Continuously-installed floor tile lamp structure

The continuous installation structure for tile lamps addresses the issue of costly and aesthetically disruptive connections by allowing direct, seamless integration of light units, enhancing both cost-effectiveness and visual harmony.

CN223105923UActive Publication Date: 2025-07-15JIANGSU PINZHENG PHOTOELECTRIC TECH CO LTD
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Patent Information

Application Number
CN202422185584.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-05
Publication Date
2025-07-15
Estimated Expiration
2034-09-05

AI Technical Summary

Technical Problem

Existing floor tiles need to be spliced during continuous paving, resulting in increased costs and discontinuous lighting, affecting the aesthetics.

Method used

A continuously installed floor tile lamp structure is designed, including an embedded wire trough and a lamp body assembly. The lamp body assembly is composed of a lamp body, a light source assembly, a first colloid, a second colloid and a glass plate. Continuous splicing is achieved by directly embedding the embedded wire trough to avoid breaking the belt in the middle.

Benefits of technology

The direct continuous splicing of floor tiles is realized, cost saving, light integration and aesthetics are improved, and the phenomenon of strip breakage is avoided.

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Abstract

The utility model relates to a continuously installed floor tile lamp structure which comprises a pre-embedded wire groove, the pre-embedded wire groove is of a shell structure with an opening in the upper end, and one or more sets of lamp body assemblies are sequentially embedded in the pre-embedded wire groove in the length direction. The lamp body assembly comprises a lamp body, a light source assembly, a first colloid, a second colloid and a glass plate; the lamp body is of a hollow structure with an opening in the upper end, the light source assembly is installed on the end face of the bottom in the lamp body, the shading plates are arranged on the two sides of the upper end of the lamp body, the light projection opening is formed in the upper end of the lamp body, the first colloid is arranged at the upper end of the light projection opening, and the second colloid is arranged on the outer side of the first colloid in a surrounding mode. The upper end of the first colloid and the upper end of the second colloid are covered with glass plates. According to the continuously-installed floor tile lamp structure, direct and continuous splicing installation of the floor tile lamp structure can be achieved, cost is saved to a great extent, the phenomenon of halfway belt breakage is avoided, the integrality of overall irradiation light is improved, and the use attractiveness is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of floor lamps, in particular to a structure of floor lamps for continuous installation. Background Technique

[0002] With the continuous progress of society, the lighting industry has developed rapidly. In the lighting industry, floor lamps are an important component. Currently, most of the floor lamps on the market are 1 meter in specification. When continuous paving is required, the floor lamps need to be spliced together. The splicing of floor lamps directly requires other components for connection, which will undoubtedly increase the cost significantly. Moreover, the phenomenon of broken belts usually occurs at the connection, resulting in the discontinuity of the irradiated light during use and seriously affecting the overall aesthetic appearance of use. Summary of the Invention

[0003] The technical problem to be solved by the utility model is: in order to solve the problems existing in the above background technique, a structure of floor lamps for continuous installation is provided, which can realize its direct continuous splicing and installation, save costs to a great extent, avoid the occurrence of broken belts in the middle, improve the integrity of the overall irradiated light, improve the aesthetic appearance of use, and is convenient for wide promotion and use.

[0004] The technical solution adopted by the utility model to solve its technical problems is: a structure of floor lamps for continuous installation, including a pre-embedded wire groove, the pre-embedded wire groove is in a shell structure with an open upper end, and a group or multiple groups of lamp body components are sequentially embedded in the pre-embedded wire groove along the length direction; the lamp body component includes a lamp body, a light source component, a first colloid, a second colloid and a glass plate; the lamp body is in a hollow structure with an open upper end, the light source component is installed on the bottom end face inside the lamp body, light-shielding plates are arranged on both sides of the upper end of the lamp body, a light projection opening is opened at the upper end of the lamp body, the first colloid is arranged at the upper end of the light projection opening, the second colloid is arranged outside the first colloid in a surrounding manner, and the glass plate covers the upper ends of the first colloid and the second colloid.

[0005] Further defined, in the above technical solution, the light source component includes a PCB board and a light source, the PCB board is fixedly installed on the bottom end face inside the lamp body, and the light sources are arranged at intervals along the length direction of the PCB board.

[0006] Further defined, in the above technical solution, the upper end face of the glass plate is flush with the upper edge of the light-shielding plate; the overall aesthetic appearance can be improved.

[0007] Further defined, in the above technical solution, the light-shielding plate and the lamp body are of an integral structure; the strength of the overall lamp body can be improved.

[0008] Further defined, in the above technical solution, overhead layers are provided on both sides of the lower part inside the embedded wire trough, and a wire arranging trough is formed between the overhead layers; such a design can prevent the cables from contacting the bottom of the embedded wire trough and improve the moisture-proof effect of the overall cables.

[0009] Further defined, in the above technical solution, the lower end of the lamp body is installed on the upper end surface of the overhead layer.

[0010] The beneficial effects of the present utility model are as follows: A continuously installed floor tile lamp structure proposed by the present utility model can achieve direct continuous splicing and installation, greatly saving costs, avoiding the occurrence of mid-course breakage, improving the integrity of the overall irradiation light, enhancing the aesthetic appearance of use, and facilitating wide promotion and use. BRIEF DESCRIPTION OF THE DRAWINGS

[0011] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings described below are only some embodiments recorded in the present application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0012] Figure 1 is a structural schematic diagram of the present utility model;

[0013] Figure 2 is a structural schematic diagram of the lamp body assembly and the embedded wire trough;

[0014] Figure 3 is a structural schematic diagram of the lamp body assembly;

[0015] Figure 4 is a side structural schematic diagram of the lamp body assembly;

[0016] Figure 5 is Figure 4 an exploded structural schematic diagram of.

[0017] The reference numerals in the drawings are: 1, embedded wire trough; 2, lamp body assembly; 3, lamp body; 4, light source assembly; 5, first colloid; 6, second colloid; 7, glass plate; 8, light-shielding plate; 9, light projection opening; 10, PCB board; 11, light source; 12, overhead layer; 13, wire arranging trough. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0018] In order to make the technical problems, technical solutions and beneficial effects solved by the present utility model clearer, the following will further elaborate on the present utility model in conjunction with the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the present utility model.

[0019] In this application, the light source assembly 4 is purchased directly from the market according to the specific model and then installed and used after matching. After the lamp body assembly 2 is embedded and installed, a sealing and fixing glue is filled in the gap between the light shielding plate 8 and the embedded wire groove 1, which can further improve the installation strength of the floor tile lamp.

[0020] In this application, the first colloid 5 is provided to improve the sealing performance of the light projection port 9. By providing the second colloid 6, on the one hand, the overall sealing performance can be further improved, and on the other hand, the fixing strength of the glass plate 7 can be improved.

[0021] See Figures 1-5 Shown is a structure of a continuously installed floor tile lamp, including an embedded wire groove 1. The embedded wire groove 1 has a housing structure with an open upper end. One or more groups of lamp body assemblies 2 are sequentially embedded in the embedded wire groove 1 along the length direction; the lamp body assembly 2 includes a lamp body 3, a light source assembly 4, a first colloid 5, a second colloid 6, and a glass plate 7; the lamp body 3 has a hollow structure with an open upper end. The light source assembly 4 is installed on the bottom end face inside the lamp body 3. Light shielding plates 8 are provided on both sides of the upper end of the lamp body 3. A light projection port 9 is opened at the upper end of the lamp body 3. The first colloid 5 is provided at the upper end of the light projection port 9. The second colloid 6 is surrounded outside the first colloid 5. The upper end of the first colloid 5 and the upper end of the second colloid 6 cover the glass plate 7.

[0022] Among them, the light source assembly 4 includes a PCB board 10 and a light source 11. The PCB board 10 is fixedly installed on the bottom end face inside the lamp body 3. The light sources 11 are arranged at intervals along the length direction on the PCB board 10. The upper end face of the glass plate 7 is flush with the upper edge of the light shielding plate 8. The light shielding plate 8 and the lamp body 3 are of an integral structure. Overhead layers 12 are provided on both sides of the lower part inside the embedded wire groove 1. A wire arranging groove 13 is formed between the overhead layers 12. The lower end of the lamp body 3 is installed on the upper end face of the overhead layer 12.

[0023] The working principle of the continuously installed floor tile lamp structure is as follows:

[0024] First, the operator can embed and install the embedded wire groove 1 in the opening groove, and then directly insert the installed lamp body assembly 2 into the embedded wire groove 1. During the splicing process, multiple lamp body assemblies 2 are sequentially inserted and spread out, so that the sequential paving of the overall floor tile lamp can be realized, avoiding the traditional method of splicing and then installing, reducing costs, and improving the overall projection integrity effect.

[0025] The above is only the preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its inventive concept, makes equivalent replacements or changes, and should be covered by the protection scope of the present invention.

Claims

1. A continuously installed floor tile lamp structure, characterized in that: It includes a pre-embedded wire groove. The pre-embedded wire groove has a housing structure with an open upper end. One or more groups of lamp body components are sequentially embedded along the length direction inside the pre-embedded wire groove. The lamp body component includes a lamp body, a light source component, a first colloid, a second colloid, and a glass plate. The lamp body has a hollow structure with an open upper end. The light source component is installed on the bottom end face inside the lamp body. Light-shielding plates are provided on both sides of the upper end of the lamp body. A light projection opening is provided at the upper end of the lamp body. The first colloid is provided at the upper end of the light projection opening. The second colloid is arranged to surround the outside of the first colloid. The glass plate covers the upper ends of the first colloid and the second colloid.

2. The structure of a continuously installed floor tile light according to claim 1, wherein: The light source component includes a PCB board and a light source. The PCB board is fixedly installed on the bottom end face inside the lamp body. The light sources are arranged at intervals along the length direction on the PCB board.

3. A continuously installed floor tile lamp structure according to claim 1, characterized in that: The upper end face of the glass plate is flush with the upper edge of the light-shielding plate.

4. A continuously installed floor tile light structure according to claim 1, characterized in that: The light-shielding plate and the lamp body are of an integral structure.

5. A continuously installed floor tile lamp structure according to claim 1, characterized in that: Overhead layers are provided on both sides of the lower part inside the pre-embedded wire groove. A wire row groove is formed between the overhead layers.

6. A continuous installation floor tile lamp structure according to claim 5, characterized in that: The lower end of the lamp body is installed on the upper end face of the overhead layer.