Integrated organic glass panel and manufacturing process
By setting up a multi-layer cured ink layer assembly on the inner surface of the plexiglass panel, the problems of fragility, scratches and low appearance quality of the plexiglass panel are solved, better appearance texture and safety are achieved, and installation efficiency is improved.
Patent Information
- Application Number
- CN202410441824.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-12
- Publication Date
- 2025-07-22
AI Technical Summary
The existing plexiglass panels have problems such as fragile, scratches, bubbles and low appearance perceptual quality in terms of appearance demand, which cannot meet market demand.
A multi-layer curing ink layer assembly is provided on the inner surface of the plexiglass panel, including a first logo curing ink layer, a spliced background curing ink layer, a superimposed curing ink layer, a backlight curing ink layer and an upper seal curing ink layer, and an integrated plexiglass panel is formed by UV printing or silk printing.
It improves the appearance texture and reliability of the plexiglass panel, enhances the color saturation and appearance perception quality of the logo, reduces safety hazards in transportation and installation, and improves installation efficiency.
Smart Images

Figure CN120348008A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to an integrated plexiglass panel and a manufacturing process thereof. Background Art
[0002] With the increasing demand for appearance, delicate appearance has become a market trend, and the logo is one of the main identifiers of the appearance. It is required to form an integrated panel with the glass door. Most of the current solutions on the market are to use tempered glass plus logo film. As Figures 1-7 shown, although it has texture, it is fragile during equipment transportation and is easy to scratch workers. There are potential safety hazards. There are also solutions that use plexiglass plus logo film. As Figures 8-14 shown, although it is not fragile, bubbles that cannot be eliminated will be generated on the film. At the edge of the film, it will warp and accumulate dust over a long time, resulting in a reduction in the perceived quality of the appearance. Therefore, an integrated plexiglass panel and a manufacturing process are proposed to solve the above problems. Summary of the Invention
[0003] The purpose of the present invention is to provide an integrated plexiglass panel to overcome the existing defects, and the logo presents better texture.
[0004] The technical solution to achieve the above purpose is: an integrated plexiglass panel, including a cured ink layer assembly, and the cured ink layer assembly is disposed on the inner surface of the panel to form an integrated plexiglass panel.
[0005] Preferably, the cured ink layer assembly includes a first logo cured ink layer, a first spliced background cured ink layer, a first logo superimposed cured ink layer, a backlight cured ink layer, and an upper seal cured ink layer;
[0006] The first logo cured ink layer is disposed within the logo area on the inner surface of the panel, the first spliced background cured ink layer covers the first logo cured ink layer and the inner surface of the panel, the first logo superimposed cured ink layer is disposed within the logo area of the first spliced background cured ink layer, the backlight cured ink layer is disposed on the surface of the first logo superimposed cured ink layer, and the upper seal cured ink layer is disposed on the surface of the backlight cured ink layer.
[0007] Preferably, the cured ink layer assembly includes a second logo cured ink layer and a second spliced background cured ink layer;
[0008] The second logo cured ink layer is disposed within the logo area on the inner surface of the panel, and the second spliced background cured ink layer covers the second logo cured ink layer and the inner surface of the panel.
[0009] Preferably, the cured ink layer assembly includes a third logo cured ink layer, a third spliced background cured ink layer, and a fourth spliced background cured ink layer;
[0010] The third logo cured ink layer is disposed within the logo area on the inner surface of the panel. The third spliced background cured ink layer is disposed on the surface of the third logo cured ink layer. The fourth spliced background cured ink layer covers the third spliced background cured ink layer and the inner surface of the panel.
[0011] Preferably, the cured ink layer assembly includes a logo-spliced background cured ink layer;
[0012] The logo-spliced background cured ink layer is disposed on the inner surface of the panel, and the logo in the logo-spliced background cured ink layer corresponds to the logo area on the inner surface of the panel.
[0013] Preferably, the cured ink layer assembly includes a logo-spliced background screen printing layer. The logo-spliced background screen printing layer is disposed on the inner surface of the panel, and the logo in the logo-spliced background screen printing layer corresponds to the logo area on the inner surface of the panel.
[0014] The manufacturing process of the integrated plexiglass panel includes the following steps:
[0015] Step 1: UV print a first logo cured ink layer within the logo area on the inner surface of the panel;
[0016] Step 2: UV print a first spliced background cured ink layer on the inner surface of the panel, so that the UV printed first spliced background cured ink layer covers the first logo cured ink layer and the inner surface of the panel;
[0017] Step 3: UV print a logo-overlay cured ink layer on the first spliced background cured ink layer, so that the logo-overlay cured ink layer covers above the first logo cured ink layer;
[0018] Step 4: UV print a backlight cured ink layer on the logo-overlay cured ink layer;
[0019] Step 5: UV print an upper-sealing cured ink layer on the backlight cured ink layer.
[0020] The manufacturing process of the integrated plexiglass panel includes the following steps:
[0021] Step 1: UV print a second logo cured ink layer within the logo area on the inner surface of the panel;
[0022] Step 2: UV print the second spliced background cured ink layer on the inner surface of the panel, so that the second spliced background cured ink layer covers the second logo cured ink layer and the inner surface of the panel.
[0023] The manufacturing process of the integrated plexiglass panel includes the following steps:
[0024] Step 1: UV print the third logo cured ink layer in the logo area on the inner surface of the panel;
[0025] Step 2: UV print the third spliced background cured ink layer on the third logo cured ink layer;
[0026] Step 3: UV print the fourth spliced background cured ink layer to cover the third spliced background cured ink layer and the inner surface of the panel.
[0027] The manufacturing process of the integrated plexiglass panel includes the following steps:
[0028] Step 1: UV print the logo-spliced background cured ink layer on the inner surface of the panel to form an integrated plexiglass panel.
[0029] The manufacturing process of the integrated plexiglass panel includes the following steps:
[0030] Step 1: Screen-print the logo-spliced background screen printing layer on the inner surface of the panel to form an integrated plexiglass panel.
[0031] The beneficial effect of the present invention is that: in the manufacturing process of the integrated plexiglass panel, the patterns printed and sprayed by UV are combined with different materials, and the acting surfaces are all the inner surfaces of the panel, thereby improving the appearance and reliability of the integrated panel after molding, increasing the color saturation of the logo appearance, improving the appearance perception quality, and making the logo present a better texture. Description of the Drawings
[0032] Figure 1 It is an axonometric view of the product of the first prior art;
[0033] Figure 2 It is a front view of the product of the first prior art;
[0034] Figure 3 It is a rear view of the product of the first prior art;
[0035] Figure 4 It is a top view of the product of the first prior art;
[0036] Figure 5 It is a bottom view of the product of the first prior art;
[0037] Figure 6It is the right view of the product of the first prior art;
[0038] Figure 7 It is the left view of the product of the first prior art;
[0039] Figure 8 It is the axonometric view of the product of the second prior art;
[0040] Figure 9 It is the front view of the product of the second prior art;
[0041] Figure 10 It is the rear view of the product of the second prior art;
[0042] Figure 11 It is the top view of the product of the second prior art;
[0043] Figure 12 It is the bottom view of the product of the second prior art;
[0044] Figure 13 It is the right view of the product of the second prior art;
[0045] Figure 14 It is the left view of the product of the second prior art;
[0046] Figure 15 It is the axonometric view of the integrated plexiglass panel of the present invention;
[0047] Figure 16 It is the front view of the integrated plexiglass panel of the present invention;
[0048] Figure 17 It is the rear view of the integrated plexiglass panel of the present invention;
[0049] Figure 18 It is the top view of the integrated plexiglass panel of the present invention;
[0050] Figure 19 It is the bottom view of the integrated plexiglass panel of the present invention;
[0051] Figure 20 It is the right view of the integrated plexiglass panel of the present invention;
[0052] Figure 21 It is the left view of the integrated plexiglass panel of the present invention;
[0053] Figure 22 It is the schematic diagram of the first embodiment of the present invention;
[0054] Figure 23 It is the schematic diagram of the second embodiment of the present invention;
[0055] Figure 24It is a schematic diagram of Embodiment 3 of the present invention;
[0056] Figure 25 It is a schematic diagram of Embodiment 4 of the present invention;
[0057] Figure 26 It is a schematic diagram of Embodiment 5 of the present invention.
[0058] In the figure: 1. Panel; 2. First logo curing ink layer; 3. First spliced background curing ink layer; 4. First logo overlay curing ink layer; 5. Backlight curing ink layer; 6. Upper seal curing ink layer; 7. Second logo curing ink layer; 8. Second spliced background curing ink layer; 9. Third logo curing ink layer; 10. Third spliced background curing ink layer; 11. Fourth spliced background curing ink layer; 12. Logo spliced background curing ink layer; 13. Logo spliced background screen printing layer. Detailed implementation manners
[0059] Next, the technical solutions of the present invention will be clearly and completely described in conjunction with the accompanying drawings. In the description of the present invention, it should be noted that the orientation or positional relationship indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "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 invention 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 cannot be understood as a limitation of the present invention. In addition, the terms "first", "second", "third" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance.
[0060] Next, the present invention will be further described in conjunction with the accompanying drawings.
[0061] Embodiment 1
[0062] As Figures 15-22 shown, an integrated plexiglass panel includes a curing ink layer assembly, and the curing ink layer assembly is disposed on the inner surface of the panel 1 to form an integrated plexiglass panel.
[0063] The curing ink layer assembly includes a first logo curing ink layer 2, a first spliced background curing ink layer 3, a first logo overlay curing ink layer 4, a backlight curing ink layer 5, and an upper seal curing ink layer 6; the first logo curing ink layer 2 can be red; the first spliced background curing ink layer 3 can be spliced with black, red, and white; the first logo overlay curing ink layer 4 can be red; the backlight curing ink layer 5 can be white; the upper seal curing ink layer 6 can be gray. The panel 1 is made of plexiglass with different thicknesses to form the panel.
[0064] On the inner surface of the panel 1 within the logo area, a first logo curing ink layer 2 is provided. The first spliced background curing ink layer 3 covers the first logo curing ink layer 2 and the inner surface of the panel 1. Within the logo area of the first spliced background curing ink layer 3, a first logo overlay curing ink layer 4 is provided. On the surface of the first logo overlay curing ink layer 4, a backlight curing ink layer 5 is provided. On the surface of the backlight curing ink layer 5, an upper sealing curing ink layer 6 is provided.
[0065] Specifically, the size of the panel 1 can be adjusted according to the size of the device; the size, position, and color of the first logo curing ink layer 2 can be adjusted according to actual applications; the size, position, color, and splicing shape of the first spliced background curing ink layer 3 can be adjusted according to actual applications; the size, position, color, and splicing shape of the first logo overlay curing ink layer 4 can be adjusted according to actual applications; the size, position, color, and splicing shape of the upper sealing curing ink layer 6 can be adjusted according to actual applications.
[0066] Specifically, the first logo curing ink layer 2, the first spliced background curing ink layer 3, the first logo overlay curing ink layer 4, the backlight curing ink layer 5, and the upper sealing curing ink layer 6 are spaced 0.5 - 1 mm from the edge of the panel 1. The splicing areas of different color blocks of the first logo curing ink layer 2, the first spliced background curing ink layer 3, the first logo overlay curing ink layer 4, the backlight curing ink layer 5, and the upper sealing curing ink layer 6 can overlap each other by 0.05 - 0.1 mm. The thickness of each layer of the first logo curing ink layer 2, the first spliced background curing ink layer 3, the first logo overlay curing ink layer 4, the backlight curing ink layer 5, and the upper sealing curing ink layer 6 is 0.03 - 0.06 mm.
[0067] As Figure 22 shown, the manufacturing process of the integrated plexiglass panel includes the following steps:
[0068] Step 1, UV print the first logo curing ink layer 2 within the logo area on the inner surface of the panel 1;
[0069] Step 2, UV print the first spliced background curing ink layer 3 on the inner surface of the panel 1 so that the UV - printed first spliced background curing ink layer 3 covers the first logo curing ink layer 2 and the inner surface of the panel 1;
[0070] Step 3, UV print the logo overlay curing ink layer 4 on the first spliced background curing ink layer 3 so that the logo overlay curing ink layer 4 covers above the first logo curing ink layer 2;
[0071] Step 4, UV print the backlight curing ink layer 5 on the logo overlay curing ink layer 4;
[0072] Step 5: UV print the sealing curing ink layer 6 on the backlight curing ink layer 5.
[0073] The thickness of each cured ink layer is 0.03-0.06 mm, and the organic glass is attached with 20%-30% of the ink. The final wall thickness is 0.03-0.06 mm*5 per layer.
[0074] For example, the softer the panel material, the larger the gap; the darker the panel base color, the greater the amount of ink to be sprayed; if the final spray layer needs to be darker and more beautiful, the printer parameters must be modified.
[0075] For example, the percentage, number of passes, and thickness of inkjet volume can be set in the printing software. This can save ink and improve the quality of printing. Similarly, there is an auxiliary function, which is the percentage of feathering. Usually it is selected between 0%-200%. For example, if the printed pattern is more delicate and the color is richer, the larger the feathering value is required, the better the printed effect will be. The details should be determined according to the actual needs of the user.
[0076] This improves the appearance perception, appearance perception quality, and appearance "color saturation", which brings a better visual experience. In addition, the adhesion of UV printing oil film varies depending on the panel material. For example, tempered glass uses 5%-15% ink to adhere. Therefore, the effect presented is different from that of organic glass using 20%-30% ink.
[0077] The manufacturing process of the integrated plexiglass panel combines the UV printed spray pattern with different materials, and the active surface is the inner surface of the panel, thereby improving the appearance and reliability of the integrated panel after molding, improving the color saturation of the logo appearance, and improving the perceived quality of the appearance.
[0078] Existing tempered glass is fragile and easy to scratch during transportation. By using the new solution of embodiment 1, this problem can be ignored, and the "safety rate" can be improved in disguise. Explanation for improving installation efficiency: Organic glass does not need to worry about fragileness, work-related injuries, etc., and is relatively light, which can improve installation efficiency in disguise.
[0079] Embodiment 2
[0080] like Figure 23 As shown, the curable ink layer assembly includes a second logo curable ink layer 7 and a second spliced background curable ink layer 8;
[0081] A second logo curing ink layer 7 is arranged in the logo area on the inner surface of the panel 1 , and a second spliced background curing ink layer 8 covers the second logo curing ink layer 7 and the inner surface of the panel 1 .
[0082] The second logo curing ink layer 7 can be red; the second spliced background curing ink layer 8 can be spliced by black and red.
[0083] Specifically, the size of the panel 1 can be adjusted according to the size of the device; the second logo curing ink layer 7 and the second spliced background curing ink layer 8 can be adjusted in size, position, color, and splicing shape according to actual applications.
[0084] The second logo curing ink layer 7 and the second spliced background curing ink layer 8 are spaced 0.5 - 1 mm from the edge of the panel 1. The splicing areas of different color blocks of the second logo curing ink layer 7 and the second spliced background curing ink layer 8 can overlap each other by 0.05 - 0.1 mm. Each layer of the second logo curing ink layer 7 and the second spliced background curing ink layer 8 has a thickness of 0.03 - 0.06 mm. The panel 1 is made of plexiglass with different thicknesses to form the panel.
[0085] The manufacturing process of the integrated plexiglass panel includes the following steps:
[0086] Step 1, UV print the second logo curing ink layer 7 in the logo area on the inner surface of the panel 1;
[0087] Step 2, UV print the second spliced background curing ink layer 8 on the inner surface of the panel 1 so that the second spliced background curing ink layer 8 covers the second logo curing ink layer 7 and the inner surface of the panel 1.
[0088] Compared with the first embodiment, the steps of removing the first spliced background curing ink layer 3, the first logo stacking and curing ink layer 4, the backlight curing ink layer 5, and the upper sealing curing ink layer 6 are eliminated, reducing the overall wall thickness from 0.03 - 0.06 mm * 5 layers to 0.03 - 0.06 mm * 2 layers per layer.
[0089] Finally, the "color saturation", appearance perception quality, and customer visual experience effect of the appearance are different from each other. In addition, according to the different panel materials, the adhesion of the UV - printed oil film is different. For example, tempered glass uses an ink amount of 5% - 15% for adhesion. Therefore, the presented effect is different from that of plexiglass using an ink amount of 20% - 30%.
[0090] The manufacturing process of this integrated plexiglass panel combines the UV - printed and sprayed patterns with different materials, and the acting surface is the inner surface of the panel, thereby improving the appearance and reliability of the integrated panel after molding.
[0091] Example 3
[0092] Such as Figure 24As shown in the figure, the cured ink layer assembly includes a third logo cured ink layer 9, a third spliced background cured ink layer 10, and a fourth spliced background cured ink layer 11;
[0093] The third logo cured ink layer 9 is arranged in the logo area on the inner surface of the panel 1. The third spliced background cured ink layer 10 is arranged on the surface of the third logo cured ink layer 9. The fourth spliced background cured ink layer 11 covers the third spliced background cured ink layer 10 and the inner surface of the panel 1.
[0094] The third logo cured ink layer 9 can be red; the third spliced background cured ink layer 10 can be white; the fourth spliced background cured ink layer 11 can be black and red.
[0095] The size of the panel 1 can be adjusted according to the size of the device; the third logo cured ink layer 9, the third spliced background cured ink layer 10, and the fourth spliced background cured ink layer 11 can be adjusted in size, position, color, and splicing shape according to actual applications.
[0096] The third logo cured ink layer 9, the third spliced background cured ink layer 10, and the fourth spliced background cured ink layer 11 are spaced 0.5 - 1 mm from the edge of the panel 1. The splicing areas of different color blocks of the third logo cured ink layer 9, the third spliced background cured ink layer 10, and the fourth spliced background cured ink layer 11 can overlap each other by 0.05 - 0.1 mm. The thickness of each layer of the third logo cured ink layer 9, the third spliced background cured ink layer 10, and the fourth spliced background cured ink layer 11 is 0.03 - 0.06 mm. The panel 1 is made of plexiglass with different thicknesses to form the panel.
[0097] The manufacturing process of the integrated plexiglass panel includes the following steps:
[0098] Step 1, UV print the third logo cured ink layer 9 in the logo area on the inner surface of the panel 1;
[0099] Step 2, UV print the third spliced background cured ink layer 10 on the third logo cured ink layer 9;
[0100] Step 3, UV print the fourth spliced background cured ink layer 11 to cover the third spliced background cured ink layer 10 and the inner surface of the panel 1.
[0101] Compared with the first embodiment, the steps of removing the first logo laminated solidified ink layer 4, the backlight solidified ink layer 5, and the upper seal solidified ink layer 6 are eliminated, reducing the overall wall thickness from 0.03 - 0.06 mm * 5 layers to 0.03 - 0.06 mm * 3 layers per layer. Finally, the "color saturation", the appearance perception quality, and the customer visual experience effect of the appearance are different from each other. In addition, according to different panel materials, the adhesion of the UV-printed oil film is different. For example, for tempered glass, an ink amount of 5% - 15% is used for adhesion. Therefore, the presented effect is different from that of using an ink amount of 20% - 30% for plexiglass.
[0102] The manufacturing process of this integrated plexiglass panel combines the UV-printed and sprayed patterns with different materials, and the acting surface is the inner surface of the panel, thereby improving the appearance and reliability of the integrated panel after molding.
[0103] Example 4
[0104] As Figure 25 shown, the solidified ink layer assembly includes a background solidified ink layer 12 with logo splicing;
[0105] The background solidified ink layer 12 with logo splicing is arranged on the inner surface of the panel 1, and the logo in the background solidified ink layer 12 with logo splicing corresponds to the logo area on the inner surface of the panel 1.
[0106] The background solidified ink layer 12 with logo splicing can be formed by splicing black, red, white, and logos; the size of the panel 1 can be adjusted according to the size of the device; the background solidified ink layer 12 with logo splicing can be adjusted in size, position, color, and splicing shape according to actual applications.
[0107] The background solidified ink layer 12 with logo splicing avoids a range of 0.5 - 1 mm from the edge of the panel 1. The splicing areas of different color blocks in the background solidified ink layer 12 with logo splicing can cover each other by 0.05 - 0.1 mm. The thickness of each layer of the background solidified ink layer 12 with logo splicing is 0.03 - 0.06 mm. The panel 1 is made of plexiglass with different thicknesses to form the panel.
[0108] The manufacturing process of the integrated plexiglass panel includes the following steps:
[0109] Step 1, UV-print the background solidified ink layer 12 with logo splicing on the inner surface of the panel 1 to form an integrated plexiglass panel.
[0110] Compared with the first embodiment, the steps of removing the first logo laminated and cured ink layer 4, the backlight cured ink layer 5, and the upper seal cured ink layer 6 are eliminated. The first logo cured ink layer 2 and the first spliced background cured ink layer 3 are combined to form a superimposed state of the logo-spliced background cured ink layer 12. The overall wall thickness is reduced from 0.3 - 0.06 mm * 5 layers per layer to 0.03 - 0.06 mm * 1 layer per layer. Finally, the "color saturation" of the appearance, the appearance perception quality, and the customer visual experience effect are different from each other. In addition, according to different panel materials, the adhesion of the UV-printed oil film is different. For example, tempered glass uses an ink amount of 5% - 15% for adhesion. Therefore, the presented effect is different from that of plexiglass using an ink amount of 20% - 30%.
[0111] The manufacturing process of this integrated plexiglass panel combines the UV-printed and sprayed patterns with different materials, and the working surface is the inner surface of the panel, thereby improving the appearance and reliability of the integrated panel after molding.
[0112] Example Five
[0113] As Figure 26 shown, the cured ink layer assembly includes a logo-spliced background screen printing layer 13. The logo-spliced background screen printing layer 13 is provided on the inner surface of the panel 1, and the logo in the logo-spliced background screen printing layer 13 corresponds to the logo area on the inner surface of the panel 1.
[0114] The logo-spliced background screen printing layer 13 can be a background screen printing layer spliced by black, red, white, and the logo. The logo and other patterns on the spliced background screen printing layer can be adjusted in terms of size, position, splicing shape, and color according to actual situations.
[0115] The logo-spliced background screen printing layer 13 avoids a range of 0.5 - 1 mm from the edge of the panel 1. The splicing areas of different color blocks of the logo-spliced background screen printing layer 13 can cover each other by 0.05 - 0.1 mm. The thickness of each layer of the logo-spliced background screen printing layer 13 is 0.12 - 0.15 mm. The panel 1 is made of plexiglass with different thicknesses to form the panel.
[0116] The manufacturing process of the integrated plexiglass panel includes the following steps:
[0117] Step 1, print the logo-spliced background screen printing layer 13 on the inner surface of the panel 1 by screen printing to form an integrated plexiglass panel.
[0118] In the area of the inner surface of the panel 1, use the screen printing method to print the logo-spliced background screen printing layer 13 spliced by black, red, white, and the logo. After completing the pattern, finally form an integrated plexiglass appearance panel.
[0119] Compared with Embodiment 1, Embodiment 2, Embodiment 3 and Embodiment 4, the printing method is changed from solid ink UV printing to special ink screen printing. The steps of multiple UV printings are removed. It is changed to screen printing of a background layer spliced with black, red, white, and logo, forming a spliced state. The overall wall thickness is increased from 0.03 - 0.06 mm * 1 layer to 0.12 - 0.15 mm * 1 layer per layer. The "color saturation" of the appearance, the perceived quality of the appearance, and the visual experience effect of customers are made different. Additionally, according to different panel materials, the adhesion of screen printing is different, and a common screen printing ink layer thickness in the market can be adopted.
[0120] The manufacturing process of this integrated plexiglass panel combines screen-printed patterns with different materials, and the acting surface is the inner surface of the panel, thereby improving the appearance and reliability of the integrated panel after molding.
[0121] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that: they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some or all of the technical features; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present invention.
Claims
1. An integrated plexiglass panel, characterized in that, It includes a cured ink layer assembly which is arranged on the inner surface of the panel (1) to form an integrated plexiglass panel.
2. The integrated plexiglass panel according to claim 1, characterized in that, The cured ink layer assembly includes a first logo cured ink layer (2), a first spliced background cured ink layer (3), a first logo overlay cured ink layer (4), a backlight cured ink layer (5) and an upper seal cured ink layer (6); The first logo cured ink layer (2) is arranged in the logo area on the inner surface of the panel (1). The first spliced background cured ink layer (3) covers the first logo cured ink layer (2) and the inner surface of the panel (1). The first logo overlay cured ink layer (4) is arranged in the logo area of the first spliced background cured ink layer (3). The backlight cured ink layer (5) is arranged on the surface of the first logo overlay cured ink layer (4), and the upper seal cured ink layer (6) is arranged on the surface of the backlight cured ink layer (5).
3. The integrated plexiglass panel according to claim 1, characterized in that, The cured ink layer assembly includes a second logo cured ink layer (7) and a second spliced background cured ink layer (8); The second logo cured ink layer (7) is arranged in the logo area on the inner surface of the panel (1). The second spliced background cured ink layer (8) covers the second logo cured ink layer (7) and the inner surface of the panel (1).
4. The integrated plexiglass panel according to claim 1, characterized in that, The cured ink layer assembly includes a third logo cured ink layer (9), a third spliced background cured ink layer (10) and a fourth spliced background cured ink layer (11); The third logo cured ink layer (9) is arranged in the logo area on the inner surface of the panel (1). The third spliced background cured ink layer (10) is arranged on the surface of the third logo cured ink layer (9). The fourth spliced background cured ink layer (11) covers the third spliced background cured ink layer (10) and the inner surface of the panel (1).
5. The integrated plexiglass panel according to claim 1, characterized in that, The cured ink layer assembly includes a logo spliced background cured ink layer (12); The logo spliced background cured ink layer (12) is arranged on the inner surface of the panel (1), and the logo in the logo spliced background cured ink layer (12) corresponds to the logo area on the inner surface of the panel (1).
6. The integrated plexiglass panel according to claim 1, characterized in that, The cured ink layer assembly includes a logo spliced background screen printing layer (13). The logo spliced background screen printing layer (13) is arranged on the inner surface of the panel (1), and the logo in the logo spliced background screen printing layer (13) corresponds to the logo area on the inner surface of the panel (1).
7. The manufacturing process of the integrated plexiglass panel according to claim 2, characterized in that, It includes the following steps: Step 1, UV print the first logo cured ink layer (2) in the logo area on the inner surface of the panel (1); Step 2, UV print the first spliced background cured ink layer (3) on the inner surface of the panel (1) so that the UV printed first spliced background cured ink layer (3) covers the first logo cured ink layer (2) and the inner surface of the panel (1); Step 3: UV print the logo-overlay cured ink layer (4) on the first spliced background cured ink layer (3) so that the logo-overlay cured ink layer (4) covers above the first logo cured ink layer (2). Step 4: UV print the backlight cured ink layer (5) on the logo-overlay cured ink layer (4). Step 5: UV print the upper-sealing cured ink layer (6) on the backlight cured ink layer (5).
8. The manufacturing process of the integrated plexiglass panel according to claim 3, characterized in that, It includes the following steps: Step 1: UV print the second logo cured ink layer (7) within the logo area on the inner surface of the panel (1). Step 2: UV print the second spliced background cured ink layer (8) on the inner surface of the panel (1) so that the second spliced background cured ink layer (8) covers the second logo cured ink layer (7) and the inner surface of the panel (1).
9. The manufacturing process of the integrated plexiglass panel according to claim 4, characterized in that, It includes the following steps: Step 1: UV print the third logo cured ink layer (9) within the logo area on the inner surface of the panel (1). Step 2: UV print the third spliced background cured ink layer (10) on the third logo cured ink layer (9). Step 3: UV print the fourth spliced background cured ink layer (11) to cover the third spliced background cured ink layer (10) and the inner surface of the panel (1).
10. The manufacturing process of the integrated plexiglass panel according to claim 5, characterized in that, It includes the following steps: Step 1: UV print the logo-spliced background cured ink layer (12) on the inner surface of the panel (1) to form an integrated plexiglass panel.
11. The manufacturing process of the integrated plexiglass panel according to claim 6, characterized in that, It includes the following steps: Step 1: Screen print the logo-spliced background screen printing layer (13) on the inner surface of the panel (1) to form an integrated plexiglass panel.