base layer. The first base layer is stacked between the first anti-glare coating and the glass substrate, and the second base layer is stacked between the second anti-glare coating and the glass substrate.

[0014] Optionally, there are a plurality of the first anti-glare coating layers, and the plurality of the first anti-glare coating layers are stacked;

[0015] And / or, there are a plurality of the second anti-glare coating layers, and the plurality of the second anti-glare coating layers are stacked.

[0016] In a second aspect, the present application further proposes a display device, comprising an anti-glare cover plate and a display panel, wherein the anti-glare cover plate is the anti-glare cover plate described in any of the above embodiments, and the anti-glare cover plate is stacked on the light emitting side of the display panel.

[0017] It can be understood that the beneficial effects of the second aspect mentioned above can be found in the relevant description of the first aspect mentioned above, and will not be repeated here. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative labor.

[0019] Figure 1 A schematic diagram of the structure of the anti-glare cover provided in Example 1 of the present application;

[0020] Figure 2 A schematic diagram of the structure of the anti-glare cover provided in Example 2 of the present application;

[0021] Figure 3 This is a schematic structural diagram of the anti-glare cover plate provided in Embodiment 3 of the present application;

[0022] Figure 4 This is a schematic structural diagram of the anti-glare cover plate provided in Embodiment 4 of the present application;

[0023] Figure 5 This is a schematic structural diagram of the display device provided in the embodiment of the present application.

[0024] Among them, the reference numerals in the figure are as follows:

[0025] 100, anti-glare cover plate;

[0026] 10, glass substrate; 11, first surface; 12, second surface;

[0027] 20, base layer; 21, first base layer; 22, second base layer;

[0028] 30, anti-glare coating; 31, diffuse reflection surface; 301, first anti-glare coating; 302, second anti-glare coating;

[0029] 40, protective layer;

[0030] 50, anti-fingerprint layer;

[0031] 200, display panel. Detailed implementation manners

[0032] In order to make the technical problems, technical solutions and beneficial effects to be solved by the present application clearer, the present application will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and are not used to limit the present application.

[0033] It should be noted that when an element is referred to as being "fixed to" or "disposed on" another element, it can be directly on the other element or indirectly on the other element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or indirectly connected to the other element.

[0034] It should be understood that the orientation or positional relationship indicated by the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present application.

[0035] In addition, the terms "first" and "second" are only used for descriptive purposes and should not be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of this application, "a plurality of" means two or more unless otherwise specifically defined.

[0036] The anti-glare cover plate provided by this application can be applied to the field of notebook computer displays to improve the performance of the notebook computer display against keycap friction.

[0037] The following Figure 1 describes the anti-glare cover plate 100 provided by this application.

[0038] The anti-glare cover plate 100 includes a glass substrate 10, an anti-glare coating 30, a base layer 20, and a protective layer 40. The base layer 20 is disposed on the surface of the glass substrate 10, and the base layer 20 is a silicon-containing compound material layer; the anti-glare coating 30 is disposed on the base layer 20, the base layer 20 connects the anti-glare coating 30 and the glass substrate 10, the anti-glare coating 30 includes at least one diffused reflection surface 31, and the diffused reflection surface 31 is arranged in a stacked manner with the glass substrate 10; the protective layer 40 is stacked on the side of the anti-glare coating 30 facing away from the glass substrate 10.

[0039] As Figure 1 shown, the glass substrate 10 includes a first surface 11 and a second surface 12 that are oppositely arranged. The first surface 11 and the second surface 12 both extend orthogonally to the x direction in the figure, and the first surface 11 and the second surface 12 are spaced apart in the x direction in the figure, that is, the thickness direction of the glass substrate 10 extends in the x direction in the figure.

[0040] The base layer 20 is formed on the first surface 11 by at least one of coating forming, spraying forming, and laminating forming. The base layer 20 and the glass substrate 10 contain the same elements so that the base layer 20 and the glass substrate 10 have good bonding ability.

[0041] The anti-glare coating 30 is disposed on the base layer 20, the base layer 20 connects the anti-glare coating 30 and the glass substrate 10, the anti-glare coating 30 includes at least one diffused reflection surface 31, and the diffused reflection surface 31 is arranged in a stacked manner with the glass substrate 10.

[0042] As Figure 1As shown, the anti-glare coating 30 can be deposited on the side of the base layer 20 facing away from the glass substrate 10 by spraying and high-temperature baking. In some embodiments, a diffuse reflection surface 31 is formed on the side of the anti-glare coating 30 facing away from the base layer 20. When light irradiates the diffuse reflection surface 31 from the side of the anti-glare coating 30 facing away from the base layer 20, the light forms diffuse reflection on the diffuse reflection surface 31, thereby reducing the interference of the reflected light to the human eye.

[0043] In other embodiments, diffuse reflection coatings are formed on both sides of the anti-glare coating 30 along the x direction in the figure to increase the diffuse reflection divergence of the anti-glare coating 30 to incident light, thereby improving the anti-glare effect of the anti-glare cover plate 100 provided in the present application.

[0044] The protective layer 40 is stacked on the side of the anti-glare coating 30 facing away from the glass substrate 10.

[0045] As Figure 1 shown, the protective layer 40 covers the side of the anti-glare coating 30 facing away from the glass substrate 10 to protect the anti-glare coating 30 and prevent the anti-glare coating 30 from being rubbed on the side facing away from the glass substrate 10. On the one hand, the protective layer 40 can reduce the risk of damage to the anti-glare coating 30 and its surface diffuse reflection surface 31. On the other hand, the protective layer 40 also reduces the risk of the anti-glare coating 30 peeling off from the base layer 20.

[0046] The beneficial effects of the glass substrate 10 provided in the present application are as follows: Compared with the prior art, on the one hand, a base layer 20 is provided between the anti-glare coating 30 and the glass substrate 10 in the anti-glare cover plate 100 provided in the present application. The glass substrate 10 is made of glass. The glass substrate 10 has surface tension to make the surface of the glass substrate 10 smooth, and the bonding force between glass molecules is very strong and the molecular spacing is small, making it difficult for the anti-glare coating 30 to adhere to the surface of the glass substrate 10. By connecting the anti-glare coating 30 and the glass substrate 10 through the base layer 20, the anti-glare coating 30 with less Si element content is connected to the glass substrate 10 through the base layer 20, improving the bonding ability between the anti-glare coating 30 and the glass substrate 10, thereby preventing the anti-glare coating 30 from peeling off from the glass substrate 10. On the other hand, the anti-glare cover plate 100 provided in the present application is provided with a protective layer 40 on the side of the anti-glare coating 30 facing away from the glass substrate 10. The protective layer 40 can prevent the anti-glare coating 30 from being worn, so that the anti-glare cover plate 100 provided in the present application has the advantage that the anti-glare coating 30 is not easily peeled off from the glass substrate 10.

[0047] In some embodiments provided in the present application, the thickness dimension of the base layer 20 is 2nm - 10nm.

[0048] As Figure 1As shown, the thickness dimension of the base layer 20 is the interval dimension between the two sides of the base layer 20 in the x direction in the figure. The thickness dimension of the base layer 20 can be any value between 2 nm and 10 nm, such as 2 nm, 4 nm, 7.5 nm, 9 nm, 10 nm, etc.

[0049] In some embodiments, such as Figure 1 As shown, the thickness of the base layer 20 is the same at any position in the direction orthogonal to the x direction in the figure, so that the side of the anti-glare coating 30 facing the base layer 20 is smooth.

[0050] In other embodiments, the thickness of the base layer 20 is different at any position in the direction orthogonal to the x direction in the figure, and the thickness of any position of the base layer 20 is within the range of 2 nm to 10 nm.

[0051] Thus, on the one hand, the thickness dimension of the base layer 20 is greater than 2 nm, avoiding the failure of the base layer 20 to have perforations, so that the base layer 20 is completely laminated between the glass substrate 10 and the anti-glare coating 30, to improve the bonding ability between the glass substrate 10 and the anti-glare coating 30. On the other hand, the thickness dimension of the base layer 20 is less than 10 nm, reducing the thickness of the anti-glare cover plate 100 provided in this application.

[0052] In some embodiments provided in this application, the material of the base layer 20 is at least one of SiO2, Si3N4, and SiON.

[0053] In some embodiments, the material of the base layer 20 is any one of SiO2, Si3N4, and SiON.

[0054] In other embodiments, the material of the base layer 20 is a mixture of at least two of SiO2, Si3N4, and SiON.

[0055] The base layer 20 contains Si elements, so that the base layer 20 and the glass substrate 10 have the same element to improve the bonding ability between the base layer 20 and the glass substrate 10, thereby improving the bonding ability between the anti-glare coating 30 on the base layer 20 and the glass substrate 10, and avoiding the anti-glare coating 30 from peeling off the glass substrate 10.

[0056] In some embodiments provided in this application, there are multiple protective layers 40, and the multiple protective layers 40 are stacked, and the sum of the thickness dimensions of the multiple protective layers 40 is 1 nm to 50 nm.

[0057] Such as Figure 1As shown, a plurality of protective layers 40 are stacked and arranged in the x direction in the figure. The sum of the thickness dimensions of the plurality of protective layers 40 is the distance between one end and the other end of the plurality of protective layers 40 in the x direction in the figure. The sum of the thickness dimensions of the plurality of protective layers 40 can be any value between 1 nm and 50 nm, such as 2.5 nm, 20 nm, 23 nm, 40 nm, 50 nm, etc.

[0058] Therefore, a plurality of protective layers 40 are stacked and arranged in the x direction in the figure. On the one hand, when processing the protective layer 40, repeating the processing process can avoid the anti-glare coating 30 being exposed due to perforation during the processing of a single protective layer 40. On the other hand, when the protective layer 40 is rubbed, the multiple protective layers 40 peel off layer by layer, thereby increasing the service life of the protective layer 40, and further making the anti-glare cover plate 100 provided in the present application have the advantage of better wear resistance.

[0059] In some embodiments provided by the present application, the Mohs hardness of the protective layer 40 is greater than or equal to 5.

[0060] The Mohs hardness of the protective layer 40 can be 5 or a value greater than 5, so that the protective layer 40 has a better protection effect on the anti-glare coating 30. The anti-glare cover plate 100 provided in the present application not only has a better effect of preventing keycap friction, but also has a better effect of resisting steel wool friction.

[0061] In some embodiments provided by the present application, the material of the anti-glare coating 30 contains a silanol group, so that the anti-glare coating 30, the base layer 20 and the glass substrate 10 all contain Si elements, thereby forming a plasticized Si bond between the anti-glare coating 30, the base layer 20 and the glass substrate 10, improving the bonding ability between the anti-glare coating 30 and the base layer 20 and the bonding ability between the base layer 20 and the glass substrate 10.

[0062] In some embodiments provided by the present application, the protective layer 40 contains at least one of a silicon-containing organic compound and an inorganic silicon compound.

[0063] The silicon-containing organic compound contained in the protective layer 40 can be silicone resin, silicone grease, sulfurized silicone rubber, silane coupling agent, methyl silicone oil, etc. and their composites, etc. The inorganic silicon compound contained in the protective layer 40 can be SiO2, Si3N4, SiON, etc.

[0064] Accordingly, the protective layer 40 contains Si elements, so that the protective layer 40, the anti-glare coating 30, the base layer 20, and the glass substrate 10 all contain Si elements. The Si-based elements penetrate the anti-glare cover plate 100 along the x direction in the figure, thereby forming a coherent Si bond combination in the protective layer 40, the anti-glare coating 30, the base layer 20, and the glass substrate 10, so as to improve the bonding ability between any two adjacent ones of the protective layer 40, the anti-glare coating 30, the base layer 20, and the glass substrate 10, thereby preventing any two adjacent ones of the protective layer 40, the anti-glare coating 30, the base layer 20, and the glass substrate 10 from separating, and enabling the anti-glare cover plate 100 provided by the present application to have the advantage that the anti-glare coating 30 is not easily detached from the glass substrate 10.

[0065] In some embodiments provided by the present application, the protective layer 40 is a diamond-like carbon film or a carbon target. The protective layer 40 can be a diamond-like carbon film or a carbon target doped with at least one of a silicon-containing organic compound and an inorganic silicon-containing compound, so as to utilize the high hardness characteristics of the diamond-like carbon film or the carbon target to improve the hardness of the protective layer 40, so that the protective layer 40 has a good protective effect on the anti-glare coating 30. The anti-glare cover plate 100 provided by the present application not only has a good anti-keycap friction effect, but also has a good anti-steel wool friction effect.

[0066] In some embodiments provided by the present application, the anti-glare cover plate 100 further includes an anti-fingerprint layer 50, and the anti-fingerprint layer 50 is disposed on the side of the protective layer 40 facing away from the anti-glare coating 30.

[0067] As Figure 1 shown, the anti-fingerprint layer 50 is coated on the surface of the side of the protective layer 40 facing away from the anti-glare coating 30 to reduce fingerprints remaining on the surface of the anti-glare cover plate 100.

[0068] In some embodiments, the surface of the side of the anti-fingerprint layer 50 facing away from the protective layer 40 has microstructures to refract and scatter the centennial light, so that fingerprints are not easily attached to the surface of the anti-fingerprint layer 50, or are not easily seen even if attached, so as to achieve the anti-fingerprint effect.

[0069] In other embodiments, the surface of the side of the anti-fingerprint layer 50 facing away from the protective layer 40 has a low surface tension, which can reduce the retention of grease on the surface of the anti-fingerprint layer 50, thereby achieving the anti-fingerprint effect.

[0070] In other embodiments, the surface of the side of the anti-fingerprint layer 50 facing away from the protective layer 40 has a low coefficient of friction, so that it can reduce the grease left on the surface of the anti-fingerprint layer 50 due to friction when the skin touches the anti-fingerprint layer 50, and further achieve the anti-fingerprint effect.

[0071] In some embodiments provided by the present application, the anti-glare coating 30 includes a first anti-glare coating 301 and a second anti-glare coating 302, and the first anti-glare coating 301 and the second anti-glare coating 302 are respectively disposed on both sides of the glass substrate 10 in the thickness direction x.

[0072] The base layer 20 includes a first base layer 21 and a second base layer 22. The first base layer 21 is laminated between the first anti-glare coating 301 and the glass substrate 10, and the second base layer 22 is laminated between the second anti-glare coating 302 and the glass substrate 10.

[0073] As Figure 2 shown, the first anti-glare coating 301 is disposed on one side of the glass substrate 10 facing the first surface 11, and the second anti-glare coating 302 is disposed on one side of the glass substrate 10 facing the second surface 12. Diffuse reflection surfaces 31 are provided in both the first anti-glare coating 301 and the second anti-glare coating 302 to reduce the interference of reflected light on the human eye.

[0074] When the light source and the human eye are respectively on both sides of the anti-glare cover plate 100 in the thickness direction x, the light is easily aggregated to form flash points after diffuse reflection on the diffuse reflection surface 31, which affects the user experience. By providing the anti-glare coatings 30 on both sides of the glass substrate 10 in the thickness direction x, the degree of chaos of the light beam passing through the anti-glare cover plate 100 can be increased, and the light aggregation to form flash points can be avoided.

[0075] In some embodiments provided by the present application, there are multiple first anti-glare coatings 301, and the multiple first anti-glare coatings 301 are stacked;

[0076] In some embodiments provided by the present application, there are multiple second anti-glare coatings 302, and the multiple second anti-glare coatings 302 are stacked.

[0077] In some embodiments, there are multiple first anti-glare coatings 301 and multiple second anti-glare coatings 302. The multiple first anti-glare coatings 301 are stacked along the thickness direction x of the glass substrate 10 on one side of the glass substrate 10 facing the first surface 11, and the multiple second anti-glare coatings 302 are stacked along the thickness direction x of the glass substrate 10 on one side of the glass substrate 10 facing the second surface 12.

[0078] Thus, after the light is scattered by the multiple first anti-glare coatings 301 and then scattered by the multiple second anti-glare coatings 302, the light aggregation is reduced, thereby reducing the probability of the appearance of flash points, so that the anti-glare cover plate 100 provided by the present application has the advantage of better anti-glare effect.

[0079] In other embodiments, as Figure 4As shown, there is a single first anti-glare coating 301 and a plurality of second anti-glare coatings 302. The plurality of second anti-glare coatings 302 are stacked along the thickness direction x of the glass substrate 10 on the side of the glass substrate 10 facing the second surface 12. The first anti-glare coating 301 is located on the side of the glass substrate 10 facing the light source, thereby improving the flatness of the anti-glare cover plate 100 provided in the present application on the side facing the light source.

[0080] In other embodiments, Figure 3 As shown, there are multiple first anti-glare coatings 301 and a single second anti-glare coating 302. The multiple first anti-glare coatings 301 are stacked along the thickness direction x of the glass substrate 10 on the side of the glass substrate 10 facing the first surface 11, and the second anti-glare coating 302 is located on the side of the glass substrate 10 away from the light source, thereby preventing the multiple first anti-glare coatings 301 from being worn.

[0081] The following is combined with Figure 5 The display device proposed in this application is described.

[0082] The display device includes an anti-glare cover plate 100 and a display panel 200 . The anti-glare cover plate 100 is the anti-glare cover plate 100 in any of the above embodiments. The anti-glare cover plate 100 is stacked on the light emitting side of the display panel 200 .

[0083] like Figure 5 As shown, the anti-glare cover plate 100 provided in the present application has anti-glare performance and the anti-glare cover plate 100 provided in the present application has the advantages of good wear resistance and the anti-glare coating 30 is not easy to fall off from the glass substrate 10. On the one hand, the display device provided in the present application can reduce reflective glare during use and improve user experience. On the other hand, the anti-glare coating 30 of the display device provided in the present application is not easy to fall off after the anti-glare cover plate is rubbed by the keyboard cap, thereby improving the reliability of the anti-glare performance of the display device.

[0084] The display device may be a laptop computer. When the display device is closed, the keyboard cap may abut against the surface of the anti-glare cover plate 100. The anti-glare cover plate 100 has the advantage of being friction-resistant, thereby reducing the risk of the anti-glare coating 30 in the anti-glare cover plate 100 being worn by the keyboard cap. The anti-glare cover plate 100 has the advantage that the anti-glare coating 30 is not easy to fall off, thereby reducing the risk of the anti-glare coating 30 falling off from the glass substrate 10.

[0085] The display device may also be a portable electronic device. The use of the anti-glare cover plate 100 provided in the present application can reduce the risk of the anti-glare coating 30 of the display device falling off, thereby improving the user experience by improving the reliability of the anti-glare performance of the display device.

[0086] The above are only the preferred embodiments of the present application and are not intended to limit the present application. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present application shall be included within the protection scope of the present application.

Claims

1. An anti-glare cover plate, characterized in that, Comprising: A glass substrate; A base layer provided on the surface of the glass substrate, the base layer being a silicon-containing compound material layer; An anti-glare coating provided on the base layer, the base layer connecting the anti-glare coating and the glass substrate, the anti-glare coating including at least one diffuse reflection surface, the diffuse reflection surface being stacked with the glass substrate; A protective layer stacked on the side of the anti-glare coating away from the glass substrate.

2. The anti-glare cover plate according to claim 1, wherein: The thickness dimension of the base layer is 2nm - 10nm; the material of the base layer includes one of SiO2, Si3N4, and SiON.

3. The anti-glare cover plate according to claim 1, characterized in that: There are multiple protective layers, and the multiple protective layers are stacked in the thickness direction of the glass substrate, and the sum of the thickness dimensions of the multiple protective layers is 1nm - 50nm.

4. The anti-glare cover plate according to claim 1, characterized in that: The Mohs hardness of the protective layer is greater than or equal to 5.

5. The anti-glare cover plate according to claim 4, characterized in that: The protective layer is a silicon-containing organic substance or an inorganic silicon compound.

6. The anti-glare cover plate according to claim 4, characterized in that: The protective layer is a diamond-like carbon film or a carbon target.

7. The anti-glare cover plate according to any one of claims 1-6, characterized in that: It further includes an anti-fingerprint layer provided on the side of the protective layer away from the anti-glare coating.

8. The anti-glare cover plate according to any one of claims 1-6, characterized in that: The anti-glare coating includes a first anti-glare coating and a second anti-glare coating, and the first anti-glare coating and the second anti-glare coating are respectively provided on both sides in the thickness direction of the glass substrate; The base layer includes a first base layer and a second base layer, the first base layer is stacked between the first anti-glare coating and the glass substrate, and the second base layer is stacked between the second anti-glare coating and the glass substrate.

9. The anti-glare cover plate according to claim 8, characterized in that: There are multiple first anti-glare coatings, and the multiple first anti-glare coatings are stacked; And / or, there are multiple second anti-glare coatings, and the multiple second anti-glare coatings are stacked.

10. A display device, characterized in that: It includes an anti-glare cover plate and a display panel, the anti-glare cover plate is the anti-glare cover plate according to any one of claims 1 - 9, and the anti-glare cover plate is stacked on the light-emitting side of the display panel.