Laminated glass, panel and household appliance
By introducing a structure design that includes a UV-curable ink layer, a metal material layer, and a filament layer into the coated glass, the problem of low hardness was solved, achieving high hardness and scratch resistance, enhancing the metallic texture and aesthetics, and reducing processing costs.
Patent Information
- Application Number
- CN202520142703.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-21
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2035-01-21
AI Technical Summary
In existing technologies, coated glass has low hardness, making it easy to damage the surface texture under external force, and the processing cost is high.
The structure features a UV-curable ink layer, a metal-containing material layer, and a filament layer. The UV-curable ink layer improves hardness and scratch resistance, while the filament layer creates textured patterns. Combined with an anti-corrosion coating and a touch coating, it enhances protection and aesthetics.
It improves the hardness and scratch resistance of coated glass, enhances its metallic texture and aesthetics, and reduces processing costs.
Smart Images

Figure CN223823510U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of coated glass technology, and more specifically, to a coated glass, a panel, and a household appliance. Background Technology
[0002] Glass, with its high texture, high hardness, high transparency, and ease of cleaning, is increasingly used as an exterior material for products such as smartphones, tablets, and home appliances. Users also have increasingly higher requirements for the appearance of glass panels. While coating the glass surface with a metallic film can give it a metallic look, this method may suffer from problems such as uneven film thickness, poor surface finish, environmental pollution, and high cost.
[0003] Coated glass is a type of glass product made by bonding a substrate glass to a composite film using adhesives. Coated glass not only possesses the advantages of ordinary coated glass, but also allows for customization with various patterns and designs to meet users' personalized decorative needs. Through the design of the film layer structure, coated glass panels can achieve the same appearance as metal panels. The processing technology is simple, efficient, and the manufacturing cost is significantly lower than that of metal panels.
[0004] However, some documents disclose that the metallic-looking glass has a metal layer, a first adhesive layer, and a PET layer stacked sequentially on one side of a PET (Polyethylene Terephthalate) wire-drawn film. After the metal film is attached to the glass surface, it can give the glass a high metallic texture. However, this solution has the drawback that the hardness and scratch resistance of the entire metal film are low, and the surface texture is easily damaged under the action of external force. Utility Model Content
[0005] The present invention aims to solve the problem of low hardness of glass coating.
[0006] The first aspect of this utility model is to provide a coated glass.
[0007] The second aspect of this utility model is to provide a panel.
[0008] The third aspect of this utility model is to provide a household appliance.
[0009] The first aspect of this utility model provides a coated glass comprising: a glass layer; an ultraviolet-curable ink layer disposed on one side of the glass layer; a metal-containing material layer disposed between the glass layer and the ultraviolet-curable ink layer; and a silk layer disposed between the glass layer and the ultraviolet-curable ink layer for forming a textured pattern.
[0010] The coated glass provided in this application includes a glass layer, a UV-curable ink layer, a metal-containing material layer, and a fiber layer. The metal-containing material layer and the fiber layer are disposed between the glass layer and the UV-curable ink layer. Because the UV-curable ink layer has high hardness and scratch resistance, it can provide good protection for the fiber layer and the metal-containing material layer. In addition, the fiber layer can form a brushed texture, thereby improving the metallic texture of the glass and enhancing its aesthetics.
[0011] In some technical solutions, the UV-curable ink layer may optionally include one or a combination of the following: a polyacrylic resin ink layer, an epoxy acrylate ink layer, a polyurethane acrylate ink layer, and a vinyl ether acrylate ink layer.
[0012] In this technical solution, the UV-curable ink layer serves as a hardening layer, enhancing the surface hardness of the film material and improving its scratch resistance. The UV-curable ink layer is formed by curing polyacrylic resin ink, epoxy acrylate ink, polyurethane acrylate ink, and vinyl ether acrylate ink, etc., using UV (ultraviolet) curing.
[0013] In some technical solutions, the coated glass may optionally include an anti-corrosion coating disposed on the side of the UV-curable ink layer away from the glass layer. The anti-corrosion coating may include one or a combination of the following: a polyvinyl chloride resin layer, an epoxy resin layer, a polyurethane resin layer, and an acrylic resin layer.
[0014] In this technical solution, polyvinyl chloride resin layers, epoxy resin layers, polyurethane resin layers, and acrylic resin layers can all be used as anti-corrosion coatings, making the composite film less susceptible to corrosion. Optionally, the transparency of the anti-corrosion coating is greater than or equal to 95%, thus not affecting the aesthetics.
[0015] In some technical solutions, the metal-containing material layer may optionally include: an aluminum-containing polyester layer disposed between the glass layer and the UV-curable ink layer; or a pearlescent polyester layer disposed between the aluminum-containing polyester layer and the glass layer.
[0016] In this technical solution, the aluminum-containing polyester layer and the pearlescent polyester layer serve as metal-containing material layers, giving the glass a better metallic appearance surface. The specific preparation process can be as follows: first, aluminum-containing polyester ink is uniformly brushed onto the filament layer; the aluminum-containing polyester ink layer is dried; then, pearlescent polyester ink is brushed onto the aluminum-containing polyester ink layer; and after drying, the metal-containing material layer is obtained.
[0017] In some technical solutions, the metal material layer may optionally include: a plastic layer disposed between the glass layer and the UV-curable ink layer; and a metal plating layer disposed on the surface of the plastic layer and located between the plastic layer and the UV-curable ink layer, or between the plastic layer and the glass layer.
[0018] In this technical solution, a metal material can also be deposited on the plastic layer, or the metal material can be uniformly deposited on the plastic layer through vacuum evaporation to obtain a metal-containing layer. Of course, the metal-containing layer can also be achieved by inkjet printing, and the color depth and gradation can be changed by adjusting the concentration and density of the ink dots.
[0019] In some technical solutions, the coated glass may optionally include a touch coating disposed on the side of the glass layer away from the silk layer, the touch coating including a silicon-containing coating and / or a fluorine-containing coating.
[0020] In this technical solution, the application of a silicon-containing coating and / or a fluorine-containing coating gives the glass anti-fouling, fingerprint-resistant, and strong hydrophobic properties. For example, the coating can be a silicon or fluorine polymer coating.
[0021] In some technical solutions, optionally, the silk layer is disposed between the metal-containing material layer and the ultraviolet-curable ink layer, and the coated glass further includes: a first adhesive layer disposed between the metal-containing material layer and the glass layer; and a first resin layer disposed between the first adhesive layer and the metal-containing material layer.
[0022] In this technical solution, the metal-containing material layer and the glass layer are connected by a first adhesive layer, which is more efficient than the conventional method of depositing a metal film on the glass surface. Furthermore, a first resin layer is placed between the first adhesive layer and the metal-containing material layer, thus providing some protection for the metal-containing material layer; that is, the first resin layer serves as a backing layer.
[0023] In some technical solutions, the first adhesive layer may optionally include one or a combination of the following: pressure-sensitive adhesive, UV adhesive, and hot melt adhesive.
[0024] In some technical solutions, the first resin layer may optionally include one or a combination of the following: a polyurethane resin layer, an acrylic resin layer, an epoxy resin layer, and a silicone resin layer.
[0025] In some technical solutions, optionally, the filament layer is disposed between the metal-containing material layer and the glass layer, and the coated glass further includes: a polyethylene terephthalate layer disposed between the filament layer and the glass layer; a second adhesive layer disposed between the polyethylene terephthalate layer and the glass layer; and a second resin layer disposed on the side of the metal-containing material layer away from the glass layer.
[0026] In this technical solution, the polyethylene terephthalate (PET) layer provides additional physical protection for the glass layer, preventing damage from minor scratches, impacts, and other external factors. If the glass breaks due to a larger impact, the PET film helps limit the scattering of fragments, reducing the risk of injury. Furthermore, the PET layer and the glass layer are connected by a second adhesive layer, which is more efficient than conventional methods of coating the glass surface. Additionally, a second resin layer is placed on the side of the metal-containing layer away from the glass layer, thus providing some protection for the metal-containing layer; in other words, the second resin layer serves as a backing layer.
[0027] In some technical solutions, the second adhesive layer and the first adhesive layer may optionally have the same or different compositions. Similarly, the second resin layer and the first resin layer may also be the same or different.
[0028] In some technical solutions, optionally, the thickness of the polyethylene terephthalate layer is greater than or equal to 25 μm and less than or equal to 100 μm.
[0029] In this technical solution, the thickness of the polyethylene terephthalate layer is greater than or equal to 25 μm and less than or equal to 100 μm. Optionally, the thickness is greater than or equal to 50 μm and less than or equal to 100 μm, for example, 70 μm or 80 μm. By limiting the thickness of the polyethylene terephthalate layer, the physical properties of the glass substrate can be further guaranteed.
[0030] In some technical solutions, the filament layer may optionally include a PVC (Polyvinyl Chloride Filament Layer) filament layer and / or a PET (Polyethylene Terephthalate Filament Layer) filament layer.
[0031] In this technical solution, the filament layer includes a PVC filament layer and / or a PET filament layer. The PVC filament layer and the PET filament layer, in combination with the metal-containing material layer, can give the glass a higher metallic texture.
[0032] The second aspect of this application provides a panel comprising: coated glass as described in any of the first aspects of this utility model. Since the panel provided by this application comprises coated glass as described in any of the first aspects of this application, it possesses all the beneficial effects of the coated glass described in any of the first aspects of this application.
[0033] The third aspect of this application provides a household appliance, including: coated glass as described in any of the first aspects of this application, or a panel including the second aspect of this application. Since the household appliance provided by this application includes coated glass as described in any of the first aspects of this application, or a panel including the second aspect of this application, it possesses all the beneficial effects of the coated glass described in any of the first aspects of this application.
[0034] Additional aspects and advantages of the present invention will become apparent in the following description or may be learned by practice of the present invention. Attached Figure Description
[0035] The above and / or additional aspects and advantages of embodiments of the present invention will become apparent and readily understood from the description of the embodiments in conjunction with the following drawings, wherein:
[0036] Figure 1 One of the structural schematic diagrams of the coated glass according to an embodiment of the present invention is shown;
[0037] Figure 2 A second schematic diagram of the structure of the coated glass according to an embodiment of the present invention is shown;
[0038] Figure 3 A schematic diagram of the membrane layer structure according to an embodiment of the present invention is shown;
[0039] Figure 4 One of the structural schematic diagrams of the metal material layer of this utility model is shown;
[0040] Figure 5 A second schematic diagram of the structure of the metal material layer according to an embodiment of the present invention is shown;
[0041] Figure 6 A schematic diagram of the panel structure according to an embodiment of the present invention is shown;
[0042] Figure 7 A schematic diagram of the structure of a household appliance according to an embodiment of the present invention is shown.
[0043] in, Figures 1 to 7 The correspondence between the reference numerals and the component names in the attached drawings is as follows:
[0044] 1. Household appliances; 2. Coated glass; 201. Polyethylene terephthalate layer; 202. Silk layer; 203. Metal-containing material layer; 2032. Aluminum-containing polyester layer; 2034. Pearl powder-containing polyester layer; 2036. Plastic layer; 2038. Metal plating layer; 204. Glass layer; 205. UV-curable ink layer; 206. Anti-corrosion coating; 207. First adhesive layer; 208. First resin layer; 209. Touch coating; 210. Second adhesive layer; 211. Second resin layer; 3. Panel. Detailed Implementation
[0045] To better understand the above aspects, features, and advantages of the embodiments of the present invention, the embodiments of the present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.
[0046] Numerous specific details are set forth in the following description in order to provide a full understanding of the embodiments according to the present invention. However, the embodiments according to the present invention may also be implemented in other ways different from those described herein. Therefore, the scope of protection of the embodiments according to the present invention is not limited to the specific embodiments disclosed below.
[0047] like Figure 1 and Figure 3 As shown, the coated glass 2 provided by the first aspect of this utility model includes a glass layer 204, an ultraviolet-curable ink layer 205, a metal-containing material layer 203, and a silk layer 202. The ultraviolet-curable ink layer 205 is disposed on one side of the glass layer 204; the metal-containing material layer 203 is disposed between the glass layer 204 and the ultraviolet-curable ink layer 205; and the silk layer 202 is disposed between the glass layer 204 and the ultraviolet-curable ink layer 205 for forming a textured pattern.
[0048] The coated glass 2 provided in this application includes a glass layer 204, a UV-curable ink layer 205, a metal-containing material layer 203, and a wire layer 202. The metal-containing material layer 203 and the wire layer 202 are disposed between the glass layer 204 and the UV-curable ink layer 205. Because the UV-curable ink layer 205 has high hardness and scratch resistance, it can provide good protection for the wire layer 202 and the metal-containing material layer 203. In addition, the wire layer 202 can form a brushed texture, thereby improving the metallic texture of the glass and enhancing its aesthetics.
[0049] In some technical solutions, the UV-curable ink layer 205 may optionally include one or a combination of the following: a polyacrylic resin ink layer, an epoxy acrylate ink layer, a polyurethane acrylate ink layer, and a vinyl ether acrylate ink layer.
[0050] In this technical solution, the UV-curable ink layer 205 serves as a hardening layer, enhancing the surface hardness of the film material and improving its scratch resistance. The UV-curable ink layer 205 is formed by UV curing of polyacrylic resin ink, epoxy acrylate ink, polyurethane acrylate ink, and vinyl ether acrylate ink, among others.
[0051] In some technical solutions, the coated glass 2 may optionally include an anti-corrosion coating 206 disposed on the side of the UV-curable ink layer 205 away from the glass layer 204. The anti-corrosion coating 206 may include one or a combination of the following: a polyvinyl chloride resin layer, an epoxy resin layer, a polyurethane resin layer, and an acrylic resin layer.
[0052] In this technical solution, polyvinyl chloride resin layers, epoxy resin layers, polyurethane resin layers, and acrylic resin layers can all be used as anti-corrosion coatings 206, making the composite film less susceptible to corrosion. Optionally, the transparency of the anti-corrosion coating 206 is greater than or equal to 95%, thus not affecting the aesthetics.
[0053] In some technical solutions, optionally, such as Figure 4 As shown, the metal-containing material layer 203 includes: an aluminum-containing polyester layer 2032 disposed between the glass layer 204 and the ultraviolet-curable ink layer 205; and a pearlescent polyester layer 2034 disposed between the aluminum-containing polyester layer 2032 and the glass layer 204.
[0054] In this technical solution, the aluminum-containing polyester layer 2032 and the pearlescent polyester layer 2034 serve as the metal-containing material layer 203, giving the glass a better metallic appearance surface. The specific preparation process can be as follows: first, aluminum-containing polyester ink is uniformly brushed onto the silk layer 202, and after drying, the aluminum-containing polyester layer 2032 is obtained. Then, pearlescent polyester ink is brushed onto the aluminum-containing polyester layer 2032, and after drying, a metal composite layer, i.e., the metal-containing material layer 203, is obtained.
[0055] In some technical solutions, optionally, such as Figure 5 As shown, the metal material layer 203 includes: a plastic layer 2036 disposed between the glass layer 204 and the ultraviolet-curable ink layer 205; and a metal plating layer 2038 disposed on the surface of the plastic layer 2036 and located between the plastic layer 2036 and the ultraviolet-curable ink layer 205, or located between the plastic layer 2036 and the glass layer 204.
[0056] In this technical solution, a metal material can also be plated on the plastic layer 2036, or the metal material can be uniformly deposited on the plastic layer 2036 by vacuum evaporation, thereby obtaining a metal-containing material layer 203. Of course, the metal-containing material layer 203 can also be achieved by inkjet printing, and its color depth and gradation can be changed by adjusting the concentration and density of ink dots.
[0057] In some technical solutions, optionally, such as Figure 2 As shown, the coated glass 2 also includes a touch coating 209 disposed on the side of the glass layer 204 away from the silk layer 202. The touch coating 209 includes a silicon-containing coating and / or a fluorine-containing coating.
[0058] In this technical solution, the application of a silicon-containing coating and / or a fluorine-containing coating gives the glass anti-fouling, fingerprint-resistant, and strong hydrophobic properties. For example, the coating can be a silicon or fluorine polymer coating.
[0059] In some technical solutions, optionally, the silk layer 202 is disposed between the metal material layer 203 and the ultraviolet curable ink layer 205, and the coated glass 2 further includes a first adhesive layer 207 disposed between the metal material layer 203 and the glass layer 204; the first resin layer 208 is disposed between the first adhesive layer 207 and the metal material layer 203.
[0060] In this technical solution, the metal-containing material layer 203 and the glass layer 204 are connected by a first adhesive layer 207, which is more efficient than the conventional method of depositing a metal film on the glass surface. Furthermore, a first resin layer 208 is disposed between the first adhesive layer 207 and the metal-containing material layer 203. This first resin layer 208 provides some protection for the metal-containing material layer 203, essentially serving as a backing layer.
[0061] In some technical solutions, the first adhesive layer 207 may optionally include one or a combination of the following: pressure-sensitive adhesive, UV adhesive, and hot melt adhesive.
[0062] In some technical solutions, the first resin layer 208 may optionally include one or a combination of the following: a polyurethane resin layer, an acrylic resin layer, an epoxy resin layer, and a silicone resin layer.
[0063] In some technical solutions, optionally, such as Figure 2 As shown, the filament layer 202 is disposed between the metal material layer 203 and the glass layer 204. The coated glass 2 also includes a polyethylene terephthalate layer 201 disposed between the filament layer 202 and the glass layer 204; the second adhesive layer 210 is disposed between the polyethylene terephthalate layer 201 and the glass layer 204; and the second resin layer 211 is disposed on the side of the metal material layer 203 away from the glass layer 204.
[0064] In this technical solution, the polyethylene terephthalate layer 201 provides additional physical protection for the glass layer 204, preventing damage to the glass from minor scratches, impacts, and other external factors. If the glass breaks due to a large impact, the PET (Polyethylene Terephthalate, 201) film layer can help limit the scattering of fragments and reduce the risk of injury. Furthermore, the polyethylene terephthalate layer 201 and the glass layer 204 are connected by a second adhesive layer 210, which is more efficient than the conventional method of coating the glass surface. Additionally, a second resin layer 211 is provided on the side of the metal-containing layer 203 away from the glass layer 204. This second resin layer 211 provides some protection for the metal-containing layer 203, acting as a backing layer.
[0065] In some technical solutions, the second adhesive layer 210 and the first adhesive layer 207 may optionally have the same or different compositions. Similarly, the second resin layer 211 and the first resin layer 208 may also be the same or different.
[0066] In some technical solutions, optionally, the thickness of the polyethylene terephthalate layer 201 is greater than or equal to 25 μm and less than or equal to 100 μm.
[0067] In this technical solution, the thickness of the polyethylene terephthalate layer 201 is greater than or equal to 25 μm and less than or equal to 100 μm. Optionally, the thickness is greater than or equal to 50 μm and less than or equal to 100 μm, for example, 70 μm or 80 μm. By limiting the thickness of the polyethylene terephthalate layer 201, the physical properties of the glass substrate can be further guaranteed.
[0068] In some technical solutions, the filament layer 202 may optionally include a PVC filament layer and / or a PET filament layer.
[0069] In this technical solution, the filament layer 202 includes a PVC filament layer and / or a PET filament layer. The PVC filament layer and the PET filament layer, together with the metal-containing material layer 203, can give the glass a higher metallic texture.
[0070] like Figure 6 As shown, the second aspect of this application provides a panel 3, including: a coated glass 2 as described in any of the first aspects of this utility model. Since the panel 3 provided by this application includes the coated glass 2 as described in any of the first aspects of this application, it possesses all the beneficial effects of the coated glass 2 described in any of the first aspects of this application.
[0071] like Figure 7As shown, the third aspect of this application provides a household appliance 1, including: a coated glass 2 as described in any of the first aspects of this utility model, or a panel 3 as described in the second aspect of this application. Since the household appliance 1 provided by this application includes the coated glass 2 as described in any of the first aspects of this application, or the panel 3 as described in the second aspect of this application, it possesses all the beneficial effects of the coated glass 2 as described in any of the first aspects of this application.
[0072] Another embodiment of this application provides a coated panel, which mainly enriches the appearance of coated glass by applying a film material with a metallic texture to the front or back of a glass substrate. It has the advantages of simple processing, high efficiency, low cost, and rich appearance.
[0073] Specifically, in this embodiment, when the coated glass 2 is applied to the front side, as follows: Figure 1 As shown, its structure, from top to bottom, includes: an anti-corrosion coating 206, a hardening layer (i.e., a UV-curable ink layer 205), a PET layer, a brushed layer 202, a metal appearance layer (i.e., a metal-containing material layer 203), a back coating layer (i.e., a first resin layer 208), an adhesive layer (i.e., a first adhesive layer 207), and a glass layer 204. When applying the backing, as... Figure 2 As shown, its structure from top to bottom includes: AF coating (i.e., touch coating 209), glass layer 204, adhesive layer (i.e., second adhesive layer 210), PET layer, brushed layer 202, metal appearance layer (i.e., metal material layer 203), and back paint layer (i.e., second resin layer 211).
[0074] The anti-corrosion coating 206 is made of transparent resin or transparent PVC material, which makes the composite film less susceptible to corrosion.
[0075] The hardening layer is made of UV ink, which forms a polymer after UV curing to improve the surface hardness of the film and enhance its scratch resistance.
[0076] The thickness of the PET film ranges from 25 μm to 100 μm.
[0077] The brushed layer 202 is a polymer material that is formed by roll forming on the film to create a metallic brushed texture appearance.
[0078] A metallic coating can be achieved in the following three ways:
[0079] 1. The metallic appearance layer can be achieved by brushing on an ink layer with a metallic texture. The first metallic ink is evenly brushed on the brushed layer 202, the first layer is dried, and then a second metallic ink containing glitter is brushed on the first layer and the second layer is dried.
[0080] 2. The metal appearance layer includes a plastic layer 2036, on which a metal material is plated. The metal material can be uniformly deposited on the plastic layer 2036 by vacuum evaporation.
[0081] 3. The metallic outer layer can be achieved through inkjet printing, by adjusting the concentration and density of the ink droplets to change its color depth and gradation.
[0082] The back coating is made of resin to prevent scratches or damage to the surface of the composite film. Furthermore, this application also allows for the alteration of the overall color of the glass by printing different colored inks.
[0083] The adhesive layer can be pressure-sensitive adhesive, UV adhesive, hot melt adhesive, etc., and can be applied to the surface of the substrate or film by roller coating, spraying, or brushing.
[0084] AF coating is a silicon-based or fluorine-based polymer applied to the surface of a substrate, giving the material anti-fouling, fingerprint-resistant, and strong hydrophobic properties.
[0085] In the embodiments according to this utility model, the terms "first," "second," and "third" are used only for descriptive purposes and should not be construed as indicating or implying relative importance; the term "multiple" refers to two or more unless otherwise expressly defined. The terms "install," "connect," "join," and "fix" should be interpreted broadly. For example, "connect" can be a fixed connection, a detachable connection, or an integral connection; "join" can be a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in the embodiments according to the specific circumstances.
[0086] Furthermore, although the operations are described in a specific order, this should be understood as requiring that such operations be performed in a specific order or sequential order, or requiring that all illustrated operations be performed to achieve the desired result. In certain environments, multitasking and parallel processing may be advantageous. Similarly, although several specific implementation details are included in the above discussion, these should not be construed as limiting the scope of this invention. Certain features described in the context of individual embodiments may also be implemented in combination in a single implementation. Conversely, various features described in the context of a single implementation may also be implemented individually or in any suitable sub-combination in multiple implementations.
[0087] Although the subject matter has been described using language describing specific structural features and / or methodological logic, it should be understood that the subject matter defined in the appended claims is not necessarily limited to the specific features or actions described above. Rather, the specific features and actions described above are merely illustrative examples of implementing the claims.
[0088] The above are merely embodiments of the present invention and are not intended to limit the embodiments of the present invention. For those skilled in the art, various modifications and variations can be made to the embodiments of the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the embodiments of the present invention should be included within the protection scope of the embodiments of the present invention.
Claims
1. A coated glass, characterized in that, include: Glass layer; An ultraviolet-curable ink layer is disposed on one side of the glass layer; A metal material layer is disposed between the glass layer and the ultraviolet-curable ink layer; A filament layer, disposed between the glass layer and the UV-curable ink layer, is used to form a textured pattern.
2. The coated glass according to claim 1, characterized in that, The UV-curable ink layer includes one or a combination of the following: a polyacrylic resin ink layer, an epoxy acrylate ink layer, a polyurethane acrylate ink layer, and a vinyl ether acrylate ink layer.
3. The coated glass according to claim 1, characterized in that, Also includes: An anti-corrosion coating is disposed on the side of the ultraviolet-cured ink layer away from the glass layer, and the anti-corrosion coating includes one or a combination of the following: a polyvinyl chloride resin layer, an epoxy resin layer, a polyurethane resin layer, and an acrylic resin layer.
4. The coated glass according to claim 1, characterized in that, The metal-containing material layer includes: An aluminum-containing polyester layer is disposed between the glass layer and the UV-curable ink layer; A pearlescent polyester layer is disposed between the aluminum-containing polyester layer and the glass layer.
5. The coated glass according to claim 1, characterized in that, The metal-containing material layer includes: A plastic layer is disposed between the glass layer and the UV-curable ink layer; A metal plating layer is disposed on the surface of the plastic layer and located between the plastic layer and the ultraviolet-curable ink layer, or between the plastic layer and the glass layer.
6. The coated glass according to claim 1, characterized in that, Also includes: A touch coating is disposed on the side of the glass layer away from the UV-curable ink layer, and the touch coating includes a silicon-containing coating and / or a fluorine-containing coating.
7. The coated glass according to claim 1, characterized in that, The filament layer is disposed between the metal-containing material layer and the ultraviolet-curable ink layer, and the coated glass further includes: A first adhesive layer is disposed between the metal-containing material layer and the glass layer; A first resin layer is disposed between the first adhesive layer and the metal-containing material layer.
8. The coated glass according to claim 7, characterized in that, The first adhesive layer includes one of the following: pressure-sensitive adhesive, UV adhesive, hot melt adhesive; and / or The first resin layer includes one or a combination of the following: a polyurethane resin layer, an acrylic resin layer, an epoxy resin layer, and a silicone resin layer.
9. The coated glass according to any one of claims 1 to 8, characterized in that, The filament layer is disposed between the metal-containing material layer and the glass layer, and the coated glass further includes: A polyethylene terephthalate layer is disposed between the filament layer and the glass layer; The second adhesive layer is disposed between the polyethylene terephthalate layer and the glass layer; The second resin layer is disposed on the side of the metal-containing material layer away from the glass layer.
10. The coated glass according to any one of claims 1 to 8, characterized in that, The filament layer includes a PVC filament layer and / or a PET filament layer.
11. A panel, characterized in that, include: The coated glass as described in any one of claims 1 to 10.
12. A household appliance, characterized in that, include: Coated glass as described in any one of claims 1 to 10; or The panel as described in claim 11.