Glass assembly and vehicle

By connecting the outer shell and the mounting base with a mechanical clamp, the problems of difficult maintenance of ambient lights and shell detachment are solved, enabling quick disassembly and replacement, improving maintenance efficiency and simplifying the structure.

CN121062435BActive Publication Date: 2026-07-31FUYAO GLASS IND GROUP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
FUYAO GLASS IND GROUP CO LTD
Filing Date
2025-08-28
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

In existing technologies, the housing of ambient lights is bonded to the glass, which makes maintenance difficult, costly, and prone to detachment.

Method used

The housing is connected to the mounting base by mechanical clamping and fixed to the guide rail by locking components, which avoids adhesion and enables quick disassembly and replacement.

Benefits of technology

It improves maintenance efficiency, prevents the outer casing from falling off, simplifies the structure, and increases the space of the glass viewing area.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application relates to a glass assembly and a vehicle. The glass assembly includes a glass body, an ambient light, a mounting base, and a guide rail. The housing has a first mounting portion. The mounting base is fixedly connected to the glass body and located on one side of the ambient light along its width direction, and has a locking element. The guide rail has a second mounting portion. The second mounting portion and the locking element are detachably connected and fixed, and clamped between the second mounting portion and the mounting base, making the fixation more reliable and improving the stability of the installation on the glass body, avoiding the defect of falling off. There is no need to disassemble and replace the entire glass panel; the replacement and maintenance of the light panel are simpler and more efficient. Furthermore, the mounting base can also be connected and fixed to the guide rail via the locking element, thus supporting the guide rail. The guide rail is used to install a sunshade, meaning that the locking points of the sunshade on the glass body are used to simultaneously fix the housing of the ambient light, simplifying the overall structure and facilitating quick disassembly.
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Description

Technical Field

[0001] This application relates to the field of glass technology, and in particular to a glass assembly and a vehicle. Background Technology

[0002] In related technologies used in vehicles, the housing and light panel of ambient lights are mostly fixed to the glass using adhesive. When the ambient light malfunctions later, it is either impossible or extremely difficult to remove it from the glass, requiring the replacement of the entire glass unit. This increases maintenance costs and reduces efficiency. Furthermore, the adhesive is prone to failure under extreme conditions, leading to the housing detaching. Summary of the Invention

[0003] Therefore, it is necessary to provide a glass assembly and vehicle that addresses the shortcomings of existing technologies, thereby improving maintenance efficiency and effectively preventing defects such as shell detachment.

[0004] On one hand, this application provides a glass assembly, comprising:

[0005] Glass body;

[0006] An ambient light is connected to the glass body. The ambient light includes a light-emitting unit, which includes a housing. The housing is provided with a first mounting part.

[0007] Mounting bracket, the mounting bracket being fixedly connected to the glass body, the mounting bracket being located on one side of the ambient light along its width direction, and the mounting bracket being provided with a locking element; and

[0008] The guide rail is used to install the sunshade curtain. The guide rail is provided with a second mounting part, which is detachably connected and fixed to the locking member. The first mounting part is clamped and fixed between the second mounting part and the mounting base.

[0009] In one embodiment, the light-emitting unit further includes a light guide and a lamp plate. The light guide is fixedly connected to the glass body, and the outer shell covers the light guide. The lamp plate is installed inside the outer shell.

[0010] In one embodiment, the mounting base is provided with multiple locking components; the light-emitting units are multiple and arranged sequentially along the longitudinal direction of the ambient light, with the light-emitting unit at the front of the sequence designated as the head light-emitting unit and the light-emitting unit at the rear of the sequence designated as the tail light-emitting unit; wherein, a locking component is provided at the end of two adjacent light-emitting units that are close to each other, and a locking component is provided at the ends of the head light-emitting unit and the tail light-emitting unit that are far from each other.

[0011] In one embodiment, the housing and the mounting base are positioned and engaged with each other.

[0012] In one embodiment, the mounting base is further provided with a first positioning part, and the housing is provided with a second positioning part, wherein the first positioning part and the second positioning part are mutually positioned and cooperated.

[0013] In one embodiment, each of the outer casings is provided with a second positioning portion at each of its opposite ends along the longitudinal direction.

[0014] In one embodiment, the mounting base is provided with two first positioning portions that are aligned one-to-one with the opposite ends of two adjacent housings, and a locking member that is correspondingly provided with the opposite ends of two adjacent housings; the locking member is located between the two first positioning portions.

[0015] In one embodiment, the two first positioning members and the locking members, which are correspondingly disposed at opposite ends of two adjacent housings, are integrally injection molded; and / or, the material of the locking members includes metallic materials and / or rigid non-metallic materials.

[0016] In one embodiment, one end of the housing is provided with a second positioning part, and the mounting base is provided with a locking member corresponding to the other end of the housing. The locking member corresponding to the housing also passes through the first mounting part and is positioned and engaged with the first mounting part.

[0017] In one embodiment, the mounting base is provided with a locking member corresponding to the end of two adjacent housings that are close to each other. The end of each of the two adjacent housings that are close to each other is provided with a first mounting part, and the two first mounting parts are stacked and engaged with each other along the thickness direction of the glass body. The locking member passes through the two stacked and engaged first mounting parts and is positioned and engaged with the two first mounting parts.

[0018] In one embodiment, the housing is detachably connected to the light guide.

[0019] In one embodiment, the inner wall of the housing is provided with a first latching portion and a second latching portion, which are respectively disposed on opposite sides of the housing; the light guide is provided with a third latching portion and a fourth latching portion, which are engaged with the first latching portion and the third latching portion, and engaged with the second latching portion and the fourth latching portion, which are respectively disposed on opposite sides of the light guide.

[0020] In one embodiment, the housing and the light guide are positioned and engaged with each other.

[0021] In one embodiment, the inner wall of the housing is provided with a third positioning part, and the light guide is provided with a fourth positioning part, wherein the third positioning part and the fourth positioning part are positioned and cooperate with each other.

[0022] In one embodiment, the outer casing is provided with a fifth snap-fit ​​portion, and the mounting base is provided with a sixth snap-fit ​​portion, wherein the fifth snap-fit ​​portion and the sixth snap-fit ​​portion engage in a snap-fit ​​relationship.

[0023] In one embodiment, the inner wall of the housing is provided with a seventh snap-fit ​​portion, and the light guide is provided with an eighth snap-fit ​​portion, the seventh snap-fit ​​portion and the eighth snap-fit ​​portion engaging; the fifth snap-fit ​​portion is located on one side of the housing along its width direction, and the seventh snap-fit ​​portion is located on the other side of the housing along its width direction.

[0024] In one embodiment, the mounting base is integrally injection molded onto the glass body.

[0025] On the other hand, this application provides a means of transportation, the means of transportation including the glass assembly and a vehicle body, the glass assembly being mounted on the vehicle body.

[0026] In the aforementioned glass assembly and vehicle, the outer shell covers the light guide component. The outer shell is not directly connected to the glass body, nor is it bonded to the glass body using adhesive. Because the first mounting part is clamped and fixed between the second mounting part and the mounting base, the outer shell is mechanically clamped and fixed. Compared to adhesive fixing to the glass body, this method is more reliable, improving the stability of the installation and preventing detachment. When the light-emitting unit malfunctions, the second mounting part and the locking mechanism loosen the first mounting part of the light-emitting unit, allowing for quick removal of the malfunctioning unit's outer shell and replacement or maintenance of the light panel. This eliminates the need for complete glass removal and replacement, simplifying the process and increasing maintenance efficiency. Furthermore, the mounting base can be connected and fixed to the guide rail via the locking mechanism, thus supporting the guide rail. The guide rail is used to install the sunshade, utilizing the locking points of the sunshade on the glass body to simultaneously fix the ambient light's outer shell, simplifying the overall structure and facilitating quick disassembly. In addition, since the outer shell does not need to be bonded to the glass body, the structural parts on the outer shell used for bonding and fixing to the glass body can be omitted and simplified accordingly, thereby reducing the size of the outer shell and increasing the visible area of ​​the glass body. Attached Figure Description

[0027] Figure 1 This is a structural diagram of a glass assembly according to an embodiment of this application.

[0028] Figure 2 for Figure 1The diagram shows a cross-sectional view of the glass assembly.

[0029] Figure 3 for Figure 1 Enlarged structural diagram at point A.

[0030] Figure 4 for Figure 1 Enlarged structural diagram at point B.

[0031] Figure 5 for Figure 1 A schematic diagram of the first assembly structure in the glass assembly shown.

[0032] Figure 6 for Figure 1 The diagram shows the structure of two adjacent light-emitting units in the glass assembly being prepared for assembly with the guide rail via the first combination structure.

[0033] Figure 7 for Figure 1 The diagram shows the connection structure between two adjacent light-emitting units in the glass assembly and the guide rail through the first combined structure.

[0034] Figure 8 for Figure 1 The diagram shows the structure of the ambient lighting unit in the glass assembly connected to the mounting base.

[0035] Figure 9 This is a structural diagram of two adjacent light-emitting units in a glass assembly according to another embodiment of this application, mounted on a mounting base.

[0036] Figure 10 This is a structural diagram of two adjacent light-emitting units in a glass assembly according to another embodiment of this application, mounted on a mounting base.

[0037] Figure 11 for Figure 1 The diagram shows the structure of the outer casing in the glass assembly.

[0038] Figure 12 This is a structural diagram of a glass assembly according to another embodiment of this application.

[0039] Figure 13 for Figure 12 The structure of the housing in the glass assembly shown is mounted on the mounting base. Figure 1 .

[0040] Figure 14 for Figure 12 The structure of the housing in the glass assembly shown is mounted on the mounting base. Figure 2 .

[0041] Figure 15 for Figure 12 The diagram shows the structure of the outer casing in the glass assembly.

[0042] 10. Glass body; 101. Visible area; 102. Shielding area; 11. Inner glass layer; 12. Adhesive layer; 13. Outer glass layer; 20. Ambient light; 201. Light-emitting unit; 21. Light guide; 211. Third snap-fit ​​part; 22. Light panel; 221. Light-emitting element; 23. Housing; 231. Opening; 232. First mounting part; 233. Second positioning part; 234. First snap-fit ​​part; 235. Second snap-fit ​​part; 236. 237. Third positioning part; 238. Fifth snap-fit ​​part; 239. Wrench; 230. Seventh snap-fit ​​part; 31. Controller; 42. Wiring harness; 53. Adhesive part; 64. Seal; 75. Fixing part; 86. Mounting base; 87. Locking part; 88. First positioning part; 89. First combined structure; 80. Sixth snap-fit ​​part; 81. Second combined structure; 92. Guide rail; 93. Second mounting part; 94. Mounting hole; 95. Clearance part. Detailed Implementation

[0043] To make the above-mentioned objectives, features, and advantages of this application more apparent and understandable, the specific embodiments of this application are described in detail below with reference to the accompanying drawings. Many specific details are set forth in the following description to provide a thorough understanding of this application. However, this application can be implemented in many other ways different from those described herein, and those skilled in the art can make similar modifications without departing from the spirit of this application. Therefore, this application is not limited to the specific embodiments disclosed below.

[0044] As described in the background section, ambient lights in related technologies suffer from inconvenience in maintenance and replacement, and the risk of the housing detaching. One proposed solution is to fix a light guide (excluding easily damaged parts) to the glass and directly snap the ambient light housing to the light guide. When maintenance or replacement of the ambient light panel is needed, the housing can be disassembled. However, ambient lights inevitably age over time, or under extremely harsh temperature environments or vibrations, which can easily lead to the housing detaching.

[0045] For the reasons mentioned above, this application provides a glass assembly and a vehicle that can improve maintenance efficiency and effectively prevent defects such as shell detachment.

[0046] See Figure 1 This application illustrates a glass assembly in one embodiment. Depending on actual needs, the glass assembly can be, but is not limited to, any one of the following: sunroof glass assembly, vehicle window glass assembly, corner window glass assembly, etc.

[0047] For example, the glass assembly in this application is specifically a sunroof glass assembly.

[0048] Please continue reading. Figure 1For example, the glass assembly includes a glass body 10 and an ambient light 20 mounted on the glass body 10.

[0049] The glass body 10 serves as the supporting structure for mounting the ambient light 20. The glass body 10 can be a single pane of glass or laminated glass. Specifically, the glass body 10 is a laminated glass, comprising an inner glass layer 11, an adhesive layer 12, and an outer glass layer 13 stacked sequentially. After the glass assembly is installed on the vehicle body, the outer glass layer 13 faces the external environment of the vehicle, and the inner glass layer 11 faces the internal environment of the vehicle. The adhesive layer 12 is sandwiched between the inner glass layer 11 and the outer glass layer 13, bonding them together to form the laminated glass structure. The material of the adhesive layer 12 can be, for example, polyvinyl butyral (PVB), ethylene vinyl acetate (EVA), or ionomer polymer film (SGP). Of course, the adhesive layer 12 can also have other functions, such as providing at least one tinted area as a shaded zone to reduce sunlight interference with the human eye, or adding infrared absorbers to provide sun protection or heat insulation.

[0050] Ambient lights 20 are attached to the side of the glass body 10 facing the interior environment of the vehicle. Ambient lights 20 can be placed on any side of the glass body 10, such as the left, right, front, or rear side of the glass body 10.

[0051] It should be noted that in this embodiment, the left, right, front, or rear sides are all based on the vehicle driving normally on the road surface. Along the driving direction, the side closer to the front of the vehicle is the front side, and the side closer to the rear of the vehicle is the rear side. Along the direction perpendicular to the driving direction and parallel to the ground, the side closer to the left door of the vehicle is the left side, and the side closer to the right door of the vehicle is the right side.

[0052] The number of ambient lights 20 is unlimited; for example, one, two, three, four, or more can be flexibly adjusted and set according to actual needs. In this embodiment, as shown... Figure 1 As shown, taking two ambient lights 20 as an example, the two ambient lights 20 are arranged on the left and right sides of the glass body 10 respectively.

[0053] The glass assembly also includes a controller 30 and a wiring harness 40. The controller 30 is electrically connected to the wiring harness 40, and the wiring harness 40 is electrically connected to each ambient light 20. The controller 30 controls the operation of each ambient light 20 through the wiring harness 40.

[0054] For example, the glass body 10 includes a visible area 101 and a shielding area 102 circumferentially disposed around the visible area 101. The shielding area 102 is provided with a light-blocking layer, which has the function of blocking light. Optionally, the visible light transmittance of the shielding area 102 is less than or equal to 10%, more preferably less than or equal to 5%, even more preferably less than or equal to 3%, or even less than or equal to 1%, or essentially 0%, i.e., it is not transparent to visible light.

[0055] In this embodiment, the ambient light 20 is specifically installed in the shaded area 102. Two ambient lights 20 are respectively arranged on the left and right opposite sides of the visible area 101. When the ambient light 20 is working, the light is refracted and reflected multiple times by the light guide 21, which can achieve efficient light transmission and allow the light to enter the glass body 10. Then, the light is reflected and / or refracted by the ink layer in the glass body 10 to the interior environment of the vehicle, providing lighting effect for the vehicle interior or creating a better lighting atmosphere, thereby improving the comfort and pleasure of the passengers in the vehicle.

[0056] Please see Figure 1 and Figure 2 For example, the ambient light 20 includes a light-emitting unit 201. Optionally, the light-emitting unit 201 may be one, two, three, or more in number, which is not limited here. Specifically, in this embodiment, multiple light-emitting units 201 are arranged sequentially on the glass body 10 along the longitudinal direction of the ambient light 20. Each light-emitting unit 201 includes a light guide 21, a lamp plate 22, and a housing 23. The light guide 21 is fixedly connected to the glass body 10. The housing 23 covers the light guide 21. The lamp plate 22 is installed inside the housing 23. That is, the housing 23 has an opening 231, and the housing 23 covers the outside of the light guide 21 through the opening 231. In other words, both the light guide 21 and the lamp plate 22 are disposed within the receiving space formed by the housing 23 and the glass body 10. The housing 23 protects the light guide 21 and the lamp plate 22 located therein, preventing them from being exposed.

[0057] The lamp panel 22 can be connected to at least one or more of the housing 23, the light guide 21, and the glass body 10. In this embodiment, the lamp panel 22 is preferably connected only to the housing 23. Thus, when the housing 23 is disassembled, the lamp panel 22 is also disassembled, making the disassembly and assembly operation relatively simple.

[0058] For example, the light guide 21 may include, but is not limited to, a light guide block or a light guide strip. The light guide 21 may be fixed to the glass body 10 by bonding, welding, snap-fitting, injection molding, or thermoforming. In this embodiment, the glass assembly also includes an adhesive 50. The light guide 21 is specifically bonded to the glass body 10 by the adhesive 50. The material of the adhesive 50 does not affect optical transmission and will not be described further here.

[0059] Optionally, the light board 22 may include, but is not limited to, a PCB board, on which one or more light-emitting elements 221 are provided, such as LED beads or light-emitting chips. When there are multiple light-emitting elements 221, they may be arranged in rows or arrays on the PCB board. The light-emitting elements 221 face the light guide 21. When the light-emitting elements 221 are working, the light generated by them enters the light guide 21, is refracted and reflected by the light guide 21 into the glass body 10, and is then incident on the interior environment of the vehicle through the glass body 10, thereby achieving lighting or creating an atmosphere effect.

[0060] It should be noted that in this embodiment, the longitudinal direction refers to the direction from one end of the ambient light 20 to the other end, such as... Figure 1 The direction indicated by the double arrow X is shown in the diagram. In one embodiment, the direction indicated by the double arrow X is, for example, the length direction of the vehicle body. Of course, it should be noted that in other embodiments, the direction indicated by the double arrow X may also be, for example, the width direction of the vehicle body or other directions, and is not limited here.

[0061] Optionally, the housing 23 is provided with a first mounting portion 232.

[0062] Please see Figures 1 to 3 and Figure 6 For example, the glass assembly also includes a mounting base 81. The mounting base 81 is fixedly connected to the glass body 10 and is located on one side of the ambient light 20 along its width direction. The mounting base 81 is provided with a locking element 82.

[0063] For example, the glass assembly also includes a guide rail 90. The guide rail 90 is used to mount a sunshade (not shown), and the guide rail 90 is provided with a second mounting portion 91. The second mounting portion 91 is detachably connected and fixed to a locking member 82, and a first mounting portion 232 is clamped and fixed between the second mounting portion 91 and the mounting base 81.

[0064] It should be noted that the specific structural forms of the first mounting part 232 and the second mounting part 91 can be independently adjusted and set according to actual needs, including but not limited to sheet, plate, block or other various structural forms, as long as the second mounting part 91 and the locking member 82 can be connected and fixed to each other, and the first mounting part 232 can be clamped and fixed when the second mounting part 91 and the locking member 82 are connected and fixed.

[0065] In one embodiment, the "first mounting part 232" can be a part of the "outer shell 23", that is, the "first mounting part 232" and the "other parts of the outer shell 23" are integrally formed; or it can be a separate component that is separable from the "other parts of the outer shell 23", that is, the "first mounting part 232" can be manufactured independently and then combined with the "other parts of the outer shell 23" to form a whole. In addition, the "second mounting part 91" can be a part of the "guide rail 90", that is, the "second mounting part 91" and the "other parts of the guide rail 90" are integrally formed; or it can be a separate component that is separable from the "other parts of the guide rail 90", that is, the "second mounting part 91" can be manufactured independently and then combined with the "other parts of the guide rail 90" to form a whole.

[0066] Specifically, both the first mounting part 232 and the second mounting part 91 are, for example, mounting plates. Thus, after the locking member 82 is connected and fixed to the second mounting part 91, the first mounting part 232 can be securely clamped and fixed between the second mounting part 91 and the mounting base 81.

[0067] In the aforementioned glass assembly, the ambient light 20 is configured as multiple light-emitting units 201. The housing 23 covers the light guide 21, and the housing 23 is not directly connected to the glass body 10, nor is it bonded to the glass body 10 by adhesive. Since the first mounting part 232 is clamped and fixed between the second mounting part 91 and the mounting base 81, the housing 23 is mechanically clamped and fixed. Compared to adhesive fixing to the glass body 10, this method provides more reliable fixation, improves the stability of the installation on the glass body 10, and avoids detachment defects. When any light-emitting unit 201 malfunctions, the second mounting part 91 and the locking part 82 loosen the first mounting part 232 of the light-emitting unit 201, allowing for quick removal of the housing 23 of the malfunctioning unit 201. The lamp board 22 of the light-emitting unit 201 can then be replaced or maintained, eliminating the need for complete glass disassembly and replacement. The replacement and maintenance of the lamp board 22 is simpler and more efficient. Furthermore, the mounting base 81 can also be connected and fixed to the guide rail 90 via the locking element 82, thus supporting the guide rail 90. The guide rail 90 is used to install the sunshade, meaning that the locking points of the sunshade on the glass body 10 are used to simultaneously fix the outer shell 23 of the ambient light 20, simplifying the overall structure and facilitating quick disassembly. In addition, since the outer shell 23 does not need to be bonded to the glass body 10, the structural parts on the outer shell 23 used for bonding and fixing to the glass body 10 can be omitted and simplified accordingly, thereby reducing the Y-axis volume of the outer shell 23, which in turn increases the spatial size of the visible area 101 of the glass body 10.

[0068] For example, the light-emitting units 201 are configured as standard units, meaning that their shape, size, and operating power are consistent. This allows each light-emitting unit 201 to be interchanged, reducing the cost of the ambient light 20. Each light-emitting unit 201 is connected to the controller 30 in series and / or parallel, and operates under the control of the controller 30.

[0069] Optionally, the locking component 82 may include, but is not limited to, bolts, screws, or snap-fit ​​components. In this embodiment, the locking component 82 is preferably a bolt. The second mounting portion 91 is provided with a mounting hole 911, and the glass assembly also includes a nut (not shown) corresponding to the locking component 82. The locking component 82 passes through the mounting hole 911 and is connected and fixed to the nut.

[0070] It should be noted that there can be one or more mounting bases 81, and there is no limitation on this, as long as they can be used to install and fix each ambient light 20. Specifically, when there is one mounting base 81, the length of the mounting base 81 is relatively long, which is sufficient to clamp and fix at least two ambient lights 20 after being connected to the guide rail 90; when there are at least two mounting bases 81, each mounting base 81 is set to correspond to each ambient light 20, and each mounting base 81, after being connected to the guide rail 90, is sufficient to press and fix the corresponding ambient light 20.

[0071] Please see Figure 1 or Figure 8 For an ambient light 20, multiple locking components 82 are provided. This not only helps to press and fix each light-emitting unit 201 of the ambient light 20 between the guide rail 90 and the mounting base 81, ensuring reliable fixation and preventing it from falling off, but also provides multiple locking points for the guide rail 90, improving the stability of the guide rail 90 on the glass body 10.

[0072] The second mounting part 91 can be configured as one, and multiple locking parts 82 can be connected and fixed to the same second mounting part 91 so that the guide rail 90 is securely mounted on the mounting base 81. Furthermore, the second mounting part 91 extends along the length direction of the guide rail 90, and the second mounting part 91 cooperates with the mounting base 81 to press the first mounting part 232 of each light-emitting unit 201 of the same ambient light 20.

[0073] Of course, multiple second mounting parts 91 can be provided. Furthermore, each second mounting part 91 is provided corresponding to a locking member 82. Specifically, each second mounting part 91 is provided corresponding to each locking member 82.

[0074] In one embodiment, the locking member 82 is correspondingly disposed with the light-emitting unit 201. After the locking member 82 is connected and fixed to the second mounting part 91, each light-emitting unit 201 is pressed and fixed between the guide rail 90 and the mounting base 81.

[0075] The correspondence between the locking member 82 and the light-emitting unit 201 can be one locking member 82 to one light-emitting unit 201. That is, for each light-emitting unit 201, along the width direction of the light-emitting unit 201, the mounting base 81 is provided with a locking member 82 disposed opposite to the light-emitting unit 201, for example, see [reference needed]. Figures 12 to 14 Specifically, the locking member 82 can be opposite to either end or the middle part of the light-emitting unit 201, and there is no limitation here.

[0076] The correspondence between the locking members 82 and the light-emitting units 201 can also be such that at least two locking members 82 correspond to one light-emitting unit 201. That is, for each light-emitting unit 201, the mounting base 81 is provided with at least two locking members 82 disposed opposite to the light-emitting unit 201 along the width direction of the light-emitting unit 201. Specifically, the at least two locking members 82 disposed corresponding to the light-emitting unit 201 are arranged sequentially at intervals along the length direction of the light-emitting unit 201.

[0077] The correspondence between the locking member 82 and the light-emitting unit 201 can also be such that one locking member 82 corresponds to the opposite ends of two adjacent light-emitting units 201 arranged along the longitudinal direction. That is, for two adjacent light-emitting units 201 arranged along the longitudinal direction, the mounting base 81 is provided with a locking member 82 aligned with the opposite ends of the two adjacent light-emitting units 201 along the width direction of the light-emitting unit 201, for example, see [reference needed]. Figure 1 , Figures 8 to 11 Thus, after the locking member 82 is connected and fixed to the second mounting part 91, it can press and fix the two adjacent light-emitting units 201 close to each other between the guide rail 90 and the mounting base 81.

[0078] In this embodiment, please refer to Figure 1 , Figures 8 to 11 On the one hand, the mounting base 81 is provided with a locking member 82 corresponding to the opposite ends of two adjacent light-emitting units 201. That is, for two adjacent light-emitting units 201 arranged along the longitudinal direction, the opposite ends of the two adjacent light-emitting units 201 along the width direction of the light-emitting unit 201 at least partially overlap with the locking member 82. On the other hand, the light-emitting unit 201 arranged at the front along the longitudinal direction of the ambient light 20 is the head light-emitting unit 201, and the light-emitting unit 201 arranged at the back is the tail light-emitting unit 201. The head light-emitting unit 201 and the tail light-emitting unit 201 are each provided with a locking member 82 at the opposite ends. In this way, each light-emitting unit 201 has a locking member 82 at both opposite ends, so that the clamping effect between the guide rail 90 and the mounting base 81 is stable and reliable, and it is not easy to fall off.

[0079] Research has shown that the alignment accuracy between the lamp panel 22 and the light guide 21 affects the lighting effect of the ambient light 20. When there is a significant deviation between the mounting position of the lamp panel 22 on the glass body 10 and the preset position, the alignment accuracy between the lamp panel 22 and the light guide 21 is low, resulting in a poor lighting effect of the ambient light 20. Therefore, in order to improve the lighting effect of the ambient light 20, please refer to the example provided. Figures 1 to 11 The outer casing 23 and the mounting base 81 are mutually positioned and fitted. Thus, since both the mounting base 81 and the light guide 21 are fixedly connected to the glass body 10, meaning their mounting positions on the glass body 10 remain unchanged, during the assembly and fixing of the outer casing 23 to the mounting base 81, the positioning fit between the outer casing 23 and the mounting base 81 ensures a high degree of alignment between the lamp panel 22 mounted on the outer casing 23 and the mounting base 81, thereby guaranteeing the alignment accuracy between the lamp panel 22 and the light guide 21. (For further information, please refer to...) Figures 12 to 15 The outer casing 23 can also be directly positioned and engaged with the light guide 21. In this way, during the process of assembling and fixing the outer casing 23 to the mounting base 81, the positioning and engagement between the outer casing 23 and the light guide 21 can ensure the assembly alignment accuracy between the lamp board 22 and the light guide 21.

[0080] Please see Figure 3 , Figure 6 and Figure 7 In one embodiment, the mounting base 81 is further provided with a first positioning part 83, and the outer shell 23 is provided with a second positioning part 233. The first positioning part 83 and the second positioning part 233 are mutually positioned and engaged. In this way, with the first positioning part 83 and the second positioning part 233 mutually positioned and engaged, the assembly alignment accuracy between the outer shell 23 and the mounting base 81 can be guaranteed, thereby ensuring the assembly alignment accuracy between the outer shell 23 and the light guide 21.

[0081] Optionally, the number of first positioning parts 83 is not limited to one; for example, it can be multiple. Similarly, the number of second positioning parts 233 is not limited to one; for example, it can be multiple. Multiple first positioning parts 83 and multiple second positioning parts 233 are arranged in a one-to-one correspondence. Thus, by using multiple first positioning parts 83 and multiple second positioning parts 233 for positioning and engagement, the assembly alignment accuracy between the housing 23 and the light guide 21 can be improved.

[0082] For example, the first positioning part 83 is provided with a first positioning hole, and the second positioning part 233 includes a first positioning pin, a first positioning rod or a first positioning post that can be inserted into and positioned in the first positioning hole; and / or, the second positioning part 233 is provided with a second positioning hole, and the first positioning part 83 includes a second positioning pin, a second positioning rod or a second positioning post that can be inserted into and positioned in the second positioning hole.

[0083] Optionally, the first positioning hole may include, but is not limited to, extending along the thickness direction of the glass body 10. In this way, the second positioning part 233 is inserted into the first positioning hole along the thickness direction of the glass body 10 and engages with the first positioning part 83. Furthermore, the second positioning hole may include, but is not limited to, extending along the thickness direction of the glass body 10. In this way, the first positioning part 83 is inserted into the second positioning hole along the thickness direction of the glass body 10 and engages with the second positioning part 233.

[0084] Please see Figure 3 , Figure 4 and Figure 6 In one specific embodiment, the second positioning part 233 is provided with a second positioning hole and is disposed, for example, in the first mounting part 232. The first positioning part 83 includes a second positioning pin, a second positioning rod, or a second positioning post that can be inserted into and positioned in conjunction with the second positioning hole. The second mounting part 91 is provided with a clearance part 912 that avoids the first positioning part 83. The clearance part 912 includes, but is not limited to, a clearance hole or a clearance recess. The clearance part 912 and the second positioning hole are aligned along the thickness direction of the glass body 10. The first positioning part 83 passes through the second positioning hole and also passes through the clearance part 912.

[0085] Based on the aforementioned embodiments, each outer casing 23 is provided with a second positioning part 233, and the number of second positioning parts 233 is, for example, one, two or more, which is not limited here. In this way, each outer casing 23 can be positioned by the second positioning part 233 engaging with the corresponding first positioning part 83, thus ensuring the lighting effect of the ambient light 20.

[0086] For example, each housing 23 is provided with a second positioning part 233, which is located at any end or other part of the housing 23.

[0087] For example, please refer to [link / reference]. Figure 3 , Figure 6 and Figure 8 Each of the outer casings 23 has a second positioning portion 233 at each of its opposite ends along the longitudinal direction. That is, each outer casing 23 has, for example, two second positioning portions 233, located at opposite ends of the outer casing 23. Correspondingly, each outer casing 23 has, for example, two first mounting portions 232, with each second positioning portion 233 correspondingly disposed on each first mounting portion 232. In this way, both opposite ends of each light-emitting unit 201 can be positioned, resulting in high assembly positioning accuracy.

[0088] Please continue reading. Figure 3 , Figure 6 and Figure 8More specifically, the mounting base 81 is provided with two first positioning parts 83, each corresponding to one end of two adjacent housings 23, and a locking member 82, corresponding to the opposite ends of two adjacent housings 23. That is, two first positioning parts 83 are provided at opposite ends of two adjacent light-emitting units 201, and a locking member 82 is also provided at opposite ends of two adjacent light-emitting units 201. The locking member 82 is located between the two first positioning parts 83.

[0089] The locking component 82 is made of metal and / or hard non-metallic materials. In one specific embodiment, the locking component 82 is, for example, a metal component, which ensures structural strength and is not easily bent or deformed. The first positioning part 83 is, for example, a non-metallic component, specifically made of plastic. Optionally, the two first positioning parts 83 corresponding to the opposite ends of two adjacent light-emitting units 201, and the locking component 82 located between the two first positioning parts 83, are integrally injection molded, which ensures processing accuracy and production efficiency, and ensures the assembly positioning accuracy between the outer shell 23 and the mounting base 81 after being assembled and fixed to the glass body 10 together with the mounting base 81. In this embodiment, the mounting base 81 is integrally injection molded onto the glass body 10 using edge-wrapping material. For details, please refer to... Figure 3 and Figure 5 The injection molding of the two first positioning parts 83 corresponding to the opposite ends of two adjacent light-emitting units 201 and the locking parts 82 between them forms a first combined structure 84. The first combined structure 84 is integrally injection molded onto the glass body 10 using edge-wrapping material. After the edge-wrapping material is formed, a mounting base 81 is obtained accordingly. The first combined structure 84 is stably set on the glass body 10.

[0090] Similarly, each of the head-emitting unit 201 and the tail-emitting unit 201, at its opposite ends, is provided with a locking member 82 and a first positioning part 83. The locking members 82 and the first positioning parts 83 at each opposite end of the head-emitting unit 201 and the tail-emitting unit 201 are, for example, integrally molded by injection molding, ensuring processing accuracy and high production efficiency. After being assembled and fixed onto the glass body 10 together with the mounting base 81, the assembly positioning accuracy between the outer shell 23 and the mounting base 81 is guaranteed. For details, please refer to... Figure 1 and Figure 4 The locking parts 82 at the ends of the head light-emitting unit 201 and the tail light-emitting unit 201, which are opposite to each other, and the first positioning part 83 are injection molded to form a second combined structure 86. The second combined structure 86 and the first combined structure 84 are both integrally injection molded onto the glass body 10 using edge-wrapping material. After the edge-wrapping material is formed, a mounting base 81 is obtained accordingly. The second combined structure 86 is stably set on the glass body 10.

[0091] For example, please refer to Figure 9 Each outer casing 23 is provided with a second positioning part 233, for example. Each outer casing 23 corresponds to a locking member 82, for example. One second positioning part 233 is located at one end of the outer casing 23, and one locking member 82 is located at the other end of the outer casing 23. Furthermore, the locking member 82 corresponding to the outer casing 23 is not only connected and fixed to the second mounting part 91, but also used for positioning and engaging with the outer casing 23. Specifically, the locking member 82 is disposed through the first mounting part 232, thereby positioning and engaging with the first mounting part 232. In this way, for each light-emitting unit 201, one end of the outer casing 23 is positioned by the mutual positioning and engagement of the first positioning part 83 and the second positioning part 233, and the other end of the outer casing 23 is positioned by the locking member 82, which has good positioning accuracy.

[0092] For example, please refer to Figure 10 Each light-emitting unit 201 does not require a second positioning part 233. Correspondingly, the mounting base 81 does not require a first positioning part 83. Specifically, to achieve positioning and engagement between the housing 23 and the mounting base 81, a locking member 82 is provided through the first mounting part 232, thereby positioning and engaging with it. Thus, the locking member 82 not only connects and fixes to the second mounting part 91, clamping the first mounting part 232 between the second mounting part 91 and the mounting base 81, but also positions the housing 23, ensuring the assembly positioning accuracy between the housing 23 and the mounting base 81.

[0093] Please continue reading. Figure 10 More specifically, for two adjacent light-emitting units 201, each adjacent light-emitting unit 201 has a locking member 82 at its closest point to each other. Each adjacent light-emitting unit 201 has a first mounting portion 232 at its closest point to each other. The two first mounting portions 232 are stacked and fitted together, and the locking member 82 passes through the two stacked and fitted first mounting portions 232 and is positioned and fitted with them. In this way, on the one hand, the two stacked and fitted first mounting portions 232 can be positioned, thereby achieving the assembly and positioning function between each housing 23 and the mounting base 81; on the other hand, the locking member 82 is connected and fixed to the second mounting portion 91, allowing the two adjacent light-emitting units 201 to be clamped and fixed between the guide rail 90 and the mounting base 81.

[0094] Please see Figure 2In one embodiment, the outer shell 23 and the light guide 21 are detachably connected. The detachable connection methods for the outer shell 23 and the light guide 21 include, but are not limited to, snap-fit ​​connections, magnetic engagement, riveting, or fastener connections such as pins and screws. The specific method can be flexibly selected according to actual needs and is not limited here. In this embodiment, the outer shell 23 and the light guide 21 are preferably detachably connected by snap-fit. Compared to fastener connections, this not only allows for quick assembly and disassembly of the outer shell 23, but also reduces the number of parts, lowers cost, and results in a simpler product appearance. Thus, during the assembly and disassembly of the ambient light 20, after the locking part 82 and the second mounting part 91 are separated or before being connected and fixed, the outer shell 23 and the light guide 21 are detachably connected, pre-fixing the outer shell 23 and the light guide 21. This prevents the outer shell 23 from accidentally falling off, ensuring high safety and facilitating assembly and disassembly.

[0095] Please see Figure 11 For example, the inner wall of the housing 23 is provided with a first latching portion 234 and a second latching portion 235. The first latching portion 234 and the second latching portion 235 are respectively disposed on opposite sides of the housing 23. In addition, the light guide 21 is provided with a third latching portion 211 and a fourth latching portion, which are respectively disposed on opposite sides of the light guide 21.

[0096] The first latching part 234 engages with the third latching part 211. The second latching part 235 engages with the fourth latching part. Thus, since both sides of the outer shell 23 are latched and fixed to the light guide 21, a stable connection between the outer shell 23 and the light guide 21 can be achieved.

[0097] For example, the first latching portion 234 and the second latching portion 235 are respectively arranged on opposite sides of the housing 23 along its width direction, and the third latching portion 211 and the fourth latching portion are respectively arranged on opposite sides of the light guide 21 along its width direction. In other words, the first latching portion 234 is arranged on one side of the housing 23 along its width direction, and the second latching portion 235 is arranged on the other side of the housing 23 along its width direction. The third latching portion 211 is arranged on one side of the light guide 21 along its width direction, and the fourth latching portion is arranged on the other side of the housing 23 along its width direction.

[0098] Of course, the first latching portion 234 and the second latching portion 235 can also be arranged on opposite sides of the housing 23 along its longitudinal direction. The third latching portion 211 and the fourth latching portion can also be arranged on opposite sides of the light guide 21 along its longitudinal direction. In other words, the first latching portion 234 is arranged on one side of the housing 23 along its longitudinal direction, and the second latching portion 235 is arranged on the other side of the housing 23 along its longitudinal direction. The third latching portion 211 is arranged on one side of the light guide 21 along its longitudinal direction, and the fourth latching portion is arranged on the other side of the housing 23 along its longitudinal direction.

[0099] Specifically, when the outer shell 23 is engaged with the light guide 21 on opposite sides along the width direction, it not only achieves a stable connection between the outer shell 23 and the light guide 21, but also, because the light-emitting unit 201 has operating space along the width direction, it is easier to disassemble the outer shell 23 compared to having engagement parts on opposite sides along the longitudinal direction.

[0100] The number of first latching portions 234 and third latching portions 211 is the same. Optionally, each of the first latching portions 234 and third latching portions 211 may include, but is not limited to, one or more. Multiple portions may include, for example, two, three, four, or any other arbitrary number, which is not limited here. When multiple first latching portions 234 and multiple third latching portions 211 are provided, the multiple first latching portions 234 and the multiple third latching portions 211 are connected in a one-to-one latching manner. In this way, the housing 23 and the light guide 21 can be securely connected together.

[0101] Similarly, the number of second latching portions 235 and fourth latching portions is the same. Optionally, both the second latching portions 235 and the fourth latching portions may be, but are not limited to, one or more. Multiple portions may include, for example, two, three, four, or any other arbitrary number, which is not limited here. When both the second latching portions 235 and the fourth latching portions are provided in multiples, the multiple second latching portions 235 and the multiple fourth latching portions are connected in a one-to-one latching manner. In this way, the housing 23 and the light guide 21 can be securely connected together.

[0102] It should be noted that the number of first latching portions 234 and the number of second latching portions 235 in the above embodiments may be the same or different, and are not limited here. They can be flexibly adjusted and set according to actual needs. The first latching portions 234 and the second latching portions 235 can be aligned with each other or staggered with each other along the width direction, and are not limited here. Their arrangement can be flexibly adjusted according to actual needs.

[0103] It should be noted that in this embodiment, the width direction is perpendicular to the longitudinal direction and parallel to the side surface of the glass body 10, that is, as shown in the figure. Figure 1The direction indicated by the Y in the diagram. In one embodiment, the direction indicated by the double arrow Y is, for example, the width direction of the vehicle body. Of course, it should be noted that in other embodiments, the direction indicated by the double arrow Y may also be, for example, the length direction of the vehicle body or other directions, and is not limited here.

[0104] Please see Figure 15 For example, the inner wall of the outer casing 23 is provided with a third positioning part 236, and the light guide 21 is provided with a fourth positioning part. The third positioning part 236 and the fourth positioning part are mutually positioned and engaged. In this way, when the third positioning part 236 and the fourth positioning part are mutually positioned and engaged, the assembly positioning accuracy between the outer casing 23 and the light guide 21 can be improved.

[0105] Optionally, the number of third positioning parts 236 is not limited to one; for example, multiple parts may be provided. Furthermore, the number of fourth positioning parts is not limited to one; for example, multiple parts may be provided. Multiple third positioning parts 236 are provided in a one-to-one correspondence with multiple fourth positioning parts. In this way, by positioning and cooperating with multiple third positioning parts 236 and multiple fourth positioning parts, the connection stability between the housing 23 and the light guide 21 can be improved.

[0106] For example, the third positioning part 236 is provided with a third positioning hole, and the fourth positioning part includes a third positioning pin, a third positioning rod or a third positioning post that can be inserted into and positioned in the third positioning hole; and / or, the fourth positioning part is provided with a fourth positioning hole, and the fourth positioning part includes a fourth positioning pin, a fourth positioning rod or a fourth positioning post that can be inserted into and positioned in the fourth positioning hole.

[0107] Optionally, the third positioning hole may include, but is not limited to, extending along the thickness direction of the glass body 10. In this way, the fourth positioning part is inserted into the third positioning hole along the thickness direction of the glass body 10 and engages with the third positioning part 236. Furthermore, the fourth positioning hole may include, but is not limited to, extending along the thickness direction of the glass body 10. In this way, the third positioning part 236 is inserted into the fourth positioning hole along the thickness direction of the glass body 10 and engages with the fourth positioning part.

[0108] Please continue reading. Figure 15 For example, there are two third positioning parts 236, and the two third positioning parts 236 have different shapes. One third positioning part 236 is set as a circular hole, and the other third positioning part 236 is set as an oblong hole. The long axis of the oblong hole is set along the longitudinal direction. The circular hole can realize positioning in the X and Y directions, and the oblong hole can provide a margin of movement in the X-axis direction, ensuring that the housing 23 and the light guide 21 are aligned and assembled together.

[0109] Please see Figures 12 to 14For example, the outer casing 23 is provided with a fifth latching portion 237, and the mounting base 81 is provided with a sixth latching portion 85. The fifth latching portion 237 and the sixth latching portion 85 engage in a latching fit. Thus, during the disassembly and assembly of the ambient light 20, after the locking piece 82 and the second mounting part 91 are disassembled or before being connected and fixed, the outer casing 23 is pre-fixed to the mounting base 81 by the interlocking of the fifth latching portion 237 and the sixth latching portion 85. This prevents the outer casing 23 from accidentally falling off, ensuring high safety and making disassembly and assembly more convenient.

[0110] Among them, see comparison Figure 13 and Figure 14 To facilitate operation of the fifth locking part 237, a wrench 2371 is provided on the fifth locking part 237. The wrench 2371 can easily press the fifth locking part 237 so that the fifth locking part 237 can be engaged or disengaged from the sixth locking part 85.

[0111] Optionally, the number of fifth latching portions 237 is not limited to one; for example, there may be two, three, or more. In this embodiment, each of the opposite ends of the housing 23 is provided with a fifth latching portion 237, and the opposite ends of the housing 23 are latched to each other with a sixth latching portion 85 through the fifth latching portion 237.

[0112] Please see Figure 15 For example, the inner wall of the outer casing 23 is provided with a seventh latching portion 238, and the light guide 21 is provided with an eighth latching portion. The seventh latching portion 238 and the eighth latching portion are engaged in a latching fit. The fifth latching portion 237 is located on one side of the outer casing 23 along its width direction, and the seventh latching portion 238 is located on the other side of the outer casing 23 along its width direction. In this way, both opposite sides of the outer casing 23 along its width direction can be latched and fixed, resulting in a better fixing effect on the glass body 10 and reducing the likelihood of detachment defects.

[0113] Optionally, the number of seventh latching portions 238 is not limited to one; for example, there may be two, three, or more. The number of eighth latching portions is the same as the number of seventh latching portions 238. When there are multiple seventh latching portions 238, the multiple seventh latching portions 238 are arranged sequentially at intervals along the longitudinal direction of the housing 23.

[0114] Please see Figure 2 For example, the glass assembly also includes a seal 60. The seal 60 is circumferentially disposed around the edge of the housing 23. The edge of the housing 23 abuts against the glass body 10 through the seal 60. In this way, the seal 60 can provide a better light-blocking effect.

[0115] Optionally, the seal 60 may be made of, but is not limited to, an elastic sealing material such as foam or silicone. In this way, it not only has sealing performance, but also, due to its elasticity, allows the housing 23 to be securely mounted on the light guide 21.

[0116] Please see Figure 1 For example, the housing 23 is provided with a through hole, the wiring harness 40 is provided with multiple electrical connectors, the controller 30 is electrically connected to the wiring harness 40, the multiple electrical connectors are provided one-to-one with multiple light-emitting units 201, and the electrical connectors pass through the through holes of the corresponding light-emitting units 201 and are electrically connected to the lamp board 22.

[0117] Alternatively, the electrical connector can be of various forms, including but not limited to USB connectors.

[0118] Please see Figure 3 and Figure 4 For example, one or more fasteners 70 are provided on the outer wall of the housing 23. The fasteners 70 serve to house the wire harness 40. Thus, the wire harness 40 can be secured by the fasteners 70 as it runs along the housing 23. The fasteners 70 include, but are not limited to, elastic hooks or cable ties.

[0119] For example, the lamp panel 22 can be installed on the inner wall of the housing 23 in various ways, either detachably or non-detachably. This embodiment specifically focuses on the lamp panel 22 being detachably mounted on the housing 23. Optionally, the lamp panel 22 can be fixed to the housing 23 by snap-fit, riveting, or fasteners such as pins, rivets, and screws. The specific detachable connection method is not limited here and can be set according to actual needs.

[0120] Of course, the lamp panel 22 can also be non-removably mounted on the housing 23, for example, by adhesive bonding, welding or hot-melt fixing.

[0121] On the other hand, this application also provides a means of transportation, including but not limited to automobiles, buses, public buses, trains, freight cars, trains, etc. The means of transportation includes the glass assembly of any of the above embodiments, and also includes a vehicle body, with the glass assembly mounted on the vehicle body.

[0122] In the aforementioned vehicle, the ambient light 20 is configured as multiple light-emitting units 201. The outer casing 23 covers the light guide 21, and the outer casing 23 is not directly connected to the glass body 10, nor is it glued to the glass body 10. Since the first mounting part 232 is clamped and fixed between the second mounting part 91 and the mounting base 81, the outer casing 23 is mechanically clamped and fixed. Compared to gluing, this method provides more reliable fixation, improves the stability of the installation on the glass body 10, and prevents detachment. When any light-emitting unit 201 malfunctions, the second mounting part 91 and the locking part 82 loosen the first mounting part 232 of the light-emitting unit 201, allowing for quick removal of the outer casing 23 of the malfunctioning unit. The light panel 22 of the light-emitting unit 201 can then be replaced or maintained without disassembling and replacing the entire glass panel. This simplifies the replacement and maintenance of the light panel 22 and increases maintenance efficiency. Furthermore, the mounting base 81 can be connected and fixed to the guide rail 90 via the locking element 82, thus supporting the guide rail 90. The guide rail 90 is used to install the sunshade, meaning that the locking points of the sunshade on the glass body 10 are used to simultaneously fix the outer shell 23 of the ambient light 20, simplifying the overall structure and facilitating quick disassembly. In addition, since the outer shell 23 does not need to be bonded to the glass body 10, the structural parts on the outer shell 23 used for bonding and fixing to the glass body 10 can be omitted and simplified accordingly, thereby reducing the size of the outer shell 23 and increasing the spatial size of the visible area 101 of the glass body 10.

[0123] In the description of this application, it should be understood that if terms such as "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" appear, these terms indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application.

[0124] Furthermore, where the terms "first" and "second" appear, these terms are for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined with "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this application, where the term "multiple" appears, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0125] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0126] The embodiments described above are merely illustrative of several implementation methods of this application, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the patent application. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these all fall within the protection scope of this application. Therefore, the protection scope of this patent application should be determined by the appended claims.

Claims

1. A glass assembly, characterized in that, include: Glass body; An ambient light is connected to the glass body. The ambient light includes a light-emitting unit, which includes a housing. The housing is provided with a first mounting part. Mounting base, the mounting base being fixedly connected to the glass body, the mounting base being located on one side of the ambient light along its width direction, the mounting base being provided with a locking element, and the mounting base and the locking element being integrally formed or fixedly connected; and The guide rail is used to install the sunshade curtain. The guide rail is provided with a second mounting part, which is detachably connected and fixed to the locking member. The first mounting part is clamped and fixed between the second mounting part and the mounting base.

2. The glass assembly according to claim 1, characterized in that, The light-emitting unit further includes a light guide and a lamp plate. The light guide is fixedly connected to the glass body, and the outer shell covers the light guide. The lamp plate is installed inside the outer shell.

3. The glass assembly according to claim 2, characterized in that, The mounting base is provided with multiple locking components; the light-emitting units are multiple and arranged sequentially along the longitudinal direction of the ambient light. Along the longitudinal direction of the ambient light, the light-emitting unit at the front is designated as the head light-emitting unit, and the light-emitting unit at the back is designated as the tail light-emitting unit; wherein, a locking component is provided at the end of two adjacent light-emitting units that are close to each other, and a locking component is provided at the end of the head light-emitting unit and the tail light-emitting unit that are far from each other.

4. The glass assembly according to claim 3, characterized in that, The outer casing and the mounting base are positioned and fitted together.

5. The glass assembly according to claim 4, characterized in that, The mounting base is further provided with a first positioning part, and the outer shell is provided with a second positioning part, wherein the first positioning part and the second positioning part are mutually positioned and cooperated.

6. The glass assembly according to claim 5, characterized in that, Each of the outer casings has a second positioning part at each of its opposite ends along the longitudinal direction.

7. The glass assembly according to claim 6, characterized in that, The mounting base is provided with two first positioning parts that are aligned one-to-one with the opposite ends of the two adjacent housings, and a locking member that is correspondingly provided with the opposite ends of the two adjacent housings; the locking member is located between the two first positioning parts.

8. The glass assembly according to claim 7, characterized in that, The two first positioning members and the locking members, which are respectively provided at the opposite ends of the two adjacent shells, are integrally injection molded; and / or, the material of the locking members includes metal materials and / or hard non-metallic materials.

9. The glass assembly according to claim 5, characterized in that, One end of the outer casing is provided with a second positioning part, and the mounting base is provided with a locking member corresponding to the other end of the outer casing. The locking member corresponding to the outer casing also passes through the first mounting part and is positioned and engaged with the first mounting part.

10. The glass assembly according to claim 4, characterized in that, The mounting base is provided with a locking member corresponding to the end of each of the two adjacent housings that are close to each other. Each of the two adjacent housings has a first mounting part at the end that is close to each other, and the two first mounting parts are stacked and fitted together along the thickness direction of the glass body. The locking member passes through the two stacked and fitted first mounting parts and is positioned and fitted with the two first mounting parts.

11. The glass assembly according to any one of claims 4 to 10, characterized in that, The outer shell is detachably connected to the light guide.

12. The glass assembly according to claim 11, characterized in that, The inner wall of the outer shell is provided with a first latching part and a second latching part, which are respectively disposed on opposite sides of the outer shell; the light guide is provided with a third latching part and a fourth latching part, which are engaged with the first latching part and the third latching part, and engaged with the second latching part and the fourth latching part, which are respectively disposed on opposite sides of the light guide.

13. The glass assembly according to claim 3, characterized in that, The outer shell and the light guide are positioned and fitted together.

14. The glass assembly according to claim 13, characterized in that, The inner wall of the outer shell is provided with a third positioning part, and the light guide is provided with a fourth positioning part. The third positioning part and the fourth positioning part are positioned and cooperate with each other.

15. The glass assembly according to claim 13 or 14, characterized in that, The outer casing is provided with a fifth snap-fit ​​portion, and the mounting base is provided with a sixth snap-fit ​​portion, and the fifth snap-fit ​​portion and the sixth snap-fit ​​portion are engaged in a snap-fit ​​cooperation.

16. The glass assembly according to claim 15, characterized in that, The inner wall of the housing is provided with a seventh snap-fit ​​portion, and the light guide is provided with an eighth snap-fit ​​portion. The seventh snap-fit ​​portion and the eighth snap-fit ​​portion are snap-fitted together. The fifth snap-fit ​​portion is located on one side of the housing along its width direction, and the seventh snap-fit ​​portion is located on the other side of the housing along its width direction.

17. The glass assembly according to claim 1, characterized in that, The mounting base is integrally molded onto the glass body via injection molding.

18. A means of transportation, characterized in that, The vehicle includes the glass assembly as described in any one of claims 1 to 17, and also includes a vehicle body, the glass assembly being mounted on the vehicle body.