CN220349643U - Skin panel of bumper, bumper and vehicle - Google Patents

Skin panel of bumper, bumper and vehicle Download PDF

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Publication number
CN220349643U
CN220349643U CN202321714932.3U CN202321714932U CN220349643U CN 220349643 U CN220349643 U CN 220349643U CN 202321714932 U CN202321714932 U CN 202321714932U CN 220349643 U CN220349643 U CN 220349643U
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CN
China
Prior art keywords
light
shielding layer
skin panel
bumper
layer
Prior art date
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Active
Application number
CN202321714932.3U
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Chinese (zh)
Inventor
孙波
刘帮毅
朱大旭
汪光伟
夏文科
陈稳宏
吴亚朋
龚凡
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Zhejiang Geely Holding Group Co Ltd
Geely Automobile Research Institute Ningbo Co Ltd
Original Assignee
Zhejiang Geely Holding Group Co Ltd
Geely Automobile Research Institute Ningbo Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by Zhejiang Geely Holding Group Co Ltd, Geely Automobile Research Institute Ningbo Co Ltd filed Critical Zhejiang Geely Holding Group Co Ltd
Priority to CN202321714932.3U priority Critical patent/CN220349643U/en
Application granted granted Critical
Publication of CN220349643U publication Critical patent/CN220349643U/en
Active legal-status Critical Current
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Abstract

The utility model discloses a skin panel of a bumper, the bumper and a vehicle, wherein the skin panel comprises: the light-transmitting plate body is provided with a first surface and a second surface which are opposite, and one side of the first surface, which is far away from the plate body, is suitable for being provided with a light source; the first light shielding layer is formed with a first light transmission area, and the second light shielding layer is formed with a second light transmission area opposite to the first light transmission area. Thus, according to the skin panel of the present utility model, the first light-transmitting region is formed in the first light-shielding layer, and the second light-shielding layer is formed in the second light-transmitting region, so that the surface of the skin panel on the side where the light-shielding layer is provided can be configured to be in a lit-up state, so that the bumper using the skin panel can achieve a lit-up effect, and the lit-up effect of the bumper can be achieved, so that the bumper can have various display states.

Description

Skin panel of bumper, bumper and vehicle
Technical Field
The utility model relates to the field of vehicles, in particular to a skin panel of a bumper, the bumper and a vehicle.
Background
In the related art, the existing skin panel for the bumper does not have a light transmission effect, so that the lighting effect cannot be achieved by the existing skin panel, and further, the lighting effect cannot be achieved by the bumper, so that the display state of the bumper is single.
Disclosure of Invention
The present utility model aims to solve at least one of the technical problems existing in the prior art. Therefore, an object of the present utility model is to provide a skin panel of a bumper, which achieves a bumper lighting effect so that the bumper can have various display states.
The utility model also provides a bumper with the skin panel.
The utility model further provides a vehicle with the bumper.
The skin panel according to the utility model comprises: the light-transmitting plate body is provided with a first surface and a second surface which are opposite, and one side of the first surface, which is far away from the plate body, is suitable for being provided with a light source;
the first light shielding layer is formed with a first light transmission area, and the second light shielding layer is formed with a second light transmission area opposite to the first light transmission area.
According to the skin panel, the light-transmitting plate body is adopted, the first light-shielding layer is provided with the first light-transmitting area, and the second light-shielding layer is provided with the second light-transmitting area, so that the surface of the side, provided with the light-shielding layer, of the skin panel can be constructed to be in a lighting state, the lighting effect of the bumper adopting the skin panel can be realized, the lighting effect of the bumper can be realized, and the bumper can have various display states.
According to the skin panel of the present utility model, the skin panel further includes: and the bonding layer is positioned between the first shading layer and the plate body so as to fix the first shading layer on the plate body.
In some examples of the utility model, a surface of the first light-shielding layer remote from the panel body is formed with a colored paint layer configured as a second light-shielding layer.
In some examples of the utility model, the skin panel further comprises: the transparent layer is arranged on the second shading layer and is positioned on one side of the second shading layer far away from the first shading layer.
In some examples of the utility model, the transparent layer obscures the second light-transmitting region.
In some examples of the present utility model, the first light-transmitting area and the second light-transmitting area are each plural, and the plural first light-transmitting areas and the plural second light-transmitting areas are in one-to-one correspondence.
According to the bumper of the present utility model, the bumper includes:
a light source;
the skin panel is the skin panel, and the light source is located the inboard of skin panel and is suitable for to the skin panel irradiation light.
In some examples of the utility model, the bumper further comprises: the fixed bolster, the fixed bolster is suitable for with skin panel fixed connection, and the light source is installed in the fixed bolster.
In some examples of the utility model, the bumper further comprises: the sealing piece is arranged between the light source and the skin panel, surrounds the light source along the circumferential edge of the light source, and is used for sealing a gap between the light source and the skin panel.
According to the vehicle of the present utility model, the vehicle includes the bumper described above.
Additional aspects and advantages of the utility model will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the utility model.
Drawings
The foregoing and/or additional aspects and advantages of the utility model will become apparent and may be better understood from the following description of embodiments taken in conjunction with the accompanying drawings in which:
FIG. 1 is a schematic structural view of a skin panel according to an embodiment of the utility model;
fig. 2 is a schematic structural view of a bumper according to an embodiment of the present utility model.
Reference numerals:
a skin panel 100;
a board body 1; a first surface 1a; a second surface 1b;
a light shielding layer 2; a first light shielding layer 21; a first light-transmitting region 21a; a second light shielding layer 22; a second light-transmitting region 22a;
an adhesive layer 3; a transparent layer 4;
a bumper 1000;
a light source 200; a mounting portion 20;
a transparent mask 21;
a light shielding case 22;
a lamp group 23; a bulb 23a; a control board 23b; a light shielding plate 23c;
a fixing bracket 300; a first fixed end 300a; a second mounting end 300b;
a fixing member 10; seal 400.
Detailed Description
Embodiments of the present utility model are described in detail below, examples of which are illustrated in the accompanying drawings, wherein like or similar reference numerals refer to like or similar elements or elements having like or similar functions throughout. The embodiments described below by referring to the drawings are illustrative only and are not to be construed as limiting the utility model.
Referring to fig. 1 and 2, a skin panel 100 according to an embodiment of the present utility model is described below, and the skin panel 100 may be applied to a bumper 1000 of a vehicle, but the present utility model is not limited thereto, and the skin panel 100 may be applied to other devices where the skin panel 100 needs to be disposed, which is described herein by taking the application of the skin panel 100 to the bumper 1000 of a vehicle as an example.
As shown in fig. 1 and 2, a skin panel 100 according to an embodiment of the present utility model includes: the light-transmitting plate body 1 and the shading layer 2, the plate body 1 is made of light-transmitting materials, light is suitable for transmitting through the plate body 1, the plate body 1 is provided with a first surface 1a and a second surface 1b which are opposite, one side, away from the plate body 1, of the first surface 1a is suitable for being provided with a light source 200, when the light source 200 is lightened, the light source 200 irradiates light, so that the light source 200 irradiates light to the first surface 1a of the plate body 1, and the light is suitable for being transmitted to one side of the second surface 1b from one side of the first surface 1a, so that the effect of transmitting the light through the plate body 1 is realized.
The light shielding layer 2 is arranged on the second surface 1b, the light shielding layer 2 comprises a first light shielding layer 21 and a second light shielding layer 22 which are overlapped, the first light shielding layer 21 and the second light shielding layer 22 are made of light-tight materials, namely, light cannot penetrate through the first light shielding layer 21 and the second light shielding layer 22, the first light shielding layer 21 is arranged between the second light shielding layer 22 and the plate body 1, the first light shielding layer 21 is formed with a first light transmission area 21a, the second light shielding layer 22 is formed with a second light transmission area 22a opposite to the first light transmission area 21a, the first light transmission area 21a is configured as a through hole, the first light transmission area 21a penetrates through the first light shielding layer 21 to form a hollowed-out structure on the first light shielding layer 21, the second light transmission area 22a is configured as a through hole, the second light transmission area 22a penetrates through the second light shielding layer 22 to form a hollowed-out structure on the second light shielding layer 22, the light is suitable for penetrating through the first light shielding layer 21 and the second light transmission area 22a penetrates through the second light shielding layer 22, and the first light transmission area 21a and the second light shielding layer 22a can penetrate through the second light shielding layer 22 in turn, and the light shielding layer 2 b can be prevented from penetrating through the second light shielding layer 2 b.
In some embodiments of the present utility model, the plate body 1 may be made of a transparent material such as PP (Polypropylene), PMMA (polymethyl methacrylate) or PC (Polycarbonate) so that an effect that light can pass through the plate body 1 can be achieved. In some embodiments of the present utility model, the plate body 1 is described as being made of PP material, which has an advantage of low density, so that the mass of the plate body 1 is small, thereby achieving the effect of light weight design of the bumper 1000. The PP material has good mechanical properties, has good mechanical properties such as impact resistance, and the like, and also has good molding processability, thereby facilitating the production and manufacture of the plate body 1, reducing the production difficulty of the plate body 1, and being beneficial to the modeling design of the bumper 1000, so that the models of the bumper 1000 are various. The PP material also has good stability, and the shrinkage rate of the PP material is between 10-14%o, so that the risk of deformation of the panel body 1 is reduced, and the skin panel 100 can meet the performance requirement of the bumper 1000.
In some embodiments of the present utility model, as shown in fig. 1, in the thickness direction of the plate body 1, the X direction shown in fig. 1 is the thickness direction of the plate body 1, the first surface 1a and the second surface 1b are oppositely disposed in the thickness direction of the plate body 1, the light source 200 is disposed facing the first surface 1a, when the light source 200 is lighted, the light source 200 irradiates light to the first surface 1a of the plate body 1, and the light passes through the plate body 1 so that the light reaches the second surface 1b side, and when the light reaches the second surface 1b side, the light is adapted to pass through the first light-transmitting region 21a and the second light-transmitting region 22a in sequence, so that the effect that the light passes through the light-shielding layer 2 is achieved, so that the light is exhibited on the surface on the side of the light-shielding layer 2 far from the second surface 1b, that is in a lighted state, the light source 200 is illuminated on the side of the light-shielding layer 2 is capable of illuminating the surface on the side far from the second surface 1b, so that the lighted panel is illuminated on the skin is achieved, and when the light source 200 is illuminated on the side is illuminated skin is the surface on the side of the light-shielding layer 2 is far side, the skin is illuminated, the light source is illuminated effect is achieved, and the bumper is achieved by the light source 100 is illuminated, and the bumper is achieved, and the effect is achieved.
In some embodiments of the present utility model, the front projection of the first light-transmitting region 21a coincides with the front projection of the second light-transmitting region 22a along the X direction, so that the light can pass through the second light-shielding layer 22 after passing through the first light-shielding layer 21, thereby achieving the effect that the light passes through the light-shielding layer 2, and further achieving the effect that the surface of the skin panel 100 on the side provided with the light-shielding layer 2 is configured to be lit, so that a lit region is formed on the surface of the skin panel 100 on the side provided with the light-shielding layer 2.
In some embodiments of the present utility model, as shown in fig. 1 and 2, the color of the second light shielding layer 22 is configured to be the color displayed on the side of the skin panel 100 where the light shielding layer 2 is provided, so that when the skin panel 100 is applied to the bumper 1000, the color of the second light shielding layer 22 is configured to be the appearance color of the bumper 1000, and when the light source 200 irradiates the skin panel 100 because the second light shielding layer 22 is made of an opaque material, the light emitted by the light source 200 does not affect the color displayed by the second light shielding layer 22, so that when the bumper 1000 is lighted, the color of the light emitted by the light source 200 is not changed due to the color of the second light shielding layer 22, thereby improving the display effect of the bumper 1000.
Thus, according to the skin panel 100 of the embodiment of the present utility model, the surface of the skin panel 100 on the side provided with the light shielding layer 2 may be configured to be in a lit state, so that the bumper 1000 of the skin panel 100 implemented by the present utility model may achieve the lighting effect of the bumper 1000, and may avoid the influence of the color of the second light shielding layer 22 on the color of the light, improve the stability of lighting the bumper 1000 by the light emitted by the light source 200, and ensure the display effect of the bumper 1000.
In some embodiments of the present utility model, the first light-transmitting region 21a and the second light-transmitting region 22a may be engraved, etched, mechanically scraped, or heat treated to form the first light-transmitting region 21a on the first light-shielding layer 21 and the second light-transmitting region 22a on the second light-shielding layer 22, or the first light-shielding layer 21 and the second light-shielding layer 22 may be disposed on the plate body 1 by screen printing, so as to achieve the effect that the first light-shielding layer 21 is formed with the first light-transmitting region 21a, and the second light-shielding layer 22 is formed with the second light-transmitting region 22a.
In some embodiments of the present utility model, a laser engraving process is used, so that the first light shielding layer 21 is formed with a first light-transmitting region 21a, and the second light shielding layer 22 is formed with a second light-transmitting region 22a. In some embodiments, the first light shielding layer 21 is attached to the plate body 1, then the second light shielding layer 22 is attached to the first light shielding layer 21, so that the effect of setting the light shielding layer 2 on the plate body 1 is achieved, then the laser engraving machine is used for engraving the second light shielding layer 22 and the first light shielding layer 21, the laser engraving machine is located on one side of the skin panel 100 where the light shielding layer 2 is arranged, during the engraving process of the laser engraving machine, the laser engraving machine firstly engraves the second light shielding layer 22, eliminates part of the area of the second light shielding layer 22, so that the second light shielding layer 22 is engraved to form the second light transmission area 22a, after the second light transmission area 22a is engraved, the laser engraving machine engraves the first light shielding layer 21, eliminates part of the area of the first light shielding layer 21, so that the first light transmission area 21a is formed on the first light shielding layer 21, and the front projection of the first light shielding layer 21 coincides with the second light shielding layer 22.
Thus, by the laser engraving process, the effect that the first light-transmitting region 21a is formed on the first light-shielding layer 21 and the effect that the second light-transmitting region 22a is formed on the second light-shielding layer 22 are achieved, so that the effect that light passes through the light-shielding layer 2 is achieved, the light-shielding layer 2 is prevented from completely shielding the second surface 1b, and the effect that the surface of the skin panel 100 on the side provided with the light-shielding layer 2 is configured to be lighted is achieved, so that the lighted region is formed on the surface of the skin panel 100 on the side provided with the light-shielding layer 2.
In some embodiments of the present utility model, as shown in fig. 1, skin panel 100 may further include: the bonding layer 3, the bonding layer 3 is located between the first shading layer 21 and the plate body 1, and the bonding layer 3 is favorable to promoting the adhesion of the first shading layer 21 and the plate body 1 for the first shading layer 21 reliably adheres to the plate body 1, realizes the effect that the first shading layer 21 adheres to the plate body 1, and reduces the risk of separation of the first shading layer 21 and the plate body 1.
In some embodiments of the present utility model, the panel body 1 may be made of a transparent PP material (Polypropylene) so that the panel body 1 is constructed in a transparent structure so that light may be transmitted through the panel body 1, and in some embodiments of the present utility model, the adhesive layer 3 may be constructed of PP water, which may also be referred to as PP treatment agent, which may be made of a material such as chlorinated Polypropylene resin modified with maleic acid, toluene, MIBK (methyl isobutyl ketone, methyl isobutyl (methyl) ketone) or the like, and PP water is used to promote adhesion of paint to the PP material so as to reduce the risk of paint to the PP material, whereby the skin panel 100 according to the embodiment of the present utility model, by providing the adhesive layer 3 between the first light-shielding layer 21 and the panel body 1, promotes adhesion of the first light-shielding layer 21 to the panel body 1, reduces the risk of separation of the first light-shielding layer 21 from the panel body 1, so that the first light-shielding layer 21 is reliably adhered to the panel body 1.
In some embodiments of the present utility model, the second surface 1b is subjected to flame treatment, or the second surface 1b is subjected to wiping treatment by using a corresponding chemical agent, or the second surface 1b is subjected to washing and shot blasting, so as to facilitate the adhesion of the first light shielding layer 21 to the plate body 1 when the first light shielding layer 21 is adhered to the second surface 1b, reduce the risk of separating the first light shielding layer 21 from the plate body 1, and enable the first light shielding layer 21 to be reliably adhered to the plate body 1.
In some embodiments of the present utility model, as shown in fig. 1, the second surface 1b of the board body 1 is formed with a primer layer, the primer layer is configured as a first light shielding layer 21, the first light shielding layer 21 is sprayed on the second surface 1b of the board body 1 to form shielding on the second surface 1b, the light shielding property of the board body 1 is ensured, so that light can only pass through the board body 1 through the first light transmitting area 21a, in addition, by arranging the first light shielding layer 21 between the second light shielding layer 22 and the board body 1, the flatness of the second surface 1b can be prevented from influencing the flatness of the second light shielding layer 22, therefore, by attaching the first light shielding layer 21 to the board body 1 and then attaching the second light shielding layer 22 to the surface of the second light shielding layer 21 on the side away from the second surface 1b, the flatness of the second light shielding layer 22 is prevented from being influenced, the flatness of the surface of the second light shielding layer 22 on the side away from the second surface 1b is improved, and the skin surface 100 on the side of the panel is provided with a more flat surface 2.
In some embodiments of the present utility model, the first light-shielding layer 21 may be configured to have a color with better light-shielding property, such as black or gray, and in some embodiments, the first light-shielding layer 21 is configured to be black, which is advantageous for improving the light-shielding performance of the first light-shielding layer 21.
In some embodiments of the present utility model, as shown in fig. 1, a colored paint layer is formed on a surface of the first light shielding layer 21 away from the board body 1, and the colored paint layer is configured as the second light shielding layer 22, that is, the color of the second light shielding layer 22 is the color of the surface of the skin panel 100 on the side where the light shielding layer 2 is provided, and thus, with the bumper 1000 of the skin panel 100 implemented by the present utility model, the color of the second light shielding layer 22 is the appearance color of the bumper 1000. The color of the second light shielding layer 22 may be black, white, gray, red, orange, yellow, green cyan, blue, purple, and the like, and the color of the second light shielding layer 22 is taken as white in this application as an example, that is, the color of the surface of the skin panel 100 on the side where the light shielding layer 2 is provided is white, but the color of the second light shielding layer 22 may be specifically selected according to the requirement.
In some embodiments of the present utility model, as shown in fig. 1, skin panel 100 may further include: the transparent layer 4, the transparent layer 4 locates second shading layer 22 and is located the one side that first shading layer 21 was kept away from to second shading layer 22, and transparent layer 4 is used for protecting second shading layer 22 and first shading layer 21, can avoid second shading layer 22 oxidation, avoids the pigment of second shading layer 22 to change, promotes the colour stability of skin panel 100, and then is favorable to promoting the colour stability of bumper 1000, reduces the risk that bumper 1000 discolours.
Meanwhile, the transparent layer 4 can also reduce the risk of the second light shielding layer 22 being scratched, and reduce the risk of the second light shielding layer 22 being damaged, so that the lighting effect of the skin panel 100 is ensured, and the lighting effect of the bumper 1000 is further ensured.
In some embodiments of the present utility model, the transparent layer 4 may be configured as a varnish or a transparent film layer, and in some embodiments of the present utility model, the transparent layer 4 is configured as a varnish as an example, so that the second light-shielding layer 22 can be prevented from being oxidized while the risk of the second light-shielding layer 22 being scratched is reduced, and the effect of protecting the second light-shielding layer 22 is achieved.
In some embodiments of the present utility model, as shown in fig. 1, the transparent layer 4 blocks the second light-transmitting area 22a, which can also be understood that the orthographic projection of the transparent layer 4 along the X direction coincides with the orthographic projection of the second light-transmitting area 22a along the X direction, so as to achieve the effect that the transparent layer 4 blocks the second light-transmitting area 22a, so that the transparent layer 4 forms a protection at the end of the second light-transmitting area 22a away from the second surface 1b, so that the transparent layer 4 can protect the second light-transmitting area 22a and the first light-transmitting area 21a, and meanwhile, in the X direction, the overlapping area of the plate body 1 and the first light-transmitting area 21a can be prevented from being exposed, thereby achieving the effect of protecting the plate body 1.
In some embodiments of the present utility model, the first light-transmitting area 21a and the second light-transmitting area 22a are plural, and the plural first light-transmitting areas 21a and the plural second light-transmitting areas 22a are in one-to-one correspondence, so that plural lighting areas are formed on the surface of the skin panel 100 on the side where the light shielding layer 2 is provided, thereby improving the lighting effect of the skin panel 100, and the plural lighting areas may be combined to form plural patterns, for example, the lighting areas may be combined to form a rectangle, a circle, or other irregular shape, and the bumper 1000 employing the skin panel 100 of the present utility model may have different display states when the bumper 1000 is lighted, thereby improving the lighting effect of the bumper 1000.
As shown in fig. 1 and 2, the bumper 1000 according to the embodiment of the utility model includes the light source 200 and the skin panel 100, the skin panel 100 is the skin panel 100 of the above embodiment, the light source 200 is located on the inner side of the skin panel 100, that is, the side of the skin panel 100 provided with the plate body 1 and adapted to radiate light toward the skin panel 100, so that the effect that the surface of the skin panel 100 provided with the light shielding layer 2 is configured to be lit is achieved, so that the lit area is formed on the surface of the skin panel 100 provided with the light shielding layer 2, and the lit effect of the bumper 1000 is achieved.
In some embodiments of the present utility model, as shown in fig. 2, the bumper 1000 may further include: the fixing bracket 300, the fixing bracket 300 is suitable for being fixedly connected with the skin panel 100, and the light source 200 is mounted on the fixing bracket 300, so that the effect of fixedly connecting the light source 200 with the skin panel 100 is realized, the light source 200 and the skin panel 100 are assembled into a whole, and the bumper 1000 is convenient to assemble on a vehicle.
In some embodiments of the present utility model, as shown in fig. 2, the fixing bracket 300 may be made of a plastic material or a metal material, and in some embodiments of the present utility model, the fixing bracket 300 is made of a plastic material, and the fixing bracket 300 is made of a plastic material, so that the mass of the fixing bracket 300 is reduced, and the effect of light weight design of the bumper 1000 is achieved.
In some embodiments of the present utility model, as shown in fig. 2, the fixing bracket 300 may have a first fixing end 300a and a second fixing end 300b, where the first fixing end 300a is adapted to be fixedly connected with the panel body 1, so that the fixing bracket 300 is mounted and fixed to the skin panel 100. The fixing bracket 300 may be mounted and fixed to the skin panel 100 by a mounting manner such as laser welding, friction welding, etc., and in some embodiments of the present utility model, the fixing bracket 300 is mounted and fixed to the skin panel 100 by a mounting manner such as laser welding, so that the fixing bracket 300 is prevented from being mounted and fixed to the skin panel 100 by using fasteners (e.g., bolts, screws, etc.), thereby further achieving the effect of light weight design of the bumper 1000.
The second mounting end 300b is adapted to be cooperatively connected with the light source 200, so as to achieve the effect of cooperatively connecting the light source 200 with the fixing bracket 300, and achieve the effect of mounting and fixing the light source 200 to the skin panel 100 through the fixing bracket 300, so that the light source 200 and the skin panel 100 are assembled into a whole, thereby facilitating the assembly of the bumper 1000 to the vehicle.
The light source 200 and the second mounting end 300b may be cooperatively connected by using the fixing member 10, in some embodiments of the present utility model, the second mounting end 300b may be configured as a threaded hole, the light source 200 has a mounting portion 20 cooperatively assembled with the second mounting end 300b, the mounting portion 20 may be configured as a mounting through hole, the mounting through hole and the threaded hole are correspondingly matched during the process of cooperatively connecting the light source 200 and the second mounting end 300b, and the fixing member 10 may be configured as a screw, and the screw is threaded and fixed to the mounting through hole and the threaded hole, thereby achieving the effect of fixedly matching the light source 200 with the fixing bracket 300, and further achieving the effect of fixedly mounting the light source 200 to the skin panel 100, so that the light source 200 is reliably mounted to the skin panel 100, and the risk of separating the light source 200 from the skin panel 100 is reduced.
In some embodiments of the present utility model, as shown in fig. 2, the bumper 1000 may further include: the sealing member 400 is arranged between the light source 200 and the skin panel 100, the sealing member 400 surrounds the light source 200 along the circumferential edge of the light source 200, and the sealing member 400 is used for sealing a gap between the light source 200 and the skin panel 100, so that the sealing effect of the light source 200 and the skin panel 100 is realized, liquid (such as rainwater) and objects with smaller volumes (such as dust, sand, leaves and branches) are prevented from entering the gap between the light source 200 and the skin panel 100, the cleanliness between the light source 200 and the skin panel 100 is ensured, and the lighting effect of the bumper 1000 is further ensured. For example, by avoiding liquid from entering the gap between the light source 200 and the skin panel 100, a phenomenon in which liquid is accumulated in the gap between the light source 200 and the skin panel 100 can be avoided, thereby ensuring the lighting effect of the bumper 1000.
By surrounding the light source 200 along the circumferential edge of the light source 200 with the sealing member 400, when the light source 200 is assembled with the skin panel 100 in a matching manner, the sealing member 400 seals the gap between the light source 200 and the skin panel 100 in the circumferential direction of the light source 200, so that the risk that liquid and small objects enter the gap between the light source 200 and the skin panel 100 is further reduced, and the lighting effect of the bumper 1000 is further ensured.
In some embodiments of the present utility model, the seal 400 may be configured as a sealing foam or sealing rubber, thereby achieving the effect that the seal 400 may be used to seal the gap between the light source 200 and the skin panel 100. In some embodiments of the present utility model, taking the sealing member 400 as an example, the sealing foam has a certain compression amount, in some embodiments, the sealing foam with a cross-sectional dimension of 10mm x 10mm is selected, it can be understood that the length dimension of the cross-section of the sealing foam is 10mm, the width dimension of the cross-section of the sealing foam is 10mm, and in the process of installing the light source 200 and the skin panel 100, the sealing foam is arranged between the light source 200 and the skin panel 100, so that the sealing foam is compressed, and in the compression direction of the sealing foam, the sealing foam can be compressed by 3mm-5mm, so that the sealing foam is more reliably supported between the light source 200 and the skin panel 100, thereby ensuring the tightness between the light source 200 and the skin panel 100, and realizing the dustproof and waterproof effects.
It should be noted that, in the present utility model, the sealing foam is selected as the sealing member 400, but the present utility model is not limited thereto, and the sealing member 400 may be made of other materials having sealing effect.
In some embodiments of the present utility model, the light source 200 may include: the transparent face mask 21, the light shielding shell 22 and the lamp group 23, the transparent face mask 21 and the light shielding shell 22 are fit to be assembled in a matching way, so that the transparent face mask 21 and the light shielding shell 22 form a mounting space in a matching way, and the lamp group 23 is mounted in the mounting space. When the light source 200 is assembled with the skin panel 100, the transparent mask 21 is disposed on one side facing the skin panel 100, so that the light irradiated by the lamp set 23 can be irradiated to the skin panel 100, and the lighting effect of the bumper 1000 is further achieved.
In some embodiments of the present utility model, the lamp group 23 may have a lamp 23a and a light guide plate, and the light guide plate is illuminated by the lamp 23a, thereby achieving the effect of illuminating the light guide plate and thus the effect of illuminating the lamp group 23, i.e., the lamp group 23 is configured such that the lamp 23a illuminates the light guide plate. The lamp group 23 may have a plurality of bulbs 23a and light guide plates, at least one bulb 23a being disposed corresponding to one light guide plate so that each light guide plate can achieve a lighting effect.
In addition, the lamp set 23 may further have a control board 23b, the lamp 23a is mounted on the control board 23b, the lamp 23a is electrically connected with the control board 23b and signal-connected, so that the control board 23b may be used to provide electric power for the lamp 23a and control the lamp 23a to be lighted, the lamp 23a is controlled to be lighted through the control board 23b, and further the lighting effect of the light guide plate is achieved, the lamps 23a are controlled to be lighted, and the lighting colors of the lamp 23a are controlled, so that the lamp set 23 may have various lighting forms, the bumper 1000 may have various display states, and the lighting effect of the bumper 1000 is improved.
In some embodiments of the present utility model, as shown in fig. 2, the lamp group 23 may have a plurality of bulbs 23a, and the effect of lighting the lamp group 23 is achieved by controlling the plurality of bulbs 23a to be lighted, that is, the lamp group 23 is configured to direct lighting of the bulbs 23 a. And the lamp set 23 may further have a control board 23b, the lamp bulb 23a is mounted on the control board 23b, the lamp bulb 23a is electrically connected and signal-connected with the control board 23b, so that the control board 23b may be used to provide electric power for the lamp bulb 23a and can control the lamp bulb 23a to be lighted, so that the lamp set 23 may have various lighting forms, and the lamp bulb 23a may exhibit various color forms, so that the bumper 1000 may have various display states, and the lighting effect of the bumper 1000 is improved.
In some embodiments of the present utility model, as shown in fig. 1, when the lamp group 23 is configured such that the bulbs 23a are directly lighted, the lamp group 23 may have a light shielding plate 23c, and the light shielding plate 23c is disposed between two adjacent bulbs 23a, so as to reduce the interaction between two adjacent bulbs 23a, for example, one of the two adjacent bulbs 23a is in a lighted state and the other is in a non-lighted state, and by providing the light shielding plate 23c between the two adjacent bulbs 23a, the light of the bulb 23a in the lighted state is reduced to the bulb 23a in the non-lighted state, thereby facilitating the improvement of the display effect of the lamp group 23.
In some embodiments of the present utility model, when the light set 23 has light guide plates, the light shielding plate 23c may be disposed between two adjacent light guide plates, so as to reduce the interaction between two adjacent light guide plates, for example, one of the two adjacent light guide plates is in a lit state, and the other is in an unlit state, and by disposing the light shielding plate 23c between the two adjacent light guide plates, the light of the light guide plate in the lit state is reduced to the light guide plate in the unlit state, so as to facilitate improving the display effect of the light set 23.
In some embodiments of the present utility model, the control board 23b is adapted to be electrically connected to a power supply of a vehicle, and the control board 23b is also connected to a computer signal of the vehicle, so as to achieve an effect of electrically connecting the light source 200 to the power supply, so that the power supply is used to provide power for the light source 200, ensure that the light source 200 can be turned on, and connect the light source 200 to the computer signal, so as to achieve an effect of controlling the light source 200 to operate by the computer, so that the light source 200 can have various lighting modes, so that the bumper 1000 can have various display states, and the lighting effect of the bumper 1000 is improved.
The vehicle according to the embodiment of the utility model comprises the bumper 1000, the bumper 1000 is the bumper 1000 of the embodiment, the light source 200 and the skin panel 100 are assembled into a whole for facilitating the assembly of the bumper 1000 to the vehicle, the bumper 1000 has various display states, and the bumper 1000 is matched with the headlight of the vehicle to form a specific lamp language animation effect of the vehicle, thereby being beneficial to improving the modeling effect of the vehicle, leading the modeling of the vehicle to be more attractive, and greatly improving the perception of the user to the vehicle.
In the description of the present specification, reference to the terms "one embodiment," "some embodiments," "illustrative embodiments," "examples," "specific examples," or "some examples," etc., means that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the utility model. In this specification, schematic representations of the above terms do not necessarily refer to the same embodiments or examples. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
While embodiments of the present utility model have been shown and described, it will be understood by those of ordinary skill in the art that: many changes, modifications, substitutions and variations may be made to the embodiments without departing from the spirit and principles of the utility model, the scope of which is defined by the claims and their equivalents.

Claims (10)

1. A skin panel for a bumper, comprising:
a light-transmitting plate body having opposed first and second surfaces, the side of the first surface remote from the plate body being adapted to be provided with a light source;
the light shielding layer is arranged on the second surface and comprises a first light shielding layer and a second light shielding layer which are overlapped, the first light shielding layer is arranged between the second light shielding layer and the plate body, a first light transmission area is formed on the first light shielding layer, and a second light transmission area opposite to the first light transmission area is formed on the second light shielding layer.
2. The skin panel of a bumper of claim 1, further comprising: and the bonding layer is positioned between the first shading layer and the plate body so as to fix the first shading layer to the plate body.
3. The skin panel of a bumper according to claim 1, wherein a surface of the first light shielding layer away from the plate body is formed with a colored paint layer configured as the second light shielding layer.
4. The skin panel of a bumper of claim 1, further comprising: the transparent layer is arranged on the second shading layer and is positioned on one side, far away from the first shading layer, of the second shading layer.
5. The skin panel of a bumper of claim 4, wherein the transparent layer obscures the second light-transmitting region.
6. The skin panel of claim 1, wherein the first light-transmitting area and the second light-transmitting area are each plural, and the plural first light-transmitting areas and the plural second light-transmitting areas are in one-to-one correspondence.
7. A bumper beam, comprising:
a light source;
skin panel according to any one of claims 1-6, the light source being located inside the skin panel and being adapted to radiate light towards the skin panel.
8. The bumper of claim 7, further comprising: the fixed support is suitable for being fixedly connected with the skin panel, and the light source is installed in the fixed support.
9. The bumper of claim 8, further comprising: the sealing piece is arranged between the light source and the skin panel, surrounds the light source along the circumferential edge of the light source, and is used for sealing a gap between the light source and the skin panel.
10. A vehicle characterized by comprising the bumper according to any one of claims 7-9.
CN202321714932.3U 2023-06-30 2023-06-30 Skin panel of bumper, bumper and vehicle Active CN220349643U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321714932.3U CN220349643U (en) 2023-06-30 2023-06-30 Skin panel of bumper, bumper and vehicle

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321714932.3U CN220349643U (en) 2023-06-30 2023-06-30 Skin panel of bumper, bumper and vehicle

Publications (1)

Publication Number Publication Date
CN220349643U true CN220349643U (en) 2024-01-16

Family

ID=89476108

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321714932.3U Active CN220349643U (en) 2023-06-30 2023-06-30 Skin panel of bumper, bumper and vehicle

Country Status (1)

Country Link
CN (1) CN220349643U (en)

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