Fan blade light guide integrated fan lamp

By integrating fan blades and light guides into a single design and using a dynamic balancing component, the problems of poor functional coordination and insufficient operational stability of the fan and light have been solved, resulting in space saving, uniform lighting, stable operation, and improved heat dissipation efficiency.

CN121251985APending Publication Date: 2026-01-02ZHONGSHAN WANJU LIGHTING TECH CO LTD
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Patent Information

Application Number
CN202511762077.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-27
Publication Date
2026-01-02

AI Technical Summary

Technical Problem

Existing fan lights suffer from poor functional synergy, insufficient operational stability, poor lighting effect, and heat dissipation and sealing defects. The independent design of the fan blades and lighting module leads to problems such as large space occupation, unbalanced power transmission, and glare from direct light.

Method used

It adopts an integrated fan blade and light guide design, including a motor, drive lamp holder, drive shaft head and multi-layer C-shaped outer lamp blades. Combined with a power balancing component and power internal cavity structure, it realizes the integration of fan blade and lighting. Through the synergistic effect of multiple sets of balancing components, it ensures the stability of power transmission and the uniformity of lighting.

Benefits of technology

It integrates the fan blades and light guide, saving indoor space, improving lighting uniformity, reducing vibration and noise, improving heat dissipation efficiency, and ensuring the stability of fan operation.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The fan blade light guide integrated fan lamp comprises a motor, a driving lamp holder and a driving shaft head, the lower end of the motor is provided with a set of outer connecting shells used for supporting the motor, the lower end of the driving lamp holder is provided with a set of outer supporting bases used for supporting the bottom of the driving lamp holder, and the outer supporting bases and the driving lamp holder are connected in a sleeved mode; compared with the prior art, the power balance device has the following beneficial effects that in actual use, when the motor runs, the driving shaft head is meshed with the power meshing cavity at the upper end of the power embedding head to lock and transmit power, the power is sequentially transmitted to the upper balance fluted disc, and the power is transmitted to the lower balance fluted disc through the transmission shaft head; the upper balance fluted disc drives the first side balance fluted disc and the second side balance fluted disc through the upper transmission teeth, the two sets of side balance fluted discs transmit power to the transmission core rod through the side connecting bases and the side connecting columns correspondingly, and meanwhile overall power transmission balance is maintained.
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Description

Technical Field

[0001] This invention is an integrated fan light with fan blades and light guides, belonging to the field of fan light technology. Background Technology

[0002] Existing fan lights suffer from problems such as poor functional synergy, insufficient operational stability, poor lighting effect, and heat dissipation and sealing defects. Poor functional synergy manifests in the fact that the fan blades and lighting modules are mostly designed independently, resulting in a large space occupation and cluttered layout after installation. This is because traditional designs have not achieved structural integration, and the power transmission and lighting systems lack compatible connection. Conventional solutions include adding mounting brackets or reducing component size, but brackets increase installation complexity, while size reduction leads to insufficient fan airflow or insufficient lighting brightness. Insufficient operational stability is reflected in easy shaking and noise generation during high-speed operation, the root cause of which is the lack of effective power transmission. The balancing mechanism suffers from low component meshing precision and a simple support structure. Common solutions include reinforcing connecting components or replacing them with wear-resistant materials. However, reinforcement increases the weight of the equipment, and wear-resistant materials are expensive and cannot fundamentally eliminate the problem of power transmission imbalance. Poor lighting performance manifests as direct glare and uneven brightness. The core reason is an unreasonable lamp body structure design and an imperfect light guiding and distribution mechanism. Conventional methods include adding a light shield or adjusting the arrangement of LED beads. However, light shields reduce lighting efficiency, and adjusting the arrangement of LED beads is difficult to adapt to the lighting needs of different spaces. Therefore, there is an urgent need for a fan light with integrated blade and light guiding to solve the above problems. Summary of the Invention

[0003] To address the shortcomings of existing technologies, the present invention aims to provide an integrated fan light with fan blades and light guides, comprising a motor, a drive lamp holder, and a drive shaft head, in order to solve the problems mentioned in the background art.

[0004] The technical solution of the present invention is implemented as follows: A fan light with integrated blade and light guide includes: a motor, a drive lamp holder, and a drive shaft head. The lower end of the motor is provided with an outer connecting shell for supporting it. The lower end of the outer connecting shell is provided with a drive lamp holder for driving and controlling the LED lamp bead combination inside the outer lamp blade. The drive lamp holder has an LED control driver built in for controlling the LED lamp bead combination. The drive lamp holder and the outer connecting shell are connected and fixed by a flange. The lower end of the drive lamp holder is provided with an outer support seat for supporting its bottom. The outer support seat and the drive lamp holder are sleeved together. The inner side of the sleeved connection is provided with an inner rubber ring gasket for insulation. The lower inner side of the outer support seat is provided with an inner movable frame for supporting several groups of outer lamp blades. Several sets of external lamp blades for indoor lighting are equidistantly distributed on the outer side of the inner movable frame. The right cross-section of each external lamp blade has a C-shaped structure and is a multi-layered structure. A set of lower lamp holders for providing indoor lighting is connected to the inner side of the lower end of each set of external lamp blades. The lower lamp holder is a ceiling light, which also contains an LED lamp bead combination and is synchronously controlled with the LED control drive inside the drive lamp holder. A set of drive shaft heads for transmitting power to the fan assembly is provided at the lower end of the motor. A lower directional bearing for maintaining the rotational stability of the drive shaft head is provided on the outer side of the through-position of the drive shaft head, the drive lamp holder, and the outer connecting shell. The inner side of the lower directional bearing is fitted and fixedly connected to the drive lamp holder and the outer connecting shell, and the inner side of the lower directional bearing is also fixedly connected to the outer side of the drive shaft head.

[0005] In a preferred embodiment, a power balancing assembly for transmitting power is provided in the middle of the drive lamp holder. The power balancing assembly includes a power insert and lower meshing teeth. The upper inner side of the power insert has a power meshing cavity for meshing with the inside of the drive shaft. The inner side of the power meshing cavity has annular teeth. The teeth inside the power meshing cavity mesh with and lock with the drive shaft. The lower end of the power insert has an upper balancing toothed disc for laterally transmitting the power from the power meshing cavity. The upper center of the upper balancing toothed disc is connected and fixed to the lower end of the power insert. The upper balancing toothed disc has a circular cross-section when viewed from above. At the same time, the lower end of the upper balancing toothed disc has upper transmission teeth for driving the first and second side balancing toothed discs to rotate synchronously. The outer side of the connection between the power insert and the upper balancing toothed disc has an inner positioning bearing for maintaining the balance of its rotation.

[0006] In a preferred embodiment, the inner positioning bearing is provided in two sets, and three sets of outer combined frames are provided on the outer side of the two sets of inner positioning bearings to maintain their limiting connection and fixation. The front cross-section of the outer combined frame is a circular structure. The three sets of outer combined frames are evenly and equidistantly distributed and are connected and fixed to the two sets of inner positioning bearings. A set of transmission core rods for vertical power transmission is provided at the lower end of the middle position of the upper balance gear plate. The upper end of the transmission core rod is connected and fixed to the middle position of the lower end of the upper balance gear plate. A set of inner side and side connecting post for connecting to the inner side of the side connecting post is provided on the left and right sides of the middle position of the transmission core rod. The inner bushing bearing has two movable inner side connections. Both the first and second side connecting columns are inclined structures with an inclination angle of 15-25°. The left side of the first side connecting column is connected to the middle position of the first side balance gear plate through the first side connecting seat. The right side of the second side connecting column is connected to the middle position of the second side balance gear plate through the second side connecting seat. The center position of the first side balance gear plate is movably engaged with the first side connecting seat. The center position of the second side balance gear plate is movably engaged with the second side connecting seat. The first side balance gear plate and the first side connecting seat constitute a set of lateral balancing components.

[0007] In a preferred embodiment, the second side balance gear and the second side connecting seat constitute a set of lateral stabilizing balance components. The first and second side balance components are symmetrically arranged around the center position of the transmission core rod. A set of inner bushing bearings is also provided at the connection points of the first and second side connecting columns and the second side connecting seat. A set of lower balance gears for power connection with the first and second side balance gears is provided at the lower end of the transmission core rod. The upper end of the lower balance gear has lower transmission teeth for synchronous meshing with the first and second side balance gears. The lower end of the lower balance gear has a set of transmission teeth for transmitting motor power. The lower power column of the one-step transmission passes through the middle of the lower end of the outer combined frame. A set of internal positioning bearings is provided at the through-point. The lower outer side of the lower end of the lower power column is provided with lower meshing teeth for meshing with the inside of the fan assembly. The lower meshing teeth are embedded in the middle of the fan assembly. In actual use, when the motor is running, the power is transmitted through the drive shaft head and the upper power meshing cavity of the power insert. The power is transmitted to the upper balance gear plate in sequence. The upper balance gear plate drives the side balance gear plate one and the side balance gear plate two through the upper transmission teeth. The two sets of side balance gear plates transmit power to the transmission core rod through the side connecting seat and the side connecting column respectively, while maintaining the overall power transmission balance. The lower balance gear plate receives power through the meshing of the lower transmission teeth and the side balance gear plate. Then, the lower power column and the lower meshing column teeth drive the fan assembly to rotate and generate wind. The integrated design of the fan blade and light guide greatly saves indoor space and eliminates the need for additional independent lighting fixtures. The combination of C-shaped multi-layered external lamp blades and lower lamp holders effectively improves the uniformity of indoor lighting and avoids uneven brightness in certain areas; multiple balancing components work together during power transmission to ensure the stability of the fan during operation and reduce shaking and noise.

[0008] In a preferred embodiment, the fan assembly includes fan blades, a fan movable slot, a lower mounting shell, an upper mounting shell, a positioning base, a sealing top cover, an upper movable bearing, and power meshing teeth. The fan blades are provided in four sets, and the cross-section of the four sets of fan blades in plan view is an elliptical arc structure. The four sets of fan blades are evenly distributed and are all located inside the fan movable slot. The upper end of the fan movable slot is provided with an upper mounting shell for protecting the upper side of the fan blade connection section. The lower end of the fan movable slot is provided with a lower mounting shell for protecting the lower side of the fan blade connection section. The upper mounting shell and the lower mounting shell are connected and fixed by several sets of bolts. The interior of the upper mounting shell and the interior of the lower mounting shell are both cavity structures. The inner side of the upper mounting shell and the inner side of the lower mounting shell are respectively provided with a set of power inner cavities for synchronously rotating the four sets of fan blades. The upper end of the middle position of the upper mounting shell is provided with a set of positioning connectors for connecting with the drive lamp holder. The upper end of the positioning connector is provided with a set of sealing top covers for maintaining the outer protection of its power transmission. The upper inner side of the sealed top cover is provided with a set of upper movable bearings for engaging with the power meshing teeth. The outer side of the upper movable bearings is connected and fixed to the inner side of the sealed top cover, and its inner side is an integral structure with the power meshing teeth. The power meshing teeth have a ring-shaped cross-section when viewed from above. The inner side of the power meshing teeth is engaged with the lower meshing column teeth. The lower meshing column teeth penetrate the inner side of the power meshing teeth and are connected to the internal components of the power cavity. In actual use, the upper mounting shell and the lower mounting shell are connected and fixed at the upper and lower ends of the fan movable slot by bolts to form a complete protective structure. Four sets of fan blades with elliptical arc cross-sections are evenly distributed inside the fan movable slot and achieve synchronous rotation through the power cavity. In terms of power transmission, after the positioning connector is connected to the drive lamp holder, the sealed top cover provides external protection to ensure the stability of power transmission. When external power is input, the lower meshing column teeth drive the power meshing teeth to rotate. The power meshing teeth are connected to the inside of the sealed top cover through their upper movable bearing. This meshing transmission method can effectively transmit torque while maintaining smooth operation. Throughout the transmission process, the cooperation between the components ensures the smooth operation of the fan blades in the movable slot. During operation, the fan blades, through their special elliptical arc structure design, can optimize airflow organization and improve heat dissipation efficiency when rotating. The design of the power inner cavity allows the four sets of blades to maintain synchronous movement, avoiding vibration or noise problems caused by asynchrony.

[0009] In a preferred embodiment, the power cavity includes a housing and an inner stabilizing spindle. The housing has a set of internal directional teeth on its inner side for positioning and meshing with four sets of lateral directional toothed columns. The internal directional teeth have a ring-shaped cross-section when viewed from above and are located at the upper end of the inner side of the housing. Four sets of lateral directional toothed columns are evenly distributed on the inner side of the internal directional teeth, each used to drive the four sets of fan blades to rotate in a directional manner. The outer sides of the four sets of lateral directional toothed columns are each provided with helical external meshing teeth. All external meshing teeth on the outer sides of the four sets of lateral directional toothed columns mesh with the internal directional teeth. Each set of lateral directional toothed columns has a set of inner support cores inside for maintaining its centered rotation. The upper end of each inner support core is provided with a set of positioning rods for engaging with the upper positioning support frame. The four sets of positioning rods are rectangular in structure, and the upper end of each set of positioning rods corresponds to a set of outer positioning holes for mutual positioning and engagement.

[0010] In a preferred embodiment, a set of sealed bearings for preventing dust from entering is provided inside the outer positioning hole. The positioning rod passes through the interior of the sealed bearing and is fixed to the interior of the sealed bearing. A set of internal threaded holes for connecting with the fan blades by bolts is provided on the inner side of the upper end of each set of outer positioning holes. Each set of fan blades is fixed by bolts to the internal threaded holes. A set of upper positioning support brackets for maintaining the positioning support of the upper end is provided on the upper end of the four sets of side-directing toothed columns. A set of side-clamping connecting plates for combined connection and support with the lower positioning support brackets is provided at the lower end of the middle position of the front and rear sides of the upper positioning support brackets. There are two sets of side-clamping connecting plates, and the two sets of side-clamping connecting plates are respectively combined and fixed with one set of upper positioning support brackets and one set of lower positioning support brackets.

[0011] In a preferred embodiment, the inner side of each of the four sets of lateral gear columns is provided with a set of externally connected interlocking guide teeth for maintaining inner positioning support during independent rotation. These externally connected interlocking guide teeth synchronously mesh with the inner sides of the four sets of lateral gear columns. A set of transmission gear rings for support is located in the middle of the inner side of each externally connected interlocking guide tooth. The transmission gear rings and externally connected interlocking guide teeth are integrally formed. The inner side of the transmission gear rings is provided with a set of internally connected interlocking guide teeth for power connection with the lower meshing gears. These internally connected interlocking guide teeth mesh with the lower meshing gears. A set of upper positioning support brackets is provided inside the housing. The inner positioning groove of the lower positioning support frame is provided at the lower middle position of the inner positioning groove. A set of inner stabilizing mandrels is provided at the lower middle position to keep the rotation of the lower meshing column teeth stable. In actual use, the upper end of the inner support mandrel inside each set of side-direction tooth columns is provided with a positioning rod. The positioning rod with rectangular structure is interlocked with the upper positioning support frame. At the same time, the positioning rod passes through the sealed bearing inside the outer positioning hole and is fixed to prevent dust from entering and ensure rotational stability. The upper positioning support frames at the upper end of the four sets of side-direction tooth columns are combined and connected with the lower positioning support frame through the side snap-fit ​​connecting plates on the front and rear sides to form a support structure and ensure that the overall positioning is firm. During power transmission, the four sets of externally connected interlocking guide teeth on the inner side of the gear column mesh synchronously, maintaining the inner positioning support when rotating independently. The transmission gear ring in the middle position inside the externally connected interlocking guide teeth is an integral structure with it. The internally connected interlocking guide teeth on the inner side of the transmission gear ring mesh with the lower meshing column teeth to achieve power connection. The inner positioning groove inside the housing is used to place the upper positioning support frame and the lower positioning support frame. The inner stabilizing spindle at the lower end of the inner positioning groove maintains the stability of the rotation of the lower meshing column teeth, thereby reducing the amplitude of vibration during use and improving the performance.

[0012] In a preferred embodiment, the outer lamp blade includes an outer resistive rubber sleeve and a light-transmitting plate. The outer resistive rubber sleeve is disposed on the outer surface of the outer lamp blade and is made of a rubber material. An inner heat dissipation grid is provided on the inner side of the outer resistive rubber sleeve to provide heat dissipation to the interior of the outer lamp blade. An outer heat dissipation grid is provided on the inner side of the inner heat dissipation grid to provide heat dissipation to the exterior of the outer lamp blade. Both the outer and inner heat dissipation grids are made of aluminum. An inner sealing bushing is provided on the left and right outer ends of both the outer and inner heat dissipation grids to maintain their internal seal. Inside each of the outer and inner heat dissipation grids, a set of materials is provided for flexibly dissipating the combined light from the LED beads. In practical use, the light-transmitting plate has an inner and outer heat dissipation grid made of aluminum, forming a dual heat dissipation structure. The inner heat dissipation grid conducts heat from the inside of the outer lamp blades, while the outer heat dissipation grid further diffuses heat to the external environment, ensuring that the LED beads remain at a low temperature during operation. The inner sealing bushings at both ends of the outer and inner heat dissipation grids prevent dust or moisture from entering the interior, while maintaining the overall structural airtightness and avoiding the impact of external environmental factors on heat dissipation. The light-transmitting plate is set inside the outer and inner heat dissipation grids, and its flexible diffusion characteristics distribute the combined light from the LED beads evenly, avoiding glare caused by direct light and improving lighting comfort.

[0013] After adopting the above technical solution, the beneficial effects of the present invention are as follows: In actual use, when the motor is running, the power is transmitted by meshing and locking the upper power engagement cavity of the drive shaft head and the power insert head. The power is transmitted to the upper balance tooth plate in sequence. The upper balance tooth plate drives the side balance tooth plate one and the side balance tooth plate two through the upper transmission teeth. The two sets of side balance tooth plates transmit the power to the transmission core rod through the side connecting seat and the side connecting column respectively, while maintaining the overall power transmission balance. The lower balance gear plate receives power through the meshing of the lower transmission teeth and the side balance gear plate. Then, the lower power column and the lower meshing column teeth drive the fan assembly to rotate and generate wind. The integrated design of the fan blade and light guide greatly saves indoor space and eliminates the need for additional independent lighting fixtures. The combination of C-shaped multi-layered external lamp blades and lower lamp holders effectively improves the uniformity of indoor lighting and avoids uneven brightness in some areas; multiple sets of balancing components work together during power transmission to ensure the stability of the fan during operation and reduce shaking and noise. In practical use, the upper and lower mounting shells are connected and fixed at the upper and lower ends of the fan movable slot by bolts to form a complete protective structure. Four sets of fan blades with elliptical arc cross sections are evenly distributed inside the fan movable slot and achieve synchronous rotation through the power cavity. In terms of power transmission, after the positioning connector is connected to the drive lamp holder, the sealed top cover provides external protection to ensure the stability of power transmission. When external power is input, the lower meshing column teeth drive the power meshing teeth to rotate. The power meshing teeth are connected to the inside of the sealed top cover through their upper movable bearing. This meshing transmission method can effectively transmit torque while maintaining smooth operation. Throughout the transmission process, the cooperation between the components ensures the smooth operation of the fan blades in the movable slot. During operation, the fan blades, through their special elliptical arc structure design, can optimize airflow organization and improve heat dissipation efficiency when rotating. The design of the power cavity allows the four sets of blades to maintain synchronous movement, avoiding vibration or noise problems caused by asynchrony. In practical use, each set of side-direction toothed columns has a positioning rod at the upper end of the inner support core column. The positioning rod with the rectangular structure is interlocked with the upper positioning support frame. At the same time, the positioning rod passes through the sealed bearing inside the outer positioning hole and is fixed to prevent dust from entering and ensure rotational stability. The upper positioning support frame at the upper end of the four sets of side-direction toothed columns is connected to the lower positioning support frame through the side locking connecting plates on the front and rear sides to form a support structure and ensure that the overall positioning is firm. During power transmission, the four sets of externally connected interlocking guide teeth on the inner side of the gear column mesh synchronously to maintain the inner positioning support when rotating independently. The transmission gear ring in the middle position inside the externally connected interlocking guide teeth is an integral structure with it. The internally connected interlocking guide teeth on the inner side of the transmission gear ring mesh with the lower meshing column teeth to achieve power connection. The inner positioning groove inside the housing is used to place the upper positioning support frame and the lower positioning support frame. The inner stabilizing spindle at the lower end of the inner positioning groove maintains the stability of the rotation of the lower meshing column teeth, thereby reducing the amplitude of vibration during use and improving the performance. In practical use, the inner and outer heat dissipation grids on the inner side of the outer resistive sleeve are made of aluminum, forming a dual heat dissipation structure. The inner heat dissipation grid is responsible for conducting heat inside the outer lamp blades, while the outer heat dissipation grid further diffuses heat to the external environment, ensuring that the LED beads remain at a low temperature during operation. The inner sealing bushings at both ends of the outer and inner heat dissipation grids prevent dust or moisture from entering the interior, while maintaining the overall structural airtightness and avoiding the impact of external environmental factors on heat dissipation. The light-transmitting plate is set inside the outer and inner heat dissipation grids, and its flexible diffusion characteristics distribute the combined light of the LED beads evenly, avoiding glare caused by direct light and improving lighting comfort. Attached Figure Description

[0014] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0015] Figure 1 This is a schematic diagram of the front side view of an integrated fan light with fan blades and light guides according to the present invention; Figure 2 This is a top view of the front side of several sets of outer lamp blades in a fan light with integrated fan blade and light guide according to the present invention; Figure 3 This is a schematic diagram of the front side view of the fan assembly in the integrated fan light with fan blades according to the present invention; Figure 4 This is a front-view diagram of the lower directional bearing and drive shaft head in an integrated fan light with fan blades and light guides according to the present invention. Figure 5 This is a schematic diagram of the front view of the dynamic balance component in the integrated fan light with fan blades according to the present invention; Figure 6 This is a schematic diagram of the front top view of the internal components of the power cavity in a fan lamp with integrated blade and light guide according to the present invention; Figure 7 This is a front view of the structure of the four sets of side-directing toothed columns and the upper positioning spiral support frame of the integrated fan light with fan blades and light guides of the present invention when they are separated from the housing. Figure 8 This is a schematic diagram of the front view of the outer lamp blade structure in an integrated fan light with fan blade and light guide according to the present invention; In the diagram: 1-Motor, 2-Outer connecting shell, 3-Drive lamp holder, 4-Outer support base, 5-Inner movable frame, 6-Outer lamp blade, 7-Inner stabilizing disc, 8-Fan assembly, 9-Lower lamp holder, 10-Lower directional bearing, 11-Drive shaft head; 31-Power insert, 32-Upper balance gear, 33-Upper transmission gear, 34-Side balance gear one, 35-Side connecting seat one, 36-Side connecting column one, 37-Transmission core rod, 38-Side connecting column two, 39-Side connecting seat two, 301-Side balance gear two, 302-Lower transmission gear, 303-Lower balance gear, 304-Inner positioning bearing, 305-Lower power column, 306-Lower meshing column tooth; 81-Fan blade, 82-Fan movable slot, 83-Lower mounting housing, 84-Upper mounting housing, 85-Positioning connector, 86-Sealed top cover, 87-Upper movable bearing, 88-Power meshing gear; 4a-Housing, 4b-Internal directional teeth, 4c-Side directional teeth, 4d-Internal support core, 4e-Positioning rod, 4f-External positioning hole, 4g-Upper positioning support bracket, 4h-Side engaging connecting plate, 4i-External connecting guide teeth, 4j-Transmission gear ring, 4k-Internal connecting guide teeth, 4l-Lower positioning support bracket, 4m-Internal positioning groove, 4n-Internal stabilizing spindle; 61-Outer resistive rubber sleeve, 62-Inner heat dissipation mesh, 63-Outer heat dissipation mesh, 64-Inner sealing bushing, 65-Light-transmitting plate. Detailed Implementation

[0016] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0017] Please see Figures 1-8 As the first embodiment of the present invention: a fan light with integrated blade and light guide, including: a motor 1, a drive lamp holder 3 and a drive shaft head 11. The lower end of the motor 1 is provided with an outer connecting shell 2 for supporting it. The lower end of the outer connecting shell 2 is provided with a drive lamp holder 3 for driving and controlling the LED lamp bead combination inside the outer lamp blade 6. The drive lamp holder 3 has built-in LED control driver for controlling the LED lamp bead combination. The drive lamp holder 3 and the outer connecting shell 2 are connected and fixed by a flange. The lower end of the drive lamp holder 3 is provided with an outer support seat 4 for supporting its bottom. The outer support seat 4 and the drive lamp holder 3 are sleeved together. The inner side of the sleeved connection is provided with an inner rubber ring gasket for insulation. The inner side of the lower end of the outer support seat 4 is provided with an inner movable frame 5 for providing support for several groups of outer lamp blades 6. Several sets of external lamp blades 6 for indoor lighting are equidistantly distributed on the outer side of the inner movable frame 5. The cross-section of the right side of the external lamp blade 6 is a C-shaped structure. The external lamp blade 6 is a multi-layer structure. A set of lower lamp holders 9 for providing indoor lighting is connected to the inner side of the lower end of several sets of external lamp blades 6. The lower lamp holder 9 is a ceiling lamp. It also has an LED lamp bead combination inside and is synchronously controlled with the LED control drive inside the drive lamp holder 3. The lower end of the motor 1 is provided with a set of drive shaft heads 11 that transmit power to the fan assembly 8. The drive shaft head 11 is provided with a lower directional bearing 10 on the outer side of the through position of the drive shaft head 11, the drive lamp holder 3, and the outer connecting shell 2 to keep the drive shaft head 11 rotating stably. The inner side of the lower directional bearing 10 is fitted and fixedly connected to the drive lamp holder 3 and the outer connecting shell 2, and the inner side of the lower directional bearing 10 is fixedly connected to the outer side of the drive shaft head 11.

[0018] Please see Figure 1 , 2 4, 5, as the second embodiment of the present invention: Based on the description in the first embodiment, further, a set of power balancing components for transmitting power is provided in the middle position inside the drive lamp holder 3. The power balancing components include a power insert 31 and a lower meshing column tooth 306. A set of power meshing cavities for meshing with the inside of the drive shaft head 11 are provided on the inner side of the upper end of the power insert 31. The inner side of the power meshing cavity is provided with annular meshing teeth. The meshing teeth inside the power meshing cavity mesh with and lock with the drive shaft head 11. A set of upper balancing toothed discs 32 for transversely transmitting the power of the power meshing cavity is provided at the lower end of the power insert 31. The upper center position of the upper balancing toothed disc 32 is connected and fixed to the lower end of the power insert 31. The cross-section of the upper balancing toothed disc 32 in plan view is a circular structure. At the same time, the lower end of the upper balancing toothed disc 32 is provided with upper transmission teeth 33 for driving the side balancing toothed disc 1 34 and the side balancing toothed disc 2 301 to rotate synchronously. A set of inner positioning bearings 304 for maintaining the balance of rotation is provided on the outer side of the connection between the power insert 31 and the upper balancing toothed disc 32.

[0019] Two sets of inner positioning bearings 304 are provided. Three sets of outer composite frames are provided on the outer side of each inner positioning bearing 304 to maintain its limiting connection and fixation. The front cross-section of the outer composite frames is a circular structure. The three sets of outer composite frames are evenly and equidistantly distributed along the outer circumference of the inner positioning bearings 304 at 120° intervals. They are fixed to the outer ring of the inner positioning bearings 304 and the inner wall of the drive lamp holder 3 by bolts. A set of transmission core rods 37 for vertical power transmission is provided at the lower end of the middle position of the upper balance gear plate 32. The upper end of the transmission core rods 37 is connected and fixed to the middle position of the lower end of the upper balance gear plate 32. A set of transmission core rods 37 is provided on the inner sides of the left and right sides of the middle position of the transmission core rods 37 for connection with the inner side of the side connecting column 36 and... The inner bushing bearing is movably connected to the inner side of the second side connecting column 38. Both the first side connecting column 36 and the second side connecting column 38 are inclined structures with an inclination angle of 15-25°. The left side of the first side connecting column 36 and the middle position of the first side balance gear disk 34 are supported by the first side connecting seat 35. The right side of the second side connecting column 38 and the middle position of the second side balance gear disk 301 are supported by the second side connecting seat 39. The inner center position of the first side balance gear disk 34 and the first side connecting seat 35 are movably engaged with each other. The inner center position of the second side balance gear disk 301 and the second side connecting seat 39 are movably engaged with each other. The first side balance gear disk 34 and the first side connecting seat 35 constitute a set of lateral balance components.

[0020] The second side balance gear 301 and the second side connecting seat 39 constitute a second set of lateral stabilizing balance components. The first and second side balance components are symmetrically arranged around the center position of the transmission core rod 37. The connection between the first side connecting column 36 and the first side connecting seat 35, and the connection between the second side connecting column 38 and the second side connecting seat 39 are also provided with a set of inner bushing bearings. The lower end of the transmission core rod 37 is provided with a set of lower balance gear 303 for power connection with the first side balance gear 34 and the second side balance gear 301. The upper end of the lower balance gear 303 is provided with lower transmission teeth 302 for synchronous meshing with the first side balance gear 34 and the second side balance gear 301. The lower end of the lower balance gear 303 is provided with a set of lower driving teeth for further transmitting the power of the motor 1. The lower power column 305 passes through the middle of the lower end of the outer combined frame. A set of internal positioning bearings 304 is provided at the through position. The lower outer side of the lower power column 305 is provided with a lower meshing column tooth 306 for meshing with the inside of the fan assembly 8. The lower meshing column tooth 306 is embedded in the middle position of the fan assembly 8. In actual use, when the motor 1 is running, the power is transmitted through the drive shaft head 11 and the upper power meshing cavity of the power insert head 31. The power is transmitted to the upper balance gear plate 32 in sequence. The upper balance gear plate 32 drives the side balance gear plate one 34 and the side balance gear plate two 301 through the upper transmission teeth 33. The two sets of side balance gear plates transmit the power to the transmission core rod 37 through the side connecting seat and the side connecting column, respectively, while maintaining the overall power transmission balance. The lower balance gear 303 receives power through the lower transmission teeth 302 meshing with the side balance gear 302, and then drives the fan assembly 8 to rotate to generate wind power via the lower power column 305 and the lower end meshing column teeth 306. This device has significant advantages, and the integrated design of the fan blades and light guide greatly saves indoor space, eliminating the need for additional independent lighting fixtures. The combination of C-shaped multi-layered external lamp blades 6 and lower lamp holders 9 effectively improves the uniformity of indoor lighting and avoids uneven brightness in certain areas; multiple sets of balancing components work together during power transmission to ensure the stability of the fan during operation and reduce shaking and noise.

[0021] Please see Figures 1-4 As a third embodiment of the present invention: based on the description in the first embodiment, the fan assembly 8 further includes fan blades 81 and power meshing teeth 88. The fan blades 81 are provided in four sets, and the cross-section of the four sets of fan blades 81 in plan view is an elliptical arc structure. The four sets of fan blades 81 are evenly distributed and are all located inside the fan movable slot 82. The upper end of the fan movable slot 82 is provided with an upper mounting shell 84 for protecting the upper side of the connecting section of the fan blades 81. The lower end of the fan movable slot 82 is provided with a lower mounting shell 83 for protecting the lower side of the connecting section of the fan blades 81. The upper mounting shell 84 and the lower mounting shell 83 are connected and fixed by several sets of bolts. The interior of the upper mounting shell 84 and the interior of the lower mounting shell 83 are both hollow structures. The inner side of the upper mounting shell 84 and the inner side of the lower mounting shell 83 are respectively provided with a set of power inner cavities for synchronously rotating the four sets of fan blades 81. The upper end of the middle position of the upper mounting shell 84 is provided with a set of positioning connectors 85 for connecting with the drive lamp holder 3. The upper end of the positioning connectors 85 is provided with a set of sealing top covers 86 for maintaining the protection of the outer side of its power transmission. The upper inner side of the sealing top cover 86 is provided with a set of upper movable bearings 87 for engaging with the power meshing teeth 88. The outer side of the upper movable bearings 87 is connected and fixed to the inner side of the sealing top cover 86, and its inner side is an integral structure with the power meshing teeth 88. The power meshing teeth 88 has a ring-shaped cross-section when viewed from above. The inner side of the power meshing teeth 88 is engaged with the lower meshing column teeth 306. The lower meshing column teeth 306 penetrates the inner side of the power meshing teeth 88 and is connected to the internal components of the power cavity. In actual use, the upper mounting shell 84 and the lower mounting shell 83 are connected and fixed at the upper and lower ends of the fan movable slot 82 by bolts to form a complete protective structure. Four sets of fan blades 81 with elliptical arc cross-sections are evenly distributed inside the fan movable slot 82 and achieve synchronous rotation through the power cavity. In terms of power transmission, after the positioning connector 85 is connected to the drive lamp holder 3, the sealing top cover 86 provides external protection to ensure the stability of power transmission. When external power is input, the lower meshing column tooth 306 drives the power meshing tooth 88 to rotate. The power meshing tooth 88 is movably connected to the inside of the sealed top cover 86 through its upper movable bearing 87. This meshing transmission method can effectively transmit torque while maintaining smooth operation. During the entire transmission process, the cooperation between the components ensures the smooth operation of the fan blade 81 in the movable slot. During operation, the fan blade 81, through its special elliptical arc structure design, can optimize airflow organization and improve heat dissipation efficiency when rotating. The design of the power inner cavity enables the four sets of blades to maintain synchronous movement, avoiding vibration or noise problems caused by asynchrony.

[0022] Please see Figures 1-4 , Figure 5 as well as Figure 6 As a fourth embodiment of the present invention: based on the description in the first and second embodiments, the power cavity further includes a housing 4a and an inner stabilizing spindle 4n. The inner side of the housing 4a is provided with a set of internal directional teeth 4b for positioning and meshing with four sets of side-directing toothed columns 4c. The internal directional teeth 4b, in plan view, has an annular cross-section and is located at the upper end of the inner side of the housing 4a. Four sets of side-directing toothed columns 4c are evenly distributed on the inner side of the internal directional teeth 4b, respectively driving the four sets of fan blades 81 to rotate in a directional manner. The four sets of lateral gear columns 4c are respectively provided with spiral external meshing teeth on their outer sides. The external meshing teeth on the outer sides of the four sets of lateral gear columns 4c are all meshed with the internal directional teeth 4b. Each set of lateral gear columns 4c is provided with an inner support core column 4d for maintaining its centered rotation. The upper end of the inner support core column 4d is provided with a set of positioning rods 4e for engaging with the upper positioning support frame 4g. The four sets of positioning rods 4e are arranged in a rectangular structure, and the upper end of each set of positioning rods 4e corresponds to a set of external positioning holes 4f for mutual positioning and engagement.

[0023] A set of sealed bearings for preventing dust from entering is provided on the inner side of the outer positioning hole 4f. The positioning rod 4e passes through the inside of the sealed bearing and is fixed to the inside of the sealed bearing. A set of internal threaded holes for connecting with the fan blade 81 by bolts is provided on the inner side of the upper end of each set of outer positioning holes 4f. Each set of fan blades 81 is fixed by bolts to the internal threaded holes. A set of upper positioning support brackets 4g for maintaining the positioning support of the upper end is provided on the upper end of the four sets of side-directing toothed columns 4c. A set of side-locking connecting plates 4h for combining and connecting with the lower positioning support brackets 4l is provided at the lower end of the middle position of the front and rear sides of the upper positioning support brackets 4g. There are two sets of side-locking connecting plates 4h, and the two sets of side-locking connecting plates 4h are respectively combined and fixed with one set of upper positioning support brackets 4g and one set of lower positioning support brackets 4l.

[0024] The inner side of the four sets of lateral gear columns 4c is provided with a set of externally engaged guide teeth 4i for maintaining inner positioning support when rotating independently. The externally engaged guide teeth 4i mesh synchronously with the inner sides of the four sets of lateral gear columns 4c. The middle position inside the externally engaged guide teeth 4i is provided with a set of transmission gear rings 4j for supporting it. The transmission gear rings 4j and the externally engaged guide teeth 4i are an integral structure. The inner side of the transmission gear rings 4j is provided with a set of internally engaged guide teeth 4k for power connection with the lower meshing column teeth 306. The internally engaged guide teeth 4k mesh with the lower meshing column teeth 306. The inner side of the housing 4a is provided with a set of upper positioning support brackets 4g and lower positioning support brackets 4l. The inner positioning groove 4m has a set of inner stabilizing spindles 4n at the lower middle position of the inner positioning groove 4m to keep the lower meshing column teeth 306 rotating stably. In actual use, the upper end of the inner support core 4d inside each set of side-direction tooth columns 4c is provided with a positioning rod 4e. The rectangular positioning rod 4e is interlocked with the upper positioning support frame 4g. At the same time, the positioning rod 4e passes through the sealed bearing inside the outer positioning hole 4f and is fixed to prevent dust from entering and ensure rotational stability. The upper positioning support frame 4g at the upper end of the four sets of side-direction tooth columns 4c is connected to the lower positioning support frame 4l through the side locking connecting plates 4h on the front and rear sides to form a support structure and ensure that the overall positioning is firm. During power transmission, the four sets of externally connected interlocking guide teeth 4i on the inner side of the side-directed gear column 4c mesh synchronously, maintaining the inner positioning support when rotating independently. The transmission gear ring 4j in the middle position inside the externally connected interlocking guide tooth 4i is an integral structure with it. The internally connected interlocking guide tooth 4k on the inner side of the transmission gear ring 4j meshes with the lower meshing column tooth 306 to achieve power connection. The inner positioning groove 4m inside the housing 4a is used to place the upper positioning support frame 4g and the lower positioning support frame 4l. The inner stabilizing spindle 4n at the lower end of the inner positioning groove 4m maintains the stability of the rotation of the lower meshing column tooth 306, thereby reducing the amplitude of vibration during use and improving the performance.

[0025] Please see Figure 1 , 2 as well as Figure 8As a fifth embodiment of the present invention: based on the description in the first embodiment, further, the outer lamp blade 6 includes an outer resistive sleeve 61 and a light-transmitting plate 65. The outer resistive sleeve 61 is disposed on the outer surface of the outer lamp blade 6. The outer resistive sleeve 61 is made of a rubber material. The inner side of the outer resistive sleeve 61 is provided with a set of inner heat dissipation grids 62 for providing heat dissipation to the inside of the outer lamp blade 6. The inner side of the inner heat dissipation grids 62 is provided with a set of outer heat dissipation grids 63 for providing heat dissipation to the outside of the outer lamp blade 6. Both the outer heat dissipation grids 63 and the inner heat dissipation grids 62 are made of a metal aluminum material. The inner heat dissipation grids 62 are aluminum honeycomb grids with a thickness of 0.8-1.2mm, directly bonded to the LED bead substrate of the inner heat dissipation grids. The outer heat dissipation grids 63 are aluminum strip grids with a thickness of 1.0-1.5mm, bonded to the inner heat dissipation grids by thermally conductive silicone. The outer and outer ends of the outer heat dissipation grids 63 and 62 are respectively provided with a set of... The inner sealing bushing 64, which maintains its internal seal, and the outer heat dissipation grid 63 and the inner heat dissipation grid 62 each have a set of light-transmitting plates 65 for flexibly dispersing the combined light of the LED beads. In actual use, the inner heat dissipation grid 62 and the outer heat dissipation grid 63 inside the outer resistive rubber sleeve 61 are made of aluminum metal, forming a dual heat dissipation structure. The inner heat dissipation grid 62 is responsible for conducting heat inside the outer lamp leaf 6, while the outer heat dissipation grid 63 further diffuses heat to the external environment, ensuring that the LED beads remain at a low temperature during operation. The inner sealing bushings 64 at both ends of the outer heat dissipation grid 63 and the inner heat dissipation grid 62 can prevent dust or moisture from entering the interior, while maintaining the overall sealing of the structure and avoiding the heat dissipation effect being affected by external environmental factors. The light-transmitting plates 65 are set inside the outer heat dissipation grid 63 and the inner heat dissipation grid 62, and through their flexible dispersion characteristics, they evenly distribute the combined light of the LED beads, avoiding glare caused by direct light and improving lighting comfort.

[0026] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A fan light integrated fan light, comprising: Motor (1), drive lamp holder (3) and drive shaft head (11), the lower end of the motor (1) is provided with a set of outer connecting shell (2) for supporting it, the lower end of the outer connecting shell (2) is provided with a set of drive lamp holder (3) for driving and controlling the internal LED lamp bead combination of the outer lamp leaf (6), the drive lamp holder (3) is built-in LED control drive for controlling LED lamp bead combination, the drive lamp holder (3) and the outer connecting shell (2) are connected and fixed by flange, characterized in that: the lower end of the drive lamp holder (3) is provided with a set of outer support seat (4) for supporting the bottom thereof, the outer support seat (4) and the drive lamp holder (3) are mutually sleeved, the inner side of the mutual sleeving connection part is provided with a set of inner rubber ring pad for insulation, the inner side of the lower end of the outer support seat (4) is provided with a set of inner movable frame (5) for supporting a plurality of sets of outer lamp leaves (6); The outer side of the inner movable frame (5) is equidistantly distributed with a plurality of sets of outer lamp leaves (6) for illuminating the room, the right side cross section of the outer lamp leaf (6) is a C-shaped structure, the outer lamp leaf (6) is a multi-layer structure, the inner side of the lower end of a plurality of sets of the outer lamp leaves (6) is connected with a set of lower lamp holder (9) for providing illumination for the room, the lower lamp holder (9) is a ceiling lamp, the inside of which is also provided with LED lamp bead combination, and is synchronously controlled with the LED control drive inside the drive lamp holder (3), the lower end of the motor (1) is provided with a set of drive shaft head (11) for transmitting power to the fan assembly (8), the outer side of the penetrating position of the drive shaft head (11) and the drive lamp holder (3) and the outer connecting shell (2) is provided with lower directional bearing (10) for keeping the rotation of the drive shaft head (11) stable, the inner side of the lower directional bearing (10) and the drive lamp holder (3) and the outer connecting shell (2) are mutually embedded and connected and fixed, and the inner side of the lower directional bearing (10) and the outer side of the drive shaft head (11) are connected and fixed.

2. The fan light integrated fan light according to claim 1, characterized in that: The inner side of the lower end of the outer support seat (4) is provided with a set of inner movable frame (5) for supporting a plurality of sets of outer lamp leaves (6); The inner side of the lower end of a plurality of sets of the outer lamp leaves (6) is connected with a set of lower lamp holder (9) for providing illumination for the room, the lower lamp holder (9) is a ceiling lamp, the inside of which is also provided with LED lamp bead combination, and is synchronously controlled with the LED control drive inside the drive lamp holder (3), the lower end of the motor (1) is provided with a set of drive shaft head (11) for transmitting power to the fan assembly (8), the outer side of the penetrating position of the drive shaft head (11) and the drive lamp holder (3) and the outer connecting shell (2) is provided with lower directional bearing (10) for keeping the rotation of the drive shaft head (11) stable, the inner side of the lower directional bearing (10) and the drive lamp holder (3) and the outer connecting shell (2) are mutually embedded and connected and fixed, and the inner side of the lower directional bearing (10) and the outer side of the drive shaft head (11) are connected and fixed. The inner side of the lower end of the outer support seat (4) is provided with a set of inner movable frame (5) for supporting a plurality of sets of outer lamp leaves (6); The inner side of the lower end of a plurality of sets of the outer lamp leaves (6) is connected with a set of lower lamp holder (9) for providing illumination for the room, the lower lamp holder (9) is a ceiling lamp, the inside of which is also provided with LED lamp bead combination, and is synchronously controlled with the LED control drive inside the drive lamp holder (3), the lower end of the motor (1) is provided with a set of drive shaft head (11) for transmitting power to the fan assembly (8), the outer side of the penetrating position of the drive shaft head (11) and the drive lamp holder (3) and the outer connecting shell (2) is provided with lower directional bearing (10) for keeping the rotation of the drive shaft head (11) stable, the inner side of the lower directional bearing (10) and the drive lamp holder (3) and the outer connecting shell (2) are mutually embedded and connected and fixed, and the inner side of the lower directional bearing (10) and the outer side of the drive shaft head (11) are connected and fixed.

3. The fan light integrated fan light according to claim 2, characterized in that: The inner positioning bearing (304) is provided with two groups, and three groups of outer combined frames for retaining and fixing the limit connection are arranged on the outer side of the two groups of inner positioning bearings (304). The front side of the outer combined frame is in a circular structure, and the three groups of outer combined frames are uniformly and equidistantly distributed and connected with the two groups of inner positioning bearings (304). A transmission core rod (37) for vertical power transmission is arranged at the lower end of the middle position of the upper balance tooth disc (32), and the upper end of the transmission core rod (37) is connected and fixed with the lower end of the middle position of the upper balance tooth disc (32). Inner bushing bearings are arranged at the left and right sides of the middle position of the transmission core rod (37), and are used to movably connect with the inner sides of the side connecting column one (36) and the side connecting column two (38). The side connecting column one (36) and the side connecting column two (38) are both arranged in an inclined structure, and the inclination angle is 15-25°. The left side of the side connecting column one (36) is connected with the middle position of the side balance tooth disc one (34) through the side connecting seat one (35) as a power support. The right side of the side connecting column two (38) is connected with the middle position of the side balance tooth disc two (301) through the side connecting seat two (39) as a power support. The inner center position of the side balance tooth disc one (34) is movably embedded with the side connecting seat one (35), and the inner center position of the side balance tooth disc two (301) is movably embedded with the side connecting seat two (39). The side balance tooth disc one (34) and the side connecting seat one (35) form a side balance assembly one.

4. The fan light integrated fan light according to claim 3, characterized in that: The side balance tooth disc two (301) and the side connecting seat two (39) form a side balance assembly two. The side balance assembly one and the side balance assembly two are symmetrically arranged at the center position of the transmission core rod (37). Inner bushing bearings are arranged at the connecting positions of the side connecting column one (36) and the side connecting seat one (35) and the side connecting column two (38) and the side connecting seat two (39). A lower balance tooth disc (303) for power connection with the side balance tooth disc one (34) and the side balance tooth disc two (301) is arranged at the lower end of the transmission core rod (37). A lower transmission tooth (302) for synchronous engagement with the side balance tooth disc one (34) and the side balance tooth disc two (301) is arranged at the upper end of the lower balance tooth disc (303). A lower power column (305) for further transmission of the power of the motor (1) is arranged at the lower end of the lower balance tooth disc (303). The lower power column (305) penetrates the middle position of the lower end of the outer combined frame, and an inner positioning bearing (304) is arranged at the penetrating position. A lower engagement column tooth (306) for mutual engagement with the inside of the fan assembly (8) is arranged at the outer side of the lower end of the lower power column (305), and the lower engagement column tooth (306) is embedded in the middle position of the inside of the fan assembly (8).

5. The fan light integrated fan light according to claim 1, wherein: The fan assembly (8) includes fan blades (81) and power engagement teeth (88), the fan blades (81) are provided with four groups, the four groups of fan blades (81) are in an elliptical arc structure in plan view, the four groups of fan blades (81) are uniformly distributed, and the four groups of fan blades (81) are arranged inside the fan movable slot (82), the upper end of the fan movable slot (82) is provided with an upper mounting shell (84) for protecting the upper side of the connecting section of the fan blade (81); The lower end of the fan movable slot (82) is provided with a lower mounting shell (83) for protecting the lower side of the connecting section of the fan blade (81), the upper mounting shell (84) and the lower mounting shell (83) are fixedly connected by a plurality of groups of bolts, the inside of the upper mounting shell (84) and the inside of the lower mounting shell (83) are both a cavity structure, the inside of the upper mounting shell (84) and the inside of the lower mounting shell (83) are respectively provided with a group of power cavities for synchronously rotating the four groups of fan blades (81), the upper end of the middle position of the upper mounting shell (84) is provided with a group of positioning sockets (85) for connecting with the driving lamp holder (3). The upper end of the positioning socket (85) is provided with a group of sealing top covers (86) for protecting the power transmission outside, the upper end of the inside of the sealing top cover (86) is provided with a group of upper top movable bearings (87) for movably engaging with the power engagement teeth (88), the outside of the upper top movable bearing (87) is fixedly connected with the inside of the sealing top cover (86), the inside of the upper top movable bearing (87) is an integral structure with the power engagement teeth (88), the power engagement teeth (88) are in an annular structure in plan view, the inside of the power engagement teeth (88) is movably connected with the lower engagement column teeth (306), and the lower engagement column teeth (306) penetrate the inside of the power engagement teeth (88) and are power connected with the inside member of the power cavity.

6. The fan light integrated fan light according to claim 5, characterized in that: The power cavity includes a shell (4a) and an inner stabilizing core shaft (4n), the inside of the shell (4a) is provided with a group of inner directional teeth (4b) for positioning and engaging with the four groups of side directional tooth columns (4c), the inner directional teeth (4b) are in an annular structure in plan view and are arranged at the upper end of the inside of the shell (4a), and the inside of the inner directional teeth (4b) is uniformly provided with four groups of side directional tooth columns (4c) for respectively driving the directional rotation of the four groups of fan blades (81); The outside of the four groups of side directional tooth columns (4c) is respectively provided with an outer engagement tooth in a spiral structure, the outer engagement tooth outside the four groups of side directional tooth columns (4c) is movably engaged with the inner directional teeth (4b), and the inside of each group of side directional tooth columns (4c) is provided with a group of inner support core columns (4d) for maintaining the centered rotation thereof, the upper end of the inner support core column (4d) is provided with a group of positioning rods (4e) for being embedded with the upper positioning rotary support frame (4g), the four groups of positioning rods (4e) are arranged in a rectangular structure, and the upper end of each group of positioning rods (4e) corresponds to a group of outer positioning holes (4f) for being embedded and positioned.

7. The fan light integrated fan light according to claim 6, characterized in that: The outer positioning hole (4f) is provided with a group of sealing bearings for preventing dust from entering, the positioning rod (4e) penetrates the inside of the sealing bearing, and is fixed with the inside of the sealing bearing, the upper end of each group of the outer positioning hole (4f) is provided with a group of internal threaded holes for bolt connection with the fan blades (81), and each group of the fan blades (81) is fixed by a group of bolts and internal threaded holes. The upper end of the four groups of side direction tooth columns (4c) is provided with a group of upper positioning rotary support frames (4g) for supporting the upper end positioning support, the lower end of the middle position of the front and rear sides of the upper positioning rotary support frame (4g) is respectively provided with a group of side clamping connection plates (4h) for combined connection and support with the lower positioning rotary support frame (4l), the side clamping connection plate (4h) is provided with two groups, and the two groups of side clamping connection plates (4h) are respectively combined and fixed with a group of upper positioning rotary support frames (4g) and a group of lower positioning rotary support frames (4l).

8. The fan light integrated fan light according to claim 7, characterized in that: The inner side of the four groups of side direction tooth columns (4c) is provided with a group of outer joint fitting guide teeth (4i) for keeping the inner side positioning support when rotating independently, the outer joint fitting guide teeth (4i) are synchronously engaged with the inner side of the four groups of side direction tooth columns (4c), and the inside of the outer joint fitting guide teeth (4i) is provided with a group of transmission tooth rings (4j) for supporting the inside. The transmission tooth ring (4j) and the outer joint fitting guide teeth (4i) are an integral structure, the inner side of the transmission tooth ring (4j) is provided with a group of inner joint fitting guide teeth (4k) for power connection with the lower meshing column teeth (306), the inner joint fitting guide teeth (4k) are engaged with the lower meshing column teeth (306), the inner side of the housing (4a) is provided with a group of inner positioning fitting grooves (4m) for placing the upper positioning rotary support frame (4g) and the lower positioning rotary support frame (4l), and the lower end of the inner positioning fitting groove (4m) is provided with a group of inner stabilizing mandrels (4n) for keeping the rotation of the lower meshing column teeth (306) stable.

9. The fan light integrated fan light according to claim 1, wherein: The outer lamp leaf (6) comprises an outer resistance electric rubber sleeve (61) and a light transmission plate (65), the outer resistance electric rubber sleeve (61) is arranged on the outer side surface of the outer lamp leaf (6), the outer resistance electric rubber sleeve (61) is made of a rubber material, and the inner side of the outer resistance electric rubber sleeve (61) is provided with a group of inner heat dissipation grids (62) for providing heat dissipation effect to the inside of the outer lamp leaf (6). The inner side of the inner heat dissipation grid (62) is provided with a group of outer heat dissipation grids (63) for providing heat dissipation effect to the outside of the outer lamp leaf (6), the outer heat dissipation grid (63) and the inner heat dissipation grid (62) are made of a metal aluminum material, the outer side of the left and right ends of the outer heat dissipation grid (63) and the inner heat dissipation grid (62) is respectively provided with a group of inner sealing bushings (64) for keeping the inside sealed, and the inner part of the outer heat dissipation grid (63) and the inner heat dissipation grid (62) is respectively provided with a group of light transmission plates (65) for flexibly dispersing the combined light of the LED lamp beads.