Resin-framed glass plate and method for manufacturing the same
The integration of a transparent decorative film with the resin frame on glass plates addresses the limitations of conventional resin-framed glass plates by enhancing gloss and protection, enabling high-gloss color expression and durability.
Patent Information
- Application Number
- JP2022570000
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2020-12-18
- Filing Date
- 2021-12-14
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2041-12-14
Smart Images

Figure 0007806708000001 
Figure 0007806708000002 
Figure 0007806708000003
Abstract
Description
[Technical Field]
[0001] The present invention relates to a resin-framed glass plate for vehicle windows, which has a decorative molding attached to the resin frame, and a method for manufacturing the resin-framed glass plate. [Background technology]
[0002] Glass sheets for vehicle windows, particularly automobile glass sheets, such as side glass fixed to a vehicle window opening, often have a resin frame integrally formed around the periphery thereof to fill the gap between the glass sheet and the vehicle window opening. This resin frame not only fixes the glass sheet to the vehicle window opening and seals the vehicle window opening, but also improves the appearance design of the glass sheet.
[0003] The resin frame is formed integrally with the glass plate, for example, by applying a primer (adhesive) to the peripheral edge of the glass plate, attaching the glass plate to a mold, and injecting molten resin into the cavity of the mold. In this way, a resin-framed glass plate is produced in which the resin frame is integrated with the peripheral edge of the glass plate. The applicant of the present application has disclosed such a framed window glass plate (product name: MAW (registered trademark: Module Assy Window)) in Patent Document 1 listed below and other documents. do.
[0004] On the other hand, some resin frames have decorative moldings (also called "decorative moldings") on the surface of the resin frame that is visible from the outside, for the purpose of decorating or reinforcing the resin frame (see Patent Document 2 below).
[0005] Patent Document 2 below discloses that the shape of the decorative molding that is fixed to the frame body during injection molding of the frame body is made of resin or metal, and that a resin film made of a resin such as polyvinyl chloride resin is adhered to this shape. It also discloses that the resin film is colored with a pigment. [Prior art documents] [Patent documents]
[0006] [Patent Document 1] Japanese Patent Application Laid-Open No. 2008-270021 [Patent Document 2] Japanese Patent Application Laid-Open No. 2010-215134 Summary of the Invention [Problem to be solved by the invention]
[0007] As described above, in conventional resin-framed glass plates, the resin frame is decorated by coloring the resin film itself of the decorative molding.
[0008] However, decorative moldings in which the resin film itself is colored have a limit to how high gloss (brightness) can be achieved, and there is a problem in that it is difficult to express the desired color tone.
[0009] The present invention has been made in consideration of the above circumstances, and aims to provide a glass plate with a resin frame and a method for manufacturing a glass plate with a resin frame that can achieve a high gloss color for the design surface expressed by the decorative molding. [Means for solving the problem]
[0010] According to one aspect of the present invention, in order to achieve the object of the present invention, there is provided a glass plate with a resin frame, which comprises a glass plate, a resin frame provided on the periphery of the glass plate, and a decorative molding arranged in the resin frame, wherein the resin frame is integrally formed with the glass plate and the decorative molding, and the decorative molding is a transparent design film, and when the glass plate with a resin frame is attached to a vehicle, the decorative molding is arranged on the outside of the vehicle.
[0011] According to another aspect of the present invention, in order to achieve the object of the present invention, there is provided a method for manufacturing a glass plate with a resin frame for a vehicle window, in which the resin frame is integrally formed with the glass plate and the decorative molding, the method comprising: forming a transparent film into a design shape to produce the decorative molding; attaching the decorative molding and the glass plate to a mold for forming the resin frame; and injecting molten resin into the cavity space of the mold to manufacture the glass plate with the resin frame. [Effects of the Invention]
[0012] According to these aspects of the present invention, the color of the design surface expressed by the decorative molding can be made high gloss. [Brief explanation of the drawings]
[0013] [Figure 1] 1 is a plan view of a resin-frame-attached glass plate according to an embodiment of the present invention. [Figure 2] FIG. 2 is a cross-sectional view of the resin-framed glass plate taken along line 2-2 of FIG. [Figure 3] FIG. 2 is a perspective view showing the resin frame and the decorative molding separated from each other. [Figure 4] FIG. 2 is a cross-sectional view of a mold for producing the resin-frame-attached glass plate shown in FIG. [Figure 5] 2 is a flowchart showing the steps of manufacturing the resin-frame-attached glass plate shown in FIG. [Figure 6] 6A, 6B, and 6C are cross-sectional views showing first, second, and third modified examples of the decorative molding, respectively. [Figure 7] FIG. 4 is a cross-sectional view of a main portion of a resin-frame-attached glass plate according to another embodiment of the present invention. DETAILED DESCRIPTION OF THE INVENTION
[0014] DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS Hereinafter, embodiments of a resin-frame-attached glass plate and a method for manufacturing a resin-frame-attached glass plate according to the present invention will be described with reference to the accompanying drawings.
[0015] Fig. 1 is a plan view of a resin-framed glass plate 10 according to one embodiment of the present invention, which is manufactured by a manufacturing method for a resin-framed glass plate according to an embodiment. Fig. 2 is a cross-sectional view taken along line 2-2 of the resin-framed glass plate 10 shown in Fig. 1. In the drawings used herein, the sizes of the components are exaggerated rather than shown to their actual size in order to clearly explain the contents of the present invention.
[0016] [Glass plate with resin frame] 1 and 2, a resin-framed glass sheet 10 for a vehicle window is used, for example, as a rear quarter glass of an automobile. This resin-framed glass sheet 10 includes a glass sheet 12, a resin frame 14 provided around the periphery of the glass sheet 12, and a decorative molding 16 disposed on a surface 14A of the resin frame 14. The resin frame 14 is integrally formed with the glass sheet 12 and the decorative molding 16. Here, the surface 14A of the resin frame 14 is the surface that faces the outside of the vehicle when the resin-framed glass sheet 10 is attached to a window opening (not shown) of the vehicle, and functions as a design surface expressed by the decorative molding 16, as will be described later.
[0017] <Glass plate> The glass plate 12 shown in FIG. 1 is formed into a substantially rectangular shape in a plan view. However, the shape of the glass plate 12 is not limited to a substantially rectangular shape and may be a substantially triangular shape, for example. The glass plate 12 may be inorganic glass or organic glass. Examples of inorganic glass that can be used without particular limitation include soda-lime glass, aluminosilicate glass, borosilicate glass, alkali-free glass, and quartz glass. Among these, soda-lime glass is particularly preferable in terms of manufacturing cost and formability. The forming method of the glass plate 12 is not particularly limited, but in the case of inorganic glass, a glass plate formed by a float method or the like is preferable.
[0018] When the glass plate 12 is made of inorganic glass, the glass plate 12 may be either untempered glass or tempered glass. Untempered glass is made by forming molten glass into a plate shape and slowly cooling it. Tempered glass is made by forming a compressive stress layer on the surface of untempered glass, and may be either air-cooled tempered glass or chemically tempered glass.
[0019] If the tempered glass is physically tempered glass (e.g., air-cooled tempered glass), the glass surface may be tempered by a procedure other than slow cooling, such as rapidly cooling a uniformly heated glass sheet from a temperature near its softening point during bending, thereby creating a compressive stress layer on the glass surface due to the temperature difference between the glass surface and the glass interior. On the other hand, if the tempered glass is chemically tempered glass, the glass surface may be tempered by creating compressive stress on the glass surface using an ion exchange method or the like after bending. Glass that absorbs ultraviolet or infrared rays may also be used. Furthermore, the glass sheet 12 is preferably transparent, but may be colored to the extent that transparency is not impaired.
[0020] The glass sheet 12 may have a single curve formed by bending in only one direction, or may have a complex curve formed by bending in two directions (for example, a predetermined direction and a direction perpendicular to the predetermined direction). Gravity forming, press forming, roller forming, or the like is used to bend the glass sheet 12. When the glass sheet 12 is bent to a predetermined curvature, the radius of curvature of the glass sheet 12 may be 1,000 to 100,000 mm.
[0021] The glass plate 12 may be a single glass plate, or may be, for example, laminated glass formed by bonding two or more glass plates together via an interlayer film. The interlayer film of the laminated glass may be, for example, a known thermoplastic resin film made of polyvinyl butyral (PVB) or ethylene vinyl acetate copolymer (EVA). The interlayer film of the laminated glass may be transparent or colored. The interlayer film may also be two or more layers.
[0022] When the glass plate 12 is laminated glass, the thickness of the glass plate located on the outside and the thickness of the glass plate located on the inside when the glass plate 12 is installed in a vehicle may be the same or different. When the glass plate 12 is installed in a vehicle, the thickness of the glass plate located on the outside is preferably 1.0 mm or more and 3.0 mm or less. If the thickness of the glass plate located on the outside is 1.0 mm or more, sufficient strength is provided for stone chip resistance, etc., and if it is 3.0 mm or less, the mass of the laminated glass is not too large, which is preferable in terms of fuel efficiency of the vehicle. The thickness of the glass plate located on the inside is preferably 0.3 mm or more and 2.3 mm or less. If the thickness of the glass plate located on the inside of the vehicle is 0.3 mm or more, handling is good, and if it is 2.3 mm or less, the mass is not too large. It is preferable that the thickness of the glass plate located on the outside and the glass located on the inside are each 1.8 mm or less, as this allows for both weight reduction and sound insulation of the glass plate 12. The glass plate located on the inside may be chemically strengthened glass. When the glass located on the inside is chemically strengthened glass, it is preferable that the compressive stress value of the glass surface is 300 MPa or more and the depth of the compressive stress layer is 2 μm or more.
[0023] When the glass plate 12 is a single glass plate, the glass plate 12 is preferably air-cooled and tempered glass, and in this case, the thickness of the glass plate 12 is preferably 1.8 mm or more and 5.0 mm or less.
[0024] When the glass plate 12 is made of organic glass, examples of the material for the organic glass include transparent resins such as polycarbonate and acrylic resins (for example, polymethyl methacrylate).
[0025] <Resin frame> As an example, the resin frame 14 is provided so as to surround the entire periphery of the glass plate 12. Examples of materials for the resin frame 14 include synthetic resins such as polyvinyl chloride (PVC) and thermoplastic elastomers (TPE). An example of the thermoplastic elastomer (TPE) is polyolefin-based thermoplastic elastomer (TPO). The resin frame 14 is provided so as to surround the glass plate 12 by placing the glass plate 12 and the decorative molding 16 in a mold 30 (see FIG. 4) having a cavity corresponding to the shape of the resin frame 14, and then injecting a molten resin (hereinafter also referred to as molten resin) of the above-mentioned synthetic resin into the cavity.
[0026] The resin frame 14 of this example is colored black by adding carbon black to the synthetic resin, and the black surface 14A functions as a design surface. The color of the resin frame 14 is not limited to black and may be other colors. As shown in FIG. 2 , the resin frame 14 of this example is a so-called three-sided molding, having three inner surfaces 15A, 15B, and 15C that contact the outer surface 13A, inner surface 13B, and end surface 13C of the glass plate 12, respectively.
[0027] <Decorative Mall> The decorative molding 16 has the following design shape. That is, the decorative molding 16 has an elongated or frame-like shape in a plan view, and is provided along the surface 14A of the resin frame 14. By providing the decorative molding 16 on the surface 14A of the resin frame 14, the decorative molding 16 has a surface 16A exposed from the surface 14A of the resin frame 14, a back surface 16B facing the surface 14A of the resin frame 14, and edge portions 16C and 16D on both sides embedded in the resin frame 14. When the resin-framed glass plate 10 is attached to a vehicle, the surface 16A faces the outside of the vehicle and functions as a first surface, and the back surface 16B faces the inside of the vehicle and functions as a second surface.
[0028] 3 is a perspective view showing the resin frame 14 and the decorative molding 16 separated from each other. As shown in the figure, the decorative molding 16 in this example is a transparent design film 20, and as an example, is a shaped film produced by shaping a transparent film alone into the above-mentioned design shape. When the resin-framed glass plate 10 is attached to a vehicle, the decorative molding 16 is disposed on the outside of the vehicle.
[0029] In this example, an acrylic film is used as the design film 20. The acrylic film has high transparency (total light transmittance: 92% (compliant with ISO-13468-1, JIS-K-7361-1) The resin-framed glass plate 10 of this example has a value obtained by a measurement method based on the design film 20). As a result, the black color of the surface 14A of the resin frame 14 can be expressed (visually recognized) through the design film 20. When the black color of the surface 14A of the resin frame 14 is expressed through the transparent design film 20 in this way, the black color of the design surface can be made high-gloss, compared to, for example, a form in which black is expressed by attaching a black film or applying black paint to the surface of the decorative molding that is exposed to the outside of the vehicle. Furthermore, since the design film 20 is provided on the outside of the vehicle of the surface 14A of the resin frame 14, the surface 14A of the resin frame 14 can be protected by the design film 20. In particular, acrylic films have high abrasion resistance, so they can protect the resin frame 14. In other words, if the design film 20 is an acrylic film, it is preferable because the surface 14A is less likely to be scratched even if it is exposed to the outside of the vehicle.
[0030] As described above, according to the embodiment of the glass plate 10 with a resin frame, the decorative molding 16 is a transparent design film 20, and when the glass plate 10 with a resin frame is attached to a vehicle, the decorative molding 16 is positioned on the outside of the vehicle, so that the surface 14A (design surface) of the resin frame 14 expressed by the decorative molding 16 can be protected by the decorative molding 16, and the black color of the surface 14A (design surface) of the resin frame 14 can be made high-gloss.
[0031] In the above embodiment, an acrylic film was used as the decorative film 20. However, this is not a limitation, and other transparent films (e.g., transparent films made of polycarbonate, polyvinyl chloride, polyethylene terephthalate, etc.) may also be used. However, considering the transparency required to achieve a high gloss finish on the black surface 14A of the resin frame 14, a total light transmittance of 80% or more is preferable. From this perspective, a polycarbonate film with a total light transmittance of 87% can be used instead. In this case, since polycarbonate films are softer and less abrasion-resistant than acrylic films, it is preferable to form a hard coat layer on the surface of the polycarbonate film (the outer surface of the vehicle). The hard coat layer can be formed by applying a coating agent containing a resin with high surface hardness, such as an acrylic, melamine, urethane, epoxy, or silicone resin. The thickness of the decorative film 20 is not particularly limited, but is, for example, 0.3 mm to 1.0 mm.
[0032] [Method of manufacturing a glass plate with a resin frame] Next, a method for manufacturing a resin-framed glass plate 10 according to one embodiment of the present invention will be described with reference to a mold 30 shown in Fig. 4 and a flowchart showing the manufacturing steps shown in Fig. 5. Note that Fig. 4 shows a diagram in which molten resin 34 that will become the resin frame 14 has already been injected into a cavity 32 of the mold 30, but the following description will start from the state before the molten resin 34 is injected into the cavity 32.
[0033] The manufacturing method of this embodiment is roughly divided into a decorative molding fabrication step (S100), an attachment step (S200), and a resin frame molding step (S300).
[0034] In the decorative molding production process (S100), first, a transparent acrylic film cut to the size of the decorative molding 16 is placed in a mold of a high-pressure molding machine, and then pressed against the mold with compressed air pressure to form it into the shape of the mold. This produces a transparent decorative film 20 as the decorative molding 16. If a product design (such as letters) is printed on the film before shaping in the high-pressure molding machine, a decorative film 20 with the product design attached can be obtained. Alternatively, product information such as letters or symbols can be engraved on the shaping surface of the mold, and this product information can be transferred to the film during shaping, resulting in a decorative film 20 with the product information expressed as a relief pattern.
[0035] Next, in the mounting step (S200), as shown in Fig. 4, the surface 16A of the decorative molding 16 is mounted on the inner surface 38 of the lower mold 36 that constitutes the mold 30. A recess 38A is formed in the inner surface 38, and this recess 38A functions as a dedicated mounting portion for disposing the decorative molding 16 on the resin frame 14.
[0036] Next, the peripheral edge 13D of the glass plate 12 is attached to a predetermined position in the lower mold 36. After this, the upper mold 40 of the mold 30 is fixed to the lower mold 36. As a result, a cavity 32 is formed between the lower mold 36 and the upper mold 40, and the decorative molding 16 and the peripheral edge 13D of the glass plate 12 are housed in this cavity 32. This completes the attachment step (S200).
[0037] Next, in the resin frame molding step (S300), for example, molten resin 34 is injected into cavity 32 through resin injection port 42 provided in upper mold 40, filling cavity 32 with molten resin 34. Thereafter, lower mold 36 and upper mold 40 are separated from each other. This completes the resin frame molding step (S300). Through these steps, the resin-framed glass plate 10 shown in FIG. 1 is manufactured.
[0038] According to the above manufacturing method, it is possible to manufacture a glass plate 10 with a resin frame that can protect the surface 14A (design surface) of the resin frame 14 expressed by the decorative molding 16 and can make the color of the surface 14A (design surface) of the resin frame 14 high gloss.
[0039] <Modified decorative molding> 6A is a cross-sectional view of a decorative molding 50 according to a first modified example. In describing this decorative molding 50, the same or similar members as those in the decorative molding 16 shown in FIG. 2 are designated by the same reference numerals and description thereof will be omitted.
[0040] The decorative film 20 constituting the decorative molding 50 has a first surface 20A facing the outside of the vehicle and a second surface 20B facing the inside of the vehicle, and the second surface 20B is colored, for example, black. That is, in the decorative molding 50 of the first modified example, the second surface 20B of the decorative film 20 functions as the decorative surface. Note that Fig. 6A shows a black colored layer 52 formed on the second surface 20B of the decorative film 20, and this colored layer 52 is formed by vapor deposition, printing, or coating of a pigment.
[0041] As in the first variant, even if the second surface 20B of the design film 20 is colored, the black color can be expressed through the transparent design film 20, so the black color of the second surface 20B expressed by the decorative molding 50 can be made high gloss. Also, since the second surface 20B of the design film 20 faces the inside of the vehicle, this second surface 20B can be protected by the design film 20. The colored layer 52 is not limited to black and may be colored in other colors. Other colors can also be made high gloss through the transparent design film 20.
[0042] 6B is a cross-sectional view of a decorative molding 60 according to a second modified example. In describing this decorative molding 60, the same or similar members as those in the decorative molding 16 shown in FIG. 2 are designated by the same reference numerals, and description thereof will be omitted.
[0043] The decorative film 20 that constitutes the decorative molding 60 has a first surface 20A facing the outside of the vehicle and a second surface 20B facing the inside of the vehicle, and the second surface 20B of the decorative film 20 has a transparent reinforcing film 62 that is more impact resistant than the decorative film 20.
[0044] According to the decorative molding 60 of the second modification, the decorative film 20 can be reinforced by the reinforcing film 62. In this case, the reinforcing film 62 is preferably a film having a total light transmittance of 80% or more. As a result, the black color of the surface 14A of the resin frame 14 (see FIG. 3) expressed by the decorative molding 60 can be made high gloss.
[0045] Furthermore, the reinforcing film 62 is preferably a shaped film that is produced by shaping processing in the same manner as the decorative film 20. That is, the decorative film 20 before shaping processing and the reinforcing film 62 are adhered together with a transparent adhesive, and then shaped in a high-pressure shaping machine to produce the decorative molding 60. This allows the transparent decorative molding 60 to be produced.
[0046] It is also preferable to use an acrylic film as the decorative film 20 and a polycarbonate film as the reinforcing film 62. As a result, the highly abrasion-resistant acrylic film is located on the outside of the vehicle, thereby preventing scratches on the decorative molding 60, and the highly impact-resistant polycarbonate film is located between the decorative film 20 and the resin frame 14, thereby improving the impact resistance of the decorative molding 60. In other words, it is possible to provide a decorative molding 60 that utilizes the advantages of both acrylic film and polycarbonate film.
[0047] Fig. 6C is a cross-sectional view of a decorative molding 70 according to a third modified example. In describing this decorative molding 70, the same or similar members as those in the decorative molding 60 shown in Fig. 6B are designated by the same reference numerals, and description thereof will be omitted.
[0048] The decorative molding 70 of the third modified example has a transparent reinforcing film 62 on the second surface 20B of the decorative film 20, which has higher impact resistance than the decorative film 20, similar to the decorative molding 60 of the second modified example, but the second surface 20B of the decorative film 20 is colored similar to the decorative molding 50 of the first modified example. Note that in Figure 6C, a black colored layer 72 is shown on the second surface 20B of the decorative film 20.
[0049] According to the decorative molding 70 of the third modified example, the decorative film 20 and the reinforcing film 62 improve the abrasion resistance and impact resistance of the decorative molding 70, while making the black color of the second surface 20B of the decorative film 20 high gloss. In addition, the second surface 20B of the decorative film 20 can be protected by the decorative film 20.
[0050] 6C, the reinforcing film 62 has a first surface 62A facing the outside of the vehicle and a second surface 62B facing the inside of the vehicle, and the first surface 62A or the second surface 62B is colored black. The decorative molding of the fourth modified example also provides the same effects as the decorative molding 70 of the third modified example.
[0051] 7 is a cross-sectional view of a main part of a resin-framed glass plate 80 according to another embodiment of the present invention. In describing this resin-framed glass plate 80, the same or similar members as those in the resin-framed glass plate 10 shown in FIGS. 1 and 2 are designated by the same reference numerals, and descriptions thereof will be omitted.
[0052] The difference between the resin-framed glass plate 80 shown in Figure 7 and the resin-framed glass plate 10 shown in Figures 1 and 2 is that the resin frame 14 of the resin-framed glass plate 10 has a three-sided molding, while the resin frame 82 of the resin-framed glass plate 80 has a two-sided molding.
[0053] The two-sided molding has a resin frame 82 that has two inner surfaces 83B, 83C that contact the inner surface 13B and end surface 13C of the glass plate 12, and has a shape in which the resin frame 82 does not protrude from the outer surface 13A of the glass plate 12. Compared to a three-sided molding, the two-sided molding has a resin frame 82 that does not protrude outside the vehicle body, so it can achieve a flush surface for the vehicle body.
[0054] Even with such a glass plate 80 with a resin frame having two moldings, by placing a decorative molding 16 on the resin frame 82 located in the out-of-plane direction of the glass plate 12, the same effect as that of the glass plate 10 with a resin frame shown in Figures 1 and 2 can be obtained.
[0055] An example of a resin-frame-attached glass plate and a method for manufacturing a resin-frame-attached glass plate according to the present invention has been described above. However, the technology of the present invention is not limited to the embodiment, and several improvements or modifications may be made within the scope of the gist of the present invention. The entire contents of the specification, claims, drawings and abstract of Japanese Patent Application No. 2020-209778, filed on December 18, 2020, are hereby incorporated by reference as the disclosure of the specification of the present invention. [Explanation of symbols]
[0056] 10...glass plate with resin frame, 12...glass plate, 14...resin frame, 16...decorative molding, 20...design film, 30...mold, 32...cavity, 34...molten resin, 36...lower mold, 38...inner surface, 40...upper mold, 42...resin injection port, 50...decorative molding, 52...colored layer, 60...decorative molding, 62...reinforcing film, 70...decorative molding, 72...colored layer, 80...glass plate with resin frame, 82...resin frame
Claims
1. A resin-framed glass plate comprising: a glass plate; a resin frame provided on a peripheral edge of the glass plate; and a decorative molding disposed in the resin frame, wherein the resin frame is integrally formed with the glass plate and the decorative molding, The decorative molding is a transparent design film, When the resin-framed glass plate is attached to a vehicle, the decorative molding is disposed on the outside of the vehicle, The surface of the resin frame on the side of the design film functions as a design surface, The decorative film has a first surface facing the outside of the vehicle and a second surface facing the inside of the vehicle, A transparent reinforcing film having higher impact resistance than the decorative film is provided on the second surface of the decorative film, The reinforcing film has a total light transmittance of 80% or more. Glass plate with resin frame.
2. The resin-framed glass plate according to claim 1 , wherein the decorative film has a total light transmittance of 80% or more.
3. The resin-framed glass plate according to claim 1 or 2, wherein the decorative film is a shaping film.
4. The decorative film has a first surface facing the outside of the vehicle and a second surface facing the inside of the vehicle, The resin-framed glass plate according to claim 1 , wherein the second surface is colored.
5. The resin-framed glass plate according to claim 1 , wherein the decorative film is an acrylic film.
6. The resin-framed glass plate according to claim 1 , wherein the decorative film and the reinforcing film are shaped films.
7. The reinforcing film has a first surface facing the outside of the vehicle and a second surface facing the inside of the vehicle, The first surface or the second surface of the reinforcing film is colored. The resin-frame-attached glass plate according to claim 1 or 6.
8. The decorative film is an acrylic film, and the reinforcing film is a polycarbonate film. The resin-frame-attached glass plate according to claim 1 , 6 or 7 .
9. A method for manufacturing a resin-framed glass plate for a vehicle window, in which the resin frame is integrally formed with the glass plate and a decorative molding, comprising: The decorative molding is produced by shaping a transparent film into a design shape; The decorative molding and the glass plate are attached to a mold for molding the resin frame body, a molten resin is injected into the cavity of the mold to produce a resin-framed glass plate; The decorative molding is a transparent design film, The surface of the resin frame on the side of the design film functions as a design surface, The decorative film has a first surface facing the outside of the vehicle and a second surface facing the inside of the vehicle, A transparent reinforcing film having higher impact resistance than the decorative film is provided on the second surface of the decorative film, The reinforcing film has a total light transmittance of 80% or more. A method for manufacturing a glass plate with a resin frame.
Citation Information
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