A fan lamp

By placing the turbine component within the installation space and employing a concealed design in the fan light, the issue of the fan light's aesthetic appearance is solved, achieving the desired airflow effect while maintaining the light's sleek appearance.

CN224579502UActive Publication Date: 2026-07-31李仁珍
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
李仁珍
Filing Date
2025-05-28
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

Existing fan lights have externally mounted blades or impellers, which affects the aesthetic appearance of the light fixture and limits the style of decoration.

Method used

The turbine assembly is housed within the installation space in a concealed design, and air is directed from the inlet to the outlet via a guide slope. The outlet is circumferentially positioned to ensure that airflow is blowing out from all four sides of the bottom of the fan light.

Benefits of technology

This design achieves both aesthetic appeal and effective airflow, avoiding the problem of exposed fan blades affecting the overall appearance.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model proposes a fan light, including a top plate assembly and a bottom plate assembly. An air inlet is provided on the top plate assembly, and an air outlet is provided on the bottom plate assembly. An installation space is formed between the top plate assembly and the bottom plate assembly. The air inlet and the air outlet are respectively connected to the installation space. An installation position is formed in the installation space, and a turbine assembly is installed at the installation position. The turbine assembly includes blades, which are located between the air inlet and the air outlet. The blades are used to direct the airflow from the air inlet to the air outlet, and a guide slope is formed at the installation position. The guide slope extends downwards from one end near the turbine assembly to one end near the air outlet. By placing the turbine assembly within the installation space and employing a concealed design, the fan light achieves the desired airflow while maintaining an aesthetically pleasing appearance, avoiding the problem of exposed blades affecting the appearance.
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Description

Technical Field

[0001] This utility model relates to the field of fan light technology, and specifically to a fan light. Background Technology

[0002] Existing fan lights require fan blades to be installed on the light body so that the rotating blades can drive the surrounding airflow and create a breeze for the user; or a fan wheel can be installed on the outside of the light body. The placement of the fan blades or the external placement of the fan wheel will affect the overall appearance of the light body, resulting in an unsightly appearance, which in turn will affect the overall decoration style of the user's interior. Utility Model Content

[0003] This utility model solves one of the problems existing in the prior art to a certain extent. Therefore, one purpose of this utility model is to provide a fan light with an aesthetically pleasing appearance.

[0004] The above objective is achieved through the following technical solution: A fan light includes a top plate assembly and a bottom plate assembly. An air inlet is provided on the top plate assembly, and an air outlet is provided on the bottom plate assembly. An installation space is formed between the top plate assembly and the bottom plate assembly. The air inlet and the air outlet are respectively connected to the installation space. An installation position is formed in the installation space, and a turbine assembly is installed at the installation position. The turbine assembly includes blades positioned between the air inlet and the air outlet. The blades are used to direct airflow from the air inlet to the air outlet and form a guide slope at the installation position. The guide slope extends downwards from one end near the turbine assembly to one end near the air outlet.

[0005] As a further improvement of this utility model, the top plate assembly includes a top plate body and a ceiling plate. An installation opening is formed at the top plate body, a locking part is provided at the installation opening, and a locking engagement part is provided at the ceiling plate. The ceiling plate is detachably installed at the installation opening by connecting the locking part and the locking engagement part.

[0006] As a further improvement of this utility model, a first lighting component is provided at the base plate assembly, a lead wire hole is provided on the top plate body, a lead wire member is provided in the installation space, a lead wire cavity is formed in the lead wire member, one end of the lead wire cavity is connected to the lead wire hole, and the other end is connected to the first lighting component. As a further improvement of this utility model, a first inclined slope is formed on the top plate body. The first inclined slope is inclined downward from one end near the mounting opening to the end away from the mounting opening. A wire guide is provided on the ceiling plate. When the ceiling plate is installed on the top plate body, the wire guide is above the first inclined slope, and a wire passage gap is formed between the wire hole and the first inclined slope.

[0007] As a further improvement of this utility model, a wire hole is provided on the wire component, and the wire hole is located at one end of the wire component near the wire passage gap to connect the wire hole with the wire passage gap. A wire passage hole is provided on the ceiling plate, and a wire passage channel is formed between the wire passage hole and the wire hole of the wire component.

[0008] As a further improvement of this utility model, a second inclined surface is formed at the ceiling plate, the wire component is disposed at the second inclined surface, and a wire inclined surface is formed on the wire component. The wire inclined surface is inclined downward from the end away from the wire hole to the end close to the wire hole.

[0009] As a further improvement of this utility model, the conductor, the lead hole and the through hole are on the same plane.

[0010] As a further improvement of this utility model, two mounting positions are provided in the mounting space, namely a first mounting position and a second mounting position; and two turbine assemblies are provided in the mounting space, namely a first turbine assembly and a second turbine assembly, wherein the first turbine assembly is installed at the first mounting position and the second turbine assembly is installed at the second mounting position.

[0011] As a further improvement of this utility model, a partition is provided between the first mounting position and the second mounting position, the partition separating the first turbine assembly and the second turbine assembly.

[0012] As a further improvement of this utility model, a first mounting edge is formed by extending outward from the periphery of the top plate assembly, and a second mounting edge is formed at the periphery of the bottom plate assembly. The first mounting edge and the second mounting edge are connected to connect the top plate assembly and the bottom plate assembly together.

[0013] As a further improvement of this utility model, it also includes a second lighting component, which is mounted on the top plate component and on the top plate component near the first mounting edge.

[0014] As a further improvement of this utility model, it also includes a connecting component, which is installed between the top plate assembly and the bottom plate assembly, and the top plate assembly and the bottom plate assembly are connected through the connecting component.

[0015] As a further improvement of this utility model, the connecting assembly includes a first mounting frame and a second mounting frame, the top plate assembly is connected to the first mounting frame, the bottom plate assembly is connected to the second mounting frame, and a light guide plate is provided between the first mounting frame and the second mounting frame.

[0016] Compared with the prior art, the present invention has at least the following beneficial effects: 1. This utility model proposes a fan light in which a turbine assembly is set in the installation space. The turbine assembly adopts a concealed design, so that the fan light can blow air while maintaining an aesthetically pleasing appearance, avoiding the problem of exposed fan blades affecting the appearance.

[0017] 2. The air outlet is circumferentially arranged on the base plate assembly, and the blades are also circumferentially arranged in the installation space, so that air can be blown out at any air outlet. Only one turbine assembly is set, but it ensures that air is blown out from all four sides of the bottom of the fan light, and can blow towards various directions of the area under the fan light. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the structure of a fan light in Embodiment 1; Figure 2 This is another structural schematic diagram of a fan light in Embodiment 1; Figure 3 This is another structural schematic diagram of a fan light in Embodiment 1; Figure 4 This is a schematic diagram of the ceiling-mounted plate in Embodiment 1; Figure 5 yes Figure 4 Enlarged view of point A in the middle; Figure 6-1 This is another structural schematic diagram of the ceiling plate in Embodiment 1; Figure 6-2 yes Figure 6-1 Enlarged view of point D in the middle; Figure 7 This is another structural schematic diagram of a fan light in Embodiment 1 (ceiling plate omitted here); Figure 8 yes Figure 7 Enlarged view of point B in the middle; Figure 9 This is another structural schematic diagram of a fan light in Embodiment 1; Figure 10 yes Figure 9 Enlarged view of point C in the middle; Figure 11 This is a cross-sectional view of a fan light in Embodiment 1; Figure 12 This is an exploded view of a fan light in Embodiment 1; Figure 13 This is a schematic diagram of the structure of a fan light in Embodiment 2; Figure 14 This is a schematic diagram of the ceiling-mounted plate in Embodiment 2; Figure 15 This is another structural schematic diagram of the ceiling-mounted plate in Embodiment 2. Figure 16 This is a structural schematic diagram of the base plate assembly in Embodiment 2; Figure 17 This is an exploded view of a fan light in Embodiment 2; Figure 18 This is a cross-sectional view of a fan light in Embodiment 2; Figure 19 yes Figure 18 Enlarged view of point E in the middle. Detailed Implementation

[0019] The following embodiments illustrate the present invention, but the present invention is not limited to these embodiments. Modifications to the specific implementation of the present invention or equivalent substitutions for some technical features, without departing from the spirit of the present invention, should all be covered within the scope of the technical solution claimed by the present invention.

[0020] Example 1: like Figure 1-12 A fan light 100 includes a top plate assembly 2 and a bottom plate assembly 3. An air inlet 21 is provided on the top plate assembly 2, and an air outlet 31 is provided on the bottom plate assembly 3. An installation space 4 is formed between the top plate assembly 2 and the bottom plate assembly 3. The air inlet 21 and the air outlet 31 are respectively connected to the installation space 4. An installation position 41 is formed in the installation space 4. A turbine assembly 5 is installed at the installation position 41. The turbine assembly 5 includes blades 51, which are located between the air inlet 21 and the air outlet 31. The blades 51 are used to direct the airflow from the air inlet 21 to the air outlet 31, and a guide slope 412 is formed at the installation position 41. The guide slope 412 extends downwards from one end near the turbine assembly to one end near the air outlet.

[0021] This utility model proposes a fan light in which a turbine assembly 5 is set in the installation space 4. The turbine assembly 5 adopts a concealed design, so that the fan light can blow air while maintaining an aesthetically pleasing appearance, avoiding the problem of exposed fan blades affecting the appearance.

[0022] The air outlet 31 is circumferentially arranged on the base plate assembly 3, and the blades 51 are also circumferentially arranged in the installation space 4, so that air can be blown out from any air outlet 31, ensuring that air is blown out from all sides of the bottom of the fan light, and can blow towards various directions of the person sitting under the fan light.

[0023] In this embodiment, the base plate assembly 3 has a square cross-section, and the air outlet 31 includes a first air outlet 311, a second air outlet 312, a third air outlet 313, and a fourth air outlet 314 at the base plate assembly. The first air outlet 311, the second air outlet 312, the third air outlet 313, and the fourth air outlet 314 are connected to form a square air outlet.

[0024] An air inlet channel is formed between the air inlet 21 and the turbine assembly 5, and an air outlet channel is formed between the turbine assembly 5 and the air outlet 31. Air can enter through the air inlet channel and flow out through the air outlet 31. Furthermore, a guide slope 412 is formed at the mounting position 41. The guide slope 412 extends downwards from one end near the turbine assembly to one end near the air outlet to guide the airflow towards the air outlet.

[0025] In this embodiment, the turbine assembly 5 includes a turbine body and a motor. The motor is connected to the turbine body to drive the wind turbine body to rotate.

[0026] In this embodiment, a mounting position 41 is provided in the mounting space 4, and a turbine assembly 5 is provided at the mounting position 41. That is, in this embodiment, only one turbine assembly is provided in the mounting space 4.

[0027] The ceiling panel assembly 2 includes a ceiling panel body 22 and a ceiling plate 23. An installation opening 221 is formed at the ceiling panel body 22. The ceiling plate 23 is detachably installed at the installation opening 221. A locking part 222 is provided at the installation opening 221, and a locking engagement part 232 is provided at the ceiling plate 23. The locking part 222 and the locking engagement part 232 are connected to detachably install the ceiling plate at the installation opening.

[0028] The ceiling plate 23 is used to connect to the top wall. The ceiling plate 23 is detachably connected to the top panel body 22, which facilitates the separation of the top panel body 22 from the ceiling plate 23. When the fan light is connected to the top wall through the ceiling plate 23 and needs to be repaired due to damage, it is convenient to remove the top panel body 22 and the base plate assembly 3 from the ceiling plate 23 for inspection and maintenance.

[0029] In this embodiment, the air inlet 21 is located at the ceiling plate 23.

[0030] In this embodiment, the ceiling plate 23 has a circular cross-section. The air inlet 21 is circumferentially disposed on the ceiling plate 23, forming a circular air inlet 21.

[0031] In this embodiment, the engaging part of the ceiling plate engages with the engaging part at the mounting port 221 by means of rotational engagement.

[0032] In this embodiment, the locking part 222 is provided on the outer side of the mounting opening 221 of the top plate body 22. The locking part 222 includes a first abutting wall 2221 and a first transverse wall 2222. A first receiving space 2223 with an opening on one side is formed between the first abutting wall 2221 and the first transverse wall 2222. The cross-section of the locking part 222 is “┌” shaped. In this embodiment, a locking engagement portion 232 with one end opening is formed inside the ceiling plate 23. The locking engagement portion 232 includes a second abutting wall 2321 and a second transverse wall 2322. A second receiving space 2323 with one side opening is formed between the second abutting wall 2321 and the second transverse wall 2322. The cross-section of the locking engagement portion 232 is "└" shaped.

[0033] When the top plate body 22 is installed with the ceiling suction plate 23, the first transverse wall 2222 of the engaging part 222 extends into the second receiving space 2323 near the opening of the second receiving space 2323 by rotating the top plate body 22. When the first abutting wall 2221 and the second abutting wall 2321 abut against each other, the further rotation of the top plate body 22 is restricted. The first transverse wall 2222 and the second transverse wall 2322 support each other, so that the top plate body 22 and the ceiling suction plate 23 are connected and installed together.

[0034] The base plate assembly 3 is provided with a first lighting component 36. The top plate body 22 is provided with a lead wire hole 225. A lead wire member 49 is provided within the mounting space 4, and a lead wire cavity 410 is formed within the lead wire member 49. One end of the lead wire cavity 410 communicates with the lead wire hole 225, and the other end communicates with the first lighting component 36. The lead wire cavity 410 is formed in the mounting space 4, and an electric wire extends through the lead wire hole and the lead wire cavity 410 into the first lighting component, communicating with the first lighting component 36 to supply power.

[0035] In this embodiment, the lead wire extends from top to bottom and is formed in a vertical direction.

[0036] A separate lead wire cavity 410 is formed in the installation space 4 to prevent wind or airflow from affecting the internal wires.

[0037] A first inclined surface 224 is formed at the top plate body 22. The first inclined surface 224 is inclined downward from one end near the mounting opening 221 to the end away from the mounting opening 221. A wire guide 233 is provided at the ceiling plate 23. When the ceiling plate 23 is installed on the top plate body 22, the wire guide is above the first inclined surface, and a wire passage gap 235 is formed between the wire guide and the first inclined surface 224.

[0038] A wire hole 234 is provided on the wire component 233. The wire hole 234 is located at one end of the wire component 233 near the wire passage gap 235 to connect the wire component 234 with the wire passage gap 235. A wire passage hole is provided on the ceiling plate 23, and a wire passage channel is formed between the wire passage hole and the wire hole 234 of the wire component 233.

[0039] In this embodiment, when the ceiling plate 23 is installed on the top plate body 22, the wire member 233 is above the first inclined surface 224, and a wire passage gap 235 is formed between the wire hole 234 and the first inclined surface 224.

[0040] The wire can be inserted into the fan light through the wire hole 234 on the guide, through the wire gap 235, and through the lead hole 225.

[0041] A second inclined surface 231 is formed at the ceiling plate 23. In this embodiment, the second inclined surface 231 is formed by extending downward and outward at the periphery of the ceiling plate 23. The wire guide is disposed at the second inclined surface 231, and a wire guide inclined surface 2330 is formed on the wire guide 233. The wire guide inclined surface 2330 is inclined downward from the end away from the wire guide hole 234 to the end near the wire guide hole 234. Figure 6-1, Figure 6-2 The inclined surface of the conductor can guide the passing wires in the direction of the conductor hole 234.

[0042] In this embodiment, the second inclined surface 231 is inclined downward from the end near the ceiling plate 23 to the end away from the ceiling plate 23.

[0043] In this embodiment, the air inlet 21 is located at the second inclined slope 231, and the ceiling plate 23 is used to connect with the top wall. The air inlet 21 is located at the second inclined slope 231, which can avoid the situation where the air inlet 21 is blocked due to the installation and connection of the ceiling plate 23 with the wall.

[0044] Furthermore, the wire component 233 is also located at the second inclined surface 231, which can also prevent the wire component 233 from being blocked due to the installation and connection of the ceiling plate 23 to the wall, thus avoiding the inconvenience of wiring.

[0045] In some embodiments, the conductor 234, the lead hole 225, and the through hole 236 are on the same plane, that is, on the same vertical cross-section plane. The wires inside the fan light can extend through the through hole 236, pass through the lead hole of the conductor, and enter the lead hole 225. Being on the same plane shortens the wire routing path and avoids wire tangling.

[0046] It also includes a connecting component 8, which is installed between the top plate assembly 2 and the bottom plate assembly 3, and the top plate assembly 2 and the bottom plate assembly 3 are connected by the connecting component 8.

[0047] The connecting component 8 includes a first mounting frame 81 and a second mounting frame 83. The top plate body 22 is connected to the first mounting frame 81, and the bottom plate component 3 is connected to the second mounting frame 83. A light guide plate 82 is provided between the first mounting frame and the second mounting frame.

[0048] In this embodiment, the base plate assembly 3 includes a base plate body and a decorative panel 30, wherein the decorative panel is installed around the periphery of the base plate body.

[0049] Example 2: The difference between this embodiment and Embodiment 1 is that: Figure 13-19In this embodiment, two mounting positions 41 are provided in the mounting space, namely a first mounting position 413 and a second mounting position 414; and two turbine assemblies 5 are provided in the mounting space 4, namely a first turbine assembly 52 and a second turbine assembly 53. The first turbine assembly is installed at the first mounting position 413, and the second turbine assembly is installed at the second mounting position 414. A partition 41 is provided between the first mounting position 413 and the second mounting position 414, and the partition is used to separate the first turbine assembly and the second turbine assembly 5.

[0050] In this embodiment, the fan light is rectangular in shape, meaning the base plate assembly is rectangular. The bottom of the top plate assembly is also rectangular.

[0051] By setting two mounting positions 41 and two turbine assemblies in the installation space, airflow can be ensured from both air outlets of the fan light even when the overall size of the fan light is large, and the airflow volume can be guaranteed. This avoids the situation where only one turbine assembly is installed in the installation space when the fan light is large, resulting in insufficient airflow and failure to meet the user's airflow requirements.

[0052] In this embodiment, the first mounting position 413 protrudes upward to form an air guide slope 412; the second mounting position 414 protrudes upward to form an air guide slope 412.

[0053] The baffle 415 can prevent the airflow from interfering with each other when the first turbine assembly and the second turbine assembly are working simultaneously, thus avoiding mutual interference between the outlet airflow.

[0054] In this embodiment, the ceiling plate is elliptical or nearly elliptical. Alternatively, in some embodiments, the ceiling plate may be rectangular.

[0055] In this embodiment, the engaging part 222 and the engaging mating part 232 are connected by an insertion engaging method.

[0056] In this embodiment, the locking part 222 is provided on the outer side of the mounting opening 221 of the top plate body 22. The locking part 222 includes a first abutting wall 2221 and a first transverse wall 2222. A first receiving space 2223 with an opening on one side is formed between the first abutting wall 2221 and the first transverse wall 2222. The cross-section of the locking part 222 is “┌” shaped. In this embodiment, a locking engagement portion 232 with one end open is formed inside the ceiling plate 23. The locking engagement portion 232 includes a second extension wall 2324 extending downward from the ceiling plate, and a second insert arm 2325 is provided at the second extension wall.

[0057] When the ceiling plate 23 is installed with the top plate body 22, the second insert arm extends into the first accommodating space through the opening, and when the second insert arm abuts against the first abutting wall, it restricts further movement of the second insert arm in the first accommodating space. The top plate body 22 and the ceiling plate 23 are connected and installed together.

[0058] In this embodiment, a first mounting edge 28 is formed extending outward from the periphery of the top plate assembly 2, and a second mounting edge 38 is formed at the periphery of the bottom plate assembly 3. The first mounting edge 28 and the second mounting edge 38 are connected to connect the top plate assembly 2 and the bottom plate assembly 3 together.

[0059] In some embodiments, the first mounting edge 28 and the second mounting edge 38 are engaged and connected.

[0060] In some embodiments, a first mounting hole is provided on the first mounting edge and a second mounting hole is provided on the second mounting edge. The first mounting edge and the second mounting edge are connected by passing a screw through the first mounting hole and the second mounting hole.

[0061] It also includes a second lighting component 29, which is mounted on the top plate component 2 and is located on the top plate component 2 near the first mounting edge.

[0062] The above preferred embodiments should be regarded as illustrative examples of the embodiments of the present application. Any technical deductions, substitutions, improvements, etc. that are similar to or based on the present application should be considered within the scope of protection of this patent.

Claims

1. A fan light, characterized in that The device includes a top plate assembly and a bottom plate assembly. The top plate assembly has an air inlet, and the bottom plate assembly has an air outlet. An installation space is formed between the top plate assembly and the bottom plate assembly. The air inlet and the air outlet are respectively connected to the installation space. An installation position is formed in the installation space. A turbine assembly is installed at the installation position. The turbine assembly includes blades. The blades are located between the air inlet and the air outlet. The blades are used to direct the airflow from the air inlet to the air outlet. An air guide slope is formed at the installation position. The air guide slope extends downward from one end near the turbine assembly to one end near the air outlet. The ceiling panel assembly includes a ceiling panel body and a ceiling plate. An installation opening is formed at the ceiling panel body, a locking part is provided at the installation opening, and a locking engagement part is provided at the ceiling plate. The ceiling plate is detachably installed at the installation opening by connecting the locking part and the locking engagement part. A first inclined surface is formed on the top plate body. The first inclined surface is inclined downward from one end near the mounting opening to the other end away from the mounting opening. A wire guide is provided on the ceiling plate. When the ceiling plate is installed on the top plate body, the wire guide is above the first inclined surface, and a wire passage gap is formed between the wire guide and the first inclined surface.

2. A fan lamp according to claim 1, wherein, A first lighting component is provided at the base plate assembly, a lead hole is provided on the top plate body, a lead component is provided in the installation space, a lead cavity is formed in the lead component, one end of the lead cavity is connected to the lead hole, and the other end is connected to the first lighting component.

3. A fan lamp according to claim 2, wherein, The wire guide is provided with a wire hole at one end of the wire guide near the wire passage gap to connect the wire guide with the wire passage gap. The ceiling plate is provided with a wire passage hole, forming a wire passage channel between the wire passage hole and the wire hole of the wire guide.

4. A fan lamp according to claim 3, wherein, A second inclined surface is formed at the ceiling plate, the wire component is disposed at the second inclined surface, and a wire inclined surface is formed on the wire component. The wire inclined surface is inclined downward from the end away from the wire hole to the end close to the wire hole.

5. A fan lamp according to claim 3, wherein The conductor, the lead hole, and the through hole are on the same plane.

6. A fan lamp according to claim 1, wherein, The installation space is provided with two installation positions, namely a first installation position and a second installation position; and the installation space is provided with two turbine assemblies, namely a first turbine assembly and a second turbine assembly, wherein the first turbine assembly is installed at the first installation position and the second turbine assembly is installed at the second installation position.

7. A fan lamp according to claim 6, wherein, A partition is provided between the first mounting position and the second mounting position, the partition separating the first turbine assembly and the second turbine assembly.

8. A fan lamp according to claim 1, wherein, A first mounting edge extends outward from the periphery of the top plate assembly to form a first mounting edge, and a second mounting edge is formed at the periphery of the bottom plate assembly. The first mounting edge and the second mounting edge are connected to connect the top plate assembly and the bottom plate assembly together.

9. A fan lamp according to claim 8, wherein, It also includes a second lighting component, which is mounted on the top plate assembly and on the top plate assembly near the first mounting edge.

10. A fan lamp according to claim 1, wherein, It also includes a connecting component, which is installed between the top plate assembly and the bottom plate assembly, and the top plate assembly and the bottom plate assembly are connected by the connecting component.

11. A fan lamp according to claim 10, wherein, The connecting assembly includes a first mounting frame and a second mounting frame. The top plate assembly is connected to the first mounting frame, and the bottom plate assembly is connected to the second mounting frame. A light guide plate is provided between the first mounting frame and the second mounting frame.