Logo light and car
Patent Information
- Application Number
- CN202521647772.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-04
- Publication Date
- 2026-09-04
- Estimated Expiration
- 2035-08-04
AI Technical Summary
[0005]本实用新型的目的在于解决现有技术中发光徽标灯在汽车车身上尺寸较小的平面无法使用的问题
[0005] The purpose of this invention is to solve the problem that luminous logo lights cannot be used on small flat surfaces on car bodies in the prior art.
Smart Images

Figure CN224720571U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of automobile manufacturing technology, and in particular relates to an emblem light that can be applied to automobiles. Background Technology
[0002] Illuminated emblem lights are lighting fixtures that can be installed on vehicles, typically located in certain areas such as the vehicle emblem or specific decorative areas. They emit light through built-in LEDs or other light sources, making the vehicle more visible and recognizable at night or in low light. Illuminated emblem lights not only enhance the vehicle's aesthetics but also improve vehicle safety.
[0003] Most existing luminous logo lights are independently installed fixtures. During manufacturing, a diaphragm is typically installed using in-mold injection molding, followed by multiple coats and laser engraving to attach the brand logo to the back of a transparent component. An internal light source then illuminates the diaphragm to display the logo. However, because in-mold injection molding requires a mold with sufficient space to accommodate the film and liquid plastic, its application to complex or small components can lead to uneven bonding, pattern distortion, or weak adhesion. Larger flat surfaces provide sufficient space and a stable contact surface, meeting this requirement. Therefore, the limitation of in-mold injection molding restricts its application to larger, flat brand logos, making luminous logo lights unusable on smaller, flat surfaces on automotive bodies.
[0004] Therefore, existing technologies have the problem that illuminated logo lights cannot be used on small flat surfaces on car bodies. Utility Model Content
[0005] The purpose of this invention is to solve the problem that luminous logo lights cannot be used on small flat surfaces on car bodies in the prior art.
[0006] To solve the above problems, this utility model provides an logo light, including a lamp housing with an opening on one side, a light distribution shell detachably disposed on the opening side of the lamp housing, the light distribution shell and the lamp housing together forming a receiving cavity, a light distribution lens and a light-emitting component are arranged side by side in the receiving cavity, the light-emitting component includes a light-emitting component and a light-concentrating component arranged side by side.
[0007] In this design, along the length of the lamp housing, the light-emitting component, the light-concentrating component, and the light-distributing lens are arranged sequentially within the receiving cavity. The light-emitting component is located closer to the bottom of the lamp housing, while the light-distributing lens is located closer to the top of the light-distributing lens. By placing both the light-emitting component and the light-concentrating component within the receiving cavity, the light emitted by the light-emitting component can be prevented from scattering. The light emitted by the light-emitting component is concentrated by the light-concentrating component and then transmitted to the light-distributing lens, resulting in a better light presentation effect on the light-transmitting protrusion.
[0008] Furthermore, a patterned light-transmitting portion is provided on the side of the light-emitting lens away from the light-emitting component. The patterned light-transmitting portion includes at least one light-transmitting protrusion protruding from the top surface of the light-emitting lens. At least one protrusion passing area is formed on the light-distributing housing, which is respectively adapted to the at least one light-transmitting protrusion. Each light-transmitting protrusion passes through the corresponding protrusion passing area at least at its top and extends out of the top surface of the light-distributing housing. The light transmittance of the light-distributing housing is less than that of the light-distributing lens. The light emitted by the light-emitting component is transmitted to the light-distributing lens through the light-concentrating component and is emitted out through the portion of the light-transmitting protrusion that extends out of the top surface of the light-distributing housing.
[0009] Using the above technical solution, before installation onto the car body, the top of each light-transmitting protrusion of the light-distributing lens is first passed through the corresponding protrusion passage area. Then, the light-emitting component and the focusing component are installed sequentially. Finally, the light-distributing housing is fixedly installed on one side of the lamp housing opening, so that the light-distributing lens, the light-emitting component, and the focusing component are all located within the receiving cavity. Then, the lamp housing is installed onto the car body. Furthermore, since the light transmittance of the light-distributing housing is less than that of the light-distributing lens, when this logo light is in use, the light emitted by the light-emitting component is transmitted to the light-distributing lens through the focusing component and emitted through the portion of the light-transmitting protrusion extending out of the top surface of the light-distributing housing. This results in a different light transmission effect between the top surface of the light-transmitting protrusion extending out of the light-distributing housing and the light-distributing housing. The light emitted through the light-transmitting protrusion highlights the car logo on the top surface of the light-distributing housing.
[0010] Therefore, this type of emblem light does not require diaphragm injection molding. During manufacturing, the size of the emblem light is designed solely based on the determined installation dimensions on the car body. For example, when the installation size on the car body is small, by reducing the size of the lens, only one light-transmitting protrusion can be used to highlight the car emblem. When the installation size on the car body is large or there are multiple emblems, multiple light-transmitting protrusions can be used to highlight the car emblem. Thus, this type of emblem light has the advantage of wide applicability and offers more options for installation on vehicles.
[0011] Furthermore, by placing both the light-emitting component and the light-focusing component within the housing cavity, on the one hand, the light emitted by the light-emitting component can be prevented from scattering, resulting in a better light presentation effect on the light-transmitting protrusion; on the other hand, this also allows for a higher degree of integration and a more compact design for the logo light.
[0012] Furthermore, in one embodiment of the logo light, at least the top outer surface area of each light-transmitting protrusion extending from the top surface of the light-distributing housing is treated by any one of hot stamping, pad printing, or spray painting; and / or the inner wall surface of the light-distributing lens away from the light-distributing housing is provided with a light-diffusing part that refracts the light entering the light-distributing lens, wherein the light-diffusing part is a light-diffusing coating sprayed on the inner wall surface or a light-diffusing texture formed on the inner wall surface.
[0013] By adopting the above technical solution, each light-transmitting protrusion extending from the top surface of the light-distributing housing, at least the top outer surface area, can be treated by any one of hot stamping, pad printing, or spray painting so that even when the light-emitting component is not emitting light, the light-transmitting protrusion extending from the top surface of the light-distributing housing will still display the car logo. The effect is more obvious during the day, which improves the practicality of this logo light.
[0014] Furthermore, in one embodiment of an emblem light, a light-emitting component is fixedly installed inside the lamp housing near the bottom of the lamp housing, a light-concentrating component is disposed on the side of the light-emitting component away from the bottom of the lamp housing and is fixedly connected to the lamp housing, and a light-distributing lens is located on the side of the light-concentrating component away from the lamp housing and is fixedly installed on the light-distributing housing; wherein, the light-distributing housing is made of opaque material and the light-distributing lens is made of light-transmitting material.
[0015] By employing the above technical solution, and placing the light-emitting component within the lamp housing, the light from this emblem light will not escape from the housing during use, and the size of the emblem light is reduced in the length direction. Furthermore, by using an opaque material for the light-distributing shell and a light-transmitting material for the light-distributing lens, the contrast between the top surface of the light-transmitting protrusion and the shell is more pronounced, allowing the light emitted from the protrusion to more clearly highlight the car emblem on the top surface of the shell.
[0016] Furthermore, in one embodiment of an emblem light, the light distribution lens includes at least one protrusion spaced sequentially along the width direction of the lamp housing. Along the length direction, each protrusion has a light-transmitting protrusion protruding from its top surface on the side opposite to the light-concentrating member. The light distribution housing also has at least one receiving portion spaced along the width direction, corresponding to each protrusion. The top surface of each receiving portion has a protrusion passage area adapted to the light-transmitting protrusion at the top of the corresponding protrusion. Each protrusion is adapted and fixed to the inner side of a corresponding receiving portion, and the light-transmitting protrusion at its top passes through its respective protrusion passage area at least at its top.
[0017] By adopting the above technical solution, and by fixing the protrusion to the inside of the receiving part, the size of this logo light in the length direction can be reduced.
[0018] An embodiment of an logo light includes a focusing component comprising a mounting bracket fixedly mounted on a lamp housing, and at least one focusing element spaced along the width direction on one side of the mounting bracket near the light-distributing housing and corresponding to at least one protrusion; wherein, in the length direction, each protrusion covers the end of the corresponding focusing element away from the light-emitting component; and, at least one end of each focusing element extends into a receiving portion on the corresponding side.
[0019] By adopting the above technical solution, in the length direction, each protrusion covers the end of the corresponding condenser away from the light-emitting component; thus, the light emitted by the light-emitting component can be accurately transmitted by each condenser to the corresponding protrusion, and then emitted through the light-transmitting protrusion to the top surface of the light distribution housing. The light will not be scattered and can be accurately transmitted to each light-transmitting protrusion, thereby making the logo light work more reliably and the logo light display logo more beautifully; in addition, at least one end of each condenser extends into the receiving part on the corresponding side, thereby further reducing the length of the logo light.
[0020] This invention also provides a car body including the aforementioned emblem light. Because this emblem light does not require diaphragm injection molding when installed on a car body, its size can be designed simply by determining the installation dimensions on the car body. For example, when the installation dimensions on the car body are small, only one light-transmitting protrusion can be set to highlight the car emblem after reducing the size of the lens. When the installation dimensions on the car body are large or there are multiple emblems, multiple light-transmitting protrusions can be set to highlight the car emblem. Therefore, there are more options when installing this emblem light on a car body. Attached Figure Description
[0021] Figure 1 An exploded view of the logo light provided in an embodiment of this utility model;
[0022] Figure 2 A cross-sectional view of the logo light provided in an embodiment of this utility model.
[0023] Explanation of reference numerals in the attached figures:
[0024] 1. Logo light;
[0025] 10. Lamp housing;
[0026] 100. Mounting base;
[0027] 20. Light distribution housing;
[0028] 200. Raised passageway; 210. Containment section;
[0029] 30. Receiving cavity;
[0030] 40. Optical glasses;
[0031] 400. Light-transmitting protrusion; 410. Protrusion; 420. Connecting part;
[0032] 50. Light-emitting components;
[0033] 500. Focusing component; 510. Light-emitting component; 520. Mounting bracket; 530. Concentrator; 540. Lamp circuit board; 550. Lighting element assembly;
[0034] L represents the length direction; W represents the width direction. Detailed Implementation
[0035] As described in the background section, existing luminous logo lights are mostly independently installed fixtures. During manufacturing, a diaphragm is typically installed using in-mold injection molding, followed by multiple coating processes and laser engraving to attach the brand logo to the back of a transparent component. An internal light source then illuminates the diaphragm to display the logo. However, because the in-mold injection molding process requires sufficient space within the mold to accommodate the film and liquid plastic, its application to complex or small components can lead to uneven bonding, pattern distortion, or weak adhesion. Larger flat surfaces provide sufficient space and a stable contact surface, meeting this requirement. Therefore, the limitation of in-mold injection molding restricts its application to larger, flat brand logos, making luminous logo lights unusable on smaller, flat surfaces on automotive bodies.
[0036] To address the aforementioned problems, this utility model provides an emblem light, comprising a lamp housing with an opening on one side, a light-distributing housing detachably disposed on the opening side of the lamp housing, the light-distributing housing and the lamp housing together forming a receiving cavity, within which a light-distributing lens for light transmission and a light-emitting component for emitting a light source are arranged side-by-side, the light-emitting component including a light-emitting member and a light-concentrating member arranged side-by-side; a patterned light-transmitting portion is provided on the side of the light-distributing lens away from the light-emitting component, the patterned light-transmitting portion including at least one light-transmitting protrusion protruding from the top surface of the light-distributing lens, and at least one protrusion passing area corresponding to and adapted to the at least one light-transmitting protrusion is formed on the light-distributing housing, and each light-transmitting protrusion at least passes through the corresponding protrusion passing area at its top and extends out of the top surface of the light-distributing housing; this emblem light does not require the use of diaphragm injection molding process, and during manufacturing, only the installation dimensions on the car body need to be determined to design the size of this emblem light, thus this emblem light has the advantage of wide applicability and more choices when installed on the car body.
[0037] To make the objectives, technical solutions, and advantages of this utility model clearer, the embodiments of this utility model will be described in further detail below with reference to the accompanying drawings.
[0038] like Figure 1 and Figure 2As shown, an emblem light 1 includes a lamp housing 10 with an opening on one side, and a light-distributing housing 20 detachably disposed on the opening side of the lamp housing 10. The light-distributing housing 20 and the lamp housing 10 together form a receiving cavity 30. A light-distributing lens 40 for light transmission and a light-emitting component 50 for emitting a light source are arranged side-by-side within the receiving cavity 30. The light-emitting component 50 includes a light-emitting member 510 and a light-focusing member 50 arranged side-by-side. It should be understood that the connection between the lamp housing 10 and the light-distributing housing 20 can be achieved through bolting, rivet fastening, etc., and this embodiment does not limit this to a specific method.
[0039] Specifically, along the length L of the lamp housing 10, the light-emitting component 510, the focusing component 500, and the light-distributing lens 40 are sequentially arranged within the receiving cavity 30. The light-emitting component 510 is positioned closer to the bottom of the lamp housing 10 within the receiving cavity 30, while the light-distributing lens 40 is positioned closer to the top of the light-distributing housing 20. Positioning both the light-emitting component 510 and the focusing component 500 within the receiving cavity 30 also prevents light emission from the light-emitting component 50 from scattering. The light emitted by the light-emitting component 510 is focused by the focusing component 500 and then transmitted to the light-distributing lens 40, resulting in a better light presentation effect on the light-transmitting protrusion 400. It should be noted that the lamp housing 10 is made of an opaque material.
[0040] More specifically, the light-distributing lens 40 has a patterned light-transmitting portion on the side opposite to the light-emitting component 50. This patterned light-transmitting portion includes at least one light-transmitting protrusion 400 protruding from the top surface of the light-distributing lens 40. The light-distributing housing 20 has at least one protrusion passage area 200 corresponding to each of the at least one light-transmitting protrusion 400, and each light-transmitting protrusion 400 at least passes through the corresponding protrusion passage area 200 and extends beyond the top surface of the light-distributing housing 20. The light transmittance of the light-distributing housing 20 is less than that of the light-distributing lens 40. The light emitted by the light-emitting component 510 is transmitted to the light-distributing lens 40 via the light-concentrating component 500 and exits through the portion of the light-transmitting protrusion 400 extending beyond the top surface of the light-distributing housing 20. It should be understood that the number of light-transmitting protrusions 400 can be one, two, four, etc., and the number of corresponding protrusion passage areas 200 can be one, two, four, etc., which is not limited in this embodiment.
[0041] More specifically, before installation on the car body, the top of each light-transmitting protrusion 400 of the lens 40 is first passed through the corresponding protrusion passage area 200. Then, the light-emitting component 510 and the focusing component 500 are installed in sequence. Finally, the light-distributing housing 20 is fixedly installed on one side of the opening of the lamp housing 10, so that the lens 40, the light-emitting component 510, and the focusing component 500 are all located within the receiving cavity 30. Then, the lamp housing 10 is installed on the car body. Furthermore, since the light transmittance of the light-distributing housing 20 is less than that of the lens 40, when this logo light 1 is in use, the light emitted by the light-emitting component 510 is transmitted to the lens 40 through the focusing component 500 and emitted through the portion of the light-transmitting protrusion 400 extending out of the top surface of the light-distributing housing 20. This results in a different light transmission effect between the top surface of the light-transmitting protrusion 400 extending out of the light-distributing housing 20 and the light-distributing housing 20. The light emitted by the light-transmitting protrusion 400 highlights the car logo on the top surface of the light-distributing housing 20.
[0042] Therefore, this emblem light 1 does not require diaphragm injection molding to manufacture. During production, the size of the emblem light 1 is designed solely by determining the mounting dimensions on the car body. For example, when the mounting dimensions on the car body are small, by reducing the size of the lens 40, only one light-transmitting protrusion 400 can be set to highlight the car emblem. When the mounting dimensions on the car body are large or there are multiple emblems, multiple light-transmitting protrusions 400 can be set to highlight the car emblem. Thus, this emblem light 1 has the advantage of wide applicability, offering more options when installing it on a vehicle body.
[0043] It is important to understand that transmittance represents the ability of light to pass through a medium; it is the percentage of light flux passing through a transparent or translucent body relative to the incident light flux. For example, the transmittance of the light-distributing housing 20 is less than 20%, and can be 10%, 15%, 18%, etc.; the transmittance of the light-distributing lens 40 is greater than 60%, and can be 62%, 70%, 90%, etc.
[0044] Optionally, to ensure that the car emblem is visible even during the day, in one embodiment of this invention, at least the top outer surface area of each light-transmitting protrusion 400 extending from the top surface of the light-distributing housing 20 is treated with any one of the following processes: hot stamping, pad printing, or spray painting. This ensures that even when the light-emitting component 510 is not emitting light, the car emblem is still visible on the top surface of the light-distributing housing 20, with a more pronounced effect during the day, thus enhancing the practicality of this emblem light 1.
[0045] Of course, in another embodiment, the inner wall surface of the light distribution lens 40 away from the light distribution housing 20 is provided with a light-diffusing part that refracts the light entering the light distribution lens 40. The light-diffusing part is a light-diffusing coating sprayed on the inner wall surface or a light-diffusing texture formed on the inner wall surface. By providing the light-diffusing part, the light can be better emitted from the side wall of the light-transmitting protrusion 400, thereby improving the aesthetics of this logo light 1.
[0046] Alternatively, in one feasible implementation, such as Figure 1 As shown, in order to facilitate the fixed installation of the lamp housing 10 on the car body, a plurality of mounting seats 100 are also provided at intervals on the outer peripheral wall of the lamp housing 10, and the lamp housing 10 is fixedly installed on the car body through the plurality of mounting seats 100.
[0047] Specifically, by setting multiple mounting brackets 100 to be fixedly connected to the vehicle body, the connection strength between the mounting bracket 100 and the vehicle body can be improved, thereby enabling the emblem and the like to be used more reliably. It should be noted that the number of mounting brackets 100 can be 2, 3, 5, etc.
[0048] It should be understood that the fixing connection between the mounting base 100 and the car body can be screwed, snap-fit, etc., and this embodiment does not limit it.
[0049] like Figure 1 and Figure 2 As shown below, the specific arrangement of the light-emitting component 50 and the lens 40 will be further explained.
[0050] Optionally, in one feasible embodiment, the light distribution lens 40 is located on the side of the light-concentrating member 500 away from the lamp housing 10 and is fixedly installed on the light distribution housing 20, thereby preventing the light distribution lens 40 from shaking due to the shaking of the vehicle during driving. The light-emitting member 510 is fixedly installed inside the lamp housing 10, near the bottom of the lamp housing 10, so that the light does not escape from the lamp housing during use, and the size of the logo light 1 is reduced in the length direction L.
[0051] Furthermore, the focusing member 500 is disposed on the side of the light-emitting member 510 away from the bottom of the lamp housing 10 and is fixedly connected to the lamp housing 10, so that the light emitted by the light-emitting member 510 can be better transmitted to the light distribution lens 40 by the focusing member 500, and the light will not be scattered. In addition, the light distribution housing 20 is made of opaque material, and the light distribution lens 40 is made of light-transmitting material, so that when this logo light 1 is lit, the contrast between the light-transmitting protrusion 400 protruding from the top surface of the light distribution housing 20 and the light distribution housing 20 is more obvious, and the light emitted by the light-transmitting protrusion 400 more clearly highlights the car logo on the top surface of the light distribution housing 20.
[0052] Specifically, since the light distribution lens 40 is fixedly installed on the light distribution housing 20 and has no direct connection with the lamp housing 10 and the light-emitting component 50, when the light distribution lens 40 and the light distribution housing 20 are damaged in a car accident, but the light-emitting component 50 and the lamp housing 10 are not damaged, the light distribution housing 20 and the light distribution lens 40 can be replaced by removing the light distribution housing 20 from the lamp housing 10 without replacing the lamp housing 10. Therefore, this type of logo light 1 also has the advantages of easy maintenance and low maintenance cost.
[0053] It should be understood that opaque materials are materials with a light transmittance of 0, such as iron, aluminum, ceramics, etc.; light-transmitting materials are materials that can transmit light, that is, materials with a light transmittance greater than 0. In this embodiment, the light transmittance of the light-transmitting material should be as high as possible, such as polycarbonate; however, this embodiment does not limit it.
[0054] Optionally, in one feasible implementation, the fixing method between the light distribution lens 40 and the light distribution housing 20 is: to fix them together by any one of the following processes: secondary injection molding, insert injection molding, or welding, thereby simplifying the assembly process between the light distribution lens 40 and the light distribution housing 20 and enhancing the structural strength and durability of the light distribution lens 40 and the light distribution housing 20.
[0055] Optionally, in one feasible embodiment, the light distribution lens 40 includes at least one protrusion 410 arranged sequentially at intervals along the width direction W of the lamp housing 10. Along the length direction L, each protrusion 410 has a light-transmitting protrusion 400 protruding from the top surface of the protrusion 410 on the side opposite to the light-concentrating member 500, so that the logo formed by the light-transmitting protrusion 400 on the light distribution housing 20 is spaced apart and not arranged haphazardly, thus improving the aesthetics of the logo light 1.
[0056] Specifically, the light-distributing housing 20 is provided with at least one receiving portion 210 corresponding to each protrusion 410 at intervals along the width direction W. The top surface of each receiving portion 210 is provided with a protrusion passage area 200 adapted to the light-transmitting protrusion 400 on the top of the corresponding protrusion 410. Each protrusion 410 is adapted to be fixed inside the corresponding receiving portion 210, and the light-transmitting protrusion 400 on the top passes through the respective protrusion passage area 200 at least at its top. By fixing the protrusion 410 to the inside of the receiving portion 210, the size of this logo light 1 in the length direction L can be reduced.
[0057] It should be noted that the number of protrusions 410 can be 1, 2, 4, etc., and the corresponding light-transmitting protrusions 400, receiving portions 210, and protrusion passage areas 200 should also be set to 1, 2, 4, etc.; this embodiment does not limit this.
[0058] Optionally, in one feasible embodiment, the lens 40 further includes a connecting portion 420 for connecting two adjacent protrusions 410 together in the width direction W, and the connecting portion 420 is fixedly connected to the lens housing 20 to fix the two adjacent protrusions 410 to the lens housing 20.
[0059] Specifically, a connecting part 420 is provided between each of two adjacent protrusions 410. When the light distribution lens 40 is fixedly connected to the light distribution housing 20, each protrusion 410 is fixed, thereby improving the reliability of the use of this logo light 1.
[0060] The following provides a further explanation of the specific configuration of the light-concentrating component 500.
[0061] Alternatively, in one feasible implementation, such as Figure 1 As shown, the focusing component 500 includes a mounting bracket 520 fixedly mounted on the lamp housing 10, and at least one focusing element 530 spaced along the width direction W on the side of the mounting bracket 520 near the light distribution housing 20 and corresponding to at least one protrusion 410 respectively. In the length direction L, each protrusion 410 covers the end of the corresponding focusing element 530 facing away from the light-emitting component 510. This allows the light emitted by the light-emitting component 510 to be accurately transmitted by each focusing element 530 to the corresponding protrusion 410, and then projected through the light-transmitting protrusion 400 out of the top surface of the light distribution housing 20. The light does not scatter and is accurately transmitted to each light-transmitting protrusion 400, making the logo light 1 more reliable in operation and more aesthetically pleasing when displaying the logo. It should be understood that the fixing connection between the mounting bracket 520 and the lamp housing 10 can be by snap-fit, welding, screwing, etc.
[0062] Specifically, each condenser 530 extends at least one end into the receiving portion 210 on the corresponding side, thereby further reducing the length of this logo light 1.
[0063] It should be noted that the number of light-transmitting elements is unlimited. For example, if there are 1, 2, or 4 elements, the corresponding number of protrusions 410 will also be 1, 2, or 4.
[0064] The structure and arrangement of the light-emitting component 510 will be further explained below.
[0065] Alternatively, in one feasible implementation, such as Figure 1 and Figure 2As shown, the light-emitting component 510 includes a lamp circuit board 540 fixedly mounted on the lamp housing 10, and at least one group of light-emitting elements 550 spaced along the width direction W on the side of the lamp circuit board 540 near the focusing component 500 and corresponding to at least one light-transmitting element. Each focusing element 530 covers its corresponding group of light-emitting elements 550, thereby ensuring that the light emitted from the group of light-emitting elements 550 is transmitted to each focusing element 530 in a timely manner without light scattering. It should be understood that the fixed connection between the lamp circuit board 540 and the lamp housing 10 can be a screw connection, a snap-fit connection, or the like.
[0066] Specifically, the lighting element group 550 includes at least one light-emitting element, which can be configured as an LED light. It should be understood that the number of light-emitting elements in each lighting element group 550 can be 1, 2, 4, etc., and this embodiment does not limit this.
[0067] This utility model also provides a car, including the aforementioned emblem light 1. Since this emblem light 1 does not require diaphragm injection molding when installed on the car body, its size can be designed simply by determining the installation dimensions on the car body. For example, when the installation dimensions on the car body are small, by reducing the size of the lens 40, only one light-transmitting protrusion 400 can be provided to highlight the car emblem. When the installation dimensions on the car body are large or there are many emblems, multiple light-transmitting protrusions 400 can be provided to highlight the car emblem. Therefore, there are more options when installing this emblem light 1 on a car body.
[0068] The above description illustrates the implementation of this utility model through specific embodiments. Those skilled in the art can easily understand other advantages and effects of this utility model from the content disclosed in this specification. Although the description of this utility model is presented in conjunction with preferred embodiments, this does not mean that the features of this utility model are limited to this embodiment. On the contrary, the purpose of describing the utility model in conjunction with the embodiments is to cover other options or modifications that may be derived based on the claims of this utility model. To provide a deep understanding of this utility model, many specific details are included in the above description. This utility model may also be implemented without using these details. Furthermore, to avoid confusion or obscuring the focus of this utility model, some specific details will be omitted in the description. It should be noted that, without conflict, the embodiments and features in the embodiments of this utility model can be combined with each other.
[0069] It should be noted that in this specification, similar reference numerals and letters in the following figures indicate similar items. Therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures.
[0070] In the description of this embodiment, it should be noted that the terms "upper", "lower", "inner", "bottom", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship that the utility model product is usually placed in during use. They are only for the convenience of describing the utility model 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. Therefore, they should not be construed as limitations on the utility model.
[0071] The terms “first”, “second”, etc., are used only to distinguish descriptions and should not be interpreted as indicating or implying relative importance.
[0072] In the description of this embodiment, it should also be noted that, unless otherwise explicitly specified and limited, the terms "set up," "connected," and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; 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; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this embodiment based on the specific circumstances.
Claims
1. An emblem light, characterized in that, include: A lamp housing with an opening on one side, and a light-distributing outer shell detachably disposed on the opening side of the lamp housing. The light-distributing outer shell and the lamp housing together form a receiving cavity. A light-distributing lens and a light-emitting component are arranged side-by-side within the receiving cavity. The light-emitting component includes a light-emitting element and a light-focusing element arranged side-by-side. Along the length of the lamp housing, the light-emitting component, the light-focusing component, and the light-distributing lens are sequentially arranged within the receiving cavity, with the light-emitting component positioned closer to the bottom of the lamp housing and the light-distributing lens positioned closer to the top of the light-distributing housing. The light-distributing lens has a patterned light-transmitting portion on the side opposite to the light-emitting component. The patterned light-transmitting portion includes at least one light-transmitting protrusion extending from the top surface of the light-distributing lens. The light-distributing housing has at least one protrusion-passing area corresponding to and adapted to each of the at least one light-transmitting protrusions, and each light-transmitting protrusion at least extends through its corresponding protrusion-passing area and protrudes from the top surface of the light-distributing housing. The light transmittance of the light-distributing housing is less than that of the light-distributing lens. The light emitted by the light-emitting component is transmitted to the light-distributing lens through the light-concentrating component and is emitted through the portion of the light-transmitting protrusion that extends out of the top surface of the light-distributing housing.
2. The logo light as described in claim 1, characterized in that, The light-emitting component is fixedly installed inside the lamp housing, near the bottom of the lamp housing. The focusing component covers the side of the light-emitting component opposite to the bottom of the lamp housing and is fixedly connected to the lamp housing. The light-distributing lens is located on the side of the focusing component opposite to the lamp housing and is fixedly installed in the light-distributing outer shell. The light-distributing shell is made of an opaque material, while the light-distributing lens is made of a light-transmitting material.
3. The logo light as described in claim 2, characterized in that, The light distribution lens includes at least one protrusion spaced sequentially along the width direction of the lamp housing. Along the length direction, each protrusion has a light-transmitting protrusion on its top surface on the side opposite to the light-concentrating member. The light-distributing housing is provided with at least one receiving portion corresponding to each of the protruding portions at intervals along the width direction, and the top surface of each receiving portion is provided with a protrusion passing area that adapts to the light-transmitting protrusion on the top of the corresponding protrusion; wherein... Each of the protrusions is adapted to be fixed inside the corresponding receiving portion, and the top of the light-transmitting protrusion passes through the respective corresponding protrusion passage area at least at its top.
4. The logo light as described in claim 3, characterized in that, The light distribution lens further includes a connecting portion for connecting two adjacent protrusions together in the width direction, and the connecting portion is fixedly connected to the light distribution housing to fix the two adjacent protrusions to the light distribution housing.
5. The logo light as described in claim 3, characterized in that, The light distribution lens and the light distribution housing are fixedly connected together by any one of the following processes: secondary injection molding, insert injection molding, or welding.
6. The logo light as described in claim 4, characterized in that, At least the top outer surface area of each of the aforementioned light-transmitting protrusions extending beyond the top surface of the light-distributing housing is treated by any one of the following processes: hot stamping, pad printing, or spray painting; and / or, The inner wall surface of the light distribution lens away from the light distribution housing is provided with a light-uniforming part that refracts the light entering the light distribution lens. The light-uniforming part is a light-uniforming coating sprayed on the inner wall surface or a light-uniforming texture formed on the inner wall surface.
7. The logo light as described in any one of claims 3 to 6, characterized in that, The focusing component includes a mounting bracket fixedly mounted on the lamp housing, and at least one focusing element spaced along the width direction on the side of the mounting bracket near the light distribution housing and corresponding to each of the at least one protruding portion; wherein, In the length direction, each of the protrusions covers the end of the corresponding condenser opposite to the light-emitting member; and at least one end of each condenser extends into the receiving portion on the corresponding side.
8. The logo light as claimed in claim 7, characterized in that, The light-emitting component includes a lamp circuit board fixedly mounted on the lamp housing, and at least one group of light-emitting elements spaced apart along the width direction on the side of the lamp circuit board near the light-concentrating component and corresponding to the at least one light-transmitting element respectively; and, Each of the condensers is disposed on a corresponding group of light elements, and each group of light elements includes at least one light-emitting element.
9. The logo light as claimed in claim 1, characterized in that, The lamp housing is also provided with a plurality of mounting seats at intervals on its outer peripheral wall, and the lamp housing is fixedly installed on the vehicle body by the plurality of mounting seats.
10. A car, characterized in that, Including the logo light as described in any one of claims 1 to 9.