Byllouin mirror structure and illuminating lamp with same
By simplifying the enclosure, circuit board, and reflector design of the abyss mirror structure, and combining laser engraving technology with robust connections, the complexity and light leakage issues of existing abyss mirror structures have been resolved, achieving low-cost, high-efficiency visual effects and ease of assembly.
Patent Information
- Application Number
- CN202423304054.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-12-30
AI Technical Summary
Existing abyssal mirrors have complex structural designs, are difficult and costly to assemble, and are prone to light leakage, which affects the visual effect and limits their popularization and development.
It adopts a closed structure of box, circuit board and reflector. The light emitted by the lamp is reflected in a cycle through transparent ribbon and semi-transparent mirror, which simplifies the parts. The transparent ribbon is formed by laser engraving process to ensure high-precision pattern presentation, and the assembly convenience and light reflection efficiency are improved by the stable connection method.
It simplifies the types and number of parts, reduces manufacturing costs, improves light guiding effect and ease of assembly, and enhances the aesthetics and consistency of visual effects.
Smart Images

Figure CN223525032U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of lamps, in particular to a deep mirror structure and a lighting lamp with the same. BACKGROUND
[0002] The deep mirror is also called the thousand-layer mirror, which is a special lighting device that creates visual effects by using optical principles. It produces an infinite tunnel effect through specially designed mirrors and light sources, giving people a sense of depth and space. The working principle of the deep mirror is based on the reflection and refraction of light. When the light source is connected to the power, the light emitted behind the one-way glass produces a virtual image of the light source. Most of the light is reflected, and a small part of the light is refracted. These refracted light rays are reflected and circulated between the one-way glass and the ordinary glass, thereby producing an infinite extension effect. This device is very popular in advertising, public place decoration and other occasions. It can add a three-dimensional effect and make the environment more deep and the overall effect more shocking.
[0003] At present, in order to realize the visual display of similar tunnel and deep effect, a relatively complex structure is usually designed, which often needs to specially fix and install the light source, increasing the difficulty and cost of assembly. Because there are more connections between components, it is easy to produce light leakage phenomenon, which affects the final visual effect. At the same time, the types of materials required are various, which not only increases the manufacturing cost, but also reduces the production flexibility. These problems limit the popularization and development of these technologies in practical applications. CONTENT OF THE INVENTION
[0004] In order to simplify the deep mirror structure, improve its visual effect and reduce its cost, the present application provides a deep mirror structure and a lighting lamp with the same.
[0005] In the first aspect, the deep mirror structure provided by the present application adopts the following technical scheme:
[0006] A deep mirror structure, comprising a box body in the shape of a long strip, a circuit board is fixed on one side of the box body, a plurality of lamp beads are arranged on the circuit board along the length direction of the box body and face the inside of the box body, a reflector is fixed on the other side of the box body opposite to the circuit board, a half-transmission half-reflection light-transmitting mirror is fixed on the side of the reflector away from the circuit board, the side of the reflector facing the half-transmission half-reflection light-transmitting mirror has a mirror surface, and a transparent ribbon for light transmission of the lamp beads is further arranged on the reflector.
[0007] In the application, the lamp beads are arranged in the closed space formed by the box, the circuit board and the mirror, the light emitted by the lamp beads can only be emitted from the transparent ribbon on the mirror, and the visual effect of the abyss is generated through the continuous reflection of the semi-transparent mirror and the mirror surface of the mirror and the infinite superposition of the image formed by the semi-transparent mirror.
[0008] By adopting the technical scheme, the types and quantities of parts are greatly simplified, the overall structure is simple, the required materials are less, and the manufacturing cost is low.
[0009] Optionally, the transparent ribbon on the mirror is formed by a laser engraving process, and the transparent ribbon on the mirror is arranged along the length direction of the box and the length trajectory direction of the transparent ribbon corresponds to the arrangement direction of the lamp beads.
[0010] By adopting the technical scheme, only one side of the mirror emits light, and there is no other light leakage. The transparent ribbon on the mirror is formed by a laser engraving process, different shapes can be designed according to needs, and the high precision of the laser engraving process can ensure the high precision of the abyss mirror pattern, which is more beautiful and does not need additional physical light emitters, thereby further reducing the cost.
[0011] Optionally, the box is in a rectangular frame structure surrounded by four sides, the circuit board and the mirror are in a long rectangular plate shape, the outer contour shape of the circuit board and the mirror matches the contour shape of the box, the circuit board and the mirror are respectively arranged on two sides of the box, and the four sides of the circuit board and the mirror are connected to the box to form a closed space, and the lamp beads are arranged in the closed space.
[0012] In order to improve the aesthetics of the whole abyss mirror structure, the rectangular shape expressed by the box, the circuit board and the mirror in the application is not a strictly defined rectangular shape in geometry, but a slim structure with slightly narrower width in the middle and wider width at both ends. This equivalent design concept does not deviate from the essence of the technical scheme. By adopting the technical scheme, the three are connected and assembled to have good sealing effect, light leakage is not easy, and the light guiding effect is good.
[0013] Optionally, the box and the mirror are made of plastic and are integrally formed.
[0014] By adopting the technical scheme, the production process is simplified, the production cost is reduced, the airtightness of the closed space in the box is improved, the light source leakage is reduced, and the assembly is more convenient.
[0015] Optionally, the plurality of lamp beads are arranged in a curve along the length direction of the circuit board, and the transparent ribbon is arranged in a curve along the length direction of the reflector.
[0016] The number of the transparent ribbons can be one, two or three, and the plurality of transparent ribbons are crossed at multiple positions to form a visual effect of mutual winding, thereby improving the aesthetic appearance. By using the above technical solution, a plurality of tunnel effects of different shapes can be easily designed, and more rich visual effects can be realized by changing the twist angle of the reflector. The abyss mirror structure in the application can be used for lamps with multiple different verification functions, and can also be used for other devices in daily life.
[0017] Optionally, the half-reflective half-transmissive mirror has a flange bent towards the side of the reflector around the periphery, and the outer side of the flange abuts against the reflecting surface of the reflector so that there is a gap between the mirror surface of the half-reflective half-transmissive mirror and the reflecting surface of the reflector.
[0018] By using the above technical solution, the direct contact between the mirror surface of the half-reflective half-transmissive mirror and the reflecting surface of the reflector is effectively avoided, the loss of light at the interface is reduced, the multiple reflection efficiency of the light is improved, and the visual effect of the abyss mirror structure is enhanced. At the same time, this structure also helps to reduce assembly errors and ensure the consistency and reliability of the product.
[0019] Optionally, the reflecting surface of the reflector is provided with a first connecting hole at each end position, the flange of the half-reflective half-transmissive mirror has a connecting portion, the connecting portion is provided with a second connecting hole for inserting a connecting screw, the first connecting hole and the second connecting hole are arranged one by one, and the half-reflective half-transmissive mirror is fixed to the reflector by the connecting screw inserted into the first connecting hole and the second connecting hole.
[0020] By using the above technical solution, the connection between the half-reflective half-transmissive mirror and the reflector is more stable and reliable, and the loosening or falling caused by vibration or other external factors is avoided. At the same time, this connection mode is convenient for disassembly and maintenance, and improves the use convenience and maintenance efficiency of the product.
[0021] Optionally, a plurality of connecting columns are fixedly arranged on the inner wall of the box in a circumferential direction, one end of the connecting column is fixedly connected to the side of the reflector facing the inside of the box, the other end of the connecting column is provided with a third connecting hole, the circuit board is provided with a fourth connecting hole corresponding to the third connecting hole, and the circuit board is fixed to the box by a fixing screw inserted into the third connecting hole and the fourth connecting hole.
[0022] By adopting the above technical solution, the connecting column can not only be used to install and connect the circuit board, but also act as a reinforcing rib, tightly fixing the circuit board, the housing and the reflector together, with sufficient structural strength and improving the service life of the entire structure.
[0023] Optionally, the inner wall of the housing is also provided with guide positioning pins, and the circuit board is provided with guide positioning holes corresponding to the guide positioning pins; the end of the guide positioning pin has a guide cone for guiding insertion into the corresponding guide positioning hole.
[0024] By adopting the above technical solution and utilizing the cooperation of guide positioning pins and guide positioning holes, the circuit board can be positioned and installed conveniently and quickly, thereby firmly and reliably installing the circuit board in the predetermined position of the enclosure.
[0025] Secondly, the lighting lamp provided in this application adopts the following technical solution:
[0026] A lighting fixture includes a base bracket and a rear cover pivotally connected to the base bracket. A front cover is fastened to the rear cover, and a transparent shield is provided on the front cover. A mounting cavity is formed between the rear cover, the front cover, and the transparent shield. A mounting plate facing the transparent shield is fixed in the mounting cavity. The aforementioned abyss mirror structure is laterally fixed to the middle of the mounting plate. A plurality of reflector bowl light sources are fixed on the mounting plate at the upper and lower sides of the abyss mirror structure.
[0027] By adopting the above technical solution, the overall structure of the lighting fixture is compact and aesthetically pleasing. The abyss mirror structure is integrated into the mounting plate and protected by the front and rear covers to prevent external interference while ensuring good light guiding effect. The reflector bowl light source enhances the lighting effect, and combined with the abyss mirror structure, creates a richer and more layered visual experience, further improving the functionality and reliability of the lighting fixture.
[0028] In summary, this application includes at least one of the following beneficial technical effects:
[0029] 1. This application greatly simplifies the types and number of components in the abyss mirror structure, resulting in a simple overall structure, fewer required materials, and lower manufacturing costs.
[0030] 2. In this application, the LED beads are enclosed and surrounded by the housing, reflector and circuit board, which makes it difficult for light to leak and has a good light guiding effect; moreover, there is no need for complicated side wall light guiding and shielding, and the whole is easy to assemble.
[0031] 3. The transparent ribbons on the reflector in this application are formed using laser engraving technology, which allows for different designs to be created as needed. Moreover, the high precision of laser engraving technology ensures that the abyss mirror pattern is presented with high accuracy, making it more aesthetically pleasing. Attached Figure Description
[0032] Figure 1 This is a three-dimensional structural diagram of the abyss mirror structure in this application.
[0033] Figure 2 This is a schematic diagram of the first exploded structure of the abyss mirror structure in this application.
[0034] Figure 3 This is a schematic diagram of the second explosive structure of the abyss mirror structure in this application.
[0035] Figure 4 This is a cross-sectional structural diagram of the abyss mirror structure in this application.
[0036] Figure 5 This is a three-dimensional structural diagram of the lighting lamp in this application.
[0037] Figure 6 This is a cross-sectional structural diagram of the lighting lamp in this application.
[0038] Figure 7 This is a schematic diagram of the exploded structure of the lighting lamp in this application.
[0039] In the picture:
[0040] 10. Housing; 11. Connecting post; 111. Third connecting hole; 12. Guide positioning pin; 121. Guide cone;
[0041] 20. Circuit board; 21. LED bead; 22. Fourth connecting hole; 23. Guide positioning hole;
[0042] 30. Reflector; 31. Transparent ribbon; 32. First connecting hole; 33. Reflective surface;
[0043] 40. Semi-transparent and semi-reflective mirror; 41. Flanged edge; 42. Connecting part; 421. Second connecting hole;
[0044] 50. Base support;
[0045] 60. Rear cover;
[0046] 70. Front hood;
[0047] 80. Transparent protective cover;
[0048] 90. Mounting plate;
[0049] 100. Installation cavity;
[0050] 110. Reflector bowl light source. Detailed Implementation
[0051] The following will be combined with the appendix Figure 1 -Appendix Figure 7The technical solutions of the embodiments of the present application are clearly and completely described, and the described embodiments are only possible technical implementations of the present application, not all possible implementations. Those skilled in the art can obtain other embodiments by combining the embodiments of the present application without creative labor, and these embodiments are also within the protection scope of the present application.
[0052] Embodiment 1
[0053] Referring to Figure 1 and Figure 2 , the abyss mirror structure in the embodiment includes a box body 10 in a strip shape, the box body 10 is in a rectangular frame structure formed by surrounding on four sides, a circuit board 20 is fixed on one side of the box body 10, a plurality of lamp beads 21 are arranged on the circuit board 20 along the length direction of the box body 10 and the lamp beads 21 are towards the inside of the box body 10, the lamp beads 21 can be LED lamp beads; a reflecting mirror 30 is fixed on the other side of the circuit board 20 opposite to the circuit board 20, the circuit board 20 and the reflecting mirror 30 are both in a strip-shaped rectangular plate shape, the outer contour shape of the circuit board 20 and the reflecting mirror 30 matches the contour shape of the box body 10, the circuit board 20 and the reflecting mirror 30 are respectively located on the two sides of the box body 10 and the circuit board 20 and the reflecting mirror 30 are connected on four sides with the box body 10 to jointly form a closed space, and the lamp beads 21 are located in the closed space. A semi-transparent and semi-reflective light-transmitting mirror 40 is fixed on the side of the reflecting mirror 30 away from the circuit board 20, the side of the reflecting mirror 30 towards the semi-transparent and semi-reflective light-transmitting mirror 40 has a reflecting mirror surface 33, and the reflecting mirror 30 is further provided with a transparent ribbon 31 for the lamp beads 21 to emit light to penetrate; the transparent ribbon 31 on the reflecting mirror 30 is formed by a laser engraving process, different shapes can be designed according to needs, and the high precision of the laser engraving process can ensure the high-precision presentation of the abyss mirror pattern, and the abyss mirror pattern is more beautiful.
[0054] Referring to Figure 2 and Figure 3 , the transparent ribbon 31 on the reflecting mirror 30 is arranged along the length direction of the box body 10 and the length trajectory direction of the transparent ribbon 31 corresponds to the arrangement direction of the lamp beads 21. Further, the plurality of lamp beads 21 are arranged in a curve interval along the length direction of the circuit board 20, and the transparent ribbon 31 extends in a curve along the length direction of the reflecting mirror 30. The number of the transparent ribbon 31 in the present application can be one, two or three, and a plurality of transparent ribbons 31 intersect at multiple positions to form a visual effect of mutual entanglement, thereby improving the aesthetic appearance.
[0055] Further, in order to improve the appearance of the whole abyss mirror structure, the rectangular shape expressed by the box 10, the circuit board 20 and the mirror 30 is not a strictly defined rectangular shape in geometry, but a slim structure with a slightly narrower middle width and a wider end width. The box 10 and the mirror 30 in the present application are made of plastic and are integrally formed. This simplifies the production process, reduces production costs, improves the airtightness of the enclosed space inside the box 10, reduces light leakage, and is more convenient to assemble.
[0056] Referring to Figure 3 and Figure 4 As shown, the half-mirror 40 has a folded edge 41 bent towards the mirror 30 on all sides, and the outer side of the folded edge 41 abuts against the mirror surface 33 of the mirror 30, so that there is a gap between the mirror surface of the half-mirror 40 and the mirror surface 33 of the mirror 30. The mirror surface 33 of the mirror 30 has a first connecting hole 32 at both ends, and the folded edge 41 of the half-mirror 40 has a connecting part 42 with a second connecting hole 421 for inserting a connecting screw, and the first connecting hole 32 and the second connecting hole 421 are arranged one by one, and the half-mirror 40 is fixed to the mirror 30 by connecting screws inserted into the first connecting hole 32 and the second connecting hole 421. There is a gap between the mirror surface of the half-mirror 40 and the mirror surface 33 of the mirror 30, which reduces the loss of light at the interface, improves the multiple reflection efficiency of the light, and enhances the visual effect of the abyss mirror structure. At the same time, this structure also helps to reduce assembly errors and ensure product consistency and reliability. Through the above connecting structure, it is convenient to assemble and disassemble and maintain, which improves the use convenience and maintenance efficiency of the product.
[0057] Referring to Figure 3 and Figure 4As shown, the inner wall of the box body 10 is fixedly provided with a plurality of connecting columns 11 spaced circumferentially along the box body 10, one end of the connecting column 11 is fixedly connected to the side of the reflector 30 facing the inside of the box body 10, the other end of the connecting column 11 is provided with a third connecting hole 111, the circuit board 20 is provided with a fourth connecting hole 22 corresponding to the third connecting hole 111, and the circuit board 20 is fixedly connected to the box body 10 by a fixing screw inserted into the third connecting hole 111 and the fourth connecting hole 22; the connecting column 11 can be used to install and connect the circuit board 20, and also can play the role of a reinforcing rib, tightly fixing the circuit board 20, the box body 10 and the reflector together, having sufficient structural strength and improving the service life of the whole structure. The inner wall of the box body 10 is further provided with a guide positioning pin 12, and the circuit board 20 is provided with a guide positioning hole 23 corresponding to the guide positioning pin 12; the end of the guide positioning pin 12 has a guide cone 121 for guiding insertion into the corresponding guide positioning hole 23, and the cooperation of the guide positioning pin 12 and the guide positioning hole 23 can conveniently and quickly realize the positioning installation of the circuit board 20, so as to firmly and reliably install the circuit board 20 at the predetermined position of the box body 10.
[0058] The implementation principle is as follows: in the present application, the box body 10 and the circuit boards 20 located on both sides of the box body 10 and the reflector 30 are provided, the lamp beads 21 are arranged in the closed space formed by the three, the light emitted by the plurality of lamp beads 21 can only be transmitted from the transparent ribbon 31 on the reflector 30, and based on the continuous recycling reflection of the half-transmission half-reflection light-transmitting mirror 40 and the reflector surface 33 of the reflector 30, the infinite superposition of images is formed by the half-transmission half-reflection light-transmitting mirror 40, and the visual effect of a deep abyss is generated.
[0059] The deep abyss mirror structure in the present application greatly simplifies the types and quantities of parts, has a simple overall structure, requires less material, and has low manufacturing cost. Meanwhile, the lamp beads 21 are enclosed and surrounded, are not easy to leak light, have good light guiding effect, and do not need complex side wall light guiding and shielding, and the whole is easy to assemble.
[0060] Embodiment 2
[0061] Referring to Figure 5 , Figure 6 and Figure 7 , the lighting lamp in the present embodiment comprises a base support 50 and a rear cover 60 pivotally connected to the base support 50, a front cover 70 is detachably mounted on the rear cover 60, the front cover 70 is provided with a transparent cover 80, the rear cover 60, the front cover 70 and the transparent cover 80 have an installation cavity 100, an installation plate 90 is fixedly arranged in the installation cavity 100 and faces the transparent cover 80, and the middle part of the installation plate 90 is transversely fixedly connected with the deep abyss mirror structure in the above-mentioned embodiment 1; a plurality of light-reflecting bowl light sources 110 are fixedly arranged on the installation plate 90 at the upper and lower sides of the deep abyss mirror structure.
[0062] The overall structure of the lighting lamp in the embodiment is compact and beautiful, the abyss mirror structure is integrated on the mounting plate 90, and is protected by the front cover 70 and the rear cover 60, so that external interference is prevented, and good light guiding effect is ensured. The setting of the reflector bowl light source 110 enhances the lighting effect, and in combination with the abyss mirror structure, a more rich and layered visual experience is created, and the functionality and reliability of the lighting lamp are further improved.
[0063] The embodiments of the specific implementation are the preferred embodiments of the application, and are not intended to limit the protection scope of the application, wherein the same parts are denoted by the same reference numerals. Therefore, any equivalent changes made according to the structure, shape and principle of the application should be covered within the protection scope of the application.
Claims
1. A deep trench mirror structure, characterized by, The application relates to a box (10) in a strip shape, one side of the box (10) is fixedly provided with a circuit board (20), a plurality of lamp beads (21) are arranged on the circuit board (20) along the length direction of the box (10) and the lamp beads (21) are directed towards the inside of the box (10); the other side of the box (10) relative to the circuit board (20) is fixedly provided with a reflector (30), one side of the reflector (30) away from the circuit board (20) is fixedly provided with a semi-transparent and semi-reflective light-transmitting mirror (40), one side of the reflector (30) directed towards the semi-transparent and semi-reflective light-transmitting mirror (40) is provided with a reflecting mirror surface (33), and the reflector (30) is further provided with transparent ribbons (31) for the light transmission of the lamp beads (21).
2. The deep-abyss mirror structure according to claim 1, characterized in that The transparent ribbons (31) on the reflector (30) are formed by laser engraving; the transparent ribbons (31) on the reflector (30) are arranged along the length direction of the box (10) and the length trajectory direction of the transparent ribbons (31) corresponds to the arrangement direction of the lamp beads (21).
3. The deep-reef mirror structure of claim 1 or 2, wherein, The box (10) is in a rectangular frame structure formed by surrounding the four sides, the circuit board (20) and the reflector (30) are both in a strip-shaped rectangular plate shape, the outer contour shape of the circuit board (20) and the reflector (30) matches the contour shape of the box (10), the circuit board (20) and the reflector (30) are respectively arranged on the two sides of the box (10) and the four sides of the circuit board (20) and the reflector (30) are connected with the box (10) to jointly form a closed space, and the lamp beads (21) are arranged in the closed space.
4. The deep-abyss mirror structure according to claim 3, characterized in that The box (10) and the reflector (30) are both made of plastic and are integrally formed.
5. The deep-abyss mirror structure according to claim 3, characterized in that, The plurality of lamp beads (21) are arranged in a curve interval along the length direction of the circuit board (20), and the transparent ribbons (31) extend in a curve along the length direction of the reflector (30).
6. The deep-abyss mirror structure according to claim 1, characterized in that The semi-transparent and semi-reflective light-transmitting mirror (40) is provided with a bent edge (41) bent towards the side of the reflector (30) around the four sides, the outer side of the bent edge (41) abuts against the reflecting mirror surface (33) of the reflector (30) so that there is a gap between the mirror surface of the semi-transparent and semi-reflective light-transmitting mirror (40) and the reflecting mirror surface (33) of the reflector (30).
7. The deep-abyss mirror structure according to claim 6, characterized in that First connecting holes (32) are arranged on the reflecting mirror surface (33) of the reflector (30) at both end positions, the bent edge (41) of the semi-transparent and semi-reflective light-transmitting mirror (40) is provided with a connecting part (42), second connecting holes (421) for inserting and connecting screws are arranged on the connecting part (42), the first connecting holes (32) and the second connecting holes (421) are arranged in one-to-one correspondence, and the semi-transparent and semi-reflective light-transmitting mirror (40) is fixedly connected to the reflector (30) through the connecting screws inserted into the first connecting holes (32) and the second connecting holes (421).
8. The deep- sea mirror structure of claim 1, wherein, The inner wall of the box (10) is fixed with a plurality of connecting columns (11) at intervals in the circumferential direction of the box (10), one end of the connecting column (11) is fixed on the side of the reflecting mirror (30) facing the inside of the box (10), the other end of the connecting column (11) is provided with a third connecting hole (111), the circuit board (20) is provided with a fourth connecting hole (22) corresponding to the third connecting hole (111), and the circuit board (20) is fixed on the box (10) by inserting a fixing screw in the third connecting hole (111) and the fourth connecting hole (22).
9. The deep-abyss mirror structure according to claim 8, characterized in that The inner wall of the box (10) is also provided with a guide positioning pin (12), and the circuit board (20) is provided with a guide positioning hole (23) corresponding to the guide positioning pin (12); the end of the guide positioning pin (12) has a guide cone (121) for guiding insertion into the corresponding guide positioning hole (23).
10. An illuminating lamp characterized by comprising: The rear cover (60) is pivotally connected to the base support (50), the front cover (70) is installed on the rear cover (60), the transparent cover (80) is arranged on the front cover (70), the rear cover (60), the front cover (70) and the transparent cover (80) have an installation cavity (100), the installation plate (90) is fixed in the installation cavity (100) and faces the transparent cover (80), the abyss mirror structure of any one of claims 1 to 9 is fixed on the middle part of the installation plate (90), and a plurality of reflecting bowl light sources (110) are fixed on the installation plate (90) at positions above and below the abyss mirror structure.