Light-transmitting device
By designing a light transmitting device including a first lamp body, a first light transmitting plate and a crack structure that penetrates the body, the problem of complex and high cost of forming the light shielding layer of the existing light transmitting device is solved, and the effect of simple process, low cost and effective light projection is achieved.
Patent Information
- Application Number
- CN202421630658.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-10
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2034-07-10
AI Technical Summary
The light-shielding layer forming process of existing light-transmitting devices is complex, resulting in high production costs.
A light transmitting device is designed, which includes a base, a first lamp body, a first light transmitting plate and a light transmitting portion. The light of the first lamp body passes through the first light-transmitting plate and is projected outward along the light-transmitting part. The light-transmitting part adopts a crack structure that penetrates the body. The cracks extend incline from bottom to top, and some cracks have irregular edges.
The molding process is simplified, the production cost is reduced, and the use needs are met, achieving the light projection effect.
Smart Images

Figure CN222992725U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of light-transmitting devices, and particularly to a light-transmitting device with cracks or fissures.
Background Art
[0002] An existing light-transmitting device includes a housing and a light-emitting component installed in the housing. The housing includes a light-transmitting portion, and the light-transmitting portion includes at least one first region and at least one second region. A light-shielding layer covers the surface of the first region, and a plurality of cracks are defined on the light-shielding layer corresponding to the second region. The plurality of cracks are randomly distributed and irregular in shape. The light-emitting component is disposed in the housing, and the light-emitting component can emit a light beam. The light beam passes through the light-transmitting portion of the housing to project a pattern. A part of the light beam passing through the second region has a second brightness, and the second brightness is greater than the first brightness. Wherein, the light-shielding layer includes a first coating attached to the surface of the first region, and the material of the first coating partially shields light; and wherein the first coating includes a shrinkage agent. The light-shielding layer is formed by coating the first coating on both the first region and the second region. After the first coating is cured, the light-shielding layer is formed together with the plurality of cracks, and the plurality of cracks divide the light-shielding layer into a plurality of irregular segments. Wherein, the first coating contains a shrinkage agent, the light-shielding layer is formed by coating the first coating on the first region and the second region, and after the first coating is cured, the light-shielding layer and a plurality of cracks are formed, and the plurality of cracks divide the light-shielding layer into a plurality of irregular sections.
[0003] Due to the relatively complex forming process of the light-shielding layer of the above light-transmitting device, the production cost is high.
[0004] Therefore, it is necessary to redesign a light-transmitting device to overcome the above problems.
Content of the Utility Model
[0005] In view of the problems faced by the background art, the utility model provides a light-transmitting device in which the light emitted by a first lamp body passes through a light-transmitting plate and a light-transmitting portion.
[0006] To achieve the above object, the utility model adopts the following technical means:
[0007] A light-transmitting device includes: a base; at least one first lamp body installed on the base; at least one first light-transmitting plate installed on the base, and the light beam emitted by the first lamp body passes through the first light-transmitting plate; a body installed on the base and forming a receiving cavity with the base. The first lamp body and the first light-transmitting plate are both received in the receiving cavity. The body includes at least one light-transmitting portion penetrating outward. After the light beam emitted by the first lamp body passes through the first light-transmitting plate, it projects outward along the light-transmitting portion.
[0008] Furthermore, the light-transmitting part is a crack structure penetrating the body, and a plurality of the cracks extend obliquely upward, and at least part of the cracks include irregular edges.
[0009] Furthermore, the distance between two adjacent cracks gradually increases from bottom to top.
[0010] Furthermore, the light-transmitting device further includes a second lamp body installed on the base, an optical element located above the second lamp body, a first optical lens, and a second optical lens. The light emitted by the second lamp body sequentially passes through the optical element, the first optical lens, and the second optical lens to form a projection effect projected onto the ceiling or wall. The light of the first lamp body passes through the first light-transmitting plate and the light-transmitting part to form a night light.
[0011] Furthermore, the first optical lens includes a first outer surface and a first inner surface arranged oppositely. The first outer surface is a horizontal plane and is exposed upward from the projection opening of the body. The first inner surface is an arc surface and protrudes downward into the receiving cavity. The second optical lens is located between the optical element and the first optical lens. The second optical lens includes a second outer surface and a second inner surface arranged oppositely. The second outer surface is an arc surface, and this arc surface is arranged oppositely to the second inner surface. The second inner surface is a horizontal plane, and this horizontal plane faces the optical element.
[0012] Furthermore, the first optical lens includes a first outer surface and a first inner surface arranged oppositely. The first outer surface is a horizontal plane and is exposed upward from the projection opening of the body. The first inner surface is an arc surface and protrudes downward into the receiving cavity. The second optical lens is located between the optical element and the first optical lens. The second optical lens includes a second outer surface and a second inner surface arranged oppositely. The second outer surface is a horizontal plane, and this horizontal plane is arranged oppositely to the second inner surface. The second inner surface is an arc surface, and this arc surface faces the optical element.
[0013] Furthermore, the light-transmitting device further includes two second light-transmitting plates installed on the left and right sides of the base. The base includes a light-transmitting structure corresponding to each light-transmitting part. At least part of the light emitted by the second lamp body passes through the second light-transmitting plate and the light-transmitting structure.
[0014] Furthermore, the two first lamp bodies are located on the left and right sides of the second lamp body. A plurality of the cracks are provided corresponding to each first lamp body. When the first lamp body is lit, a flame light effect is projected on the plurality of cracks.
[0015] Further, the light-transmitting device includes at least one swinging member mounted on the base. The swinging member includes a plurality of elastic hooks, and the plurality of elastic hooks are latched in the mounting holes of the base, and the swinging member swings relative to the base.
[0016] Further, the swinging member includes a first part and a second part that are fixedly connected to each other. The first part includes a rotating shaft part, and the rotating shaft part includes alternately arranged limiting parts and the elastic hooks, and both the limiting parts and the elastic hooks protrude into the mounting holes.
[0017] Compared with the prior art, the light-transmitting device of the present invention has the following beneficial effects:
[0018] At least one first lamp body is mounted on the base; at least one first light-transmitting plate is mounted on the base, and the light emitted by the first lamp body passes through the first light-transmitting plate; a main body is mounted on the base and forms a receiving cavity with the base. The first lamp body and the first light-transmitting plate are both received in the receiving cavity. The main body includes at least one light-transmitting part that penetrates outward. After the light emitted by the first lamp body passes through the first light-transmitting plate, it is projected outward along the light-transmitting part. The molding process is simple, the cost is low, and the use requirements are met.
Description of the Drawings
[0019] Figure 1 is a perspective view of the light-transmitting device of the present invention;
[0020] Figure 2 is Figure 1 a perspective exploded view of
[0021] Figure 3 is Figure 1 a top view of
[0022] Figure 4 is Figure 3 a sectional view taken along line A-A in
[0023] Figure 5 is Figure 1 the swinging member in
[0024] Figure 6 is Figure 5 a top view of
[0025] Figure 7 is Figure 6 a sectional view taken along line B-B in
[0026] Description of the reference numerals in the specific embodiments:
[0027]
[0028]
Detailed Implementation Modes
[0029] To facilitate a better understanding of the purpose, structure, features, and functions of the present utility model, the present utility model will be further described below in conjunction with the accompanying drawings and specific implementation modes.
[0030] As Figures 1 to 7 shown, the light-transmitting device 100 of the present utility model includes a base 1, at least one swinging member 2 mounted on the base 1, a body 3, and a speaker 4.
[0031] As Figure 1 , Figure 2 and Figure 4As shown, the base 1 includes a receiving cavity 11 penetrating upward, two mounting holes 12 and a plurality of horn holes 13 communicated with the receiving cavity 11. The two mounting holes 12 are located on the left and right sides of the receiving cavity 11. The plurality of horn holes 13 are located between the two mounting holes 12. The base 1 further includes blocking portions 121 on both sides of the mounting holes 12 and a plurality of convex portions 122 arranged at intervals. The blocking portions 121 are arranged around the mounting holes 12 and protrude into the receiving cavity 11. The base 1 includes a sink 123 recessed inward from its outer surface and an anti-slip pad 124 received in the sink 123. The sink 123 is arranged around the mounting holes 12 and is communicated with the mounting holes 12. The mounting holes 12 penetrate through the anti-slip pad 124. In this embodiment, the anti-slip pad 124 constitutes a blocking portion. The plurality of convex portions 122 are arranged around the sink 123 and are arranged in the direction close to the swing member 2. The base 1 further includes at least one first lamp body, a second lamp body 14, a first light-transmitting plate 15, a second light-transmitting plate 16, an optical element 18, a first optical lens 19 and a second optical lens 20 received in the receiving cavity 11. In this embodiment, the two first lamp bodies are located on the left and right sides of the second lamp body 14. The light emitted by the second lamp body 14 sequentially passes through the optical element 18, the second optical lens 20 and the first optical lens 19 to form a projection effect projected on the ceiling or the wall. In this embodiment, the first optical lens 19 includes a first outer surface and a first inner surface arranged oppositely. The first outer surface is a horizontal surface and is exposed upward at the projection opening 31 of the main body 3. The first inner surface is an arc surface and protrudes downward into the receiving cavity 11. The second optical lens 20 is located between the optical element 18 and the first optical lens 19. The second optical lens 20 includes a second outer surface and a second inner surface arranged oppositely. The second outer surface is an arc surface, and this arc surface is arranged oppositely to the second inner surface. The second inner surface is a horizontal surface, and this horizontal surface faces the optical element 18. In other embodiments, the first optical lens 19 includes a first outer surface and a first inner surface arranged oppositely. The first outer surface is a horizontal surface and is exposed upward at the projection opening 31 of the main body 3. The first inner surface is an arc surface and protrudes downward into the receiving cavity 11. The second optical lens 20 is located between the optical element 18 and the first optical lens 19. The second optical lens 20 includes a second outer surface and a second inner surface arranged oppositely. The second outer surface is a horizontal surface, and this horizontal surface is arranged oppositely to the second inner surface. The second inner surface is an arc surface, and this arc surface faces the optical element 18. The light emitted by the first lamp body passes outward through the first light-transmitting plate 15. The two first light-transmitting plates 15 are located on the left and right sides of the second lamp body 14. Each first light-transmitting plate 15 is inclined towards one of the first lamp bodies.The base 1 further includes a light-transmitting structure 17 located outside the second light-transmitting plate 16. In this embodiment, the light-transmitting structure 17 is a plurality of perforated structures communicating with the receiving cavity 11, and other structures can also be provided. At least part of the light emitted by the second lamp body 14 passes through the second light-transmitting plate 16 and the light-transmitting structure 17 and is projected outward. The two light-transmitting structures 17 are located on the left and right sides of the base 1 and constitute the eyes of the light-transmitting device 100.
[0032] Such as Figure 2 , Figure 5 And Figure 7As shown, the swinging member 2 is installed in the mounting hole 12. The horn-shaped hole 13 is located between two swinging members 2. The swinging member 2 includes a first part 21, a second part 22 fixed to each other, and a cavity 23 formed by the first part 21 and the second part 22. The first part 21 includes a plurality of elastic hooks 211 extending towards the mounting hole 12, a plurality of limiting parts 212, a relief groove 213 provided corresponding to each elastic hook 211, and a stop part 214 arranged around the plurality of elastic hooks 211. The elastic hook 211, the limiting part 212 and the stop part 214 constitute a rotating shaft part. The elastic hooks 211 and the limiting parts 212 are alternately arranged along the inner wall of the mounting hole 12 and both protrude into the mounting hole 12, and there is a gap between the elastic hooks 211 and the limiting parts 212. The plurality of elastic hooks 211 are buckled on the blocking part 121, and the blocking part 121 restricts the elastic hooks 211 from detaching from the base 1. The stop part 214 is in mutual fit with the anti-slip pad 124, and the swinging member 2 realizes fixed-point positioning during rotation. The anti-slip pad 124 constitutes a gear part cooperating with the stop part 214 to restrict the stop part 214 from moving towards the receiving cavity 11. The stop part 214 is connected to the elastic hook 211. A gap is formed between the plurality of protrusions 122 and the first part 21. Of course, the protrusions 122 can be arranged on the first part 21, and a gap is formed between the base 1 and the plurality of protrusions 122. The first part 21 further includes a first fixing part 215 facing the cavity 23, that is, the first fixing part 215 is opposite to the extending direction of the elastic hook 211. The second part 22 includes a second fixing part 221 fixedly cooperating with the first fixing part 215. The main body 3 is installed downward at the opening of the receiving cavity 11 and forms a receiving space with the base 1. The first light-transmitting plate 15 and the second light-transmitting plate 16 are both received in the receiving space. The main body 3 includes a projection port 31, a projection hole 32 and at least one light-transmitting part 33 penetrating upward. In this embodiment, the plurality of light-transmitting parts 33 are located on the left and right sides of the projection port 31 and penetrate the main body 3 outward. The light-transmitting part 33 is a crack structure penetrating the main body 3, and the plurality of cracks extend obliquely from bottom to top, and at least part of the cracks include irregular edges. The distance between adjacent two cracks gradually increases from bottom to top. The light of the first lamp body passes through the first light-transmitting plate 15 and the light-transmitting part 33 to form a night light. When the first lamp body is lit, a flame light effect is projected on the plurality of cracks. The second optical lens 20 is exposed upward at the projection port 31. Of course, the light-transmitting part 33 can also be a transparent plate-like structure as long as the light-transmitting requirement is met.The light-transmitting device 100 further includes a laser component 5 or a projection component mounted on the base 1. The laser component 5 or the projection component is exposed upward through the projection hole 32 and is located between the left and right light-transmitting portions 33. The speaker 4 is disposed corresponding to the speaker hole 13.
[0033] In summary, the light-transmitting device of the present invention has the following beneficial effects:
[0034] (1) At least one first lamp body is mounted on the base 1; at least one first light-transmitting plate 15 is mounted on the base 1, and the light emitted by the first lamp body passes through the first light-transmitting plate 15; the body 3 is mounted on the base 1 and forms a receiving cavity 11 with the base 1. The first lamp body and the first light-transmitting plate 15 are both received in the receiving cavity 11. The body 3 includes at least one light-transmitting portion 33 that penetrates outward. After the light emitted by the first lamp body passes through the first light-transmitting plate 15, it is projected outward along the light-transmitting portion 33. The molding process is simple, the cost is low, and the use requirements are met.
[0035] The above detailed description is only for the description of the preferred embodiments of the present invention and does not limit the patent scope of the present invention. Therefore, all equivalent technical changes made by using the description of this creation and the content of the drawings are included in the patent scope of this creation.
Claims
1. A light-transmitting device, characterized in that: include: Pedestal; At least one first lamp body, mounted on the base; At least one first light-transmitting plate, mounted on the base, and the light beam emitted by the first lamp body passes through the first light-transmitting plate; The main body is installed on the base and forms a receiving cavity with the base. The first lamp body and the first light-transmitting plate are both received in the receiving cavity. The main body includes at least one light-transmitting portion penetrating outward. After the light beam emitted by the first lamp body passes through the first light-transmitting plate, it is projected outward along the light-transmitting portion.
2. The light-transmitting device according to claim 1, characterized in that: The light-transmitting portion is a crack structure penetrating the body, a plurality of the cracks extend obliquely from bottom to top, and at least some of the cracks include irregular edges.
3. The light-transmitting device according to claim 2, characterized in that: The distance between two adjacent cracks gradually increases from bottom to top.
4. The light-transmitting device according to claim 1, characterized in that: The light-transmitting device also includes a second lamp body installed on the base, an optical element located above the second lamp body, a first optical lens and a second optical lens. The light emitted by the second lamp body passes through the optical element, the second optical lens and the first optical lens in sequence to form a projection effect on the ceiling or the wall. The light from the first lamp body passes through the first light-transmitting plate and the light-transmitting part to form a night light.
5. The light-transmitting device according to claim 4, characterized in that: The first optical lens includes a first outer surface and a first inner surface that are oppositely arranged, the first outer surface is a horizontal plane and is upwardly exposed to the projection opening of the main body, the first inner surface is an arcuate surface and protrudes downward into the receiving cavity, the second optical lens is located between the optical element and the first optical lens, the second optical lens includes a second outer surface and a second inner surface that are oppositely arranged, the second outer surface is an arcuate surface that is oppositely arranged to the second inner surface, and the second inner surface is a horizontal plane that is arranged toward the optical element.
6. The light-transmitting device according to claim 4, characterized in that: The first optical lens includes a first outer surface and a first inner surface that are oppositely arranged, the first outer surface is a horizontal plane and is upwardly exposed to the projection opening of the main body, the first inner surface is an arcuate surface and protrudes downward into the receiving cavity, the second optical lens is located between the optical element and the first optical lens, the second optical lens includes a second outer surface and a second inner surface that are oppositely arranged, the second outer surface is a horizontal plane that is oppositely arranged to the second inner surface, and the second inner surface is an arcuate surface that is arranged toward the optical element.
7. The light-transmitting device according to claim 4, characterized in that: The light-transmitting device also includes two second light-transmitting plates installed on the left and right sides of the base. The base includes a light-transmitting structure arranged corresponding to each light-transmitting portion. The light emitted by the second lamp body at least partially passes through the second light-transmitting plates and the light-transmitting structure.
8. The light-transmitting device according to claim 4, characterized in that: The two first lamp bodies are located on the left and right sides of the second lamp body, the light-transmitting portion is a crack structure penetrating the body, and a plurality of the cracks are provided corresponding to each of the first lamp bodies. When the first lamp body is lit, flame light effects are projected on the plurality of cracks.
9. The light-transmitting device according to claim 4, characterized in that: The light-transmitting device comprises at least one swinging member installed on the base, the swinging member comprises a plurality of elastic hooks, the plurality of elastic hooks are buckled in the mounting holes of the base, and the swinging member swings relative to the base.
10. The light-transmitting device according to claim 9, characterized in that: The swinging member includes a first part and a second part fixed to each other, the first part includes a rotating shaft part, the rotating shaft part includes a limiting part and the elastic hook arranged alternately, and the limiting part and the elastic hook both protrude into the mounting hole.