CN216113856U - Atmosphere lamp device and electrical apparatus - Google Patents

Atmosphere lamp device and electrical apparatus Download PDF

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Publication number
CN216113856U
CN216113856U CN202122694500.8U CN202122694500U CN216113856U CN 216113856 U CN216113856 U CN 216113856U CN 202122694500 U CN202122694500 U CN 202122694500U CN 216113856 U CN216113856 U CN 216113856U
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China
Prior art keywords
light
light guide
mounting hole
lamp device
panel
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CN202122694500.8U
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Chinese (zh)
Inventor
张晓转
郭远平
沈一盛
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Gongniu Group Co Ltd
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Gongniu Group Co Ltd
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Priority to CN202122694500.8U priority Critical patent/CN216113856U/en
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Abstract

The utility model provides an atmosphere lamp device and an electric appliance. Atmosphere lamp device includes: the cover body is provided with a mounting hole; the panel is arranged in the mounting hole, the side wall of the panel and the hole wall of the mounting hole are arranged at intervals to form a light-emitting gap, and the side wall of the panel is provided with a light-reflecting surface; the light guide part is arranged in the mounting hole and is provided with a light emitting surface, and the light emitting surface is positioned in the light emitting gap and faces the light reflecting surface; the light-emitting component is positioned on one side of the light guide part, which is far away from the panel, the light emitted by the light-emitting component is emitted to the reflecting surface through the light-emitting surface, and the light is emitted through the light-emitting gap after being reflected by the reflecting surface. The utility model solves the problem of large visual impact of the atmosphere lamp device in the prior art.

Description

Atmosphere lamp device and electrical apparatus
Technical Field
The utility model relates to the technical field of household appliances, in particular to an atmosphere lamp device and an electric appliance.
Background
At present, in order to facilitate the identification and the attractiveness of products, common atmosphere lamps of products mostly emit light in the front of the products, the light is guided to the surfaces of the products from the bottoms through light guide columns, the generated light directly penetrates into eyes, eyeballs are stimulated, visual impact is large, the eyes of users are easy to fatigue, and discomfort can be brought to the users.
That is, the prior art mood light device has a problem of large visual impact.
SUMMERY OF THE UTILITY MODEL
The utility model mainly aims to provide an atmosphere lamp device and an electric appliance, and aims to solve the problem that the atmosphere lamp device in the prior art has large visual impact.
In order to achieve the above object, according to one aspect of the present invention, there is provided an ambience lamp device including: the cover body is provided with a mounting hole; the panel is arranged in the mounting hole, the side wall of the panel and the hole wall of the mounting hole are arranged at intervals to form a light-emitting gap, and the side wall of the panel is provided with a light-reflecting surface; the light guide part is arranged in the mounting hole and is provided with a light emitting surface, and the light emitting surface is positioned in the light emitting gap and faces the light reflecting surface; the light-emitting component is positioned on one side of the light guide part, which is far away from the panel, the light emitted by the light-emitting component is emitted to the reflecting surface through the light-emitting surface, and the light is emitted through the light-emitting gap after being reflected by the reflecting surface.
Furthermore, the cover body is provided with a stop convex edge, the stop convex edge extends out from the hole wall of the mounting hole to the center of the mounting hole, the panel and the stop convex edge are arranged at intervals to form a light-emitting gap, and the stop convex edge is abutted against the surface of one side, far away from the luminescent part, of the light guide part, so that direct light-emitting of the light guide part is avoided.
Further, the light guide part is provided with an accommodating concave part, and the luminous part is positioned in the accommodating concave part.
Further, the light guide portion includes: the light guide body is connected with the cover body; the light guide convex rib is arranged on one side, away from the light emitting piece, of the light guide body and is provided with a light emitting surface.
Furthermore, the cover body is provided with a stopping convex edge, the stopping convex edge extends out from the hole wall of the mounting hole to the center of the mounting hole, and the surface of one side, facing the hole opening of the mounting hole, of the light guide convex rib abuts against the stopping convex edge; or the light guide convex rib is provided with a light shielding layer on the surface of one side of the opening of the mounting hole so as to avoid direct light emission of the light guide part.
Furthermore, the light guide convex rib is one and annular, and the inner annular surface of the light guide convex rib is a light emergent surface; or the light guide convex ribs are arranged at intervals around the circumference of the light guide body, and the inner side of each light guide convex rib is provided with a light emergent surface.
Furthermore, the light guide convex ribs are multiple, installation notches are formed between every two adjacent light guide convex ribs, and a plurality of bosses matched with the installation notches are arranged in the circumferential direction of the panel.
Further, the light emitting surface and/or the light reflecting surface are inclined surfaces.
Further, the inclination angle of the slope is equal to or greater than 30 ° and equal to or less than 60 °.
According to another aspect of the present invention, there is provided an electrical appliance comprising the above-described atmosphere lamp apparatus.
Through the reflection of light face towards the panel with the play plain noodles that lead the light portion, make the light that the luminescent part sent, lead play plain noodles department through the light guide portion and jet out, and the light after the jet-out is directed to reflection of light face, jet out through the light-emitting clearance after reflection of light face, just so make the light that leads the light portion and lead out can not direct irradiation outside, but shine outside after once reflecting, make the light that atmosphere lamp device sent softer, avoid directing directly to people's eye, the visual impact to the user has been reduced, user's eyes have been protected. Meanwhile, an aperture can be formed around the panel, and the effect of baking and supporting the product is achieved.
Drawings
The accompanying drawings, which are incorporated in and constitute a part of this application, illustrate embodiments of the utility model and, together with the description, serve to explain the utility model and not to limit the utility model. In the drawings:
FIG. 1 is a schematic diagram of an electrical appliance in accordance with an alternative embodiment of the present invention;
FIG. 2 shows an angled cross-sectional view of the atmosphere lamp apparatus of FIG. 1;
FIG. 3 shows an enlarged view at P in FIG. 2;
FIG. 4 shows an exploded view of the atmosphere lamp device of FIG. 1;
FIG. 5 shows an angled view of the light directing portion of FIG. 4;
FIG. 6 shows another angled view of the light directing portion of FIG. 4;
fig. 7 shows an angled view of the cover plate of fig. 4.
Wherein the figures include the following reference numerals:
10. a cover body; 11. mounting holes; 12. a stop ledge; 13. an avoidance groove; 14. a second clamping structure; 20. a panel; 21. a light-reflecting surface; 22. a boss; 23. a light reflecting convex edge; 30. a light exit gap; 40. a light emitting member; 50. a light guide part; 51. a light-emitting surface; 52. an accommodating recess; 53. a light guide body; 54. light guide convex ribs; 55. supporting a step; 56. installing a notch; 57. a stop flange; 58. a first clamping structure; 60. a circuit board; 70. atmosphere lamp device.
Detailed Description
It should be noted that the embodiments and features of the embodiments in the present application may be combined with each other without conflict. The present invention will be described in detail below with reference to the embodiments with reference to the attached drawings.
It is noted that, unless otherwise indicated, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs.
In the present invention, unless specified to the contrary, use of the terms of orientation such as "upper, lower, top, bottom" or the like, generally refer to the orientation as shown in the drawings, or to the component itself in a vertical, perpendicular, or gravitational orientation; likewise, for ease of understanding and description, "inner and outer" refer to the inner and outer relative to the profile of the components themselves, but the above directional words are not intended to limit the utility model.
The utility model provides an atmosphere lamp device and an electric appliance, aiming at solving the problem that the atmosphere lamp device in the prior art has large visual impact.
As shown in fig. 1 to 7, the atmosphere lamp device 70 includes a cover 10, a panel 20, a light guide 50 and a luminous member 40; the cover 10 has a mounting hole 11; the panel 20 is arranged in the mounting hole 11, the side wall of the panel 20 and the hole wall of the mounting hole 11 are arranged at intervals to form a light-emitting gap 30, and the side wall of the panel 20 is provided with a light-reflecting surface 21; the light guide part 50 is disposed in the mounting hole 11, the light guide part 50 has a light exit surface 51, and the light exit surface 51 is located in the light exit gap 30 and faces the light reflection surface 21; the light emitting member 40 is located on a side of the light guiding portion 50 away from the panel 20, light emitted from the light emitting member 40 is emitted to the light reflecting surface 21 through the light emitting surface 51, and the light is reflected by the light reflecting surface 21 and then emitted through the light emitting gap 30.
Through the light-emitting surface 51 of the light guide part 50 facing the light-reflecting surface 21 of the panel 20, the light emitted by the light-emitting part 40 is guided to the light-emitting surface 51 through the light guide part 50 to be emitted, the emitted light is directed to the light-reflecting surface 21 and is emitted through the light-emitting gap 30 after being reflected by the light-reflecting surface 21, so that the light guided out through the light guide part 50 cannot be directly irradiated to the outside, but is irradiated to the outside after being reflected once, the light emitted by the atmosphere lamp device 70 is softer, the direct irradiation to human eyes is avoided, the visual impact on a user is reduced, and the eyes of the user are protected. Meanwhile, an aperture can be formed around the panel 20 to achieve the effect of baking and supporting the product.
It should be noted that, after the light is reflected by the reflective surface 21, a part of the energy is lost, so that the light intensity of the light emitted to the outside of the atmosphere lamp device 70 is weaker, and the visual impact is reduced. Meanwhile, the light is reflected by the reflecting surface 21, the propagation route of the light path is changed, so that the light is dispersed more uniformly, the condition that the light intensity at a certain position is too strong is avoided, the visual impact on a user is reduced, and the discomfort caused by the atmosphere lamp device 70 in the prior art is effectively avoided.
As shown in fig. 2 to 4, the cover 10 has a stop ledge 12, the stop ledge 12 extends from the wall of the mounting hole 11 to the center of the mounting hole 11, the panel 20 and the stop ledge 12 are disposed at an interval to form a light-emitting gap 30, and the stop ledge 12 abuts against a side surface of the light guide part 50 away from the light emitting member 40 to block direct light-emitting of the light guide part 50. Due to the partial structure of the light guide part 50, it needs to extend between the panel 20 and the wall of the mounting hole 11, so that the light emitting surface 51 faces the light reflecting surface 21 on the sidewall of the panel 20. The stop ledge 12 abuts against a side surface of the light guide part 50 away from the light emitting component 40 to block the light guide part 50 from emitting direct light, so that the light emitted from the light emitting component 40 is emitted from the light emitting surface 51 after being guided by the light guide part 50, the light emitted from the light guide part 50 is prevented from being directly emitted to a user, and the comfort of the use of the atmosphere lamp device 70 is improved.
In the embodiment shown in fig. 2, the light guide part 50 can be shielded by the stop ledge 12, so that the light guide part 50 is not visible from the outside of the atmosphere lamp device 70, but only the cover 10 and the panel 20 can be seen, thereby enhancing the aesthetic appearance of the atmosphere lamp device 70.
As shown in fig. 2 and 5, the light guide part 50 has a receiving recess 52, and the luminous member 40 is located in the receiving recess 52. The light-emitting member 40 is located in the receiving recess 52, so that the light-guiding portion 50 covers the light-emitting member 40, and the light emitted from the light-emitting member 40 does not overflow, so that the light emitted from the light-emitting member 40 can enter the light-guiding portion 50, and the light emitted from the light-emitting member 40 is transmitted to the light-emitting surface 51 through the light-guiding portion 50, so that the light is emitted from the light-emitting surface 51.
As shown in fig. 5 and 6, the light guide part 50 includes a light guide body 53 and light guide ribs 54, the light guide body 53 is connected to the cover 10; the light guide rib 54 is disposed on a side of the light guide body 53 away from the light emitting element 40, and the light guide rib 54 has a light emitting surface 51. The light emitted from the light emitting element 40 enters the light guide body 53, then enters the light guide ribs 54, and exits from the light exit surface 51. The light guiding ribs 54 are located between the panel 20 and the wall of the mounting hole 11, so that the light emitting surface 51 faces the light reflecting surface 21. The light guide body 53 is connected to the cover 10 to ensure that the light guide portion 50 is prevented from coming out of the mounting hole 11, thereby greatly increasing the working stability of the light guide portion 50.
The light guide body 53 has an accommodation recess 52.
As shown in fig. 6, the thickness of the light guide rib 54 is smaller than that of the light guide body 53, the light guide rib 54 is flush with the outer peripheral surface of the light guide body 53, a support step 55 is formed at the joint of the light guide rib 54 and the light guide body 53, and the panel 20 abuts against the support step 55. Set up like this and make the difference in height have between the inside wall of leaded light protruding muscle 54 and the inside wall of leaded light body 53 to make leaded light protruding muscle 54 and leaded light body 53's junction form and support step 55, and panel 20 supports step 55 butt, so that support step 55 supports panel 20, with the stability that increases panel 20 work.
In the embodiment shown in fig. 1, the cover body 10 has a stopper flange 12, the stopper flange 12 protrudes from the wall of the mounting hole 11 toward the center of the mounting hole 11, and the light guide rib 54 abuts on the stopper flange 12 toward a side surface of the opening of the mounting hole 11. Because all parts of the light guide convex rib 54 can emit light, and in order to avoid the light guide convex rib 54 directly emitting the light, the stop convex edge 12 shields the light guide convex rib 54 towards the surface of one side of the orifice of the mounting hole 11, so that the light guide convex rib 54 only emits light at the light emitting surface 51, the propagation direction of a light path is convenient to control, the light is convenient to emit after being reflected by the reflecting surface 21, the intensity of the light is weakened, and the emitted light is ensured not to be dazzling.
In a specific embodiment, not shown, a surface of the light guide ribs 54 on a side facing the opening of the mounting hole 11 is provided with a light shielding layer to prevent direct light emission from the light guide portion 50. In this embodiment, the stopping ledge 12 is not provided, but a light shielding layer is coated on a side surface of the light guiding protruding rib 54 facing the aperture of the mounting hole 11, and the light shielding layer can shield the light, so that the light guiding protruding rib 54 does not emit light toward the side surface of the aperture of the mounting hole 11, and then the light is only emitted from the light emitting surface 51, so as to ensure that the light is emitted after being reflected by the light reflecting surface 21.
In another embodiment not shown, the light guiding ribs 54 are one and annular, and the inner annular surface of the light guiding ribs 54 is the light emitting surface 51. The annular light guide convex rib 54 is positioned outside the panel 20, the reflecting surface 21 is positioned on the outer periphery side of the panel 20, light emitted from the light emitting surface 51 is reflected to the outside of the atmosphere lamp device 70 by the reflecting surface 21 after being directed to the reflecting surface 21, and a circle of halo is formed on the periphery of the panel 20. Due to the action of the light reflecting surface 21, the light intensity of the halation is not too large, and the atmosphere is increased while the eyes of the user are protected.
In the embodiment shown in fig. 6, there are a plurality of light guiding ribs 54, the light guiding ribs 54 are arranged around the light guiding body 53 at intervals, and the light exit surface 51 is arranged inside each light guiding rib 54. The light guide ribs 54 are positioned outside the panel 20 and spaced around the outer periphery of the panel 20, and light emitted from the light exit surface 51 is reflected by the light reflection surface 21 to the outside of the atmosphere lamp device 70 after being directed to the light reflection surface 21, thereby forming a halo around the periphery of the panel 20. Due to the action of the light reflecting surface 21, the light intensity of the halation is not too large, and the atmosphere is increased while the eyes of the user are protected.
As shown in fig. 6 and 7, the light guide ribs 54 are plural, an installation gap 56 is provided between two adjacent light guide ribs 54, and the panel 20 is circumferentially provided with a plurality of bosses 22 engaged with the plurality of installation gaps 56. The boss 22 and the installation notch 56 are matched with each other to limit the panel 20, so as to prevent the panel 20 from rotating, and ensure the stability of the operation of the panel 20.
Note that the light guide rib 54 extends in the circumferential direction of the light guide body 53.
In the embodiment shown in fig. 2, the light guide ribs 54 are plural, and the plural light guide ribs 54 are arranged at equal intervals.
Specifically, the light emitting surface 51 is an inclined surface. The light exit surface 51 is inclined to facilitate the light to be emitted to the light reflection surface 21, so as to reflect the light to the outside of the atmosphere lamp device 70. The inclination angle of the inclined plane is greater than or equal to 30 degrees and less than or equal to 60 degrees. If the inclination angle of the inclined plane is less than 30 degrees, the light is easily irradiated to the outside of the atmosphere lamp device 70. If the inclination angle of the slope is greater than 60 degrees, the light is easily irradiated to the inside of the atmosphere lamp device 70, and the light cannot be emitted to the outside of the atmosphere lamp device 70. Limiting the slope to 30 to 60 degrees ensures that light is efficiently incident on the reflective surface 21 to be reflected by the reflective surface 21 to the outside of the atmosphere lamp device 70.
Specifically, the light reflecting surface 21 is an inclined surface. The light reflecting surface 21 is provided as a slope so as to reflect light to the outside of the atmosphere lamp device 70. The inclination angle of the inclined plane is greater than or equal to 30 degrees and less than or equal to 60 degrees. If the inclined angle of the inclined plane is smaller than 30 degrees, it is not favorable for receiving the light emitted from the light emitting surface 51. If the inclination angle of the inclined plane is greater than 60 degrees, light is easily reflected to the inside of the atmosphere lamp device 70, which is not favorable for light emission. And the inclined surface is limited within the range of 30 to 60 degrees, so that the light can be reflected to the outside of the atmosphere lamp device 70 while being received by the reflecting surface 21.
It should be noted that the light reflecting surface 21 has a plurality of surface segments, and at least one surface segment of the light reflecting surface 21 is an inclined surface. The reflective surface 21 is not in the form of an integral ramp. When at least two of the plurality of surface segments are inclined surfaces, the inclination directions and the inclination angles of the surface segments of the inclined surfaces may be different.
Specifically, the electrical appliance includes the above-described atmosphere lamp device 70. The electric appliance with the atmosphere lamp device 70 can play a role in baking and supporting products, meanwhile, light is not obvious, the eyes of a user can be protected, and the user experience is improved. For example, the power consumer may be a socket.
As shown in fig. 4, the hole wall of the mounting hole 11 has a plurality of escape grooves 13 for escaping the bosses 22. The avoiding groove 13 extends in the extending direction of the mounting hole 11, and the boss 22 is slidably provided in the avoiding groove 13 by the avoiding groove 13, so that the panel 20, the cover 10, and the light guide portion 50 can be easily assembled together. In addition, the boss 22 can extend into the avoiding groove 13 and cooperate with the sidewall stop of the avoiding groove 13, so as to prevent the light guide part 50 and the panel 20 from rotating relative to the cover 10, thereby increasing the working stability of the atmosphere lamp device 70.
In the embodiment shown in fig. 4, the escape groove 13 is located inside the stopper ledge 12, and one end of the escape groove 13 is blocked by the stopper ledge 12, so that the panel 20 and the light guide part 50 can be installed into the installation hole 11 only from the other end of the escape groove 13. The atmosphere lamp device 70 is installed in such a manner that the panel 20 and the boss 22 extend into the installation notch 56 of the light guide part 50, so that the panel 20 and the light guide part 50 are stacked together, then the panel 20 and the light guide part 50 are assembled into the installation hole 11 together, and the part of the boss 22 extending out of the light guide part 50 extends into the avoiding groove 13, so that a limit is formed in the circumferential direction of the panel 20 and the light guide part 50, the panel 20 and the light guide part 50 do not need to be separately limited, and the working stability of the panel 20 and the light guide part 50 is ensured.
As shown in fig. 4 and 7, the end of the panel 20 located in the mounting hole 11 has a light reflecting flange 23, and the outer diameter of the light reflecting flange 23 gradually increases toward the circuit board 60.
As shown in fig. 2, the reflective ledge 23 has a reflective surface 21. The reflective ledge 23 extends into the mounting hole 11, and the reflective ledge 23 abuts against the supporting step 55 to ensure the tightness of the connection between the reflective ledge 23 and the light guide part 50. Meanwhile, the reflective convex edge 23 abuts against the supporting step 55, so that the supporting step 55 can be shielded, light is prevented from being emitted from the supporting step 55, the light is only emitted from the light emitting surface 51, and direct light is prevented from being generated. Meanwhile, the light reflecting convex edge 23 is in a shape of a reduced mouth towards the side far away from the supporting step 55, so that the distance between the light reflecting surface 21 and the light emitting surface 51 is increased, and light is reflected to the outside of the atmosphere lamp device 70 by the light reflecting surface 21.
Specifically, the panel 20 includes a touch pad. The touch panel is capable of touch operation and can control the atmosphere lamp device 70. Of course, the touch pad can also control other structures, thereby realizing different functions. Atmosphere light is formed on the periphery of the panel 20, so that the touch pad can be conveniently identified, a user can conveniently and quickly find the touch pad, and the use convenience of the user is greatly improved.
The atmosphere lamp device 70 is arranged on the socket for explanation, and the touch panel can control the power-on and power-off states of the jacks of the socket, so that the jacks can be powered off when not in use, and the use safety and stability of the socket are improved; while a normally lit atmosphere light device 70 may indicate that the receptacle is in a powered state.
The atmosphere lamp device 70 is disposed on a switch structure, and the touch panel can not only control the light emitting element 40 to be turned on or off, but also control the operating state of other structural elements. The touch pad is arranged on a switch structure of the heating kettle, and the touch pad can adjust the working mode, opening and closing and the like of the heating kettle.
As shown in fig. 2 and 4, the atmosphere lamp device 70 further comprises a circuit board 60, the light emitting member 40 is disposed on the circuit board 60, and the panel 20 is electrically connected to the circuit board 60. The luminous member 40 is disposed on the circuit board 60, and the circuit board 60 is connected to the light guide portion 50, so that the luminous member 40 extends into the accommodating recess 52, so that the light guide portion 50 and the circuit board 60 together surround the luminous member 40, and light emitted from the luminous member 40 is emitted through the light guide portion 50. Meanwhile, the light emitting member 40 is disposed on the circuit board 60 such that the circuit board 60 supplies power to the light emitting member 40 to ensure that the light emitting member 40 emits light.
The panel 20 is electrically connected to the circuit board 60, so that the circuit board 60 supplies power to the touch pad, the touch pad can realize a touch function, and the working stability of the touch pad is ensured. Certainly, the touch pad can realize the function of a switch, and can also realize other functions, and the touch pad can be designed according to requirements.
In particular, the touch pad may be a touch screen. Of course, the panel 20 may also include a display screen, which is disposed in the mounting hole 11.
Specifically, the light guide part 50 is connected to the cover 10 in a snap-fit manner. The light guide part 50 and the cover 10 are connected in a clamping manner, so that the light guide part 50 and the cover 10 can be quickly disassembled and assembled, the connection tightness between the light guide part 50 and the cover 10 can be ensured, and the light guide part 50 and the cover 10 are prevented from being separated.
In the embodiment shown in fig. 4, the periphery of the light guide portion 50 has a plurality of first clamping structures 58, the hole wall of the mounting hole 11 has a plurality of second clamping structures 14 matching with the first clamping structures 58, and the first clamping structures 58 match with the second clamping structures 14 to complete the assembly between the light guide portion 50 and the cover 10. The plurality of first clamping structures 58 are symmetrically arranged to ensure the stability of the stress on the light guide portion 50.
In the embodiment shown in fig. 4, the first latch structure 58 is a latch protrusion and the second latch structure 14 is a latch recess. The second clamping structure 14 is configured as a clamping groove to facilitate the light guide portion 50 to be mounted in the mounting hole 11.
It is of course also possible to provide the first snap-in formation 58 as a snap-in recess and the second snap-in formation 14 as a snap-in projection.
Specifically, the first clamping structure 58 is clamped with the second clamping structure 14, and the boss 22 is limited in the avoiding groove 13, so that the light guide part 50, the panel 20 and the cover 10 are connected together, and the product assembly is facilitated.
As shown in fig. 4 to 6, the light guide part 50 has a stopper flange 57 at an end thereof adjacent to the luminous member 40. The stopper flange 57 is provided to cause a stopper between the light guide part 50 and the cover 10, so as to ensure positional stability between the light guide part 50 and the cover 10. Furthermore, the accommodation recess 52 is located at the stop flange 57.
It is to be understood that the above-described embodiments are only a few, but not all, embodiments of the present invention. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
It is noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of example embodiments according to the present application. As used herein, the singular is intended to include the plural unless the context clearly dictates otherwise, and it should be further understood that the terms "comprises" and/or "comprising," when used in this specification, specify the presence of features, steps, operations, devices, components, and/or combinations thereof.
It should be noted that the terms "first," "second," and the like in the description and claims of this application and in the drawings described above are used for distinguishing between similar elements and not necessarily for describing a particular sequential or chronological order. It is to be understood that the data so used is interchangeable under appropriate circumstances such that the embodiments of the application described herein are capable of operation in sequences other than those illustrated or described herein.
The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention, and various modifications and changes may be made by those skilled in the art. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (10)

1. An ambience lamp device, characterized by comprising:
a cover body (10), the cover body (10) having a mounting hole (11);
the panel (20) is arranged in the mounting hole (11), the side wall of the panel (20) and the hole wall of the mounting hole (11) are arranged at intervals to form a light-emitting gap (30), and the side wall of the panel (20) is provided with a light-reflecting surface (21);
the light guide part (50) is arranged in the mounting hole (11), the light guide part (50) is provided with a light-emitting surface (51), and the light-emitting surface (51) is positioned in the light-emitting gap (30) and faces the light reflecting surface (21);
the light-emitting component (40) is positioned on one side, far away from the panel (20), of the light guide part (50), light emitted by the light-emitting component (40) is emitted to the light reflecting surface (21) through the light emitting surface (51), and the light is reflected by the light reflecting surface (21) and then is emitted through the light emitting gap (30).
2. Atmosphere lamp device according to claim 1, wherein the cover (10) has a stop ledge (12), the stop ledge (12) extends from the wall of the mounting hole (11) to the center of the mounting hole (11), the panel (20) and the stop ledge (12) are arranged at a distance from each other to form the light exit gap (30), and the stop ledge (12) abuts against a side surface of the light guide part (50) away from the luminous element (40) to prevent direct light exit from the light guide part (50).
3. Atmosphere lamp device according to claim 1, wherein the light guide (50) has a receiving recess (52), the luminous element (40) being located in the receiving recess (52).
4. Atmosphere lamp device according to claim 1, wherein the light guide (50) comprises:
a light guide body (53), wherein the light guide body (53) is connected with the cover body (10);
the light guide rib (54) is arranged on one side, away from the light emitting piece (40), of the light guide body (53), and the light guide rib (54) is provided with the light emitting surface (51).
5. The ambience lamp device of claim 4,
the cover body (10) is provided with a stopping convex edge (12), the stopping convex edge (12) extends out from the hole wall of the mounting hole (11) to the center of the mounting hole (11), and one side surface of the light guide convex rib (54) facing the hole opening of the mounting hole (11) abuts against the stopping convex edge (12); or
And a light shielding layer is arranged on one side surface of the light guide convex rib (54) facing the opening of the mounting hole (11) so as to prevent the light guide part (50) from directly emitting light.
6. The ambience lamp device of claim 4,
the light guide convex rib (54) is annular, and the inner annular surface of the light guide convex rib (54) is the light emergent surface (51); or
The light guide ribs (54) are arranged in a plurality of ways, the light guide ribs (54) are arranged around the light guide body (53) at intervals in the circumferential direction, and the light emergent surface (51) is arranged on the inner side of each light guide rib (54).
7. The ambience lamp device according to claim 6, wherein the light guiding ribs (54) are provided in plurality, a mounting gap (56) is provided between two adjacent light guiding ribs (54), and the panel (20) is circumferentially provided with a plurality of bosses (22) which are engaged with the plurality of mounting gaps (56).
8. Atmosphere lamp device according to any of the claims 1 to 7, wherein the light exit surface (51) and/or the light reflecting surface (21) is/are beveled.
9. The ambience lamp device of claim 8, wherein the inclination angle of the slope is greater than or equal to 30 ° and less than or equal to 60 °.
10. An electrical appliance, characterized in that it comprises an ambience light device as claimed in any one of claims 1 to 9.
CN202122694500.8U 2021-11-04 2021-11-04 Atmosphere lamp device and electrical apparatus Active CN216113856U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122694500.8U CN216113856U (en) 2021-11-04 2021-11-04 Atmosphere lamp device and electrical apparatus

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Application Number Priority Date Filing Date Title
CN202122694500.8U CN216113856U (en) 2021-11-04 2021-11-04 Atmosphere lamp device and electrical apparatus

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Publication Number Publication Date
CN216113856U true CN216113856U (en) 2022-03-22

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CN (1) CN216113856U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114923144A (en) * 2022-05-31 2022-08-19 岚图汽车科技有限公司 Reflective atmosphere lamp

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114923144A (en) * 2022-05-31 2022-08-19 岚图汽车科技有限公司 Reflective atmosphere lamp

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