Ambient light glass and vehicle

By setting staggered pattern layers at intervals on the glass body and utilizing ambient light sources and mood light sources to form a variety of light source reflection effects, the problem of a single pattern on the mood light glass is solved and a diverse visual experience is achieved.

CN118571137BActive Publication Date: 2025-10-10FUYAO GLASS IND GROUP CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202410668800.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-05-28
Publication Date
2025-10-10
Estimated Expiration
2044-05-28

AI Technical Summary

Technical Problem

The existing atmosphere light glass has a single pattern and cannot meet the diverse aesthetic needs.

Method used

The first pattern layer and the second pattern layer are spaced apart in the thickness direction of the glass body, and are partially staggered along the thickness direction of the glass body, and different light source reflection effects are formed by using the ambient light source and the atmosphere light source, thereby forming a variety of atmosphere light effects.

Benefits of technology

Through the staggered pattern layers, the atmosphere light glass achieves a variety of light source reflection effects, meeting diverse aesthetic needs and providing different visual experiences.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN118571137B_ABST
    Figure CN118571137B_ABST
Patent Text Reader

Abstract

The application discloses an ambient light glass and a vehicle, and the ambient light glass comprises a glass body, and a first ambient light source installed on the glass body; wherein the glass body is provided with a first pattern layer and a second pattern layer at intervals in the thickness direction of the glass body, and the projections of the first pattern layer and the second pattern layer along the thickness direction of the glass body are at least partially misaligned. The first pattern layer and the second pattern layer are arranged at intervals in the thickness direction, and the glass body has a misalignment area of the first pattern layer and the second pattern layer, two light sources are formed by using an ambient light source and the first ambient light source, light emitted by one of the light sources is reflected by one of the pattern layers towards the viewing side of the glass body to form a pattern, and light emitted by the other light source is reflected by the other pattern layer from the misalignment area towards the viewing side of the glass body to form another pattern, so that various ambient light effects are achieved, different visual experiences are provided, and aesthetic demands for diversity are met.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of glass, and in particular to an atmosphere lamp glass.

[0002] The present invention relates to the technical field of vehicles, and in particular to a vehicle. Background Art

[0003] Ambient lighting is a lighting device that utilizes a light source combined with a circuit board to achieve variable brightness, grayscale, and color control. Ambient lighting can be installed on car windows, as well as other surfaces such as building windows, creating ambient lighting glass, which has a wide range of applications. However, existing ambient lighting glass displays relatively simple patterns, failing to meet diverse aesthetic needs. Summary of the Invention

[0004] The purpose of the present invention is to provide an ambient light glass and a vehicle to solve the technical problem that the current ambient light glass has a single pattern and cannot meet diverse aesthetic needs.

[0005] The above-mentioned purpose of the present invention can be achieved by adopting the following technical solutions:

[0006] The present invention provides an ambient light glass, comprising: a glass body; a first ambient light light source mounted on the glass body; wherein the glass body is provided with a first pattern layer and a second pattern layer spaced apart in a thickness direction thereof, and the projections of the first pattern layer and the second pattern layer along the thickness direction of the glass body are at least partially offset, so that the first pattern layer can reflect light emitted by the ambient light source toward the viewing side of the glass body to form a first pattern, and the second pattern layer can reflect light emitted by the first ambient light light source toward the viewing side of the glass body to form a second pattern.

[0007] In an embodiment of the present invention, the first pattern layer and the second pattern layer respectively include one or a combination of a mirror reflection layer and a reflective medium layer.

[0008] In an embodiment of the present invention, the glass body is further provided with a third pattern layer, and the third pattern layer is arranged closely to the edge of the first pattern layer. The third pattern layer can reflect the light emitted by the ambient light source toward the viewing side of the glass body to form a third pattern, and the third pattern layer can also reflect part of the light reflected by the second pattern layer toward the viewing side of the glass body to form a fourth pattern.

[0009] In an embodiment of the present invention, the third pattern layer includes one or a combination of a mirror reflection layer and a reflective medium layer.

[0010] In an embodiment of the present invention, the glass body has at least one transparent layer, the first pattern layer and the second pattern layer are respectively arranged on the surface of at least one of the transparent layers or inside at least one of the transparent layers, and the first pattern layer is arranged closer to the viewing side of the glass body than the second pattern layer.

[0011] In an embodiment of the present invention, the glass body is a single piece of glass, the first pattern layer is arranged on the outer surface of the glass body facing the viewing side thereof, and the second pattern layer is arranged on the inner surface of the glass body facing away from the viewing side thereof; or the glass body is a laminated glass in which multiple pieces of glass are stacked, one of the glasses being an outer piece of glass facing the viewing side of the glass body, the first pattern layer is arranged on the outer surface of the outer piece of glass facing the viewing side of the glass body, and the second pattern layer is arranged on the inner surface of the outer piece of glass facing away from the viewing side of the glass body.

[0012] In an embodiment of the present invention, the atmosphere light glass also includes an exterior decoration, the glass body has a display surface arranged toward its viewing side, the exterior decoration is installed on the display surface of the glass body and cooperates with the glass body to form an atmosphere light installation cavity, and the first atmosphere light source is located in the atmosphere light installation cavity.

[0013] In an embodiment of the present invention, the atmosphere light glass further includes a second atmosphere light light source, the exterior trim is provided with a trim pattern structure, the second atmosphere light light source is located in the atmosphere light mounting cavity and is arranged opposite to the trim pattern structure, and the light emitted by the second atmosphere light light source can pass through the trim pattern structure and be emitted toward the viewing side of the glass body to form a trim pattern.

[0014] In an embodiment of the present invention, the atmosphere light glass further includes an atmosphere light mounting structure, which includes a circuit board, and the first atmosphere light light source and the second atmosphere light light source are both mounted on the circuit board and electrically connected to the circuit board; wherein, the circuit board is mounted on the glass body, and the first atmosphere light source is arranged opposite to the edge end face of the glass body, and the light emitted by the first atmosphere light source can be introduced into the second pattern layer through the glass body; or the circuit board is mounted on the glass body through a light guide, and the first atmosphere light source is arranged opposite to the light incident surface of the light guide, and the light emitted by the first atmosphere light source can be introduced into the second pattern layer through the light guide and the glass body in sequence.

[0015] In an embodiment of the present invention, the display surface of the glass body is set to face the outside of the vehicle, and the ambient light installation structure also includes a wiring harness and a connector. One end of the wiring harness is located in the ambient light installation cavity and is electrically connected to the circuit board, and the other end of the wiring harness bypasses the edge of the glass body and extends into the vehicle and is electrically connected to the connector.

[0016] In an embodiment of the present invention, an outer edging structure is provided on the edge of the glass body, an inner edging structure is provided on the display surface of the glass body, the exterior decoration is sealedly connected to the outer edging structure and the inner edging structure, and the wiring harness is clamped between the edge of the glass body and the outer edging structure.

[0017] The present invention also provides a vehicle comprising the above-mentioned atmosphere lamp glass.

[0018] The characteristics and advantages of the present invention are:

[0019] The atmosphere light glass of the present invention arranges the first pattern layer and the second pattern layer at intervals in the thickness direction of the glass body, and makes the projections of the first pattern layer and the second pattern layer along the thickness direction of the glass body at least partially staggered, so that the glass body has a staggered area between the first pattern layer and the second pattern layer, and then utilizes the ambient light source and the first atmosphere light source to form two light sources, utilizes one pattern layer to reflect the light emitted by one of the light sources toward the viewing side of the glass body to form a pattern, and utilizes the other pattern layer to reflect the light emitted by the other light source from the staggered area toward the viewing side of the glass body to form another pattern. Therefore, the atmosphere light glass of the present invention has a variety of atmosphere light effects, thereby providing different visual experiences and meeting diverse aesthetic needs.

[0020] The vehicle of the present invention enriches the appearance display effect of the vehicle by arranging the above-mentioned atmosphere light glass. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.

[0022] Figure 1 Schematic diagram of the structure of the atmosphere light glass in one embodiment of the present invention.

[0023] Figure 2 FIG. 1 is a schematic structural diagram of the atmosphere light glass in another embodiment of the present invention.

[0024] Figure 3 FIG. 1 is a schematic structural diagram of the atmosphere light glass in yet another embodiment of the present invention.

[0025] Figure 4 Schematic diagram of the structure of the atmosphere light glass in another embodiment of the present invention.

[0026] In the picture:

[0027] 10. Glass body; 11. Outer glass; 111. Outer surface; 112. Inner surface; 113. Edge end surface; 12. Inner glass; 121. Outer surface; 122. Inner surface; 13. Intermediate adhesive layer; 14. Display surface; 15. Mounting surface;

[0028] 20. First ambient light source; 30. First pattern layer; 40. Second pattern layer; 50. Third pattern layer;

[0029] 60. Ambient light mounting structure; 61. Circuit board; 62. Light guide; 63. Wiring harness; 64. Connector; 65. Coupling agent layer; 66. Adhesive layer;

[0030] 70. Exterior trim; 71. Trim pattern structure; 72. Adhesive structure;

[0031] 80. Second ambient light source;

[0032] 90. Peripheral edging structure; 91. Sealing lip; 92. Peripheral groove;

[0033] 100. Inner edging structure; 1001. Inner groove;

[0034] 110, body sheet metal; 1101, body adhesive layer;

[0035] 120. Occlusion layer. DETAILED DESCRIPTION

[0036] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0037] Implementation Method 1

[0038] like Figure 1 As shown, the present invention provides an ambient light glass, comprising: a glass body 10; a first ambient light light source 20, mounted on the glass body 10; wherein the glass body 10 is provided with a first pattern layer 30 and a second pattern layer 40 spaced apart in a thickness direction thereof, and the projections of the first pattern layer 30 and the second pattern layer 40 along the thickness direction of the glass body 10 are at least partially staggered.

[0039] Specifically, the first pattern layer 30 and the second pattern layer 40 are configured to reflect light emitted by an ambient light source, while the other is configured to reflect light emitted by the first ambient light source 20. For ease of description, the pattern layer that reflects light emitted by the ambient light source toward the viewing side of the glass body 10 to form a first pattern is defined as the first pattern layer 30, and the pattern layer that reflects light emitted by the first ambient light source 20 toward the viewing side of the glass body 10 to form a second pattern is defined as the second pattern layer 40. Ambient light sources include, but are not limited to, daytime sunlight, and can also be nighttime sources such as street lamps or other lighting sources.

[0040] The projections of the first pattern layer 30 and the second pattern layer 40 along the thickness direction of the glass body 10 are at least partially offset, that is, a plane parallel to the glass body 10 is used as the projection plane, and the patterns formed by projecting the first pattern layer 30 and the second pattern layer 40 along the thickness direction of the glass body 10 onto the projection plane are at least partially offset. This is equivalent to the first pattern layer 30 and the second pattern layer 40 being at least partially offset in the planar direction of the glass body 10, that is, there is an offset region of the first pattern layer 30 and the second pattern layer 40 in any direction within the plane of the glass body 10. This is also equivalent to the first pattern layer 30 and the second pattern layer 40 not completely overlapping or only partially overlapping in the thickness direction of the glass body 10.

[0041] In some embodiments of the present invention, the first pattern layer 30 is disposed closer to the viewing side of the glass body 10 than the second pattern layer 40, ensuring that ambient light can be projected onto the first pattern layer 30 from any direction without being blocked by the second pattern layer 40. Figure 1 Referring to the light path a shown in FIG, the first pattern layer 30 reflects the light emitted by the ambient light source toward the viewing side of the glass body 10 to form a first pattern; Figure 1 As shown in the light path b in FIG, the second pattern layer 40 reflects the light emitted by the first ambient light source 20 from the offset area toward the viewing side of the glass body 10 to form a second pattern.

[0042] In other embodiments of the present invention, the second pattern layer 40 is arranged closer to the viewing side of the glass body 10 relative to the first pattern layer 30. The second pattern layer 40 reflects the light emitted by the first ambient light source 20 toward the viewing side of the glass body 10 to form a second pattern. The light emitted by the ambient light source is projected from the offset area to the first pattern layer 30, and is reflected from the offset area toward the viewing side of the glass body 10 through the first pattern layer 30 to form the first pattern.

[0043] like Figure 1As shown, the atmosphere light glass of the present invention is formed by arranging the first pattern layer 30 and the second pattern layer 40 at intervals in the thickness direction of the glass body 10, and making the projections of the first pattern layer 30 and the second pattern layer 40 along the thickness direction of the glass body 10 at least partially staggered, so that the glass body 10 has a staggered area of ​​the first pattern layer 30 and the second pattern layer 40, and then using the ambient light source and the first atmosphere light source 20 to form two light sources, using one of the pattern layers to reflect the light emitted by one of the light sources toward the viewing side of the glass body 10 to form a pattern, and using the other pattern layer to reflect the light emitted by the other light source from the staggered area toward the viewing side of the glass body 10 to form another pattern. Therefore, the atmosphere light glass of the present invention has a variety of atmosphere light effects, thereby providing different visual experiences and meeting diverse aesthetic needs.

[0044] Among them, when there is an ambient light source but the first ambient light source 20 is not turned on, the ambient light source can form an ambient light effect of a first pattern; when there is no ambient light source and the first ambient light source 20 is turned on, the first ambient light source 20 can form an ambient light effect of a second pattern; when there is an ambient light source and the first ambient light source 20 is turned on, the ambient light source and the first ambient light source 20 can form an ambient light effect that matches the first pattern and the second pattern.

[0045] The ambient light glass of the present invention is particularly suitable for use in the automotive field. The side of the glass body 10 facing outward from the vehicle is the viewing side of the glass body 10. Specifically, the glass body 10 has a display surface 14 facing outward from the vehicle, i.e., the surface of the glass body 10 visible from the viewing side. The glass body 10 also has a mounting surface 15 facing inward from the vehicle. The mounting surface 15 is bonded to the vehicle body sheet metal 110 via a vehicle body adhesive layer 1101. Of course, the ambient light glass of the present invention can also be used in other technical fields, such as architecture, and can similarly produce the aforementioned beneficial effects.

[0046] Combine Figures 1 to 2 As shown, in an embodiment of the present invention, the glass body 10 has at least one transparent layer, and the first pattern layer 30 and the second pattern layer 40 are respectively arranged on the surface of the at least one transparent layer or inside the at least one transparent layer. The transparent layer can be glass or an intermediate adhesive layer 13 sandwiched between two glasses. Optionally, the first pattern layer 30 and the second pattern layer 40 are printed and arranged on both sides of a transparent layer. Optionally, the first pattern layer 30 and the second pattern layer 40 are printed and arranged on the surfaces of different transparent layers. Optionally, one of the first pattern layer 30 and the second pattern layer 40 is printed and arranged on the surface of a transparent layer, and the other is embedded in the same or different transparent layer. Optionally, the first pattern layer 30 and the second pattern layer 40 are embedded in the same or different transparent layers.

[0047] The first pattern layer 30 and the second pattern layer 40 can be arranged inside or on the surface of any transparent layer. When the first pattern layer 30 is arranged closer to the viewing side of the glass body 10 relative to the second pattern layer 40, the position of the first ambient light source 20, the refractive index of the transparent layer located outside the second pattern layer 40, and the position of the first pattern layer 30 are adaptively adjusted to ensure that the light emitted by the first ambient light source 20 can be projected onto the second pattern layer 40 through the transparent layer, and the light reflected from the second pattern layer 40 can be projected onto the viewing side of the glass body 10 from the offset area; when the second pattern layer 40 is arranged closer to the viewing side of the glass body 10 relative to the first pattern layer 30, the first pattern layer 30 is adaptively adjusted to ensure that the light emitted by the first ambient light source 20 can be projected onto the second pattern layer 40 through the transparent layer, and the light reflected from the second pattern layer 40 can be projected onto the viewing side of the glass body 10 from the offset area; The position of the ambient light source 20 and the refractive index of the transparent layer located outside the second pattern layer 40 ensure that the light emitted by the first ambient light source 20 can be projected onto the second pattern layer 40 through the transparent layer. The refractive index of the transparent layer located outside the first pattern layer 30 and the offset region between the first pattern layer 30 and the second pattern layer 40 are adaptively adjusted so that the ambient light source can be projected onto the first pattern layer 30 through the offset region after being refracted by the transparent layer located outside the first pattern layer 30. Furthermore, the light reflected from the first pattern layer 30 can be projected onto the viewing side of the glass body 10 through the offset region.

[0048] like Figure 1 and Figure 2 As shown, in some embodiments of the present invention, the glass body 10 is a laminated glass formed by stacking multiple glass sheets, one of which is an outer glass sheet 11 positioned toward the viewing side of the glass body 10 (i.e., facing the outside of the vehicle), and another is an inner glass sheet 12 positioned away from the viewing side of the glass body 10 (i.e., facing the inside of the vehicle). An outer surface 121 of the inner glass sheet 12, positioned toward the viewing side of the glass body 10, is bonded to an inner surface 122 of the outer glass sheet 11, positioned away from the viewing side of the glass body 10, via an intermediate adhesive layer 13.

[0049] Specifically, the first pattern layer 30 is provided on the outer surface 111 of the outer glass 11, and the second pattern layer 40 is provided on the inner surface 112 of the outer glass 11. By using the outer surface 121 of the outer glass 11 as the surface for providing the first pattern layer 30, the ambient light source can be directly irradiated on the first pattern layer 30; by using the inner surface 112 of the outer glass 11 as the surface for providing the second pattern layer 40, the light emitted by the first ambient light source 20 is transmitted through the outer glass 11 to the second pattern layer 40, and the light reflected by the second pattern layer 40 only needs to pass through the outer glass 11 to be emitted. Figure 1As shown, the outer glass 11 and the inner glass 12 completely overlap, the display surface 14 of the glass body 10 is the outer surface 111 of the outer glass 11 facing the viewing side of the glass body 10, and the mounting surface 15 of the glass body 10 is the inner surface 122 of the inner glass 12 facing away from the viewing side of the glass body 10. Figure 2 As shown, the edge of the inner glass 12 extends outward relative to the edge of the outer glass 11, forming an overlap. The display surface 14 of the glass body 10 includes the outer surface 111 of the outer glass 11 and the edge of the outer surface 121 of the inner glass 12 that is not in contact with the outer glass 11. The inner surface 122 of the inner glass 12 serves as the mounting surface 15 of the glass body 10.

[0050] like Figure 3 As shown, in some other embodiments of the present invention, the glass body 10 is a single piece of glass, and the two side surfaces of the glass are respectively a display surface 14 and a mounting surface 15, the display surface 14 constitutes the surface for setting the first pattern layer 30, and the mounting surface 15 constitutes the surface for setting the second pattern layer 40.

[0051] like Figures 1 to 3 As shown, in an embodiment of the present invention, the first pattern layer 30 and the second pattern layer 40 each comprise one or a combination of a specular reflective layer and a reflective dielectric layer. Preferably, the first pattern layer 30 comprises a specular reflective layer, and the second pattern layer 40 comprises a reflective dielectric layer. The specular reflective layer can display a better pattern effect when the ambient light source is strong (e.g., during bright daylight hours), while the reflective dielectric layer can display a better pattern effect when the ambient light source is weak (e.g., during dark night hours) using the first ambient light source 20.

[0052] like Figures 1 to 3 As shown, in some embodiments of the present invention, the first pattern layer 30 is solely a specular reflective layer, and the second pattern layer 40 is solely a reflective dielectric layer. In other embodiments of the present invention, the second pattern layer 40 may be a combination of a reflective dielectric layer and a specular reflective layer. In still other embodiments of the present invention, the first pattern layer 30 may be a combination of a reflective dielectric layer and a specular reflective layer. Alternatively, both the first pattern layer 30 and the second pattern layer 40 may be specular reflective layers. Alternatively, both the first pattern layer 30 and the second pattern layer 40 may be reflective dielectric layers.

[0053] Specifically, the mirror reflective layer can be printed on the surface of the glass body 10 by a mirror reflective material, or can be laminated to the surface of the glass body 10 by a mirror reflective film, or can be embedded in the glass of the glass body 10 or in the interior of the intermediate adhesive layer 13. The reflective medium layer can be printed on the surface of the glass body 10 by a reflective material, or can be laminated to the surface of the glass body 10 by a reflective film, or can be embedded in the glass of the glass body 10 or in the interior of the intermediate adhesive layer 13.

[0054] like Figures 1 to 3 As shown, in an embodiment of the present invention, the ambient light glass further includes an exterior trim 70. The glass body 10 has a display surface 14 facing its viewing side. The exterior trim 70 is mounted on the display surface 14 of the glass body 10 and cooperates with the glass body 10 to form an ambient light installation cavity, within which the first ambient light source 20 is located. The exterior trim 70, mounted on the glass body 10, forms the ambient light installation cavity, allowing the exterior trim 70 to decorate the glass body 10 while eliminating the need for a separate light-shielding housing to protect the first ambient light source 20. Specifically, the exterior trim 70 can be made of materials such as plastic, aluminum, iron, stainless steel, or other materials that can be custom-shaped.

[0055] like Figures 1 to 3 As shown, in an embodiment of the present invention, the ambient light glass further includes a second ambient light source 80. The exterior trim 70 is provided with a decorative pattern structure 71. The second ambient light source 80 is positioned within the ambient light mounting cavity and opposite the decorative pattern structure 71. Light emitted by the second ambient light source 80 passes through the decorative pattern structure 71 and is emitted toward the viewing side of the glass body 10, forming a decorative pattern. The addition of the decorative pattern structure 71 and the second ambient light source 80 imparts a luminous pattern effect to the exterior trim 70, further enriching the ambient light effect.

[0056] Specifically, the exterior trim 70 can be formed into a trim pattern structure 71 by two-color injection molding, masking electroplating and / or opening metal micropores; wherein, two-color injection molding is to use a colored and opaque plastic to injection mold the main body of the exterior trim 70, and at the same time use another translucent plastic to injection mold the trim pattern structure 71 of the exterior trim 70; masking electroplating is to first use translucent plastic to make the exterior trim 70, and then use stickers or tapes to mask the pattern design area of ​​the exterior trim 70, and then electroplating is performed on the unmasked area of ​​the exterior trim 70, and finally the masking material is removed to form a translucent trim pattern structure 71 in the pattern design area; metal micropores are to first use metal material to make the exterior trim 70, and then form the trim pattern structure 71 by arranging micropores on the exterior trim 70. Of course, in order to ensure the airtightness of the atmosphere lamp installation cavity, a translucent layer can be covered on the metal exterior trim 70 to block the micropores.

[0057] like Figures 1 to 3 As shown, in this embodiment of the present invention, the glass body 10 is provided with an outer edging structure 90 at its edge, and the display surface 14 of the glass body 10 is provided with an inner edging structure 100. The exterior trim 70 is sealedly connected to the outer edging structure 90 and the inner edging structure 100. Specifically, the outer edging structure 90 and the inner edging structure 100 are integrally formed on the glass body 10 by injection molding. The exterior trim 70 is bonded to the outer edging structure 90 and the inner edging structure 100 using an adhesive structure 72. The outer edging structure 90 is provided with an outer groove 92 that mates with the outer edge of the exterior trim 70, and the inner edging structure 100 is provided with an inner groove 1001 that mates with the inner edge of the exterior trim 70. Furthermore, the outer edging structure 90 is provided with a sealing lip 91 that seals against the vehicle body sheet metal 110.

[0058] like Figures 1 to 3 As shown, in an embodiment of the present invention, the ambient light glass further includes an ambient light mounting structure 60, which includes a circuit board 61. The first ambient light light source 20 and the second ambient light light source 80 are both mounted on and electrically connected to the circuit board 61. Specifically, the first ambient light light source 20 and the second ambient light light source 80 are both LED lamp beads mounted on the circuit board 61.

[0059] The ambient light mounting structure 60 also includes a wiring harness 63 and a connector 64. One end of the wiring harness 63 is located within the ambient light mounting cavity and electrically connected to the circuit board 61. The other end of the wiring harness 63 bypasses the edge of the glass body 10, extends into the vehicle, and is electrically connected to the connector 64. The wiring harness 63 is sandwiched between the edge of the glass body 10 and the peripheral edging structure 90. The peripheral edging structure 90 secures and protects the wiring harness 63, ensuring that external debris and rainwater do not enter the ambient light mounting cavity. The connector 64 electrically connects to the vehicle's electronic control system, which powers and controls the ambient light glass. In addition, to prevent the structure within the ambient light mounting cavity from being visible from the mounting surface 15 of the glass body 10 (i.e., from the side inside the vehicle), and to prevent light from the first ambient light light source 20 from emitting from the mounting surface 15 of the glass body 10, a shielding layer 120 is provided on the mounting surface 15 of the glass body 10 in the area corresponding to the ambient light mounting cavity. The shielding layer 120 may be a black ink layer or other shielding materials printed on the mounting surface 15 of the glass body 10 .

[0060] like Figure 1 and Figure 3As shown, in some embodiments of the present invention, the circuit board 61 is mounted on the glass body 10 through the light guide 62, and the first ambient light light source 20 is arranged opposite to the light incident surface of the light guide 62. The light emitted by the first ambient light light source 20 can be sequentially introduced into the second pattern layer 40 through the light guide 62 and the glass body 10.

[0061] Specifically, the light guide 62 is bonded to the outer surface 111 of the outer glass 11 via a coupling agent layer 65. The side of the circuit board 61 on which the first ambient light is mounted is bonded to the light guide 62 via an adhesive layer 66. The first ambient light source 20 is positioned opposite the light incident surface of the light guide 62. Light emitted by the first ambient light source 20 is guided through the light guide 62 and then directed from the outer surface 111 of the outer glass 11 into the outer glass 11. The light is then directed through the outer glass 11 into the second patterned layer 40 along a specific path. The inner edging structure 100 is bonded to the outer surface 111 of the outer glass 11, while the outer edging structure 90 covers the edge of the outer surface 111 of the outer glass 11, the edge end face 113 of the outer glass 11, the edge end face 113 of the inner glass 12, and the edge of the inner surface 122 of the inner glass 12.

[0062] like Figure 2 As shown, in some other embodiments of the present invention, the circuit board 61 is installed on the glass body 10, the first ambient light source 20 is arranged opposite to the edge end surface 113 of the glass body 10, and the light emitted by the first ambient light source 20 can be introduced into the second pattern layer 40 through the glass body 10.

[0063] Specifically, the circuit board 61 is directly bonded and fixed to the outer surface 111 of the outer glass 11 through the bonding layer 66, and the first ambient light source 20 is arranged opposite to the edge end surface 113 of the outer glass 11. Figure 2 In the light path b shown in FIG, light emitted by the first ambient light source 20 enters the outer glass 11 directly from the edge 113 of the outer glass 11, and is then directed through the outer glass 11 into the second pattern layer 40 along a specific path. The inner edging structure 100 is attached to the outer surface 111 of the outer glass 11, while the outer edging structure 90 covers the edge of the outer surface 121 of the inner glass 12, the edge 113 of the inner glass 12, and the edge of the inner surface 122 of the inner glass 12.

[0064] like Figure 4 As shown, in the embodiment of the present invention, the glass body 10 is further provided with a third pattern layer 50, and the third pattern layer 50 is arranged close to the edge of the first pattern layer 30. Figure 4In the light path c shown in FIG, the third pattern layer 50 can reflect light emitted by the ambient light source toward the viewing side of the glass body 10 to form a third pattern. The third pattern layer 50 can also reflect part of the light reflected by the second pattern layer 40 toward the viewing side of the glass body 10 to form a fourth pattern. By adding the third pattern layer 50 to the edge of the first pattern layer 30, when an ambient light source is present but the first ambient light source 20 is not turned on, the ambient light source can be used to create an ambient lighting effect in which the first and third patterns complement each other. When the ambient light source is absent and the first ambient light source 20 is turned on, the first ambient light source 20 can be used to create an ambient lighting effect in which the second and fourth patterns complement each other. When the ambient light source is present and the first ambient light source 20 is turned on, the ambient light source and the first ambient light source 20 can be used to create an ambient lighting effect in which the first, second, third, and fourth patterns complement each other. Thus, the ambient lighting effect is further enriched, and the patterns are richer and more layered.

[0065] The third pattern layer 50 can be printed and disposed on the same surface of the glass body 10 as the first pattern layer 30, and closely adhered to the side of the first pattern layer 30 near the first ambient light source 20. Alternatively, the third pattern layer 50 and the first pattern layer 30 can be disposed within the same transparent layer of the glass body 10, and closely adhered to the side of the first pattern layer 30 near the first ambient light source 20. The third pattern layer 50 is preferably a combination of a specular reflective layer and a reflective dielectric layer. Alternatively, the third pattern layer 50 can be solely a specular reflective layer or a reflective dielectric layer.

[0066] Implementation Method 2

[0067] Combine Figures 1 to 4 As shown, the present invention further provides a vehicle including an ambient light glass. The specific structure, working principle and beneficial effects of the ambient light glass in this embodiment are the same as those in the first embodiment, and will not be repeated here.

[0068] The vehicle of the present invention is provided with ambient light glass, thereby enriching the appearance display effect of the vehicle. Wherein, the ambient light glass includes but is not limited to corner window glass, sunroof glass, front windshield glass, and rear windshield glass on the vehicle.

[0069] The above descriptions are only several embodiments of the present invention. Those skilled in the art may make various changes or modifications to the embodiments of the present invention based on the contents disclosed in the application documents without departing from the spirit and scope of the present invention.

Claims

1. An atmosphere light glass, characterized in that: include: Glass body; A first ambient light source is installed on the glass body; The glass body is provided with a first pattern layer and a second pattern layer at intervals in the thickness direction thereof, and the projections of the first pattern layer and the second pattern layer along the thickness direction of the glass body are at least partially staggered, so that the first pattern layer can reflect the light emitted by the ambient light source toward the viewing side of the glass body to form a first pattern, and the second pattern layer can reflect the light emitted by the first ambient light source toward the viewing side of the glass body to form a second pattern.

2. The atmosphere lamp glass according to claim 1, characterized in that: The first pattern layer and the second pattern layer respectively include one or a combination of a mirror reflection layer and a reflective medium layer.

3. The atmosphere lamp glass according to claim 1 or 2, characterized in that: The glass body is further provided with a third pattern layer, and the third pattern layer is arranged closely to the edge of the first pattern layer. The third pattern layer can reflect the light emitted by the ambient light source toward the viewing side of the glass body to form a third pattern, and the third pattern layer can also reflect part of the light reflected by the second pattern layer toward the viewing side of the glass body to form a fourth pattern.

4. The atmosphere lamp glass according to claim 3, characterized in that: The third pattern layer includes one or a combination of a mirror reflection layer and a reflective medium layer.

5. The atmosphere lamp glass according to claim 1, wherein: The glass body has at least one transparent layer, the first pattern layer and the second pattern layer are respectively arranged on the surface of at least one of the transparent layers or inside at least one of the transparent layers, and the first pattern layer is arranged closer to the viewing side of the glass body than the second pattern layer.

6. The atmosphere lamp glass according to claim 5, characterized in that: The glass body is a single piece of glass, the first pattern layer is provided on the outer surface of the glass body facing the viewing side thereof, and the second pattern layer is provided on the inner surface of the glass body facing away from the viewing side thereof; or The glass body is a laminated glass formed by stacking multiple pieces of glass, one of which is an outer piece of glass arranged toward the viewing side of the glass body, the first pattern layer is arranged on the outer surface of the outer piece of glass arranged toward the viewing side of the glass body, and the second pattern layer is arranged on the inner surface of the outer piece of glass arranged away from the viewing side of the glass body.

7. The atmosphere lamp glass according to claim 1, characterized in that: The atmosphere light glass also includes an exterior decoration, and the glass body has a display surface set towards its viewing side. The exterior decoration is installed on the display surface of the glass body and cooperates with the glass body to form an atmosphere light installation cavity, and the first atmosphere light source is located in the atmosphere light installation cavity.

8. The atmosphere lamp glass according to claim 7, characterized in that: The atmosphere light glass also includes a second atmosphere light light source. The exterior ornament is provided with an ornament pattern structure. The second atmosphere light light source is located in the atmosphere light installation cavity and is arranged opposite to the ornament pattern structure. The light emitted by the second atmosphere light light source can pass through the ornament pattern structure and be emitted toward the viewing side of the glass body to form an ornament pattern.

9. The atmosphere lamp glass according to claim 8, characterized in that: The atmosphere light glass further includes an atmosphere light mounting structure, the atmosphere light mounting structure includes a circuit board, the first atmosphere light source and the second atmosphere light source are both mounted on the circuit board and electrically connected to the circuit board; wherein the circuit board is mounted on the glass body, the first ambient light source is arranged opposite to an edge surface of the glass body, and light emitted by the first ambient light source can be introduced into the second pattern layer through the glass body; or The circuit board is mounted on the glass body via a light guide, the first ambient light source is arranged opposite to the light incident surface of the light guide, and the light emitted by the first ambient light source can be sequentially introduced into the second pattern layer via the light guide and the glass body.

10. The atmosphere lamp glass according to claim 9, characterized in that: The display surface of the glass body is set to face the outside of the vehicle. The ambient light installation structure also includes a wiring harness and a connector. One end of the wiring harness is located in the ambient light installation cavity and is electrically connected to the circuit board. The other end of the wiring harness bypasses the edge of the glass body and extends into the vehicle and is electrically connected to the connector.

11. The atmosphere lamp glass according to claim 10, characterized in that: An outer edging structure is provided at the edge of the glass body, an inner edging structure is provided on the display surface of the glass body, the exterior decoration is sealedly connected to the outer edging structure and the inner edging structure, and the wiring harness is clamped between the edge of the glass body and the outer edging structure.

12. A vehicle, characterized in that: The ambient light glass comprises the glass described in any one of claims 1 to 11.

Citation Information

Patent Citations

  • Atmosphere lamp assembly and vehicle

    CN220355250U

  • Lamination sheet for information display panel, information display panel, and information display equipment

    JP2011209584A