Glass assembly and vehicle
Patent Information
- Application Number
- CN202510601897.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-12
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2045-05-12
AI Technical Summary
[0004]基于此,有必要针对维修更换成本高,拆卸操作难度大,费时耗力的问题,提供一种玻璃总成及车辆
[0009]The aforementioned glass assembly, by assembling the first connecting part of the cover with the first mounting part of the light guide strip, and assembling the second connecting part of the cover with the mounting component, allows the cover to be easily fixed to the glass assembly. When the lamp assembly malfunctions and needs repair or replacement, the first connecting part of the cover and the first mounting part of the light guide strip can be disassembled, and the second connecting part of the cover and the mounting component can be disassembled, allowing the cover to be quickly, easily, and effortlessly removed from the glass assembly. Compared to the existing technology where the lamp assembly is directly glued to the glass assembly, this solution can greatly reduce the difficulty of lamp assembly disassembly and reduce repair and replacement costs. The lamp assembly disassembly operation is time-saving and labor-saving, which helps to improve the user experience.
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Figure CN120327210B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of vehicle manufacturing technology, and in particular to a glass assembly and a vehicle. Background Technology
[0002] With the continuous innovation of automotive technology and the increasing demands of people, the functions of automotive glass used in vehicles are becoming more and more diverse. For example, light-emitting light groups are integrated into the glass to enable it to emit light, thereby creating a better lighting effect and environment for the interior of the vehicle and improving the comfort and enjoyment of passengers.
[0003] In traditional technology, light assemblies are usually directly glued to the glass. When the light assemblies malfunction and need to be repaired or replaced, they cannot be removed from the glass, or are extremely difficult to remove. The glass must be replaced as a whole, which increases the cost of repair and replacement, makes the replacement operation complicated, time-consuming and labor-intensive, and affects the user experience. Summary of the Invention
[0004] Therefore, it is necessary to provide a glass assembly and vehicle to address the problems of high repair and replacement costs, difficult disassembly operations, and time and labor consumption.
[0005] Therefore, it is necessary to provide a glass assembly and vehicle to address the problems of high repair and replacement costs, difficult disassembly operations, and time and labor consumption.
[0006] According to a first aspect of this application, this application provides a glass assembly comprising:
[0007] Glass components; and
[0008] The light assembly includes a light guide strip, a mounting component, and a cover. The light guide strip is connected to the glass assembly and has a first mounting portion. The mounting component is spaced apart from the first mounting portion on the glass assembly. The cover has a first connecting portion and a second connecting portion. The first connecting portion is detachably connected to the first mounting portion, and the second connecting portion is detachably connected to the mounting component.
[0009] The aforementioned glass assembly, by assembling the first connecting part of the cover with the first mounting part of the light guide strip, and assembling the second connecting part of the cover with the mounting component, allows the cover to be easily fixed to the glass assembly. When the lamp assembly malfunctions and needs repair or replacement, the first connecting part of the cover and the first mounting part of the light guide strip can be disassembled, and the second connecting part of the cover and the mounting component can be disassembled, allowing the cover to be quickly, easily, and effortlessly removed from the glass assembly. Compared to the existing technology where the lamp assembly is directly glued to the glass assembly, this solution can greatly reduce the difficulty of lamp assembly disassembly and reduce repair and replacement costs. The lamp assembly disassembly operation is time-saving and labor-saving, which helps to improve the user experience.
[0010] In one embodiment, both the first mounting part and the mounting component are provided with hooks, and both the first connecting part and the second connecting part are configured as snap hooks, wherein the snap hooks are detachably hooked to the hooks.
[0011] In one embodiment, the hook portion has a limiting rib, and the latch abuts against the limiting rib and limits the latch to the hook portion.
[0012] In one embodiment, the mounting component is provided with a positioning element, the cover has a positioning portion, and the positioning element is limitedly connected to the positioning portion.
[0013] In one embodiment, the cover is provided with a groove, and the hook and the positioning part are both disposed in the groove.
[0014] In one embodiment, the mounting element is configured as a second mounting portion, which is integrally formed on the light guide strip.
[0015] In one embodiment, the mounting element is configured as a mounting bracket, which is fixed to the glass assembly at a distance from the light guide strip.
[0016] In one embodiment, the cover has a threading hole.
[0017] In one embodiment, the cover has a hook-shaped portion on the side surface opposite to the glass assembly.
[0018] In one embodiment, the lamp assembly includes a lamp panel and light-emitting elements spaced apart on the lamp panel. The lamp panel is connected to the side surface of the cover facing the glass assembly, and each of the light-emitting elements is disposed opposite to the light guide strip.
[0019] In one embodiment, the light guide strip has a first light guide surface, which is disposed opposite to the light emitter.
[0020] In one embodiment, the glass assembly includes a light-concentrating element connected to the first light-guiding surface, and the light-emitting element is disposed opposite to the light-concentrating element.
[0021] In one embodiment, the light-concentrating element includes a number of light-concentrating devices equal to the number of light-emitting elements. The light-concentrating devices are connected to the first light-guiding surface, and the light-concentrating devices are arranged in a one-to-one correspondence with the light-emitting elements.
[0022] In one embodiment, the light guide strip has a reflective surface, and both the first light guide surface and the reflective surface are curved and smoothly joined to each other.
[0023] In one embodiment, the reflective surface is covered with a reflective material.
[0024] In one embodiment, the light guide strip has a second light guide surface, which is connected to the glass assembly, and the second light guide surface is provided with a light-concentrating array structure.
[0025] In one embodiment, the light-focusing array structure includes elongated protrusions arranged side by side along the length of the light guide strip; or, the light-focusing array structure includes curved protrusions uniformly distributed on the second light guide surface.
[0026] In one embodiment, the elongated protrusion has a third light-guiding surface, which is an arc-shaped surface or a V-shaped surface.
[0027] In one embodiment, the curved protrusion has a fourth light-guiding surface, which is arc-shaped.
[0028] In one embodiment, the cover includes a first edge portion and a second edge portion spaced apart, and the glass assembly includes a first seal and a second seal, the first seal being sandwiched between the first edge portion and the glass assembly, and the second seal being sandwiched between the second edge portion and the glass assembly.
[0029] In one embodiment, the glass assembly includes a controller, and the glass assembly includes a first light-emitting module and a second light-emitting module, the first light-emitting module and the second light-emitting module being arranged in parallel and electrically connected through the controller, and both the first light-emitting module and the second light-emitting module including at least two segments of the lamp group.
[0030] According to a second aspect of this application, this application provides a vehicle comprising:
[0031] Body; and
[0032] As described above, the glass assembly is mounted on the vehicle body. Attached Figure Description
[0033] Figure 1 This is a schematic diagram of the glass assembly in one embodiment of this application.
[0034] Figure 2 for Figure 1 The glass assembly shown is a cross-sectional view at BB.
[0035] Figure 3 for Figure 1 The enlarged view of the glass assembly shown at point A.
[0036] Figure 4 for Figure 3 The glass assembly shown is a cross-sectional view at CC.
[0037] Figure 5 This is a partial structural diagram of the glass assembly in another embodiment of this application.
[0038] Figure 6 for Figure 5 The glass assembly shown is a cross-sectional view at DD.
[0039] Figure 7 for Figure 5 The glass assembly shown is a cross-sectional view at EE.
[0040] Figure 8 This is a schematic diagram of the cover of the glass assembly in one embodiment of this application.
[0041] Figure 9 This is a schematic diagram of the structure of the light guide strip of the glass assembly in one embodiment of this application.
[0042] Figure 10 This is a cross-sectional view of the glass assembly at the positioning element in one embodiment of this application.
[0043] Figure 11 This is a partial structural schematic diagram of the glass assembly in another embodiment of this application.
[0044] Figure 12 This is a partial structural schematic diagram of the glass assembly in another embodiment of this application.
[0045] Figure 13 This is a schematic diagram of the light guide strip of the glass assembly in another embodiment of this application.
[0046] Figure 14 for Figure 13 A schematic diagram of the light guide strip of the glass assembly shown from another perspective.
[0047] Figure 15 This is a schematic diagram of the light guide bar focusing array structure in a glass assembly according to an embodiment of this application.
[0048] Figure 16 This is a schematic diagram of the light guide bar focusing array structure in a glass assembly according to another embodiment of this application.
[0049] Figure 17 This is a schematic diagram of the light guide bar focusing array structure in a glass assembly according to another embodiment of this application.
[0050] Explanation of icon numbers
[0051] 1. Glass assembly; 100. Glass component; 110. Inner glass layer; 120. Intermediate layer; 130. Outer glass layer; 140. Pattern structure; 200a. First light-emitting module; 200b. Second light-emitting module; 200. Lamp assembly; 210. Light guide strip; 211a. First mounting part; a1. Limiting rib; 211b. Second mounting part; 212. First positioning element; 213. First light-guiding surface; 214. Reflective surface; 214a. Non-light-guiding side; 215. Second light-guiding surface; 2151. Concentrating array structure; 21511. Long strip protrusion; 2 1511a, Third light guide surface; 21512, Curved protrusion; 21512a, Fourth light guide surface; 216, Focusing device; 220, Cover; 221a, First connecting part; 221b, Second connecting part; 222, Positioning part; 223, Groove; 224, Wire hole; 225, Wire hook part; 226, First edge part; 227, Second edge part; 230, Mounting bracket; 231, Second positioning element; 240, Lamp board; 241, Light emitter; 300, Controller; 310, Wiring harness; 500, First sealing element; 600, Second sealing element. Detailed Implementation
[0052] 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.
[0053] In the description of this application, it should be understood that if terms such as "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" 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.
[0054] 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.
[0055] In this application, unless otherwise expressly specified and limited, the terms "installation," "connection," "joining," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components, unless otherwise expressly limited. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.
[0056] In this application, unless otherwise expressly specified and limited, the use of descriptions such as "above" or "below" the second feature indicates that the first and second features are in direct contact or indirect contact via an intermediate medium. Furthermore, "above," "on top of," and "over" the second feature can mean that the first feature is directly above or diagonally above the second feature, or simply that the first feature is at a higher horizontal level than the second feature. Similarly, "below," "below," and "under" the second feature can mean that the first feature is directly below or diagonally below the second feature, or simply that the first feature is at a lower horizontal level than the second feature.
[0057] It should be noted that if an element is referred to as being "fixed to" or "set on" another element, it can be directly on the other element or there may be an intervening element. If an element is considered to be "connected to" another element, it can be directly connected to the other element or there may be an intervening element. If so, the terms "vertical," "horizontal," "upper," "lower," "left," "right," and similar expressions used in this application are for illustrative purposes only and do not represent the only possible implementation.
[0058] In traditional technologies, LED light assemblies are typically glued directly to the glass. When these assemblies malfunction and require replacement, they are difficult or impossible to remove from the glass, necessitating the replacement of the entire glass unit. This increases repair costs, complicates the replacement process, is time-consuming and labor-intensive, and negatively impacts user experience. This application provides a glass assembly and vehicle that not only reduces replacement costs but also simplifies the operation process, saves time and labor, improves user experience, and facilitates application and promotion.
[0059] According to one aspect of this application, a vehicle is provided, comprising a body and a glass assembly, the glass assembly being mounted on the body. Depending on the actual needs, the glass assembly may be, but is not limited to, a sunroof glass assembly, a window glass assembly, a corner window glass assembly, etc. For example, in this application, the glass assembly is specifically a sunroof glass assembly.
[0060] This application makes the following improvements to the aforementioned glass assembly.
[0061] Specifically, please refer to Figure 1 According to one embodiment of this application, the glass assembly 1 provided in this application may include a glass component 100 and a lamp assembly 200. The glass component 100 serves as a supporting body for mounting the integrated lamp assembly 200. After the glass assembly 1 is installed on the vehicle body, the glass component 100 is arranged facing outwards from the vehicle, and the lamp assembly 200 is arranged facing inwards from the vehicle.
[0062] Please see Figure 2 Optionally, the glass assembly 100 in this application may include a glass body, specifically a laminated glass, which is composed of at least an inner glass layer 110, an intermediate interlayer 120, and an outer glass layer 130 assembled in a stacked manner. After the glass assembly 1 is installed on the vehicle body, the outer glass layer 130 is arranged facing the outside of the vehicle, and the inner glass layer 110 is arranged facing the inside of the vehicle.
[0063] Continue reading Figure 2The glass assembly 100 in this application may also be provided with a pattern structure 140. The light emitted by the lamp group 200 can be conducted within the glass body and transmitted to the pattern structure 140 to illuminate the pattern structure 140, thereby achieving a specific pattern light-emitting effect of the glass assembly 1 and improving the user experience.
[0064] Optionally, the outer glass 130 and the inner glass 110 can be any type of single-pane glass, double-pane glass, etc., and can be flexibly selected according to actual needs.
[0065] Optionally, the intermediate layer 120 can be, but is not limited to, PVB (Polyvinyl Butyral). PVB is a product of the condensation of polyvinyl alcohol and butyraldehyde under acid catalysis. Due to the long branched chains in the PVB molecule, it has good flexibility, a low glass transition temperature, and high tensile strength and impact strength. PVB has excellent transparency, good solubility, and good resistance to light, water, heat, cold, and film formation. Its functional groups can undergo various reactions such as acetyl saponification, hydroxyl esterification, and sulfonation, and it has high adhesion to materials such as glass and metals (especially aluminum).
[0066] Please continue reading. Figure 3 and Figure 4 The lamp assembly 200 of this application may include a light guide strip 210, a mounting member, and a cover 220. The light guide strip 210 is connected to the glass assembly 100 and has a first mounting portion 211a. The mounting member is disposed on the glass assembly 100 at a distance from the first mounting portion 211a. The cover 220 may have a first connecting portion 221a and a second connecting portion 221b. The first connecting portion 221a is detachably connected to the first mounting portion 211a, and the second connecting portion 221b is detachably connected to the mounting member.
[0067] The aforementioned glass assembly 1, by assembling the first connecting part 221a of the cover 220 with the first mounting part 211a of the light guide strip 210, and assembling the second connecting part 221b of the cover 220 with the mounting component, can conveniently fix the cover 220 onto the glass assembly 100. When the lamp assembly 200 malfunctions and needs repair or replacement, the first connecting part 221a of the cover 220 and the first mounting part 211a of the light guide strip 210 can be disassembled, and the second connecting part 221b of the cover 220 and the mounting component can be disassembled. This allows the cover 220 to be quickly, conveniently, and effortlessly removed from the glass assembly 100. Compared to the existing technology where the lamp assembly 200 is directly glued and fixed to the glass assembly 100, this solution can greatly reduce the difficulty of disassembling the lamp assembly 200 and reduce the cost of repair and replacement. The disassembly of the lamp assembly 200 is time-saving and labor-saving, which helps to improve the user experience.
[0068] It should be noted that the aforementioned mounting component in this application is a split structure spaced apart from the light guide strip 210, or it can be integrally formed on the light guide strip 210.
[0069] For example, see Figure 4 In some embodiments, the mounting component can be configured as a mounting bracket 230, which is fixed to the glass assembly 100 at a distance from the light guide strip 210. The first connecting portion 221a is detachably connected to the first mounting portion 211a, and the second connecting portion 221b is detachably connected to the mounting bracket 230. Specifically, the mounting bracket 230 of this application can adjust its distance from the light guide strip 210 or the first mounting portion 211a according to actual needs, thereby enabling the light guide strip 210 to cooperate with the mounting bracket 230 to adapt to the installation of covers 220 of different sizes, improving applicability.
[0070] For example, please see Figures 5 to 9 In some embodiments, the mounting component can be configured as a second mounting portion 211b, which is integrally formed on the light guide strip 210. The first connecting portion 221a is detachably connected to the first mounting portion 211a, and the second connecting portion 221b is detachably connected to the second mounting portion 211b, which helps to improve structural integration.
[0071] Optionally, refer to again Figure 1 and Figure 3 The glass assembly 1 may include a controller 300, and may include a first light-emitting module 200a and a second light-emitting module 200b. The first light-emitting module 200a and the second light-emitting module 200b are arranged in parallel and electrically connected through the controller 300. Both the first light-emitting module 200a and the second light-emitting module 200b include at least one or more light groups 200. In this way, the effect of dual-group light emission and dual-group control can be achieved, improving the user experience. Of course, the number of the aforementioned light-emitting modules can be set according to actual needs, such as the glass assembly 1 may also include a third light-emitting module (not shown), etc.
[0072] In addition, by including at least one or more lamp groups 200 in both the first light-emitting module 200a and the second light-emitting module 200b, it is helpful to realize the modular design of the lamp groups 200 of the glass assembly 1.
[0073] In other words, when the lamp assembly 200 malfunctions and needs repair or replacement, only the faulty module of the lamp assembly 200 needs to be disassembled. Compared to the existing technology where the lamp assembly 200 is directly glued to the glass assembly 100, this avoids replacing the entire glass panel, thus reducing the cost, time, and difficulty of repair or replacement.
[0074] It is worth noting that the aforementioned lamp groups 200 have the same structure, which allows them to be interchangeable, thereby helping to achieve the universality of parts replacement, reducing assembly difficulty and improving assembly efficiency.
[0075] Optionally, the aforementioned light guide strip 210 may be made of a high-transmittance material, such as PMMA (Polymethyl Methacrylate), PC (Polycarbonate), or irregularly shaped glass. Preferably, the light transmittance of the aforementioned high-transmittance material is greater than or equal to 92%.
[0076] Optionally, the aforementioned light guide strip 210 may be connected to the glass assembly 100 by means of bonding or injection molding, but not limited to these methods.
[0077] Optionally, combined Figure 9 As shown, the first mounting portion 211a can be spaced apart along the length of the light guide strip 210, and its number can be, but is not limited to, one or more, such as two, three, or four. Adaptively, combined with Figure 8 As shown, the number of first connecting parts 221a can be the same as the number of first mounting parts 211a, and the first connecting parts 221a can be matched and assembled with the first mounting parts 211a one by one, which can improve the connection stability between the first connecting parts 221a and the first mounting parts 211a.
[0078] Understandably, combined Figure 9 As shown, the second mounting portion 211b can also be spaced apart along the length of the light guide strip 210, and its number can be, but is not limited to, one or more, such as two, three, or four. Adaptively, combined with Figure 8 As shown, the second connecting part 221b can also be set to the same number as the second mounting part 211b, and the second connecting part 221b can be matched and assembled with the second mounting part 211b in a one-to-one correspondence, which can improve the connection stability between the second connecting part 221b and the second mounting part 211b.
[0079] Understandably, refer to again Figure 3 The mounting brackets 230 can also be spaced apart along the length of the light guide strip 210, and their number can be, but is not limited to, one or more, such as two, three or four. Adaptively, the number of second connecting parts 221b can also be the same as that of the mounting brackets 230, and the second connecting parts 221b can be matched and assembled with the mounting brackets 230 one by one, which can improve the connection stability between the second connecting parts 221b and the mounting brackets 230.
[0080] Optionally, refer to again Figure 4 , Figure 6 and Figure 7 The first mounting part 211a and the mounting component (which can be the second mounting part 211b or the mounting bracket 230) are both provided with hooks. The first connecting part 221a and the second connecting part 221b are both provided with snap hooks. The snap hooks are detachably connected to the hooks, which helps to improve the ease of assembly.
[0081] For example, when assembling the cover 220, simply align the hooks of the cover 220 with the hooks of the first mounting part 211a, the second mounting part 211b, or the mounting bracket 230 to engage and lock them together, saving time and effort. Similarly, when disassembling, simply remove the hooks from their respective hooks.
[0082] Of course, in other embodiments, the cover 220 can be connected to the light guide strip 210 or the mounting bracket 230 by means of magnetic attraction, bolt connection or other methods. The specific choice can be made flexibly according to actual needs, and all of them fall within the protection scope of this application.
[0083] It is worth noting that, combined Figure 4 As shown, when the hook and the hook part are connected, there may be a gap in the connection, which may cause the cover 220 to shake.
[0084] Therefore, optionally, please refer to Figure 6 and Figure 11 The hook can have a limiting rib a1, and the hook can abut against the limiting rib a1 and limit the hook to the hook. This can also eliminate the gap problem that may exist when the hook and the hook are connected, which helps to improve the installation stability of the cover 220.
[0085] Alternatively, in some other embodiments, please combine Figure 8 , Figure 9 and Figure 10 As shown, the mounting component (which may be the second mounting part 211b or the mounting bracket 230) may be provided with a positioning element.
[0086] It should be noted that when the mounting component is configured as the second mounting part 211b, such as Figure 9 and Figure 10 The positioning element shown can be set as the first positioning element 212, when the mounting element is configured as the mounting bracket 230, such as Figure 11 The positioning element shown can be set as a second positioning element 231.
[0087] Continue to combine Figure 8 and Figure 10As shown, the cover 220 has a positioning part 222. The aforementioned positioning member can be limited and connected with the positioning part 222. When the hook and the hook part are engaged, they can be used in conjunction with the aforementioned positioning member and the positioning part 222 to eliminate the problem of cover shaking caused by the aforementioned locking gap. This helps to balance the ease of disassembly and assembly and the installation stability of the cover 220, and can also improve the positioning accuracy of the cover 220.
[0088] Optionally, combined Figure 8 As shown, the cover 220 may be provided with a groove 223, and the hook and positioning part 222 may be provided in the groove 223. For example, Figure 8 The second connecting part 221b can be configured as a hook and both the hook and the positioning part 222 are located in the groove 223. This can improve the compactness of the structural arrangement and allow the hook and the positioning part 222 to be used together in the same groove 223 position, which improves the ease of operation for users. For example, it is convenient for users to perform the hook-and-hook operation during installation, as well as the positioning and alignment operation of the positioning part and the positioning part 222.
[0089] Optionally, the embodiments described above in this application, which involve adding a positioning member and a positioning part 222 for limiting connection, or the embodiments that provide a limiting rib a1 on the hook part, can be freely combined and applied. For example, on one side of the cover 220, a positioning member and a positioning part 222 can be used in conjunction with a hook and hook part for fastening; on the other side of the cover 220, a limiting rib a1 is provided on the hook part to achieve hook limiting. Of course, limiting ribs a1 can also be provided on both sides of the cover 220, or positioning members and positioning parts can be used on both sides of the cover for fastening with hook parts; no limitation is imposed here.
[0090] Optionally, according to the above embodiments of this application, such as Figure 8 and Figure 9 As shown, the positioning member and the positioning part 222 can be arranged in pairs on the light guide strip 210 (or the mounting bracket 230 located at the end of the cover 220) and the end of the cover 220. In this way, while ensuring the connection stability between the cover 220 and the light guide strip 210, the manufacturing difficulty and cost can be reduced.
[0091] Preferably, one of the positioning member and the positioning part 222 is configured as a plug-in member, and the other is configured as a positioning hole. The plug-in member can be detachably plugged into the positioning hole, which helps to improve the ease of connection between the positioning member and the positioning part 222.
[0092] Alternatively, please refer to the following: Figure 2The lamp assembly 200 may include a lamp panel 240 and light-emitting elements 241 spaced apart on the lamp panel 240. The lamp panel 240 is connected to the side surface of the cover 220 facing the glass assembly 100, and each light-emitting element 241 is arranged opposite to the light guide strip 210. This achieves an integrated arrangement of the lamp panel 240, the light-emitting elements 241 and the cover 220, thereby helping to improve the ease of maintenance or replacement of the light-emitting elements 241 or the lamp panel 240.
[0093] Specifically, the mounting positions of the lamp plate 240 on the cover 220, the mounting positions of the light emitter 241 on the lamp plate 240, the relative positions of the first connecting part 221a and the first mounting part 211a, and the relative positions of the second connecting part 221b and the second mounting part 211b or the mounting bracket 230 can all be specifically designed and adjusted. This allows the light emitter 241 to be adaptively positioned relative to the light guide strip 210 after the cover 220 and the glass assembly 100 are assembled, reducing the hassle of adjusting the relative positions of the light emitter 241 and the light guide strip 210 and improving assembly efficiency.
[0094] Optionally, the lamp panel 240 may be connected to the side surface of the cover 220 facing the glass assembly 100 by means of snap-fit, adhesive or heat fusion.
[0095] Optionally, the light board 240 is specifically a PCB board. The light source 241 can be one or a combination of at least two of the following: LED chips, LED strips, and LED tubes.
[0096] For example, in this application, the light-emitting body 241 uses lamp beads, specifically LED lamp beads, which can save energy and reduce consumption while improving the lighting effect.
[0097] Optionally, please refer to Figure 3 The cover 220 may have a wire hole 224, through which the wiring harness 310 of the controller 300 can pass and be electrically connected to the lamp board 240, thus improving the ease of connection between the wiring harness 310 and the lamp board 240. Specifically, the wire hole 224 allows the wiring harness 310 and the lamp board 240 to be inserted into the cover 220 from the outside of the cover 220 after the cover 220 and the light guide strip 210 are assembled, thus improving the ease of operation.
[0098] Optionally, please continue reading Figure 3 The cover 220 may have a hook part 225 on the side surface opposite to the glass assembly 100. The hook part 225 is used to fix the wire harness 310 of the controller 300. This can reduce the shaking of the wire harness 310, reduce noise and improve the connection stability between the wire harness 310 and the lamp board 240, and prevent the wire harness 310 from becoming loose.
[0099] Preferably, the hook portion 225 can be provided at intervals along the length direction of the cover 220.
[0100] Optionally, please refer to Figure 13 The light guide strip 210 has a first light guide surface 213, which is arranged opposite to the light emitter 241, thereby improving the efficiency of light from the light emitter 241 entering the light guide strip 210.
[0101] Optionally, the glass assembly 1 may include a light-concentrating element connected to the first light-guiding surface 213. The light-emitting element and the light-concentrating element are disposed opposite to each other. The light-concentrating element is used to reduce the light divergence angle of the light-emitting element 241, thereby helping to improve the coupling efficiency of the light and ensuring that the light can enter the light guide strip 210 efficiently. Optionally, please continue to refer to... Figure 13 The light-concentrating element may include the same number of light-concentrating devices 216 as the light-emitting elements 241. The light-concentrating devices 216 are connected to the first light guide surface 213, and the light-concentrating devices 216 are arranged in a one-to-one correspondence with the light-emitting elements 241. This ensures that each light-emitting element 241 can enter the light guide strip 210 after being focused by its corresponding light-concentrating device 216, thereby helping to improve the light-emitting effect of the light-emitting elements 241 and ensuring that the light can enter the light guide strip 210 efficiently. Of course, the light-concentrating element may also be configured as an integral structure extending along the first light guide surface 213.
[0102] Alternatively, the focusing element may be implemented as, but is not limited to, a parabolic reflector or a collimating lens, etc.
[0103] Optionally, please continue reading Figure 13 The light guide strip 210 has a reflective surface 214, and both the first light guide surface 213 and the reflective surface 214 are curved and smoothly joined together. It should be noted that most of the light from the light source 241 enters the light guide strip 210 through the light-concentrating device 216 and the first light guide surface 213, while the reflective surface 214 reduces light escape. Furthermore, the aforementioned arrangement of the first light guide surface 213 and the reflective surface 214 being curved and smoothly joined together helps to increase the reflection and transmission effect of light within the light guide strip 210, thus further enhancing the light coupling effect of the light source 241.
[0104] Preferably, the reflective surface 214 is covered with a reflective material, which helps to further reduce light escape and improve the reflection and transmission effect of light within the light guide strip 210.
[0105] Optionally, please refer to Figure 13 In some embodiments, the light guide strip 210 also has a non-light guiding side 214a, which is also covered with a reflective material, thus helping to further reduce light escape and improve the reflection and transmission effect of light within the light guide strip 210.
[0106] Optionally, the aforementioned reflective material may be, but is not limited to, a PET film (Polyethylene Terephthalate Film) or other high-reflectivity coatings. Furthermore, the aforementioned reflective material may be, but is not limited to, in the form of a coating or an adhesive, which will not be elaborated further here.
[0107] Optionally, please refer to Figure 14 The light guide strip 210 has a second light guide surface 215, which is connected to the glass assembly 100. The second light guide surface 215 is provided with a light-concentrating array structure 2151, which is used to further enhance the coupling effect of light entering the light guide strip 210.
[0108] Optionally, please refer to Figure 15 and Figure 16 The light-concentrating array structure 2151 may include elongated protrusions 21511 arranged in parallel along the length of the light guide strip 210.
[0109] Alternatively, please continue reading Figure 15 and Figure 16 The elongated protrusion 21511 has a third light guide surface 21511a, which is an arc-shaped or V-shaped surface. This helps to reduce light escape and improve the focusing effect of light.
[0110] Optionally, please refer to Figure 17 In some other embodiments, the light-concentrating array structure 2151 may include curved protrusions 21512 uniformly distributed on the second light-guiding surface 215.
[0111] Alternatively, please continue reading Figure 17 The curved protrusion 21512 has a fourth light guide surface 21512a, which is hemispherical.
[0112] Optionally, refer to again Figure 2 The cover 220 may include a first edge portion 226 and a second edge portion 227 spaced apart. The glass assembly 1 includes a first seal 500 and a second seal 600. The first seal 500 is sandwiched between the first edge portion 226 and the glass assembly 100, and the second seal 600 is sandwiched between the second edge portion 227 and the glass assembly 100. This helps to reduce light leakage from the first edge portion 226 and the second edge portion 227 of the cover 220, thereby improving the luminous effect of the light-emitting element 241. In addition, the first seal 500 and the second seal 600 also help to prevent the cover 220 from colliding with the glass assembly 100, protecting the structure of the glass assembly 100.
[0113] Optionally, the aforementioned first seal 500 and second seal 600 may, but are not limited to, be implemented as foam. Specifically, the foam can be fixed between the cover 220 and the glass assembly 100 by the clamping force of the cover 220.
[0114] 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.
[0115] 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, The glass assembly includes: Glass components; and The light assembly includes a light guide strip and a cover. The light guide strip is connected to the glass assembly. The light guide strip has a first mounting portion and a second mounting portion integrally formed with the light guide strip. The first mounting portion and the second mounting portion are located on both sides of the light guide strip. The second mounting portion and the first mounting portion are spaced apart on the glass assembly. The cover has a first connecting portion and a second connecting portion. The first connecting portion is detachably connected to the first mounting portion, and the second connecting portion is detachably connected to the second mounting portion. The lamp assembly includes a lamp panel and light-emitting elements spaced apart on the lamp panel. The lamp panel is connected to the side surface of the cover facing the glass assembly, and each light-emitting element is arranged opposite to the light guide strip. The light guide strip has a first light guide surface, which is disposed opposite to the light-emitting body; The glass assembly includes a light-concentrating element, which is connected to the first light-guiding surface, and the light-emitting element is disposed opposite to the light-concentrating element; The light-concentrating element includes the same number of light-concentrating devices as the light-emitting elements. The light-concentrating devices are connected to the first light-guiding surface, and the light-concentrating devices are arranged in a one-to-one correspondence with the light-emitting elements.
2. The glass assembly according to claim 1, characterized in that, Both the first mounting part and the second mounting part are provided with hooks, and both the first connecting part and the second connecting part are provided with snap hooks, which are detachably connected to the hooks.
3. The glass assembly according to claim 2, characterized in that, The hook portion has a limiting rib, and the latch abuts against the limiting rib, thereby limiting the latch to the hook portion.
4. The glass assembly according to claim 2, characterized in that, The second mounting part is provided with a positioning element, and the cover has a positioning part, and the positioning element is limitedly connected to the positioning part.
5. The glass assembly according to claim 4, characterized in that, The cover is provided with a groove, and the hook and the positioning part are both disposed in the groove.
6. The glass assembly according to claim 1, characterized in that, The cover has a threading hole.
7. The glass assembly according to claim 1, characterized in that, The cover has a hook-line portion on the side surface opposite to the glass assembly.
8. The glass assembly according to claim 1, characterized in that, The light guide strip has a reflective surface, and both the first light guide surface and the reflective surface are arc-shaped and smoothly joined together.
9. The glass assembly according to claim 8, characterized in that, The reflective surface is covered with a reflective material.
10. The glass assembly according to claim 1, characterized in that, The light guide strip has a second light guide surface, which is connected to the glass assembly. The second light guide surface is provided with a light-concentrating array structure.
11. The glass assembly according to claim 10, characterized in that, The light-concentrating array structure includes elongated protrusions arranged side by side along the length of the light guide strip; or, the light-concentrating array structure includes curved protrusions uniformly distributed on the second light guide surface.
12. The glass assembly according to claim 11, characterized in that, The elongated protrusion has a third light-guiding surface, which is an arc-shaped or V-shaped surface.
13. The glass assembly according to claim 11, characterized in that, The curved protrusion has a fourth light-guiding surface, which is arc-shaped.
14. The glass assembly according to claim 1, characterized in that, The cover includes a first edge portion and a second edge portion spaced apart, and the glass assembly includes a first seal and a second seal, the first seal being sandwiched between the first edge portion and the glass assembly, and the second seal being sandwiched between the second edge portion and the glass assembly.
15. The glass assembly according to claim 1, characterized in that, The glass assembly includes a controller, and the glass assembly includes a first light-emitting module and a second light-emitting module. The first light-emitting module and the second light-emitting module are arranged in parallel and electrically connected through the controller. Both the first light-emitting module and the second light-emitting module include at least two light groups.
16. A vehicle, characterized in that, include: Body; as well as The glass assembly as described in any one of claims 1 to 15, wherein the glass assembly is mounted on the vehicle body.
Citation Information
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