Fan lamp
By adopting stepless adjustment adjustment mechanism and damping components in the fan lamp, combined with the vibration damping components, the problem of insufficient flexibility and stability of the fan lamp air supply direction adjustment is solved, and the air supply effect with high flexibility and stability is achieved, and vibration and noise are reduced and service life is extended.
Patent Information
- Application Number
- CN202510191201.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-20
- Publication Date
- 2025-05-09
AI Technical Summary
When adjusting the air supply direction, existing fan lights have insufficient flexibility and stability, and are prone to instability in the air supply direction due to wear or looseness.
The fan light design with stepless adjustment includes lateral and longitudinal adjustment components, combined with the damping components to achieve accurate adjustment and stable positioning of the fan body. At the same time, the vibration-absorbing component effectively absorbs and disperses the vibration generated by the rotation of the fan motor and blades, ensuring the stable operation of the fan body.
It achieves flexibility and stability in the fan lamp air supply direction, ensuring that the fan body can be adjusted steplessly and locked stably in any required air supply direction, reducing vibration and noise, and extending service life.
Smart Images

Figure CN119957877A_ABST
Abstract
Description
[Technical field]
[0001] The invention relates to the field of fans, and in particular to a fan lamp. [Background technology]
[0002] Chinese utility model CN211573839U discloses a wall-mounted electric fan. By installing a mounting block, a first U-shaped support block, a first rotating shaft, a support limit block, a second U-shaped support block and a second rotating shaft, the mounting block is connected to the first U-shaped support block to facilitate the adjustment of the up and down angles of the electric fan, and the support limit block is connected to the second U-shaped support block to facilitate the adjustment of the left and right angles of the electric fan. Finally, the first rotating shaft and the second rotating shaft are rotated and fixed to achieve an overall fixing effect.
[0003] Therefore, taking the adjustment of the up and down angles of the electric fan as an example, when the user needs to adjust the air supply direction of the fan, it is necessary to rotate the first rotating shaft to adjust the air supply direction of the fan, and then tighten the first rotating shaft to fix it in the desired position. The rotation adjustment between the support plate and the rotating shaft is prone to wear or loosening. When fixing the air supply direction, a simple mechanical locking structure is used, which lacks the ability of smooth transition and stable maintenance, thereby directly affecting the stability of the air supply direction. During long-term use, the electric fan cannot be stably limited to the desired position. The above-mentioned electric fan only solves the problem that it is inconvenient to adjust the air supply direction of the wall-mounted electric fan, but there are still deficiencies in the flexibility and stability of adjusting the air supply direction of the fan body.
[0004] In view of the above technical problems, the present invention is proposed after research. [Summary of the invention]
[0005] The technical problem to be solved by the present invention is to provide a fan lamp, including a fan body, a base, an adjustment mechanism and a damping assembly. The adjustment mechanism includes a connecting piece, a lateral adjustment assembly and a longitudinal adjustment assembly, and also includes a lamp body. The connecting piece includes a first connecting end and a second connecting end. The first connecting end is connected to the lateral adjustment assembly, and the second connecting end is rotatably connected to the longitudinal adjustment assembly. The adjustment mechanism rotates to adjust the air supply direction and cooperates with the damping assembly to position its fan body in the required air supply direction, thereby solving the problems of flexibility and stability in adjusting the air supply direction of the fan lamp in the prior art.
[0006] In order to solve the above technical problems, the present invention provides a fan lamp, comprising a fan body, a base and an adjustment mechanism for adjusting the air supply direction of the fan body, wherein the adjustment mechanism comprises a connecting member located between the base and the fan body and a transverse adjustment component that can be rotated in a horizontal direction relative to the base to adjust the air supply direction of the fan body, and the adjustment mechanism also comprises a longitudinal adjustment component that can be rotated in a vertical direction relative to the fan body to adjust the air supply direction of the fan body;
[0007] One end of the connecting member is a first connecting end, and the other end of the connecting member is a second connecting end. The first connecting end is rotationally connected to the lateral adjustment component, and the second connecting end of the connecting member is rotationally matched with the longitudinal adjustment component. Both the lateral adjustment component and the longitudinal adjustment component have a damping component for stepless adjustment. The damping component is configured so that the fan body can be steplessly adjusted and positioned in the required air supply direction through the damping component. The fan lamp also includes a lamp body for lighting arranged at the outer edge of the outer cover of the fan body.
[0008] As for the above-mentioned fan lamp, a vibration reduction assembly is provided between the fan body and the longitudinal adjustment assembly for reducing the vibration generated by the operation of the fan lamp motor. One end of the vibration reduction assembly is connected to the fan body, and the other end of the vibration reduction assembly is connected to the longitudinal adjustment assembly.
[0009] As for the above-mentioned fan lamp, the vibration reduction assembly includes a base plate connected to the fan body, a cover plate connected to the longitudinal adjustment assembly, a guide column and a fixing portion formed on the base plate and extending toward the cover plate, the guide column is located on the cover plate and is sleeved with the fixing portion, the vibration reduction assembly also includes a vibration reduction element for reducing the energy generated by vibration, the vibration reduction element is nested between the guide column and the fixing portion and the guide column can movably abut against the vibration reduction element, the vibration reduction assembly also includes a positioning pin, the positioning pin passes through the fixing portion, the guide column and the vibration reduction element and is connected and matched with the three, and the outer side surface of the positioning pin is covered with an elastically deformable vibration reduction sleeve.
[0010] As in the above-mentioned fan lamp, the lateral adjustment assembly includes two first bases longitudinally and spaced apart on the base, the first connecting end is accommodated between the two first bases, the lateral adjustment assembly also includes a sway shaft rod longitudinally penetrating the two first bases and the first connecting end, and the connecting member rotates in a horizontal direction relative to the base with the sway shaft rod as a rotation axis;
[0011] The damping assembly includes a damping hole opened on a first connecting end, and a damping member embedded in the damping hole, the damping member is provided with a connecting hole, the damping member is sleeved on the yaw shaft through the connecting hole, the damping member is made of an elastically deformable material, and convex ribs and grooves are correspondingly provided between the inner side surface of the damping hole and the outer side surface of the damping member to limit the rotation of the damping member relative to the damping hole.
[0012] As in the above-mentioned fan light, the longitudinal adjustment assembly includes two second bases arranged transversely and at intervals on one side of the bottom plate in the fan body, and a longitudinal swing shaft rod transversely penetrating the two second bases and the second connecting end, the fan body rotates relative to the adjustment mechanism in the vertical direction with the longitudinal swing shaft rod as the rotation axis, and the other side of the bottom plate is connected to the guide column of the vibration reduction assembly;
[0013] The damping member in the longitudinal adjustment component is sleeved on the longitudinal swing shaft through the connecting hole, and the longitudinal swing shaft passes through the damping component and is rotatably matched with the second end of the connecting member.
[0014] As in the above-mentioned fan lamp, the longitudinal adjustment component includes two arms extending from the second connection end, the fan body is located between the two arms, the longitudinal adjustment component also includes two longitudinal swing shafts respectively arranged transversely on both sides of the fan body, the vibration reduction components have two, and the vibration reduction components are respectively arranged between the side edges of the fan body and the arms, the bottom plate in the vibration reduction component is rotatably connected to the arms, and the cover plate is relatively fixedly connected to the side edges of the fan body;
[0015] The damping member in the longitudinal adjustment assembly is sleeved on the longitudinal swing shaft rod through a connecting hole, and the longitudinal swing shaft rod passes through the damping assembly and is rotatably matched with the support arm.
[0016] As for a fan lamp as mentioned above, the vibration reduction assembly also includes a first elastic element sleeved on the outer side of the fixing part and a second elastic element placed inside the guide column, one end of the first elastic element abuts against the positioning pin and the other end is connected to the base plate, one end of the second elastic element is connected to the cover plate and the other end abuts against the positioning pin.
[0017] As for the above-mentioned fan lamp, both ends of the lateral swing shaft rod have threaded portions, and both ends of the longitudinal swing shaft rod have threaded portions.
[0018] As for the above-mentioned fan lamp, both ends of the lateral swing shaft rod have threaded portions, and both ends of the longitudinal swing shaft rod have threaded portions.
[0019] As for the above-mentioned fan lamp, the lamp body includes a light source and a lampshade.
[0020] Compared with the prior art, the fan lamp of the present invention has the following advantages:
[0021] 1. This application adopts a stepless adjustment method to achieve precise control of the air supply direction of the fan body. In the two free movement dimensions of horizontal and vertical, the fan body can achieve stepless adjustment and rotation, and can be stably locked in any required air supply direction, thereby improving the air supply flexibility and stability of the fan light.
[0022] 2. The vibration reduction assembly in this application can effectively absorb and disperse the vibration energy generated by the fan light motor and blade rotation, prevent the vibration from being transmitted to the damping assembly, and avoid affecting the stability of the connection between the adjustment mechanism and the base and the fan body. Prevent the vibration from being further transmitted to the adjustment mechanism and even the entire fan light, so as to ensure the smooth operation of the fan light and the fan body is always positioned in the air supply direction.
[0023] 3. This application combines lighting and fan functions in a single device, making the fan lamp structure more compact and space-efficient. The fan body can provide air circulation while also meeting lighting needs, especially at night or in low-light environments. It can achieve the dual functions of lighting and cooling without the need to install additional lamps, saving space and costs.
Brief Description of the Drawings
[0024] The specific embodiments of the present invention are further described in detail below with reference to the accompanying drawings, wherein:
[0025] Figure 1 It is a schematic diagram of the structural decomposition of the fan lamp in the present invention;
[0026] Figure 2 It is a structural schematic diagram of the fan lamp in the present invention;
[0027] Figure 3 It is a partial structural schematic diagram of the fan lamp in the present invention;
[0028] Figure 4 is a cross-sectional view of a vibration reduction assembly of a fan lamp in the present invention;
[0029] Figure 5 It is a schematic diagram of the structural decomposition of the adjustment device of the fan lamp in the present invention;
[0030] Figure 6 is a structural schematic diagram of another embodiment of the fan lamp of the present invention;
[0031] Figure 7 The present invention Figure 6 Schematic diagram of local decomposition;
[0032] Figure 8 It is one of the structural schematic diagrams of the vibration reduction assembly in another embodiment of the present invention;
[0033] Fig. 9 This is the second structural schematic diagram of the vibration reduction assembly in another embodiment of the present invention.
[0034] In the figure:
[0035] 1. Base; 11. First base; 21. Second base; 3. Fan body;
[0036] 4. Adjustment mechanism; 41. Lateral adjustment assembly; 411. Lateral swing shaft; 42. Longitudinal adjustment assembly; 421. Longitudinal swing shaft; 5. Connector; 51. First connection end; 52. Second connection end; 53. Support arm;
[0037] 6. Damping assembly; 61. Damping hole; 62. Damping member; 63. Connecting hole; 64. Raised rib; 65. Groove; 7. Vibration reduction assembly; 71. Guide column; 72. First elastic element; 721. Second elastic element; 73. Vibration reduction element; 74. Fixing part; 75. Cover plate; 76. Positioning pin; 77. Protective cover; 78. Bottom plate; 8. Lamp body. [Specific implementation method]
[0038] The embodiments of the present invention will be described in detail below with reference to the accompanying drawings.
[0039] like Figure 1-9 As shown, the present invention includes a fan lamp, including a fan body 3, a base 1 and an adjustment mechanism 4 for adjusting the air supply direction of the fan body 3, the adjustment mechanism 4 includes a connecting member 5 located between the base 1 and the fan body 3 and a lateral adjustment component 41 that can be rotated in the horizontal direction relative to the base 1 to adjust the air supply direction of the fan body 3, and the adjustment mechanism 4 also includes a longitudinal adjustment component 42 that can be rotated in the vertical direction relative to the fan body 3 to adjust the air supply direction of the fan body 3; one end of the connecting member 5 is a first connecting end 51, and the other end of the connecting member 5 is a second connecting end 52, the first connecting end 51 is rotatably connected to the lateral adjustment component 41, and the second connecting end 52 of the connecting member 5 is rotatably matched with the longitudinal adjustment component 42, the lateral adjustment component 41 and the longitudinal adjustment component 42 are both provided with a damping component 6 for stepless adjustment, and the damping component 6 is configured so that the fan body 3 can steplessly adjust and position the fan body 3 in the required air supply direction through the damping component 6, and the fan lamp also includes a lamp body 8 for lighting arranged at the outer edge of the outer cover of the fan body 3.
[0040] The present application adopts a stepless adjustment method to achieve precise control of the air supply direction of the fan body 3. In the two free movement dimensions of horizontal and vertical, the fan body 3 can achieve stepless adjustment and rotation, and can be stably locked in any desired air supply direction, thereby improving the air supply flexibility and stability of the fan device. Users can easily make subtle adjustments to the air supply direction according to personal preferences and actual needs, which improves the flexibility of operation and effectively avoids the limitations of traditional fan gear adjustment.
[0041] like Figure 1-9As shown, as a further technical solution of this embodiment, a vibration reduction assembly 7 for reducing the vibration generated by the operation of the fan light motor is provided between the fan body 3 and the longitudinal adjustment assembly 42, one end of the vibration reduction assembly 7 is connected to the fan body 3, and the other end of the vibration reduction assembly 7 is connected to the longitudinal adjustment assembly 42. The vibration reduction assembly 7 includes a base plate 78 connected to the fan body 3, a cover plate 75 connected to the longitudinal adjustment assembly 42, a guide column 71, and a fixing portion 74 formed on the base plate 78 and extending toward the cover plate 75. The guide column 71 is located on the cover plate 75 and is sleeved with the fixing portion 74. The vibration reduction assembly 7 also includes a vibration reduction element 73 for reducing the energy generated by vibration. The vibration reduction element 73 is nested between the guide column 71 and the fixing portion 74, and the guide column 71 can movably abut against the vibration reduction element 73. The vibration reduction assembly 7 also includes a positioning pin 76, which passes through the fixing portion 74, the guide column 71 and the vibration reduction element 73 and is connected and matched with the three. The outer side surface of the positioning pin 76 is covered with an elastically deformable vibration reduction sleeve.
[0042] One side of the cover plate 75 is connected to the fan body 3, and the other side extends outward to form a guide column 71. The interior of the guide column 71 is a hollow structure. In contrast, one side of the bottom plate 78 located at the longitudinal adjustment component 42 extends to form a fixing portion 74, and the fixing portion 74 and the bottom plate 78 form an open groove body, so that the fixing portion 74 and the guide column 71 are abutted and matched. A vibration reduction element 73 is embedded between the fixing portion 74 and the guide column 71 to isolate the two. The bottom surface of the vibration reduction element 73 can be movably attached to the bottom surface of the guide column 71, and its outer side surface is attached to the fixing portion 74, and the inner side surface is attached to the guide column 71 to avoid hard contact between the fixing portion 74 and the guide column 71. The fixing portion 74, the vibration reduction element 73 and the guide column 71 are also provided with openings for the positioning pin 76 to pass through. In addition, the positioning pin 76 passes through the fixing portion 74, the guide column 71 and the vibration-damping element 73 and is connected and cooperated with the three. During use, the vibration energy generated by the fan light is concentrated on the guide column 71 and then transmitted to the vibration-damping element 73. Since the outer side surface of the positioning pin 76 is covered with an elastically deformable vibration-damping sleeve, the positioning pin 76 works together with the vibration-damping element 73 to absorb and disperse the vibration energy.
[0043] like Figure 4 , Figure 8 , Fig. 9As shown, further, the vibration reduction assembly 7 further includes a first elastic element 72 sleeved on the outer side of the fixing portion 74 and a second elastic element 721 placed inside the guide column 71, one end of the first elastic element 72 abuts on the positioning pin 76 and the other end is connected to the bottom plate 78, and one end of the second elastic element 721 is connected to the cover plate 75 and the other end abuts on the positioning pin 76. When the positioning pin 76 has a tendency to move relative to the force transmitted by the guide column 71, the first elastic element 72 cooperates with the second elastic element 721 to block the relative movement of the guide column 71 and the vibration reduction element 73, so as to prevent the fixing portion 74, the guide column 71 and the vibration reduction element 73 from loosening or falling off, thereby preventing the vibration reduction assembly 7 from failing. Specifically, the first elastic element 72 and the second elastic element 721 can be springs.
[0044] The vibration reduction component 7 in the present application can effectively absorb and disperse the vibration energy generated by the fan light motor and blade rotation, prevent the vibration from being transmitted to the damping component 6, and avoid affecting the stability of the connection between the adjustment mechanism 4 and the base 1 and the fan body 3. Prevent the vibration from being further transmitted to the adjustment mechanism 4 and even the entire fan light to ensure the smooth operation of the fan light and the fan body is always positioned in the air supply direction. Secondly, by reducing vibration, the noise level caused by vibration can be indirectly reduced to avoid unnecessary noise. In the long run, the vibration reduction component 7 can reduce fatigue damage to other components inside the fan light, thereby extending the service life of the fan light and reducing maintenance costs.
[0045] like Figure 1-9 As shown, in order to further enhance the aesthetics of the fan lamp, a protective cover 77 is added to the outer contour of the vibration reduction component 7 in the fan lamp, which also has the practical functions of dust and moisture resistance. At the same time, for easy installation, the positioning pin 76 passes through the protective cover 77 and is connected to the fixing part 74 and the guide column 71 and the vibration reduction element 73.
[0046] like Figure 1-9As shown, as a further technical solution of the present application, the lateral adjustment component 41 includes two first bases 11 longitudinally and spaced apart on the base 1, the first connecting end 51 is accommodated between the two first bases 11, the lateral adjustment component 41 also includes a sway axis 411 longitudinally penetrating the two first bases 11 and the first connecting end 51, the connecting member 5 rotates in the horizontal direction relative to the base 1 with the sway axis 411 as the rotation axis; the damping component 6 includes a damping hole 61 opened on the first connecting end 51, and a damping member 62 embedded in the damping hole 61, the damping member 62 is provided with a connecting hole 63, the damping member 62 is sleeved on the sway axis 411 through the connecting hole 63, the damping member 62 is made of an elastically deformable material, and a convex rib 64 and a groove 65 for limiting the rotation of the damping member 62 relative to the damping hole 61 are provided between the inner side surface of the damping hole 61 and the outer side surface of the damping member 62.
[0047] Specifically, the damping member 62 is made of elastically deformable materials such as silicone and rubber. The damping member 62 is embedded in the damping hole 61 of the first connecting end 51. The two first bases 11 are each provided with an opening for the yaw axis 411 to pass through. Connecting holes 63 are provided at both ends of the damping member 62 for the yaw axis 411 to pass through. The yaw axis 411 penetrates the two first bases 11 and the damping member 62 of the first connecting end 51 by interference fit, and the first connecting end 51 can be rotatably connected relative to the base 1. The friction between the surface of the damping member 62 sleeved on the yaw axis 411 and the inner wall of the damping hole 61 enables the first connecting end 51 and the base 1 to achieve the purpose of stepless adjustment and positioning. The structure is stable and reliable, and the service life is longer.
[0048] When adjusting the air supply direction of the fan body 3, a force is applied to the fan body 3, thereby driving the lateral swing shaft 411 to rotate, so as to drive the damping member 62 to rotate and cooperate with the through hole and cause the damping member 62 to deform accordingly. The engaging positions between the groove 65 and the convex rib 64 are staggered with each other to generate a locking force to achieve damping cooperation. The connecting member 5 cooperates with the damping assembly 6 to accurately adjust the rotation angle of the fan body 3 and position it at the current position, so as to realize stepless adjustment of the air supply direction of the fan body 3.
[0049] like Figure 1-5As shown, as a further technical solution of this embodiment, the longitudinal adjustment component 42 includes two second bases 21 arranged transversely and at intervals on one side of the bottom plate 78 of the fan body 3, and a longitudinal swing shaft 421 transversely penetrating the two second bases 21 and the second connecting end 52. The fan body 3 rotates relative to the adjustment mechanism 4 in the vertical direction with the longitudinal swing shaft 421 as the rotation axis, and the other side of the bottom plate 78 is connected to the guide column 71 of the vibration reduction component 7; the damping member 62 in the longitudinal adjustment component 42 is sleeved on the longitudinal swing shaft 421 through the connecting hole 63, and the longitudinal swing shaft 421 penetrates the damping component 6 and rotates with the second connecting end 52 of the connecting member 5. Compared with the prior art of fixing the fan body 3 at the desired position by mechanical locking or releasing, the present application has the advantages of simple operation and high adjustment flexibility.
[0050] like Figure 1 , Figure 5 As shown, further, both ends of the yaw shaft rod 411 have threaded parts, and both ends of the pitch shaft rod 421 have threaded parts. The adjustment mechanism 4 also includes knobs (not shown in the figure) located at the ends of the yaw shaft rod 411 and the pitch shaft rod 421. The threaded parts and the knobs are threadedly matched, which is convenient for installation and maintenance. The knobs are threadedly matched with both ends of the yaw shaft rod 411 and one end of the pitch shaft rod 421, which is convenient for installing the lateral adjustment component 41 and the longitudinal adjustment component 42 to prevent them from loosening or falling off. During use, there is no need to adjust the knobs multiple times, and the structure is stable and reliable.
[0051] When assembling the fan light, first connect the connector 5 with the base 1, embed the damping member 62 in the damping hole 61 of the first connecting end 51, penetrate the lateral axis 411 to connect the first connecting end 51 and the first base 11 associated with the base 1, and relatively fix the knobs at both ends of the lateral axis 411. Secondly, connect the fan body 3 with the connector 5, embed the damping member 62 in the damping hole 61 of the second connecting end 52, penetrate the longitudinal axis 421 to the second connecting end 52 and the second base 21 associated with the fan body 3, and then relatively fix the knobs at both ends of the longitudinal axis 421. Then install the vibration reduction assembly 7, embed the vibration reduction element 73 in the vibration reduction assembly 7 into the fixing portion 74, cover the cover plate 75 so that the bottom surface of the guide column 71 fits with the bottom of the vibration reduction element 73, and the positioning pin 76 penetrates through the fixing portion 74, the vibration reduction element 73 and the guide column 71, and then connect the vibration reduction assembly 7 to the fan body 3. Finally, the base 1 is used to fix the fan to the desired wall or cabinet position through fasteners to complete the installation of the fan. It should be noted that the fasteners mentioned above are commonly threaded parts such as bolts and expansion screws, which belong to the prior art.
[0052] like Figure 6-9As shown, as another embodiment of the present application, compared with the previous embodiment, the present embodiment is different in that the longitudinal adjustment component 42 includes two arms 53 extending from the second connection end 52, the fan body 3 is located between the two arms 53, the longitudinal adjustment component 42 also includes two longitudinal swing shafts 421 respectively arranged on both sides of the fan body 3, the vibration reduction component 7 has two, and the vibration reduction components 7 are respectively arranged between the side of the fan body 3 and the arms 53, the bottom plate 78 in the vibration reduction component 7 is rotatably connected to the arms 53, and the cover plate 75 is relatively fixedly connected to the side of the fan body 3; the damping member 62 in the longitudinal adjustment component 42 is sleeved on the longitudinal swing shaft 421 through the connecting hole 63, and the longitudinal swing shaft 421 penetrates the damping component 6 and rotates with the arms 53. The present application improves the structural stability and bearing capacity by using the assembly method of connecting the two arms 53 to the two sides of the fan body 3.
[0053] like Figure 7 As shown, further, both ends of the lateral swing shaft rod 411 have threaded portions, and one end of the longitudinal swing shaft rod 421 has a threaded portion, and the threaded portions are threadedly matched with the knob.
[0054] When installing the fan light in this embodiment, since the second connection end 52 extends to form two arms 53 connected to the two sides of the fan body 3, correspondingly, there are two damping assemblies 6 in the longitudinal adjustment assembly 42, and the damping assemblies 6 are respectively arranged between the arms 53 and the knob, and the two longitudinal swing shafts 421 are distributed in the direction of the same axis and are respectively located on the two sides of the fan body 3, and the fan body 3 can rotate relative to the adjustment mechanism 4. The cover plate 75 is fixedly connected to the fan body 3, so that the vibration energy generated by the fan body 3 is transmitted to the vibration reduction element 73 through the guide column 71 and the vibration energy is absorbed and dispersed in the vibration reduction element 73. One end of the longitudinal swing shaft 421 passes through the arm 53 and is fixedly connected to the bottom plate 78 of the vibration reduction assembly 7, and the other end is fixedly connected to the knob through the threaded portion. The bottom plate 78 is also provided with a hole for fixing the longitudinal swing shaft 421.
[0055] As a further technical solution of the present application, the vibration-damping element 73 and the vibration-damping sleeve are made of elastically deformable materials, such as silicone, rubber and other deformable materials, which can transfer vibration energy from the guide column 71 to the vibration-damping element 73. In the process of absorbing and dispersing the vibration energy, the vibration energy is converted into heat energy or other forms of energy, thereby achieving the purpose of reducing the vibration energy, protecting the fan lamp as a whole from vibration damage, thereby extending the service life of the fan lamp and ensuring the stable operation of the fan body 3.
[0056] like Figure 1 , Figure 6As shown, the fan light also includes a lamp body 8 for lighting, which is arranged at the outer edge of the outer cover of the fan body 3. The present application combines a single device with lighting and fan functions, making the fan light structure more compact and space practical. The fan light is suitable for use in operating workbenches that need to provide cooling and lighting conditions. The fan light is fixed on a wall or cabinet. The fan body 3 can provide air circulation while meeting the lighting needs, especially at night or in low-light environments. The dual functions of lighting and cooling can be achieved without the need to install additional lamps, saving space and cost.
[0057] Furthermore, the lamp body 8 includes a light source and a lampshade. The light source can be an energy-saving lamp, or can be replaced by an incandescent lamp or an LED lamp. Compared with incandescent lamps, energy-saving lamps have higher energy efficiency and relatively longer service life, which can reduce the frequency of replacing the light source. In addition, energy-saving lamps are more convenient to maintain and simpler to operate than LED lamps. In addition, the lampshade is arranged outside the light source and fixed on the fan body 3. The lampshade can block the strong light emitted directly by the light source to avoid direct light to the human eye, and then evenly scatter the light of the light source, expand the illumination range, and reduce the glare. At the same time, the lampshade can effectively avoid damage and pollution from external objects and extend the service life of the light source.
Claims
1. A fan light, characterized in that The invention comprises a fan body (3), a base (1) and an adjusting mechanism (4) for adjusting the air supply direction of the fan body (3); the adjusting mechanism (4) comprises a connecting member (5) located between the base (1) and the fan body (3) and a transverse adjusting component (41) which can be rotated in a horizontal direction relative to the base (1) to adjust the air supply direction of the fan body (3); the adjusting mechanism (4) also comprises a longitudinal adjusting component (42) which can be rotated in a vertical direction relative to the fan body (3) to adjust the air supply direction of the fan body (3); One end of the connecting member (5) is a first connecting end (51), and the other end of the connecting member (5) is a second connecting end (52). The first connecting end (51) is rotatably connected to a transverse adjustment component (41), and the second connecting end (52) of the connecting member (5) is rotatably matched to a longitudinal adjustment component (42). Both the transverse adjustment component (41) and the longitudinal adjustment component (42) have a damping component (6) for stepless adjustment. The damping component (6) is configured so that the fan body (3) can be steplessly adjusted and positioned in a desired air supply direction through the damping component (6). The fan lamp also includes a lamp body (8) for lighting, which is arranged at the outer edge of the outer cover of the fan body (3).
2. A fan light according to claim 1, characterized in that A vibration reduction assembly (7) for reducing vibration generated by the operation of the fan motor is provided between the fan body (3) and the longitudinal adjustment assembly (42); one end of the vibration reduction assembly (7) is connected to the fan body (3), and the other end of the vibration reduction assembly is connected to the longitudinal adjustment assembly (42).
3. A fan light according to claim 2, characterized in that The vibration-damping assembly comprises a bottom plate (78) connected to the fan body (3), a cover plate (75) connected to the longitudinal adjustment assembly (42), a guide column (71), and a fixing portion (74) formed on the bottom plate (78) and extending toward the cover plate (75); the guide column (71) is located on the cover plate (75) and is sleeved with the fixing portion (74); the vibration-damping assembly (7) further comprises a vibration-damping element (73) for reducing energy generated by vibration; the vibration-damping element (73) is nested between the guide column (71) and the fixing portion (74), and the guide column (71) can movably abut against the vibration-damping element (73); the vibration-damping assembly (7) further comprises a positioning pin (76); the positioning pin (76) passes through the fixing portion (74), the guide column (71) and the vibration-damping element (73), and is connected with the three; the outer side surface of the positioning pin (76) is covered with an elastically deformable vibration-damping sleeve.
4. A fan light according to claim 3, characterized in that The lateral adjustment component (41) comprises two first bases (11) longitudinally and spaced apart from each other on the base (1), the first connecting end (51) being accommodated between the two first bases (11), the lateral adjustment component (41) further comprising a sway shaft (411) longitudinally penetrating the two first bases (11) and the first connecting end (51), the connecting member (5) being rotatable in a horizontal direction relative to the base (1) with the sway shaft (411) as a rotation axis; The damping assembly (6) comprises a damping hole (61) formed on a first connecting end (51), and a damping member (62) embedded in the damping hole (61); the damping member (62) is provided with a connecting hole (63); the damping member (62) is sleeved on the yaw shaft (411) through the connecting hole (63); the damping member (62) is made of an elastically deformable material; and a convex rib (64) and a groove (65) are provided between the inner side surface of the damping hole (61) and the outer side surface of the damping member (62) for limiting the rotation of the damping member (62) relative to the damping hole (61).
5. A fan light according to claim 4, characterized in that The longitudinal adjustment assembly (42) comprises two second bases (21) arranged transversely and at intervals on one side of a bottom plate (78) in a fan body (3), and a longitudinal swing shaft (421) transversely penetrating the two second bases (21) and the second connecting end (52); the fan body (3) rotates relative to the adjustment mechanism (4) in a vertical direction with the longitudinal swing shaft (421) as a rotation axis; and the other side of the bottom plate (78) is connected to a guide column (71) of a vibration reduction assembly (7); The damping member (62) in the longitudinal adjustment component (42) is sleeved on the longitudinal swing shaft (421) through the connecting hole (63), and the longitudinal swing shaft (421) passes through the damping component (6) and is rotatably matched with the second end of the connecting member (5).
6. A fan light according to claim 4, characterized in that The longitudinal adjustment component (42) comprises two support arms (53) extending from the second connection end (52), the fan body (3) is located between the two support arms (53), the longitudinal adjustment component (42) further comprises two longitudinal swing shafts (421) respectively arranged transversely on both sides of the fan body (3), the vibration reduction components (7) have two, and the vibration reduction components (7) are respectively arranged between the side edges of the fan body (3) and the support arms (53), the bottom plate (78) in the vibration reduction component (7) is rotatably connected to the support arms (53), and the cover plate (75) is relatively fixedly connected to the side edges of the fan body (3); The damping member (62) in the longitudinal adjustment assembly (42) is sleeved on the longitudinal swing shaft (421) through the connecting hole (63), and the longitudinal swing shaft (421) passes through the damping assembly (6) and is rotatably matched with the support arm (53).
7. A fan light according to claim 2, characterized in that The vibration reduction assembly (7) further comprises a first elastic element (72) sleeved on the outer side of the fixing portion (74) and a second elastic element (721) disposed inside the guide column (71); one end of the first elastic element (72) abuts against the positioning pin (76) and the other end is connected to the bottom plate (78); one end of the second elastic element (721) is connected to the cover plate (75) and the other end abuts against the positioning pin (76).
8. A fan light according to claim 5, characterized in that The two ends of the lateral swing shaft (411) have threaded portions, and the two ends of the longitudinal swing shaft (421) have threaded portions.
9. A fan light according to claim 6, characterized in that The two ends of the lateral swing shaft (411) have threaded portions, and one end of the longitudinal swing shaft (421) has a threaded portion.
10. The fan light according to claim 1, characterized in that The lamp body (8) comprises a light source and a lampshade.
Citation Information
Patent Citations
Wall-mounted electric fan
CN211573839U