A mirror lamp
Patent Information
- Application Number
- CN202522478676.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-22
- Publication Date
- 2026-08-28
- Estimated Expiration
- 2035-11-22
AI Technical Summary
[0004]但是现有的深渊灯镜需要将光源,即LED灯珠或者灯带等光源设置于半透镜与单面镜之间的折射空腔内,而在一些容纳空间小且体积不大的产品中,由于LED灯珠或者灯带等光源自身体积无法调整,导致深渊灯镜的厚度尺寸无法进一步的减薄,且LED灯珠或者灯带等光源设置于半透镜与单面镜之间的技术难度大,需要对壳体的留出相应的供电线路结构,增加了深渊灯镜设计难度
[0012] Compared with the prior art, the beneficial effects of this utility model are as follows: the base, one-way mirror, and semi-transparent mirror are sequentially arranged in the mounting through hole of the housing, and a light-transmitting protrusion is provided on the side of the base near the one-way mirror. The light-transmitting protrusion can guide the light source through the back of the base into the refraction cavity. The light-transmitting protrusion is set at the periphery of the one-way mirror, which effectively fixes the one-way mirror. This structure eliminates the need to set a light source component between the one-way mirror and the semi-transparent mirror, which allows the thickness of the mirror lamp to be further reduced. At the same time, there is no need to consider the layout design of the light source harness, which greatly reduces the overall design difficulty of the product. Furthermore, since the light source is located on the back of the base for illumination, the one-way mirror and semi-transparent mirror in the mounting through hole can create a three-dimensional abyss effect from the light source of the light-transmitting protrusion.
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Figure CN224694388U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of lighting technology, and in particular to a mirror lamp. Background Technology
[0002] Abyss-shaped light mirrors have become a new favorite in the advertising and decoration industry in recent years. They are widely used in signs, logos, decorative lighting fixtures, or product surface decoration, adding a three-dimensional feel to flat billboards or product surfaces, making the environment and products more profound, and the overall effect more stunning.
[0003] The components of the Abyss Lamp Mirror are, in order: a semi-transparent mirror, a light source, and a one-way mirror. The principle behind the visual effect is that the light source is placed between the reflective surfaces of the semi-transparent mirror and the one-way mirror, where it is repeatedly refracted, and then presented to the user through the semi-transparent mirror to create a three-dimensional visual effect.
[0004] However, existing abyss light mirrors require the light source, such as LED chips or light strips, to be placed within the refractive cavity between the semi-transparent mirror and the one-way mirror. In some products with limited space and small size, the inability to adjust the volume of the LED chips or light strips themselves limits the thickness of the abyss light mirror. Furthermore, the technical difficulty of placing the LED chips or light strips between the semi-transparent mirror and the one-way mirror is significant, requiring the inclusion of power supply lines within the housing, further complicating the design of the abyss light mirror. Therefore, there is an urgent need to develop a mirror-finish lighting fixture to meet practical application requirements. Utility Model Content
[0005] The purpose of this invention is to provide a mirror lamp to solve the above-mentioned defects.
[0006] To solve the above-mentioned technical problems, the present invention adopts the following technical solution: A mirror lamp includes a housing, a one-way mirror, a semi-transparent mirror, and a base. The housing has a mounting through hole in the middle. The base, one-way mirror, and semi-transparent mirror are sequentially arranged in the mounting through hole. The base has a light-transmitting protrusion on the side near the one-way mirror. The light-transmitting protrusion is used to allow the light source to pass through both ends of the base. The one-way mirror is fixed to one end of the base through the light-transmitting protrusion. The light-transmitting protrusion is located around the periphery of the one-way mirror. A gap is left between the one-way mirror and the semi-transparent mirror. The gap is a refractive cavity.
[0007] As a further embodiment of the above description, the base and the light-transmitting protrusion are integrally formed. The base is made of a light-transmitting material, one end of the one-way mirror is the first reflecting surface, and the end of the one-way mirror away from the first reflecting surface is fixedly connected to the base through the light-transmitting protrusion.
[0008] As a further embodiment of the above description, the light-transmitting protrusion is a frame-like structure, and the light-transmitting protrusion is located at the center of the base to form an inlay cavity, in which the one-way mirror is inlaid and fixed.
[0009] In the above description, as a further solution, the end face of the mounting through hole near the semi-transparent lens is the first mounting surface, and the end face of the mounting through hole near the base is the second mounting surface. The edge of the semi-transparent lens is fixedly connected to the first mounting surface, and the edge of the base is a fixed rim. The base is fixedly connected to the second mounting surface through the fixed rim.
[0010] In the above description, as a further embodiment, one end face of the semi-transparent lens is a light-transmitting surface, and the other end face of the semi-transparent lens is a second reflective surface. The second reflective surface of the semi-transparent lens is fixedly connected to the first mounting surface of the mounting through hole.
[0011] As a further solution, as described above, when the base is fixedly connected to one end face of the mounting through hole, the light-transmitting protrusion abuts against the inner wall of the mounting through hole.
[0012] Compared with the prior art, the beneficial effects of this utility model are as follows: the base, one-way mirror, and semi-transparent mirror are sequentially arranged in the mounting through hole of the housing, and a light-transmitting protrusion is provided on the side of the base near the one-way mirror. The light-transmitting protrusion can guide the light source through the back of the base into the refraction cavity. The light-transmitting protrusion is set at the periphery of the one-way mirror, which effectively fixes the one-way mirror. This structure eliminates the need to set a light source component between the one-way mirror and the semi-transparent mirror, which allows the thickness of the mirror lamp to be further reduced. At the same time, there is no need to consider the layout design of the light source harness, which greatly reduces the overall design difficulty of the product. Furthermore, since the light source is located on the back of the base for illumination, the one-way mirror and semi-transparent mirror in the mounting through hole can create a three-dimensional abyss effect from the light source of the light-transmitting protrusion. Attached Figure Description
[0013] Figure 1 This is a three-dimensional structural diagram of a mirror lamp as described in this embodiment; Figure 2 This is an exploded view of the structure of a mirror lamp described in this embodiment; Figure 3 This is a cross-sectional view of the exploded whole structure of the mirror lamp described in this embodiment; Figure 4 This is a cross-sectional view of a mirror lamp fixture described in this embodiment; Figure 5 for Figure 4 A magnified schematic diagram of the structure of part A in the diagram; In the figure: 1-shell, 11-mounting through hole, 111-first mounting surface, 112-second mounting surface, 2-one-way mirror, 21-first reflecting surface, 3-semi-transparent lens, 31-transmitting surface, 32-second reflecting surface, 4-base, 41-transmitting protrusion, 42-embedded cavity, 43-fixed rim, 5-refracting cavity. Detailed Implementation
[0014] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.
[0015] For this embodiment, please refer to Figures 1-5 The specific implementation of the mirror lamp includes a housing 1, a one-way mirror 2, a semi-transparent mirror 3, and a base 4. The housing 1 has a mounting through hole 11 in the middle. The base 4, the one-way mirror 2, and the semi-transparent mirror 3 are sequentially arranged in the mounting through hole 11. The base 4 has a light-transmitting protrusion 41 on the side near the one-way mirror 2. The light-transmitting protrusion 41 is used to allow the light source to pass through both ends of the base 4. The one-way mirror 2 is fixed to one end of the base 4 through the light-transmitting protrusion 41. When the base 4 is fixedly connected to one end of the mounting through hole 11, the light-transmitting protrusion 41 abuts against the inner wall of the mounting through hole 11. The light-transmitting protrusion 41 is arranged around the periphery of the one-way mirror 2. A gap is left between the one-way mirror 2 and the semi-transparent mirror 3. The gap is a refractive cavity 5.
[0016] The base 4, one-way mirror 2, and semi-transparent mirror 3 are sequentially installed in the mounting through hole 11 of the housing 1. A light-transmitting protrusion 41 is provided on the side of the base 4 near the one-way mirror 2. The light-transmitting protrusion can guide the light source through the back of the base 4 into the refraction cavity 5. The light-transmitting protrusion 41 is located around the periphery of the one-way mirror 2, which effectively fixes the one-way mirror 2. This structure eliminates the need to set a light source component between the one-way mirror 2 and the semi-transparent mirror 3, which allows for a further reduction in the thickness of the mirror lamp. At the same time, there is no need to consider the layout design of the light source harness, which greatly reduces the overall design difficulty of the product. With the light source located on the back of the base 4, the one-way mirror 2 and the semi-transparent mirror 3 in the mounting through hole 11 can create a three-dimensional abyss effect from the light source of the light-transmitting protrusion 41.
[0017] In the preferred scheme, such as Figure 2-3As shown, the base 4 and the light-transmitting protrusion 41 are integrally formed. The base 4 is made of light-transmitting material. One end face of the one-way mirror 2 is the first reflecting surface 21. The end face of the one-way mirror 2 away from the first reflecting surface 21 is fixedly connected to the base 4 through the light-transmitting protrusion 41. The light-transmitting protrusion 41 is a frame-shaped structure. The light-transmitting protrusion 41 is located at the center of the base 4 to form an inlay cavity 42. The one-way mirror 2 is inlaid and fixed inside the inlay cavity 42. When the light source on the back of the base 4 shines on one side of the base 4, the excess light source can be blocked by the opaque nature of the back of the one-way mirror 2. At the same time, the one-way mirror 2 is inlaid inside the light-transmitting protrusion 41, which can make the light source on the back of the base 4 bypass the one-way mirror 2 and shine into the refraction cavity 5.
[0018] Specifically, such as Figure 4-5 As shown, the end face of the mounting through hole 11 near the semi-transparent lens 3 is the first mounting surface 111, and the end face of the mounting through hole 11 near the base 4 is the second mounting surface 112. The edge of the semi-transparent lens 3 is fixedly connected to the first mounting surface 111, and the edge of the base 4 is the fixed perimeter 43. The base 4 is fixedly connected to the second mounting surface 112 through the fixed perimeter 43. One end face of the semi-transparent lens 3 is the light-transmitting surface 31, and the other end face of the semi-transparent lens 3 is the second reflective surface 32. The second reflective surface 32 of the semi-transparent lens 3 is fixedly connected to the first mounting surface 111 of the mounting through hole 11.
[0019] The working process of a mirror lamp: When the light source on the back of the base 4 shines on one side of the base 4, the excess light source can be blocked by the opaque nature of the back of the one-way mirror 2. At the same time, the one-way mirror 2 is embedded in the interior of the light-transmitting protrusion 41. The light-transmitting protrusion 41 can make the light source on the back of the base 4 bypass the one-way mirror 2 and shine into the refraction cavity 5. The light source formed by the light-transmitting protrusion 41 can be located in the mounting through hole 11 and refracted back and forth between the first reflecting surface 21 and the second reflecting surface 32. The user can observe the three-dimensional abyss effect of the light source on the light-transmitting surface 31 side of the semi-transparent mirror 3.
[0020] The above description, in conjunction with specific preferred embodiments, provides a further detailed explanation of the present invention. It should not be construed that the specific implementation of the present invention is limited to these descriptions. For those skilled in the art, various simple deductions or substitutions can be made without departing from the concept of the present invention, and all such modifications and substitutions should be considered within the scope of protection of the present invention.
Claims
1. A mirror-finish lamp, characterized in that, include: The device comprises a housing, a one-way mirror, a semi-transparent mirror, and a base. The housing has a mounting through hole in the middle. The base, one-way mirror, and semi-transparent mirror are sequentially arranged in the mounting through hole. The base has a light-transmitting protrusion on the side near the one-way mirror. The light-transmitting protrusion is used to allow the light source to pass through both ends of the base. The one-way mirror is fixed to one end of the base through the light-transmitting protrusion. The light-transmitting protrusion is located around the periphery of the one-way mirror. A gap is left between the one-way mirror and the semi-transparent mirror, and the gap is a refractive cavity.
2. A mirror lamp according to claim 1, characterized in that: The base and the light-transmitting protrusion are integrally formed. The base is made of light-transmitting material. One end of the one-way mirror is the first reflecting surface. The end of the one-way mirror away from the first reflecting surface is fixedly connected to the base through the light-transmitting protrusion.
3. A mirror lamp according to claim 2, characterized in that: The light-transmitting protrusion has a frame-like structure, and the light-transmitting protrusion is located in the center of the base to form an inlay cavity, in which the one-way mirror is inlaid and fixed.
4. A mirror lamp according to claim 1, characterized in that: The end face of the mounting through hole near the semi-transparent lens is the first mounting surface, and the end face of the mounting through hole near the base is the second mounting surface. The edge of the semi-transparent lens is fixedly connected to the first mounting surface, and the edge of the base is a fixed rim. The base is fixedly connected to the second mounting surface through the fixed rim.
5. A mirror lamp according to claim 4, characterized in that: One end face of the semi-transparent lens is a light-transmitting surface, and the other end face of the semi-transparent lens is a second reflective surface. The second reflective surface of the semi-transparent lens is fixedly connected to the first mounting surface of the mounting through hole.
6. A mirror lamp according to any one of claims 1-5, characterized in that: When the base is fixedly connected to one end face of the mounting through hole, the light-transmitting protrusion abuts against the inner wall of the mounting through hole.