A light guide member for vehicle identification

CN224730499UActive Publication Date: 2026-09-08CHANGZHOU YONGGUANG VEHICLE CO LTD
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Patent Information

Application Number
CN202620030255.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2026-01-12
Publication Date
2026-09-08
Estimated Expiration
2036-01-12

AI Technical Summary

Technical Problem

由于缺乏有效的光线汇聚与导向机制,光源发出的光线无法精准地集中投射到标识透光部的特定区域

Benefits of technology

通过设置导光标识机构,解决了传统结构中光线传输损耗大、投射分散以及标识显示不清晰的问题,达到了形成清晰、规整且高辨识度标识显示效果,有效提升标识透光部显示质量的目的。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of vehicle identification light guide components, including lampshade and the lamp body of being set in the right side of lampshade, vehicle identification light guide component further include light guide identification mechanism and mounting mechanism;Light guide identification mechanism is set in the side of lamp body;Light guide identification mechanism includes identification light transmission part, mounting portion and lamp pearl plate;Identification light transmission part is set in the side of lampshade, and identification light transmission part is between lampshade and lamp body, and identification light transmission part is in the middle of lampshade;Mounting portion is slidably arranged in the side of identification light transmission part, and mounting portion is used to make the end surface of identification light transmission part and the side of lampshade in abutting state, the device solves the problem that light transmission loss is big in traditional structure, projection dispersion and identification display is not clear, reaches the purpose that clear, regular and high-identification degree identification display effect is formed, effectively improves identification light transmission part display quality.
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Description

Technical Field

[0001] This utility model relates to the field of motorcycle marking light technology, and more specifically, it relates to a vehicle marking light guide component. Background Technology

[0002] In the field of motorcycle lighting, vehicle light markings are a key component for vehicle information transmission and visual recognition, and their display effect directly affects driving safety and the overall recognizability of the vehicle. Over the long term, traditional vehicle light markings have gradually revealed a series of defects that urgently need to be addressed, the most prominent and widespread of which are the dim, unclear, and difficult-to-distinguish markings.

[0003] Currently, there is significant light loss in the light transmission process of vehicle headlight markings on the market. Their internal structural design is often inadequate; after light is emitted from the light source, it undergoes multiple reflections and refractions, resulting in substantial energy attenuation by the time it reaches the light-transmitting area of ​​the marking. This leads to insufficient brightness in the markings, making it difficult to clearly identify the light source projected by the vehicle headlight markings in low-light environments.

[0004] In terms of light projection, traditional vehicle headlight markings produce a rather diffuse effect. Due to the lack of an effective light-converging and guiding mechanism, the light emitted by the light source cannot be precisely focused and projected onto a specific area of ​​the marking's translucent part. This makes the edges of the markings blurry, the shape and outline difficult to define accurately, and reduces the distinguishability between different markings. Utility Model Content

[0005] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a vehicle logo light guide component with a clear display effect.

[0006] To achieve the above objectives, the present invention provides the following technical solution: This utility model is further configured as follows: it includes a lampshade and a lamp body disposed on the right side of the lampshade. The vehicle marking light guide component also includes a light guide marking mechanism and a mounting mechanism. The light guide marking mechanism is disposed on the side of the lamp body. The light guide marking mechanism includes a marking light-transmitting part, a mounting part, and a lamp bead plate. The marking light-transmitting part is disposed on the side of the lampshade and is located between the lampshade and the lamp body, and is located in the middle of the lampshade. The mounting part is slidably disposed on the side of the marking light-transmitting part and is used to abut the end face of the marking light-transmitting part against the side of the lampshade. The lamp bead plate is disposed on the side of the mounting part, and the middle of the mounting part has an abutment interface for the lamp bead plate to abut. When the lamp bead plate moves, it can abut against the abutment interface in the middle of the mounting part. The mounting mechanism is disposed on the side of the lampshade and is used to quickly install the light guide marking mechanism to the lampshade.

[0007] By adopting the above technical solution, the problems of large light transmission loss, scattered projection, and unclear signage display in traditional structures are solved, achieving a clear, regular, and highly recognizable signage display effect, and effectively improving the display quality of the light-transmitting part of the signage.

[0008] The present invention is further configured such that: the light guiding sign mechanism also includes a first abutting part; the first abutting part is disposed on the side of the light-transmitting part of the sign, and the first abutting part is a concave structure, and the convex surface of the concave structure faces the mounting part; the end face of the mounting part is provided with a through mounting groove for the first abutting part to be inserted, and when the mounting part moves toward the light-transmitting part of the sign, the mounting groove on the end face of the mounting part can be made to abut against the convex surface of the first abutting part.

[0009] The present invention is further configured such that: the mounting mechanism includes a first circular post and a second circular post; the first circular post is disposed on the end face of the light-transmitting part of the mark, and a first mounting hole is provided in the middle of the first circular post; the second circular post is disposed on the end face of the mounting part, and a circular mating hole for inserting the first circular post is provided on the left end face of the mounting part, and a second mounting hole is provided in the middle of the second circular post that is opposite to the mounting hole in the middle of the first circular post, the first mounting hole and the second mounting hole constitute a threaded fastening mounting channel.

[0010] The present invention is further configured such that: the mounting mechanism also includes a first docking post; the first docking post has multiple first docking posts and is respectively disposed on the end face of the mounting part, the multiple first docking posts are respectively located at the corner of the abutment interface, and the end face of the multiple lamp bead plates is respectively provided with mounting through holes for the first docking posts to pass through, when the lamp bead plate can slide through the mounting through holes and the multiple first docking posts and abut with the abutment interface opened on the end face of the mounting part to form an abutment state.

[0011] The present invention is further configured such that the distribution area of ​​the lamp beads on the lamp bead plate corresponds to the abutment interface opened on the end face of the mounting part, and when the lamp bead plate slides to the abutment interface through the mounting through hole and the first docking post, the working surface of the lamp bead plate faces the working surface of the light-transmitting part of the mark.

[0012] The present invention is further configured such that: after the first circular column is inserted into the circular mating hole, the axis of the first mounting hole and the axis of the second mounting hole are collinear, and the protruding surface of the first abutting part is in contact with the inner wall of the mounting groove.

[0013] By adopting the above technical solution, operators can perform threaded fastening connection on the installed part and the light-transmitting part of the sign after the plug-in installation is completed, so as to ensure the stability of the connection between the installed part and the light-transmitting part of the sign.

[0014] In summary, this application includes at least one of the following beneficial technical effects: By setting up a light-guiding sign mechanism, the problems of large light transmission loss, scattered projection, and unclear sign display in traditional structures are solved, achieving a clear, neat, and highly recognizable sign display effect, and effectively improving the display quality of the light-transmitting part of the sign.

[0015] By setting up an installation mechanism, the second circular post on the end face of the mounting section and the first circular post on the end face of the light-transmitting section of the sign are interlocked. After the second and first circular posts are interlocked, the operator uses bolts to thread them onto both posts. At this point, the operator can tighten the threads on the mounting section and the light-transmitting section of the sign to ensure a stable connection. Attached Figure Description

[0016] Figure 1 This is a three-dimensional structural diagram of a vehicle identification light guide component according to the present invention; Figure 2 This is a three-dimensional structural diagram of a light guide mechanism for a vehicle-mounted signage component according to the present invention. Figure 3 This is a three-dimensional structural diagram of the light guide mechanism of a vehicle-mounted sign light guide component under exploded state, according to the present invention. Figure 4 This is a three-dimensional structural diagram of the first contact part of a vehicle marking light guide component according to the present invention; Figure 5 for Figure 4 Enlarged structural diagram at point A in the middle; Figure 6 for Figure 4 Enlarged structural diagram at point B; Explanation of reference numerals in the attached drawings: 1. Lampshade; 2. Lamp body; 3. Light guiding and marking mechanism; 31. Marking light-transmitting part; 32. Mounting part; 321. Abutting interface; 322. Through mounting groove; 33. Lamp bead plate; 34. First abutting part; 4. Mounting mechanism; 41. First circular column; 42. Second circular column; 43. First docking column. Detailed Implementation

[0017] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. The present invention will now be described in detail with reference to the accompanying drawings and embodiments.

[0018] It should be noted that, unless otherwise specified, all technical and scientific terms used in this application have the same meaning as commonly understood by one of ordinary skill in the art to which this application pertains.

[0019] Please see Figure 1-6 The present invention provides the following technical solution: Example 1 addresses the problem of dim, unclear, and difficult-to-distinguish markings in traditional vehicle headlight markings.

[0020] The vehicle-mounted signage light guide component includes a lamp cover 1 and a lamp body 2 located on the right side of the lamp cover 1. It also includes a light guide signage mechanism 3 and a mounting mechanism 4. The light guide signage mechanism 3 is located beside the lamp body 2. The light guide signage mechanism 3 includes a signage light-transmitting part 31, a mounting part 32, and a lamp bead plate 33. The signage light-transmitting part 31 is located beside the lamp cover 1, between the lamp cover 1 and the lamp body 2, and in the center of the lamp cover 1. The mounting part 32 is slidably disposed on the signage light-transmitting part. The light-transmitting part 31 is located on the side of the lampshade 1, and the mounting part 32 is used to bring the end face of the light-transmitting part 31 into contact with the side of the lampshade 1; the lamp bead plate 33 is located on the side of the mounting part 32, and the mounting part 32 has a contact interface 321 in the middle for the lamp bead plate 33 to contact, so that when the lamp bead plate 33 moves, it can contact the contact interface 321 in the middle of the mounting part 32; the mounting mechanism 4 is located on the side of the lampshade 1, and the mounting mechanism 4 is used to quickly install the light guide marking mechanism 3 to the lampshade 1.

[0021] In this embodiment, the corresponding position of the abutment interface 321 in the middle of the marking light-transmitting part 31 and the mounting part 32 is preferably made of a light-transmitting material. First, the operator should install the LED bead board 33 into the abutment interface 321 opened on the end face of the mounting part 32. In this state, the LED bead board 33 can be in a mounting abutment state with the abutment interface 321 of the mounting part 32. Then, the operator installs the installed mounting part 32 and the LED bead board 33 onto the end face of the marking light-transmitting part 31 through the mounting part 32. In this embodiment, the working surface of the LED bead board 33 serves as the light source generating surface. After being powered on, the light emitted is efficiently transmitted through the abutment interface 321 of the mounting part 32 and focused and projected onto the marking light-transmitting part 31. The marking light-transmitting part 31 selectively transmits and scatters light, forming a clear, regular, and highly recognizable marking display effect, thus improving the display effect of the marking light-transmitting part 31. It solves the problems of high light transmission loss, scattered projection, and unclear signage display in traditional structures, and achieves a clear, regular and highly recognizable signage display effect, effectively improving the display quality of the light-transmitting part 31 of the signage.

[0022] See Figure 4 The light guide sign mechanism 3 also includes a first abutting part 34; the first abutting part 34 is disposed on the side of the light-transmitting part 31 of the sign, and the first abutting part 34 has a concave structure, and the convex surface of the concave structure faces the mounting part 32; the end face of the mounting part 32 is provided with a through mounting groove 322 for the first abutting part 34 to be inserted, and when the mounting part 32 moves toward the light-transmitting part 31 of the sign, the mounting groove on the end face of the mounting part 32 can be made to abut against the convex surface of the first abutting part 34.

[0023] First, the operator moves the mounting part 32 to the side of the light-transmitting part 31. Then, the operator adjusts the orientation of the mounting part 32 so that the mounting groove 322 on the end face of the mounting part 32 accurately aligns with the concave-convex surface of the first abutment part 34 on the end face of the light-transmitting part 31. After this alignment, the operator applies pressure to the inner surface of the mounting part 32 and the end face of the light-transmitting part 31, pressing them together to achieve quick and easy installation.

[0024] Example 2: In order to quickly install the LED bead board 33 onto the end face of the mounting part 32.

[0025] See Figure 5 and Figure 6 The mounting mechanism 4 includes a first circular post 41 and a second circular post 42. The first circular post 41 is disposed on the end face of the light-transmitting part 31, and a first mounting hole is provided in the middle of the first circular post 41. The second circular post 42 is disposed on the end face of the mounting part 32, and a circular mating hole for inserting the first circular post 41 is provided on the left end face of the mounting part 32. A second mounting hole is provided in the middle of the second circular post 42, which is opposite to the mounting hole in the middle of the first circular post 41. The first mounting hole and the second mounting hole constitute a threaded fastening mounting channel.

[0026] In this embodiment, after the mounting part 32 aligns with the first abutting part 34, the second circular post 42 on the end face of the mounting part 32 and the first circular post 41 on the end face of the light-transmitting part 31 are interlocked. After the second circular post 42 and the first circular post 41 are interlocked, the operator uses bolts to thread them onto the second circular post 42 and the first circular post 41 respectively. At this time, the operator can tighten the threaded connection between the mounting part 32 and the light-transmitting part 31 after the interlocking installation is completed to ensure the stability of the connection between the mounting part 32 and the light-transmitting part 31.

[0027] See Figure 5 and Figure 6 The mounting mechanism 4 also includes a first docking post 43; the first docking post 43 has multiple posts and is respectively disposed on the end face of the mounting part 32. The multiple first docking posts 43 are respectively located at the corner of the abutment interface 321, and the end face of the multiple lamp bead plates 33 is respectively provided with mounting through holes for the first docking posts 43 to pass through. When the lamp bead plate 33 can slide through the mounting through holes and the multiple first docking posts 43 and abut against the abutment interface 321 opened on the end face of the mounting part 32, it is in an abutting state.

[0028] In this embodiment, when installing the LED bead plate 33 and the mounting part 32, the operator first needs to precisely adjust the position of the LED bead plate 33 so that the mounting through holes on the end face of the LED bead plate 33 correspond to the corresponding first mating post 43 and the abutment interface 321 on the end face of the mounting part 32. After confirming that the positions are correct, the operator quickly installs the LED bead plate 33 to the abutment interface 321 with the help of the first mating post 43, completing the installation of the LED bead plate 33 and the mounting part 32.

[0029] See Figures 2-4 The distribution area of ​​the LED beads on the LED bead plate 33 corresponds to the abutment interface 321 opened on the end face of the mounting part 32. When the LED bead plate 33 slides to the abutment interface 321 through the mounting through hole and the first docking post 43, the working surface of the LED bead plate 33 faces the working surface of the marking light-transmitting part 31.

[0030] In this embodiment, the LED distribution area of ​​the LED plate 33 corresponds to the abutment interface 321 opened on the end face of the mounting part 32. When the LED plate 33 slides to the abutment interface 321 through the mounting through hole and the first docking post 43, since the working surface of the LED plate 33 is the light source emitting surface and the working surface of the light-transmitting part 31 is the light source irradiating surface, in order to ensure that the light can be emitted from the working surface of the LED plate 33 and projected onto the working surface of the light-transmitting part 31 efficiently and accurately, the working surface of the LED plate 33 naturally faces the working surface of the light-transmitting part 31, thereby realizing the effective transmission of light and the clear display of the mark.

[0031] See Figure 5 and Figure 6 After the first circular column 41 is inserted into the circular mating hole, the axes of the first mounting hole and the second mounting hole are collinear, and the protruding surface of the first abutting part 34 is in contact with the inner wall of the mounting groove.

[0032] In this embodiment, after the first circular post 41 is inserted into the circular mating hole, the axes of the first mounting hole and the second mounting hole are collinear, providing a positioning basis for subsequent threaded connection using bolts and fasteners. This ensures that the bolts can smoothly pass through the first and second mounting holes, achieving a stable threaded connection between the mounting part 32 and the light-transmitting part 31. Simultaneously, the protruding surface of the first abutting part 34 is in contact with the inner wall of the mounting groove, increasing the contact area between the mounting part 32 and the light-transmitting part 31, improving the stability and sealing of the connection, preventing loosening or light leakage, and further ensuring the normal operation and display effect of the entire light-guiding sign mechanism 3.

[0033] Obviously, the embodiments described above are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort should fall within the protection scope of this utility model.

Claims

1. A vehicle marking light guide component, comprising a lamp cover (1) and a lamp body (2) disposed on the right side of the lamp cover (1), characterized in that: The vehicle marking light guide component also includes a light guide marking mechanism (3) and an installation mechanism (4); The light guide signage mechanism (3) is located on the side of the lamp body (2); The light guide signage mechanism (3) includes a light-transmitting part (31), a mounting part (32), and a lamp bead plate (33); The light-transmitting part (31) of the sign is located on the side of the lampshade (1), and the light-transmitting part (31) of the sign is located between the lampshade (1) and the lamp body (2), and the light-transmitting part (31) of the sign is located in the middle of the lampshade (1); The mounting part (32) is slidably disposed on the side of the light-transmitting part (31) of the sign, and the mounting part (32) is used to make the end face of the light-transmitting part (31) of the sign abut against the side of the lampshade (1); The lamp bead plate (33) is located on the side of the mounting part (32), and the mounting part (32) has a contact interface (321) in the middle for the lamp bead plate (33) to abut. When the lamp bead plate (33) moves, it can abut against the contact interface (321) in the middle of the mounting part (32). The mounting mechanism (4) is located on the side of the lampshade (1). The mounting mechanism (4) is used to quickly install the light guide sign mechanism (3) to the lampshade (1).

2. A light guide member for a vehicle identification according to claim 1, characterized in that: The light guide sign mechanism (3) also includes a first abutting part (34); the first abutting part (34) is located on the side of the light-transmitting part (31) of the sign, and the first abutting part (34) is a concave structure, and the convex surface of the concave structure faces the mounting part (32); the end face of the mounting part (32) is provided with a through mounting groove (322) for the first abutting part (34) to be inserted, and when the mounting part (32) moves toward the light-transmitting part (31) of the sign, the mounting groove on the end face of the mounting part (32) can be made to abut against the convex surface of the first abutting part (34).

3. A light guide member for a vehicle identification according to claim 2, characterized in that: The mounting mechanism (4) includes a first circular post (41) and a second circular post (42); the first circular post (41) is disposed on the end face of the light-transmitting part (31) of the marking, and a first mounting hole is provided in the middle of the first circular post (41); the second circular post (42) is disposed on the end face of the mounting part (32), and a circular mating hole for inserting the first circular post (41) is provided on the left end face of the mounting part (32), and a second mounting hole is provided in the middle of the second circular post (42) that is opposite to the mounting hole in the middle of the first circular post (41). The first mounting hole and the second mounting hole constitute a threaded fastening mounting channel.

4. A light guide identification member for a vehicle according to claim 3, wherein: The mounting mechanism (4) also includes a first docking post (43); the first docking post (43) has multiple posts and is respectively disposed on the end face of the mounting part (32). The multiple first docking posts (43) are respectively located at the corner of the abutment interface (321), and the end face of the multiple lamp bead plates (33) is respectively provided with mounting through holes for the first docking posts (43) to pass through. When the lamp bead plate (33) can slide through the mounting through holes and the multiple first docking posts (43) and abut with the abutment interface (321) opened on the end face of the mounting part (32), it is in an abutting state.

5. A light guide identification member for a vehicle according to claim 4, wherein: The distribution area of ​​the LED beads on the LED bead plate (33) corresponds to the abutment interface (321) opened on the end face of the mounting part (32). When the LED bead plate (33) slides to the abutment interface (321) through the mounting through hole and the first docking post (43), the working surface of the LED bead plate (33) faces the working surface of the marking light-transmitting part (31).

6. A light guide identification member for a vehicle according to claim 5, wherein: After the first circular column (41) is inserted into the circular mating hole, the axis of the first mounting hole and the second mounting hole are collinear, and the protruding surface of the first abutting part (34) is in contact with the inner wall of the mounting groove.